421 lines
16 KiB
Python
421 lines
16 KiB
Python
#!/usr/bin/python
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#
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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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ANSIBLE_METADATA = {'metadata_version': '1.1',
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'status': ['preview'],
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'supported_by': 'network'}
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DOCUMENTATION = '''
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---
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module: nxos_ospf_vrf
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extends_documentation_fragment: nxos
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version_added: "2.2"
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short_description: Manages a VRF for an OSPF router.
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description:
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- Manages a VRF for an OSPF router.
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author: Gabriele Gerbino (@GGabriele)
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notes:
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- Tested against NXOSv 7.3.(0)D1(1) on VIRL
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- Value I(default) restores params default value, if any.
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Otherwise it removes the existing param configuration.
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options:
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vrf:
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description:
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- Name of the resource instance. Valid value is a string.
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The name 'default' is a valid VRF representing the global OSPF.
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default: default
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ospf:
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description:
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- Name of the OSPF instance.
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required: true
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router_id:
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description:
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- Router Identifier (ID) of the OSPF router VRF instance.
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default_metric:
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description:
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- Specify the default Metric value. Valid values are an integer
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or the keyword 'default'.
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log_adjacency:
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description:
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- Controls the level of log messages generated whenever a
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neighbor changes state. Valid values are 'log', 'detail',
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and 'default'.
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choices: ['log','detail','default']
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timer_throttle_lsa_start:
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description:
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- Specify the start interval for rate-limiting Link-State
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Advertisement (LSA) generation. Valid values are an integer,
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in milliseconds, or the keyword 'default'.
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timer_throttle_lsa_hold:
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description:
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- Specify the hold interval for rate-limiting Link-State
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Advertisement (LSA) generation. Valid values are an integer,
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in milliseconds, or the keyword 'default'.
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timer_throttle_lsa_max:
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description:
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- Specify the max interval for rate-limiting Link-State
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Advertisement (LSA) generation. Valid values are an integer,
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in milliseconds, or the keyword 'default'.
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timer_throttle_spf_start:
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description:
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- Specify initial Shortest Path First (SPF) schedule delay.
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Valid values are an integer, in milliseconds, or
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the keyword 'default'.
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timer_throttle_spf_hold:
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description:
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- Specify minimum hold time between Shortest Path First (SPF)
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calculations. Valid values are an integer, in milliseconds,
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or the keyword 'default'.
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timer_throttle_spf_max:
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description:
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- Specify the maximum wait time between Shortest Path First (SPF)
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calculations. Valid values are an integer, in milliseconds,
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or the keyword 'default'.
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auto_cost:
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description:
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- Specifies the reference bandwidth used to assign OSPF cost.
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Valid values are an integer, in Mbps, or the keyword 'default'.
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passive_interface:
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description:
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- Setting to C(yes) will suppress routing update on interface.
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version_added: "2.4"
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type: bool
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state:
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description:
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- State of ospf 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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- nxos_ospf_vrf:
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ospf: 1
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timer_throttle_spf_start: 50
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timer_throttle_spf_hold: 1000
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timer_throttle_spf_max: 2000
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timer_throttle_lsa_start: 60
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timer_throttle_lsa_hold: 1100
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timer_throttle_lsa_max: 3000
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vrf: test
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state: present
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'''
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RETURN = '''
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commands:
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description: commands sent to the device
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returned: always
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type: list
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sample: ["router ospf 1", "vrf test", "timers throttle lsa 60 1100 3000",
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"ospf 1", "timers throttle spf 50 1000 2000", "vrf test"]
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'''
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import re
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from ansible.module_utils.network.nxos.nxos import get_config, load_config
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from ansible.module_utils.network.nxos.nxos import nxos_argument_spec, check_args
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from ansible.module_utils.basic import AnsibleModule
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from ansible.module_utils.network.common.config import CustomNetworkConfig
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BOOL_PARAMS = [
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'passive_interface'
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]
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PARAM_TO_COMMAND_KEYMAP = {
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'vrf': 'vrf',
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'router_id': 'router-id',
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'default_metric': 'default-metric',
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'log_adjacency': 'log-adjacency-changes',
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'timer_throttle_lsa_start': 'timers throttle lsa',
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'timer_throttle_lsa_max': 'timers throttle lsa',
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'timer_throttle_lsa_hold': 'timers throttle lsa',
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'timer_throttle_spf_max': 'timers throttle spf',
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'timer_throttle_spf_start': 'timers throttle spf',
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'timer_throttle_spf_hold': 'timers throttle spf',
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'auto_cost': 'auto-cost reference-bandwidth',
