7f55c9fc8e
* Renamed the Modules from dnos* -> dellos*, updated copyright, corrected doc issues * Removed the unwanted module import
556 lines
17 KiB
Python
556 lines
17 KiB
Python
#!/usr/bin/python
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#
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# (c) 2015 Peter Sprygada, <psprygada@ansible.com>
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#
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# Copyright (c) 2016 Dell Inc.
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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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DOCUMENTATION = """
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---
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module: dellos9_facts
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version_added: "2.2"
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author: "Dhivya P (@dhivyap)"
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short_description: Collect facts from remote devices running Dell OS9
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description:
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- Collects a base set of device facts from a remote device that
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is running Dell OS9. This module prepends all of the
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base network fact keys with C(ansible_net_<fact>). The facts
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module will always collect a base set of facts from the device
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and can enable or disable collection of additional facts.
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extends_documentation_fragment: dellos9
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options:
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gather_subset:
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description:
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- When supplied, this argument will restrict the facts collected
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to a given subset. Possible values for this argument include
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all, hardware, config, and interfaces. Can specify a list of
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values to include a larger subset. Values can also be used
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with an initial M(!) to specify that a specific subset should
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not be collected.
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required: false
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default: '!config'
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"""
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EXAMPLES = """
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# Collect all facts from the device
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- dellos9_facts:
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gather_subset: all
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# Collect only the config and default facts
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- dellos9_facts:
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gather_subset:
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- config
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# Do not collect hardware facts
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- dellos9_facts:
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gather_subset:
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- "!hardware"
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"""
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RETURN = """
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ansible_net_gather_subset:
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description: The list of fact subsets collected from the device
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returned: always
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type: list
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# default
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ansible_net_model:
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description: The model name returned from the device
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returned: always
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type: str
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ansible_net_serialnum:
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description: The serial number of the remote device
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returned: always
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type: str
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ansible_net_version:
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description: The operating system version running on the remote device
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returned: always
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type: str
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ansible_net_hostname:
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description: The configured hostname of the device
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returned: always
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type: string
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ansible_net_image:
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description: The image file the device is running
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returned: always
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type: string
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# hardware
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ansible_net_filesystems:
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description: All file system names available on the device
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returned: when hardware is configured
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type: list
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ansible_net_memfree_mb:
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description: The available free memory on the remote device in Mb
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returned: when hardware is configured
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type: int
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ansible_net_memtotal_mb:
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description: The total memory on the remote device in Mb
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returned: when hardware is configured
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type: int
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# config
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ansible_net_config:
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description: The current active config from the device
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returned: when config is configured
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type: str
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# interfaces
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ansible_net_all_ipv4_addresses:
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description: All IPv4 addresses configured on the device
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returned: when interfaces is configured
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type: list
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ansible_net_all_ipv6_addresses:
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description: All IPv6 addresses configured on the device
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returned: when interfaces is configured
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type: list
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ansible_net_interfaces:
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description: A hash of all interfaces running on the system
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returned: when interfaces is configured
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type: dict
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ansible_net_neighbors:
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description: The list of LLDP neighbors from the remote device
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returned: when interfaces is configured
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type: dict
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"""
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import re
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import itertools
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from ansible.module_utils.netcli import CommandRunner
