mirror of
https://github.com/ansible-collections/community.general.git
synced 2024-09-14 20:13:21 +02:00
370 lines
12 KiB
Python
370 lines
12 KiB
Python
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#!/usr/bin/python
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# -*- coding: utf-8 -*-
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from __future__ import (absolute_import, division, print_function)
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__metaclass__ = type
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#
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# Copyright (C) 2019 Lenovo.
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# (c) 2017, Ansible by Red Hat, inc
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# This file is part of Ansible
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#
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# Ansible is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# Ansible 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 Ansible. If not, see <http://www.gnu.org/licenses/>.
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#
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# Module to work on management of local users on Lenovo CNOS Switches
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# Lenovo Networking
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#
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ANSIBLE_METADATA = {'metadata_version': '1.1',
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'status': ['preview'],
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'supported_by': 'community'}
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DOCUMENTATION = '''
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---
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module: cnos_vrf
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author: "Anil Kumar Muraleedharan (@amuraleedhar)"
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short_description: Manage VRFs on Lenovo CNOS network devices
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description:
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- This module provides declarative management of VRFs
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on Lenovo CNOS network devices.
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notes:
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- Tested against CNOS 10.9.1
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options:
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name:
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description:
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- Name of the VRF.
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required: true
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rd:
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description:
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- Route distinguisher of the VRF
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interfaces:
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description:
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- Identifies the set of interfaces that
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should be configured in the VRF. Interfaces must be routed
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interfaces in order to be placed into a VRF. The name of interface
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should be in expanded format and not abbreviated.
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associated_interfaces:
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description:
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- This is a intent option and checks the operational state of the for
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given vrf C(name) for associated interfaces. If the value in the
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C(associated_interfaces) does not match with the operational state of
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vrf interfaces on device it will result in failure.
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aggregate:
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description: List of VRFs contexts
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purge:
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description:
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- Purge VRFs not defined in the I(aggregate) parameter.
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default: no
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type: bool
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delay:
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description:
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- Time in seconds to wait before checking for the operational state on
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remote device. This wait is applicable for operational state arguments.
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default: 10
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state:
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description:
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- State of the VRF configuration.
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default: present
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choices: ['present', 'absent']
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'''
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EXAMPLES = """
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- name: Create vrf
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cnos_vrf:
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name: test
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rd: 1:200
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interfaces:
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- Ethernet1/33
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state: present
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- name: Delete VRFs
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cnos_vrf:
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name: test
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state: absent
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- name: Create aggregate of VRFs with purge
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cnos_vrf:
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aggregate:
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- { name: test4, rd: "1:204" }
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- { name: test5, rd: "1:205" }
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state: present
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purge: yes
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- name: Delete aggregate of VRFs
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cnos_vrf:
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aggregate:
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- name: test2
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- name: test3
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- name: test4
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- name: test5
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state: absent
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"""
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RETURN = """
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commands:
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description: The list of configuration mode commands to send to the device
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returned: always
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type: list
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sample:
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- vrf context test
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- rd 1:100
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- interface Ethernet1/44
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- vrf member test
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"""
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import re
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import time
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from copy import deepcopy
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from ansible.module_utils.basic import AnsibleModule
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from ansible_collections.ansible.netcommon.plugins.module_utils.network.common.utils import remove_default_spec
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from ansible_collections.community.general.plugins.module_utils.network.cnos.cnos import load_config, run_commands
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from ansible_collections.community.general.plugins.module_utils.network.cnos.cnos import cnos_argument_spec, check_args
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def search_obj_in_list(name, lst):
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for o in lst:
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if o['name'] == name:
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return o
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def get_interface_type(interface):
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intf_type = 'unknown'
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if interface.upper()[:2] in ('ET', 'GI', 'FA', 'TE', 'FO', 'HU', 'TWE'):
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intf_type = 'ethernet'
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elif interface.upper().startswith('VL'):
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intf_type = 'svi'
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elif interface.upper().startswith('LO'):
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intf_type = 'loopback'
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elif interface.upper()[:2] in ('MG', 'MA'):
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intf_type = 'management'
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elif interface.upper().startswith('PO'):
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intf_type = 'portchannel'
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elif interface.upper().startswith('NV'):
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intf_type = 'nve'
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return intf_type
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def is_switchport(name, module):
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intf_type = get_interface_type(name)
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if intf_type in ('ethernet', 'portchannel'):
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config = run_commands(module,
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['show interface {0} switchport'.format(name)])[0]
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match = re.search(r'Switchport : enabled', config)
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return bool(match)
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return False
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def map_obj_to_commands(updates, module):
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commands = list()
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want, have = updates
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state = module.params['state']
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purge = module.params['purge']
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for w in want:
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name = w['name']
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rd = w['rd']
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interfaces = w['interfaces']
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obj_in_have = search_obj_in_list(name, have)
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if name == 'default':
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module.fail_json(msg='VRF context default is reserved')
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elif len(name) > 63:
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module.fail_json(msg='VRF name is too long')
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if state == 'absent':
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if name == 'management':
