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5d226f86b6
* Remove ANSIBLE_METADATA * remove from other modules * remove from plugins and scripts
471 lines
17 KiB
Python
471 lines
17 KiB
Python
#!/usr/bin/python
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# Copyright: (c) 2013, Vincent Van der Kussen <vincent at vanderkussen.org>
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# GNU General Public License v3.0+ (see COPYING or https://www.gnu.org/licenses/gpl-3.0.txt)
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from __future__ import absolute_import, division, print_function
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__metaclass__ = type
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DOCUMENTATION = '''
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---
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module: ovirt
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author:
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- Vincent Van der Kussen (@vincentvdk)
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short_description: oVirt/RHEV platform management
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deprecated:
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removed_in: "2.10"
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why: This module is for deprecated version of ovirt.
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alternative: Use M(ovirt_vm) instead
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description:
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- This module only supports oVirt/RHEV version 3. A newer module M(ovirt_vm) supports oVirt/RHV version 4.
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- Allows you to create new instances, either from scratch or an image, in addition to deleting or stopping instances on the oVirt/RHEV platform.
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options:
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user:
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description:
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- The user to authenticate with.
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required: true
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url:
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description:
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- The url of the oVirt instance.
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required: true
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instance_name:
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description:
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- The name of the instance to use.
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required: true
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aliases: [ vmname ]
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password:
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description:
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- Password of the user to authenticate with.
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required: true
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image:
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description:
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- The template to use for the instance.
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resource_type:
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description:
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- Whether you want to deploy an image or create an instance from scratch.
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choices: [ new, template ]
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zone:
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description:
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- Deploy the image to this oVirt cluster.
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instance_disksize:
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description:
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- Size of the instance's disk in GB.
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aliases: [ vm_disksize]
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instance_cpus:
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description:
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- The instance's number of CPUs.
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default: 1
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aliases: [ vmcpus ]
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instance_nic:
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description:
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- The name of the network interface in oVirt/RHEV.
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aliases: [ vmnic ]
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instance_network:
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description:
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- The logical network the machine should belong to.
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default: rhevm
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aliases: [ vmnetwork ]
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instance_mem:
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description:
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- The instance's amount of memory in MB.
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aliases: [ vmmem ]
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instance_type:
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description:
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- Define whether the instance is a server, desktop or high_performance.
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- I(high_performance) is supported since Ansible 2.5 and oVirt/RHV 4.2.
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choices: [ desktop, server, high_performance ]
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default: server
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aliases: [ vmtype ]
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disk_alloc:
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description:
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- Define whether disk is thin or preallocated.
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choices: [ preallocated, thin ]
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default: thin
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disk_int:
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description:
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- Interface type of the disk.
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choices: [ ide, virtio ]
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default: virtio
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instance_os:
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description:
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- Type of Operating System.
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aliases: [ vmos ]
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instance_cores:
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description:
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- Define the instance's number of cores.
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default: 1
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aliases: [ vmcores ]
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sdomain:
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description:
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- The Storage Domain where you want to create the instance's disk on.
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region:
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description:
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- The oVirt/RHEV datacenter where you want to deploy to.
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instance_dns:
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description:
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- Define the instance's Primary DNS server.
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aliases: [ dns ]
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instance_domain:
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description:
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- Define the instance's Domain.
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aliases: [ domain ]
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instance_hostname:
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description:
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- Define the instance's Hostname.
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aliases: [ hostname ]
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instance_ip:
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description:
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- Define the instance's IP.
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aliases: [ ip ]
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instance_netmask:
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description:
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- Define the instance's Netmask.
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aliases: [ netmask ]
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instance_rootpw:
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description:
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- Define the instance's Root password.
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aliases: [ rootpw ]
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instance_key:
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description:
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- Define the instance's Authorized key.
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aliases: [ key ]
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state:
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description:
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- Create, terminate or remove instances.
