add camera rig, click-to-move locomotion, and click interaction

Camera: Cinemachine-based rig with an anchor, a state director, point-of-
interest framing, pan input, and dialogue framing volumes.

Player: click-to-move over the NavMesh, a pointer input layer, and a motion
arbiter that reconciles direct stick input with navigation-driven movement.
The pure math is isolated in NightclubArcadia.Locomotion.Math with an EditMode
suite, so the arbitration rules are testable without a scene.

Interaction: IClickInteractable plus a bridge that routes pointer clicks to it.

Supporting project settings: adds the Cinemachine package, the Interactable and
Ground tags the raycasts depend on, and NavMesh agent dimensions matched to the
player capsule (radius 0.3, height 1.8, climb 0.25).

Co-Authored-By: Claude Opus 5 <[email protected]>
This commit is contained in:
2026-08-25 19:03:18 +02:00
co-authored by Claude Opus 5
parent 1ef1720bae
commit 932cd0582f
43 changed files with 1625 additions and 8 deletions
@@ -0,0 +1,85 @@
using Unity.Cinemachine;
using UnityEngine;
namespace NightclubArcadia.Cinematics
{
/// <summary>
/// Proxy transform the follow camera tracks. Combines player follow,
/// POI bias, manual pan offset, and distance bias.
/// </summary>
public sealed class CameraRigAnchor : MonoBehaviour
{
[SerializeField] Transform followTarget;
[SerializeField] CinemachinePositionComposer composer;
[SerializeField] float followSmoothTime = 0.12f;
[SerializeField] float distanceSmoothTime = 0.8f;
float defaultCameraDistance = 10f;
float distanceVelocity;
Vector3 followVelocity;
public Vector3 PoiBias { get; set; }
public Vector3 ManualPanOffset { get; set; }
public float DistanceBias { get; set; }
public Transform FollowTarget => followTarget;
void Start()
{
if (composer == null)
{
composer = FindFirstObjectByType<CinemachinePositionComposer>();
}
if (composer != null)
{
defaultCameraDistance = composer.CameraDistance;
}
}
void LateUpdate()
{
if (followTarget == null)
{
return;
}
var targetPosition = followTarget.position + PoiBias + ManualPanOffset;
transform.position = Vector3.SmoothDamp(
transform.position,
targetPosition,
ref followVelocity,
followSmoothTime);
if (composer != null)
{
var targetDistance = defaultCameraDistance + DistanceBias;
composer.CameraDistance = Mathf.SmoothDamp(
composer.CameraDistance,
targetDistance,
ref distanceVelocity,
distanceSmoothTime);
}
}
public void Nudge(Vector3 worldDelta)
{
ManualPanOffset += worldDelta;
}
public void ClampManualPan(float maxDistance)
{
if (followTarget == null)
{
return;
}
var offset = ManualPanOffset;
offset.y = 0f;
if (offset.magnitude > maxDistance)
{
ManualPanOffset = offset.normalized * maxDistance;
}
}
}
}