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Game Development Patterns with Unreal Engine 5

You're reading from   Game Development Patterns with Unreal Engine 5 Build maintainable and scalable systems with C++ and Blueprint

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Product type Paperback
Published in Jan 2024
Publisher Packt
ISBN-13 9781803243252
Length 254 pages
Edition 1st Edition
Languages
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Authors (2):
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Stuart Butler Stuart Butler
Author Profile Icon Stuart Butler
Stuart Butler
Tom Oliver Tom Oliver
Author Profile Icon Tom Oliver
Tom Oliver
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Table of Contents (16) Chapters Close

Preface 1. Part 1:Learning from Unreal Engine 5
2. Chapter 1: Understanding Unreal Engine 5 and its Layers FREE CHAPTER 3. Chapter 2: “Hello Patterns” 4. Chapter 3: UE5 Patterns in Action – Double Buffer, Flyweight, and Spatial Partitioning 5. Chapter 4: Premade Patterns in UE5 – Component, Update Method, and Behavior Tree 6. Part 2: Anonymous Modular Design
7. Chapter 5: Forgetting Tick 8. Chapter 6: Clean Communication – Interface and Event Observer Patterns 9. Chapter 7: A Perfectly Decoupled System 10. Part 3: Building on Top of Unreal
11. Chapter 8: Building Design Patterns – Singleton, Command, and State 12. Chapter 9: Structuring Code with Behavioral Patterns – Template, Subclass Sandbox, and Type Object 13. Chapter 10: Optimization through Patterns 14. Index 15. Other Books You May Enjoy

Flyweight

The flyweight pattern is focused on reducing memory usage for large collections of objects and reducing the time spent loading them in. For the flyweight pattern, we first need to consider three things:

  • Intrinsic data – The data values that are immutable and considered to always be true on an object
  • Extrinsic data – The data values that are mutable and considered to be changeable per instance
  • Memory costs – All data must be stored somewhere and for loaded objects, that means on our RAM

With that in mind, let’s look at trees in the forest. Taking a simple approach, we could load in and store the model, texture, and transform data once for each tree. This would make our data storage look like Figure 3.4, with each tree connected to its own plot of memory, holding its copy of the data needed for rendering:

Figure 3.4 – Diagram showing the data associated with each tree

Figure 3.4 – Diagram showing the data associated with each tree

If we consider the...

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