updated demo1,2 and 3
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# Example for Cloud Computing Course Master AI / GSD
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#
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# uses libCloud: https://libcloud.apache.org/
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# libCloud API documentation: https://libcloud.readthedocs.io/en/latest/
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# OpenStack API documentation: https://developer.openstack.org/
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# this code was initially based on the former tutorial: https://developer.openstack.org/firstapp-libcloud/
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import getpass
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from libcloud.compute.providers import get_driver
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from libcloud.compute.types import Provider
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# Please use 1-29 for X in the following variable to specify your group number. (will be used for the username,
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# project etc., as coordinated in the lab sessions)
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group_number = X
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########################################################################################################################
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#
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# no changes necessary below this line in this example
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#
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########################################################################################################################
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# web service endpoint of the private cloud infrastructure
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auth_url = 'https://private-cloud.informatik.hs-fulda.de:5000'
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# your username in OpenStack
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auth_username = 'CloudComp' + str(group_number)
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# your project in OpenStack
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project_name = 'CloudComp' + str(group_number)
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# A network in the project the started instance will be attached to
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project_network = 'CloudComp' + str(group_number) + '-net'
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# The image to look for and use for the started instance
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#ubuntu_image_name = "Ubuntu 20.04 - Focal Fossa - 64-bit - Cloud Based Image"
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ubuntu_image_name = "Ubuntu 22.04 - Jammy Jellyfish - 64-bit - Cloud Based Image"
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# default region
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region_name = 'RegionOne'
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# domain to use, "default" for local accounts, "hsfulda" for RZ LDAP, e.g., using fdaiXXXX as auth_username
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# domain_name = "default"
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def main():
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# get the password from user
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# auth_password = getpass.getpass("Enter your OpenStack password:")
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auth_password = "demo"
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# instantiate a connection to the OpenStack private cloud
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# make sure to include ex_force_auth_version='3.x_password', as needed in our environment
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provider = get_driver(Provider.OPENSTACK)
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print(("Opening connection to %s as %s..." % (auth_url, auth_username)))
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conn = provider(auth_username,
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auth_password,
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ex_force_auth_url=auth_url,
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ex_force_auth_version='3.x_password',
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ex_tenant_name=project_name,
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ex_force_service_region=region_name)
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# ex_domain_name=domain_name)
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print("Getting images and selecting desired one...")
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print("=========================================================================")
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# get a list of images offered in the cloud context (e.g. Ubuntu 20.04, cirros, ...)
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images = conn.list_images()
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image = ''
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for img in images:
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if img.name == ubuntu_image_name:
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image = img
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print(img)
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print("Getting flavors...")
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print("=========================================================================")
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# get a list of flavors offered in the cloud context (e.g. m1.small, m1.medium, ...)
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flavors = conn.list_sizes()
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for flavor in flavors:
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print(flavor)
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print("Selecting desired flavor...")
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print("=========================================================================")
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# get the flavor with id 2
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flavor_id = '2'
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flavor = conn.ex_get_size(flavor_id)
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print(flavor)
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print("Selecting desired network...")
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print("=========================================================================")
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# get a list of networks in the cloud context
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networks = conn.ex_list_networks()
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network = ''
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for net in networks:
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if net.name == project_network:
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network = net
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print("Create instance 'testing'...")
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print("=========================================================================")
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# create a new instance with the name "testing"
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# make sure to provide networks (networks={network}) the instance should be attached to
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instance_name = 'testing'
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testing_instance = conn.create_node(name=instance_name, image=image, size=flavor, networks={network})
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print(testing_instance)
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print("Showing all running instances...")
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print("=========================================================================")
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# show all instances (running nodes) in the cloud context
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instances = conn.list_nodes()
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for instance in instances:
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print(instance)
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print("Destroying instance...")
