mirror of
https://github.com/ansible-collections/community.general.git
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630 lines
21 KiB
Python
630 lines
21 KiB
Python
#!/usr/bin/python
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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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ANSIBLE_METADATA = {'status': ['preview'],
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'supported_by': 'committer',
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'version': '1.0'}
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DOCUMENTATION = '''
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---
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module: efs
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short_description: create and maintain EFS file systems
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description:
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- Module allows create, search and destroy Amazon EFS file systems
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version_added: "2.2"
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requirements: [ boto3 ]
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author:
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- "Ryan Sydnor (@ryansydnor)"
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- "Artem Kazakov (@akazakov)"
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options:
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state:
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description:
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- Allows to create, search and destroy Amazon EFS file system
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required: false
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default: 'present'
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choices: ['present', 'absent']
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name:
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description:
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- Creation Token of Amazon EFS file system. Required for create. Either name or ID required for delete.
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required: false
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default: None
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id:
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description:
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- ID of Amazon EFS. Either name or ID required for delete.
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required: false
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default: None
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performance_mode:
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description:
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- File system's performance mode to use. Only takes effect during creation.
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required: false
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default: 'general_purpose'
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choices: ['general_purpose', 'max_io']
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tags:
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description:
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- "List of tags of Amazon EFS. Should be defined as dictionary
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In case of 'present' state with list of tags and existing EFS (matched by 'name'), tags of EFS will be replaced with provided data."
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required: false
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default: None
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targets:
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description:
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- "List of mounted targets. It should be a list of dictionaries, every dictionary should include next attributes:
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- subnet_id - Mandatory. The ID of the subnet to add the mount target in.
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- ip_address - Optional. A valid IPv4 address within the address range of the specified subnet.
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- security_groups - Optional. List of security group IDs, of the form 'sg-xxxxxxxx'. These must be for the same VPC as subnet specified
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This data may be modified for existing EFS using state 'present' and new list of mount targets."
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required: false
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default: None
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wait:
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description:
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- "In case of 'present' state should wait for EFS 'available' life cycle state (of course, if current state not 'deleting' or 'deleted')
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In case of 'absent' state should wait for EFS 'deleted' life cycle state"
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required: false
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default: "no"
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choices: ["yes", "no"]
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wait_timeout:
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description:
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- How long the module should wait (in seconds) for desired state before returning. Zero means wait as long as necessary.
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required: false
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default: 0
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extends_documentation_fragment:
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- aws
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'''
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EXAMPLES = '''
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# EFS provisioning
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- efs:
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state: present
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name: myTestEFS
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tags:
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name: myTestNameTag
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purpose: file-storage
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targets:
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- subnet_id: subnet-748c5d03
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security_groups: [ "sg-1a2b3c4d" ]
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# Modifying EFS data
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- efs:
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state: present
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name: myTestEFS
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tags:
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name: myAnotherTestTag
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targets:
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- subnet_id: subnet-7654fdca
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security_groups: [ "sg-4c5d6f7a" ]
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# Deleting EFS
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- efs:
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state: absent
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name: myTestEFS
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'''
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RETURN = '''
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creation_time:
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description: timestamp of creation date
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returned:
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type: datetime
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sample: 2015-11-16 07:30:57-05:00
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creation_token:
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description: EFS creation token
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returned:
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type: UUID
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sample: console-88609e04-9a0e-4a2e-912c-feaa99509961
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file_system_id:
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description: ID of the file system
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returned:
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type: unique ID
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sample: fs-xxxxxxxx
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life_cycle_state:
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description: state of the EFS file system
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returned:
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type: str
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sample: creating, available, deleting, deleted
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mount_point:
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description: url of file system
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returned:
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type: str
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sample: .fs-xxxxxxxx.efs.us-west-2.amazonaws.com:/
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mount_targets:
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description: list of mount targets
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returned:
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type: list of dicts
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sample:
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[
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{
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"file_system_id": "fs-a7ad440e",
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"ip_address": "172.31.17.173",
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"life_cycle_state": "available",
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"mount_target_id": "fsmt-d8907871",
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"network_interface_id": "eni-6e387e26",
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"owner_id": "740748460359",
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"security_groups": [
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"sg-a30b22c6"
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],
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"subnet_id": "subnet-e265c895"
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},
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...
