301 lines
6.5 KiB
Ruby
301 lines
6.5 KiB
Ruby
##
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# $Id$
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##
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##
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# This file is part of the Metasploit Framework and may be subject to
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# redistribution and commercial restrictions. Please see the Metasploit
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# Framework web site for more information on licensing and terms of use.
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# http://metasploit.com/framework/
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##
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require 'msf/core'
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class Metasploit3 < Msf::Auxiliary
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include Msf::Auxiliary::Report
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include Msf::Auxiliary::Scanner
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def initialize
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super(
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'Name' => 'NetBIOS Information Discovery Prober',
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'Version' => '$Revision$',
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'Description' => 'Discover host information using sequential NetBIOS Probes',
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'Author' => ['hdm', 'todb'],
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'License' => MSF_LICENSE
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)
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register_options(
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[
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Opt::CHOST,
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Opt::RPORT(137)
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], self.class)
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end
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def rport
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datastore['RPORT'].to_i
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end
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# Fingerprint a single host
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def run_host(ip)
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@thost = ip
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@results = {}
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begin
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udp_sock = nil
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# Create an unbound UDP socket if no CHOST is specified, otherwise
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# create a UDP socket bound to CHOST (in order to avail of pivoting)
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udp_sock = Rex::Socket::Udp.create( {
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'LocalHost' => datastore['CHOST'] || nil,
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'PeerHost' => ip, 'PeerPort' => rport,
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'Context' => {'Msf' => framework, 'MsfExploit' => self}
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})
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add_socket(udp_sock)
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begin
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data = create_netbios_status(ip)
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udp_sock.put(data)
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rescue ::Interrupt
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raise $!
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rescue ::Rex::HostUnreachable, ::Rex::ConnectionTimeout, ::Rex::ConnectionRefused
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nil
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end
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while (r = udp_sock.recvfrom(65535, 0.1) and r[1])
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parse_reply(r)
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end
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while (r = udp_sock.recvfrom(65535, 3) and r[1])
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parse_reply(r)
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end
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# Second pass to find additional IPs per host name
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@results.keys.each do |ip|
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next if not @results[ip][:name]
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begin
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data = create_netbios_lookup(@results[ip][:name])
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udp_sock.put(data)
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rescue ::Interrupt
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raise $!
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rescue ::Rex::HostUnreachable, ::Rex::ConnectionTimeout, ::Rex::ConnectionRefused
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nil
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end
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while (r = udp_sock.recvfrom(65535, 0.1) and r[1])
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parse_reply(r)
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end
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end
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while (r = udp_sock.recvfrom(65535, 3) and r[1])
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parse_reply(r)
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end
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rescue ::Interrupt
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raise $!
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rescue ::Errno::ENOBUFS
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print_status("Socket buffers are full, waiting for them to flush...")
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while (r = udp_sock.recvfrom(65535, 0.1) and r[1])
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parse_reply(r)
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end
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select(nil, nil, nil, 0.25)
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rescue ::Exception => e
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print_error("Unknown error: #{e.class} #{e}")
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end
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@results.keys.each do |ip|
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host = @results[ip]
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user = ""
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os = "Windows"
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if(host[:user] and host[:mac] != "00:00:00:00:00:00")
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user = " User:#{host[:user]}"
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end
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if(host[:mac] == "00:00:00:00:00:00")
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os = "Unix"
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end
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names = " Names:(" + host[:names].map{|n| n[0]}.uniq.join(", ") + ")"
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addrs = ""
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if(host[:addrs])
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addrs = "Addresses:(" + host[:addrs].map{|n| n[0]}.uniq.join(", ") + ")"
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end
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if(host[:mac] != "00:00:00:00:00:00")
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report_host(:host => ip, :mac => host[:mac])
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else
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report_host(:host => ip)
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end
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extra = ""
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virtual = nil
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case host[:mac]
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when /^00:13:07/i
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virtual = 'ParaVirtual'
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when /^(00:1C:14|00:50:56|00:05:69|00:0c:29)/i
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virtual = 'VMWare'
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when /^00:1C:42/
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virtual = "Parallels"
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when /^00:18:51/
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virtual = "SWsoft Virtuozzo"
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when /^00:21:F6/i
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virtual = 'Virtual Iron'
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when /^00:16:3e/
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virtual = 'Xen'
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when /^(54:52:00|DE:AD:BE)/
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virtual = 'QEMU (unofficial)'
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when /^00:24:0B/i
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virtual = 'Virtual Computer Inc'
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end
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if(virtual)
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extra = "Virtual Machine:#{virtual}"
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report_note(
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:host => ip,
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:type => 'host.virtual_machine',
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:data => {:vendor => virtual, :method => 'netbios'}
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)
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end
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if(host[:addrs])
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aliases = []
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host[:addrs].map{|n| n[0]}.uniq.each do |addr|
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next if addr == ip
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aliases << addr
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end
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if not aliases.empty?