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print("=========================================================================")
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# destroy the instance we have just created
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conn.destroy_node(testing_instance)
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# method that is called when the script is started from the command line
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if __name__ == '__main__':
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main()
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# import getpass
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# import os
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from libcloud.compute.providers import get_driver
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from libcloud.compute.types import Provider
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# Please use 1-29 for X in the following variable to specify your group number. (will be used for the username,
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# project etc., as coordinated in the lab sessions)
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group_number = X
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# web service endpoint of the private cloud infrastructure
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auth_url = 'https://private-cloud.informatik.hs-fulda.de:5000'
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# your username in OpenStack
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auth_username = 'CloudComp' + str(group_number)
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# your project in OpenStack
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project_name = 'CloudComp' + str(group_number)
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# A network in the project the started instance will be attached to
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project_network = 'CloudComp' + str(group_number) + '-net'
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# The image to look for and use for the started instance
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#ubuntu_image_name = "Ubuntu 20.04 - Focal Fossa - 64-bit - Cloud Based Image"
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ubuntu_image_name = "Ubuntu 22.04 - Jammy Jellyfish - 64-bit - Cloud Based Image"
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# The public key to be used for SSH connection, please make sure, that you have the corresponding private key
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#
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# id_rsa.pub should look like this (standard sshd pubkey format):
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# ssh-rsa AAAAB3NzaC1yc2EAAAABIwAAAQEAw+J...F3w2mleybgT1w== user@HOSTNAME
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#keypair_name = 'CloudComp30-keypair'
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keypair_name = "srieger-pub"
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pub_key_file = '~/.ssh/id_rsa.pub'
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flavor_name = 'm1.small'
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# default region
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region_name = 'RegionOne'
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# domain to use, "default" for local accounts, "hsfulda" for RZ LDAP, e.g., using fdaiXXXX as auth_username
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# domain_name = "default"
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def main():
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###########################################################################
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#
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# get credentials
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#
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###########################################################################
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# if "OS_PASSWORD" in os.environ:
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# auth_password = os.environ["OS_PASSWORD"]
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# else:
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# auth_password = getpass.getpass("Enter your OpenStack password:")
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auth_password = "demo"
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###########################################################################
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#
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# create connection
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#
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###########################################################################
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provider = get_driver(Provider.OPENSTACK)
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conn = provider(auth_username,
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auth_password,
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ex_force_auth_url=auth_url,
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ex_force_auth_version='3.x_password',
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ex_tenant_name=project_name,
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ex_force_service_region=region_name)
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# ex_domain_name=domain_name)
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###########################################################################
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#
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# get image, flavor, network for instance creation
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#
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###########################################################################
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images = conn.list_images()
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image = ''
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for img in images:
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if img.name == ubuntu_image_name:
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image = img
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flavors = conn.list_sizes()
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flavor = ''
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for flav in flavors:
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if flav.name == flavor_name:
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flavor = conn.ex_get_size(flav.id)
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networks = conn.ex_list_networks()
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network = ''
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for net in networks:
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if net.name == project_network:
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network = net
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###########################################################################
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#
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# create keypair dependency
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#
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###########################################################################
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print('Checking for existing SSH key pair...')
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keypair_exists = False
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for keypair in conn.list_key_pairs():
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if keypair.name == keypair_name:
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keypair_exists = True
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if keypair_exists:
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print(('Keypair ' + keypair_name + ' already exists. Skipping import.'))
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else:
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print('adding keypair...')
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conn.import_key_pair_from_file(keypair_name, pub_key_file)
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for keypair in conn.list_key_pairs():
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print(keypair)
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###########################################################################
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#
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# create security group dependency
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#
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###########################################################################
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print('Checking for existing security group...')
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security_group_name = 'all-in-one'
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security_group_exists = False
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all_in_one_security_group = ''
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for security_group in conn.ex_list_security_groups():
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if security_group.name == security_group_name:
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all_in_one_security_group = security_group
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security_group_exists = True
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if security_group_exists:
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print(('Security Group ' + all_in_one_security_group.name + ' already exists. Skipping creation.'))
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else:
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all_in_one_security_group = conn.ex_create_security_group(security_group_name,
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'network access for all-in-one application.')
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conn.ex_create_security_group_rule(all_in_one_security_group, 'TCP', 80, 80)
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conn.ex_create_security_group_rule(all_in_one_security_group, 'TCP', 22, 22)
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for security_group in conn.ex_list_security_groups():
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print(security_group)
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###########################################################################
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#
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# create all-in-one instance
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#
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###########################################################################
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#hsfd_faafo_cloud_init_script = 'https://gogs.informatik.hs-fulda.de/srieger/cloud-computing-msc-ai-examples/raw/master/faafo/contrib/install.sh'
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# testing / faafo dev branch:
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hsfd_faafo_cloud_init_script = 'https://gogs.informatik.hs-fulda.de/srieger/cloud-computing-msc-ai-examples/raw/branch/dev_faafo/faafo/contrib/install.sh'
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userdata = '''#!/usr/bin/env bash
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curl -L -s ''' + hsfd_faafo_cloud_init_script + ''' | bash -s -- \
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-i faafo -i messaging -r api -r worker -r demo
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'''
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print('Checking for existing instance...')
