5b7aa494b2
* Basically the moving parts from the original service module arranged in subclasses. * General structure and helper methods comes from the user module. * Less forgiving to unsupported platforms: it requires a subclass per platform. (This makes it easier to work on one platform without having to think about. what other platform might be affected in unexpected ways). * Now has basic OpenBSD support. * Solaris support needs to be added. Thanks to @dhozac for general advice and Linux testing. Thanks to @bcoca for clearing up some FreeBSD questions.
502 lines
18 KiB
Python
502 lines
18 KiB
Python
#!/usr/bin/python
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# -*- coding: utf-8 -*-
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# (c) 2012, Michael DeHaan <michael.dehaan@gmail.com>
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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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DOCUMENTATION = '''
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---
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module: service
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author: Michael DeHaan
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version_added: 0.1
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short_description: Manage services.
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description:
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- Controls services on remote hosts.
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options:
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name:
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required: true
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description:
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- Name of the service.
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state:
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required: false
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choices: [ started, stopped, restarted, reloaded ]
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description:
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C(Started)/C(stopped) are idempotent actions that will not run
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commands unless necessary. C(restarted) will always bounce the
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service. C(reloaded) will always reload.
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pattern:
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required: false
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version_added: "0.7"
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description:
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- If the service does not respond to the status command, name a
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substring to look for as would be found in the output of the I(ps)
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command as a stand-in for a status result. If the string is found,
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the service will be assumed to be running.
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enabled:
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required: false
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choices: [ "yes", "no" ]
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description:
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- Whether the service should start on boot.
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arguments:
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description:
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- Additional arguments provided on the command line
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aliases: [ 'args' ]
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examples:
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- description: Example action to start service httpd, if not running
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code: "service: name=httpd state=started"
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- description: Example action to stop service httpd, if running
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code: "service: name=httpd state=stopped"
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- description: Example action to restart service httpd, in all cases
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code: "service: name=httpd state=restarted"
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- description: Example action to reload service httpd, in all cases
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code: "service: name=httpd state=reloaded"
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- description: Example action to start service foo, based on running process /usr/bin/foo
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code: "service: name=foo pattern=/usr/bin/foo state=started"
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- description: Example action to restart network service for interface eth0
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code: "service: name=network state=restarted args=eth0"
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'''
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import platform
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import os
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import re
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class Service(object):
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"""
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This is the generic Service manipulation class that is subclassed
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based on platform.
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A subclass should override the following action methods:-
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- get_service_tools
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- service_enable
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- get_service_status
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- service_control
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All subclasses MUST define platform and distribution (which may be None).
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"""
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platform = 'Generic'
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distribution = None
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def __new__(cls, *args, **kwargs):
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return load_platform_subclass(Service, args, kwargs)
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def __init__(self, module):
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self.module = module
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self.name = module.params['name']
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self.state = module.params['state']
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self.pattern = module.params['pattern']
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self.enable = module.boolean(module.params.get('enabled', None))
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self.changed = False
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self.running = None
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self.action = None
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self.svc_cmd = None
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self.svc_initscript = None
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self.svc_initctl = None
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self.enable_cmd = None
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self.arguments = module.params.get('arguments', '')
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# select whether we dump additional debug info through syslog
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self.syslogging = False
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# ===========================================
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# Platform specific methods (must be replaced by subclass).
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def get_service_tools(self):
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self.module.fail_json(msg="get_service_tools not implemented on target platform")
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def service_enable(self):
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self.module.fail_json(msg="service_enable not implemented on target platform")
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def get_service_status(self):
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self.module.fail_json(msg="get_service_status not implemented on target platform")
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def service_control(self):
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self.module.fail_json(msg="service_control not implemented on target platform")
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# ===========================================
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# Generic methods that should be used on all platforms.
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def execute_command(self, cmd):
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if self.syslogging:
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syslog.openlog('ansible-%s' % os.path.basename(__file__))
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syslog.syslog(syslog.LOG_NOTICE, 'Command %s' % '|'.join(cmd))
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p = subprocess.Popen(cmd, shell=True, stdout=subprocess.PIPE, stderr=subprocess.PIPE)
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(out, err) = p.communicate()
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rc = p.returncode
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return (rc, out, err)
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def check_ps(self):
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# Set ps flags
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if platform.system() == 'SunOS':
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psflags = '-ef'
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else:
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psflags = 'auxww'
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# Find ps binary
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psbin = self.module.get_bin_path('ps', True)
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(rc, psout, pserr) = self.execute_command('%s %s' % (psbin, psflags))
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# If rc is 0, set running as appropriate
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if rc == 0:
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self.running = False
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lines = psout.split("\n")
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for line in lines:
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if self.pattern in line and not "pattern=" in line:
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# so as to not confuse ./hacking/test-module
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self.running = True
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break
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def check_service_changed(self):
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if self.state and self.running == None:
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self.module.fail_json(msg="failed determining the current service state => state stays unchanged")
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# Find out if state has changed
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if not self.running and self.state in ["started", "running"]:
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self.changed = True
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elif self.running and self.state in ["stopped","reloaded"]:
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self.changed = True
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elif self.state == "restarted":
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self.changed = True
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def modify_service_state(self):
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# Only do something if state will change
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if self.changed:
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# Control service
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if self.state in ['started', 'running']:
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self.action = "start"
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elif self.state == 'stopped':
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self.action = "stop"
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elif self.state == 'reloaded':
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self.action = "reload"
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elif self.state == 'restarted':
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self.action = "restart"
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return self.service_control()
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else:
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# If nothing needs to change just say all is well
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rc = 0
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err = ''
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out = ''
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return rc, out, err
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# ===========================================
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# Subclass: Linux
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class LinuxService(Service):
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"""
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This is the Linux Service manipulation class - it is currently supporting
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a mixture of binaries and init scripts for controlling services started at
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boot, as well as for controlling the current state.
