mirror of https://github.com/ansible/ansible.git
Amazon kms_facts module (#26733)
* Amazon kms_facts module Facts module for Amazon's Key Management Service * kms_facts provide aliases Return aliases for keys Provide `alias` as a filter Cope when tags can't be listed Ensure everything is properly snake cased * Rename kms_facts to aws_kms_facts There may be conflicting KMS modules for other providers otherwise. * Fix documentation, add aliases cache Aliases are called many times, so add a cache * Reduce amount of info on deleted keys Getting info on a key is costly (2s) per key, so reduce info on deleted keys. * Add policy information to facts * aws_kms_facts version update Fix ridiculously long RETURN line * Remove dangerous-default-value from aws_kms_factspull/30481/merge
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#!/usr/bin/python
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#
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# This is a 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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# This Ansible library 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 this library. If not, see <http://www.gnu.org/licenses/>.
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ANSIBLE_METADATA = {'metadata_version': '1.1',
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'status': ['preview'],
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'supported_by': 'community'}
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DOCUMENTATION = '''
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---
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module: aws_kms_facts
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short_description: Gather facts about AWS KMS keys
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description:
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- Gather facts about AWS KMS keys including tags and grants
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version_added: "2.5"
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author: "Will Thames (@willthames)"
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options:
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filters:
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description:
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- A dict of filters to apply. Each dict item consists of a filter key and a filter value.
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The filters aren't natively supported by boto3, but are supported to provide similar
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functionality to other modules. Standard tag filters (C(tag-key), C(tag-value) and
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C(tag:tagName)) are available, as are C(key-id) and C(alias)
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pending_deletion:
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description: Whether to get full details (tags, grants etc.) of keys pending deletion
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default: False
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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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# Gather facts about all KMS keys
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- kms_facts
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# Gather facts about all keys with a Name tag
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- kms_facts:
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filters:
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tag-key: Name
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# Gather facts about all keys with a specific name
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- kms_facts:
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filters:
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"tag:Name": Example
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'''
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RETURN = '''
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keys:
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description: list of keys
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type: complex
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returned: always
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contains:
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key_id:
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description: ID of key
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type: str
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returned: always
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sample: abcd1234-abcd-1234-5678-ef1234567890
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key_arn:
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description: ARN of key
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type: str
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returned: always
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sample: arn:aws:kms:ap-southeast-2:123456789012:key/abcd1234-abcd-1234-5678-ef1234567890
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key_state:
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description: The state of the key
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type: str
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returned: always
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sample: PendingDeletion
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key_usage:
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description: The cryptographic operations for which you can use the key.
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type: str
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returned: always
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sample: ENCRYPT_DECRYPT
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origin:
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description:
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The source of the key's key material. When this value is C(AWS_KMS),
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AWS KMS created the key material. When this value is C(EXTERNAL), the
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key material was imported or the CMK lacks key material.
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type: str
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returned: always
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sample: AWS_KMS
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aws_account_id:
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description: The AWS Account ID that the key belongs to
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type: str
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returned: always
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sample: 1234567890123
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creation_date:
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description: Date of creation of the key
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type: str
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returned: always
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sample: 2017-04-18T15:12:08.551000+10:00
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description:
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description: Description of the key
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type: str
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returned: always
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sample: "My Key for Protecting important stuff"
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enabled:
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description: Whether the key is enabled. True if C(KeyState) is true.
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type: str
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returned: always
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sample: false
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aliases:
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description: list of aliases associated with the key
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type: list
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returned: always
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sample:
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- aws/acm
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- aws/ebs
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tags:
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description: dictionary of tags applied to the key. Empty when access is denied even if there are tags.
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type: dict
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returned: always
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sample:
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Name: myKey
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Purpose: protecting_stuff
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policies:
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description: list of policy documents for the keys. Empty when access is denied even if there are policies.
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type: list
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returned: always
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sample:
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Version: "2012-10-17"
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Id: "auto-ebs-2"
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Statement:
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- Sid: "Allow access through EBS for all principals in the account that are authorized to use EBS"
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Effect: "Allow"
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Principal:
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AWS: "*"
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Action:
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- "kms:Encrypt"
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- "kms:Decrypt"
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- "kms:ReEncrypt*"
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- "kms:GenerateDataKey*"
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- "kms:CreateGrant"
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- "kms:DescribeKey"
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Resource: "*"
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Condition:
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StringEquals:
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kms:CallerAccount: "111111111111"
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kms:ViaService: "ec2.ap-southeast-2.amazonaws.com"
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- Sid: "Allow direct access to key metadata to the account"
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Effect: "Allow"
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Principal:
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AWS: "arn:aws:iam::111111111111:root"
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Action:
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- "kms:Describe*"
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- "kms:Get*"
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- "kms:List*"
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- "kms:RevokeGrant"
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Resource: "*"
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grants:
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description: list of grants associated with a key
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type: complex
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returned: always
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contains:
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constraints:
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description: Constraints on the encryption context that the grant allows.
