203 lines
9.9 KiB
C++
203 lines
9.9 KiB
C++
// Jolt Physics Library (https://github.com/jrouwe/JoltPhysics)
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// SPDX-FileCopyrightText: 2021 Jorrit Rouwe
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// SPDX-License-Identifier: MIT
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#pragma once
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#include <Jolt/Physics/Collision/Shape/ConvexShape.h>
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#include <Jolt/Physics/PhysicsSettings.h>
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#include <Jolt/Geometry/Plane.h>
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#ifdef JPH_DEBUG_RENDERER
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#include <Jolt/Renderer/DebugRenderer.h>
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#endif // JPH_DEBUG_RENDERER
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JPH_NAMESPACE_BEGIN
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/// Class that constructs a ConvexHullShape
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class JPH_EXPORT ConvexHullShapeSettings final : public ConvexShapeSettings
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{
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JPH_DECLARE_SERIALIZABLE_VIRTUAL(JPH_EXPORT, ConvexHullShapeSettings)
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public:
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/// Default constructor for deserialization
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ConvexHullShapeSettings() = default;
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/// Create a convex hull from inPoints and maximum convex radius inMaxConvexRadius, the radius is automatically lowered if the hull requires it.
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/// (internally this will be subtracted so the total size will not grow with the convex radius).
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ConvexHullShapeSettings(const Vec3 *inPoints, int inNumPoints, float inMaxConvexRadius = cDefaultConvexRadius, const PhysicsMaterial *inMaterial = nullptr) : ConvexShapeSettings(inMaterial), mPoints(inPoints, inPoints + inNumPoints), mMaxConvexRadius(inMaxConvexRadius) { }
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ConvexHullShapeSettings(const Array<Vec3> &inPoints, float inConvexRadius = cDefaultConvexRadius, const PhysicsMaterial *inMaterial = nullptr) : ConvexShapeSettings(inMaterial), mPoints(inPoints), mMaxConvexRadius(inConvexRadius) { }
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// See: ShapeSettings
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virtual ShapeResult Create() const override;
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Array<Vec3> mPoints; ///< Points to create the hull from
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float mMaxConvexRadius = 0.0f; ///< Convex radius as supplied by the constructor. Note that during hull creation the convex radius can be made smaller if the value is too big for the hull.
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float mMaxErrorConvexRadius = 0.05f; ///< Maximum distance between the shrunk hull + convex radius and the actual hull.
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float mHullTolerance = 1.0e-3f; ///< Points are allowed this far outside of the hull (increasing this yields a hull with less vertices). Note that the actual used value can be larger if the points of the hull are far apart.
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};
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/// A convex hull
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class JPH_EXPORT ConvexHullShape final : public ConvexShape
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{
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public:
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JPH_OVERRIDE_NEW_DELETE
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/// Maximum amount of points supported in a convex hull. Note that while constructing a hull, interior points are discarded so you can provide more points.
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/// The ConvexHullShapeSettings::Create function will return an error when too many points are provided.
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static constexpr int cMaxPointsInHull = 256;
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/// Constructor
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ConvexHullShape() : ConvexShape(EShapeSubType::ConvexHull) { }
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ConvexHullShape(const ConvexHullShapeSettings &inSettings, ShapeResult &outResult);
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// See Shape::GetCenterOfMass
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virtual Vec3 GetCenterOfMass() const override { return mCenterOfMass; }
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// See Shape::GetLocalBounds
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virtual AABox GetLocalBounds() const override { return mLocalBounds; }
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// See Shape::GetInnerRadius
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virtual float GetInnerRadius() const override { return mInnerRadius; }
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// See Shape::GetMassProperties
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virtual MassProperties GetMassProperties() const override;
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// See Shape::GetSurfaceNormal
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virtual Vec3 GetSurfaceNormal(const SubShapeID &inSubShapeID, Vec3Arg inLocalSurfacePosition) const override;
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// See Shape::GetSupportingFace
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virtual void GetSupportingFace(const SubShapeID &inSubShapeID, Vec3Arg inDirection, Vec3Arg inScale, Mat44Arg inCenterOfMassTransform, SupportingFace &outVertices) const override;
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// See ConvexShape::GetSupportFunction
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virtual const Support * GetSupportFunction(ESupportMode inMode, SupportBuffer &inBuffer, Vec3Arg inScale) const override;
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// See Shape::GetSubmergedVolume
