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C++ Reactive Programming

You're reading from   C++ Reactive Programming Design concurrent and asynchronous applications using the RxCpp library and Modern C++17

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Product type Paperback
Published in Jun 2018
Publisher Packt
ISBN-13 9781788629775
Length 348 pages
Edition 1st Edition
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Authors (2):
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Praseed Pai Praseed Pai
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Praseed Pai
 Abraham Abraham
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Abraham
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Table of Contents (20) Chapters Close

Title Page
Copyright and Credits
Packt Upsell
Contributors
Preface
1. Reactive Programming Model – Overview and History FREE CHAPTER 2. A Tour of Modern C++ and its Key Idioms 3. Language-Level Concurrency and Parallelism in C++ 4. Asynchronous and Lock-Free Programming in C++ 5. Introduction to Observables 6. Introduction to Event Stream Programming Using C++ 7. Introduction to Data Flow Computation and the RxCpp Library 8. RxCpp – the Key Elements 9. Reactive GUI Programming Using Qt/C++ 10. Creating Custom Operators in RxCpp 11. Design Patterns and Idioms for C++ Rx Programming 12. Reactive Microservices Using C++ 13. Advanced Streams and Handling Errors 1. Other Books You May Enjoy Index

Memory ordering


We have already learned about the atomic types and atomic operators available in the standard library. While performing operations on atomic types, we need to specify memory ordering for certain operations. Now, we will talk about the significance and use cases for the different memory-ordering semantics. The key idea behind atomic operations is to provide synchronization in data access across multiple threads, and this is achieved by enforcing the order of execution. For example, if writing to the data happens before the read from the data, things will be fine. Otherwise, you are in trouble! There are six memory-ordering options available with the standard library that can be applied to operations on atomic types: memory_order_relaxed, memory_order_consume, memory_order_acquire, memory_order_release, memory_order_acq_rel, and memory_order_seq_cst. For all atomic operations on atomic types, memory_order_seq_cst is the memory order by default unless you specify something else...

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