An extcap utility can provide configuration for controls to use in a GUI interface toolbar. This controls are bidirectional and can be used to control the extcap utility while capturing. This is useful in scenarios where configuration can be done based on findings in the capture process, setting temporary values or give other inputs without restarting current capture. Todo: - Add support for Windows Change-Id: Ie15fa67f92eb27d8b73df6bb36f66b9a7d81932d Reviewed-on: https://code.wireshark.org/review/19982 Petri-Dish: Stig Bjørlykke <stig@bjorlykke.org> Tested-by: Petri Dish Buildbot <buildbot-no-reply@wireshark.org> Reviewed-by: Stig Bjørlykke <stig@bjorlykke.org>
492 lines
17 KiB
Python
Executable File
492 lines
17 KiB
Python
Executable File
#!/usr/bin/env python
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# Copyright 2014 Roland Knall <rknall [AT] gmail.com>
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#
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# Wireshark - Network traffic analyzer
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# By Gerald Combs <gerald@wireshark.org>
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# Copyright 1998 Gerald Combs
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#
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# This program is free software; you can redistribute it and/or
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# modify it under the terms of the GNU General Public License
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# as published by the Free Software Foundation; either version 2
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# of the License, or (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program; if not, write to the Free Software
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# Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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"""
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This is a generic example, which produces pcap packages every n seconds, and
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is configurable via extcap options.
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@note
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{
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To use this script on Windows, please generate an extcap_example.bat inside
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the extcap folder, with the following content:
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-------
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@echo off
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<Path to python interpreter> <Path to script file> %*
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-------
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Windows is not able to execute Python scripts directly, which also goes for all
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other script-based formates beside VBScript
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}
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"""
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from __future__ import print_function
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import os
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import sys
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import signal
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import re
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import argparse
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import time
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import struct
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import binascii
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from threading import Thread
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ERROR_USAGE = 0
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ERROR_ARG = 1
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ERROR_INTERFACE = 2
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ERROR_FIFO = 3
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ERROR_DELAY = 4
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CTRL_CMD_INITIALIZED = 0
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CTRL_CMD_SET = 1
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CTRL_CMD_ADD = 2
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CTRL_CMD_REMOVE = 3
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CTRL_CMD_ENABLE = 4
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CTRL_CMD_DISABLE = 5
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CTRL_CMD_STATUSBAR = 6
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CTRL_CMD_INFORMATION = 7
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CTRL_CMD_WARNING = 8
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CTRL_CMD_ERROR = 9
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CTRL_ARG_MESSAGE = 0
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CTRL_ARG_DELAY = 1
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CTRL_ARG_VERIFY = 2
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CTRL_ARG_BUTTON = 3
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CTRL_ARG_HELP = 4
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CTRL_ARG_RESET = 5
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CTRL_ARG_LOGGER = 6
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CTRL_ARG_NONE = 255
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initialized = False
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message = ''
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delay = 0.0
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verify = False
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button = False
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button_disabled = False
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"""
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This code has been taken from http://stackoverflow.com/questions/5943249/python-argparse-and-controlling-overriding-the-exit-status-code - originally developed by Rob Cowie http://stackoverflow.com/users/46690/rob-cowie
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"""
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class ArgumentParser(argparse.ArgumentParser):
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def _get_action_from_name(self, name):
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"""Given a name, get the Action instance registered with this parser.
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If only it were made available in the ArgumentError object. It is
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passed as it's first arg...