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]
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name:
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description: name of the file system
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returned:
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type: str
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sample: my-efs
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number_of_mount_targets:
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description: the number of targets mounted
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returned:
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type: int
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sample: 3
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owner_id:
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description: AWS account ID of EFS owner
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returned:
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type: str
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sample: XXXXXXXXXXXX
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size_in_bytes:
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description: size of the file system in bytes as of a timestamp
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returned:
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type: dict
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sample:
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{
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"timestamp": "2015-12-21 13:59:59-05:00",
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"value": 12288
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}
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performance_mode:
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description: performance mode of the file system
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returned:
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type: str
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sample: "generalPurpose"
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tags:
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description: tags on the efs instance
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returned:
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type: dict
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sample:
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{
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"name": "my-efs",
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"key": "Value"
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}
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'''
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import sys
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from time import sleep
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from time import time as timestamp
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from collections import defaultdict
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try:
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from botocore.exceptions import ClientError
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import boto3
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HAS_BOTO3 = True
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except ImportError as e:
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HAS_BOTO3 = False
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class EFSConnection(object):
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DEFAULT_WAIT_TIMEOUT_SECONDS = 0
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STATE_CREATING = 'creating'
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STATE_AVAILABLE = 'available'
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STATE_DELETING = 'deleting'
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STATE_DELETED = 'deleted'
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def __init__(self, module, region, **aws_connect_params):
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try:
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self.connection = boto3_conn(module, conn_type='client',
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resource='efs', region=region,
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**aws_connect_params)
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except Exception as e:
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module.fail_json(msg="Failed to connect to AWS: %s" % str(e))
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self.region = region
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self.wait = module.params.get('wait')
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self.wait_timeout = module.params.get('wait_timeout')
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def get_file_systems(self, **kwargs):
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"""
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Returns generator of file systems including all attributes of FS
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"""
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items = iterate_all(
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'FileSystems',
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self.connection.describe_file_systems,
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**kwargs
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)
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for item in items:
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item['CreationTime'] = str(item['CreationTime'])
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"""
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Suffix of network path to be used as NFS device for mount. More detail here:
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http://docs.aws.amazon.com/efs/latest/ug/gs-step-three-connect-to-ec2-instance.html
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"""
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item['MountPoint'] = '.%s.efs.%s.amazonaws.com:/' % (item['FileSystemId'], self.region)
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if 'Timestamp' in item['SizeInBytes']:
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item['SizeInBytes']['Timestamp'] = str(item['SizeInBytes']['Timestamp'])
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if item['LifeCycleState'] == self.STATE_AVAILABLE:
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item['Tags'] = self.get_tags(FileSystemId=item['FileSystemId'])
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item['MountTargets'] = list(self.get_mount_targets(FileSystemId=item['FileSystemId']))
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else:
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item['Tags'] = {}
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item['MountTargets'] = []
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yield item
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def get_tags(self, **kwargs):
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"""
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Returns tag list for selected instance of EFS
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"""
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tags = iterate_all(
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'Tags',
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self.connection.describe_tags,
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**kwargs
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)
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return dict((tag['Key'], tag['Value']) for tag in tags)
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def get_mount_targets(self, **kwargs):
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"""
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Returns mount targets for selected instance of EFS
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"""
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targets = iterate_all(
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'MountTargets',
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self.connection.describe_mount_targets,
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**kwargs
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)
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for target in targets:
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if target['LifeCycleState'] == self.STATE_AVAILABLE:
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target['SecurityGroups'] = list(self.get_security_groups(
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MountTargetId=target['MountTargetId']
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))
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else:
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target['SecurityGroups'] = []
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yield target
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def get_security_groups(self, **kwargs):
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"""
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Returns security groups for selected instance of EFS
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"""
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return iterate_all(
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'SecurityGroups',
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self.connection.describe_mount_target_security_groups,
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**kwargs
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)
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def get_file_system_id(self, name):
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"""
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Returns ID of instance by instance name
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"""
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info = first_or_default(iterate_all(
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'FileSystems',
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self.connection.describe_file_systems,
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CreationToken=name
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))
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return info and info['FileSystemId'] or None
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def get_file_system_state(self, name, file_system_id=None):
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"""
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Returns state of filesystem by EFS id/name
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"""
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info = first_or_default(iterate_all(
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'FileSystems',
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self.connection.describe_file_systems,
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CreationToken=name,
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FileSystemId=file_system_id
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))
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return info and info['LifeCycleState'] or self.STATE_DELETED
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def get_mount_targets_in_state(self, file_system_id, states=None):
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"""
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Returns states of mount targets of selected EFS with selected state(s) (optional)
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"""
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targets = iterate_all(
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'MountTargets',
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self.connection.describe_mount_targets,
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FileSystemId=file_system_id
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)
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if states:
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if not isinstance(states, list):
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states = [states]
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targets = filter(lambda target: target['LifeCycleState'] in states, targets)
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return list(targets)
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def create_file_system(self, name, performance_mode):
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"""
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Creates new filesystem with selected name
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"""
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changed = False
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state = self.get_file_system_state(name)
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if state in [self.STATE_DELETING, self.STATE_DELETED]:
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wait_for(
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lambda: self.get_file_system_state(name),
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self.STATE_DELETED
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)
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self.connection.create_file_system(CreationToken=name, PerformanceMode=performance_mode)
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changed = True
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# we always wait for the state to be available when creating.
