2020-03-09 10:11:07 +01:00
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#!/usr/bin/python
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# -*- coding: utf-8 -*-
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2022-08-08 14:24:58 +02:00
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# Copyright (c) 2012, Matt Wright <matt@nobien.net>
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2022-08-05 12:28:29 +02:00
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# GNU General Public License v3.0+ (see LICENSES/GPL-3.0-or-later.txt or https://www.gnu.org/licenses/gpl-3.0.txt)
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# SPDX-License-Identifier: GPL-3.0-or-later
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2020-03-09 10:11:07 +01:00
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from __future__ import absolute_import, division, print_function
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__metaclass__ = type
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DOCUMENTATION = '''
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---
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module: supervisorctl
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short_description: Manage the state of a program or group of programs running via supervisord
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description:
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2023-02-20 17:30:53 +01:00
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- Manage the state of a program or group of programs running via supervisord
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extends_documentation_fragment:
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- community.general.attributes
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attributes:
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check_mode:
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support: full
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diff_mode:
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support: none
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2020-03-09 10:11:07 +01:00
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options:
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name:
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type: str
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description:
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- The name of the supervisord program or group to manage.
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- The name will be taken as group name when it ends with a colon V(:).
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2020-03-09 10:11:07 +01:00
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- Group support is only available in Ansible version 1.6 or later.
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- If O(name=all), all programs and program groups will be managed.
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required: true
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config:
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type: path
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description:
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- The supervisor configuration file path
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server_url:
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type: str
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description:
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- URL on which supervisord server is listening
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username:
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type: str
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description:
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- username to use for authentication
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password:
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type: str
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description:
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- password to use for authentication
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state:
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type: str
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description:
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- The desired state of program/group.
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required: true
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choices: [ "present", "started", "stopped", "restarted", "absent", "signalled" ]
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signal:
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type: str
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description:
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- The signal to send to the program/group, when combined with the 'signalled' state. Required when l(state=signalled).
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supervisorctl_path:
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type: path
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description:
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- path to supervisorctl executable
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notes:
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- When O(state=present), the module will call C(supervisorctl reread) then C(supervisorctl add) if the program/group does not exist.
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- When O(state=restarted), the module will call C(supervisorctl update) then call C(supervisorctl restart).
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- When O(state=absent), the module will call C(supervisorctl reread) then C(supervisorctl remove) to remove the target program/group.
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2020-03-09 10:11:07 +01:00
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requirements: [ "supervisorctl" ]
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author:
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- "Matt Wright (@mattupstate)"
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- "Aaron Wang (@inetfuture) <inetfuture@gmail.com>"
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'''
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EXAMPLES = '''
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- name: Manage the state of program to be in started state
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community.general.supervisorctl:
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name: my_app
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state: started
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- name: Manage the state of program group to be in started state
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community.general.supervisorctl:
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name: 'my_apps:'
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state: started
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- name: Restart my_app, reading supervisorctl configuration from a specified file
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community.general.supervisorctl:
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name: my_app
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state: restarted
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config: /var/opt/my_project/supervisord.conf
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2020-05-15 12:27:06 +02:00
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- name: Restart my_app, connecting to supervisord with credentials and server URL
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community.general.supervisorctl:
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name: my_app
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state: restarted
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username: test
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password: testpass
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server_url: http://localhost:9001
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2020-05-15 12:27:06 +02:00
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- name: Send a signal to my_app via supervisorctl
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community.general.supervisorctl:
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name: my_app
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state: signalled
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signal: USR1
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- name: Restart all programs and program groups
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community.general.supervisorctl:
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name: all
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state: restarted
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2020-03-09 10:11:07 +01:00
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'''
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import os
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from ansible.module_utils.basic import AnsibleModule, is_executable
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def main():
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arg_spec = dict(
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name=dict(type='str', required=True),
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config=dict(type='path'),
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server_url=dict(type='str'),
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username=dict(type='str'),
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password=dict(type='str', no_log=True),
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supervisorctl_path=dict(type='path'),
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state=dict(type='str', required=True, choices=['present', 'started', 'restarted', 'stopped', 'absent', 'signalled']),
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signal=dict(type='str'),
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)
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module = AnsibleModule(
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argument_spec=arg_spec,
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supports_check_mode=True,