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choices: [ absent, present, restarted, shutdown, started ]
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default: present
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requirements:
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- ovirt-engine-sdk-python
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'''
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EXAMPLES = '''
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- name: Basic example to provision from image
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ovirt:
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user: admin@internal
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url: https://ovirt.example.com
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instance_name: ansiblevm04
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password: secret
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image: centos_64
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zone: cluster01
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resource_type: template
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- name: Full example to create new instance from scratch
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ovirt:
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instance_name: testansible
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resource_type: new
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instance_type: server
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user: admin@internal
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password: secret
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url: https://ovirt.example.com
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instance_disksize: 10
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zone: cluster01
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region: datacenter1
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instance_cpus: 1
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instance_nic: nic1
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instance_network: rhevm
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instance_mem: 1000
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disk_alloc: thin
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sdomain: FIBER01
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instance_cores: 1
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instance_os: rhel_6x64
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disk_int: virtio
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- name: Stopping an existing instance
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ovirt:
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instance_name: testansible
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state: stopped
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user: admin@internal
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password: secret
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url: https://ovirt.example.com
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- name: Start an existing instance
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ovirt:
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instance_name: testansible
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state: started
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user: admin@internal
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password: secret
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url: https://ovirt.example.com
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- name: Start an instance with cloud init information
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ovirt:
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instance_name: testansible
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state: started
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user: admin@internal
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password: secret
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url: https://ovirt.example.com
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hostname: testansible
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domain: ansible.local
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ip: 192.0.2.100
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netmask: 255.255.255.0
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gateway: 192.0.2.1
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rootpw: bigsecret
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'''
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import time
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try:
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from ovirtsdk.api import API
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from ovirtsdk.xml import params
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HAS_OVIRTSDK = True
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except ImportError:
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HAS_OVIRTSDK = False
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from ansible.module_utils.basic import AnsibleModule
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from ansible.module_utils.common.removed import removed_module
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# ------------------------------------------------------------------- #
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# create connection with API
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#
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def conn(url, user, password):
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api = API(url=url, username=user, password=password, insecure=True)
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try:
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value = api.test()
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except Exception:
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raise Exception("error connecting to the oVirt API")
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return api
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# ------------------------------------------------------------------- #
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# Create VM from scratch
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def create_vm(conn, vmtype, vmname, zone, vmdisk_size, vmcpus, vmnic, vmnetwork, vmmem, vmdisk_alloc, sdomain, vmcores, vmos, vmdisk_int):
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if vmdisk_alloc == 'thin':
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# define VM params
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vmparams = params.VM(name=vmname, cluster=conn.clusters.get(name=zone), os=params.OperatingSystem(type_=vmos),
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template=conn.templates.get(name="Blank"), memory=1024 * 1024 * int(vmmem),
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cpu=params.CPU(topology=params.CpuTopology(cores=int(vmcores), sockets=vmcpus)), type_=vmtype)
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# define disk params
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vmdisk = params.Disk(size=1024 * 1024 * 1024 * int(vmdisk_size), wipe_after_delete=True, sparse=True, interface=vmdisk_int, type_="System",
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format='cow',
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storage_domains=params.StorageDomains(storage_domain=[conn.storagedomains.get(name=sdomain)]))
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# define network parameters
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network_net = params.Network(name=vmnetwork)
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nic_net1 = params.NIC(name='nic1', network=network_net, interface='virtio')
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elif vmdisk_alloc == 'preallocated':
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# define VM params
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vmparams = params.VM(name=vmname, cluster=conn.clusters.get(name=zone), os=params.OperatingSystem(type_=vmos),
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template=conn.templates.get(name="Blank"), memory=1024 * 1024 * int(vmmem),
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cpu=params.CPU(topology=params.CpuTopology(cores=int(vmcores), sockets=vmcpus)), type_=vmtype)
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# define disk params
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vmdisk = params.Disk(size=1024 * 1024 * 1024 * int(vmdisk_size), wipe_after_delete=True, sparse=False, interface=vmdisk_int, type_="System",
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format='raw', storage_domains=params.StorageDomains(storage_domain=[conn.storagedomains.get(name=sdomain)]))