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# if we try to take any actions on the file system before it's available
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# we'll throw errors
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wait_for(
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lambda: self.get_file_system_state(name),
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self.STATE_AVAILABLE,
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self.wait_timeout
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)
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return changed
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def converge_file_system(self, name, tags, targets):
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"""
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Change attributes (mount targets and tags) of filesystem by name
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"""
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result = False
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fs_id = self.get_file_system_id(name)
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if tags is not None:
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tags_to_create, _, tags_to_delete = dict_diff(self.get_tags(FileSystemId=fs_id), tags)
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if tags_to_delete:
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self.connection.delete_tags(
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FileSystemId=fs_id,
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TagKeys=[item[0] for item in tags_to_delete]
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)
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result = True
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if tags_to_create:
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self.connection.create_tags(
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FileSystemId=fs_id,
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Tags=[{'Key': item[0], 'Value': item[1]} for item in tags_to_create]
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)
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result = True
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if targets is not None:
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incomplete_states = [self.STATE_CREATING, self.STATE_DELETING]
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wait_for(
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lambda: len(self.get_mount_targets_in_state(fs_id, incomplete_states)),
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0
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)
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index_by_subnet_id = lambda items: dict((item['SubnetId'], item) for item in items)
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current_targets = index_by_subnet_id(self.get_mount_targets(FileSystemId=fs_id))
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targets = index_by_subnet_id(targets)
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targets_to_create, intersection, targets_to_delete = dict_diff(current_targets,
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targets, True)
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""" To modify mount target it should be deleted and created again """
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changed = filter(
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lambda sid: not targets_equal(['SubnetId', 'IpAddress', 'NetworkInterfaceId'],
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current_targets[sid], targets[sid]), intersection)
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targets_to_delete = list(targets_to_delete) + changed
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targets_to_create = list(targets_to_create) + changed
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if targets_to_delete:
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for sid in targets_to_delete:
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self.connection.delete_mount_target(
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MountTargetId=current_targets[sid]['MountTargetId']
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)
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wait_for(
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lambda: len(self.get_mount_targets_in_state(fs_id, incomplete_states)),
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0
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)
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result = True
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if targets_to_create:
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for sid in targets_to_create:
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self.connection.create_mount_target(
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FileSystemId=fs_id,
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**targets[sid]
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)
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wait_for(
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lambda: len(self.get_mount_targets_in_state(fs_id, incomplete_states)),
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0,
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self.wait_timeout
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)
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result = True
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security_groups_to_update = filter(
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lambda sid: 'SecurityGroups' in targets[sid] and
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current_targets[sid]['SecurityGroups'] != targets[sid]['SecurityGroups'],
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intersection
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)
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if security_groups_to_update:
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for sid in security_groups_to_update:
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self.connection.modify_mount_target_security_groups(
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MountTargetId=current_targets[sid]['MountTargetId'],
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SecurityGroups=targets[sid]['SecurityGroups']
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)
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result = True
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return result
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def delete_file_system(self, name, file_system_id=None):
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"""
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Removes EFS instance by id/name
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"""
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result = False
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state = self.get_file_system_state(name, file_system_id)
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if state in [self.STATE_CREATING, self.STATE_AVAILABLE]:
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wait_for(
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lambda: self.get_file_system_state(name),
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self.STATE_AVAILABLE
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)
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if not file_system_id:
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file_system_id = self.get_file_system_id(name)
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self.delete_mount_targets(file_system_id)
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self.connection.delete_file_system(FileSystemId=file_system_id)
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result = True
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if self.wait:
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wait_for(
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lambda: self.get_file_system_state(name),
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self.STATE_DELETED,
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self.wait_timeout
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)
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return result
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def delete_mount_targets(self, file_system_id):
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"""
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Removes mount targets by EFS id
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"""
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wait_for(
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lambda: len(self.get_mount_targets_in_state(file_system_id, self.STATE_CREATING)),
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0
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)
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targets = self.get_mount_targets_in_state(file_system_id, self.STATE_AVAILABLE)
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for target in targets:
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self.connection.delete_mount_target(MountTargetId=target['MountTargetId'])
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wait_for(
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lambda: len(self.get_mount_targets_in_state(file_system_id, self.STATE_DELETING)),
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0
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)
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return len(targets) > 0
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def iterate_all(attr, map_method, **kwargs):
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"""
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Method creates iterator from boto result set
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"""
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args = dict((key, value) for (key, value) in kwargs.items() if value is not None)
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wait = 1
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while True:
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try:
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data = map_method(**args)
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for elm in data[attr]:
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yield elm
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if 'NextMarker' in data:
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args['Marker'] = data['Nextmarker']
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continue
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break
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except ClientError as e:
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if e.response['Error']['Code'] == "ThrottlingException" and wait < 600:
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sleep(wait)
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wait = wait * 2
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continue
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def targets_equal(keys, a, b):
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"""
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Method compare two mount targets by specified attributes
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"""
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for key in keys:
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if key in b and a[key] != b[key]:
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return False
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return True
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def dict_diff(dict1, dict2, by_key=False):
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"""
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Helper method to calculate difference of two dictionaries
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"""
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keys1 = set(dict1.keys() if by_key else dict1.items())
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keys2 = set(dict2.keys() if by_key else dict2.items())
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intersection = keys1 & keys2
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return keys2 ^ intersection, intersection, keys1 ^ intersection
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def first_or_default(items, default=None):
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"""
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Helper method to fetch first element of list (if exists)
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"""
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for item in items:
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return item
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return default
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|
|
|
|
def wait_for(callback, value, timeout=EFSConnection.DEFAULT_WAIT_TIMEOUT_SECONDS):
|
|
"""
|
|
Helper method to wait for desired value returned by callback method
|
|
"""
|
|
wait_start = timestamp()
|
|
while True:
|
|
if callback() != value:
|
|
if timeout != 0 and (timestamp() - wait_start > timeout):
|
|
raise RuntimeError('Wait timeout exceeded (' + str(timeout) + ' sec)')
|
|
else:
|
|
sleep(5)
|
|
continue
|
|
break
|
|
|
|
|
|
def main():
|
|
"""
|
|
Module action handler
|
|
"""
|
|
argument_spec = ec2_argument_spec()
|
|
argument_spec.update(dict(
|
|
state=dict(required=False, type='str', choices=["present", "absent"], default="present"),
|
|
id=dict(required=False, type='str', default=None),
|
|
name=dict(required=False, type='str', default=None),
|
|
tags=dict(required=False, type="dict", default={}),
|
|
targets=dict(required=False, type="list", default=[]),
|
|
performance_mode=dict(required=False, type='str', choices=["general_purpose", "max_io"], default="general_purpose"),
|
|
wait=dict(required=False, type="bool", default=False),
|
|
wait_timeout=dict(required=False, type="int", default=0)
|
|
))
|
|
|
|
module = AnsibleModule(argument_spec=argument_spec)
|
|
|
|
if not HAS_BOTO3:
|
|
module.fail_json(msg='boto3 required for this module')
|
|
|
|
region, _, aws_connect_params = get_aws_connection_info(module, boto3=True)
|
|
connection = EFSConnection(module, region, **aws_connect_params)
|
|
|
|
name = module.params.get('name')
|
|
fs_id = module.params.get('id')
|
|
tags = module.params.get('tags')
|
|
target_translations = {
|
|
'ip_address': 'IpAddress',
|
|
'security_groups': 'SecurityGroups',
|
|
'subnet_id': 'SubnetId'
|
|
}
|
|
targets = [dict((target_translations[key], value) for (key, value) in x.items()) for x in module.params.get('targets')]
|
|
performance_mode_translations = {
|
|
'general_purpose': 'generalPurpose',
|
|
'max_io': 'maxIO'
|
|
}
|
|
performance_mode = performance_mode_translations[module.params.get('performance_mode')]
|
|
changed = False
|
|
|
|
state = str(module.params.get('state')).lower()
|
|
|
|
if state == 'present':
|
|
if not name:
|
|
module.fail_json(msg='Name parameter is required for create')
|
|
|
|
changed = connection.create_file_system(name, performance_mode)
|
|
changed = connection.converge_file_system(name=name, tags=tags, targets=targets) or changed
|
|
result = first_or_default(connection.get_file_systems(CreationToken=name))
|
|
|
|
elif state == 'absent':
|
|
if not name and not fs_id:
|
|
module.fail_json(msg='Either name or id parameter is required for delete')
|
|
|
|
changed = connection.delete_file_system(name, fs_id)
|
|
result = None
|
|
if result:
|
|
result = camel_dict_to_snake_dict(result)
|
|
module.exit_json(changed=changed, efs=result)
|
|
|
|
from ansible.module_utils.basic import *
|
|
from ansible.module_utils.ec2 import *
|
|
|
|
if __name__ == '__main__':
|
|
main()
|