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See U(https://docs.aws.amazon.com/kms/latest/APIReference/API_GrantConstraints.html) for further details
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type: dict
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returned: always
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sample:
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encryption_context_equals:
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"aws:lambda:_function_arn": "arn:aws:lambda:ap-southeast-2:012345678912:function:xyz"
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creation_date:
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description: Date of creation of the grant
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type: str
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returned: always
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sample: 2017-04-18T15:12:08+10:00
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grant_id:
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description: The unique ID for the grant
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type: str
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returned: always
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sample: abcd1234abcd1234abcd1234abcd1234abcd1234abcd1234abcd1234abcd1234
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grantee_principal:
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description: The principal that receives the grant's permissions
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type: str
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returned: always
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sample: arn:aws:sts::0123456789012:assumed-role/lambda_xyz/xyz
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issuing_account:
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description: The AWS account under which the grant was issued
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type: str
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returned: always
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sample: arn:aws:iam::01234567890:root
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key_id:
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description: The key ARN to which the grant applies.
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type: str
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returned: always
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sample: arn:aws:kms:ap-southeast-2:123456789012:key/abcd1234-abcd-1234-5678-ef1234567890
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name:
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description: The friendly name that identifies the grant
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type: str
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returned: always
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sample: xyz
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operations:
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description: The list of operations permitted by the grant
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type: list
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returned: always
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sample:
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- Decrypt
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- RetireGrant
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retiring_principal:
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description: The principal that can retire the grant
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type: str
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returned: always
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sample: arn:aws:sts::0123456789012:assumed-role/lambda_xyz/xyz
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'''
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from ansible.module_utils.basic import AnsibleModule
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from ansible.module_utils.ec2 import boto3_conn, ec2_argument_spec, get_aws_connection_info
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from ansible.module_utils.ec2 import AWSRetry, camel_dict_to_snake_dict, HAS_BOTO3
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from ansible.module_utils.ec2 import boto3_tag_list_to_ansible_dict
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import traceback
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try:
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import botocore
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except ImportError:
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pass # caught by imported HAS_BOTO3
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# Caching lookup for aliases
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_aliases = dict()
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@AWSRetry.backoff(tries=5, delay=5, backoff=2.0)
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def get_kms_keys_with_backoff(connection):
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paginator = connection.get_paginator('list_keys')
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return paginator.paginate().build_full_result()
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@AWSRetry.backoff(tries=5, delay=5, backoff=2.0)
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def get_kms_aliases_with_backoff(connection):
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paginator = connection.get_paginator('list_aliases')
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return paginator.paginate().build_full_result()
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def get_kms_aliases_lookup(connection):
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if not _aliases:
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for alias in get_kms_aliases_with_backoff(connection)['Aliases']:
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# Not all aliases are actually associated with a key
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if 'TargetKeyId' in alias:
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# strip off leading 'alias/' and add it to key's aliases
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if alias['TargetKeyId'] in _aliases:
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_aliases[alias['TargetKeyId']].append(alias['AliasName'][6:])
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else:
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_aliases[alias['TargetKeyId']] = [alias['AliasName'][6:]]
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return _aliases
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@AWSRetry.backoff(tries=5, delay=5, backoff=2.0)
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def get_kms_tags_with_backoff(connection, key_id, **kwargs):
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return connection.list_resource_tags(KeyId=key_id, **kwargs)
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@AWSRetry.backoff(tries=5, delay=5, backoff=2.0)
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def get_kms_grants_with_backoff(connection, key_id, **kwargs):
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params = dict(KeyId=key_id)
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if kwargs.get('tokens'):
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params['GrantTokens'] = kwargs['tokens']
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paginator = connection.get_paginator('list_grants')
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return paginator.paginate(**params).build_full_result()
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@AWSRetry.backoff(tries=5, delay=5, backoff=2.0)
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def get_kms_metadata_with_backoff(connection, key_id):
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return connection.describe_key(KeyId=key_id)
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@AWSRetry.backoff(tries=5, delay=5, backoff=2.0)
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def list_key_policies_with_backoff(connection, key_id):
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paginator = connection.get_paginator('list_key_policies')
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return paginator.paginate(KeyId=key_id).build_full_result()
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@AWSRetry.backoff(tries=5, delay=5, backoff=2.0)
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def get_key_policy_with_backoff(connection, key_id, policy_name):
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return connection.get_key_policy(KeyId=key_id, PolicyName=policy_name)
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def get_kms_tags(connection, module, key_id):
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# Handle pagination here as list_resource_tags does not have
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# a paginator
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kwargs = {}
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tags = []
