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Hands-On Linux for Architects

You're reading from   Hands-On Linux for Architects Design and implement Linux-based IT solutions

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Product type Paperback
Published in Apr 2019
Publisher Packt
ISBN-13 9781789534108
Length 380 pages
Edition 1st Edition
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Authors (2):
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Denis Salamanca Denis Salamanca
Author Profile Icon Denis Salamanca
Denis Salamanca
Esteban Flores Esteban Flores
Author Profile Icon Esteban Flores
Esteban Flores
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Toc

Table of Contents (22) Chapters Close

Preface 1. Section 1: High-Performance Storage Solutions with GlusterFS FREE CHAPTER
2. Introduction to Design Methodology 3. Defining GlusterFS Storage 4. Architecting a Storage Cluster 5. Using GlusterFS on the Cloud Infrastructure 6. Analyzing Performance in a Gluster System 7. Section 2: High-Availablility Nginx Web Application Using Kubernetes
8. Creating a Highly Available Self-Healing Architecture 9. Understanding the Core Components of a Kubernetes Cluster 10. Architecting a Kubernetes Cluster 11. Deploying and Configuring Kubernetes 12. Section 3: Elastic Stack
13. Monitoring with the ELK Stack 14. Designing an ELK Stack 15. Using Elasticsearch, Logstash, and Kibana to Manage Logs 16. Section 4: System Management Using Saltstack
17. Solving Management Problems with Salty Solutions 18. Getting Your Hands Salty 19. Design Best Practices 20. Assessments 21. Other Books You May Enjoy

Summary

The process of architecting a storage solution requires many variables to be known. In this chapter, we defined that deciding how much space is needed depends on the GlusterFS volume type, the application requirements, and the estimated growth in data utilization.

Depending on the volume type, the available space is affected, a distributed volume aggregates all of the available space making it the most space efficient, while a replicated volume uses half of the available raw space for mirroring.

The application and user base dictate how much space is required. This is because, depending on the type of data being served, the storage requirements change. Thinking ahead and planning for storage growth avoids the potential to run out of resources, and allows for at least a 10% buffer when sizing should fit most situations.

With the performance requirements, we defined the...

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