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Clean Code in C#

You're reading from   Clean Code in C# Refactor your legacy C# code base and improve application performance by applying best practices

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Product type Paperback
Published in Jul 2020
Publisher Packt
ISBN-13 9781838982973
Length 500 pages
Edition 1st Edition
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Author (1):
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Jason Alls Jason Alls
Author Profile Icon Jason Alls
Jason Alls
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Table of Contents (17) Chapters Close

Preface 1. Coding Standards and Principles in C# 2. Code Review – Process and Importance FREE CHAPTER 3. Classes, Objects, and Data Structures 4. Writing Clean Functions 5. Exception Handling 6. Unit Testing 7. End-to-End System Testing 8. Threading and Concurrency 9. Designing and Developing APIs 10. Securing APIs with API Keys and Azure Key Vault 11. Addressing Cross-Cutting Concerns 12. Using Tools to Improve Code Quality 13. Refactoring C# Code – Identifying Code Smells 14. Refactoring C# Code – Implementing Design Patterns 15. Assessments 16. Other Books You May Enjoy

Working with parallel threads using semaphores

In multi-threaded applications, a non-negative number, known as a semaphore, is shared between threads that have a number of 1 or 2. In terms of synchronization, 1 specifies wait and 2 specifies signal.We can associate a semaphore with a number of buffers, which can each be worked on simultaneously by different processes.

So, essentially, semaphores are signaling mechanisms of the integer and binary primitive types that can be modified by wait and signal operations. If there are no free resources, then processes that require a resource should execute the wait operation until the semaphore value is greater than 0. Semaphores can have multiple program threads and they can be changed by any object, obtaining a resource or releasing it.

The advantages of using semaphores are down to the fact that more than one thread can access the critical piece of code. A semaphore is executed in the kernel and is machine-independent...

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