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"""
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container = self._actions
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if name is None:
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return None
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for action in container:
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if '/'.join(action.option_strings) == name:
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return action
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elif action.metavar == name:
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return action
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elif action.dest == name:
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return action
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def error(self, message):
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exc = sys.exc_info()[1]
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if exc:
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exc.argument = self._get_action_from_name(exc.argument_name)
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raise exc
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super(ArgumentParser, self).error(message)
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#### EXTCAP FUNCTIONALITY
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"""@brief Extcap configuration
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This method prints the extcap configuration, which will be picked up by the
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interface in Wireshark to present a interface specific configuration for
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this extcap plugin
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"""
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def extcap_config(interface):
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args = []
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values = []
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args.append ( (0, '--delay', 'Time delay', 'Time delay between packages', 'integer', '{range=1,15}{default=5}') )
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args.append ( (1, '--message', 'Message', 'Package message content', 'string', '{required=true}{placeholder=Please enter a message here ...}') )
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args.append ( (2, '--verify', 'Verify', 'Verify package content', 'boolflag', '{default=yes}') )
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args.append ( (3, '--remote', 'Remote Channel', 'Remote Channel Selector', 'selector', ''))
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args.append ( (4, '--fake_ip', 'Fake IP Address', 'Use this ip address as sender', 'string', '{save=false}{validation=\\b(?:(?:25[0-5]|2[0-4][0-9]|[01]?[0-9][0-9]?)\\.){3}(?:25[0-5]|2[0-4][0-9]|[01]?[0-9][0-9]?)\\b}'))
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args.append ( (5, '--ltest', 'Long Test', 'Long Test Value', 'long', '{default=123123123123123123}'))
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args.append ( (6, '--d1test', 'Double 1 Test', 'Long Test Value', 'double', '{default=123.456}'))
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args.append ( (7, '--d2test', 'Double 2 Test', 'Long Test Value', 'double', '{default= 123,456}'))
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args.append ( (8, '--password', 'Password', 'Package message password', 'password', '') )
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args.append ( (9, '--ts', 'Start Time', 'Capture start time', 'timestamp', '') )
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args.append ( (10, '--logfile', 'Log File Test', 'The Log File Test', 'fileselect', '') )
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args.append ( (11, '--radio', 'Radio Test', 'Radio Test Value', 'radio', '') )
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args.append ( (12, '--multi', 'MultiCheck Test', 'MultiCheck Test Value', 'multicheck', '') )
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values.append ( (3, "if1", "Remote1", "true" ) )
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values.append ( (3, "if2", "Remote2", "false" ) )
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values.append ( (11, "r1", "Radio1", "false" ) )
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values.append ( (11, "r2", "Radio2", "true" ) )
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values.append ( (12, "m1", "MultiCheck1", "false" ) )
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values.append ( (12, "m2", "MultiCheck2", "false" ) )
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for arg in args:
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print ("arg {number=%d}{call=%s}{display=%s}{tooltip=%s}{type=%s}%s" % arg)
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for value in values:
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print ("value {arg=%d}{value=%s}{display=%s}{default=%s}" % value)
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def extcap_interfaces():
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print ("extcap {version=1.0}{help=http://www.wireshark.org}{display=Example extcap interface}")
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print ("interface {value=example1}{display=Example interface 1 for extcap}")
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print ("interface {value=example2}{display=Example interface 2 for extcap}")
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print ("control {number=%d}{type=string}{display=Message}{tooltip=Package message content. Must start with a capital letter.}{placeholder=Enter package message content here ...}{validation=^[A-Z]+}" % CTRL_ARG_MESSAGE)
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print ("control {number=%d}{type=selector}{display=Time delay}{tooltip=Time delay between packages}" % CTRL_ARG_DELAY)
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print ("control {number=%d}{type=boolean}{display=Verify}{default=true}{tooltip=Verify package content}" % CTRL_ARG_VERIFY)
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print ("control {number=%d}{type=button}{display=Turn on}{tooltip=Turn on or off}" % CTRL_ARG_BUTTON)
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print ("control {number=%d}{type=button}{role=help}{display=Help}{tooltip=Show help}" % CTRL_ARG_HELP)
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print ("control {number=%d}{type=button}{role=reset}{display=Reset}{tooltip=Restore default values}" % CTRL_ARG_RESET)
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print ("control {number=%d}{type=button}{role=logger}{display=Log}{tooltip=Show capture log}" % CTRL_ARG_LOGGER)
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print ("value {control=%d}{value=1}{display=1}" % CTRL_ARG_DELAY)
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print ("value {control=%d}{value=2}{display=2}" % CTRL_ARG_DELAY)
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print ("value {control=%d}{value=3}{display=3}" % CTRL_ARG_DELAY)
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print ("value {control=%d}{value=4}{display=4}" % CTRL_ARG_DELAY)
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print ("value {control=%d}{value=5}{display=5}{default=true}" % CTRL_ARG_DELAY)
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print ("value {control=%d}{value=60}{display=60}" % CTRL_ARG_DELAY)
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def extcap_dlts(interface):
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if ( interface == '1' ):
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print ("dlt {number=147}{name=USER0}{display=Demo Implementation for Extcap}")
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elif ( interface == '2' ):
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print ("dlt {number=148}{name=USER1}{display=Demo Implementation for Extcap}")
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"""
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### FAKE DATA GENERATOR
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Extcap capture routine
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This routine simulates a capture by any kind of user defined device. The parameters
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are user specified and must be handled by the extcap.
