Physics tuning
Most "bad physics" is not a bug in the engine — it's a mismatch between the
fixed-timestep simulation and the variable-rate render loop, or untuned
mass/drag/CCD/layer settings. This skill covers the engine-neutral knobs that
make physics stable and responsive; pair it with godot-physics or
unity-physics for the concrete APIs.
When to use
- Use when motion jitters, objects pass through walls (tunneling), stacks explode, or movement feels floaty/sticky/laggy.
- Use to decide what goes in the fixed (physics) step vs the render frame, and how to interpolate between them.
- Use to tune gravity, mass, drag, restitution, solver iterations, sleeping, and collision layers/masks.
When not to use: for an engine's exact physics nodes/components and
collision callbacks, use godot-physics or unity-physics. For movement
decisions (when to jump, AI steering) use input-systems and game-ai. For
platformer jump-feel specifics like coyote time/jump buffering, that's input/
controller territory — see input-systems and the platformer genre.
Core workflow
- Run physics on a fixed timestep. Simulate at a constant rate (e.g. 50–60
Hz). A fixed
dtmakes the simulation deterministic-ish and stable; a variabledtmakes integration and collisions inconsistent. - Put physics work in the physics callback, not the render frame. Apply
forces/velocities and read collisions in the fixed step (
FixedUpdate/_physics_process), using that step'sdt. - Interpolate rendering between physics ticks. The render frame rate ≠ the physics rate, so smoothly interpolate transforms toward the latest physics state, or enable the engine's Rigidbody interpolation, to remove visible stutter.
- Tune the body, not the scene. Set mass for relative weight, drag for damping, gravity scale per object, and restitution/friction via materials.
- Stop tunneling with CCD on small/fast bodies; cap maximum velocity.
- Stabilize stacks/joints with more solver iterations, sane mass ratios, and sleeping for resting bodies.
- Verify by feel and stress test. Play at low and high frame rates; throw fast objects at thin walls; stack and shove bodies. Report what you observed.
Patterns
1. Fixed timestep for simulation, render interpolation for smoothness
Most engines offer this for you (Godot physics_interpolation/Rigidbody
interpolate; Unity Rigidbody.interpolation = Interpolate). Prefer the built-in
before hand-rolling.
2. Stop tunneling: CCD + a speed cap
3. Body tuning: mass, drag, gravity scale, material
4. Collision layers and masks (who collides with whom)
Pitfalls
- Applying forces/movement in the render frame (
Update/_process) makes behavior frame-rate dependent — faster PCs run faster, and collisions get flaky. Do simulation in the fixed step. - Visible jitter even with a fixed step usually means no render interpolation: the physics rate and display rate beat against each other. Enable interpolation.
- Tunneling through thin walls: discrete collision misses fast movers. Enable CCD, cap speed, thicken walls, or raise the physics rate.
- Expecting heavier objects to fall faster. Gravity is acceleration; mass
affects collision response, not fall speed. Use
gravity_scale/drag for feel. - Exploding stacks / jittery joints: mass ratios too extreme, or too few solver iterations. Keep mass ratios modest and raise iteration counts.
- Bodies that never rest burn CPU and twitch. Enable sleeping and a sensible sleep threshold for resting objects.
- One-directional layer setup: A's mask includes B but B's mask excludes A. Detection/collision can need both sides; verify the full matrix.
- Huge
dtspikes (load hitches, breakpoints) blow up integration. Clamp the max physics step / substep count so a stall doesn't launch everything.
References
references/timestep-and-ccd.md— the fixed-timestep accumulator loop, interpolation math, substepping, CCD modes, solver/iteration tuning, sleeping, and a stability checklist.
Related skills
godot-physics,unity-physics— concrete bodies, colliders, and callbacks.input-systems— responsive controls, jump buffering, coyote time.game-ai— agent movement that must agree with the physics step.platformer,fps-shooter— genres whose feel depends on this tuning.
