Sign In Start Free Trial
Account

Add to playlist

Create a Playlist

Modal Close icon
You need to login to use this feature.
  • Book Overview & Buying C++ Reactive Programming
  • Table Of Contents Toc
  • Feedback & Rating feedback
C++ Reactive Programming

C++ Reactive Programming

By : Praseed Pai, Abraham
3 (8)
close
close
C++ Reactive Programming

C++ Reactive Programming

3 (8)
By: Praseed Pai, Abraham

Overview of this book

Reactive programming is an effective way to build highly responsive applications with an easy-to-maintain code base. This book covers the essential functional reactive concepts that will help you build highly concurrent, event-driven, and asynchronous applications in a simpler and less error-prone way. C++ Reactive Programming begins with a discussion on how event processing was undertaken by different programming systems earlier. After a brisk introduction to modern C++ (C++17), you’ll be taken through language-level concurrency and the lock-free programming model to set the stage for our foray into the Functional Programming model. Following this, you’ll be introduced to RxCpp and its programming model. You’ll be able to gain deep insights into the RxCpp library, which facilitates reactive programming. You’ll learn how to deal with reactive programming using Qt/C++ (for the desktop) and C++ microservices for the Web. By the end of the book, you will be well versed with advanced reactive programming concepts in modern C++ (C++17).
Table of Contents (20 chapters)
close
close
Title Page
Copyright and Credits
Packt Upsell
Contributors
Preface
Index

A thread-safe stack data structure


So far, we have discussed how to launch and manage a thread, and how to synchronize the operations between concurrent threads. But, when it comes to actual systems, the data is represented in the form of data structures, which must be chosen appropriately for the situation to guarantee the performance of the program. In this section, we are going to discuss how to design a concurrent stack using conditional variables and mutexes. The following program is a wrapper to std::stack, which is declared under the library header <stack>, and the stack wrapper will be available with different overloads for pop and push functionalities (this has been done to keep the listing small, and this also demonstrates how we can adapt a sequential data structure to work in a concurrent context):

template <typename T> 
class Stack 
{ 
private: 
    std::stack<T> myData; 
    mutable std::mutex myMutex; 
    std::condition_variable myCond; 
     
public: 
 ...

Limited Time Offer

$10p/m for 3 months

Get online access to our library of over 7000 practical eBooks and videos, constantly updated with the latest in tech and supported with AI assistants
notes
bookmark Notes and Bookmarks search Search in title playlist Add to playlist download Download options font-size Font size

Change the font size

margin-width Margin width

Change margin width

day-mode Day/Sepia/Night Modes

Change background colour

Close icon Search
Country selected

Close icon Your notes and bookmarks

Confirmation

Modal Close icon
claim successful

Buy this book with your credits?

Modal Close icon
Are you sure you want to buy this book with one of your credits?
Close
YES, BUY

Submit Your Feedback

Modal Close icon

Create a Note

Modal Close icon
You need to login to use this feature.

Delete Bookmark

Modal Close icon
Are you sure you want to delete it?
Cancel
Yes, Delete

Delete Note

Modal Close icon
Are you sure you want to delete it?
Cancel
Yes, Delete

Edit Note

Modal Close icon
Write a note (max 255 characters)
Cancel
Update Note