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#!/usr/bin/python # -*- coding: utf-8 -*- # GNU General Public License v3.0+ (see LICENSE or https://www.gnu.org/licenses/gpl-3.0.txt) from __future__ import absolute_import, division, print_function __metaclass__ = type ANSIBLE_METADATA = {"metadata_version": "1.1", "status": ["preview"], "supported_by": "certified"} DOCUMENTATION = r""" --- module: aci_ap short_description: Manage top level Application Profile (AP) objects (fv:Ap) description: - Manage top level Application Profile (AP) objects on Cisco ACI fabrics options: tenant: description: - The name of an existing tenant. type: str aliases: [ tenant_name ] ap: description: - The name of the application network profile. type: str aliases: [ app_profile, app_profile_name, name ] description: description: - Description for the AP. type: str aliases: [ descr ] monitoring_policy: description: - The name of the monitoring policy. type: str state: description: - Use C(present) or C(absent) for adding or removing. - Use C(query) for listing an object or multiple objects. type: str choices: [ absent, present, query ] default: present name_alias: description: - The alias for the current object. This relates to the nameAlias field in ACI. type: str extends_documentation_fragment: - cisco.aci.aci - cisco.aci.annotation - cisco.aci.owner notes: - This module does not manage EPGs, see M(cisco.aci.aci_epg) to do this. - The used C(tenant) must exist before using this module in your playbook. The M(cisco.aci.aci_tenant) module can be used for this. seealso: - module: cisco.aci.aci_tenant - name: APIC Management Information Model reference description: More information about the internal APIC class B(fv:Ap). link: https://developer.cisco.com/docs/apic-mim-ref/ author: - Swetha Chunduri (@schunduri) - Shreyas Srish (@shrsr) """ EXAMPLES = r""" - name: Add a new AP cisco.aci.aci_ap: host: apic username: admin password: SomeSecretPassword tenant: production ap: default description: default ap monitoring_policy: default state: present delegate_to: localhost - name: Remove an AP cisco.aci.aci_ap: host: apic username: admin password: SomeSecretPassword tenant: production ap: default state: absent delegate_to: localhost - name: Query an AP cisco.aci.aci_ap: host: apic username: admin password: SomeSecretPassword tenant: production ap: default state: query delegate_to: localhost register: query_result - name: Query all APs cisco.aci.aci_ap: host: apic username: admin password: SomeSecretPassword state: query delegate_to: localhost register: query_result """ RETURN = r""" current: description: The existing configuration from the APIC after the module has finished returned: success type: list sample: [ { "fvTenant": { "attributes": { "descr": "Production environment", "dn": "uni/tn-production", "name": "production", "nameAlias": "", "ownerKey": "", "ownerTag": "" } } } ] error: description: The error information as returned from the APIC returned: failure type: dict sample: { "code": "122", "text": "unknown managed object class foo" } raw: description: The raw output returned by the APIC REST API (xml or json) returned: parse error type: str sample: '<?xml version="1.0" encoding="UTF-8"?><imdata totalCount="1"><error code="122" text="unknown managed object class foo"/></imdata>' sent: description: The actual/minimal configuration pushed to the APIC returned: info type: list sample: { "fvTenant": { "attributes": { "descr": "Production environment" } } } previous: description: The original configuration from the APIC before the module has started returned: info type: list sample: [ { "fvTenant": { "attributes": { "descr": "Production", "dn": "uni/tn-production", "name": "production", "nameAlias": "", "ownerKey": "", "ownerTag": "" } } } ] proposed: description: The assembled configuration from the user-provided parameters returned: info type: dict sample: { "fvTenant": { "attributes": { "descr": "Production environment", "name": "production" } } } filter_string: description: The filter string used for the request returned: failure or debug type: str sample: ?rsp-prop-include=config-only method: description: The HTTP method used for the request to the APIC returned: failure or debug type: str sample: POST response: description: The HTTP response from the APIC returned: failure or debug type: str sample: OK (30 bytes) status: description: The HTTP status from the APIC returned: failure or debug type: int sample: 200 url: description: The HTTP url used for the request to the APIC returned: failure or debug type: str sample: https://10.11.12.13/api/mo/uni/tn-production.json """ from ansible.module_utils.basic import AnsibleModule from ansible_collections.cisco.aci.plugins.module_utils.aci import ACIModule, aci_argument_spec, aci_annotation_spec, aci_owner_spec def main(): argument_spec = aci_argument_spec() argument_spec.update(aci_annotation_spec()) argument_spec.update(aci_owner_spec()) argument_spec.update( tenant=dict(type="str", aliases=["tenant_name"]), # Not required for querying all objects ap=dict(type="str", aliases=["app_profile", "app_profile_name", "name"]), # Not required for querying all objects description=dict(type="str", aliases=["descr"]), state=dict(type="str", default="present", choices=["absent", "present", "query"]), name_alias=dict(type="str"), monitoring_policy=dict(type="str"), ) module = AnsibleModule( argument_spec=argument_spec, supports_check_mode=True, required_if=[ ["state", "absent", ["tenant", "ap"]], ["state", "present", ["tenant", "ap"]], ], ) ap = module.params.get("ap") description = module.params.get("description") state = module.params.get("state") tenant = module.params.get("tenant") name_alias = module.params.get("name_alias") monitoring_policy = module.params.get("monitoring_policy") child_configs = [dict(fvRsApMonPol=dict(attributes=dict(tnMonEPGPolName=monitoring_policy)))] aci = ACIModule(module) aci.construct_url( root_class=dict( aci_class="fvTenant", aci_rn="tn-{0}".format(tenant), module_object=tenant, target_filter={"name": tenant}, ), subclass_1=dict( aci_class="fvAp", aci_rn="ap-{0}".format(ap), module_object=ap, target_filter={"name": ap}, ), child_classes=["fvRsApMonPol"], ) aci.get_existing() if state == "present": aci.payload( aci_class="fvAp", class_config=dict( name=ap, descr=description, nameAlias=name_alias, ), child_configs=child_configs, ) aci.get_diff(aci_class="fvAp") aci.post_config() elif state == "absent": aci.delete_config() aci.exit_json() if __name__ == "__main__": main()