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"""
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platform = 'Linux'
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distribution = None
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def get_service_tools(self):
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paths = [ '/sbin', '/usr/sbin', '/bin', '/usr/bin' ]
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binaries = [ 'service', 'chkconfig', 'update-rc.d', 'initctl', 'systemctl' ]
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initpaths = [ '/etc/init.d' ]
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location = dict()
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for binary in binaries:
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location[binary] = None
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for binary in binaries:
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location[binary] = self.module.get_bin_path(binary)
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# Locate a tool for enable options
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if location.get('systemctl', None):
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self.enable_cmd = location['systemctl']
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elif location.get('chkconfig', None):
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self.enable_cmd = location['chkconfig']
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elif location.get('update-rc.d', None):
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self.enable_cmd = location['update-rc.d']
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if self.enable_cmd is None:
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self.module.fail_json(msg='unable to find enable binary')
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# Locate a tool for runtime service management (start, stop etc.)
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if location.get('service', None):
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self.svc_cmd = location['service']
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else:
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for initdir in initpaths:
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initscript = "%s/%s" % (initdir,self.name)
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if os.path.isfile(initscript):
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self.svc_initscript = initscript
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if not self.svc_cmd and not self.svc_initscript:
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self.module.fail_json(msg='unable to find service binary nor initscript')
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if location.get('initctl', None):
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self.svc_initctl = location['initctl']
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def get_service_status(self):
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rc, status_stdout, status_stderr = self.execute_command("%s %s status %s" % (self.svc_cmd, self.name, self.arguments))
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# Check if we got upstart on the system and then the job state
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if self.svc_initctl != None and self.running is None:
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# check the job status by upstart response
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initctl_rc, initctl_status_stdout, initctl_status_stderr = self.execute_command("%s status %s" % (self.svc_initctl, self.name))
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if initctl_status_stdout.find("stop/waiting") != -1:
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self.running = False
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elif initctl_status_stdout.find("start/running") != -1:
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self.running = True
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# if the job status is still not known check it by response code
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if self.running == None:
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if rc == 3:
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self.running = False
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if rc == 2:
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self.running = False
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elif rc == 0:
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self.running = True
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# if the job status is still not known check it by status output keywords
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if self.running == None:
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# first tranform the status output that could irritate keyword matching
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cleanout = status_stdout.lower().replace(self.name.lower(), '')
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if "stop" in cleanout:
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self.running = False
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elif "run" in cleanout and "not" in cleanout:
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self.running = False
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elif "run" in cleanout and "not" not in cleanout:
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self.running = True
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elif "start" in cleanout and "not" not in cleanout:
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self.running = True
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elif 'could not access pid file' in cleanout:
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self.running = False
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elif 'is dead and pid file exists' in cleanout:
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self.running = False
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elif 'dead but subsys locked' in cleanout:
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self.running = False
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elif 'dead but pid file exists' in cleanout:
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self.running = False
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# if the job status is still not known check it by special conditions
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if self.running == None:
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if self.name == 'iptables' and status_stdout.find("ACCEPT") != -1:
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# iptables status command output is lame
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# TODO: lookup if we can use a return code for this instead?
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self.running = True
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def service_enable(self):
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# we change argument depending on real binary used
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# update-rc.d wants enable/disable while
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# chkconfig wants on/off
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# also, systemctl needs the arguments reversed
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if self.enable:
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on_off = "on"
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enable_disable = "enable"
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else:
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on_off = "off"
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enable_disable = "disable"
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if self.enable_cmd.endswith("update-rc.d"):
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args = (self.enable_cmd, self.name, enable_disable)
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elif self.enable_cmd.endswith("systemctl"):
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args = (self.enable_cmd, enable_disable, self.name + ".service")
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else:
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args = (self.enable_cmd, self.name, on_off)
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if self.enable is not None:
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return self.execute_command("%s %s %s" % args)
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def service_control(self):
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# Decide what command to run
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if self.svc_cmd:
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svc_cmd = "%s %s" % (self.svc_cmd, self.name)
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elif self.svc_initscript:
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svc_cmd = "%s" % self.svc_initscript
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if self.action is not "restart":
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rc_state, stdout, stderr = self.execute_command("%s %s %s" % (svc_cmd, self.action, self.arguments))
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else:
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rc1, stdout1, stderr1 = self.execute_command("%s %s %s" % (svc_cmd, stop, self.arguments))
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rc2, stdout2, stderr2 = self.execute_command("%s %s %s" % (svc_cmd, start, self.arguments))
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if rc1 != 0 and rc2 == 0:
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rc_state = rc + rc2
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stdout = stdout2
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stderr = stderr2
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else:
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rc_state = rc + rc1 + rc2
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stdout = stdout1 + stdout2
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stderr = stderr1 + stderr2
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return(rc_state, stdout, stderr)
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# ===========================================
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# Subclass: FreeBSD
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class FreeBsdService(Service):
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"""
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This is the FreeBSD Service manipulation class - it uses the /etc/rc.conf
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file for controlling services started at boot and the 'service' binary to
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check status and perform direct service manipulation.