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from ansible.module_utils.network import NetworkModule
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import ansible.module_utils.dellos9
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class FactsBase(object):
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def __init__(self, runner):
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self.runner = runner
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self.facts = dict()
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self.commands()
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class Default(FactsBase):
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def commands(self):
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self.runner.add_command('show version')
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self.runner.add_command('show inventory')
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self.runner.add_command('show running-config | grep hostname')
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def populate(self):
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data = self.runner.get_command('show version')
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self.facts['version'] = self.parse_version(data)
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self.facts['model'] = self.parse_model(data)
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self.facts['image'] = self.parse_image(data)
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data = self.runner.get_command('show inventory')
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self.facts['serialnum'] = self.parse_serialnum(data)
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data = self.runner.get_command('show running-config | grep hostname')
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self.facts['hostname'] = self.parse_hostname(data)
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def parse_version(self, data):
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match = re.search(r'Software Version:\s*(.+)', data)
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if match:
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return match.group(1)
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def parse_hostname(self, data):
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match = re.search(r'^hostname (.+)', data, re.M)
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if match:
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return match.group(1)
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def parse_model(self, data):
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match = re.search(r'^System Type:\s*(.+)', data, re.M)
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if match:
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return match.group(1)
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def parse_image(self, data):
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match = re.search(r'image file is "(.+)"', data)
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if match:
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return match.group(1)
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def parse_serialnum(self, data):
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for line in data.split('\n'):
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if line.startswith('*'):
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match = re.search(
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r'\s+(\S+)\s+(\S+)\s+(\S+)\s+(\S+)', line, re.M)
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if match:
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return match.group(3)
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class Hardware(FactsBase):
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def commands(self):
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self.runner.add_command('show file-systems')
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self.runner.add_command('show memory | except Processor')
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def populate(self):
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data = self.runner.get_command('show file-systems')
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self.facts['filesystems'] = self.parse_filesystems(data)
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data = self.runner.get_command('show memory | except Processor')
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match = re.findall('\s(\d+)\s', data)
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if match:
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self.facts['memtotal_mb'] = int(match[0]) / 1024
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self.facts['memfree_mb'] = int(match[2]) / 1024
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def parse_filesystems(self, data):
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return re.findall(r'\s(\S+):$', data, re.M)
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class Config(FactsBase):
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def commands(self):
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self.runner.add_command('show running-config')
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def populate(self):
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self.facts['config'] = self.runner.get_command('show running-config')
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class Interfaces(FactsBase):
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def commands(self):
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self.runner.add_command('show interfaces')
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self.runner.add_command('show ipv6 interface')
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self.runner.add_command('show lldp neighbors detail')
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def populate(self):
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self.facts['all_ipv4_addresses'] = list()
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self.facts['all_ipv6_addresses'] = list()
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data = self.runner.get_command('show interfaces')
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interfaces = self.parse_interfaces(data)
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for key in interfaces.keys():
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if "ManagementEthernet" in key:
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temp_parsed = interfaces[key]
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del interfaces[key]
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interfaces.update(self.parse_mgmt_interfaces(temp_parsed))
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for key in interfaces.keys():
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if "Vlan" in key:
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temp_parsed = interfaces[key]
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del interfaces[key]
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interfaces.update(self.parse_vlan_interfaces(temp_parsed))
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self.facts['interfaces'] = self.populate_interfaces(interfaces)
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data = self.runner.get_command('show ipv6 interface')
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if len(data) > 0:
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data = self.parse_ipv6_interfaces(data)
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self.populate_ipv6_interfaces(data)
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data = self.runner.get_command('show inventory')
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if 'LLDP' in self.get_protocol_list(data):
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neighbors = self.runner.get_command('show lldp neighbors detail')
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self.facts['neighbors'] = self.parse_neighbors(neighbors)
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def get_protocol_list(self, data):
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start = False
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protocol_list = list()
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for line in data.split('\n'):
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match = re.search(r'Software Protocol Configured\s*', line)
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if match:
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start = True
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continue
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if start:
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line = line.strip()
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if line.isalnum():
