2010-04-30 08:40:19 +00:00
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##
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2017-07-24 13:26:21 +00:00
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# This module requires Metasploit: https://metasploit.com/download
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2013-10-15 18:50:46 +00:00
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# Current source: https://github.com/rapid7/metasploit-framework
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2009-04-02 04:31:48 +00:00
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##
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2016-03-08 13:02:44 +00:00
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class MetasploitModule < Msf::Auxiliary
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2013-08-30 21:28:54 +00:00
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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' => 'SIP Username Enumerator (UDP)',
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'Description' => 'Scan for numeric username/extensions using OPTIONS/REGISTER requests',
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'Author' => 'et',
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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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OptInt.new('BATCHSIZE', [true, 'The number of hosts to probe in each set', 256]),
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OptInt.new('MINEXT', [true, 'Starting extension',0]),
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OptInt.new('MAXEXT', [true, 'Ending extension', 9999]),
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OptInt.new('PADLEN', [true, 'Cero padding maximum length', 4]),
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OptEnum.new('METHOD', [true, 'Enumeration method', 'REGISTER', ['OPTIONS', 'REGISTER']]),
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Opt::RPORT(5060),
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Opt::CHOST,
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Opt::CPORT(5060)
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2017-05-03 20:42:21 +00:00
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])
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2013-08-30 21:28:54 +00:00
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end
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# Define our batch size
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def run_batch_size
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datastore['BATCHSIZE'].to_i
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end
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# Operate on an entire batch of hosts at once
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def run_batch(batch)
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begin
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udp_sock = nil
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idx = 0
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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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{
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'LocalHost' => datastore['CHOST'] || nil,
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'LocalPort' => datastore['CPORT'].to_i,
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'Context' => { 'Msf' => framework, 'MsfExploit' => self }
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}
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)
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add_socket(udp_sock)
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mini = datastore['MINEXT']
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maxi = datastore['MAXEXT']
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batch.each do |ip|
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for i in (mini..maxi)
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testext = padnum(i,datastore['PADLEN'])
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case datastore['METHOD']
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when 'REGISTER'
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data = create_probe(ip,testext,'REGISTER')
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when 'OPTIONS'
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data = create_probe(ip,testext,'OPTIONS')
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else
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print_error("Method not found.")
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return
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end
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begin
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udp_sock.sendto(data, ip, datastore['RPORT'].to_i, 0)
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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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if (idx % 10 == 0)
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while (r = udp_sock.recvfrom(65535, 0.01) and r[1])
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parse_reply(r,datastore['METHOD'])
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end
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end
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idx += 1
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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,datastore['METHOD'])
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end
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rescue ::Interrupt
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raise $!
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rescue ::Exception => e
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print_error("Unknown error: #{e.class} #{e}")
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ensure
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udp_sock.close if udp_sock
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end
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end
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#
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# The response parsers
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#
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def parse_reply(pkt,meth)
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return if not pkt[1]
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if(pkt[1] =~ /^::ffff:/)
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pkt[1] = pkt[1].sub(/^::ffff:/, '')
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end
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resp = pkt[0].split(/\s+/)[1]
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repcode = ''
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agent = ''
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verbs = ''
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serv = ''
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prox = ''
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rhost,rport = pkt[1], pkt[2]
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if(pkt[0] =~ /^To\:\s*(.*)$/i)
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testn = "#{$1.strip}".split(';')[0]
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end
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case resp.to_i
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when 401
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2017-07-13 23:09:35 +00:00
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print_good("Found user: #{testn} [Auth]")
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2015-04-03 11:12:23 +00:00
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# Add Report
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2013-08-30 21:28:54 +00:00
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report_note(
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:host => rhost,
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:proto => 'udp',
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:sname => 'sip',
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:port => rport,
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:type => "Found user: #{testn} [Auth]",
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:data => "Found user: #{testn} [Auth]"
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)
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when 200
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2017-07-13 23:09:35 +00:00
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print_good("Found user: #{testn} [Open]")
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2013-08-30 21:28:54 +00:00
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#Add Report
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report_note(
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:host => rhost,
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:proto => 'udp',
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:sname => 'sip',
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:port => rport,
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:type => "Found user: #{testn} [Open]",
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:data => "Found user: #{testn} [Open]"
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)
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else
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#print_error("Undefined error code: #{resp.to_i}"
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end
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end
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def create_probe(ip,toext,meth)
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suser = Rex::Text.rand_text_alphanumeric(rand(8)+1)
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shost = Rex::Socket.source_address(ip)
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src = "#{shost}:#{datastore['CPORT']}"
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data = "#{meth} sip:#{toext}@#{ip} SIP/2.0\r\n"
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data << "Via: SIP/2.0/UDP #{src};branch=z9hG4bK.#{"%.8x" % rand(0x100000000)};rport;alias\r\n"
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data << "From: #{toext} <sip:#{suser}@#{src}>;tag=70c00e8c\r\n"
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data << "To: #{toext} <sip:#{toext}@#{ip}>\r\n"
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data << "Call-ID: #{rand(0x100000000)}@#{shost}\r\n"
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data << "CSeq: 1 #{meth}\r\n"
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data << "Contact: <sip:#{suser}@#{src}>\r\n"
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data << "Content-Length: 0\r\n"
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data << "Max-Forwards: 20\r\n"
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data << "User-Agent: #{suser}\r\n"
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data << "Accept: text/plain\r\n"
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end
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def padnum(num,padding)
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if padding >= num.to_s.length
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('0'*(padding-num.to_s.length)) << num.to_s
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end
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end
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2009-04-02 04:31:48 +00:00
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end
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