gujin d23ed92588 tox: Keeping going with docs
1. Sphinx 1.8 introduced [1] the '--keep-going' argument which, as its name
suggests, keeps the build running when it encounters non-fatal errors.
This is exceptionally useful in avoiding a continuous edit-build loop
when undertaking large doc reworks where multiple errors may be
introduced.

2. Cleanup the folders before run commands

[1] https://github.com/sphinx-doc/sphinx/commit/e3483e9b045

Change-Id: Ib3133820a3d3ca3027ea2f9bc9b6907929cff8ed
2019-11-11 13:49:54 +00:00
2017-12-14 20:39:55 +00:00
2019-10-21 10:28:07 +00:00
2019-11-11 13:49:54 +00:00
2019-06-06 10:28:55 +00:00
2019-09-16 16:26:27 +02:00
2019-06-25 02:24:45 +00:00
2019-06-25 02:24:45 +00:00
2017-04-06 10:15:29 +01:00
2018-03-08 16:37:08 +00:00
2019-11-11 13:49:54 +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
Description
Deployment of containerised OpenStack to bare metal using kolla and bifrost
Readme 39 MiB
Languages
Python 85.1%
Shell 8%
Jinja 6.9%