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instance_name = 'all-in-one'
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instance_exists = False
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testing_instance = ''
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for instance in conn.list_nodes():
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if instance.name == instance_name:
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testing_instance = instance
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instance_exists = True
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if instance_exists:
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print(('Instance ' + testing_instance.name + ' already exists. Skipping creation.'))
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exit()
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else:
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print('Starting new all-in-one instance and wait until it is running...')
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testing_instance = conn.create_node(name=instance_name,
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image=image,
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size=flavor,
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networks=[network],
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ex_keyname=keypair_name,
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ex_userdata=userdata,
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ex_security_groups=[all_in_one_security_group])
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conn.wait_until_running(nodes=[testing_instance], timeout=120, ssh_interface='private_ips')
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###########################################################################
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#
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# assign all-in-one instance floating ip
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#
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###########################################################################
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private_ip = None
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if len(testing_instance.private_ips):
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private_ip = testing_instance.private_ips[0]
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print(('Private IP found: {}'.format(private_ip)))
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public_ip = None
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if len(testing_instance.public_ips):
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public_ip = testing_instance.public_ips[0]
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print(('Public IP found: {}'.format(public_ip)))
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print('Checking for unused Floating IP...')
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unused_floating_ip = None
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for floating_ip in conn.ex_list_floating_ips():
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if not floating_ip.node_id:
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unused_floating_ip = floating_ip
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break
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if not unused_floating_ip and len(conn.ex_list_floating_ip_pools()):
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pool = conn.ex_list_floating_ip_pools()[0]
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print(('Allocating new Floating IP from pool: {}'.format(pool)))
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unused_floating_ip = pool.create_floating_ip()
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if public_ip:
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print(('Instance ' + testing_instance.name + ' already has a public ip. Skipping attachment.'))
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elif unused_floating_ip:
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conn.ex_attach_floating_ip_to_node(testing_instance, unused_floating_ip)
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actual_ip_address = None
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if public_ip:
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actual_ip_address = public_ip
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elif unused_floating_ip:
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actual_ip_address = unused_floating_ip.ip_address
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elif private_ip:
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actual_ip_address = private_ip
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print('\n')
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print(('The Fractals app will be deployed to http://{}\n'.format(actual_ip_address)))
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print('You can use ssh to login to the instance using your private key. Default user name for official Ubuntu\n'
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'Cloud Images is: ubuntu, so you can use, e.g.: "ssh -i ~/.ssh/id_rsa ubuntu@<floating-ip>" if your private\n'
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'key is in the default location.\n\n'
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'After login, you can list or "ssh ubuntu@<floating-ip>" available fractals using "faafo list". To request\n'
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'the generation of new fractals, you can use "faafo create".\n\n'
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'You can also see other options to use the faafo example cloud service using "faafo -h".\n\n'
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'If you cannot start faafo command and/or do not see the webpage, you can check the Instance Console Log of\n'
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'the instance, e.g., in OpenStack web interface.')
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if __name__ == '__main__':
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main()
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# import getpass
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# import os
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from libcloud.compute.providers import get_driver
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from libcloud.compute.types import Provider
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# reqs:
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# services: nova, glance, neutron
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# resources: 2 instances, 2 floating ips (1 keypair, 2 security groups)
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# Please use 1-29 for X in the following variable to specify your group number. (will be used for the username,
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# project etc., as coordinated in the lab sessions)
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group_number = X
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# web service endpoint of the private cloud infrastructure
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auth_url = 'https://private-cloud.informatik.hs-fulda.de:5000'
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# your username in OpenStack
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auth_username = 'CloudComp' + str(group_number)
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# your project in OpenStack
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project_name = 'CloudComp' + str(group_number)
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# A network in the project the started instance will be attached to
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project_network = 'CloudComp' + str(group_number) + '-net'
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# The image to look for and use for the started instance
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#ubuntu_image_name = "Ubuntu 20.04 - Focal Fossa - 64-bit - Cloud Based Image"
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ubuntu_image_name = "Ubuntu 22.04 - Jammy Jellyfish - 64-bit - Cloud Based Image"
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# The public key to be used for SSH connection, please make sure, that you have the corresponding private key
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#
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# id_rsa.pub should look like this (standard sshd pubkey format):
