08a1414738
Added the compose yaml file Added the genenv Added fixes to run the containter Change-Id: Ied3ea92e495fc0fc0274a0da736394d2ab52a754 Partially Implements: blueprint ceilometer-container
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14 KiB
Markdown
Executable File
210 lines
14 KiB
Markdown
Executable File
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# Integrating with Kolla
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This guide describes how to integrate with Kolla. The main integration path is
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via docker-compose using docker-compose YML files. Each container set has
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a common YML and associated `openstack.env`. The `openstack.env` file
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describes the command line environment to pass to the docker-compose yml files.
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## Why integrate with Kolla?
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Integrating with Kolla takes a hard part of managing an OpenStack system,
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specifically managing the container images, and places the burden on a third
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party project. We strive to do an excellent job of providing world-class
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OpenStack containers at least as a reference architecture, and possibly as what
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may be desirable to deploy into live production.
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## Docker Command Line Arguments
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Every container set YML file includes the necessary docker CLI operations
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needed to launch the container in a tidy YML file. Instead of guessing which
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set of command line operations are needed per container, the docker-compose
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YML file can be used directly and will pass the appropriate command line
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values to the container on container start.
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The parameterized docker features used by kolla are:
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* --pid=host
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* --net=host
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* -v host:container
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* --privileged
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These parameterized features are not exposed to the user. Instead they are
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executed via docker-compose.
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## Environment Variables
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Rather then document which individual containers require specific configuration
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variables, Kolla integration requires passing all configuration variables to
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all containers. This allows a simple method of ensuring every type of node
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(controller, storage, compute) receives the same configuration.
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### Environment Variable KEY/VALUE pairs
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DEBUG_LOGGING=<true|false> - Defaults to false. Enable/disable debug level logging for all OpenStack services.
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VERBOSE_LOGGING=<true|false> - Defaults to true. Enable/disable verbose level logging for all OpenStack services.
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NOVA_LOG_DIR=<none> - Defaults to none. The base directory used for relative Nova --log-file paths.
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NEUTRON_LOG_DIR<none> - Defaults to none. The base directory used for relative Neutron --log-file paths.
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NOVA_API_LOG_FILE=<none> Defaults to none. Name of Nova API log file to output to. If no default is set, logging will go to stdout.
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NOVA_CONDUCTOR_LOG_FILE=<none> Defaults to none. Name of Nova Conductor log file to output to. If no default is set, logging will go to stdout.
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NOVA_SCHEDULER_LOG_FILE=<none> Defaults to none. Name of Nova Scheduler log file to output to. If no default is set, logging will go to stdout.
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NOVA_COMPUTE_LOG_FILE=<none> Defaults to none. Name of Nova Compute log file to output to. If no default is set, logging will go to stdout.
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NEUTRON_SERVER_LOG_FILE=<none> Defaults to none. Name of Neutron Server log file to output to. If no default is set, logging will go to stdout.
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NEUTRON_L3_AGENT_LOG_FILE=<none> Defaults to none. Name of Neutron L3 Agent log file to output to. If no default is set, logging will go to stdout.
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NEUTRON_LINUXBRIDGE_AGENT_LOG_FILE=<none> Defaults to none. Name of Neutron Linux Bridge Agent log file to output to. If no default is set, logging will go to stdout.
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NEUTRON_METADATA_AGENT_LOG_FILE=<none> Defaults to none. Name of Neutron Metadata Agent log file to output to. If no default is set, logging will go to stdout.
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ADMIN_USER_PASSWORD=<steakfordinner> - The admin user password
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ADMIN_TENANT_NAME=<admin> - tenant name
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FLAT_INTERFACE=<eth1> - nova networking flat interface device name
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DB_CLUSTER_BIND_ADDRESS=<subnet address/IP> - Defaults to 0.0.0.0. Listening address for database.
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DB_CLUSTER_INIT_DB=<true|false> - Defaults to false. Configures if Galera should be initialized.
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DB_CLUSTER_NAME=<cluster-name>. Defaults to kollacluster. Galera cluster name.
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DB_CLUSTER_NODES=<cluster-nodes>. Defaults to none. List of nodes in Galera cluster, separated by comma(IP address or hostname).
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DB_CLUSTER_WSREP_METHOD=<rsync|mysqldump|xtremebackup|xtremebackup-v2> - Defaults to mysqldump. Galera replication method.