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"""
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platform = 'FreeBSD'
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distribution = None
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def get_service_tools(self):
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self.svc_cmd = self.module.get_bin_path('service', True)
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if not self.svc_cmd:
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self.module.fail_json(msg='unable to find service binary')
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def get_service_status(self):
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rc, stdout, stderr = self.execute_command("%s %s %s" % (self.svc_cmd, self.name, 'onestatus'))
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if rc == 1:
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self.running = False
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elif rc == 0:
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self.running = True
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def service_enable(self):
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if self.enable:
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rc = "YES"
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else:
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rc = "NO"
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rcfiles = [ '/etc/rc.conf','/usr/local/etc/rc.conf' ]
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for rcfile in rcfiles:
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if os.path.isfile(rcfile):
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rcconf = rcfile
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entry = "%s_enable" % self.name
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full_entry = '%s="%s"' % (entry,rc)
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rc = open(rcconf,"r+")
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rctext = rc.read()
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if re.search("^%s" % full_entry,rctext,re.M) is None:
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if re.search("^%s" % entry,rctext,re.M) is None:
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rctext += "\n%s" % full_entry
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else:
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rctext = re.sub("^%s.*" % entry,full_entry,rctext,1,re.M)
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rc.truncate(0)
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rc.seek(0)
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rc.write(rctext)
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rc.close()
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def service_control(self):
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if self.action is "start":
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self.action = "onestart"
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if self.action is "stop":
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self.action = "onestop"
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if self.action is "reload":
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self.action = "onereload"
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return self.execute_command("%s %s %s" % (self.svc_cmd, self.name, self.action))
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# ===========================================
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# Subclass: OpenBSD
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class OpenBsdService(Service):
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"""
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This is the OpenBSD Service manipulation class - it uses /etc/rc.d for
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service control. Enabling a service is currently not supported because the
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<service>_flags variable is not boolean, you should supply a rc.conf.local
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file in some other way.
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"""
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platform = 'OpenBSD'
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distribution = None
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def get_service_tools(self):
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rcdir = '/etc/rc.d'
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rc_script = "%s/%s" % (rcdir, self.name)
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if os.path.isfile(rc_script):
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self.svc_cmd = rc_script
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if not self.svc_cmd:
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self.module.fail_json(msg='unable to find rc.d script')
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def get_service_status(self):
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rc, stdout, stderr = self.execute_command("%s %s" % (self.svc_cmd, 'check'))
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if rc == 1:
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self.running = False
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elif rc == 0:
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self.running = True
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def service_control(self):
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return self.execute_command("%s %s" % (self.svc_cmd, self.action))
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# ===========================================
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# Main control flow
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def main():
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module = AnsibleModule(
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argument_spec = dict(
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name = dict(required=True),
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state = dict(choices=['running', 'started', 'stopped', 'restarted', 'reloaded']),
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pattern = dict(required=False, default=None),
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enabled = dict(choices=BOOLEANS),
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arguments = dict(aliases=['args'], default=''),
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)
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)
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service = Service(module)
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if service.syslogging:
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syslog.openlog('ansible-%s' % os.path.basename(__file__))
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syslog.syslog(syslog.LOG_NOTICE, 'Service instantiated - platform %s' % service.platform)
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if service.distribution:
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syslog.syslog(syslog.LOG_NOTICE, 'Service instantiated - distribution %s' % service.distribution)
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rc = 0
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out = ''
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err = ''
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result = {}
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result['name'] = service.name
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result['state'] = service.state
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# Find service management tools
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service.get_service_tools()
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# Enable/disable service startup at boot if requested
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if service.module.params['enabled']:
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service.service_enable()
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# Collect service status
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if service.pattern:
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service.check_ps()
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service.get_service_status()
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# Calculate if request will change service state
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service.check_service_changed()
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# Modify service state if necessary
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(rc, out, err) = service.modify_service_state()
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if rc != 0:
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if err:
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module.fail_json(msg=err)
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else:
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module.fail_json(msg=out)
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result['changed'] = service.changed
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if service.module.params['enabled']:
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result['enabled'] = service.module.params['enabled']
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if service.state:
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result['state'] = service.state
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module.exit_json(**result)
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# this is magic, see lib/ansible/module_common.py
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#<<INCLUDE_ANSIBLE_MODULE_COMMON>>
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main()
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