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more = True
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while more:
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try:
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tag_response = get_kms_tags_with_backoff(connection, key_id, **kwargs)
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tags.extend(tag_response['Tags'])
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except botocore.exceptions.ClientError as e:
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if e.response['Error']['Code'] != 'AccessDeniedException':
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module.fail_json(msg="Failed to obtain key tags",
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exception=traceback.format_exc(),
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**camel_dict_to_snake_dict(e.response))
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else:
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tag_response = {}
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if tag_response.get('NextMarker'):
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kwargs['Marker'] = tag_response['NextMarker']
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else:
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more = False
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return tags
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def get_kms_policies(connection, module, key_id):
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try:
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policies = list_key_policies_with_backoff(connection, key_id)['PolicyNames']
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return [get_key_policy_with_backoff(connection, key_id, policy)['Policy'] for
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policy in policies]
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except botocore.exceptions.ClientError as e:
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if e.response['Error']['Code'] != 'AccessDeniedException':
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module.fail_json(msg="Failed to obtain key policies",
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exception=traceback.format_exc(),
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**camel_dict_to_snake_dict(e.response))
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else:
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return []
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def key_matches_filter(key, filtr):
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if filtr[0] == 'key-id':
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return filtr[1] == key['key_id']
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if filtr[0] == 'tag-key':
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return filtr[1] in key['tags']
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if filtr[0] == 'tag-value':
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return filtr[1] in key['tags'].values()
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if filtr[0] == 'alias':
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return filtr[1] in key['aliases']
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if filtr[0].startswith('tag:'):
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return key['tags'][filtr[0][4:]] == filtr[1]
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def key_matches_filters(key, filters):
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if not filters:
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return True
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else:
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return all([key_matches_filter(key, filtr) for filtr in filters.items()])
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def get_key_details(connection, module, key_id, tokens=None):
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if not tokens:
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tokens = []
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try:
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result = get_kms_metadata_with_backoff(connection, key_id)['KeyMetadata']
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except botocore.exceptions.ClientError as e:
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module.fail_json(msg="Failed to obtain key metadata",
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exception=traceback.format_exc(),
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**camel_dict_to_snake_dict(e.response))
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result['KeyArn'] = result.pop('Arn')
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try:
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aliases = get_kms_aliases_lookup(connection)
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except botocore.exceptions.ClientError as e:
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module.fail_json(msg="Failed to obtain aliases",
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exception=traceback.format_exc(),
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**camel_dict_to_snake_dict(e.response))
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result['aliases'] = aliases.get(result['KeyId'], [])
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if module.params.get('pending_deletion'):
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return camel_dict_to_snake_dict(result)
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try:
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result['grants'] = get_kms_grants_with_backoff(connection, key_id, tokens=tokens)['Grants']
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except botocore.exceptions.ClientError as e:
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module.fail_json(msg="Failed to obtain key grants",
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exception=traceback.format_exc(),
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**camel_dict_to_snake_dict(e.response))
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tags = get_kms_tags(connection, module, key_id)
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result = camel_dict_to_snake_dict(result)
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result['tags'] = boto3_tag_list_to_ansible_dict(tags, 'TagKey', 'TagValue')
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result['policies'] = get_kms_policies(connection, module, key_id)
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return result
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def get_kms_facts(connection, module):
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try:
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keys = get_kms_keys_with_backoff(connection)['Keys']
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except botocore.exceptions.ClientError as e:
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module.fail_json(msg="Failed to obtain keys",
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exception=traceback.format_exc(),
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**camel_dict_to_snake_dict(e.response))
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return [get_key_details(connection, module, key['KeyId']) for key in keys]
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def main():
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argument_spec = ec2_argument_spec()
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argument_spec.update(
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dict(
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filters=dict(type='dict'),
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pending_deletion=dict(type='bool', default=False)
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)
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)
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module = AnsibleModule(argument_spec=argument_spec,
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supports_check_mode=True)
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if not HAS_BOTO3:
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module.fail_json(msg='boto3 and botocore are required for this module')
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region, ec2_url, aws_connect_params = get_aws_connection_info(module, boto3=True)
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if region:
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connection = boto3_conn(module, conn_type='client', resource='kms', region=region, endpoint=ec2_url, **aws_connect_params)
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else:
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module.fail_json(msg="region must be specified")
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all_keys = get_kms_facts(connection, module)
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module.exit_json(keys=[key for key in all_keys if key_matches_filters(key, module.params['filters'])])
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if __name__ == '__main__':
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main()
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