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GLANCE_API_SERVICE_HOST=<IP> - address where glance API is running>
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GLANCE_DB_NAME=<glance> - DB name of glance service
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GLANCE_DB_PASSWORD=<password> - <Glance DB password>
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GLANCE_DB_USER=<glance> - User name of glance in the database
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GLANCE_KEYSTONE_PASSWORD=<password> - Keystone DB password
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GLANCE_KEYSTONE_USER=<keystone> - Glance Keystone User
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GLANCE_REGISTRY_SERVICE_HOST=<glance IP> Glance registry service host
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KEYSTONE_ADMIN_PASSWORD=<password>
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KEYSTONE_ADMIN_SERVICE_HOST=<IP> - IP Address of Keystone Host
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KEYSTONE_ADMIN_SERVICE_PORT=<35357> - Port where Keystone admin endpoint operates.
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KEYSTONE_ADMIN_TOKEN=<keystone-secret> - A token used to access Keystone
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KEYSTONE_AUTH_PROTOCOL=<http> - The keystone authentication protocol
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KEYSTONE_DB_PASSWORD=<password> - The password used to access Keystone in the DB
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KEYSTONE_PUBLIC_SERVICE_HOST=<IP> - The IP address where Keystone is running
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KEYSTONE_PUBLIC_SERVICE_PORT=<5000> - Port which keystone uses for public service.
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MARIADB_ROOT_PASSWORD=<mariadb root password> - defines the MariaDB root password
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MARIADB_SERVICE_HOST=<IP> - The IP Address where Mariadb is running
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MARIADB_MAX_CONNECTIONS=<151> - The maximum number of connections to the MariaDB server
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NETWORK_MANAGER=<nova|neutron> - Use Nova or Neutron networking
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NOVA_API_SERVICE_HOST=<IP> - The IP Address where the Nova API Service is hosted
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METADATA_HOST=<IP> - The IP address of the Nova Metadata service
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ENABLED_APIS=<ec2,osapi_compute,metadata> - Enabled Nova API services.
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NOVA_DB_NAME=<nova> - The name of the nova entry in the database
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NOVA_DB_PASSWORD=<password> - The password used to access nova
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NOVA_DB_USER=<nova> - The name of the nova DB password
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NOVA_EC2_API_SERVICE_HOST=<IP> - The IP Address where the Nova EC2 API is hosted
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arn't these two the same?
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NOVA_EC2_SERVICE_HOST=<IP> _ The IP Address where the Nova EC2 service is hosted
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NOVA_VNCSERVER_PROXYCLIENT_ADDRESS=<IP> The IP address for the VNC Proxy Client to use
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NOVA_VNCSERVER_LISTEN_ADDRESS=<IP> The IP address for the VNC Server to use
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NOVA_NOVNC_BASE_ADDRESS=<IP/DNS Name> The IP/DNS Name to use for the NOVNC Base URL
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NOVA_NOVNC_PROXY_PORT=<6080> The TCP port used by Nova NoVNC
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NOVA_KEYSTONE_PASSWORD=<password> - The Nova keystone password
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NOVA_KEYSTONE_USER=<nova> - The Nova keystone username
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NEUTRON_DB_NAME=<neutron> - The name of the Neutron database
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NEUTRON_DB_USER=<neutron> - The name used by Neutron to access the Neutron database
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NEUTRON_DB_PASSWORD=<password> The password used by Neutron to access the Neutron database
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NEUTRON_KEYSTONE_USER=<neutron> - The name used by Neutron to communicate with Keystone
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NEUTRON_KEYSTONE_PASSWORD=<neutron> - The password used by Neutron to communicate with Keystone
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NEUTRON_SERVER_SERVICE_HOST=<$HOST_IP> - The IP address/hostname used to commuicate with the Neutron API
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NEUTRON_SHARED_SECRET=<sharedsecret> - The shared secret used between Neutron/Nova to secure metadata communication
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NEUTRON_API_PASTE_CONFIG=</usr/share/neutron/api-paste.ini> - Location of Neutron's API paste config file
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NEUTRON_VLAN_NETWORK_NAME=<physnet1> - List of physical_network names with which vlan networks can be created
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NEUTRON_NETWORK_VLAN_RANGES=<1:1> - Colon seperated range of addresses
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TYPE_DRIVERS=<flat,vxlan> - List of network type driver entrypoints to be loaded
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TENANT_NETWORK_TYPES=<flat,vxlan> - List of network_types to allocate as tenant networks
