Deployment of containerised OpenStack to bare metal using kolla and bifrost
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Mark Goddard c563f45fb7 CentOS 8: separate kolla build tag from deploy tag
Prevously the container image tag applied to built images was configured
via 'kolla_openstack_release'. This variable also controlled the tag
used for deployed images. This could cause problems during the CentOS 8
transition, where we need to build two sets of images, and Kolla Ansible
may apply a '-centos8' suffix to the tag we specify on CentOS 8.

This change separates the tag applied to built images into a different
variable - 'kolla_tag'. The default is still 'kolla_openstack_release'.

Change-Id: I8e1d877ee91a07b86cb858d25b841f8bfcd50e21
Story: 2006574
Task: 39487
2020-04-27 17:42:55 +01:00
.github Add an issue template. 2017-12-14 20:39:55 +00:00
ansible CentOS 8: separate kolla build tag from deploy tag 2020-04-27 17:42:55 +01:00
dev Install python-openstackclient using upper constraints 2020-04-02 16:58:50 +02:00
doc CentOS 8: separate kolla build tag from deploy tag 2020-04-27 17:42:55 +01:00
etc/kayobe CentOS 8: separate kolla build tag from deploy tag 2020-04-27 17:42:55 +01:00
kayobe Use unittest.mock instead of PyPI mock 2020-04-03 10:22:39 +01:00
playbooks Merge "CentOS 8: Enable overcloud upgrade job" 2020-03-23 14:24:55 +00:00
releasenotes CentOS 8: separate kolla build tag from deploy tag 2020-04-27 17:42:55 +01:00
roles Stop gzipping logs in get-logs.sh 2020-02-11 13:04:37 +00:00
tools Use unittest.mock instead of PyPI mock 2020-04-03 10:22:39 +01:00
zuul.d CentOS 8: Enable seed upgrade job 2020-03-25 14:56:57 +00:00
.coveragerc Use stestr for running unit tests, add a coverage environment 2018-03-08 16:37:08 +00:00
.gitignore Add 'venvs' to list of things which we don't want git to track 2018-07-02 14:17:18 +01:00
.gitreview Fix after x/kayobe rename 2019-09-16 16:26:27 +02:00
.stestr.conf Use stestr for running unit tests, add a coverage environment 2018-03-08 16:37:08 +00:00
.travis.yml Add a tox environment & dependencies for running molecule tests 2018-02-20 18:48:28 +00:00
.yamllint Run yamllint on etc/kayobe during pep8 tox env 2019-02-14 12:17:19 +00:00
CONTRIBUTING.rst Sync Sphinx requirement 2019-06-25 02:24:45 +00:00
HACKING.rst Sync Sphinx requirement 2019-06-25 02:24:45 +00:00
LICENSE License kayobe project under Apache2 2017-04-06 10:15:29 +01:00
README.rst Update docs after repo rename x/ to openstack/ 2019-09-16 17:39:29 +01:00
requirements.txt Blacklist Ansible 2.8.9 2020-03-05 17:00:46 +00:00
requirements.yml CentOS 8: seed VM & bifrost 2020-04-09 14:04:22 +00:00
setup.cfg [ussuri][goal] Drop python 2.7 support and testing 2020-02-11 10:12:39 +00:00
setup.py Use pbr to build the project 2018-03-08 16:37:08 +00:00
test-requirements.txt Remove sphinx from test-requirements.txt 2019-10-21 11:10:13 +02:00
tox.ini [ussuri][goal] More cleanup for python 2.7 drop 2020-02-29 15:23:18 -06:00
Vagrantfile Support complete installation of Kayobe as a python package 2019-02-01 12:55:27 +00:00

Kayobe

Kayobe enables deployment of containerised OpenStack to bare metal.

Containers offer a compelling solution for isolating OpenStack services, but running the control plane on an orchestrator such as Kubernetes or Docker Swarm adds significant complexity and operational overheads.

The hosts in an OpenStack control plane must somehow be provisioned, but deploying a secondary OpenStack cloud to do this seems like overkill.

Kayobe stands on the shoulders of giants:

  • OpenStack bifrost discovers and provisions the cloud
  • OpenStack kolla builds container images for OpenStack services
  • OpenStack kolla-ansible delivers painless deployment and upgrade of containerised OpenStack services

To this solid base, kayobe adds:

  • Configuration of cloud host OS & flexible networking
  • Management of physical network devices
  • A friendly openstack-like CLI

All this and more, automated from top to bottom using Ansible.

Features

  • Heavily automated using Ansible
  • kayobe Command Line Interface (CLI) for cloud operators
  • Deployment of a seed VM used to manage the OpenStack control plane
  • Configuration of physical network infrastructure
  • Discovery, introspection and provisioning of control plane hardware using OpenStack bifrost
  • Deployment of an OpenStack control plane using OpenStack kolla-ansible
  • Discovery, introspection and provisioning of bare metal compute hosts using OpenStack ironic and ironic inspector
  • Virtualised compute using OpenStack nova
  • Containerised workloads on bare metal using OpenStack magnum
  • Big data on bare metal using OpenStack sahara
  • Control plane and workload monitoring and log aggregation using OpenStack monasca