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@ -18,11 +18,14 @@
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try:
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try:
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from novaclient.v1_1 import client as nova_client
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from novaclient.v1_1 import client as nova_client
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from quantumclient.quantum import client
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try:
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from neutronclient.neutron import client
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except ImportError:
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from quantumclient.quantum import client
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from keystoneclient.v2_0 import client as ksclient
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from keystoneclient.v2_0 import client as ksclient
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import time
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import time
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except ImportError:
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except ImportError:
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print("failed=True msg='glanceclient,keystoneclient and quantumclient client are required'")
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print("failed=True msg='novaclient,keystoneclient and quantumclient (or neutronclient) are required'")
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DOCUMENTATION = '''
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DOCUMENTATION = '''
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---
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---
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@ -64,7 +67,7 @@ options:
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default: present
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default: present
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network_name:
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network_name:
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description:
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description:
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- Name of the network from which IP has to be assigned to VM. Please make sure the network is an external network
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- Name of the network from which IP has to be assigned to VM. Please make sure the network is an external network
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required: true
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required: true
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default: None
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default: None
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instance_name:
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instance_name:
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@ -72,14 +75,19 @@ options:
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- The name of the instance to which the IP address should be assigned
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- The name of the instance to which the IP address should be assigned
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required: true
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required: true
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default: None
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default: None
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requirements: ["novaclient", "quantumclient", "keystoneclient"]
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internal_network_name:
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description:
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- The name of the network of the port to associate with the floating ip. Necessary when VM multiple networks.
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required: false
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default: None
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requirements: ["novaclient", "quantumclient", "neutronclient", "keystoneclient"]
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'''
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'''
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EXAMPLES = '''
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EXAMPLES = '''
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# Assign a floating ip to the instance from an external network
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# Assign a floating ip to the instance from an external network
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- quantum_floating_ip: state=present login_username=admin login_password=admin
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- quantum_floating_ip: state=present login_username=admin login_password=admin
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login_tenant_name=admin network_name=external_network
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login_tenant_name=admin network_name=external_network
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instance_name=vm1
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instance_name=vm1 internal_network_name=internal_network
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'''
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'''
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def _get_ksclient(module, kwargs):
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def _get_ksclient(module, kwargs):
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@ -99,10 +107,10 @@ def _get_endpoint(module, ksclient):
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try:
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try:
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endpoint = ksclient.service_catalog.url_for(service_type='network', endpoint_type='publicURL')
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endpoint = ksclient.service_catalog.url_for(service_type='network', endpoint_type='publicURL')
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except Exception as e:
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except Exception as e:
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module.fail_json(msg = "Error getting endpoint for glance: %s" % e.message)
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module.fail_json(msg = "Error getting network endpoint: %s" % e.message)
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return endpoint
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return endpoint
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def _get_quantum_client(module, kwargs):
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def _get_neutron_client(module, kwargs):
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_ksclient = _get_ksclient(module, kwargs)
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_ksclient = _get_ksclient(module, kwargs)
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token = _ksclient.auth_token
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token = _ksclient.auth_token
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endpoint = _get_endpoint(module, _ksclient)
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endpoint = _get_endpoint(module, _ksclient)
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@ -111,10 +119,10 @@ def _get_quantum_client(module, kwargs):
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'endpoint_url': endpoint
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'endpoint_url': endpoint
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}
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}
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try:
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try:
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quantum = client.Client('2.0', **kwargs)
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neutron = client.Client('2.0', **kwargs)
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except Exception as e:
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except Exception as e:
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module.fail_json(msg = "Error in connecting to quantum: %s " % e.message)
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module.fail_json(msg = "Error in connecting to neutron: %s " % e.message)
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return quantum
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return neutron
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def _get_server_state(module, nova):
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def _get_server_state(module, nova):
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server_info = None
