mirror of
https://github.com/vmware/vsphere-automation-sdk-python.git
synced 2024-11-24 10:19:59 -05:00
346f5b1cd6
- Updated bindings and samples for VMware Cloud on AWS APIs - Added bindings for NSX APIs - Added HVC samples
245 lines
9.4 KiB
Python
245 lines
9.4 KiB
Python
#!/usr/bin/env python
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"""
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* *******************************************************
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* Copyright (c) VMware, Inc. 2018. All Rights Reserved.
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* SPDX-License-Identifier: MIT
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* *******************************************************
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*
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* DISCLAIMER. THIS PROGRAM IS PROVIDED TO YOU "AS IS" WITHOUT
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* WARRANTIES OR CONDITIONS OF ANY KIND, WHETHER ORAL OR WRITTEN,
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* EXPRESS OR IMPLIED. THE AUTHOR SPECIFICALLY DISCLAIMS ANY IMPLIED
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* WARRANTIES OR CONDITIONS OF MERCHANTABILITY, SATISFACTORY QUALITY,
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* NON-INFRINGEMENT AND FITNESS FOR A PARTICULAR PURPOSE.
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"""
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__author__ = 'VMware, Inc.'
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__vcenter_version__ = 'VMware Cloud on AWS'
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import argparse
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import random
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from com.vmware.vmc.model_client import *
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from vmware.vapi.vmc.client import create_vmc_client
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from samples.vmc.helpers.vmc_task_helper import wait_for_task
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class ExposePublicIP(object):
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"""
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Demo steps required to expose a VM to public internet
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1. Request a public IP address
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2. Add a firewall rule on compute gateway to access to the VM
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3. Create a NAT rule to forward traffic from public IP to private IP
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Sample Prerequisites:
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- A VM deployed inside the SDDC with private IP address
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"""
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def __init__(self):
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parser = argparse.ArgumentParser(
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formatter_class=argparse.ArgumentDefaultsHelpFormatter)
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parser.add_argument('-r', '--refresh-token',
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required=True,
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help='VMware Cloud API refresh token')
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parser.add_argument('-o', '--org-id',
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required=True,
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help='Organization identifier.')
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parser.add_argument('-s', '--sddc-id',
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required=True,
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help='Sddc Identifier.')
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parser.add_argument('--notes',
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default='Sample public IP ' + str(random.randint(0, 100)),
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help='Notes of the new public IP')
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parser.add_argument('--fw-rule-name',
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default='Sample firewall rule ' + str(random.randint(0, 100)),
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help='Name of the compute gae')
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parser.add_argument('--nat-rule-description',
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default='Sample NAT rule ' + str(random.randint(0, 100)),
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help='Description for the NAT rule')
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parser.add_argument('--internal-ip',
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required=True,
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help='Private IP of the VM')
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parser.add_argument('-c', '--cleardata',
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action='store_true',
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help='Clean up after sample run')
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args = parser.parse_args()
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self.network_id = None
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self.edge_id = None
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self.nat_rule_id = None
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self.public_ip = None
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self.nfwr = None
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self.org_id = args.org_id
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self.sddc_id = args.sddc_id
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self.notes = args.notes
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self.fw_rule_name = args.fw_rule_name
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self.nat_rule_description = args.nat_rule_description
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self.internal_ip = args.internal_ip
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self.cleardata = args.cleardata
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self.vmc_client = create_vmc_client(args.refresh_token)
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def setup(self):
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# Check if the organization exists
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orgs = self.vmc_client.Orgs.list()
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if self.org_id not in [org.id for org in orgs]:
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raise ValueError("Org with ID {} doesn't exist".format(self.org_id))
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# Check if the SDDC exists
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sddcs = self.vmc_client.orgs.Sddcs.list(self.org_id)
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if self.sddc_id not in [sddc.id for sddc in sddcs]:
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raise ValueError("SDDC with ID {} doesn't exist in org {}".
