gamedev-skills/awesome-gamedev-agent-skills

fps-shooter

Build a first-person shooter: move+mouse-look controller, hitscan or projectile shooting, weapons, health, and enemy AI.

Quelltext ansehen
Originales Skill-Dokument

Aus dem Quell-Repository gerendert; Überschriften, Beispiele, Code, Tabellen, Links und Bilder bleiben erhalten.

FPS Shooter

A playbook for first-person shooters — the look/move controller, the shooting model, weapon feel, and combat. This is a compositional skill: it wires a 3D controller, input, and AI into a shooter. It does not re-teach 3D nodes or raycasts; it defines the shooting model and the feel knobs (TTK, recoil, spread) that decide whether the guns feel good.

When to use

  • Use when building a first-person game whose core verb is aim and shoot — arena shooter,

tactical FPS, PvE shooter, boomer-shooter.

  • Use when deciding hitscan vs. projectile, tuning time-to-kill, recoil, spread, or aim feel.

When not to use:* third-person/2D shooting → reuse the shooting model here but build the camera/controller from the relevant genre. Wave survival with towers → tower-defense. For the camera/character body itself, use godot-3d-essentials / unreal-cpp-gameplay.

Core loop

Scan → acquire a target → aim and fire → confirm the kill (feedback) → reposition / reload / advance. The whole experience rests on the aim-and-fire micro-loop feeling crisp: responsive look, clear hit feedback, and a death that reads instantly.

Must-have systems

  1. First-person controller — move (WASD/stick) + mouse/stick look, gravity, jump/crouch.
  2. Camera — eye-height view, configurable FOV and sensitivity, recoil kick.
  3. Shooting model — hitscan raycast and/or projectile spawn; one impact path for feedback.
  4. Weapons + ammo — damage, fire rate, magazine, reload, switching.
  5. Health + damage — HP, hit/headshot multipliers, death; player and enemy share the model.
  6. Enemy AI — perceive → alert → attack → search; cover and reaction delays (game-ai).
  7. Feedback — hitmarkers, impact decals/particles, hit sounds, screen shake, kill confirms.
  8. Objectives — what you do besides shoot: clear, capture, survive, escort.

Design knobs

KnobEffectSane default
Time-to-kill (TTK)lethality, forgivenessTune dmg × fire-rate × HP together (refs).
Hitscan vs projectileaim skill typeHitscan = flick; projectile = lead/dodge.
Damage falloffrange limitingFull to ~20 m, floor by ~60 m.
Headshot multiplierskill reward~1.5–2.0×.
Recoil patternlearnable kickFixed pattern > pure random.
Spread (bloom)suppress laser-accuracyFirst shot accurate; grows while firing.
Fire rate / magazine / reloadrhythm, downtimeReload = vulnerability window.
Mouse sensitivity / FOVcomfort, readabilityAlways expose both as options.
Aim assist (pad)controller parityMagnetism/slowdown near targets.

Patterns

1. Hitscan shot (instant ray, the workhorse)

python
# Pseudocode. Cast from the camera; first hit takes damage scaled by range + headshot.
direction = apply_spread(camera.forward, current_spread)
hit = raycast(camera.world_position, direction, max_dist=RANGE, mask=SHOOTABLE)
if hit:
    dmg = base_damage * falloff(hit.distance)
    if hit.is_head: dmg *= HEADSHOT_MULT
    hit.actor.take_damage(dmg)
    spawn_impact_fx(hit.point, hit.normal)        # decal + sound + hitmarker

2. Projectile shot (dodgeable, leads the target)

python
# Pseudocode. Spawn a moving body; it deals damage on its own collision.
p = spawn(projectile_scene, at=muzzle.world_position)
p.velocity = camera.forward * PROJECTILE_SPEED
p.on_hit   = lambda other, point: (other.take_damage(base_damage), explode_fx(point))
p.lifetime = RANGE / PROJECTILE_SPEED             # despawn so shots don't live forever

3. Time-to-kill (balance the trio together)

python
# Pseudocode. TTK falls out of HP, per-shot damage, and fire rate — tune as one system.
shots_to_kill = ceil(target_hp / damage_per_shot)
ttk_seconds   = (shots_to_kill - 1) / fire_rate_per_second   # first shot at t=0

Pitfalls / failure modes

  • Look tied to frame rate or unscaled by `dt` → sensitivity changes with FPS. Look should

be driven by raw mouse delta; movement integration uses dt (see physics-tuning).

