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Kotlin Design Patterns and Best Practices

You're reading from   Kotlin Design Patterns and Best Practices Elevate your Kotlin skills with classical and modern design patterns, coroutines, and microservices

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Product type Paperback
Published in Apr 2024
Publisher Packt
ISBN-13 9781805127765
Length 474 pages
Edition 3rd Edition
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Author (1):
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Alexey Soshin Alexey Soshin
Author Profile Icon Alexey Soshin
Alexey Soshin
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Table of Contents (19) Chapters Close

Preface 1. Section 1: Classical Patterns
2. Getting Started with Kotlin FREE CHAPTER 3. Working with Creational Patterns 4. Understanding Structural Patterns 5. Getting Familiar with Behavioral Patterns 6. Section 2: Reactive and Concurrent Patterns
7. Introducing Functional Programming 8. Threads and Coroutines 9. Controlling the Data Flow 10. Designing for Concurrency 11. Section 3: Practical Application of Design Patterns
12. Idioms and Anti-Patterns 13. Practical Functional Programming with Arrow 14. Concurrent Microservices with Ktor 15. Reactive Microservices with Vert.x 16. Assessments
17. Other Book You May Enjoy
18. Index

Summary

In this chapter, we examined a variety of concurrency design patterns in Kotlin, with a focus on core components like coroutines, channels, and deferred values. Deferred values serve as placeholders for values that will be computed asynchronously. The Barrier design pattern synchronizes multiple asynchronous tasks, allowing them to move forward together. With the Scheduler pattern, we can separate the task logic from its runtime execution.

We also discussed the Pipeline, Fan-In, and Fan-Out patterns, which facilitate the distribution of tasks and the collection of results. The Mutex pattern is used to manage concurrent execution, ensuring tasks don’t conflict with one another. The Racing pattern is geared toward improving application responsiveness. Lastly, the Sidekick Channel pattern acts as a backup, taking on work when the primary task struggles to keep up.

These patterns equip you with the tools to manage your application’s concurrency in an efficient...

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