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The data captured inside this routine is fake, so change this routine to present
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your own input data, or call your own capture program via Popen for example. See
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for more details.
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"""
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def unsigned(n):
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return int(n) & 0xFFFFFFFF
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def pcap_fake_header():
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header = bytearray()
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header += struct.pack('<L', int ('a1b2c3d4', 16 ))
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header += struct.pack('<H', unsigned(2) ) # Pcap Major Version
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header += struct.pack('<H', unsigned(4) ) # Pcap Minor Version
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header += struct.pack('<I', int(0)) # Timezone
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header += struct.pack('<I', int(0)) # Accurancy of timestamps
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header += struct.pack('<L', int ('0000ffff', 16 )) # Max Length of capture frame
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header += struct.pack('<L', unsigned(1)) # Ethernet
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return header
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# Calculates and returns the IP checksum based on the given IP Header
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def ip_checksum(iph):
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#split into bytes
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words = splitN(''.join(iph.split()),4)
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csum = 0;
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for word in words:
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csum += int(word, base=16)
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csum += (csum >> 16)
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csum = csum & 0xFFFF ^ 0xFFFF
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return csum
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def pcap_fake_package ( message, fake_ip ):
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pcap = bytearray()
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#length = 14 bytes [ eth ] + 20 bytes [ ip ] + messagelength
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caplength = len(message) + 14 + 20
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timestamp = int(time.time())
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pcap += struct.pack('<L', unsigned(timestamp ) ) # timestamp seconds
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pcap += struct.pack('<L', 0x00 ) # timestamp nanoseconds
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pcap += struct.pack('<L', unsigned(caplength ) ) # length captured
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pcap += struct.pack('<L', unsigned(caplength ) ) # length in frame
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# ETH
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pcap += struct.pack('h', 0 ) # source mac
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pcap += struct.pack('h', 0 ) # source mac
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pcap += struct.pack('h', 0 ) # source mac
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pcap += struct.pack('h', 0 ) # dest mac
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pcap += struct.pack('h', 0 ) # dest mac
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pcap += struct.pack('h', 0 ) # dest mac
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pcap += struct.pack('<h', unsigned(8 )) # protocol (ip)
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# IP
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pcap += struct.pack('b', int ( '45', 16 )) # IP version
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pcap += struct.pack('b', int ( '0', 16 )) #
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pcap += struct.pack('>H', unsigned(len(message)+20) ) # length of data + payload
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pcap += struct.pack('<H', int ( '0', 16 )) # Identification
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pcap += struct.pack('b', int ( '40', 16 )) # Don't fragment
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pcap += struct.pack('b', int ( '0', 16 )) # Fragment Offset
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pcap += struct.pack('b', int ( '40', 16 ))
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pcap += struct.pack('B', 0xFE ) # Protocol (2 = unspecified)
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pcap += struct.pack('<H', int ( '0000', 16 )) # Checksum
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parts = fake_ip.split('.')
