mirror of
https://github.com/k4yt3x/wg-meshconf.git
synced 2024-11-22 15:43:08 +01:00
460 lines
14 KiB
Python
Executable File
460 lines
14 KiB
Python
Executable File
#!/usr/bin/env python3
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# -*- coding: utf-8 -*-
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"""
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Name: Wireguard Mesh Configurator
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Dev: K4YT3X
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Date Created: October 10, 2018
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Last Modified: October 17, 2018
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Licensed under the GNU General Public License Version 3 (GNU GPL v3),
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available at: https://www.gnu.org/licenses/gpl-3.0.txt
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(C) 2018 K4YT3X
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"""
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from avalon_framework import Avalon
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import os
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import pickle
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import re
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import readline
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import subprocess
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import sys
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import traceback
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VERSION = '1.1.5'
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COMMANDS = [
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'Interactive',
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'ShowPeers',
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'LoadProfile',
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'SaveProfile',
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'NewProfile',
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'AddPeers',
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'GenerateConfigs',
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'Exit',
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'Quit',
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]
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class Utilities:
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""" Useful utilities
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This class contains a number of utility tools.
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"""
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def execute(command, input_value=''):
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process = subprocess.Popen(command, stdin=subprocess.PIPE, stdout=subprocess.PIPE)
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output = process.communicate(input=input_value)[0]
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return output.decode().replace('\n', '')
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class ShellCompleter(object):
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""" A Cisco-IOS-like shell completer
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This is a Cisco-IOS-like shell completer, that is not
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case-sensitive. If the command typed is not ambiguous,
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then execute the only command that matches. User does
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not have to enter the entire command.
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"""
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def __init__(self, options):
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self.options = sorted(options)
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def complete(self, text, state):
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if state == 0:
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if text:
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self.matches = [s for s in self.options if s and s.lower().startswith(text.lower())]
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else:
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self.matches = self.options[:]
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try:
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return self.matches[state]
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except IndexError:
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return None
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class Peer:
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""" Peer class
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Each object of this class represents a peer in
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the wireguard mesh network.
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"""
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def __init__(self, address, public_address, listen_port, private_key, keep_alive, preshared_key=False):
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self.address = address
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self.public_address = public_address
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self.listen_port = listen_port
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self.private_key = private_key
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self.keep_alive = keep_alive
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self.preshared_key = preshared_key
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class WireGuard:
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""" WireGuard utility controller
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This class handles the interactions with the wg binary,
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including:
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- genkey
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- pubkey
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- genpsk
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"""
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def __init__(self):
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pass
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def genkey(self):
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""" Generate WG private key
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Generate a new wireguard private key via
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wg command.
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"""
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return Utilities.execute(['wg', 'genkey'])
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def pubkey(self, public_key):
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""" Convert WG private key into public key
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Uses wg pubkey command to convert the wg private
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key into a public key.
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"""
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return Utilities.execute(['wg', 'pubkey'], input_value=public_key.encode('utf-8'))
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def genpsk(self):
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""" Generate a random base64 psk
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"""
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return Utilities.execute(['wg', 'genpsk'])
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class ProfileManager(object):
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""" Profile manager
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Each instance of this class represents a profile,
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which is a complete topology of a mesh / c/s network.
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"""
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def __init__(self):
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""" Initialize peers list
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"""
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self.peers = []
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def load_profile(self, profile_path):
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""" Load profile from a file
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Open the pickle file, deserialize the content and
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load it back into the profile manager.
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"""
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Avalon.dbgInfo('Loading profile from: {}'.format(profile_path))
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with open(profile_path, 'rb') as profile:
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pm.peers = pickle.load(profile)
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profile.close()
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def save_profile(self, profile_path):
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""" Save current profile to a file
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Serializes the current profile with pickle
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and dumps it into a file.
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"""
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# If profile already exists (file or link), ask the user if
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# we should overwrite it.
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if os.path.isfile(profile_path) or os.path.islink(profile_path):
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if not Avalon.ask('File already exists. Overwrite?', True):
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Avalon.warning('Aborted saving profile')
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return 1
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# Abort if profile_path points to a directory
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if os.path.isdir(profile_path):
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Avalon.warning('Destination path is a directory')
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Avalon.warning('Aborted saving profile')
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return 1
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# Finally, write the profile into the destination file
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Avalon.dbgInfo('Writing profile to: {}'.format(profile_path))
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with open(profile_path, 'wb') as profile:
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pickle.dump(pm.peers, profile)
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profile.close()
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def new_profile(self):
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""" Create new profile and flush the peers list
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"""
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# Warn the user before flushing configurations
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Avalon.warning('This will flush the currently loaded profile!')