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report_note(
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:host => ip,
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:proto => 'udp',
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:port => 137,
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:type => 'netbios.addresses',
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:data => {:addresses => aliases}
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)
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end
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end
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print_status("#{ip} [#{host[:name]}] OS:#{os}#{user}#{names} #{addrs} Mac:#{host[:mac]} #{extra}")
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end
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end
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def parse_reply(pkt)
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# Ignore "empty" packets
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return if not pkt[1]
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addr = pkt[1]
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if(addr =~ /^::ffff:/)
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addr = addr.sub(/^::ffff:/, '')
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end
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data = pkt[0]
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head = data.slice!(0,12)
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xid, flags, quests, answers, auths, adds = head.unpack('n6')
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return if quests != 0
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return if answers == 0
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qname = data.slice!(0,34)
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rtype,rclass,rttl,rlen = data.slice!(0,10).unpack('nnNn')
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buff = data.slice!(0,rlen)
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names = []
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hname = nil
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uname = nil
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case rtype
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when 0x21
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rcnt = buff.slice!(0,1).unpack("C")[0]
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1.upto(rcnt) do
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tname = buff.slice!(0,15).gsub(/\x00.*/, '').strip
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ttype = buff.slice!(0,1).unpack("C")[0]
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tflag = buff.slice!(0,2).unpack('n')[0]
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names << [ tname, ttype, tflag ]
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hname = tname if ttype == 0x20
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uname = tname if ttype == 0x03
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end
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maddr = buff.slice!(0,6).unpack("C*").map{|c| "%.2x" % c }.join(":")
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@results[addr] = {
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:names => names,
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:mac => maddr
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}
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if (!hname and @results[addr][:names].length > 0)
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@results[addr][:name] = @results[addr][:names][0][0]
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end
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@results[addr][:name] = hname if hname
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@results[addr][:user] = uname if uname
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inf = ''
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names.each do |name|
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inf << name[0]
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inf << ":<%.2x>" % name[1]
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if (name[2] & 0x8000 == 0)
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inf << ":U :"
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else
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inf << ":G :"
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end
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end
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inf << maddr
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report_service(
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:host => addr,
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:host_mac => (maddr and maddr != '00:00:00:00:00:00') ? maddr : nil,
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:host_name => (hname) ? hname.downcase : nil,
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:port => pkt[2],
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:proto => 'udp',
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:name => 'NetBIOS',
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:info => inf
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)
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when 0x20
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1.upto(rlen / 6.0) do
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tflag = buff.slice!(0,2).unpack('n')[0]
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taddr = buff.slice!(0,4).unpack("C*").join(".")
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names << [ taddr, tflag ]
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end
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@results[addr][:addrs] = names
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end
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end
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def create_netbios_status(ip)
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data =
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[rand(0xffff)].pack('n')+
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"\x00\x00\x00\x01\x00\x00\x00\x00"+
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"\x00\x00\x20\x43\x4b\x41\x41\x41"+
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"\x41\x41\x41\x41\x41\x41\x41\x41"+
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"\x41\x41\x41\x41\x41\x41\x41\x41"+
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"\x41\x41\x41\x41\x41\x41\x41\x41"+
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"\x41\x41\x41\x00\x00\x21\x00\x01"
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return data
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end
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def create_netbios_lookup(name)
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name = [name].pack("A15") + "\x00"
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data =
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[rand(0xffff)].pack('n') +
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"\x01\x00\x00\x01\x00\x00\x00\x00\x00\x00" +
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"\x20" +
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Rex::Proto::SMB::Utils.nbname_encode(name) +
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"\x00" +
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"\x00\x20\x00\x01"
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return data
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end
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end
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