New Module: vyos_ping (#50193)

* New module for vyos ping functionality

Signed-off-by: NilashishC <nilashishchakraborty8@gmail.com>

* Add some new parameters

Signed-off-by: NilashishC <nilashishchakraborty8@gmail.com>

* Need spaces

Signed-off-by: NilashishC <nilashishchakraborty8@gmail.com>

* Fix pylint errors

Signed-off-by: NilashishC <nilashishchakraborty8@gmail.com>

* Fix pylint errors

Signed-off-by: NilashishC <nilashishchakraborty8@gmail.com>

* Fix docs

Signed-off-by: NilashishC <nilashishchakraborty8@gmail.com>

* Fix docs

Signed-off-by: NilashishC <nilashishchakraborty8@gmail.com>

* Fix docs

Signed-off-by: NilashishC <nilashishchakraborty8@gmail.com>
pull/50592/head
Nilashish Chakraborty 6 years ago committed by GitHub
parent 1e09e21ba1
commit 7845373f96
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@ -0,0 +1,246 @@
#!/usr/bin/python
# -*- coding: utf-8 -*-
# (c) 2017, Ansible by Red Hat, inc
#
# This file is part of Ansible by Red Hat
#
# Ansible is free software: you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation, either version 3 of the License, or
# (at your option) any later version.
#
# Ansible is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with Ansible. If not, see <http://www.gnu.org/licenses/>.
#
from __future__ import absolute_import, division, print_function
__metaclass__ = type
ANSIBLE_METADATA = {'metadata_version': '1.1',
'status': ['preview'],
'supported_by': 'community'}
DOCUMENTATION = """
---
module: vyos_ping
short_description: Tests reachability using ping from VyOS network devices
description:
- Tests reachability using ping from a VyOS device to a remote destination.
- Tested against VyOS 1.1.8 (helium)
- For a general purpose network module, see the M(net_ping) module.
- For Windows targets, use the M(win_ping) module instead.
- For targets running Python, use the M(ping) module instead.
author:
- Nilashish Chakraborty (@nilashishc)
version_added: '2.8'
options:
dest:
description:
- The IP Address or hostname (resolvable by the device) of the remote node.
required: true
count:
description:
- Number of packets to send to check reachability.
type: int
default: 5
source:
description:
- The source interface or IP Address to use while sending the ping packet(s).
ttl:
description:
- The time-to-live value for the ICMP packet(s).
type: int
size:
description:
- Determines the size (in bytes) of the ping packet(s).
type: int
interval:
description:
- Determines the interval (in seconds) between consecutive pings.
type: int
state:
description:
- Determines if the expected result is success or fail.
choices: [ absent, present ]
default: present
notes:
- For a general purpose network module, see the M(net_ping) module.
- For Windows targets, use the M(win_ping) module instead.
- For targets running Python, use the M(ping) module instead.
extends_documentation_fragment: vyos
"""
EXAMPLES = """
- name: Test reachability to 10.10.10.10
vyos_ping:
dest: 10.10.10.10
- name: Test reachability to 10.20.20.20 using source and ttl set
vyos_ping:
dest: 10.20.20.20
source: eth0
ttl: 128
- name: Test unreachability to 10.30.30.30 using interval
vyos_ping:
dest: 10.30.30.30
interval: 3
state: absent
- name: Test reachability to 10.40.40.40 setting count and source
vyos_ping:
dest: 10.40.40.40
source: eth1
count: 20
size: 512
"""
RETURN = """
commands:
description: List of commands sent.
returned: always
type: list
sample: ["ping 10.8.38.44 count 10 interface eth0 ttl 128"]
packet_loss:
description: Percentage of packets lost.
returned: always
type: str
sample: "0%"
packets_rx:
description: Packets successfully received.
returned: always
type: int
sample: 20
packets_tx:
description: Packets successfully transmitted.
returned: always
type: int
sample: 20
rtt:
description: The round trip time (RTT) stats.
returned: when ping succeeds
type: dict
sample: {"avg": 2, "max": 8, "min": 1, "mdev": 24}
"""
from ansible.module_utils.basic import AnsibleModule
from ansible.module_utils.network.vyos.vyos import run_commands
from ansible.module_utils.network.vyos.vyos import vyos_argument_spec
import re
def main():
""" main entry point for module execution
"""
argument_spec = dict(
count=dict(type="int", default=5),
dest=dict(type="str", required=True),
source=dict(type="str"),
ttl=dict(type='int'),
size=dict(type='int'),
interval=dict(type='int'),
state=dict(type="str", choices=["absent", "present"], default="present"),
)
argument_spec.update(vyos_argument_spec)
module = AnsibleModule(argument_spec=argument_spec)
count = module.params["count"]
dest = module.params["dest"]
source = module.params["source"]
size = module.params["size"]
ttl = module.params["ttl"]
interval = module.params["interval"]
warnings = list()
results = {}
if warnings:
results["warnings"] = warnings
results["commands"] = [build_ping(dest, count, size, interval, source, ttl)]
ping_results = run_commands(module, commands=results["commands"])
ping_results_list = ping_results[0].split("\n")
rtt_info, rate_info = None, None
for line in ping_results_list:
if line.startswith('rtt'):
rtt_info = line
if line.startswith('%s packets transmitted' % count):
rate_info = line
if rtt_info:
rtt = parse_rtt(rtt_info)
for k, v in rtt.items():
if rtt[k] is not None:
rtt[k] = int(v)
results["rtt"] = rtt
pkt_loss, rx, tx = parse_rate(rate_info)
results["packet_loss"] = str(pkt_loss) + "%"
results["packets_rx"] = int(rx)
results["packets_tx"] = int(tx)
validate_results(module, pkt_loss, results)
module.exit_json(**results)
def build_ping(dest, count, size=None, interval=None, source=None, ttl=None):
cmd = "ping {0} count {1}".format(dest, str(count))
if source:
cmd += " interface {0}".format(source)
if ttl:
cmd += " ttl {0}".format(str(ttl))
if size:
cmd += " size {0}".format(str(size))
if interval:
cmd += " interval {0}".format(str(interval))
return cmd
def parse_rate(rate_info):
rate_re = re.compile(
r"(?P<tx>\d+) (?:\w+) (?:\w+), (?P<rx>\d+) (?:\w+), (?P<pkt_loss>\d+)% (?:\w+) (?:\w+), (?:\w+) (?P<time>\d+)")
rate_err_re = re.compile(
r"(?P<tx>\d+) (?:\w+) (?:\w+), (?P<rx>\d+) (?:\w+), (?:[+-])(?P<err>\d+) (?:\w+), (?P<pkt_loss>\d+)% (?:\w+) (?:\w+), (?:\w+) (?P<time>\d+)")
if rate_re.match(rate_info):
rate = rate_re.match(rate_info)
elif rate_err_re.match(rate_info):
rate = rate_err_re.match(rate_info)
return rate.group("pkt_loss"), rate.group("rx"), rate.group("tx")
def parse_rtt(rtt_info):
rtt_re = re.compile(
r"rtt (?:.*)=(?:\s*)(?P<min>\d*).(?:\d*)/(?P<avg>\d*).(?:\d*)/(?P<max>\d+).(?:\d*)/(?P<mdev>\d*)")
rtt = rtt_re.match(rtt_info)
return rtt.groupdict()
def validate_results(module, loss, results):
state = module.params["state"]
if state == "present" and int(loss) == 100:
module.fail_json(msg="Ping failed unexpectedly", **results)
elif state == "absent" and int(loss) < 100:
module.fail_json(msg="Ping succeeded unexpectedly", **results)
if __name__ == "__main__":
main()

