173 lines
5.4 KiB
Ruby
173 lines
5.4 KiB
Ruby
##
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# This module requires Metasploit: http//metasploit.com/download
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# Current source: https://github.com/rapid7/metasploit-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::Exploit::Remote::Udp
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include Msf::Auxiliary::UDPScanner
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include Msf::Auxiliary::NTP
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include Msf::Auxiliary::DRDoS
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def initialize
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super(
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'Name' => 'NTP Monitor List Scanner',
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'Description' => %q{
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This module identifies NTP servers which permit "monlist" queries and
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obtains the recent clients list. The monlist feature allows remote
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attackers to cause a denial of service (traffic amplification)
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via spoofed requests. The more clients there are in the list, the
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greater the amplification.
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},
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'References' =>
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[
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['CVE', '2013-5211'],
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['URL', 'https://www.us-cert.gov/ncas/alerts/TA14-013A'],
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['URL', 'http://support.ntp.org/bin/view/Main/SecurityNotice'],
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['URL', 'http://nmap.org/nsedoc/scripts/ntp-monlist.html'],
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],
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'Author' => 'hdm',
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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('RETRY', [false, "Number of tries to query the NTP server", 3]),
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OptBool.new('SHOW_LIST', [false, 'Show the recent clients list', 'false'])
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], self.class)
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register_advanced_options(
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[
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OptBool.new('StoreNTPClients', [true, 'Store NTP clients as host records in the database', 'false'])
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], self.class)
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end
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# Called for each IP in the batch
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def scan_host(ip)
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scanner_send(@probe, ip, datastore['RPORT'])
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end
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# Called for each response packet
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def scanner_process(data, shost, sport)
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@results[shost] ||= { messages: [], peers: [] }
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@results[shost][:messages] << Rex::Proto::NTP::NTPPrivate.new(data)
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@results[shost][:peers] << extract_peer_tuples(data)
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end
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# Called before the scan block
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def scanner_prescan(batch)
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@results = {}
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@aliases = {}
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@probe = Rex::Proto::NTP.ntp_private(datastore['VERSION'], datastore['IMPLEMENTATION'], 42)
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end
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# Called after the scan block
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def scanner_postscan(batch)
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@results.keys.each do |k|
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response_map = { @probe => @results[k][:messages] }
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peer = "#{k}:#{rport}"
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# TODO: check to see if any of the responses are actually NTP before reporting
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report_service(
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:host => k,
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:proto => 'udp',
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:port => rport,
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:name => 'ntp'
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)
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peers = @results[k][:peers].flatten(1)
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unless peers.empty?
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print_good("#{peer} NTP monlist request permitted (#{peers.length} entries)")
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# store the peers found from the monlist
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report_note(
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:host => k,
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:proto => 'udp',
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:port => rport,
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:type => 'ntp.monlist',
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:data => {:monlist => peers}
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)
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# print out peers if desired
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if datastore['SHOW_LIST']
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peers.each do |ntp_peer|
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print_status("#{peer} #{ntp_peer}")
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end
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end
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# store any aliases for our target
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report_note(
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:host => k,
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:proto => 'udp',
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:port => rport,
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:type => 'ntp.addresses',
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:data => {:addresses => peers.map { |p| p.last }.sort.uniq }
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)
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if (datastore['StoreNTPClients'])
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print_status("#{peer} Storing #{peers.length} NTP client hosts in the database...")
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peers.each do |r|
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maddr,mport,mserv = r
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next if maddr == '127.0.0.1' # some NTP servers peer with themselves..., but we can't store loopback
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report_note(
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:host => maddr,
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:type => 'ntp.client.history',
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:data => {
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:address => maddr,
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:port => mport,
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:server => mserv
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}
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)
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end
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end
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end
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vulnerable, proof = prove_drdos(response_map)
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what = 'NTP Mode 7 monlist DRDoS (CVE-2013-5211)'
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if vulnerable
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print_good("#{peer} - Vulnerable to #{what}: #{proof}")
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report_vuln({
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:host => k,
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:port => rport,
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:proto => 'udp',
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:name => what,
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:refs => self.references
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})
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else
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vprint_status("#{peer} - Not vulnerable to #{what}: #{proof}")
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end
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end
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end
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# Examine the monlist reponse +data+ and extract all peer tuples (saddd, dport, daddr)
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def extract_peer_tuples(data)
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return [] if data.length < 76
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# NTP headers 8 bytes
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ntp_flags, ntp_auth, ntp_vers, ntp_code = data.slice!(0,4).unpack('C*')
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pcnt, plen = data.slice!(0,4).unpack('nn')
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return [] if plen != 72
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idx = 0
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peer_tuples = []
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1.upto(pcnt) do
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#u_int32 firsttime; /* first time we received a packet */
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#u_int32 lasttime; /* last packet from this host */
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#u_int32 restr; /* restrict bits (was named lastdrop) */
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#u_int32 count; /* count of packets received */
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#u_int32 addr; /* host address V4 style */
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#u_int32 daddr; /* destination host address */
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#u_int32 flags; /* flags about destination */
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#u_short port; /* port number of last reception */
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_,_,_,_,saddr,daddr,_,dport = data[idx, 30].unpack("NNNNNNNn")
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peer_tuples << [ Rex::Socket.addr_itoa(saddr), dport, Rex::Socket.addr_itoa(daddr) ]
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idx += plen
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end
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peer_tuples
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end
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end
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