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module.fail_json(msg='Management VRF context cannot be deleted')
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if obj_in_have:
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commands.append('no vrf context %s' % name)
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elif state == 'present':
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if not obj_in_have:
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commands.append('vrf context %s' % name)
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if rd is not None:
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commands.append('rd %s' % rd)
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if w['interfaces']:
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for i in w['interfaces']:
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commands.append('interface %s' % i)
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commands.append('vrf member %s' % w['name'])
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else:
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if w['rd'] is not None and w['rd'] != obj_in_have['rd']:
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commands.append('vrf context %s' % w['name'])
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commands.append('rd %s' % w['rd'])
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if w['interfaces']:
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if not obj_in_have['interfaces']:
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for i in w['interfaces']:
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commands.append('interface %s' % i)
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commands.append('vrf member %s' % w['name'])
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elif set(w['interfaces']) != obj_in_have['interfaces']:
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missing_interfaces = list(set(w['interfaces']) - set(obj_in_have['interfaces']))
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for i in missing_interfaces:
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commands.append('interface %s' % i)
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commands.append('vrf member %s' % w['name'])
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if purge:
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for h in have:
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obj_in_want = search_obj_in_list(h['name'], want)
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if not obj_in_want:
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commands.append('no vrf context %s' % h['name'])
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return commands
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def map_config_to_obj(module):
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objs = []
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output = run_commands(module, {'command': 'show vrf'})
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if output is not None:
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vrfText = output[0].strip()
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vrfList = vrfText.split('VRF')
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for vrfItem in vrfList:
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if 'FIB ID' in vrfItem:
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obj = dict()
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list_of_words = vrfItem.split()
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vrfName = list_of_words[0]
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obj['name'] = vrfName[:-1]
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obj['rd'] = list_of_words[list_of_words.index('RD') + 1]
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start = False
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obj['interfaces'] = []
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for intName in list_of_words:
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if 'Interfaces' in intName:
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start = True
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if start is True:
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if '!' not in intName and 'Interfaces' not in intName:
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obj['interfaces'].append(intName.strip().lower())
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objs.append(obj)
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else:
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module.fail_json(msg='Could not fetch VRF details from device')
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return objs
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def map_params_to_obj(module):
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obj = []
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aggregate = module.params.get('aggregate')
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if aggregate:
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for item in aggregate:
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for key in item:
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if item.get(key) is None:
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item[key] = module.params[key]
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if item.get('interfaces'):
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item['interfaces'] = [intf.replace(" ", "").lower() for intf in item.get('interfaces') if intf]
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if item.get('associated_interfaces'):
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item['associated_interfaces'] = [intf.replace(" ", "").lower() for intf in item.get('associated_interfaces') if intf]
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obj.append(item.copy())
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else:
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obj.append({
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'name': module.params['name'],
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'state': module.params['state'],
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'rd': module.params['rd'],
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'interfaces': [intf.replace(" ", "").lower() for intf in module.params['interfaces']] if module.params['interfaces'] else [],
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'associated_interfaces': [intf.replace(" ", "").lower() for intf in
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module.params['associated_interfaces']] if module.params['associated_interfaces'] else []
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})
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return obj
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def check_declarative_intent_params(want, module, result):
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have = None
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is_delay = False
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for w in want:
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if w.get('associated_interfaces') is None:
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continue
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if result['changed'] and not is_delay:
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time.sleep(module.params['delay'])
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is_delay = True
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if have is None:
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have = map_config_to_obj(module)
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for i in w['associated_interfaces']:
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obj_in_have = search_obj_in_list(w['name'], have)
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if obj_in_have:
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interfaces = obj_in_have.get('interfaces')
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if interfaces is not None and i not in interfaces:
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module.fail_json(msg="Interface %s not configured on vrf %s" % (i, w['name']))
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def main():
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""" main entry point for module execution
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"""
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element_spec = dict(
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name=dict(),
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interfaces=dict(type='list'),
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associated_interfaces=dict(type='list'),
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delay=dict(default=10, type='int'),
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rd=dict(),
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state=dict(default='present', choices=['present', 'absent'])
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)
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aggregate_spec = deepcopy(element_spec)
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# remove default in aggregate spec, to handle common arguments
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remove_default_spec(aggregate_spec)
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argument_spec = dict(
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aggregate=dict(type='list', elements='dict', options=aggregate_spec),
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purge=dict(default=False, type='bool')
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)
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argument_spec.update(element_spec)
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required_one_of = [['name', 'aggregate']]
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mutually_exclusive = [['name', 'aggregate']]
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module = AnsibleModule(argument_spec=argument_spec,
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required_one_of=required_one_of,
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mutually_exclusive=mutually_exclusive,
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supports_check_mode=True)
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warnings = list()
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check_args(module, warnings)
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result = {'changed': False}
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if warnings:
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result['warnings'] = warnings
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want = map_params_to_obj(module)
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for w in want:
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name = w['name']
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name = name.lower()
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if is_switchport(name, module):
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module.fail_json(msg='Ensure interface is configured to be a L3'
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'\nport first before using this module. You can use'
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'\nthe cnos_interface module for this.')
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have = map_config_to_obj(module)
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commands = map_obj_to_commands((want, have), module)
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result['commands'] = commands
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if commands:
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if not module.check_mode:
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load_config(module, commands)
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result['changed'] = True
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check_declarative_intent_params(want, module, result)
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module.exit_json(**result)
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if __name__ == '__main__':
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main()
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