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Unreal cpp gameplay

Skill gamedev-skills/awesome-gamedev-agent-skills/skills/unreal/unreal-cpp-gameplay

Game-development Agent Skills for AI coding agents: install once and a master router loads the right skill for your engine and task. 66 original, version-pinned skills (plus a master router) in the portable SKILL.md format that runs across Claude Code, Cursor, Codex, Copilot, Gemini CLI and more, for Godot, Unity, Unreal, web and beyond.

Install
npx -y skills add gamedev-skills/awesome-gamedev-agent-skills --skill unreal-cpp-gameplay

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What its author says it does

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Write Unreal Engine 5 C++ gameplay code: the UCLASS/UPROPERTY/UFUNCTION reflection macros, the Gameplay Framework (GameMode, Pawn, Character, PlayerController, Actor components), and the module Build.cs. Use when writing or debugging UE C++, deriving from AActor/ACharacter/ AGameModeBase, exposing properties to the editor or Blueprints, or when the user mentions Unreal C++, UCLASS, GENERATED_BODY, GameMode, ACharacter, or .Build.cs.

The file declares its own license as Apache-2.0. That is the author’s claim about this one file, and it is not the same thing as the license GitHub reports for the repository, which is listed with the other numbers below.

SKILL.md

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Unreal C++ Gameplay

Write correct UE5 gameplay C++: the reflection macros that connect C++ to the editor and Blueprints, the Gameplay Framework class roles, and module dependencies. Targets UE 5.4+.

When to use

  • Use when creating C++ gameplay classes (AActor, APawn, ACharacter, AGameModeBase, UActorComponent), exposing properties/functions with UPROPERTY/UFUNCTION, setting up a GameMode's default classes, or adding a module dependency in *.Build.cs.
  • Use when the project has a Source/ tree with *.h/*.cpp using UCLASS, and *.Build.cs.

When not to use: designer-facing visual logic → unreal-blueprints. Player input binding details → unreal-enhanced-input. AI logic → unreal-behavior-trees. This skill owns the C++ class/reflection foundation those build on.

Core workflow

  1. Name with the right prefix. A = Actor-derived, U = UObject/component-derived, F = plain struct, E = enum, I = interface. The prefix must match the base class.
  2. Declare the class with reflection macros. UCLASS() above the class, GENERATED_BODY() as the first line in the body, and #include "ClassName.generated.h" as the last include in the header.
  3. Expose data with UPROPERTY (editor/Blueprint visibility and garbage-collection tracking) and behaviour with UFUNCTION (BlueprintCallable, etc.).
  4. Create components in the constructor with CreateDefaultSubobject<T>(TEXT("Name")) and set the RootComponent.
  5. Know the framework roles: AGameModeBase sets the rules + default classes; APawn/ ACharacter is the controllable body; APlayerController is the player's will; UActorComponent is reusable behaviour.
  6. Add module dependencies to *.Build.cs (e.g. EnhancedInput) or unresolved-symbol link errors follow.
  7. Verify by compiling (Live Coding Ctrl+Alt+F11 for function bodies; full rebuild for header/UPROPERTY changes) and checking the class/properties appear in the editor.

Patterns

1. Minimal Actor class (header + source)

// Pickup.h
#pragma once
#include "CoreMinimal.h"
#include "GameFramework/Actor.h"
#include "Pickup.generated.h"          // MUST be the last include

UCLASS()
class MYGAME_API APickup : public AActor   // MYGAME_API = your module's export macro
{
    GENERATED_BODY()
public:
    APickup();

    // EditAnywhere = tweak per-instance & on the CDO; BlueprintReadWrite = BP get/set.
    UPROPERTY(EditAnywhere, BlueprintReadWrite, Category = "Pickup")
    int32 ScoreValue = 10;

    // UPROPERTY on a UObject* pointer is what keeps it from being garbage-collected.
    UPROPERTY(VisibleAnywhere)
    TObjectPtr<UStaticMeshComponent> Mesh;   // UE5: TObjectPtr instead of raw UStaticMeshComponent*

    UFUNCTION(BlueprintCallable, Category = "Pickup")
    void Collect();

protected:
    virtual void BeginPlay() override;
};
// Pickup.cpp
#include "Pickup.h"
#include "Components/StaticMeshComponent.h"

APickup::APickup()
{
    Mesh = CreateDefaultSubobject<UStaticMeshComponent>(TEXT("Mesh"));
    RootComponent = Mesh;                     // the mesh is this actor's root
}

void APickup::BeginPlay() { Super::BeginPlay(); }   // always call Super
void APickup::Collect()   { Destroy(); }

2. GameMode wiring its default classes

// MyGameMode.cpp — set in the constructor so the engine spawns your classes.
AMyGameMode::AMyGameMode()
{
    DefaultPawnClass      = AMyCharacter::StaticClass();
    PlayerControllerClass = AMyPlayerController::StaticClass();
}

3. Module dependency in Build.cs

// MyGame.Build.cs
PublicDependencyModuleNames.AddRange(new string[]
{
    "Core", "CoreUObject", "Engine", "InputCore", "EnhancedInput"
});

Pitfalls

  • generated.h not last / missing — compile errors like "Cannot find generated header" or "Expected an include". It must be the final include in the header.
  • Forgetting GENERATED_BODY() — UHT (Unreal Header Tool) errors; it must be the first thing inside the class body.
  • Raw UObject* without UPROPERTY — the garbage collector doesn't see it and may destroy it out from under you. Track every UObject pointer with UPROPERTY (use TObjectPtr in UE5).
  • Header/UPROPERTY edits with Live Coding — Live Coding handles function bodies, but changes to UCLASS/UPROPERTY/headers need a full editor restart + rebuild.
  • Wrong class prefix — naming an Actor UFoo (or a component AFoo) breaks UHT; match the prefix to the base type.
  • Unresolved external symbol at link — the module providing the API isn't in Build.cs PublicDependencyModuleNames.
  • Not calling Super:: in overridden BeginPlay/Tick/etc. skips engine setup.

References

  • For UActorComponent creation/attachment, the UPROPERTY garbage-collection ownership rules (TObjectPtr, TArray<TObjectPtr<>>, AddToRoot), and a replication primer, read references/components-and-gc.md.
  • Primary docs: "Unreal Engine CPP Quick Start" and "Gameplay Framework" (https://dev.epicgames.com/documentation/en-us/unreal-engine/gameplay-framework-in-unreal-engine).

Related skills

  • unreal-blueprints — exposing C++ to designers; BP/C++ interop.
  • unreal-enhanced-input — binding input in a C++ Pawn/Character.
  • unreal-behavior-trees — C++ AI tasks driven from a behaviour tree.

What ships with it: 1 file

3.9 KB alongside SKILL.md

references/

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