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'passive_interface': 'passive-interface default'
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}
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PARAM_TO_DEFAULT_KEYMAP = {
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'timer_throttle_lsa_start': '0',
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'timer_throttle_lsa_max': '5000',
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'timer_throttle_lsa_hold': '5000',
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'timer_throttle_spf_start': '200',
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'timer_throttle_spf_max': '5000',
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'timer_throttle_spf_hold': '1000',
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'auto_cost': '40000',
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'default_metric': '',
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'passive_interface': False,
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'router_id': '',
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'log_adjacency': '',
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}
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def get_existing(module, args):
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existing = {}
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netcfg = CustomNetworkConfig(indent=2, contents=get_config(module))
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parents = ['router ospf {0}'.format(module.params['ospf'])]
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if module.params['vrf'] != 'default':
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parents.append('vrf {0}'.format(module.params['vrf']))
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config = netcfg.get_section(parents)
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for arg in args:
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if arg not in ['ospf', 'vrf']:
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existing[arg] = PARAM_TO_DEFAULT_KEYMAP.get(arg)
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if config:
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if module.params['vrf'] == 'default':
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splitted_config = config.splitlines()
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vrf_index = False
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for index in range(0, len(splitted_config) - 1):
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if 'vrf' in splitted_config[index].strip():
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vrf_index = index
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break
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if vrf_index:
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config = '\n'.join(splitted_config[0:vrf_index])
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splitted_config = config.splitlines()
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for line in splitted_config:
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if 'passive' in line:
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existing['passive_interface'] = True
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elif 'router-id' in line:
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existing['router_id'] = re.search(r'router-id (\S+)', line).group(1)
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elif 'metric' in line:
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existing['default_metric'] = re.search(r'default-metric (\S+)', line).group(1)
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elif 'adjacency' in line:
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log = re.search(r'log-adjacency-changes(?: (\S+))?', line).group(1)
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if log:
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existing['log_adjacency'] = log
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else:
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existing['log_adjacency'] = 'log'
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elif 'auto' in line:
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cost = re.search(r'auto-cost reference-bandwidth (\d+) (\S+)', line).group(1)
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if 'Gbps' in line:
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cost *= 1000
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existing['auto_cost'] = str(cost)
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elif 'timers throttle lsa' in line:
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tmp = re.search(r'timers throttle lsa (\S+) (\S+) (\S+)', line)
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existing['timer_throttle_lsa_start'] = tmp.group(1)
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existing['timer_throttle_lsa_hold'] = tmp.group(2)
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existing['timer_throttle_lsa_max'] = tmp.group(3)
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elif 'timers throttle spf' in line:
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tmp = re.search(r'timers throttle spf (\S+) (\S+) (\S+)', line)
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existing['timer_throttle_spf_start'] = tmp.group(1)
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existing['timer_throttle_spf_hold'] = tmp.group(2)
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existing['timer_throttle_spf_max'] = tmp.group(3)
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existing['vrf'] = module.params['vrf']
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existing['ospf'] = module.params['ospf']
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return existing
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def apply_key_map(key_map, table):
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new_dict = {}
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for key in table:
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new_key = key_map.get(key)
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if new_key:
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new_dict[new_key] = table.get(key)
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return new_dict
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def get_timer_prd(key, proposed):
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if proposed.get(key):
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return proposed.get(key)
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else:
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return PARAM_TO_DEFAULT_KEYMAP.get(key)
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def state_present(module, existing, proposed, candidate):
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commands = list()
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proposed_commands = apply_key_map(PARAM_TO_COMMAND_KEYMAP, proposed)
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existing_commands = apply_key_map(PARAM_TO_COMMAND_KEYMAP, existing)
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for key, value in proposed_commands.items():
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if value is True:
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commands.append(key)
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elif value is False:
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if key == 'passive-interface default':
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if existing_commands.get(key):
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commands.append('no {0}'.format(key))
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else:
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commands.append('no {0}'.format(key))
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elif value == 'default' or value == '':
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if key == 'log-adjacency-changes':
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commands.append('no {0}'.format(key))
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elif existing_commands.get(key):
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existing_value = existing_commands.get(key)
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commands.append('no {0} {1}'.format(key, existing_value))
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else:
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if key == 'timers throttle lsa':
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command = '{0} {1} {2} {3}'.format(
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key,
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get_timer_prd('timer_throttle_lsa_start', proposed),
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get_timer_prd('timer_throttle_lsa_hold', proposed),
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get_timer_prd('timer_throttle_lsa_max', proposed))
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elif key == 'timers throttle spf':
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command = '{0} {1} {2} {3}'.format(
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key,
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get_timer_prd('timer_throttle_spf_start', proposed),
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get_timer_prd('timer_throttle_spf_hold', proposed),
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get_timer_prd('timer_throttle_spf_max', proposed))
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elif key == 'log-adjacency-changes':
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if value == 'log':
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command = key
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elif value == 'detail':
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command = '{0} {1}'.format(key, value)
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elif key == 'auto-cost reference-bandwidth':
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if len(value) < 5:
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command = '{0} {1} Mbps'.format(key, value)
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else:
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value = str(int(value) / 1000)
