The Canonical Distribution of Kubernetes: Development Summary #4

This article is more than 8 years old.


This blog was originally posted by Tim Van Steenburgh

July 21st concluded our most recent development sprint on the Canonical Distribution of Kubernetes (CDK). Here’s a look at what we did.

Fixes and Improvements

Check out the full list on GitHub. Here are some notables:

  • Made load balancer port configurable
  • Changed default --service-cluster-ip-range to a /16 CIDR to allow more NodePort IP addresses
  • Fixed etcd snapshot action
  • Increased default worker node constraints to 4 cpu, 4GB RAM

Testing

  • Added a test to ensure dashboard is operational after deploy
  • Added a test for the built-in microbot example
  • Added a Jenkins job to test master charms with stable snaps. When this is green it means we can release whatever new fixes/features we have queued up in the charms, giving us the confidence to do more frequent releases.

Features

  • Calico spike. We want to provide a CDK + Calico deployment option that works on any cloud, just like our CDK + Flannel option. We’ve decided to go with a Calico-on-Flannel (Canal) approach initially. Canal combines the network policy enforcement of Calico with the ease-of-deployment of Flannel. Work begins in the current sprint!
  • RBAC spike. We mapped out the work necessary for enabling RBAC via charm config. Work begins in the current sprint!
  • Updated the canonical-kubernetes-elastic bundle. This bundle has been added to our Jenkins build process and updated with the latest 1.7 charms.

If you’d like to follow along more closely with CDK development, you can do so in the following places:

Until next time!

Talk to us today

Interested in running Ubuntu in your organisation?

Newsletter signup

Get the latest Ubuntu news and updates in your inbox.

By submitting this form, I confirm that I have read and agree to Canonical's Privacy Policy.

Related posts

Ubuntu and Ubuntu Pro on Azure Cobalt 200 VMs

Microsoft has announced the preview of Azure Cobalt 200, its second-generation custom Arm silicon. Learn how Ubuntu and Ubuntu Pro support these new VMs from...

What is InfiniBand?

When distributed workloads stall because nodes cannot exchange small messages quickly and consistently, the network is the limiting factor. How do you solve...

How Canonical Support solves hard Linux performance bugs  – even in 12-year old code

A 12-year-old bug in libnss-db caused getent enumeration to slow to a crawl – and showed how far expert support can go when a customer brings the right...