Book Image

C++ High Performance - Second Edition

By : Björn Andrist, Viktor Sehr
5 (2)
Book Image

C++ High Performance - Second Edition

5 (2)
By: Björn Andrist, Viktor Sehr

Overview of this book

C++ High Performance, Second Edition guides you through optimizing the performance of your C++ apps. This allows them to run faster and consume fewer resources on the device they're running on without compromising the readability of your codebase. The book begins by introducing the C++ language and some of its modern concepts in brief. Once you are familiar with the fundamentals, you will be ready to measure, identify, and eradicate bottlenecks in your C++ codebase. By following this process, you will gradually improve your style of writing code. The book then explores data structure optimization, memory management, and how it can be used efficiently concerning CPU caches. After laying the foundation, the book trains you to leverage algorithms, ranges, and containers from the standard library to achieve faster execution, write readable code, and use customized iterators. It provides hands-on examples of C++ metaprogramming, coroutines, reflection to reduce boilerplate code, proxy objects to perform optimizations under the hood, concurrent programming, and lock-free data structures. The book concludes with an overview of parallel algorithms. By the end of this book, you will have the ability to use every tool as needed to boost the efficiency of your C++ projects.
Table of Contents (17 chapters)
15
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16
Index

Using views

In this section, we will discuss some relatively new class templates in the C++ standard library: std::string_view from C++17 and std::span, which was introduced in C++20.

These class templates are not containers but lightweight views (or slices) of a sequence of contiguous elements. Views are small objects that are meant to be copied by value. They don't allocate memory, nor do they provide any guarantees regarding the lifetime of the memory they point to. In other words, they are non-owning reference types, which differ significantly from the containers described previously in this chapter. At the same time, they are closely related to std::string, std::array, and std::vector, which we will look at soon. I will start by describing std::string_view.

Avoiding copies with string_view

A std::string_view contains a pointer to the beginning of an immutable string buffer and a size. Since a string is a contiguous sequence of characters, the pointer and the...