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ipadr = (int(parts[0]) << 24) + (int(parts[1]) << 16) + (int(parts[2]) << 8) + int(parts[3])
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pcap += struct.pack('>L', ipadr ) # Source IP
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pcap += struct.pack('>L', int ( '7F000001', 16 )) # Dest IP
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pcap += message
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return pcap
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def control_read(fn):
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try:
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header = fn.read(6)
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sp, _, length, arg, typ = struct.unpack('>sBHBB', header)
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if length > 2:
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payload = fn.read(length - 2)
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else:
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payload = ''
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return arg, typ, payload
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except:
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return None, None, None
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def control_read_thread(control_in, fn_out):
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global initialized, message, delay, verify, button, button_disabled
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with open(control_in, 'rb', 0 ) as fn:
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arg = 0
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while arg != None:
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arg, typ, payload = control_read(fn)
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log = ''
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if typ == CTRL_CMD_INITIALIZED:
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initialized = True
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elif arg == CTRL_ARG_MESSAGE:
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message = payload
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log = "Message = " + payload
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elif arg == CTRL_ARG_DELAY:
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delay = float(payload)
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log = "Time delay = " + payload
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elif arg == CTRL_ARG_VERIFY:
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# Only read this after initialized
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if initialized:
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verify = (payload[0] != '\0')
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log = "Verify = " + str(verify)
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control_write(fn_out, CTRL_ARG_NONE, CTRL_CMD_STATUSBAR, "Verify changed")
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elif arg == CTRL_ARG_BUTTON:
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control_write(fn_out, CTRL_ARG_BUTTON, CTRL_CMD_DISABLE, "")
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button_disabled = True
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if button == True:
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control_write(fn_out, CTRL_ARG_BUTTON, CTRL_CMD_SET, "Turn on")
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button = False
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log = "Button turned off"
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else:
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control_write(fn_out, CTRL_ARG_BUTTON, CTRL_CMD_SET, "Turn off")
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button = True
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log = "Button turned on"
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if len(log) > 0:
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control_write(fn_out, CTRL_ARG_LOGGER, CTRL_CMD_ADD, log + "\n")
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def control_write(fn, arg, typ, payload):
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packet = bytearray()
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packet += struct.pack('>sBHBB', 'T', 0, len(payload) + 2, arg, typ)
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packet += payload
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fn.write(packet)
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def control_write_defaults(fn_out):
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global initialized, message, delay, verify
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while not initialized:
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time.sleep(.1) # Wait for initial control values
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# Write startup configuration to Toolbar controls
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control_write(fn_out, CTRL_ARG_MESSAGE, CTRL_CMD_SET, message)
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control_write(fn_out, CTRL_ARG_DELAY, CTRL_CMD_SET, str(delay))
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control_write(fn_out, CTRL_ARG_VERIFY, CTRL_CMD_SET, struct.pack('B', verify))
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for i in range(1,16):
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item = bytearray()
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item += str(i) + struct.pack('B', 0) + str(i) + " sec"
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control_write(fn_out, CTRL_ARG_DELAY, CTRL_CMD_ADD, item)
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control_write(fn_out, CTRL_ARG_DELAY, CTRL_CMD_REMOVE, str(60))
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def extcap_capture(interface, fifo, control_in, control_out, in_delay, in_verify, in_message, remote, fake_ip):
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global message, delay, verify, button_disabled
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delay = in_delay if in_delay != 0 else 5
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message = in_message
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verify = in_verify
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counter = 1
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if not os.path.exists(fifo):
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print ( "Fifo does not exist, exiting!", file=sys.stderr )
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sys.exit(1)
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fn_out = None
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if control_out != None:
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fn_out = open(control_out, 'wb', 0)
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control_write(fn_out, CTRL_ARG_LOGGER, CTRL_CMD_SET, "Log started at " + time.strftime("%c") + "\n")
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if control_in != None:
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# Start reading thread
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thread = Thread(target = control_read_thread, args = (control_in, fn_out))
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thread.start()
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if fn_out != None:
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control_write_defaults(fn_out)
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with open(fifo, 'wb', 0 ) as fh:
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fh.write (pcap_fake_header())
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while True:
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if fn_out != None:
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log = "Received packet #" + str(counter) + "\n"
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control_write(fn_out, CTRL_ARG_LOGGER, CTRL_CMD_ADD, log)
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counter = counter + 1
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if button_disabled == True:
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control_write(fn_out, CTRL_ARG_BUTTON, CTRL_CMD_ENABLE, "")
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control_write(fn_out, CTRL_ARG_NONE, CTRL_CMD_INFORMATION, "Turn action finished.")
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button_disabled = False
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out = ("%s|%04X%s|%s" % ( remote.strip(), len(message), message, verify )).encode("utf8")
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fh.write (pcap_fake_package(out, fake_ip))
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time.sleep(delay)
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thread.join()
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if fn_out != None:
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fn_out.close()
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def extcap_close_fifo(fifo):
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if not os.path.exists(fifo):
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print ( "Fifo does not exist!", file=sys.stderr )
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return
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# This is apparently needed to workaround an issue on Windows/macOS
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# where the message cannot be read. (really?)
