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Learn OpenShift

Learn OpenShift

By : Denis Zuev, Artemii Kropachev, Aleksey Usov
3 (2)
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Learn OpenShift

Learn OpenShift

3 (2)
By: Denis Zuev, Artemii Kropachev, Aleksey Usov

Overview of this book

Docker containers transform application delivery technologies to make them faster and more reproducible, and to reduce the amount of time wasted on configuration. Managing Docker containers in the multi-node or multi-datacenter environment is a big challenge, which is why container management platforms are required. OpenShift is a new generation of container management platforms built on top of both Docker and Kubernetes. It brings additional functionality to the table, something that is lacking in Kubernetes. This new functionality significantly helps software development teams to bring software development processes to a whole new level. In this book, we’ll start by explaining the container architecture, Docker, and CRI-O overviews. Then, we'll look at container orchestration and Kubernetes. We’ll cover OpenShift installation, and its basic and advanced components. Moving on, we’ll deep dive into concepts such as deploying application OpenShift. You’ll learn how to set up an end-to-end delivery pipeline while working with applications in OpenShift as a developer or DevOps. Finally, you’ll discover how to properly design OpenShift in production environments. This book gives you hands-on experience of designing, building, and operating OpenShift Origin 3.9, as well as building new applications or migrating existing applications to OpenShift.
Table of Contents (24 chapters)
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Commonly made mistakes while designing networks for OpenShift

While network design is generally simple, there are many ways to make a mistake that will make the whole network a single point of failure. The most commonly made mistakes are as follows:

  • On access and core network layers, people often use static Link Aggregation (LAG) methods instead of dynamic link control, such as Link Aggregation Control Protocol (LACP) 802.3ad. MTU values are not properly set throughout the network and CoPP filters block protocol communication between networking equipment, which causes failover not to work in case of a failure.
  • When using load balancers, quite often active/passive deployments cannot failover properly from one node to the other. This is usually caused by inconsistent configuration between load balancer cluster nodes.
  • Firewalls and security groups are quite often a bottleneck, and...

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