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if len(self.peers) != 0:
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if not Avalon.ask('Continue?', False):
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return
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# Reset self.peers and start enrolling new peer data
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self.peers = []
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get_peers_settings()
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def add_peers(self):
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""" Add new peers into the profile
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"""
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get_peers_settings()
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def print_welcome():
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""" Print program name and legal information
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"""
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print('WireGuard Mesh Configurator {}'.format(VERSION))
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print('(C) 2018 K4YT3X')
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print('Licensed under GNU GPL v3')
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def print_peer_config(peer):
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""" Print the configuration of a specific peer
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Input takes one Peer object.
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"""
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Avalon.info('Peer {} information summary:'.format(peer.address))
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if peer.address:
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print('Address: {}'.format(peer.address))
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if peer.public_address:
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print('Public Address: {}'.format(peer.public_address))
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if peer.listen_port:
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print('Listen Port: {}'.format(peer.listen_port))
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print('Private Key: {}'.format(peer.private_key))
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if peer.keep_alive:
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print('Keep Alive: {}'.format(peer.keep_alive))
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# print('Preshared Key: {}'.format(peer.preshared_key))
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def enroll_peer():
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""" Enroll a new peer
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Gets all the information needed to generate a
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new Peer class object.
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"""
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# Get peer tunnel address
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while True:
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address = Avalon.gets('Address (leave empty if client only): ')
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result = re.match('^(?:\d{1,3}\.){3}\d{1,3}/{1}(?:\d\d?)?$', address)
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if result is None:
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Avalon.error('Invalid address entered')
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Avalon.error('Please use CIDR notation (e.g. 10.0.0.0/8)')
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continue
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break
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# Get peer public IP address
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while True:
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public_address = Avalon.gets('Public address (leave empty if client only): ')
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result = re.match('^(?:\d{1,3}\.){3}\d{1,3}(?:/\d\d?)?$', public_address)
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if result is None and public_address != '': # field not required
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Avalon.error('Invalid IP address entered')
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continue
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break
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# Get peer listening port
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listen_port = Avalon.gets('Listen port (leave empty for client): ')
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# Get peer private key
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private_key = Avalon.gets('Private key (leave empty for auto generation): ')
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if private_key == '':
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private_key = wg.genkey()
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# Ask if this peer needs to be actively connected
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# if peer is behind NAT and needs to be accessed actively
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# PersistentKeepalive must be turned on (!= 0)
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keep_alive = Avalon.ask('Keep alive?', False)
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"""
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preshared_key = False
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if Avalon.ask('Use a preshared key?', True):
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preshared_key = Avalon.gets('Preshared Key (leave empty for auto generation): ')
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if preshared_key == '':
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preshared_key = wg.genpsk()
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peer = Peer(address, private_key, keep_alive, listen_port, preshared_key)
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"""
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peer = Peer(address, public_address, listen_port, private_key, keep_alive)
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pm.peers.append(peer)
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print_peer_config(peer)
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def generate_configs(output_path):
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""" Generate configuration file for every peer
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This function reads the PEERS list, generates a
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configuration file for every peer, and export into
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the CONFIG_OUTPUT directory.
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"""
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if len(pm.peers) == 0:
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Avalon.warning('No peers configured, exiting')
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exit(0)
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if len(pm.peers) == 1:
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Avalon.warning('Only one peer configured')
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Avalon.info('Generating configuration files')
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# Abort is destination is a file / link
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if os.path.isfile(output_path) or os.path.islink(output_path):
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Avalon.warning('Destination path is a file / link')
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Avalon.warning('Aborting configuration generation')
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return 1
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# Ask if user wants to create the output directory if it doesn't exist
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if not os.path.isdir(output_path):
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if Avalon.ask('Output directory doesn\'t exist. Create output directory?', True):
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os.mkdir(output_path)
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else:
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Avalon.warning('Aborting configuration generation')
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return 1
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# Iterate through all peers and generate configuration for each peer
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for peer in pm.peers:
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Avalon.dbgInfo('Generating configuration file for {}'.format(peer.address))
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with open('{}/{}.conf'.format(output_path, peer.address.split('/')[0]), 'w') as config:
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# Write Interface configuration
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config.write('[Interface]\n')
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config.write('PrivateKey = {}\n'.format(peer.private_key))
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if peer.address != '':
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config.write('Address = {}\n'.format(peer.address))
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if peer.listen_port != '':
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config.write('ListenPort = {}\n'.format(peer.listen_port))
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# Write peers' information
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for p in pm.peers:
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if p.address == peer.address:
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# Skip if peer is self
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continue
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config.write('\n[Peer]\n')
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print(p.private_key)
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config.write('PublicKey = {}\n'.format(wg.pubkey(p.private_key)))
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config.write('AllowedIPs = {}\n'.format(p.address))
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if p.public_address != '':
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config.write('Endpoint = {}:{}\n'.format(p.public_address, p.listen_port))
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if peer.keep_alive:
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config.write('PersistentKeepalive = 25\n')
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if p.preshared_key:
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config.write('PresharedKey = {}\n'.format(p.preshared_key))
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def get_peers_settings():
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""" Get all peers' settings
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Keep enrolling peers until the user aborts.
