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How to Test a Time Machine

You're reading from   How to Test a Time Machine A practical guide to test architecture and automation

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Product type Paperback
Published in Mar 2023
Publisher Packt
ISBN-13 9781801817028
Length 384 pages
Edition 1st Edition
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Author (1):
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Noemí Ferrera Noemí Ferrera
Author Profile Icon Noemí Ferrera
Noemí Ferrera
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Table of Contents (19) Chapters Close

Preface 1. Part 1 Getting Started – Understanding Where You Are and Where You Want to Go
2. Chapter 1: Introduction – Finding Your QA Level FREE CHAPTER 3. Chapter 2: The Secret Passages of the Test Pyramid – The Base of the Pyramid 4. Chapter 3: The Secret Passages of the Test Pyramid – the Middle of the Pyramid 5. Chapter 4: The Secret Passages of the Test Pyramid – the Top of the Pyramid 6. Part 2 Changing the Status – Tips for Better Quality
7. Chapter 5: Testing Automation Patterns 8. Chapter 6: Continuous Testing – CI/CD and Other DevOps Concepts You Should Know 9. Chapter 7: Mathematics and Algorithms in Testing 10. Part 3 Going to the Next Level – New Technologies and Inspiring Stories
11. Chapter 8: Artificial Intelligence is the New Intelligence 12. Chapter 9: Having Your Head up in the Clouds 13. Chapter 10: Traveling Across Realities 14. Chapter 11: How to Test a Time Machine (and Other Hard-to-Test Applications) 15. Chapter 12: Taking Your Testing to the Next Level 16. Index 17. Other Books You May Enjoy Appendix – Self-Assessment

Secret passage – automation at the base of the pyramid

As discussed in the last two sections, automation can be used to avoid repetitive code, both in unit testing and during mocking. In fact, mocking libraries are partially doing that very same thing. Furthermore, some integrated development environments (IDEs), such as IntelliJ IDEA, already have integrated plugins that can insert code automatically, and even create unit test classes. Visual Studio Code (VS Code) has several community-driven extensions that can automate these and other tasks that you are currently doing manually.

The first requirement to write automation over code is to be able to extract pieces of that code and give meaning to those pieces. This is usually done using an abstract syntax tree (AST) to represent this code:

  • With Python, the ast library (see [1] in the Further reading section at the end of the chapter) provides the methods to create one
  • In C#, they are referred to as “expression...
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