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protocol_list.append(line)
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return protocol_list
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def populate_interfaces(self, interfaces):
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facts = dict()
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for key, value in interfaces.iteritems():
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intf = dict()
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intf['description'] = self.parse_description(value)
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intf['macaddress'] = self.parse_macaddress(value)
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ipv4 = self.parse_ipv4(value)
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intf['ipv4'] = self.parse_ipv4(value)
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if ipv4:
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self.add_ip_address(ipv4['address'], 'ipv4')
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intf['mtu'] = self.parse_mtu(value)
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intf['bandwidth'] = self.parse_bandwidth(value)
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intf['mediatype'] = self.parse_mediatype(value)
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intf['duplex'] = self.parse_duplex(value)
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intf['lineprotocol'] = self.parse_lineprotocol(value)
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intf['operstatus'] = self.parse_operstatus(value)
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intf['type'] = self.parse_type(value)
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facts[key] = intf
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return facts
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def populate_ipv6_interfaces(self, data):
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for key, value in data.iteritems():
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self.facts['interfaces'][key]['ipv6'] = list()
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addresses = re.findall(r'\s+(.+), subnet', value, re.M)
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subnets = re.findall(r', subnet is (\S+)', value, re.M)
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for addr, subnet in itertools.izip(addresses, subnets):
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ipv6 = dict(address=addr.strip(), subnet=subnet.strip())
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self.add_ip_address(addr.strip(), 'ipv6')
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self.facts['interfaces'][key]['ipv6'].append(ipv6)
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def add_ip_address(self, address, family):
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if family == 'ipv4':
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self.facts['all_ipv4_addresses'].append(address)
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else:
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self.facts['all_ipv6_addresses'].append(address)
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def parse_neighbors(self, neighbors):
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facts = dict()
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for entry in neighbors.split(
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'========================================================================'):
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if entry == '':
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continue
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intf = self.parse_lldp_intf(entry)
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if intf not in facts:
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facts[intf] = list()
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fact = dict()
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fact['host'] = self.parse_lldp_host(entry)
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fact['port'] = self.parse_lldp_port(entry)
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facts[intf].append(fact)
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return facts
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def parse_interfaces(self, data):
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parsed = dict()
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newline_count = 0
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interface_start = True
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for line in data.split('\n'):
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if interface_start:
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newline_count = 0
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if len(line) == 0:
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newline_count += 1
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if newline_count == 2:
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interface_start = True
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continue
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else:
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match = re.match(r'^(\S+) (\S+)', line)
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if match and interface_start:
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interface_start = False
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key = match.group(0)
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parsed[key] = line
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else:
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parsed[key] += '\n%s' % line
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return parsed
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def parse_mgmt_interfaces(self, data):
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parsed = dict()
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interface_start = True
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for line in data.split('\n'):
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match = re.match(r'^(\S+) (\S+)', line)
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if "Time since" in line:
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interface_start = True
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parsed[key] += '\n%s' % line
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continue
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elif match and interface_start:
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interface_start = False
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key = match.group(0)
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parsed[key] = line
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else:
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parsed[key] += '\n%s' % line
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return parsed
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def parse_vlan_interfaces(self, data):
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parsed = dict()
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interface_start = True
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line_before_end = False
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for line in data.split('\n'):
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match = re.match(r'^(\S+) (\S+)', line)
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match_endline = re.match(r'^\s*\d+ packets, \d+ bytes$', line)
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if "Output Statistics" in line:
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line_before_end = True
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parsed[key] += '\n%s' % line
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elif match_endline and line_before_end:
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line_before_end = False
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interface_start = True
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parsed[key] += '\n%s' % line
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elif match and interface_start:
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interface_start = False
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key = match.group(0)
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parsed[key] = line
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else:
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parsed[key] += '\n%s' % line
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return parsed
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def parse_ipv6_interfaces(self, data):
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parsed = dict()
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for line in data.split('\n'):
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if len(line) == 0:
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continue
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elif line[0] == ' ':
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parsed[key] += '\n%s' % line
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else:
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match = re.match(r'^(\S+) (\S+)', line)
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if match:
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key = match.group(0)
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parsed[key] = line
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return parsed
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def parse_description(self, data):
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match = re.search(r'Description: (.+)$', data, re.M)
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if match:
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return match.group(1)
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def parse_macaddress(self, data):
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match = re.search(r'address is (\S+)', data)
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if match:
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if match.group(1) != "not":
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return match.group(1)
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def parse_ipv4(self, data):
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match = re.search(r'Internet address is (\S+)', data)
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if match:
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if match.group(1) != "not":
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addr, masklen = match.group(1).split('/')
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return dict(address=addr, masklen=int(masklen))
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def parse_mtu(self, data):
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match = re.search(r'MTU (\d+)', data)
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if match:
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return int(match.group(1))
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def parse_bandwidth(self, data):
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match = re.search(r'LineSpeed (\d+)', data)
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if match:
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return int(match.group(1))
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def parse_duplex(self, data):
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match = re.search(r'(\w+) duplex', data, re.M)
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if match:
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return match.group(1)
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def parse_mediatype(self, data):
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media = re.search(r'(.+) media present, (.+)', data, re.M)
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if media:
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match = re.search(r'type is (.+)$', media.group(0), re.M)
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return match.group(1)
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def parse_type(self, data):
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match = re.search(r'Hardware is (.+),', data, re.M)
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if match:
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return match.group(1)
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def parse_lineprotocol(self, data):
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match = re.search(r'line protocol is (\w+[ ]?\w*)\(?.*\)?$', data, re.M)
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if match:
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return match.group(1)
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def parse_operstatus(self, data):
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match = re.search(r'^(?:.+) is (.+),', data, re.M)
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if match:
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return match.group(1)
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def parse_lldp_intf(self, data):
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match = re.search(r'^\sLocal Interface (\S+\s\S+)', data, re.M)
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if match:
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return match.group(1)
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def parse_lldp_host(self, data):
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match = re.search(r'Remote System Name: (.+)$', data, re.M)
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if match:
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return match.group(1)
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def parse_lldp_port(self, data):
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match = re.search(r'Remote Port ID: (.+)$', data, re.M)
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if match:
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return match.group(1)
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FACT_SUBSETS = dict(
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default=Default,
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hardware=Hardware,
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interfaces=Interfaces,
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config=Config,
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)
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VALID_SUBSETS = frozenset(FACT_SUBSETS.keys())
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def main():
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spec = dict(
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gather_subset=dict(default=['!config'], type='list')
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)
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module = NetworkModule(argument_spec=spec, supports_check_mode=True)
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gather_subset = module.params['gather_subset']
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runable_subsets = set()
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exclude_subsets = set()
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for subset in gather_subset:
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if subset == 'all':
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runable_subsets.update(VALID_SUBSETS)
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continue
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if subset.startswith('!'):
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subset = subset[1:]
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if subset == 'all':
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exclude_subsets.update(VALID_SUBSETS)
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continue
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exclude = True
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else:
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exclude = False
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if subset not in VALID_SUBSETS:
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module.fail_json(msg='Bad subset')
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if exclude:
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exclude_subsets.add(subset)
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else:
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runable_subsets.add(subset)
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if not runable_subsets:
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runable_subsets.update(VALID_SUBSETS)
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runable_subsets.difference_update(exclude_subsets)
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runable_subsets.add('default')
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facts = dict()
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facts['gather_subset'] = list(runable_subsets)
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runner = CommandRunner(module)
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|
|
instances = list()
|
|
for key in runable_subsets:
|
|
runs = FACT_SUBSETS[key](runner)
|
|
instances.append(runs)
|
|
|
|
runner.run()
|
|
|
|
try:
|
|
for inst in instances:
|
|
inst.populate()
|
|
facts.update(inst.facts)
|
|
except Exception:
|
|
module.exit_json(out=module.from_json(runner.items))
|
|
|
|
ansible_facts = dict()
|
|
for key, value in facts.iteritems():
|
|
key = 'ansible_net_%s' % key
|
|
ansible_facts[key] = value
|
|
|
|
module.exit_json(ansible_facts=ansible_facts)
|
|
|
|
|
|
if __name__ == '__main__':
|
|
main()
|