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"""
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enroll_peer()
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while Avalon.ask('Add new peer?', True):
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enroll_peer()
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def print_help():
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""" Print help messages
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"""
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help_lines = [
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'\n{}Commands are not case-sensitive{}'.format(Avalon.FM.BD, Avalon.FM.RST),
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'Interactive // launch interactive shell',
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'ShowPeers // show all peer information',
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'LoadProfile [profile path] // load profile from profile_path',
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'SaveProfile [profile path] // save profile to profile_path',
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'NewProfile // create new profile',
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'AddPeers // add new peers into the current profile',
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'GenerateConfigs [output directory] // generate configuration files',
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'Exit',
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'Quit',
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'',
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]
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for line in help_lines:
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print(line)
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def command_interpreter(commands):
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""" WGC shell command interpreter
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This function interprets commands from CLI or
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the interactive shell, and passes the parameters
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to the corresponding functions.
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"""
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try:
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# Try to guess what the user is saying
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possibilities = [s for s in COMMANDS if s.lower().startswith(commands[1])]
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if len(possibilities) == 1:
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commands[1] = possibilities[0]
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if commands[1].replace(' ', '') == '':
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result = 0
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elif commands[1].lower() == 'help':
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print_help()
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result = 0
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elif commands[1].lower() == 'showpeers':
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for peer in pm.peers:
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print_peer_config(peer)
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result = 0
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elif commands[1].lower() == 'loadprofile':
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result = pm.load_profile(commands[2])
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elif commands[1].lower() == 'saveprofile':
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result = pm.save_profile(commands[2])
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elif commands[1].lower() == 'newprofile':
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result = pm.new_profile()
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elif commands[1].lower() == 'addpeers':
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result = pm.add_peers()
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elif commands[1].lower() == 'generateconfigs':
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result = generate_configs(commands[2])
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elif commands[1].lower() == 'exit' or commands[1].lower() == 'quit':
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Avalon.warning('Exiting')
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exit(0)
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elif len(possibilities) > 0:
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Avalon.warning('Ambiguous command \"{}\"'.format(commands[1]))
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print('Use \"Help\" command to list available commands')
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result = 1
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else:
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Avalon.error('Invalid command')
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print('Use \"Help\" command to list available commands')
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result = 1
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return result
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except IndexError:
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Avalon.error('Invalid arguments')
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print('Use \"Help\" command to list available commands')
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result = 0
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def main():
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""" WireGuard Mesh Configurator main function
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This function controls the main flow of this program.
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"""
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try:
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if sys.argv[1].lower() == 'help':
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print_help()
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exit(0)
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except IndexError:
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pass
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# Begin command interpreting
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try:
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if sys.argv[1].lower() == 'interactive' or sys.argv[1].lower() == 'int':
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print_welcome()
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# Set command completer
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completer = ShellCompleter(COMMANDS)
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readline.set_completer(completer.complete)
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readline.parse_and_bind('tab: complete')
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# Launch interactive trojan shell
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prompt = '{}[WGC]> {}'.format(Avalon.FM.BD, Avalon.FM.RST)
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while True:
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command_interpreter([''] + input(prompt).split(' '))
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else:
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# Return to shell with command return value
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exit(command_interpreter(sys.argv[0:]))
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except IndexError:
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Avalon.warning('No commands specified')
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print_help()
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exit(0)
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except (KeyboardInterrupt, EOFError):
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Avalon.warning('Exiting')
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exit(0)
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except Exception:
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Avalon.error('Exception caught')
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traceback.print_exc()
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exit(1)
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if __name__ == '__main__':
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# Create global object for WireGuard handler
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wg = WireGuard()
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# Create global object for profile manager
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pm = ProfileManager()
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# Launch main function
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main()
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