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Beginning C++ Game Programming

You're reading from   Beginning C++ Game Programming Learn C++ from scratch by building fun games

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Product type Paperback
Published in May 2024
Publisher Packt
ISBN-13 9781835081747
Length 648 pages
Edition 3rd Edition
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Author (1):
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John Horton John Horton
Author Profile Icon John Horton
John Horton
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Table of Contents (24) Chapters Close

Preface 1. Welcome to Beginning C++ Game Programming Third Edition! FREE CHAPTER 2. Variables, Operators, and Decisions: Animating Sprites 3. C++ Strings, SFML Time: Player Input and HUD 4. Loops, Arrays, Switch, Enumerations, and Functions: Implementing Game Mechanics 5. Collisions, Sound, and End Conditions: Making the Game Playable 6. Object-Oriented Programming – Starting the Pong Game 7. AABB Collision Detection and Physics – Finishing the Pong Game 8. SFML Views – Starting the Zombie Shooter Game 9. C++ References, Sprite Sheets, and Vertex Arrays 10. Pointers, the Standard Template Library, and Texture Management 11. Coding the TextureHolder Class and Building a Horde of Zombies 12. Collision Detection, Pickups, and Bullets 13. Layering Views and Implementing the HUD 14. Sound Effects, File I/O, and Finishing the Game 15. Run! 16. Sound, Game Logic, Inter-Object Communication, and the Player 17. Graphics, Cameras, Action 18. Coding the Platforms, Player Animations, and Controls 19. Building the Menu and Making It Rain 20. Fireballs and Spatialization 21. Parallax Backgrounds and Shaders 22. Other Books You May Enjoy
23. Index

Simple sound effects

We will add three sounds. Each sound will be played on a particular game event: a simple thud sound whenever the player chops, a gloomy losing sound when the player runs out of time, and a retro crushing sound when the player is squashed to death.

How SFML sound works

SFML plays sound effects using two different classes. The first class is the SoundBuffer class. This is the class that holds the actual audio data from the sound file. It is SoundBuffer that is responsible for loading the .wav files into the PC’s RAM, in a format that can be played without any further decoding work.

When we write code for the sound effects shortly, we will see that once we have a SoundBuffer object with our sound stored in it, we will then create another object of type Sound. We can then associate this Sound object with a SoundBuffer object.

Then, at the appropriate moment in our code, we will be able to call the play function of the appropriate Sound object...

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