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required_if=[('state', 'signalled', ['signal'])],
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)
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name = module.params['name']
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is_group = False
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if name.endswith(':'):
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is_group = True
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name = name.rstrip(':')
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state = module.params['state']
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config = module.params.get('config')
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server_url = module.params.get('server_url')
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username = module.params.get('username')
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password = module.params.get('password')
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supervisorctl_path = module.params.get('supervisorctl_path')
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signal = module.params.get('signal')
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# we check error message for a pattern, so we need to make sure that's in C locale
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module.run_command_environ_update = dict(LANG='C', LC_ALL='C', LC_MESSAGES='C', LC_CTYPE='C')
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if supervisorctl_path:
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if os.path.exists(supervisorctl_path) and is_executable(supervisorctl_path):
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supervisorctl_args = [supervisorctl_path]
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else:
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module.fail_json(
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msg="Provided path to supervisorctl does not exist or isn't executable: %s" % supervisorctl_path)
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else:
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supervisorctl_args = [module.get_bin_path('supervisorctl', True)]
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if config:
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supervisorctl_args.extend(['-c', config])
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if server_url:
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supervisorctl_args.extend(['-s', server_url])
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if username:
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supervisorctl_args.extend(['-u', username])
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if password:
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supervisorctl_args.extend(['-p', password])
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def run_supervisorctl(cmd, name=None, **kwargs):
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args = list(supervisorctl_args) # copy the master args
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args.append(cmd)
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if name:
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args.append(name)
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return module.run_command(args, **kwargs)
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def get_matched_processes():
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matched = []
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rc, out, err = run_supervisorctl('status')
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for line in out.splitlines():
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# One status line may look like one of these two:
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# process not in group:
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# echo_date_lonely RUNNING pid 7680, uptime 13:22:18
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# process in group:
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# echo_date_group:echo_date_00 RUNNING pid 7681, uptime 13:22:18
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fields = [field for field in line.split(' ') if field != '']
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process_name = fields[0]
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status = fields[1]
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if is_group:
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# If there is ':', this process must be in a group.
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if ':' in process_name:
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group = process_name.split(':')[0]
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if group != name:
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continue
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else:
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continue
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else:
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if process_name != name and name != "all":
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continue
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matched.append((process_name, status))
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return matched
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def take_action_on_processes(processes, status_filter, action, expected_result):
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to_take_action_on = []
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for process_name, status in processes:
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if status_filter(status):
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to_take_action_on.append(process_name)
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if len(to_take_action_on) == 0:
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module.exit_json(changed=False, name=name, state=state)
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if module.check_mode:
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module.exit_json(changed=True)
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for process_name in to_take_action_on:
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rc, out, err = run_supervisorctl(action, process_name, check_rc=True)
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if '%s: %s' % (process_name, expected_result) not in out:
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module.fail_json(msg=out)
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module.exit_json(changed=True, name=name, state=state, affected=to_take_action_on)
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if state == 'restarted':
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rc, out, err = run_supervisorctl('update', check_rc=True)
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processes = get_matched_processes()
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if len(processes) == 0:
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module.fail_json(name=name, msg="ERROR (no such process)")
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take_action_on_processes(processes, lambda s: True, 'restart', 'started')
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processes = get_matched_processes()
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if state == 'absent':
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if len(processes) == 0:
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module.exit_json(changed=False, name=name, state=state)
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if module.check_mode:
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module.exit_json(changed=True)
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run_supervisorctl('reread', check_rc=True)
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rc, out, err = run_supervisorctl('remove', name)
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if '%s: removed process group' % name in out:
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module.exit_json(changed=True, name=name, state=state)
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else:
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module.fail_json(msg=out, name=name, state=state)
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if state == 'present':
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if len(processes) > 0:
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module.exit_json(changed=False, name=name, state=state)
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if module.check_mode:
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module.exit_json(changed=True)
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run_supervisorctl('reread', check_rc=True)
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dummy, out, dummy = run_supervisorctl('add', name)
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if '%s: added process group' % name in out:
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module.exit_json(changed=True, name=name, state=state)
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else:
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module.fail_json(msg=out, name=name, state=state)
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# from this point onwards, if there are no matching processes, module cannot go on.
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if len(processes) == 0:
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module.fail_json(name=name, msg="ERROR (no such process)")
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if state == 'started':
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take_action_on_processes(processes, lambda s: s not in ('RUNNING', 'STARTING'), 'start', 'started')
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if state == 'stopped':
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take_action_on_processes(processes, lambda s: s in ('RUNNING', 'STARTING'), 'stop', 'stopped')
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if state == 'signalled':
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take_action_on_processes(processes, lambda s: s in ('RUNNING',), "signal %s" % signal, 'signalled')
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if __name__ == '__main__':
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main()
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