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server_info = None
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@ -130,68 +138,81 @@ def _get_server_state(module, nova):
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break
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break
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except Exception as e:
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except Exception as e:
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module.fail_json(msg = "Error in getting the server list: %s" % e.message)
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module.fail_json(msg = "Error in getting the server list: %s" % e.message)
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return server_info, server
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return server_info, server
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def _get_port_info(quantum, module, instance_id):
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def _get_port_info(neutron, module, instance_id, internal_network_name=None):
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if internal_network_name:
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kwargs = {
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'name': internal_network_name,
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}
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networks = neutron.list_networks(**kwargs)
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subnet_id = networks['networks'][0]['subnets'][0]
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kwargs = {
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kwargs = {
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'device_id': instance_id,
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'device_id': instance_id,
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}
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}
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try:
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try:
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ports = quantum.list_ports(**kwargs)
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ports = neutron.list_ports(**kwargs)
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except Exception as e:
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except Exception as e:
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module.fail_json( msg = "Error in listing ports: %s" % e.message)
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module.fail_json( msg = "Error in listing ports: %s" % e.message)
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if subnet_id:
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port = next(port for port in ports['ports'] if port['fixed_ips'][0]['subnet_id'] == subnet_id)
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port_id = port['id']
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fixed_ip_address = port['fixed_ips'][0]['ip_address']
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else:
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port_id = ports['ports'][0]['id']
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fixed_ip_address = ports['ports'][0]['fixed_ips'][0]['ip_address']
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if not ports['ports']:
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if not ports['ports']:
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return None, None
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return None, None
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return ports['ports'][0]['fixed_ips'][0]['ip_address'], ports['ports'][0]['id']
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return fixed_ip_address, port_id
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def _get_floating_ip(module, quantum, fixed_ip_address):
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def _get_floating_ip(module, neutron, fixed_ip_address):
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kwargs = {
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kwargs = {
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'fixed_ip_address': fixed_ip_address
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'fixed_ip_address': fixed_ip_address
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}
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}
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try:
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try:
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ips = quantum.list_floatingips(**kwargs)
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ips = neutron.list_floatingips(**kwargs)
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except Exception as e:
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except Exception as e:
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module.fail_json(msg = "error in fetching the floatingips's %s" % e.message)
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module.fail_json(msg = "error in fetching the floatingips's %s" % e.message)
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if not ips['floatingips']:
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if not ips['floatingips']:
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return None, None
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return None, None
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return ips['floatingips'][0]['id'], ips['floatingips'][0]['floating_ip_address']
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return ips['floatingips'][0]['id'], ips['floatingips'][0]['floating_ip_address']
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def _create_floating_ip(quantum, module, port_id, net_id):
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def _create_floating_ip(neutron, module, port_id, net_id):
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kwargs = {
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kwargs = {
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'port_id': port_id,
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'port_id': port_id,
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'floating_network_id': net_id
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'floating_network_id': net_id
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}
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}
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try:
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try:
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result = quantum.create_floatingip({'floatingip': kwargs})
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result = neutron.create_floatingip({'floatingip': kwargs})
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except Exception as e:
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except Exception as e:
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module.fail_json(msg="There was an error in updating the floating ip address: %s" % e.message)
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module.fail_json(msg="There was an error in updating the floating ip address: %s" % e.message)
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module.exit_json(changed=True, result=result, public_ip=result['floatingip']['floating_ip_address'])
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module.exit_json(changed=True, result=result, public_ip=result['floatingip']['floating_ip_address'])
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def _get_net_id(quantum, module):
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def _get_net_id(neutron, module):
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kwargs = {
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kwargs = {
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'name': module.params['network_name'],
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'name': module.params['network_name'],
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}
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}
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try:
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try:
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networks = quantum.list_networks(**kwargs)
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networks = neutron.list_networks(**kwargs)
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except Exception as e:
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except Exception as e:
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module.fail_json("Error in listing quantum networks: %s" % e.message)
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module.fail_json("Error in listing neutron networks: %s" % e.message)
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if not networks['networks']:
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if not networks['networks']:
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return None