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command = '{0} {1} Gbps'.format(key, value)
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else:
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command = '{0} {1}'.format(key, value.lower())
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if command not in commands:
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commands.append(command)
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if commands:
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parents = ['router ospf {0}'.format(module.params['ospf'])]
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if module.params['vrf'] != 'default':
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parents.append('vrf {0}'.format(module.params['vrf']))
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candidate.add(commands, parents=parents)
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def state_absent(module, existing, proposed, candidate):
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commands = []
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parents = ['router ospf {0}'.format(module.params['ospf'])]
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if module.params['vrf'] == 'default':
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existing_commands = apply_key_map(PARAM_TO_COMMAND_KEYMAP, existing)
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for key, value in existing_commands.items():
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if value and key != 'vrf':
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if key == 'passive-interface default':
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command = 'no {0}'.format(key)
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elif key == 'timers throttle lsa':
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if (existing['timer_throttle_lsa_start'] !=
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PARAM_TO_DEFAULT_KEYMAP.get('timer_throttle_lsa_start') or
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existing['timer_throttle_lsa_hold'] !=
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PARAM_TO_DEFAULT_KEYMAP.get('timer_throttle_lsa_hold') or
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existing['timer_throttle_lsa_max'] !=
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PARAM_TO_DEFAULT_KEYMAP.get('timer_throttle_lsa_max')):
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command = 'no {0} {1} {2} {3}'.format(
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key,
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existing['timer_throttle_lsa_start'],
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existing['timer_throttle_lsa_hold'],
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existing['timer_throttle_lsa_max'])
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elif key == 'timers throttle spf':
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if (existing['timer_throttle_spf_start'] !=
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PARAM_TO_DEFAULT_KEYMAP.get('timer_throttle_spf_start') or
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existing['timer_throttle_spf_hold'] !=
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PARAM_TO_DEFAULT_KEYMAP.get('timer_throttle_spf_hold') or
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existing['timer_throttle_spf_max'] !=
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PARAM_TO_DEFAULT_KEYMAP.get('timer_throttle_spf_max')):
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command = 'no {0} {1} {2} {3}'.format(
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key,
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existing['timer_throttle_spf_start'],
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existing['timer_throttle_spf_hold'],
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existing['timer_throttle_spf_max'])
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elif key == 'log-adjacency-changes':
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command = 'no {0}'.format(key)
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elif key == 'auto-cost reference-bandwidth':
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if value != PARAM_TO_DEFAULT_KEYMAP.get('auto_cost'):
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command = 'no {0}'.format(key)
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else:
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command = None
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else:
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existing_value = existing_commands.get(key)
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command = 'no {0} {1}'.format(key, existing_value)
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if command:
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if command not in commands:
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commands.append(command)
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else:
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if (existing.get('vrf') and
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existing.get('vrf') == module.params['vrf']):
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commands = ['no vrf {0}'.format(module.params['vrf'])]
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if commands:
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candidate.add(commands, parents=parents)
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def main():
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argument_spec = dict(
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vrf=dict(required=False, type='str', default='default'),
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ospf=dict(required=True, type='str'),
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router_id=dict(required=False, type='str'),
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default_metric=dict(required=False, type='str'),
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log_adjacency=dict(required=False, type='str', choices=['log', 'detail', 'default']),
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timer_throttle_lsa_start=dict(required=False, type='str'),
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timer_throttle_lsa_hold=dict(required=False, type='str'),
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timer_throttle_lsa_max=dict(required=False, type='str'),
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timer_throttle_spf_start=dict(required=False, type='str'),
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timer_throttle_spf_hold=dict(required=False, type='str'),
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timer_throttle_spf_max=dict(required=False, type='str'),
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auto_cost=dict(required=False, type='str'),
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passive_interface=dict(required=False, type='bool'),
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state=dict(choices=['present', 'absent'], default='present', required=False)
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)
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argument_spec.update(nxos_argument_spec)
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module = AnsibleModule(argument_spec=argument_spec, supports_check_mode=True)
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warnings = list()
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check_args(module, warnings)
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result = dict(changed=False, warnings=warnings)
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state = module.params['state']
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args = PARAM_TO_COMMAND_KEYMAP.keys()
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existing = get_existing(module, args)
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proposed_args = dict((k, v) for k, v in module.params.items()
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if v is not None and k in args)
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proposed = {}
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for key, value in proposed_args.items():
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if key != 'interface':
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if str(value).lower() == 'true':
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value = True
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elif str(value).lower() == 'false':
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value = False
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elif str(value).lower() == 'default':
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value = PARAM_TO_DEFAULT_KEYMAP.get(key)
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if value is None:
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value = 'default'
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if existing.get(key) != value:
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proposed[key] = value
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candidate = CustomNetworkConfig(indent=3)
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if state == 'present':
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state_present(module, existing, proposed, candidate)
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if state == 'absent' and existing:
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state_absent(module, existing, proposed, candidate)
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if candidate:
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candidate = candidate.items_text()
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load_config(module, candidate)
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result['changed'] = True
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result['commands'] = candidate
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else:
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result['commands'] = []
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module.exit_json(**result)
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if __name__ == '__main__':
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main()
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