Fixes #788 by (finally!) committing Daniele's IPv6 link-local IPv6 scanner. Note that the timing can be a little touchy for this module (as well as for the IPv4 ARP scanner) but seems to be reliable enough on normal networks when scanning a /24.
Sorry for the delay! git-svn-id: file:///home/svn/framework3/trunk@10700 4d416f70-5f16-0410-b530-b9f4589650daunstable
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##
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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/projects/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::Exploit::Remote::Capture
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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' => 'IPv6 Local Neighbor Discovery',
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'Version' => '$Revision$',
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'Description' => %q{
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Enumerate local IPv6 hosts which respond to Neighbor Solicitations with a link-local address.
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Note, that like ARP scanning, this usually cannot be performed beyond the local
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broadcast network.
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},
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'Author' => 'belch',
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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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OptString.new('SHOST', [true, "Source IP Address"]),
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OptString.new('SMAC', [true, "Source MAC Address"]),
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], self.class)
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deregister_options('SNAPLEN', 'FILTER')
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end
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def run_batch_size
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datastore['BATCHSIZE'] || 256
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end
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def run_batch(hosts)
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print_status("IPv4 Hosts Discovery")
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shost = datastore['SHOST']
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smac = datastore['SMAC']
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addrs = []
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open_pcap({'SNAPLEN' => 68, 'FILTER' => "arp[6:2] == 0x0002"})
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begin
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hosts.each do |dhost|
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probe = buildprobe(datastore['SHOST'], datastore['SMAC'], dhost)
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capture.inject(probe)
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while(reply = getreply())
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next if not reply[:arp]
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print_status("#{reply[:arp].spa} is alive.")
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addrs << [reply[:arp].spa, reply[:arp].sha]
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report_host(:host => reply[:arp].spa, :mac=>reply[:arp].sha)
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end
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end
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etime = Time.now.to_f + (hosts.length * 0.05)
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while (Time.now.to_f < etime)
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while(reply = getreply())
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next if not reply[:arp]
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print_status("#{reply[:arp].spa} is alive.")
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addrs << [reply[:arp].spa, reply[:arp].sha]
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end
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Kernel.select(nil, nil, nil, 0.50)
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end
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ensure
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close_pcap()
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end
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neighbor_discovery(addrs)
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end
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def map_neighbor(nodes, adv)
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nodes.each do |node|
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ipv4_addr, mac_addr = node
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next if not adv[:eth].src_mac.eql? mac_addr
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ipv6_addr = Racket::L3::Misc.long2ipv6(adv[:ipv6].src_ip)
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return {:eth => mac_addr, :ipv4 => ipv4_addr, :ipv6 => ipv6_addr}
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end
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nil
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end
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def neighbor_discovery(neighs)
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print_status("IPv6 Neighbor Discovery")
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smac = datastore['SMAC']
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open_pcap({'SNAPLEN' => 68, 'FILTER' => "icmp6"})
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begin
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neighs.each do |neigh|
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host, dmac = neigh
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shost = Racket::L3::Misc.linklocaladdr(smac)
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neigh = Racket::L3::Misc.linklocaladdr(dmac)
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probe = buildsolicitation(smac, shost, neigh)
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capture.inject(probe)
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while(adv = getadvertisement())
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next if not adv[:icmpv6]
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addr = map_neighbor(neighs, adv)
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next if not addr
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print_status("#{addr[:ipv4]} maps to IPv6 link local address #{addr[:ipv6]}")
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end
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end
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etime = Time.now.to_f + (neighs.length * 0.5)
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while (Time.now.to_f < etime)
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while(adv = getadvertisement())
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next if not adv[:icmpv6]
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addr = map_neighbor(neighs, adv)
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next if not addr
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print_status("#{addr[:ipv4]} maps to IPv6 link local address #{addr[:ipv6]}")
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end
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Kernel.select(nil, nil, nil, 0.50)
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end
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ensure
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close_pcap()
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end
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end
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def buildprobe(shost, smac, dhost)
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n = Racket::Racket.new
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n.l2 = Racket::L2::Ethernet.new(Racket::Misc.randstring(14))
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n.l2.src_mac = smac
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n.l2.dst_mac = 'ff:ff:ff:ff:ff:ff'
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n.l2.ethertype = 0x0806
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n.l3 = Racket::L3::ARP.new
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n.l3.opcode = Racket::L3::ARP::ARPOP_REQUEST
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n.l3.sha = n.l2.src_mac
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n.l3.tha = n.l2.dst_mac
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n.l3.spa = shost
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n.l3.tpa = dhost
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n.pack
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end
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def getreply
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pkt = capture.next
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return if not pkt
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eth = Racket::L2::Ethernet.new(pkt)
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return if not eth.ethertype == 0x0806
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arp = Racket::L3::ARP.new(eth.payload)
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return if not arp.opcode == Racket::L3::ARP::ARPOP_REPLY
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{:raw => pkt, :eth => eth, :arp => arp}
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end
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def buildsolicitation(smac, shost, neigh)
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dmac = Racket::L3::Misc.soll_mcast_mac(neigh)
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dhost = Racket::L3::Misc.soll_mcast_addr6(neigh)
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n = Racket::Racket.new
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n.l2 = Racket::L2::Ethernet.new(Racket::Misc.randstring(14))
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n.l2.src_mac = smac
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n.l2.dst_mac = dmac
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n.l2.ethertype = 0x86dd
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n.l3 = Racket::L3::IPv6.new
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n.l3.src_ip = Racket::L3::Misc.ipv62long(shost)
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n.l3.dst_ip = Racket::L3::Misc.ipv62long(dhost)
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n.l3.nhead = 0x3a
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n.l3.ttl = 0xff
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n.l4 = Racket::L4::ICMPv6NeighborSolicitation.new
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n.l4.address = Racket::L3::Misc.ipv62long(neigh)
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n.l4.slla = smac
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n.l4.fix!(n.l3.src_ip, n.l3.dst_ip)
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n.pack
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end
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def getadvertisement
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pkt = capture.next
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return if not pkt
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eth = Racket::L2::Ethernet.new(pkt)
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return if not eth.ethertype == 0x86dd
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ipv6 = Racket::L3::IPv6.new(eth.payload)
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return if not ipv6.nhead == 0x3a
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icmpv6 = Racket::L4::ICMPv6.new(ipv6.payload)
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return if not icmpv6.type == Racket::L4::ICMPv6::ICMPv6_TYPE_NEIGHBOR_ADVERTISEMENT
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icmpv6 = Racket::L4::ICMPv6NeighborAdvertisement.new(ipv6.payload)
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{:raw => pkt, :eth => eth, :ipv6 => ipv6, :icmpv6 => icmpv6}
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end
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end
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