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# ssh-rsa AAAAB3NzaC1yc2EAAAABIwAAAQEAw+J...F3w2mleybgT1w== user@HOSTNAME
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#keypair_name = 'CloudComp30-keypair'
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keypair_name = "srieger-pub"
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pub_key_file = '~/.ssh/id_rsa.pub'
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flavor_name = 'm1.small'
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# default region
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region_name = 'RegionOne'
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# domain to use, "default" for local accounts, "hsfulda" for RZ LDAP, e.g., using fdaiXXXX as auth_username
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# domain_name = "default"
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def main():
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###########################################################################
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#
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# get credentials
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#
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###########################################################################
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# if "OS_PASSWORD" in os.environ:
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# auth_password = os.environ["OS_PASSWORD"]
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# else:
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# auth_password = getpass.getpass("Enter your OpenStack password:")
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auth_password = "demo"
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###########################################################################
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#
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# create connection
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#
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###########################################################################
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provider = get_driver(Provider.OPENSTACK)
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conn = provider(auth_username,
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auth_password,
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ex_force_auth_url=auth_url,
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ex_force_auth_version='3.x_password',
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ex_tenant_name=project_name,
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ex_force_service_region=region_name)
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# ex_domain_name=domain_name)
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###########################################################################
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#
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# get image, flavor, network for instance creation
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#
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###########################################################################
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images = conn.list_images()
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image = ''
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for img in images:
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if img.name == ubuntu_image_name:
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image = img
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flavors = conn.list_sizes()
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flavor = ''
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for flav in flavors:
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if flav.name == flavor_name:
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flavor = conn.ex_get_size(flav.id)
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networks = conn.ex_list_networks()
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network = ''
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for net in networks:
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if net.name == project_network:
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network = net
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###########################################################################
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#
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# create keypair dependency
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#
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###########################################################################
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print('Checking for existing SSH key pair...')
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keypair_exists = False
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for keypair in conn.list_key_pairs():
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if keypair.name == keypair_name:
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keypair_exists = True
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if keypair_exists:
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print(('Keypair ' + keypair_name + ' already exists. Skipping import.'))
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else:
|
||||
print('adding keypair...')
|
||||
conn.import_key_pair_from_file(keypair_name, pub_key_file)
|
||||
|
||||
for keypair in conn.list_key_pairs():
|
||||
print(keypair)
|
||||
|
||||
###########################################################################
|
||||
#
|
||||
# create security group dependency
|
||||
#
|
||||
###########################################################################
|
||||
|
||||
print('Checking for existing worker security group...')
|
||||
security_group_name = 'worker'
|
||||
security_group_exists = False
|
||||
worker_security_group = ''
|
||||
for security_group in conn.ex_list_security_groups():
|
||||
if security_group.name == security_group_name:
|
||||
worker_security_group = security_group
|
||||
security_group_exists = True
|
||||
|
||||
if security_group_exists:
|
||||
print(('Worker Security Group ' + worker_security_group.name + ' already exists. Skipping creation.'))
|
||||
else:
|
||||
worker_security_group = conn.ex_create_security_group('worker', 'for services that run on a worker node')
|
||||
conn.ex_create_security_group_rule(worker_security_group, 'TCP', 22, 22)
|
||||
|
||||
print('Checking for existing controller security group...')
|
||||
security_group_name = 'control'
|
||||
security_group_exists = False
|
||||
controller_security_group = ''
|
||||
for security_group in conn.ex_list_security_groups():
|
||||
if security_group.name == security_group_name:
|
||||
controller_security_group = security_group
|
||||
security_group_exists = True
|
||||
|
||||
if security_group_exists:
|
||||
print(('Controller Security Group ' + controller_security_group.name + ' already exists. Skipping creation.'))
|
||||
else:
|
||||
controller_security_group = conn.ex_create_security_group('control', 'for services that run on a control node')
|
||||
conn.ex_create_security_group_rule(controller_security_group, 'TCP', 22, 22)
|
||||
conn.ex_create_security_group_rule(controller_security_group, 'TCP', 80, 80)
|
||||
conn.ex_create_security_group_rule(controller_security_group, 'TCP', 5672, 5672,
|
||||
source_security_group=worker_security_group)
|
||||
|
||||
for security_group in conn.ex_list_security_groups():
|
||||
print(security_group)
|
||||
|
||||
###########################################################################
|
||||
#
|
||||
# create app-controller
|
||||
#
|
||||
###########################################################################
|
||||
|
||||
#hsfd_faafo_cloud_init_script = 'https://gogs.informatik.hs-fulda.de/srieger/cloud-computing-msc-ai-examples/raw/master/faafo/contrib/install.sh'
|
||||
# testing / faafo dev branch:
|
||||
hsfd_faafo_cloud_init_script = 'https://gogs.informatik.hs-fulda.de/srieger/cloud-computing-msc-ai-examples/raw/branch/dev_faafo/faafo/contrib/install.sh'
|
||||
|
||||
userdata = '''#!/usr/bin/env bash
|
||||
curl -L -s ''' + hsfd_faafo_cloud_init_script + ''' | bash -s -- \
|
||||
-i messaging -i faafo -r api
|
||||
rabbitmqctl add_user faafo guest
|
||||
rabbitmqctl set_user_tags faafo administrator
|
||||
rabbitmqctl set_permissions -p / faafo ".*" ".*" ".*"
|
||||
'''
|
||||
|
||||
print('Starting new app-controller instance and wait until it is running...')