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PING 10.10.10.10 (10.10.10.10) 56(84) bytes of data.
64 bytes from 10.10.10.10: icmp_req=1 ttl=255 time=1.27 ms
64 bytes from 10.10.10.10: icmp_req=2 ttl=255 time=2.28 ms
--- 10.8.38.66 ping statistics ---
2 packets transmitted, 2 received, 0% packet loss, time 1001ms
rtt min/avg/max/mdev = 12.1222/17.124/22.225/10.143 ms

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PING 10.10.10.11 (10.8.38.65) 512(540) bytes of data.
520 bytes from 10.10.10.11: icmp_req=1 ttl=255 time=1.17 ms
520 bytes from 10.10.10.11: icmp_req=2 ttl=255 time=1.32 ms
520 bytes from 10.10.10.11: icmp_req=3 ttl=255 time=1.21 ms
520 bytes from 10.10.10.11: icmp_req=4 ttl=255 time=1.46 ms
520 bytes from 10.10.10.11: icmp_req=5 ttl=255 time=1.32 ms
520 bytes from 10.10.10.11: icmp_req=6 ttl=255 time=1.28 ms
520 bytes from 10.10.10.11: icmp_req=7 ttl=255 time=1.25 ms
520 bytes from 10.10.10.11: icmp_req=8 ttl=255 time=1.23 ms
520 bytes from 10.10.10.11: icmp_req=9 ttl=255 time=1.34 ms
520 bytes from 10.10.10.11: icmp_req=10 ttl=255 time=21.0 ms
--- 10.10.10.11 ping statistics ---
10 packets transmitted, 10 received, 0% packet loss, time 9012ms
rtt min/avg/max/mdev = 1.170/3.262/21.002/5.913 ms

