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Hands-On High Performance with Go

You're reading from   Hands-On High Performance with Go Boost and optimize the performance of your Golang applications at scale with resilience

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Product type Paperback
Published in Mar 2020
Publisher Packt
ISBN-13 9781789805789
Length 406 pages
Edition 1st Edition
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Author (1):
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Bob Strecansky Bob Strecansky
Author Profile Icon Bob Strecansky
Bob Strecansky
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Toc

Table of Contents (20) Chapters Close

Preface 1. Section 1: Learning about Performance in Go
2. Introduction to Performance in Go FREE CHAPTER 3. Data Structures and Algorithms 4. Understanding Concurrency 5. STL Algorithm Equivalents in Go 6. Matrix and Vector Computation in Go 7. Section 2: Applying Performance Concepts in Go
8. Composing Readable Go Code 9. Template Programming in Go 10. Memory Management in Go 11. GPU Parallelization in Go 12. Compile Time Evaluations in Go 13. Section 3: Deploying, Monitoring, and Iterating on Go Programs with Performance in Mind
14. Building and Deploying Go Code 15. Profiling Go Code 16. Tracing Go Code 17. Clusters and Job Queues 18. Comparing Code Quality Across Versions 19. Other Books You May Enjoy

STL Algorithm Equivalents in Go

Many programmers coming from other high-performance programming languages, particularly C++, understand the concept of the Standard Templating Library (STL). This library provides common programming data structures and functions access to a generalized library in order to rapidly iterate and write performant code at scale. Go does not have a built-in STL. This chapter will focus on how to utilize some of the most common STL practices within Go. The STL has four commonly referenced components:

  • Algorithms
  • Containers
  • Functors
  • Iterators

Being familiar with these topics will help you to write Go code more quickly and effectively, utilizing commonly implemented and optimized patterns. In this chapter, we are going to learn the following:

  • How to use STL practices in Go
  • How to utilize standard programming algorithms with respect to Go
  • How containers...
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