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			136 lines
		
	
	
		
			5.5 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			136 lines
		
	
	
		
			5.5 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
| # coding=utf8
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| ## Copyright (c) 2020 Arseniy Kuznetsov
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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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| 
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| import ssl
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| import socket
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| import collections
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| from datetime import datetime
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| from mktxp.cli.config.config import config_handler
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| 
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| # Fix UTF-8 decode error
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| # See: https://github.com/akpw/mktxp/issues/47
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| # The RouterOS-api implicitly assumes that the API response is UTF-8 encoded.
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| # But Mikrotik uses latin-1.
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| # Because the upstream dependency is currently abandoned, this is a quick hack to solve the issue
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| 
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| MIKROTIK_ENCODING = 'latin-1'
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| import routeros_api.api_structure
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| routeros_api.api_structure.StringField.get_python_value = lambda _, bytes:  bytes.decode(MIKROTIK_ENCODING) 
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| routeros_api.api_structure.default_structure = collections.defaultdict(routeros_api.api_structure.StringField)
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| 
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| from routeros_api import RouterOsApiPool
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| 
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| 
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| class RouterAPIConnectionError(Exception):
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|     pass
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| 
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| 
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| class RouterAPIConnection:
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|     ''' Base wrapper interface for the routeros_api library
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|     '''            
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|     def __init__(self, router_name, config_entry):
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|         self.router_name = router_name
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|         self.config_entry = config_entry
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|         self.last_failure_timestamp = self.successive_failure_count = 0
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|         
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|         ctx = None
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|         if self.config_entry.use_ssl and self.config_entry.no_ssl_certificate:
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|             ctx = ssl.create_default_context()
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|             ctx.set_ciphers('ADH:@SECLEVEL=0')       
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| 
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|         self.connection = RouterOsApiPool(
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|                 host = self.config_entry.hostname,
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|                 username = self.config_entry.username,
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|                 password = self.config_entry.password,
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|                 port = self.config_entry.port,
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|                 plaintext_login = True,
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|                 use_ssl = self.config_entry.use_ssl,
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|                 ssl_verify = self.config_entry.ssl_certificate_verify,
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|                 ssl_context = ctx)
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|         
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|         self.connection.socket_timeout = config_handler.system_entry.socket_timeout
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|         self.api = None
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| 
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|     def is_connected(self):
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|         if not (self.connection and self.connection.connected and self.api):
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|             return False
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|         try:
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|             self.api.get_resource('/system/identity').get()
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|             return True
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|         except (socket.error, socket.timeout, Exception) as exc:
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|             self._set_connect_state(success = False, exc = exc)
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|             return False
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| 
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|     def connect(self):
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|         connect_time = datetime.now()
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|         if self.is_connected() or self._in_connect_timeout(connect_time.timestamp()):
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|             return
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|         try:
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|             print(f'Connecting to router {self.router_name}@{self.config_entry.hostname}')
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|             try:
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|                 self.api = self.connection.get_api()
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|             except:                
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|                 self.connection.plaintext_login = False
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|                 self.api = self.connection.get_api()
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| 
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|             self._set_connect_state(success = True, connect_time = connect_time)
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|         except (socket.error, socket.timeout, Exception) as exc:
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|             self._set_connect_state(success = False, connect_time = connect_time, exc = exc)
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|             #raise RouterAPIConnectionError
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| 
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|     def router_api(self):
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|         if not self.is_connected():
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|             self.connect()
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|         return self.api
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| 
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|     def _in_connect_timeout(self, connect_timestamp):
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|         connect_delay = self._connect_delay()
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|         if (connect_timestamp - self.last_failure_timestamp) < connect_delay:
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|             if config_handler.system_entry.verbose_mode: 
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|                 print(f'{self.router_name}@{self.config_entry.hostname}: in connect timeout, {int(connect_delay - (connect_timestamp - self.last_failure_timestamp))}secs remaining')
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|                 print(f'Successive failure count: {self.successive_failure_count}')
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|             return True
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|         if config_handler.system_entry.verbose_mode: 
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|             print(f'{self.router_name}@{self.config_entry.hostname}: OK to connect')
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|             if self.last_failure_timestamp > 0:
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|                 print(f'Seconds since last failure: {connect_timestamp - self.last_failure_timestamp}')
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|                 print(f'Prior successive failure count: {self.successive_failure_count}')
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|         return False
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| 
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|     def _connect_delay(self):
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|         mktxp_entry = config_handler.system_entry
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|         connect_delay = (1 + self.successive_failure_count / mktxp_entry.delay_inc_div) * mktxp_entry.initial_delay_on_failure
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|         return connect_delay if connect_delay < mktxp_entry.max_delay_on_failure else mktxp_entry.max_delay_on_failure
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| 
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| 
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|     def _set_connect_state(self, success = False, connect_time = datetime.now(), exc = None):
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|         if success:
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|             self.last_failure_timestamp = 0
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|             self.successive_failure_count = 0
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|             print(f'{connect_time.strftime("%Y-%m-%d %H:%M:%S")} Connection to router {self.router_name}@{self.config_entry.hostname} has been established')
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|         else:
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|             self.api = None
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|             self.successive_failure_count += 1
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|             self.last_failure_timestamp = connect_time.timestamp() 
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|             print(f'{connect_time.strftime("%Y-%m-%d %H:%M:%S")} Connection to router {self.router_name}@{self.config_entry.hostname} has failed: {exc}')
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| 
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