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Modern C++: Efficient and Scalable Application Development

You're reading from   Modern C++: Efficient and Scalable Application Development Leverage the modern features of C++ to overcome difficulties in various stages of application development

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Product type Course
Published in Dec 2018
Publisher
ISBN-13 9781789951738
Length 702 pages
Edition 1st Edition
Languages
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Authors (2):
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Marius Bancila Marius Bancila
Author Profile Icon Marius Bancila
Marius Bancila
Richard Grimes Richard Grimes
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Richard Grimes
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Table of Contents (24) Chapters Close

Title Page
Copyright
About Packt
Contributors
Preface
1. Understanding Language Features FREE CHAPTER 2. Working with Memory, Arrays, and Pointers 3. Using Functions 4. Classes 5. Using the Standard Library Containers 6. Using Strings 7. Diagnostics and Debugging 8. Learning Modern Core Language Features 9. Working with Numbers and Strings 10. Exploring Functions 11. Standard Library Containers, Algorithms, and Iterators 12. Math Problems 13. Language Features 14. Strings and Regular Expressions 15. Streams and Filesystems 16. Date and Time 17. Algorithms and Data Structures 1. Other Books You May Enjoy Index

Uniformly invoking anything callable


Developers, and especially those who implement libraries, sometimes need to invoke a callable object in a uniform manner. This can be a function, a pointer to a function, a pointer to a member function, or a function object. Examples of such cases include std::bind, std::function, std::mem_fn, and std::thread::thread. C++17 defines a standard function called std::invoke() that can invoke any callable object with the provided arguments. This is not intended to replace direct calls to functions or function objects, but it is useful in template metaprogramming for implementing various library functions.

 

Getting ready

For this recipe, you should be familiar with how to define and use function pointers.

To exemplify how std::invoke() can be used in different contexts, we will use the following function and class:

    int add(int const a, int const b) 
    { 
      return a + b; 
    } 

    struct foo 
    { 
      int x = 0; 

      void increment_by(int const...
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