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525 lines
20 KiB
Python
525 lines
20 KiB
Python
#!/usr/bin/python
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# Copyright: Ansible Project
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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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ANSIBLE_METADATA = {'metadata_version': '1.1',
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'status': ['stableinterface'],
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'supported_by': 'core'}
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DOCUMENTATION = '''
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---
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module: ec2_vpc_net
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short_description: Configure AWS virtual private clouds
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description:
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- Create, modify, and terminate AWS virtual private clouds.
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version_added: "2.0"
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author:
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- Jonathan Davila (@defionscode)
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- Sloane Hertel (@s-hertel)
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options:
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name:
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description:
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- The name to give your VPC. This is used in combination with C(cidr_block) to determine if a VPC already exists.
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required: yes
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type: str
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cidr_block:
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description:
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- The primary CIDR of the VPC. After 2.5 a list of CIDRs can be provided. The first in the list will be used as the primary CIDR
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and is used in conjunction with the C(name) to ensure idempotence.
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required: yes
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type: list
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elements: str
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ipv6_cidr:
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description:
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- Request an Amazon-provided IPv6 CIDR block with /56 prefix length. You cannot specify the range of IPv6 addresses,
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or the size of the CIDR block.
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default: False
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type: bool
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version_added: '2.10'
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purge_cidrs:
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description:
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- Remove CIDRs that are associated with the VPC and are not specified in C(cidr_block).
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default: no
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type: bool
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version_added: '2.5'
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tenancy:
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description:
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- Whether to be default or dedicated tenancy. This cannot be changed after the VPC has been created.
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default: default
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choices: [ 'default', 'dedicated' ]
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type: str
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dns_support:
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description:
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- Whether to enable AWS DNS support.
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default: yes
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type: bool
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dns_hostnames:
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description:
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- Whether to enable AWS hostname support.
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default: yes
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type: bool
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dhcp_opts_id:
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description:
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- The id of the DHCP options to use for this VPC.
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type: str
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tags:
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description:
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- The tags you want attached to the VPC. This is independent of the name value, note if you pass a 'Name' key it would override the Name of
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the VPC if it's different.
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aliases: [ 'resource_tags' ]
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type: dict
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state:
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description:
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- The state of the VPC. Either absent or present.
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default: present
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choices: [ 'present', 'absent' ]
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type: str
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multi_ok:
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description:
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- By default the module will not create another VPC if there is another VPC with the same name and CIDR block. Specify this as true if you want
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duplicate VPCs created.
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type: bool
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default: false
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requirements:
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- boto3
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- botocore
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extends_documentation_fragment:
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- aws
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- ec2
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'''
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EXAMPLES = '''
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# Note: These examples do not set authentication details, see the AWS Guide for details.
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- name: create a VPC with dedicated tenancy and a couple of tags
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ec2_vpc_net:
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name: Module_dev2
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cidr_block: 10.10.0.0/16
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region: us-east-1
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tags:
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module: ec2_vpc_net
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this: works
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tenancy: dedicated
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- name: create a VPC with dedicated tenancy and request an IPv6 CIDR
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ec2_vpc_net:
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name: Module_dev2
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cidr_block: 10.10.0.0/16
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ipv6_cidr: True
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region: us-east-1
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tenancy: dedicated
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'''
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RETURN = '''
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vpc:
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description: info about the VPC that was created or deleted
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returned: always
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type: complex
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contains:
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cidr_block:
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description: The CIDR of the VPC
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returned: always
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type: str
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sample: 10.0.0.0/16
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cidr_block_association_set:
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description: IPv4 CIDR blocks associated with the VPC
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returned: success
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type: list
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sample:
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"cidr_block_association_set": [
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{
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"association_id": "vpc-cidr-assoc-97aeeefd",
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"cidr_block": "20.0.0.0/24",
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"cidr_block_state": {
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"state": "associated"
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}
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}
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]
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classic_link_enabled:
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description: indicates whether ClassicLink is enabled
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returned: always
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type: bool
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sample: false
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dhcp_options_id:
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description: the id of the DHCP options associated with this VPC
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returned: always
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type: str
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sample: dopt-0fb8bd6b
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id:
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description: VPC resource id
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returned: always
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type: str
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sample: vpc-c2e00da5
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instance_tenancy:
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description: indicates whether VPC uses default or dedicated tenancy
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returned: always
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type: str
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sample: default
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ipv6_cidr_block_association_set:
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description: IPv6 CIDR blocks associated with the VPC
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returned: success
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type: list
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sample:
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"ipv6_cidr_block_association_set": [
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{
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"association_id": "vpc-cidr-assoc-97aeeefd",
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"ipv6_cidr_block": "2001:db8::/56",
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"ipv6_cidr_block_state": {
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"state": "associated"
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}
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}
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]
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is_default:
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description: indicates whether this is the default VPC
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returned: always
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type: bool
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sample: false
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state:
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description: state of the VPC
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returned: always
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type: str
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sample: available
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tags:
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description: tags attached to the VPC, includes name
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returned: always
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type: complex
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contains:
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Name:
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description: name tag for the VPC
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returned: always
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type: str
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sample: pk_vpc4
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'''
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try:
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import botocore
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except ImportError:
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pass # Handled by AnsibleAWSModule
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from time import sleep, time
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from ansible.module_utils.aws.core import AnsibleAWSModule
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from ansible.module_utils.ec2 import (AWSRetry, camel_dict_to_snake_dict, compare_aws_tags,
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ansible_dict_to_boto3_tag_list, boto3_tag_list_to_ansible_dict)
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from ansible.module_utils.six import string_types
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from ansible.module_utils._text import to_native
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from ansible.module_utils.network.common.utils import to_subnet
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def vpc_exists(module, vpc, name, cidr_block, multi):
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"""Returns None or a vpc object depending on the existence of a VPC. When supplied
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with a CIDR, it will check for matching tags to determine if it is a match
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otherwise it will assume the VPC does not exist and thus return None.
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"""
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try:
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matching_vpcs = vpc.describe_vpcs(Filters=[{'Name': 'tag:Name', 'Values': [name]}, {'Name': 'cidr-block', 'Values': cidr_block}])['Vpcs']
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# If an exact matching using a list of CIDRs isn't found, check for a match with the first CIDR as is documented for C(cidr_block)
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if not matching_vpcs:
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matching_vpcs = vpc.describe_vpcs(Filters=[{'Name': 'tag:Name', 'Values': [name]}, {'Name': 'cidr-block', 'Values': [cidr_block[0]]}])['Vpcs']
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except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
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module.fail_json_aws(e, msg="Failed to describe VPCs")
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if multi:
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return None
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elif len(matching_vpcs) == 1:
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return matching_vpcs[0]['VpcId']
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elif len(matching_vpcs) > 1:
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module.fail_json(msg='Currently there are %d VPCs that have the same name and '
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'CIDR block you specified. If you would like to create '
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'the VPC anyway please pass True to the multi_ok param.' % len(matching_vpcs))
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return None
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@AWSRetry.backoff(delay=3, tries=8, catch_extra_error_codes=['InvalidVpcID.NotFound'])
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def get_classic_link_with_backoff(connection, vpc_id):