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fh = open(fifo, 'wb', 0 )
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fh.close()
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####
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def usage():
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print ( "Usage: %s <--extcap-interfaces | --extcap-dlts | --extcap-interface | --extcap-config | --capture | --extcap-capture-filter | --fifo>" % sys.argv[0] )
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if __name__ == '__main__':
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interface = ""
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# Capture options
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delay = 0
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message = ""
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fake_ip = ""
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ts = 0
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parser = ArgumentParser(
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prog="Extcap Example",
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description="Extcap example program for python"
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)
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# Extcap Arguments
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parser.add_argument("--capture", help="Start the capture routine", action="store_true" )
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parser.add_argument("--extcap-interfaces", help="Provide a list of interfaces to capture from", action="store_true")
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parser.add_argument("--extcap-interface", help="Provide the interface to capture from")
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parser.add_argument("--extcap-dlts", help="Provide a list of dlts for the given interface", action="store_true")
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parser.add_argument("--extcap-config", help="Provide a list of configurations for the given interface", action="store_true")
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parser.add_argument("--extcap-capture-filter", help="Used together with capture to provide a capture filter")
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parser.add_argument("--fifo", help="Use together with capture to provide the fifo to dump data to")
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parser.add_argument("--extcap-control-in", help="Use together with capture to provide the fifo to dump data to")
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parser.add_argument("--extcap-control-out", help="Use together with capture to provide the fifo to dump data to")
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# Interface Arguments
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parser.add_argument("--verify", help="Demonstrates a verification bool flag", action="store_true" )
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parser.add_argument("--delay", help="Demonstrates an integer variable", type=int, default=0, choices=[0, 1, 2, 3, 4, 5, 6] )
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parser.add_argument("--remote", help="Demonstrates a selector choice", default="if1", choices=["if1", "if2"] )
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parser.add_argument("--message", help="Demonstrates string variable", nargs='?', default="" )
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parser.add_argument("--fake_ip", help="Add a fake sender IP adress", nargs='?', default="127.0.0.1" )
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parser.add_argument("--ts", help="Capture start time", action="store_true" )
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|
|
|
try:
|
|
args, unknown = parser.parse_known_args()
|
|
except argparse.ArgumentError as exc:
|
|
print( "%s: %s" % ( exc.argument.dest, exc.message ), file=sys.stderr)
|
|
fifo_found = 0
|
|
fifo = ""
|
|
for arg in sys.argv:
|
|
if (arg == "--fifo" or arg == "--extcap-fifo") :
|
|
fifo_found = 1
|
|
elif ( fifo_found == 1 ):
|
|
fifo = arg
|
|
break
|
|
extcap_close_fifo(fifo)
|
|
sys.exit(ERROR_ARG)
|
|
|
|
if ( len(sys.argv) <= 1 ):
|
|
parser.exit("No arguments given!")
|
|
|
|
if ( args.extcap_interfaces == False and args.extcap_interface == None ):
|
|
parser.exit("An interface must be provided or the selection must be displayed")
|
|
|
|
if ( args.extcap_interfaces == True or args.extcap_interface == None ):
|
|
extcap_interfaces()
|
|
sys.exit(0)
|
|
|
|
if ( len(unknown) > 1 ):
|
|
print("Extcap Example %d unknown arguments given" % len(unknown) )
|
|
|
|
m = re.match ( 'example(\d+)', args.extcap_interface )
|
|
if not m:
|
|
sys.exit(ERROR_INTERFACE)
|
|
interface = m.group(1)
|
|
|
|
message = args.message
|
|
if ( args.message == None or len(args.message) == 0 ):
|
|
message = "Extcap Test"
|
|
|
|
fake_ip = args.fake_ip
|
|
if ( args.fake_ip == None or len(args.fake_ip) < 7 or len(args.fake_ip.split('.')) != 4 ):
|
|
fake_ip = "127.0.0.1"
|
|
|
|
ts = args.ts
|
|
|
|
if args.extcap_config:
|
|
extcap_config(interface)
|
|
elif args.extcap_dlts:
|
|
extcap_dlts(interface)
|
|
elif args.capture:
|
|
if args.fifo is None:
|
|
sys.exit(ERROR_FIFO)
|
|
# The following code demonstrates error management with extcap
|
|
if args.delay > 5:
|
|
print("Value for delay [%d] too high" % args.delay, file=sys.stderr)
|
|
extcap_close_fifo(args.fifo)
|
|
sys.exit(ERROR_DELAY)
|
|
|
|
try:
|
|
extcap_capture(interface, args.fifo, args.extcap_control_in, args.extcap_control_out, args.delay, args.verify, message, args.remote, fake_ip)
|
|
except KeyboardInterrupt:
|
|
pass
|
|
else:
|
|
usage()
|
|
sys.exit(ERROR_USAGE)
|