using rapier KinematicCharacterController

This commit is contained in:
azykov@mail.ru 2026-06-04 13:52:36 +03:00
parent 8ca8f894e4
commit 8ef089c833
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1 changed files with 72 additions and 53 deletions

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@ -6,14 +6,18 @@ import { useEffect, useRef } from "react";
import { Euler, Quaternion, Vector3 } from "three";
import { useFrame, useThree } from "@react-three/fiber";
import { useKeyboardControls } from "@react-three/drei";
import type { RapierRigidBody } from "@react-three/rapier";
import { CuboidCollider, useRapier, useBeforePhysicsStep, type RapierRigidBody, type RapierCollider, type RapierContext } from "@react-three/rapier";
const SPEED = 5;
const JUMP_SPEED = 8;
const GRAVITY = 20;
const SENSITIVITY = 0.002;
// Shoulder offset in character-local space: right, up, behind
const SHOULDER_OFFSET = new Vector3(0.1, 1.5, 2.5);
// recreate private types
type RapierWorldCreateCharacterControllerFunction = ReturnType<typeof useRapier>['world']['createCharacterController'];
type KinematicCharacterController = ReturnType<RapierWorldCreateCharacterControllerFunction>;
const _q = new Quaternion();
const _e = new Euler(0, 0, 0, 'YXZ');
const _offset = new Vector3();
@ -28,19 +32,32 @@ type CharacterViewProps = {
export const CharacterView = observer(function ({ character, editMode }: CharacterViewProps) {
const pos = character.transform.position;
const rbRef = useRef<RapierRigidBody>(null);
const colliderRef = useRef<RapierCollider>(null);
const [, get] = useKeyboardControls();
const { gl } = useThree();
const groundContacts = useRef(0);
const { world } = useRapier();
const yawRef = useRef(0);
const pitchRef = useRef(0);
const mouseRef = useRef({ x: 0, y: 0 });
const jumpPressedRef = useRef(false);
const vyRef = useRef(0);
const controllerRef = useRef<KinematicCharacterController | null>(null);
useEffect(() => {
if (editMode)
return;
const controller = world.createCharacterController(0.01);
controller.setUp({ x: 0, y: 1, z: 0 });
controller.setMaxSlopeClimbAngle(45 * Math.PI / 180);
controller.setMinSlopeSlideAngle(30 * Math.PI / 180);
controller.enableAutostep(0.5, 0.2, true);
controller.enableSnapToGround(0.5);
controller.setApplyImpulsesToDynamicBodies(true);
controllerRef.current = controller;
return () => { world.removeCharacterController(controller); };
}, [world]);
useEffect(() => {
if (editMode) return;
const canvas = gl.domElement;
const onClick = () => canvas.requestPointerLock();
const onMouseMove = (e: MouseEvent) => {
@ -56,72 +73,74 @@ export const CharacterView = observer(function ({ character, editMode }: Charact
};
}, [gl, editMode]);
useFrame(({ camera }) => {
if (editMode)
return;
useBeforePhysicsStep((world) => {
if (editMode) return;
const rb = rbRef.current;
const collider = colliderRef.current;
const controller = controllerRef.current;
if (!rb || !collider || !controller) return;
if (state.game?.isPaused) return;
if (!rbRef.current)
return;
const dt = world.timestep;
const yaw = yawRef.current;
const { forward, backward, left, right, jump } = get();
const fwdX = -Math.sin(yaw);
const fwdZ = -Math.cos(yaw);
const fwdScale = (forward ? 1 : 0) - (backward ? 1 : 0);
const rightScale = (right ? 1 : 0) - (left ? 1 : 0);
const vx = (fwdX * fwdScale - fwdZ * rightScale) * SPEED;
const vz = (fwdZ * fwdScale + fwdX * rightScale) * SPEED;
const isGrounded = controller.computedGrounded();
if (jump && !jumpPressedRef.current && isGrounded) {
vyRef.current = JUMP_SPEED;
} else if (!isGrounded) {
vyRef.current -= GRAVITY * dt;
} else {
vyRef.current = 0;
}
jumpPressedRef.current = jump;
controller.computeColliderMovement(collider, { x: vx * dt, y: vyRef.current * dt, z: vz * dt });
const corrected = controller.computedMovement();
const t = rb.translation();
rb.setNextKinematicTranslation({
x: t.x + corrected.x,
y: t.y + corrected.y,
z: t.z + corrected.z,
});
_q.setFromEuler(_e.set(0, yaw, 0));
rb.setNextKinematicRotation({ x: _q.x, y: _q.y, z: _q.z, w: _q.w });
});
useFrame(({ camera }) => {
if (editMode) return;
const rb = rbRef.current;
if (!rb) return;
yawRef.current -= mouseRef.current.x * SENSITIVITY;
pitchRef.current = Math.max(-0.4, Math.min(0.6, pitchRef.current - mouseRef.current.y * SENSITIVITY));
mouseRef.current.x = 0;
mouseRef.current.y = 0;
const yaw = yawRef.current;
// Rotate character body on Y axis only
_q.setFromEuler(_e.set(0, yaw, 0));
rbRef.current.setRotation({ x: _q.x, y: _q.y, z: _q.z, w: _q.w }, true);
// Pin camera to shoulder offset, rotated by yaw + pitch
const t = rbRef.current.translation();
const t = rb.translation();
_charPos.set(t.x, t.y, t.z);
_offset.copy(SHOULDER_OFFSET).applyEuler(_e.set(pitchRef.current, yaw, 0, 'YXZ'));
_offset.copy(SHOULDER_OFFSET).applyEuler(_e.set(pitchRef.current, yawRef.current, 0, 'YXZ'));
camera.position.copy(_charPos).add(_offset);
_lookAt.set(t.x, t.y + 1, t.z);
camera.lookAt(_lookAt);
// Movement relative to character facing direction
if (!state.game?.isPaused && !editMode) {
const { forward, backward, left, right, jump } = get();
const fwdX = -Math.sin(yaw);
const fwdZ = -Math.cos(yaw);
const fwdScale = (forward ? 1 : 0) - (backward ? 1 : 0);
const rightScale = (right ? 1 : 0) - (left ? 1 : 0);
// right vector = cross(fwd, up) = (-fwdZ, 0, fwdX)
const vx = (fwdX * fwdScale - fwdZ * rightScale) * SPEED;
const vz = (fwdZ * fwdScale + fwdX * rightScale) * SPEED;
const cur = rbRef.current.linvel();
const isGrounded = groundContacts.current > 0;
const vy = cur.y +
(jump && !jumpPressedRef.current && isGrounded
? JUMP_SPEED
: 0);
jumpPressedRef.current = jump;
rbRef.current.setLinvel({ x: vx, y: vy, z: vz }, true);
}
});
return (
<SyncRigidBody
ref={rbRef}
colliders="cuboid"
lockRotations
type="kinematicPosition"
colliders={false}
position={[pos[0] + 0.5, pos[1] + 0.5, pos[2] + 0.5]}
onCollisionEnter={() => { groundContacts.current++; }}
onCollisionExit={() => { groundContacts.current--; }}
onSync={(data) => {
// state.game?.setCharacterTransform(
// { position: data.position, look: character.transform.look },
// data.linearVelocity,
// undefined,
// );
}}
onSync={() => { }}
>
<CuboidCollider ref={colliderRef} args={[0.55, 0.4, 0.55]} />
<group>
<mesh rotation={[-Math.PI / 2, -Math.PI / 4, 0]}>
<coneGeometry args={[0.55, 0.8, 4]} />