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try:
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return connection.describe_vpc_classic_link(VpcIds=[vpc_id])['Vpcs'][0].get('ClassicLinkEnabled')
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except botocore.exceptions.ClientError as e:
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if e.response["Error"]["Message"] == "The functionality you requested is not available in this region.":
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return False
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else:
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raise
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def get_vpc(module, connection, vpc_id):
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# wait for vpc to be available
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try:
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connection.get_waiter('vpc_available').wait(VpcIds=[vpc_id])
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except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
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module.fail_json_aws(e, msg="Unable to wait for VPC {0} to be available.".format(vpc_id))
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try:
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vpc_obj = connection.describe_vpcs(VpcIds=[vpc_id], aws_retry=True)['Vpcs'][0]
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except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
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module.fail_json_aws(e, msg="Failed to describe VPCs")
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try:
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vpc_obj['ClassicLinkEnabled'] = get_classic_link_with_backoff(connection, vpc_id)
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except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
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module.fail_json_aws(e, msg="Failed to describe VPCs")
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return vpc_obj
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def update_vpc_tags(connection, module, vpc_id, tags, name):
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if tags is None:
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tags = dict()
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tags.update({'Name': name})
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tags = dict((k, to_native(v)) for k, v in tags.items())
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try:
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current_tags = dict((t['Key'], t['Value']) for t in connection.describe_tags(Filters=[{'Name': 'resource-id', 'Values': [vpc_id]}])['Tags'])
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tags_to_update, dummy = compare_aws_tags(current_tags, tags, False)
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if tags_to_update:
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if not module.check_mode:
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tags = ansible_dict_to_boto3_tag_list(tags_to_update)
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vpc_obj = connection.create_tags(Resources=[vpc_id], Tags=tags, aws_retry=True)
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# Wait for tags to be updated
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expected_tags = boto3_tag_list_to_ansible_dict(tags)
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filters = [{'Name': 'tag:{0}'.format(key), 'Values': [value]} for key, value in expected_tags.items()]
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connection.get_waiter('vpc_available').wait(VpcIds=[vpc_id], Filters=filters)
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return True
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else:
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return False
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except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
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module.fail_json_aws(e, msg="Failed to update tags")
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def update_dhcp_opts(connection, module, vpc_obj, dhcp_id):
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if vpc_obj['DhcpOptionsId'] != dhcp_id:
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if not module.check_mode:
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try:
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connection.associate_dhcp_options(DhcpOptionsId=dhcp_id, VpcId=vpc_obj['VpcId'])
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except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
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module.fail_json_aws(e, msg="Failed to associate DhcpOptionsId {0}".format(dhcp_id))
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try:
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# Wait for DhcpOptionsId to be updated
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filters = [{'Name': 'dhcp-options-id', 'Values': [dhcp_id]}]
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connection.get_waiter('vpc_available').wait(VpcIds=[vpc_obj['VpcId']], Filters=filters)
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except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
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module.fail_json(msg="Failed to wait for DhcpOptionsId to be updated")
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return True
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else:
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return False
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def create_vpc(connection, module, cidr_block, tenancy):
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try:
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if not module.check_mode:
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vpc_obj = connection.create_vpc(CidrBlock=cidr_block, InstanceTenancy=tenancy)
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else:
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module.exit_json(changed=True)
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except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
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module.fail_json_aws(e, "Failed to create the VPC")
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# wait for vpc to exist
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try:
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connection.get_waiter('vpc_exists').wait(VpcIds=[vpc_obj['Vpc']['VpcId']])
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except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
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module.fail_json_aws(e, msg="Unable to wait for VPC {0} to be created.".format(vpc_obj['Vpc']['VpcId']))
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return vpc_obj['Vpc']['VpcId']
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def wait_for_vpc_attribute(connection, module, vpc_id, attribute, expected_value):
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start_time = time()
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updated = False
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while time() < start_time + 300:
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current_value = connection.describe_vpc_attribute(
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Attribute=attribute,
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VpcId=vpc_id
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)['{0}{1}'.format(attribute[0].upper(), attribute[1:])]['Value']
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if current_value != expected_value:
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sleep(3)
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else:
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updated = True
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break
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if not updated:
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module.fail_json(msg="Failed to wait for {0} to be updated".format(attribute))
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def get_cidr_network_bits(module, cidr_block):
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fixed_cidrs = []
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for cidr in cidr_block:
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split_addr = cidr.split('/')
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if len(split_addr) == 2:
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# this_ip is a IPv4 CIDR that may or may not have host bits set
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# Get the network bits.