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MECHANISM_DRIVERS=<linuxbridge,l2population> - List of networking mechanism driver entrypoints to be loaded
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NEUTRON_FLAT_NETWORK_NAME=<physnet1> - List of physical_network names with which flat networks can be created
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NEUTRON_FLAT_NETWORK_INTERFACE=<eth1> - List of physical interface names that connect to physical_networks
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HEAT_DB_NAME=<heat> - The heat DB name
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HEAT_DB_PASSWORD=<kolla> - The heat db password
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HEAT_KEYSTONE_PASSWORD=<heat> - The keystone password for the heat user
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HEAT_API_SERVICE_HOST=<IP> - The IP Address where the Heat API service is hosted
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HEAT_API_CFN_SERVICE_HOST=<IP> - The IP Address where Heat users will contact the heat-engine in search for meta data
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HEAT_API_CFN_URL_HOST=<IP> - The IP Address where Heat virtual machines will contact the heat-engine to signal wait conditions
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HEAT_DOMAIN_PASS=<password> - The Heat domain password
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INIT_CINDER_DB=<true|false> - Initialize or update the Cinder db
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INIT_DESIGNATE_DB=<true|false> - Initialize or update the Designate db
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INIT_GLANCE_DB=<true|false> - Initialize or update the Glance db
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INIT_HEAT_DB=<true|false> - Initialize or update the Heat db
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INIT_KEYSTONE_DB=<true|false> - Initialize or update the Keystone db
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INIT_NOVA_DB=<true|false> - Initialize or update the Nova db
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PUBLIC_INTERFACE=<eth1> - The nova public interface
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PUBLIC_IP=<Host IP Address> - The IP Address of this host
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RABBITMQ_PASS=<rabbit> - The rabbitmq password used to join AMQP
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RABBITMQ_SERVICE_HOST=<IP> - The IP Address where the Rabbit service is running
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RABBITMQ_USER=<rabbit> - The RabbitMQ user name
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RABBITMQ_CLUSTER_NODES=<rabbit-nodes> - Default to none. RabbitMQ cluster nodes list in format 'hostname1@IP1 hostname2@IP2' (without quotes)
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RABBITMQ_CLUSTER_COOKIE=<rabbit-cookie> - Default to none. RabbitMQ cookie content. Alphabetical value here
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RABBIT_PASSWORD=<password> - The RabbitMQ password
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RABBIT_USERID=<rabbit> - The RabbitMQ user id on the host
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MAGNUM_DB_NAME=<magnum> - The Magnum database name
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MAGNUM_DB_USER=<magnum> - The Magnum database username
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MAGNUM_DB_PASSWORD=<kolla> - The Magnum database password
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MAGNUM_KEYSTONE_USER=<magnum> - The Magnum keystone username
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MAGNUM_KEYSTONE_PASSWORD=<magnum> - The Magnum keystone password
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MAGNUM_API_SERVICE_HOST=<IP> - The Magnum Host IP address
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MAGNUM_API_SERVICE_PORT=<9511> - The Magnum port
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DESIGNATE_DB_NAME=<designate> - The Designate database name
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DESIGNATE_DB_PASSWORD=<designatedns> - The Designate database password
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DESIGNATE_KEYSTONE_PASSWORD=<designate> - The keystone password for the designate user
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DESIGNATE_BIND9_RNDC_KEY=<KEY> - The rndc/bind key to use for communication between pool_manager and bind9
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DESIGNATE_MASTERNS=<IP> - The IP Address of the master (primary) DNS server (the backend)
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DESIGNATE_BACKEND=<bind9> - The backend to use in Designate, currently only bind9 is supported
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DESIGNATE_SLAVENS=<IP> - The IP Address of a slave nameserver under control of pool_manager
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DESIGNATE_API_SERVICE_HOST=<IP> - The IP Address of the Designate API
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DESIGNATE_API_SERVICE_PORT=<9001> - The port of the Designate API
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DESIGNATE_MDNS_PORT=<5354> - The port of the Designate MiniDNS server acting as master server
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DESIGNATE_DNS_PORT=<53> - The port of the Designate-backed DNS slaves that are used by the world
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DESIGNATE_ALLOW_RECURSION=<true|false> - Configure a recursive nameserver
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DESIGNATE_DEFAULT_POOL_NS_RECORD=<ns1.example.org.> - Name of server used to generate NS records