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return None
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return networks['networks'][0]['id']
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return networks['networks'][0]['id']
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def _update_floating_ip(quantum, module, port_id, floating_ip_id):
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def _update_floating_ip(neutron, module, port_id, floating_ip_id):
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kwargs = {
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kwargs = {
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'port_id': port_id
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'port_id': port_id
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}
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}
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try:
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try:
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result = quantum.update_floatingip(floating_ip_id, {'floatingip': kwargs})
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result = neutron.update_floatingip(floating_ip_id, {'floatingip': kwargs})
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except Exception as e:
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except Exception as e:
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module.fail_json(msg="There was an error in updating the floating ip address: %s" % e.message)
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module.fail_json(msg="There was an error in updating the floating ip address: %s" % e.message)
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module.exit_json(changed=True, result=result)
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module.exit_json(changed=True, result=result)
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def main():
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def main():
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module = AnsibleModule(
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module = AnsibleModule(
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argument_spec = dict(
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argument_spec = dict(
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login_username = dict(default='admin'),
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login_username = dict(default='admin'),
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@ -200,39 +221,40 @@ def main():
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auth_url = dict(default='http://127.0.0.1:35357/v2.0/'),
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auth_url = dict(default='http://127.0.0.1:35357/v2.0/'),
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region_name = dict(default=None),
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region_name = dict(default=None),
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network_name = dict(required=True),
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network_name = dict(required=True),
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instance_name = dict(required=True),
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instance_name = dict(required=True),
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state = dict(default='present', choices=['absent', 'present'])
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state = dict(default='present', choices=['absent', 'present']),
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internal_network_name = dict(default=None),
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),
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),
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)
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)
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try:
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try:
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nova = nova_client.Client(module.params['login_username'], module.params['login_password'],
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nova = nova_client.Client(module.params['login_username'], module.params['login_password'],
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module.params['login_tenant_name'], module.params['auth_url'], service_type='compute')
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module.params['login_tenant_name'], module.params['auth_url'], service_type='compute')
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quantum = _get_quantum_client(module, module.params)
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neutron = _get_neutron_client(module, module.params)
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except Exception as e:
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except Exception as e:
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module.fail_json(msg="Error in authenticating to nova: %s" % e.message)
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module.fail_json(msg="Error in authenticating to nova: %s" % e.message)
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server_info, server_obj = _get_server_state(module, nova)
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server_info, server_obj = _get_server_state(module, nova)
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if not server_info:
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if not server_info:
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module.fail_json(msg="The instance name provided cannot be found")
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module.fail_json(msg="The instance name provided cannot be found")
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fixed_ip, port_id = _get_port_info(quantum, module, server_info['id'])
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fixed_ip, port_id = _get_port_info(neutron, module, server_info['id'], module.params['internal_network_name'])
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if not port_id:
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if not port_id:
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module.fail_json(msg="Cannot find a port for this instance, maybe fixed ip is not assigned")
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module.fail_json(msg="Cannot find a port for this instance, maybe fixed ip is not assigned")
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floating_id, floating_ip = _get_floating_ip(module, quantum, fixed_ip)
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floating_id, floating_ip = _get_floating_ip(module, neutron, fixed_ip)
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if module.params['state'] == 'present':
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if module.params['state'] == 'present':
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if floating_ip:
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if floating_ip:
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module.exit_json(changed = False, public_ip=floating_ip)
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module.exit_json(changed = False, public_ip=floating_ip)
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net_id = _get_net_id(quantum, module)
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net_id = _get_net_id(neutron, module)
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if not net_id:
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if not net_id:
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module.fail_json(msg = "cannot find the network specified, please check")
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module.fail_json(msg = "cannot find the network specified, please check")
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_create_floating_ip(quantum, module, port_id, net_id)
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_create_floating_ip(neutron, module, port_id, net_id)
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if module.params['state'] == 'absent':
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if module.params['state'] == 'absent':
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if floating_ip:
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if floating_ip:
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_update_floating_ip(quantum, module, None, floating_id)
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_update_floating_ip(neutron, module, None, floating_id)
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module.exit_json(changed=False)
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module.exit_json(changed=False)
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# this is magic, see lib/ansible/module.params['common.py
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# this is magic, see lib/ansible/module.params['common.py
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