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valid_cidr = to_subnet(split_addr[0], split_addr[1])
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if cidr != valid_cidr:
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module.warn("One of your CIDR addresses ({0}) has host bits set. To get rid of this warning, "
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"check the network mask and make sure that only network bits are set: {1}.".format(cidr, valid_cidr))
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fixed_cidrs.append(valid_cidr)
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else:
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# let AWS handle invalid CIDRs
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fixed_cidrs.append(cidr)
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return fixed_cidrs
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def main():
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argument_spec = dict(
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name=dict(required=True),
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cidr_block=dict(type='list', required=True),
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ipv6_cidr=dict(type='bool', default=False),
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tenancy=dict(choices=['default', 'dedicated'], default='default'),
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dns_support=dict(type='bool', default=True),
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dns_hostnames=dict(type='bool', default=True),
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dhcp_opts_id=dict(),
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tags=dict(type='dict', aliases=['resource_tags']),
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state=dict(choices=['present', 'absent'], default='present'),
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multi_ok=dict(type='bool', default=False),
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purge_cidrs=dict(type='bool', default=False),
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)
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module = AnsibleAWSModule(
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argument_spec=argument_spec,
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supports_check_mode=True
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)
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name = module.params.get('name')
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cidr_block = get_cidr_network_bits(module, module.params.get('cidr_block'))
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ipv6_cidr = module.params.get('ipv6_cidr')
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purge_cidrs = module.params.get('purge_cidrs')
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tenancy = module.params.get('tenancy')
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dns_support = module.params.get('dns_support')
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dns_hostnames = module.params.get('dns_hostnames')
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dhcp_id = module.params.get('dhcp_opts_id')
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tags = module.params.get('tags')
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state = module.params.get('state')
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multi = module.params.get('multi_ok')
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changed = False
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connection = module.client(
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'ec2',
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retry_decorator=AWSRetry.jittered_backoff(
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retries=8, delay=3, catch_extra_error_codes=['InvalidVpcID.NotFound']
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)
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)
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if dns_hostnames and not dns_support:
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module.fail_json(msg='In order to enable DNS Hostnames you must also enable DNS support')
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if state == 'present':
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# Check if VPC exists
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vpc_id = vpc_exists(module, connection, name, cidr_block, multi)
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if vpc_id is None:
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vpc_id = create_vpc(connection, module, cidr_block[0], tenancy)
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changed = True
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vpc_obj = get_vpc(module, connection, vpc_id)
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associated_cidrs = dict((cidr['CidrBlock'], cidr['AssociationId']) for cidr in vpc_obj.get('CidrBlockAssociationSet', [])
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if cidr['CidrBlockState']['State'] != 'disassociated')
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to_add = [cidr for cidr in cidr_block if cidr not in associated_cidrs]
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to_remove = [associated_cidrs[cidr] for cidr in associated_cidrs if cidr not in cidr_block]
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expected_cidrs = [cidr for cidr in associated_cidrs if associated_cidrs[cidr] not in to_remove] + to_add