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DESIGNATE_SINK_NOVA_DOMAIN_NAME=<nova.example.org.> - Name of domain used to create records from Nova notifications
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DESIGNATE_SINK_NEUTRON_DOMAIN_NAME=<neutron.example.org.> - Name of domain used to create records from Neutron notifications
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DESIGNATE_SINK_NOVA_FORMATS=<("%(octet0)s-%(octet1)s-%(octet2)s-%(octet3)s.%(domain)s" "%(hostname)s.%(domain)s")> - List of formats for records that will be created by Nova handler
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DESIGNATE_SINK_NEUTRON_FORMATS=<("%(octet0)s-%(octet1)s-%(octet2)s-%(octet3)s.%(domain)s" "%(hostname)s.%(domain)s")> - List of formats for records that will be created by Neutron handler
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CINDER_API_SERVICE_HOST=<IP> - The IP Address where the Cinder service is running
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CINDER_API_SERVICE_PORT=<8776> - Port where Cinder operates
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CINDER_API_SERVICE_LISTEN=<IP> - The IP Address where the Cinder API listens
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CINDER_KEYSTONE_USER=<cinder> - Cinder Keystone User
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CINDER_KEYSTONE_PASSWORD=<password> - The Cinder Keystone password
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CINDER_ADMIN_PASSWORD=<password> - The Cinder password
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CINDER_DB_NAME=<cinder> - Cinder's DB name
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CINDER_DB_USER=<cinder> - User name of Cinder in the database
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CINDER_DB_PASSWORD=<password> - Cinder DB password
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CINDER_BACKUP_DRIVER=<driver> - The backup driver for Cinder
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CINDER_BACKUP_MANAGER=<manager> - The backup manager for Cinder
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CINDER_BACKUP_API_CLASS=<api> - The cinder-backup api class
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CINDER_BACKUP_NAME_TEMPLATE=<template> - The naming template for Cinder backups
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ISCSI_HELPER=<lioadm> - The ISCSI user tool to use
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ISCSI_IP_ADDRESS=<IP> - The IP Address to connect to ISCSI
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CINDER_LVM_LO_VOLUME_SIZE=<size> - The size of the volume group (4G)
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CINDER_VOLUME_GROUP=<cinder-volumes> - The name of the volume group
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CINDER_VOLUME_BACKEND_NAME=<LVM_iSCSI57> - The backend name for a given driver implementation
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CINDER_VOLUME_DRIVER=<cinder.volume.drivers.lvm.LVMISCSIDriver> - The driver used for volume creation
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CINDER_ENABLED_BACKEND=<lvm57> - A list of backend names to use
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INIT_CINDER_DB=<true|false> - Initialize or update the cinder db
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KEEPALIVED_HOST_PRIORITIES=<host1:100,host2:99> - Map of priorities per node. Priorities have to be unique.
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CINDER_API_VERSION=<2> - The API version for Cinder
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CEILOMETER_ADMIN_PASSWORD=<password> - The Ceilometer password
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CEILOMETER_API_SERVICE_HOST=<IP> - The IP Address where Ceilometer listens
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CEILOMETER_DB_NAME=<ceilometer> - Ceilometer DB name
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CEILOMETER_DB_PASSWORD=<password> - Ceilometer DB password
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CEILOMETER_DB_USER=<ceilometer> - Ceilometer DB User
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CEILOMETER_KEYSTONE_USER=<ceilometer> - Ceilometer Keystone user
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[Minimum environment variable setup guide.](https://github.com/stackforge/kolla/blob/master/docs/minimal-environment-vars.md)
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## Launching a container set
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Pick out a simple container set and launch it as follows:
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$ docker-compose -f compose/rabbitmq.yml up -d
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The third party deployment engine should launch the appropriate containers for
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the appropriate nodes. Note the `rabbitmq.yml` used in the example above
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expects an `openstack.env` file present in the current working directory. This
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file will be passed as environment data to the container and configure the
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container appropriately.
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# Conclusion
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Integrating with Kolla is as sample as creating an `openstack.env` file, having
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a deployment tool write the `openstack.env` file and .yml files to the nodes are
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targeted for deployment, and running docker-compose as described in the above
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documentation.
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