2020-03-09 10:11:07 +01:00
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#!/usr/bin/python
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#
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# (c) 2018, Jean-Philippe Evrard <jean-philippe@evrard.me>
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# GNU General Public License v3.0+ (see COPYING or https://www.gnu.org/licenses/gpl-3.0.txt)
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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: etcd3
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short_description: "Set or delete key value pairs from an etcd3 cluster"
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requirements:
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- etcd3
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description:
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- Sets or deletes values in etcd3 cluster using its v3 api.
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- Needs python etcd3 lib to work
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options:
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key:
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type: str
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description:
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- the key where the information is stored in the cluster
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required: true
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value:
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type: str
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description:
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- the information stored
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required: true
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host:
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type: str
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description:
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- the IP address of the cluster
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default: 'localhost'
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port:
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type: int
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description:
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- the port number used to connect to the cluster
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default: 2379
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state:
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type: str
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description:
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- the state of the value for the key.
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- can be present or absent
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required: true
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choices: [ present, absent ]
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user:
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type: str
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description:
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- The etcd user to authenticate with.
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password:
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type: str
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description:
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- The password to use for authentication.
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- Required if I(user) is defined.
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ca_cert:
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type: path
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description:
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- The Certificate Authority to use to verify the etcd host.
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- Required if I(client_cert) and I(client_key) are defined.
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client_cert:
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type: path
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description:
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- PEM formatted certificate chain file to be used for SSL client authentication.
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- Required if I(client_key) is defined.
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client_key:
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type: path
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description:
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- PEM formatted file that contains your private key to be used for SSL client authentication.
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- Required if I(client_cert) is defined.
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timeout:
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type: int
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description:
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- The socket level timeout in seconds.
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author:
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- Jean-Philippe Evrard (@evrardjp)
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- Victor Fauth (@vfauth)
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'''
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EXAMPLES = """
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- name: Store a value "bar" under the key "foo" for a cluster located "http://localhost:2379"
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community.general.etcd3:
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key: "foo"
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value: "baz3"
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host: "localhost"
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port: 2379
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state: "present"
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2020-05-15 12:13:45 +02:00
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- name: Authenticate using user/password combination with a timeout of 10 seconds
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community.general.etcd3:
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key: "foo"
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value: "baz3"
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state: "present"
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user: "someone"
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password: "password123"
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timeout: 10
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2020-05-15 12:13:45 +02:00
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- name: Authenticate using TLS certificates
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community.general.etcd3:
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key: "foo"
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value: "baz3"
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state: "present"
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ca_cert: "/etc/ssl/certs/CA_CERT.pem"
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client_cert: "/etc/ssl/certs/cert.crt"
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client_key: "/etc/ssl/private/key.pem"
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"""
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RETURN = '''
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key:
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description: The key that was queried
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returned: always
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type: str
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old_value:
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description: The previous value in the cluster
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returned: always
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type: str
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'''
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import traceback
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from ansible.module_utils.basic import AnsibleModule, missing_required_lib
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from ansible.module_utils._text import to_native
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try:
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import etcd3
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HAS_ETCD = True
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except ImportError:
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ETCD_IMP_ERR = traceback.format_exc()
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HAS_ETCD = False
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def run_module():
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# define the available arguments/parameters that a user can pass to
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# the module
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module_args = dict(
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key=dict(type='str', required=True, no_log=False),
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value=dict(type='str', required=True),
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host=dict(type='str', default='localhost'),
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port=dict(type='int', default=2379),
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state=dict(type='str', required=True, choices=['present', 'absent']),
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user=dict(type='str'),
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password=dict(type='str', no_log=True),
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ca_cert=dict(type='path'),
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client_cert=dict(type='path'),
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client_key=dict(type='path'),
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timeout=dict(type='int'),
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)
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# seed the result dict in the object
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# we primarily care about changed and state
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# change is if this module effectively modified the target
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# state will include any data that you want your module to pass back
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# for consumption, for example, in a subsequent task
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result = dict(
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changed=False,
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)
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# the AnsibleModule object will be our abstraction working with Ansible
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# this includes instantiation, a couple of common attr would be the
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# args/params passed to the execution, as well as if the module
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# supports check mode
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module = AnsibleModule(
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argument_spec=module_args,
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supports_check_mode=True,
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required_together=[['client_cert', 'client_key'], ['user', 'password']],
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)
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# It is possible to set `ca_cert` to verify the server identity without
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# setting `client_cert` or `client_key` to authenticate the client
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# so required_together is enough
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# Due to `required_together=[['client_cert', 'client_key']]`, checking the presence
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# of either `client_cert` or `client_key` is enough
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if module.params['ca_cert'] is None and module.params['client_cert'] is not None:
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module.fail_json(msg="The 'ca_cert' parameter must be defined when 'client_cert' and 'client_key' are present.")
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result['key'] = module.params.get('key')
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module.params['cert_cert'] = module.params.pop('client_cert')
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module.params['cert_key'] = module.params.pop('client_key')
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if not HAS_ETCD:
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module.fail_json(msg=missing_required_lib('etcd3'), exception=ETCD_IMP_ERR)
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allowed_keys = ['host', 'port', 'ca_cert', 'cert_cert', 'cert_key',
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'timeout', 'user', 'password']
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# TODO(evrardjp): Move this back to a dict comprehension when python 2.7 is
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# the minimum supported version
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# client_params = {key: value for key, value in module.params.items() if key in allowed_keys}
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client_params = dict()
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for key, value in module.params.items():
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if key in allowed_keys:
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client_params[key] = value
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try:
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etcd = etcd3.client(**client_params)
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except Exception as exp:
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module.fail_json(msg='Cannot connect to etcd cluster: %s' % (to_native(exp)),
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exception=traceback.format_exc())
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try:
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cluster_value = etcd.get(module.params['key'])
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except Exception as exp:
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module.fail_json(msg='Cannot reach data: %s' % (to_native(exp)),
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exception=traceback.format_exc())
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# Make the cluster_value[0] a string for string comparisons
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result['old_value'] = to_native(cluster_value[0])
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if module.params['state'] == 'absent':
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if cluster_value[0] is not None:
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if module.check_mode:
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result['changed'] = True
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else:
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try:
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etcd.delete(module.params['key'])
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except Exception as exp:
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module.fail_json(msg='Cannot delete %s: %s' % (module.params['key'], to_native(exp)),
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exception=traceback.format_exc())
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else:
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result['changed'] = True
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elif module.params['state'] == 'present':
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if result['old_value'] != module.params['value']:
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if module.check_mode:
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result['changed'] = True
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else:
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try:
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etcd.put(module.params['key'], module.params['value'])
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except Exception as exp:
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module.fail_json(msg='Cannot add or edit key %s: %s' % (module.params['key'], to_native(exp)),
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exception=traceback.format_exc())
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else:
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result['changed'] = True
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else:
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module.fail_json(msg="State not recognized")
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# manipulate or modify the state as needed (this is going to be the
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# part where your module will do what it needs to do)
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# during the execution of the module, if there is an exception or a
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# conditional state that effectively causes a failure, run
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# AnsibleModule.fail_json() to pass in the message and the result
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# in the event of a successful module execution, you will want to
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# simple AnsibleModule.exit_json(), passing the key/value results
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module.exit_json(**result)
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def main():
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run_module()
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if __name__ == '__main__':
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main()
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