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format(self.sddc_id, self.org_id))
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edges = self.vmc_client.orgs.sddcs.networks.Edges.get(
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org=self.org_id,
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sddc=self.sddc_id,
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edge_type='gatewayServices').edge_page.data
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print('\n# Setup: Compute Gateway ID: {}'.format(edges[1].id))
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self.edge_id = edges[1].id
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def request_public_ip(self):
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print('\n# Example: Request a new IP for SDDC')
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ip_spec = SddcAllocatePublicIpSpec(names=[self.notes], count=1)
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task = self.vmc_client.orgs.sddcs.Publicips.create(
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org=self.org_id,
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sddc=self.sddc_id,
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spec=ip_spec)
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wait_for_task(task_client=self.vmc_client.orgs.Tasks,
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org_id=self.org_id,
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task_id=task.id,
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interval_sec=2)
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ips = self.vmc_client.orgs.sddcs.Publicips.list(
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org=self.org_id,
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sddc=self.sddc_id)
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for ip in ips:
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if ip.name == self.notes:
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self.ip_id = ip.allocation_id
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self.public_ip = ip.public_ip
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print('# Successfully requested public IP {}'.
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format(ip.public_ip))
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break
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else:
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raise Exception("Can't find public IP with notes {}".
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format(self.notes))
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def create_firewall_rule_on_cgw(self):
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print('\n# Example: Add a firewall rule to the compute gateway')
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# Construct a new NSX firewall rule object
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# which allow any to any traffic
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self.nfwr = Nsxfirewallrule(rule_type='user',
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name=self.fw_rule_name,
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enabled=True,
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action='accept',
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source=AddressFWSourceDestination(
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exclude=False,
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ip_address=['any'],
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grouping_object_id=[],
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vnic_group_id=[]),
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destination=AddressFWSourceDestination(
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exclude=False,
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ip_address=['any'],
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grouping_object_id=[],
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vnic_group_id=[]),
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logging_enabled=False,
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application=None)
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self.vmc_client.orgs.sddcs.networks.edges.firewall.config.Rules.add(
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org=self.org_id,
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sddc=self.sddc_id,
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edge_id=self.edge_id,
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firewall_rules=FirewallRules([self.nfwr]))
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print(' # New firewall rule "{}" is added'.format(self.fw_rule_name))
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def create_net_rule(self):
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print('\n# Example: Add a NAT rule to the compute gateway')
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# Construct a new NSX NAT rule spec
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rule = Nsxnatrule(vnic='0',
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rule_type='user',
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action='dnat', # Supported types are DNAT|SNAT
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protocol='any',
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description=self.nat_rule_description,
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original_address=self.public_ip,
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original_port='any',
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translated_address=self.internal_ip,
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translated_port='any',
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enabled=True)
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self.vmc_client.orgs.sddcs.networks.edges.nat.config.Rules.add(
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org=self.org_id,
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sddc=self.sddc_id,
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edge_id=self.edge_id,
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nat_rules=NatRules([rule]))
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print(' # New NAT rule "{}" is added'.format(self.nat_rule_description))
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def cleanup(self):
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if self.cleardata:
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# Delete the firewall rule
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fw_rules = self.vmc_client.orgs.sddcs.networks.edges.firewall.Config.get(
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org=self.org_id,
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sddc=self.sddc_id,
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edge_id=self.edge_id).firewall_rules.firewall_rules
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for r in fw_rules:
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if r.name == self.fw_rule_name:
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self.vmc_client.orgs.sddcs.networks.edges.firewall.config.Rules.delete(
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org=self.org_id,
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sddc=self.sddc_id,
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edge_id=self.edge_id,
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rule_id=r.rule_id)
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break
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print('\n# Cleanup: Firewall rule {} is deleted'.
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format(self.fw_rule_name))
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# Delete the NAT rule
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rules = self.vmc_client.orgs.sddcs.networks.edges.nat.Config.get(
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org=self.org_id,
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sddc=self.sddc_id,
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edge_id=self.edge_id).rules.nat_rules_dtos
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for rule in rules:
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if rule.description == self.nat_rule_description:
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self.vmc_client.orgs.sddcs.networks.edges.nat.config.Rules.delete(
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org=self.org_id,
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sddc=self.sddc_id,
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edge_id=self.edge_id,
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rule_id=rule.rule_id)
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print('\n# Cleanup: NAT rule "{}" is deleted'.
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format(self.nat_rule_description))
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# Release the public IP address
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self.vmc_client.orgs.sddcs.Publicips.delete(
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org=self.org_id,
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sddc=self.sddc_id,
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id=self.ip_id)
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print('\n# Cleanup: Public IP "{}" is released'.
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format(self.public_ip))
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def main():
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expose_public_ip = ExposePublicIP()
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expose_public_ip.setup()
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expose_public_ip.request_public_ip()
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expose_public_ip.create_firewall_rule_on_cgw()
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expose_public_ip.create_net_rule()
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expose_public_ip.cleanup()
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if __name__ == '__main__':
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main()
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