180 lines
6.0 KiB
Lua
180 lines
6.0 KiB
Lua
---
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-- Utility functions for sending MLD requests and parsing reports.
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--
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-- @copyright Same as Nmap--See https://nmap.org/book/man-legal.html
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local nmap = require "nmap"
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local ipOps = require "ipOps"
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local packet = require "packet"
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local stdnse = require "stdnse"
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local string = require "string"
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local table = require "table"
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_ENV = stdnse.module("multicast", stdnse.seeall)
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---
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-- Performs an MLD general query on the selected interface and caches the results such that
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-- subsequent calls to this function do not generate additional traffic.
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--
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-- @param if_nfo A table containing information about the interface to send the request on.
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-- Can be one of those returned by nmap.list_interfaces().
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-- @param arg_timeout The amount of time to wait for reports.
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--
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-- @return A list of tables, each table containing three items, namely device, layer 2 reply and layer 3 reply.
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--
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mld_query = function( if_nfo, arg_timeout )
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-- check if the interface name is valid or if nmap can find one
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if if_nfo == nil then
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return nil
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end
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-- we need some ID for this interface & address combination to use as the
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-- registry key and the object to lock the mutex on
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local reg_entry = "mld_reports_" .. if_nfo.device .. "_" .. if_nfo.address
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local mutex = nmap.mutex( reg_entry )
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mutex('lock')
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-- first check if nmap.registry contains reports for this interface from a previous call of this function
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if nmap.registry[reg_entry] ~= nil then
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mutex('done')
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return nmap.registry[reg_entry]
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end
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if not ipOps.ip_in_range(if_nfo.address, "fe80::/10") -- link local address
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or if_nfo.link ~= "ethernet" then -- not the loopback interface
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mutex('done')
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return nil
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end
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-- create the query packet
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local src_mac = if_nfo.mac
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local src_ip6 = ipOps.ip_to_str(if_nfo.address)
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local dst_mac = packet.mactobin("33:33:00:00:00:01")
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local dst_ip6 = ipOps.ip_to_str("ff02::1")
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local general_qry = ipOps.ip_to_str("::")
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local dnet = nmap.new_dnet()
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local pcap = nmap.new_socket()
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dnet:ethernet_open(if_nfo.device)
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pcap:pcap_open(if_nfo.device, 1500, false, "ip6[40:1] == 58")
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local probe = packet.Frame:new()
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probe.mac_src = src_mac
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probe.mac_dst = dst_mac
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probe.ip_bin_src = src_ip6
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probe.ip_bin_dst = dst_ip6
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probe.ip6_tc = 0
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probe.ip6_fl = 0
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probe.ip6_hlimit = 1
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probe.icmpv6_type = packet.MLD_LISTENER_QUERY
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probe.icmpv6_code = 0
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-- Add a non-empty payload too.
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probe.icmpv6_payload = (
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"\x00\x01" .. -- maximum response delay 1 millisecond (if 0, virtualbox TCP/IP stack crashes)
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"\x00\x00" .. -- reserved
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ipOps.ip_to_str("::") -- empty address - general MLD query
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)
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probe:build_icmpv6_header()
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probe.exheader = string.pack(">BBBB I2 BB",
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packet.IPPROTO_ICMPV6, -- next header
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0x00, -- length not including first 8 octets
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0x05, -- type is router alert
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0x02, -- length 2 bytes
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0x00, -- router alert MLD
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0x01, -- padding type PadN
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0x00 -- padding length 0
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)
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probe.ip6_nhdr = packet.IPPROTO_HOPOPTS
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probe:build_ipv6_packet()
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probe:build_ether_frame()
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-- send the query packet
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dnet:ethernet_send(probe.frame_buf)
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-- wait for responses to the query packet
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pcap:set_timeout(1000)
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local pcap_timeout_count = 0
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local nse_timeout = arg_timeout or 10
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local start_time = nmap:clock()
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local addrs = {}
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nmap.registry[reg_entry] = {}
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repeat
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local status, length, layer2, layer3 = pcap:pcap_receive()
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local cur_time = nmap:clock()
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if status then
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local l2reply = packet.Frame:new(layer2)
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local l3reply = packet.Packet:new(layer3, length, true)
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local target_ip = l3reply.ip_src
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if l3reply.ip6_nhdr == packet.MLD_LISTENER_REPORT or l3reply.ip6_nhdr == packet.MLDV2_LISTENER_REPORT then
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table.insert(
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nmap.registry[reg_entry],
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{ if_nfo.device, l2reply, l3reply }
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)
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end
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end
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until ( cur_time - start_time >= nse_timeout )
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-- clean up
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dnet:ethernet_close()
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pcap:pcap_close()
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mutex('done')
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return nmap.registry[reg_entry]
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end
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---
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-- Extracts IP addresses from MLD reports captured by the mld_query function.
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--
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-- @param reports The output of the mld_query function.
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--
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-- @return A list of tables, each table containing three items, namely device, mac and a list of addresses.
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--
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mld_report_addresses = function(reports)
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local rep_addresses = {}
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for _, report in pairs(reports) do
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local device = report[1]
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local l2reply = report[2]
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local l3reply = report[3]
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local target_ip = l3reply.ip_src
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if l3reply.ip6_nhdr == packet.MLD_LISTENER_REPORT or l3reply.ip6_nhdr == packet.MLDV2_LISTENER_REPORT then
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-- if this is the first reply from the target, make an entry for it
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if not rep_addresses[target_ip] then
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rep_addresses[target_ip] = stdnse.output_table()
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end
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local rep = rep_addresses[target_ip]
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rep.device = device
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rep.mac = stdnse.format_mac(l2reply.mac_src)
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rep.multicast_ips = rep.multicast_ips or {}
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-- depending on the MLD version of the report, add appropriate IP addresses
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if l3reply.ip6_nhdr == packet.MLD_LISTENER_REPORT then
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local multicast_ip = ipOps.str_to_ip( l3reply:raw(0x38, 16) ) -- IP starts at byte 0x38 and is 16 bytes long
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table.insert(rep.multicast_ips, multicast_ip)
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elseif l3reply.ip6_nhdr == packet.MLDV2_LISTENER_REPORT then
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local no_records = l3reply:u16(0x36)
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local record_offset = 0
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local records_start = 0x38
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for i = 1, no_records do
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-- for the format description, see RFC3810 (ch. 5.2)
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local aux_data_len = l3reply:u8(records_start + record_offset + 1)
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local no_sources = l3reply:u16(records_start + record_offset + 2)
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local multicast_ip = ipOps.str_to_ip(l3reply:raw(records_start + record_offset + 4, 16))
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table.insert(rep.multicast_ips, multicast_ip)
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record_offset = record_offset + 4 + 16 + no_sources * 16 + aux_data_len * 4
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end
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end
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end
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end
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return rep_addresses
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end
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return _ENV
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