  • Pure random recoil/spread → feels uncontrollable and unfair. Use a learnable recoil

pattern; keep the first shot accurate.

  • Hitscan with no falloff → pistols snipe across the map. Add range-based damage falloff.
  • No hit feedback → players can't tell if shots land. Always show hitmarkers, impact FX, and

a distinct kill confirm.

  • Mismatched TTK → too low feels twitchy/unfair; too high feels spongy. Tune damage,

fire rate, and HP as one system (Pattern 3).

  • Trusting the client in multiplayer → cheating and "I shot first" disputes. Keep authority

server-side; use lag compensation (refs) and defer netcode to the engine multiplayer skill.

  • No FOV / sensitivity options → motion sickness and accessibility failures. Always expose them.

Composition (build it from these skills)

  • Controller + camera: godot-3d-essentials (Godot) or unreal-cpp-gameplay / unreal-blueprints; Unity uses unity-physics + a character controller.
  • Input: input-systems (or unreal-enhanced-input) for look/move, rebinding, and gamepad aim assist.
  • Shooting physics: godot-physics / unity-physics for raycasts and projectile collision.
  • Enemies: game-ai with unity-navmesh / unreal-behavior-trees / Godot navigation.
  • Camera & feel: camera-systems for FOV/recoil kick and look smoothing; game-feel for hit-stop, screen shake, and impact juice.
  • Polish: audio-design for weapon/impact sound; shader-programming for muzzle/impact VFX.
  • Process: prototype-fast to validate aim feel before building content.

References

  • For hitscan vs. projectile trade-offs, damage falloff, recoil/spread, TTK math, hit

registration/lag compensation, and enemy AI states, read references/shooting-and-feel.md.

aus demselben Repository

Weitere Skills

Alle Skills
gamedev-skills
Community

game-feel

Add "juice" and game feel that makes actions satisfying — screen shake, hit-stop/freeze frames, tweened/eased motion, squash & stretch, knockback, and layered audio-visual feedback — as engine-neutral techniques that pair with the detected engine's tween, particle, and camera APIs. Use when the user mentions game feel, juice, "make it feel good/punchy", screen shake, hit stop, screen freeze, easing, squash and stretch, impact frames, or feedback/polish on hits, jumps, pickups, and deaths.

Installationen
5
GitHub Stars
1113
Aktualisiert
10. Sept.
gamedev-skills
Community

game-ui-ux

Design and build game UI/UX — HUDs, menus, and overlays — that survive every screen: anchor- based responsive layout, resolution/aspect scaling and safe areas, keyboard/gamepad focus navigation, a screen/menu state stack, and event-driven (not polled) HUD updates. Engine- neutral patterns that pair with the detected engine's UI skill. Use when the user mentions HUD, health bar, main menu, pause menu, settings screen, UI layout, anchors, UI scaling, aspect ratio, safe area, controller/keyboard menu navigation, or wiring UI to game state.

Installationen
5
GitHub Stars
1113
Aktualisiert
10. Sept.
gamedev-skills
Community

godot-3d-essentials

Set up a Godot 4.7 3D scene: Node3D transforms, Camera3D, lighting (DirectionalLight3D/OmniLight3D), WorldEnvironment for sky/ambient/tonemap/post, MeshInstance3D materials, and GridMap for tile-based 3D levels. Use when building a 3D scene in a Godot project, placing cameras/lights, configuring environment and post-processing, or working with Node3D/.tscn 3D content and GridMap.

Installationen
2
GitHub Stars
1103
Aktualisiert
10. Sept.
gamedev-skills
Community

godot-animation

Animate in Godot 4.7 three ways: AnimationPlayer for keyframed clips (incl. call and signal tracks), AnimationTree with state machines and blend spaces for character animation, and Tween for short procedural/UI tweens via createtween(). Use when working with AnimationPlayer/AnimationTree nodes in a .tscn, blending character states, sprite-sheet animation, or code-driven Tweens.

Installationen
2
GitHub Stars
1103
Aktualisiert
10. Sept.