Unity C# Scripting (MonoBehaviour)

SkillAI & models

This skill lets your AI write C# gameplay scripts for Unity 6.3 LTS. Once added, your AI can create or edit .cs files in a Unity project that follow Unity's rules for how game code runs. It handles the correct script structure, actions that unfold over time, and values you can adjust in the Unity editor.

Available today. Use it from your connected AI after setup.

Add the skill, then ask your AI to create or edit a .cs script in your Unity project. Mentioning MonoBehaviour or describing the gameplay you want is enough to get started.

Then ask your AI: use the Unity C# Scripting (MonoBehaviour) skill

What your AI can do with it

  • Write new C# gameplay scripts for Unity 6.3 LTS
  • Set up scripts so code runs at the right time, using methods like Awake, Start, Update, and FixedUpdate
  • Access GameObjects and their components from code
  • Create coroutines for actions that happen over time or after a delay
  • Serialize values so they can be adjusted in the Unity Inspector
  • Edit existing .cs scripts in a Unity project

What this skill tells your AI

The instructions your AI receives, as published by gamedev-skills/awesome-gamedev-agent-skills in skills/unity/unity-csharp-scripting/SKILL.md and read by ahel’s review.

Write correct, idiomatic gameplay scripts in Unity 6. Get the lifecycle, component access, serialization, and coroutines right so behaviour is deterministic and the Inspector stays useful. Targets Unity 6.3 LTS (6000.3), C# / .NET Standard 2.1.

When to use

  • Use when authoring or fixing a MonoBehaviour: choosing the right lifecycle callback, reading/caching components, exposing fields to the Inspector, or running timed logic with coroutines.
  • Use when the project has *.cs files, an Assembly-CSharp or *.asmdef, and a ProjectSettings/ folder.

When not to use: moving rigidbodies / collision response → unity-physics; reading player input → unity-input-system; shared data assets / config → unity-scriptableobjects; Animator parameters → unity-animation. This skill owns the script lifecycle and C# plumbing, not those subsystems.

Core workflow

  1. Pick the callback by purpose, not habit. Awake (cache references, runs once on load), OnEnable (subscribe to events), Start (init that depends on other objects' Awake), Update (per-frame logic/input polling), FixedUpdate (physics), LateUpdate (camera follow after movement), OnDisable/OnDestroy (unsubscribe/cleanup).
  2. Cache component lookups in Awake — never call GetComponent every frame.
  3. Expose tunables with [SerializeField] private, not public fields, so other code can't mutate them but designers can edit them in the Inspector.
  4. Scale per-frame values by Time.deltaTime in Update (and Time.fixedDeltaTime semantics are automatic in FixedUpdate).
  5. Use coroutines for time-sequenced logic (delays, tweens, "do X then wait then Y"); start them with StartCoroutine and stop them deterministically.
  6. Verify in Play mode: check the Console for null-reference exceptions, confirm values in the Inspector update as expected, and watch the Profiler if Update is hot.

Patterns

1. Lifecycle + cached components (the canonical skeleton)

using UnityEngine;

[RequireComponent(typeof(Rigidbody))]      // auto-adds the dependency, prevents null refs
public class PlayerController : MonoBehaviour
{
    [SerializeField] private float moveSpeed = 6f;   // editable in Inspector, private in code
    private Rigidbody _rb;                            // cached, not fetched per frame

    private void Awake() => _rb = GetComponent<Rigidbody>();  // cache once on load

    private void Update()
    {
        // Per-frame, non-physics work. Scale by deltaTime so it is frame-rate independent.
        transform.Rotate(0f, 90f * Time.deltaTime, 0f);
    }

    private void FixedUpdate()
    {
        // Physics work belongs here (fixed timestep). See the unity-physics skill.
        _rb.MovePosition(_rb.position + transform.forward * moveSpeed * Time.fixedDeltaTime);
    }
}

2. Safe component access with TryGetComponent

// Avoids allocating a null and is clearer than GetComponent + null check.
if (other.TryGetComponent<Health>(out var health))
    health.Apply(-10);

3. Serialization that shows up correctly in the Inspector

[SerializeField, Range(0f, 1f)] private float volume = 0.8f;  // slider
[SerializeField] private string playerName = "Hero";          // private but serialized

[System.Serializable]                 // REQUIRED for a plain class to serialize/show
public class Stats { public int hp = 100; public int mana = 50; }

[SerializeField] private Stats stats = new();  // nested struct-like data in the Inspector

4. Coroutines for time-sequenced logic

private void Start() => StartCoroutine(FlashThenHide());

private System.Collections.IEnumerator FlashThenHide()
{
    yield return new WaitForSeconds(0.5f);   // wait half a second of game time
    GetComponent<Renderer>().enabled = false;
    yield return null;                       // resume next frame
}

Pitfalls

  • GetComponent in Update — it searches every frame and tanks performance. Cache the reference in Awake/Start.
  • Physics in Update — moving a Rigidbody with forces or MovePosition outside FixedUpdate causes jitter and timestep-dependent behaviour. Read input in Update, apply physics in FixedUpdate.
  • Relying on Start order across objectsStart runs after all Awakes, but order among Starts is undefined. Do cross-object wiring in Start, self-setup in Awake.
  • public fields just to show them in the Inspector — that also lets any script mutate them. Use [SerializeField] private instead.
  • gameObject.tag == "Enemy" allocates a string and is slower; use gameObject.CompareTag("Enemy").
  • Coroutines stop when the GameObject is disabled — a disabled object's coroutines are killed; re-StartCoroutine in OnEnable if it must survive toggling.
  • Update never runs before Start, but the first Update can run on the same frame as Start — guard against not-yet-initialised fields if you split setup oddly.

References

  • For the full event-execution-order table and advanced coroutine patterns (custom CustomYieldInstruction, stopping by handle, WaitUntil/WaitWhile), read references/lifecycle-and-coroutines.md.
  • Primary docs: Unity Manual "Event function execution order" (https://docs.unity3d.com/Manual/execution-order.html) and ScriptReference/MonoBehaviour.

Related skills

  • unity-physicsRigidbody, collisions, and FixedUpdate motion.
  • unity-input-system — reading player input into these scripts.
  • unity-scriptableobjects — sharing data/config between scripts without singletons.

Signals

GitHub stars
967
Forks
76
Last commit
Sep 2026
Advanced
Catalog kind
skill
Gateway key
unity-csharp-scripting
Source
github.com/gamedev-skills/awesome-gamedev-agent-skills