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# define network parameters
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network_net = params.Network(name=vmnetwork)
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nic_net1 = params.NIC(name=vmnic, network=network_net, interface='virtio')
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try:
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conn.vms.add(vmparams)
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except Exception:
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raise Exception("Error creating VM with specified parameters")
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vm = conn.vms.get(name=vmname)
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try:
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vm.disks.add(vmdisk)
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except Exception:
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raise Exception("Error attaching disk")
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try:
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vm.nics.add(nic_net1)
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except Exception:
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raise Exception("Error adding nic")
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# create an instance from a template
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def create_vm_template(conn, vmname, image, zone):
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vmparams = params.VM(name=vmname, cluster=conn.clusters.get(name=zone), template=conn.templates.get(name=image), disks=params.Disks(clone=True))
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try:
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conn.vms.add(vmparams)
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except Exception:
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raise Exception('error adding template %s' % image)
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# start instance
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def vm_start(conn, vmname, hostname=None, ip=None, netmask=None, gateway=None,
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domain=None, dns=None, rootpw=None, key=None):
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vm = conn.vms.get(name=vmname)
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use_cloud_init = False
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nics = None
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nic = None
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if hostname or ip or netmask or gateway or domain or dns or rootpw or key:
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use_cloud_init = True
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if ip and netmask and gateway:
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ipinfo = params.IP(address=ip, netmask=netmask, gateway=gateway)
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nic = params.GuestNicConfiguration(name='eth0', boot_protocol='STATIC', ip=ipinfo, on_boot=True)
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nics = params.Nics()
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nics = params.GuestNicsConfiguration(nic_configuration=[nic])
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initialization = params.Initialization(regenerate_ssh_keys=True, host_name=hostname, domain=domain, user_name='root',
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root_password=rootpw, nic_configurations=nics, dns_servers=dns,
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authorized_ssh_keys=key)
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action = params.Action(use_cloud_init=use_cloud_init, vm=params.VM(initialization=initialization))
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vm.start(action=action)
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# Stop instance
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def vm_stop(conn, vmname):
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vm = conn.vms.get(name=vmname)
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vm.stop()
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# restart instance
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def vm_restart(conn, vmname):
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state = vm_status(conn, vmname)
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vm = conn.vms.get(name=vmname)
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vm.stop()
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while conn.vms.get(vmname).get_status().get_state() != 'down':
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time.sleep(5)
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vm.start()
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# remove an instance
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def vm_remove(conn, vmname):
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vm = conn.vms.get(name=vmname)
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vm.delete()
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# ------------------------------------------------------------------- #
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# VM statuses
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#
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# Get the VMs status
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def vm_status(conn, vmname):
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status = conn.vms.get(name=vmname).status.state
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return status
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# Get VM object and return it's name if object exists
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def get_vm(conn, vmname):
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vm = conn.vms.get(name=vmname)
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if vm is None:
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name = "empty"
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else:
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name = vm.get_name()
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return name
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# ------------------------------------------------------------------- #
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# Hypervisor operations
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#
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# not available yet
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# ------------------------------------------------------------------- #
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# Main
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def main():
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module = AnsibleModule(
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argument_spec=dict(
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state=dict(type='str', default='present', choices=['absent', 'present', 'restart', 'shutdown', 'started']),
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user=dict(type='str', required=True),
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url=dict(type='str', required=True),
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instance_name=dict(type='str', required=True, aliases=['vmname']),
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password=dict(type='str', required=True, no_log=True),
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image=dict(type='str'),
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resource_type=dict(type='str', choices=['new', 'template']),
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zone=dict(type='str'),
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instance_disksize=dict(type='str', aliases=['vm_disksize']),
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instance_cpus=dict(type='str', default=1, aliases=['vmcpus']),
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instance_nic=dict(type='str', aliases=['vmnic']),
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instance_network=dict(type='str', default='rhevm', aliases=['vmnetwork']),
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instance_mem=dict(type='str', aliases=['vmmem']),
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instance_type=dict(type='str', default='server', aliases=['vmtype'], choices=['desktop', 'server', 'high_performance']),
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disk_alloc=dict(type='str', default='thin', choices=['preallocated', 'thin']),
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disk_int=dict(type='str', default='virtio', choices=['ide', 'virtio']),