|
||||
instance_controller_1 = conn.create_node(name='app-controller',
|
||||
image=image,
|
||||
size=flavor,
|
||||
networks=[network],
|
||||
ex_keyname=keypair_name,
|
||||
ex_userdata=userdata,
|
||||
ex_security_groups=[controller_security_group])
|
||||
|
||||
conn.wait_until_running(nodes=[instance_controller_1], timeout=120, ssh_interface='private_ips')
|
||||
|
||||
###########################################################################
|
||||
#
|
||||
# assign app-controller floating ip
|
||||
#
|
||||
###########################################################################
|
||||
|
||||
print('Checking for unused Floating IP...')
|
||||
unused_floating_ip = None
|
||||
for floating_ip in conn.ex_list_floating_ips():
|
||||
if not floating_ip.node_id:
|
||||
unused_floating_ip = floating_ip
|
||||
break
|
||||
|
||||
if not unused_floating_ip:
|
||||
pool = conn.ex_list_floating_ip_pools()[0]
|
||||
print(('Allocating new Floating IP from pool: {}'.format(pool)))
|
||||
unused_floating_ip = pool.create_floating_ip()
|
||||
|
||||
conn.ex_attach_floating_ip_to_node(instance_controller_1, unused_floating_ip)
|
||||
print(('Controller Application will be deployed to http://%s' % unused_floating_ip.ip_address))
|
||||
|
||||
###########################################################################
|
||||
#
|
||||
# getting id and ip address of app-controller instance
|
||||
#
|
||||
###########################################################################
|
||||
|
||||
# instance should not have a public ip? floating ips are assigned later
|
||||
instance_controller_1 = conn.ex_get_node_details(instance_controller_1.id)
|
||||
if instance_controller_1.public_ips:
|
||||
ip_controller = instance_controller_1.public_ips[0]
|
||||
else:
|
||||
ip_controller = instance_controller_1.private_ips[0]
|
||||
|
||||
###########################################################################
|
||||
#
|
||||
# create app-worker-1
|
||||
#
|
||||
###########################################################################
|
||||
|
||||
userdata = '''#!/usr/bin/env bash
|
||||
curl -L -s ''' + hsfd_faafo_cloud_init_script + ''' | bash -s -- \
|
||||
-i faafo -r worker -e 'http://%(ip_controller)s' -m 'amqp://faafo:guest@%(ip_controller)s:5672/'
|
||||
''' % {'ip_controller': ip_controller}
|
||||
|
||||
print('Starting new app-worker-1 instance and wait until it is running...')
|
||||
instance_worker_1 = conn.create_node(name='app-worker-1',
|
||||
image=image,
|
||||
size=flavor,
|
||||
networks=[network],
|
||||
ex_keyname=keypair_name,
|
||||
ex_userdata=userdata,
|
||||
ex_security_groups=[worker_security_group])
|
||||
|
||||
conn.wait_until_running(nodes=[instance_worker_1], timeout=120, ssh_interface='private_ips')
|
||||
|
||||
###########################################################################
|
||||
#
|
||||
# assign app-worker floating ip
|
||||
#
|
||||
###########################################################################
|
||||
|
||||
print('Checking for unused Floating IP...')
|
||||
unused_floating_ip = None
|
||||
for floating_ip in conn.ex_list_floating_ips():
|
||||
if not floating_ip.node_id:
|
||||
unused_floating_ip = floating_ip
|
||||
break
|
||||
|
||||
if not unused_floating_ip:
|
||||
pool = conn.ex_list_floating_ip_pools()[0]
|
||||
print(('Allocating new Floating IP from pool: {}'.format(pool)))
|
||||
unused_floating_ip = pool.create_floating_ip()
|
||||
|
||||
conn.ex_attach_floating_ip_to_node(instance_worker_1, unused_floating_ip)
|
||||
print(('The worker will be available for SSH at %s' % unused_floating_ip.ip_address))
|
||||
|
||||
print('You can use ssh to login to the controller using your private key. After login, you can list available '
|
||||
'fractals using "faafo list". To request the generation of new fractals, you can use "faafo create". '
|
||||
'You can also see other options to use the faafo example cloud service using "faafo -h".')