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if len(cidr_block) > 1:
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for cidr in to_add:
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changed = True
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try:
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connection.associate_vpc_cidr_block(CidrBlock=cidr, VpcId=vpc_id)
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except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
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module.fail_json_aws(e, "Unable to associate CIDR {0}.".format(ipv6_cidr))
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if ipv6_cidr:
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if 'Ipv6CidrBlockAssociationSet' in vpc_obj.keys():
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module.warn("Only one IPv6 CIDR is permitted per VPC, {0} already has CIDR {1}".format(
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vpc_id,
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vpc_obj['Ipv6CidrBlockAssociationSet'][0]['Ipv6CidrBlock']))
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else:
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try:
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connection.associate_vpc_cidr_block(AmazonProvidedIpv6CidrBlock=ipv6_cidr, VpcId=vpc_id)
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changed = True
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except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
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module.fail_json_aws(e, "Unable to associate CIDR {0}.".format(ipv6_cidr))
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if purge_cidrs:
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for association_id in to_remove:
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changed = True
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try:
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connection.disassociate_vpc_cidr_block(AssociationId=association_id)
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|
except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
|
|
module.fail_json_aws(e, "Unable to disassociate {0}. You must detach or delete all gateways and resources that "
|
|
"are associated with the CIDR block before you can disassociate it.".format(association_id))
|
|
|
|
if dhcp_id is not None:
|
|
try:
|
|
if update_dhcp_opts(connection, module, vpc_obj, dhcp_id):
|
|
changed = True
|
|
except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
|
|
module.fail_json_aws(e, "Failed to update DHCP options")
|
|
|
|
if tags is not None or name is not None:
|
|
try:
|
|
if update_vpc_tags(connection, module, vpc_id, tags, name):
|
|
changed = True
|
|
except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
|
|
module.fail_json_aws(e, msg="Failed to update tags")
|
|
|
|
current_dns_enabled = connection.describe_vpc_attribute(Attribute='enableDnsSupport', VpcId=vpc_id, aws_retry=True)['EnableDnsSupport']['Value']
|
|
current_dns_hostnames = connection.describe_vpc_attribute(Attribute='enableDnsHostnames', VpcId=vpc_id, aws_retry=True)['EnableDnsHostnames']['Value']
|
|
if current_dns_enabled != dns_support:
|
|
changed = True
|
|
if not module.check_mode:
|
|
try:
|
|
connection.modify_vpc_attribute(VpcId=vpc_id, EnableDnsSupport={'Value': dns_support})
|
|
except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
|
|
module.fail_json_aws(e, "Failed to update enabled dns support attribute")
|
|
if current_dns_hostnames != dns_hostnames:
|
|
changed = True
|
|
if not module.check_mode:
|
|
try:
|
|
connection.modify_vpc_attribute(VpcId=vpc_id, EnableDnsHostnames={'Value': dns_hostnames})
|
|
except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
|
|
module.fail_json_aws(e, "Failed to update enabled dns hostnames attribute")
|
|
|
|
# wait for associated cidrs to match
|
|
if to_add or to_remove:
|
|
try:
|
|
connection.get_waiter('vpc_available').wait(
|
|
VpcIds=[vpc_id],
|
|
Filters=[{'Name': 'cidr-block-association.cidr-block', 'Values': expected_cidrs}]
|
|
)
|
|
except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
|
|
module.fail_json_aws(e, "Failed to wait for CIDRs to update")
|
|
|
|
# try to wait for enableDnsSupport and enableDnsHostnames to match
|
|
wait_for_vpc_attribute(connection, module, vpc_id, 'enableDnsSupport', dns_support)
|
|
wait_for_vpc_attribute(connection, module, vpc_id, 'enableDnsHostnames', dns_hostnames)
|
|
|
|
final_state = camel_dict_to_snake_dict(get_vpc(module, connection, vpc_id))
|
|
final_state['tags'] = boto3_tag_list_to_ansible_dict(final_state.get('tags', []))
|
|
final_state['id'] = final_state.pop('vpc_id')
|
|
|
|
module.exit_json(changed=changed, vpc=final_state)
|
|
|
|
elif state == 'absent':
|
|
|
|
# Check if VPC exists
|
|
vpc_id = vpc_exists(module, connection, name, cidr_block, multi)
|
|
|
|
if vpc_id is not None:
|
|
try:
|
|
if not module.check_mode:
|
|
connection.delete_vpc(VpcId=vpc_id)
|
|
changed = True
|
|
except (botocore.exceptions.ClientError, botocore.exceptions.BotoCoreError) as e:
|
|
module.fail_json_aws(e, msg="Failed to delete VPC {0} You may want to use the ec2_vpc_subnet, ec2_vpc_igw, "
|
|
"and/or ec2_vpc_route_table modules to ensure the other components are absent.".format(vpc_id))
|
|
|
|
module.exit_json(changed=changed, vpc={})
|
|
|
|
|
|
if __name__ == '__main__':
|
|
main()
|