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instance_os=dict(type='str', aliases=['vmos']),
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instance_cores=dict(type='str', default=1, aliases=['vmcores']),
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instance_hostname=dict(type='str', aliases=['hostname']),
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instance_ip=dict(type='str', aliases=['ip']),
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instance_netmask=dict(type='str', aliases=['netmask']),
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instance_gateway=dict(type='str', aliases=['gateway']),
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instance_domain=dict(type='str', aliases=['domain']),
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instance_dns=dict(type='str', aliases=['dns']),
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instance_rootpw=dict(type='str', aliases=['rootpw']),
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instance_key=dict(type='str', aliases=['key']),
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sdomain=dict(type='str'),
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region=dict(type='str'),
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),
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)
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if not HAS_OVIRTSDK:
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module.fail_json(msg='ovirtsdk required for this module')
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state = module.params['state']
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user = module.params['user']
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url = module.params['url']
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vmname = module.params['instance_name']
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password = module.params['password']
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image = module.params['image'] # name of the image to deploy
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resource_type = module.params['resource_type'] # template or from scratch
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zone = module.params['zone'] # oVirt cluster
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vmdisk_size = module.params['instance_disksize'] # disksize
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vmcpus = module.params['instance_cpus'] # number of cpu
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vmnic = module.params['instance_nic'] # network interface
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vmnetwork = module.params['instance_network'] # logical network
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vmmem = module.params['instance_mem'] # mem size
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vmdisk_alloc = module.params['disk_alloc'] # thin, preallocated
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vmdisk_int = module.params['disk_int'] # disk interface virtio or ide
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vmos = module.params['instance_os'] # Operating System
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vmtype = module.params['instance_type'] # server, desktop or high_performance
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vmcores = module.params['instance_cores'] # number of cores
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sdomain = module.params['sdomain'] # storage domain to store disk on
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region = module.params['region'] # oVirt Datacenter
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hostname = module.params['instance_hostname']
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ip = module.params['instance_ip']
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netmask = module.params['instance_netmask']
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gateway = module.params['instance_gateway']
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domain = module.params['instance_domain']
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dns = module.params['instance_dns']
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rootpw = module.params['instance_rootpw']
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key = module.params['instance_key']
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# initialize connection
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try:
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c = conn(url + "/api", user, password)
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except Exception as e:
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module.fail_json(msg='%s' % e)
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if state == 'present':
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if get_vm(c, vmname) == "empty":
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if resource_type == 'template':
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try:
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create_vm_template(c, vmname, image, zone)
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except Exception as e:
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module.fail_json(msg='%s' % e)
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module.exit_json(changed=True, msg="deployed VM %s from template %s" % (vmname, image))
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elif resource_type == 'new':
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# FIXME: refactor, use keyword args.
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try:
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create_vm(c, vmtype, vmname, zone, vmdisk_size, vmcpus, vmnic, vmnetwork, vmmem, vmdisk_alloc, sdomain, vmcores, vmos, vmdisk_int)
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except Exception as e:
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module.fail_json(msg='%s' % e)
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module.exit_json(changed=True, msg="deployed VM %s from scratch" % vmname)
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else:
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module.exit_json(changed=False, msg="You did not specify a resource type")
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else:
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module.exit_json(changed=False, msg="VM %s already exists" % vmname)
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if state == 'started':
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if vm_status(c, vmname) == 'up':
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module.exit_json(changed=False, msg="VM %s is already running" % vmname)
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else:
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# vm_start(c, vmname)
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vm_start(c, vmname, hostname, ip, netmask, gateway, domain, dns, rootpw, key)
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module.exit_json(changed=True, msg="VM %s started" % vmname)
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if state == 'shutdown':
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if vm_status(c, vmname) == 'down':
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module.exit_json(changed=False, msg="VM %s is already shutdown" % vmname)
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else:
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vm_stop(c, vmname)
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module.exit_json(changed=True, msg="VM %s is shutting down" % vmname)
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if state == 'restart':
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if vm_status(c, vmname) == 'up':
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vm_restart(c, vmname)
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module.exit_json(changed=True, msg="VM %s is restarted" % vmname)
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else:
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module.exit_json(changed=False, msg="VM %s is not running" % vmname)
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if state == 'absent':
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if get_vm(c, vmname) == "empty":
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module.exit_json(changed=False, msg="VM %s does not exist" % vmname)
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else:
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vm_remove(c, vmname)
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module.exit_json(changed=True, msg="VM %s removed" % vmname)
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if __name__ == '__main__':
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removed_module("2.10")
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