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
@ -1,97 +0,0 @@
|
||||
# import getpass
|
||||
# import os
|
||||
# import libcloud.security
|
||||
|
||||
import time
|
||||
from libcloud.compute.providers import get_driver
|
||||
from libcloud.compute.types import Provider
|
||||
|
||||
# reqs:
|
||||
# services: nova, glance, neutron
|
||||
# resources: 2 instances (m1.small), 2 floating ips (1 keypair, 2 security groups)
|
||||
|
||||
# Please use 1-29 for X in the following variable to specify your group number. (will be used for the username,
|
||||
# project etc., as coordinated in the lab sessions)
|
||||
|
||||
group_number = X
|
||||
|
||||
|
||||
# web service endpoint of the private cloud infrastructure
|
||||
auth_url = 'https://private-cloud.informatik.hs-fulda.de:5000'
|
||||
# your username in OpenStack
|
||||
auth_username = 'CloudComp' + str(group_number)
|
||||
# your project in OpenStack
|
||||
project_name = 'CloudComp' + str(group_number)
|
||||
|
||||
|
||||
# default region
|
||||
region_name = 'RegionOne'
|
||||
# domain to use, "default" for local accounts, "hsfulda" for RZ LDAP, e.g., using fdaiXXXX as auth_username
|
||||
domain_name = "default"
|
||||
|
||||
|
||||
def main():
|
||||
###########################################################################
|
||||
#
|
||||
# get credentials
|
||||
#
|
||||
###########################################################################
|
||||
|
||||
# if "OS_PASSWORD" in os.environ:
|
||||
# auth_password = os.environ["OS_PASSWORD"]
|
||||
# else:
|
||||
# auth_password = getpass.getpass("Enter your OpenStack password:")
|
||||
auth_password = "demo"
|
||||
|
||||
###########################################################################
|
||||
#
|
||||
# create connection
|
||||
#
|
||||
###########################################################################
|
||||
|
||||
# libcloud.security.VERIFY_SSL_CERT = False
|
||||
|
||||
provider = get_driver(Provider.OPENSTACK)
|
||||
conn = provider(auth_username,
|
||||
auth_password,
|
||||
ex_force_auth_url=auth_url,
|
||||
ex_force_auth_version='3.x_password',
|
||||
ex_tenant_name=project_name,
|
||||
ex_force_service_region=region_name,
|
||||
ex_domain_name=domain_name)
|
||||
|
||||
###########################################################################
|
||||
#
|
||||
# clean up resources from previous demos
|
||||
#
|
||||
###########################################################################
|
||||
|
||||
# destroy running demo instances
|
||||
for instance in conn.list_nodes():
|
||||
if instance.name in ['all-in-one', 'app-worker-1', 'app-worker-2', 'app-worker-3', 'app-controller',
|
||||
'app-services', 'app-api-1', 'app-api-2']:
|
||||
print(('Destroying Instance: %s' % instance.name))
|
||||
conn.destroy_node(instance)
|
||||
|
||||
# wait until all nodes are destroyed to be able to remove depended security groups
|
||||
nodes_still_running = True
|
||||
while nodes_still_running:
|
||||
nodes_still_running = False
|
||||
time.sleep(3)
|
||||
instances = conn.list_nodes()
|
||||
for instance in instances:
|
||||
# if we see any demo instances still running continue to wait for them to stop
|
||||
if instance.name in ['all-in-one', 'app-worker-1', 'app-worker-2', 'app-worker-3', 'app-controller',
|
||||
'app-services', 'app-api-1', 'app-api-2']:
|
||||
nodes_still_running = True
|
||||
print('There are still instances running, waiting for them to be destroyed...')
|
||||
|
||||
# delete security groups
|
||||
for group in conn.ex_list_security_groups():
|
||||
if group.name in ['control', 'worker', 'api', 'services']:
|
||||
print(('Deleting security group: %s' % group.name))
|
||||
conn.ex_delete_security_group(group)
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
Loading…
x
Reference in New Issue
Block a user