160 lines
4.8 KiB
C#
160 lines
4.8 KiB
C#
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using System.Collections;
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using System.Collections.Generic;
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using UnityEngine;
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using UnityEngine.U2D;
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using ExtrasClipperLib;
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#if UNITY_EDITOR
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using UnityEditor;
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#endif
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public enum ColliderCornerType
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{
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Square,
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Round,
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Sharp
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}
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[ExecuteAlways]
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public class LegacyCollider : MonoBehaviour
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{
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[SerializeField]
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ColliderCornerType m_ColliderCornerType = ColliderCornerType.Square;
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[SerializeField]
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float m_ColliderOffset = 1.0f;
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[SerializeField]
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bool m_UpdateCollider = false;
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const float s_ClipperScale = 100000.0f;
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int m_HashCode = 0;
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// Start is called before the first frame update
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void Start()
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{
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}
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// Update is called once per frame
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void Update()
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{
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if (m_UpdateCollider)
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Bake(gameObject, false);
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}
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static void SampleCurve(float colliderDetail, Vector3 startPoint, Vector3 startTangent, Vector3 endPoint, Vector3 endTangent, ref List<IntPoint> path)
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{
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if (startTangent.sqrMagnitude > 0f || endTangent.sqrMagnitude > 0f)
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{
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for (int j = 0; j <= colliderDetail; ++j)
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{
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float t = j / (float)colliderDetail;
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Vector3 newPoint = BezierUtility.BezierPoint(startPoint, startTangent + startPoint, endTangent + endPoint, endPoint, t) * s_ClipperScale;
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path.Add(new IntPoint((System.Int64)newPoint.x, (System.Int64)newPoint.y));
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}
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}
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else
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{
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Vector3 newPoint = startPoint * s_ClipperScale;
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path.Add(new IntPoint((System.Int64)newPoint.x, (System.Int64)newPoint.y));
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newPoint = endPoint * s_ClipperScale;
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path.Add(new IntPoint((System.Int64)newPoint.x, (System.Int64)newPoint.y));
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}
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}
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public static void Bake(GameObject go, bool forced)
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{
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var sc = go.GetComponent<SpriteShapeController>();
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var lc = go.GetComponent<LegacyCollider>();
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if (sc != null)
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{
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List<IntPoint> path = new List<IntPoint>();
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int splinePointCount = sc.spline.GetPointCount();
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int pathPointCount = splinePointCount;
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ColliderCornerType cct = ColliderCornerType.Square;
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float co = 1.0f;
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if (lc != null)
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{
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int hashCode = sc.spline.GetHashCode() + lc.m_ColliderCornerType.GetHashCode() + lc.m_ColliderOffset.GetHashCode();
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if (lc.m_HashCode == hashCode && !forced)
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return;
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lc.m_HashCode = hashCode;
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cct = lc.m_ColliderCornerType;
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co = lc.m_ColliderOffset;
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}
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if (sc.spline.isOpenEnded)
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pathPointCount--;
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for (int i = 0; i < pathPointCount; ++i)
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{
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int nextIndex = SplineUtility.NextIndex(i, splinePointCount);
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SampleCurve(sc.colliderDetail, sc.spline.GetPosition(i), sc.spline.GetRightTangent(i), sc.spline.GetPosition(nextIndex), sc.spline.GetLeftTangent(nextIndex), ref path);
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}
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if (co != 0f)
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{
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List<List<IntPoint>> solution = new List<List<IntPoint>>();
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ClipperOffset clipOffset = new ClipperOffset();
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EndType endType = EndType.etClosedPolygon;
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if (sc.spline.isOpenEnded)
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{
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endType = EndType.etOpenSquare;
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if (cct == ColliderCornerType.Round)
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endType = EndType.etOpenRound;
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}
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clipOffset.ArcTolerance = 200f / sc.colliderDetail;
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clipOffset.AddPath(path, (ExtrasClipperLib.JoinType)cct, endType);
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clipOffset.Execute(ref solution, s_ClipperScale * co);
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if (solution.Count > 0)
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path = solution[0];
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}
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List<Vector2> pathPoints = new List<Vector2>(path.Count);
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for (int i = 0; i < path.Count; ++i)
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{
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IntPoint ip = path[i];
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pathPoints.Add(new Vector2(ip.X / s_ClipperScale, ip.Y / s_ClipperScale));
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}
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var pc = go.GetComponent<PolygonCollider2D>();
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if (pc)
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{
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pc.pathCount = 0;
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pc.SetPath(0, pathPoints.ToArray());
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}
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var ec = go.GetComponent<EdgeCollider2D>();
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if (ec)
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{
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if (co > 0f || co < 0f && !sc.spline.isOpenEnded)
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pathPoints.Add(pathPoints[0]);
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ec.points = pathPoints.ToArray();
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}
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}
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}
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#if UNITY_EDITOR
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[MenuItem("SpriteShape/Generate Legacy Collider", false, 358)]
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public static void BakeLegacyCollider()
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{
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if (Selection.activeGameObject != null)
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LegacyCollider.Bake(Selection.activeGameObject, true);
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}
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#endif
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}
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