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PING 10.10.10.20 (10.10.10.20) 56(84) bytes of data.
From 10.10.10.20 icmp_seq=1 Destination Host Unreachable
From 10.10.10.20 icmp_seq=2 Destination Host Unreachable
From 10.10.10.20 icmp_seq=3 Destination Host Unreachable
From 10.10.10.20 icmp_seq=4 Destination Host Unreachable
--- 10.10.10.20 ping statistics ---
4 packets transmitted, 0 received, +4 errors, 100% packet loss, time 3053ms
pipe 3

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# (c) 2016 Red Hat Inc.
#
# This file is part of Ansible
#
# Ansible is free software: you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation, either version 3 of the License, or
# (at your option) any later version.
#
# Ansible is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with Ansible. If not, see <http://www.gnu.org/licenses/>.
# Make coding more python3-ish
from __future__ import (absolute_import, division, print_function)
__metaclass__ = type
from units.compat.mock import patch
from ansible.modules.network.vyos import vyos_ping
from units.modules.utils import set_module_args
from .vyos_module import TestVyosModule, load_fixture
class TestVyosPingModule(TestVyosModule):
module = vyos_ping
def setUp(self):
super(TestVyosPingModule, self).setUp()
self.mock_run_commands = patch('ansible.modules.network.vyos.vyos_ping.run_commands')
self.run_commands = self.mock_run_commands.start()
def tearDown(self):
super(TestVyosPingModule, self).tearDown()
self.mock_run_commands.stop()
def load_fixtures(self, commands=None):
def load_from_file(*args, **kwargs):
commands = kwargs['commands']
output = list()
for command in commands:
filename = str(command).split(' | ')[0].replace(' ', '_')
output.append(load_fixture('vyos_ping_%s' % filename))
return output
self.run_commands.side_effect = load_from_file
def test_vyos_ping_expected_success(self):
''' Test for successful pings when destination should be reachable '''
set_module_args(dict(count=2, dest="10.10.10.10"))
self.execute_module()
def test_vyos_ping_expected_failure(self):
''' Test for unsuccessful pings when destination should not be reachable '''
set_module_args(dict(count=4, dest="10.10.10.20", state="absent"))
self.execute_module()
def test_vyos_ping_unexpected_success(self):
''' Test for successful pings when destination should not be reachable - FAIL. '''
set_module_args(dict(count=2, dest="10.10.10.10", state="absent"))
self.execute_module(failed=True)
def test_vyos_ping_unexpected_failure(self):
''' Test for unsuccessful pings when destination should be reachable - FAIL. '''
set_module_args(dict(count=4, dest="10.10.10.20"))
self.execute_module(failed=True)
def test_vyos_ping_failure_stats(self):
'''Test for asserting stats when ping fails'''
set_module_args(dict(count=4, dest="10.10.10.20"))
result = self.execute_module(failed=True)
self.assertEqual(result['packet_loss'], '100%')
self.assertEqual(result['packets_rx'], 0)
self.assertEqual(result['packets_tx'], 4)
def test_vyos_ping_success_stats(self):
'''Test for asserting stats when ping passes'''
set_module_args(dict(count=2, dest="10.10.10.10"))
result = self.execute_module()
self.assertEqual(result['packet_loss'], '0%')
self.assertEqual(result['packets_rx'], 2)
self.assertEqual(result['packets_tx'], 2)
self.assertEqual(result['rtt']['min'], 12)
self.assertEqual(result['rtt']['avg'], 17)
self.assertEqual(result['rtt']['max'], 22)
self.assertEqual(result['rtt']['mdev'], 10)
def test_vyos_ping_success_stats_with_options(self):
set_module_args(dict(count=10, ttl=128, size=512, dest="10.10.10.11"))
result = self.execute_module()
self.assertEqual(result['packet_loss'], '0%')
self.assertEqual(result['packets_rx'], 10)
self.assertEqual(result['packets_tx'], 10)
self.assertEqual(result['rtt']['min'], 1)
self.assertEqual(result['rtt']['avg'], 3)
self.assertEqual(result['rtt']['max'], 21)
self.assertEqual(result['rtt']['mdev'], 5)
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