tripleo-heat-templates/docker/services
Jiri Stransky 03e39d668f Keep existing data for containerized Swift
Use mounts instead of docker volumes to preserve existing data when
moving from baremetal to containerized Swift.

Change-Id: Ib7cbca2ef674a0245a67b69ee2c77f574d74c181
2017-03-16 13:30:20 +01:00
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database Keep existing data for containerized MongoDB 2017-03-14 13:53:06 +00:00
README.rst Remove docker_image sections (unused) 2017-03-10 08:35:57 +01:00
aodh-api.yaml Containerize Aodh alarm services 2017-03-10 08:34:28 -05:00
aodh-evaluator.yaml Containerize Aodh alarm services 2017-03-10 08:34:28 -05:00
aodh-listener.yaml Containerize Aodh alarm services 2017-03-10 08:34:28 -05:00
aodh-notifier.yaml Containerize Aodh alarm services 2017-03-10 08:34:28 -05:00
glance-api.yaml Remove docker_image sections (unused) 2017-03-10 08:35:57 +01:00
gnocchi-api.yaml Containerize gnocchi services 2017-03-13 11:41:09 -04:00
gnocchi-metricd.yaml Containerize gnocchi services 2017-03-13 11:41:09 -04:00
gnocchi-statsd.yaml Containerize gnocchi services 2017-03-13 11:41:09 -04:00
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nova-scheduler.yaml Remove docker_image sections (unused) 2017-03-10 08:35:57 +01:00
rabbitmq.yaml Keep existing data for containerized RabbitMQ 2017-03-14 13:53:17 +00:00
services.yaml Tasks hook for preparing BM host for deploying containerized services 2017-03-13 11:01:06 +01:00
swift-proxy.yaml Keep existing data for containerized Swift 2017-03-16 13:30:20 +01:00
swift-ringbuilder.yaml Remove docker_image sections (unused) 2017-03-10 08:35:57 +01:00
swift-storage.yaml Keep existing data for containerized Swift 2017-03-16 13:30:20 +01:00
zaqar.yaml Remove docker_image sections (unused) 2017-03-10 08:35:57 +01:00

README.rst

Docker Services

TripleO docker services are currently built on top of the puppet services. To do this each of the docker services includes the output of the t-h-t puppet/service templates where appropriate.

In general global docker specific service settings should reside in these templates (templates in the docker/services directory.) The required and optional items are specified in the docker settings section below.

If you are adding a config setting that applies to both docker and baremetal that setting should (so long as we use puppet) go into the puppet/services templates themselves.

Building Kolla Images

TripleO currently relies on Kolla docker containers. Kolla supports container customization and we are making use of this feature within TripleO to inject puppet (our configuration tool of choice) into the Kolla base images. The undercloud nova-scheduler also requires openstack-tripleo-common to provide custom filters.

To build Kolla images for TripleO adjust your kolla config to build your centos base image with puppet using the example below:

$ cat template-overrides.j2 {% extends parent_template %} {% set base_centos_binary_packages_append = ['puppet'] %} {% set nova_scheduler_packages_append = ['openstack-tripleo-common'] %}

kolla-build --base centos --template-override template-overrides.j2

Docker settings

Each service may define an output variable which returns a puppet manifest snippet that will run at each of the following steps. Earlier manifests are re-asserted when applying latter ones.

  • config_settings: This setting is generally inherited from the puppet/services templates and only need to be appended to on accasion if docker specific config settings are required.

  • step_config: This setting controls the manifest that is used to create docker config files via puppet. The puppet tags below are used along with this manifest to generate a config directory for this container.

  • kolla_config: Contains YAML that represents how to map config files into the kolla container. This config file is typically mapped into the container itself at the /var/lib/kolla/config_files/config.json location and drives how kolla's external config mechanisms work.

  • docker_config: Data that is passed to the docker-cmd hook to configure a container, or step of containers at each step. See the available steps below and the related docker-cmd hook documentation in the heat-agents project.

  • puppet_config: This section is a nested set of key value pairs that drive the creation of config files using puppet. Required parameters include:

    • puppet_tags: Puppet resource tag names that are used to generate config files with puppet. Only the named config resources are used to generate a config file. Any service that specifies tags will have the default tags of 'file,concat,file_line' appended to the setting. Example: keystone_config
    • config_volume: The name of the volume (directory) where config files will be generated for this service. Use this as the location to bind mount into the running Kolla container for configuration.
    • config_image: The name of the docker image that will be used for generating configuration files. This is often the same container that the runtime service uses. Some services share a common set of config files which are generated in a common base container.
    • step_config: This setting controls the manifest that is used to create docker config files via puppet. The puppet tags below are used along with this manifest to generate a config directory for this container.
  • docker_puppet_tasks: This section provides data to drive the docker-puppet.py tool directly. The task is executed only once within the cluster (not on each node) and is useful for several puppet snippets we require for initialization of things like keystone endpoints, database users, etc. See docker-puppet.py for formatting.

Docker steps

Similar to baremetal docker containers are brought up in a stepwise manner. The current architecture supports bringing up baremetal services alongside of containers. For each step the baremetal puppet manifests are executed first and then any docker containers are brought up afterwards.

Steps correlate to the following:

Pre) Containers config files generated per hiera settings. 1) Load Balancer configuration baremetal a) step 1 baremetal b) step 1 containers 2) Core Services (Database/Rabbit/NTP/etc.) a) step 2 baremetal b) step 2 containers 3) Early Openstack Service setup (Ringbuilder, etc.) a) step 3 baremetal b) step 3 containers 4) General OpenStack Services a) step 4 baremetal b) step 4 containers c) Keystone containers post initialization (tenant,service,endpoint creation) 5) Service activation (Pacemaker) a) step 5 baremetal b) step 5 containers