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virtual void GetSubmergedVolume(Mat44Arg inCenterOfMassTransform, Vec3Arg inScale, const Plane &inSurface, float &outTotalVolume, float &outSubmergedVolume, Vec3 &outCenterOfBuoyancy JPH_IF_DEBUG_RENDERER(, RVec3Arg inBaseOffset)) const override;
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#ifdef JPH_DEBUG_RENDERER
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// See Shape::Draw
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virtual void Draw(DebugRenderer *inRenderer, RMat44Arg inCenterOfMassTransform, Vec3Arg inScale, ColorArg inColor, bool inUseMaterialColors, bool inDrawWireframe) const override;
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/// Debugging helper draw function that draws how all points are moved when a shape is shrunk by the convex radius
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void DrawShrunkShape(DebugRenderer *inRenderer, RMat44Arg inCenterOfMassTransform, Vec3Arg inScale) const;
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#endif // JPH_DEBUG_RENDERER
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// See Shape::CastRay
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virtual bool CastRay(const RayCast &inRay, const SubShapeIDCreator &inSubShapeIDCreator, RayCastResult &ioHit) const override;
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virtual void CastRay(const RayCast &inRay, const RayCastSettings &inRayCastSettings, const SubShapeIDCreator &inSubShapeIDCreator, CastRayCollector &ioCollector, const ShapeFilter &inShapeFilter = { }) const override;
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// See: Shape::CollidePoint
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virtual void CollidePoint(Vec3Arg inPoint, const SubShapeIDCreator &inSubShapeIDCreator, CollidePointCollector &ioCollector, const ShapeFilter &inShapeFilter = { }) const override;
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// See: Shape::CollideSoftBodyVertices
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virtual void CollideSoftBodyVertices(Mat44Arg inCenterOfMassTransform, Vec3Arg inScale, const CollideSoftBodyVertexIterator &inVertices, uint inNumVertices, int inCollidingShapeIndex) const override;
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// See Shape::GetTrianglesStart
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virtual void GetTrianglesStart(GetTrianglesContext &ioContext, const AABox &inBox, Vec3Arg inPositionCOM, QuatArg inRotation, Vec3Arg inScale) const override;
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// See Shape::GetTrianglesNext
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virtual int GetTrianglesNext(GetTrianglesContext &ioContext, int inMaxTrianglesRequested, Float3 *outTriangleVertices, const PhysicsMaterial **outMaterials = nullptr) const override;
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// See Shape
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virtual void SaveBinaryState(StreamOut &inStream) const override;
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// See Shape::GetStats
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virtual Stats GetStats() const override;
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// See Shape::GetVolume
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virtual float GetVolume() const override { return mVolume; }
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/// Get the convex radius of this convex hull
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float GetConvexRadius() const { return mConvexRadius; }
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/// Get the planes of this convex hull
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const Array<Plane> & GetPlanes() const { return mPlanes; }
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/// Get the number of vertices in this convex hull
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inline uint GetNumPoints() const { return uint(mPoints.size()); }
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/// Get a vertex of this convex hull relative to the center of mass
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inline Vec3 GetPoint(uint inIndex) const { return mPoints[inIndex].mPosition; }
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/// Get the number of faces in this convex hull
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inline uint GetNumFaces() const { return uint(mFaces.size()); }
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/// Get the number of vertices in a face
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inline uint GetNumVerticesInFace(uint inFaceIndex) const { return mFaces[inFaceIndex].mNumVertices; }
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/// Get the vertices indices of a face
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/// @param inFaceIndex Index of the face.
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/// @param inMaxVertices Maximum number of vertices to return.
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/// @param outVertices Array of vertices indices, must be at least inMaxVertices in size, the vertices are returned in counter clockwise order and the positions can be obtained using GetPoint(index).
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/// @return Number of vertices in face, if this is bigger than inMaxVertices, not all vertices were retrieved.
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inline uint GetFaceVertices(uint inFaceIndex, uint inMaxVertices, uint *outVertices) const
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{
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const Face &face = mFaces[inFaceIndex];
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const uint8 *first_vertex = mVertexIdx.data() + face.mFirstVertex;
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uint num_vertices = min<uint>(face.mNumVertices, inMaxVertices);
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for (uint i = 0; i < num_vertices; ++i)
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outVertices[i] = first_vertex[i];
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return face.mNumVertices;
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}
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// Register shape functions with the registry
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static void sRegister();
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#ifdef JPH_DEBUG_RENDERER
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/// Draw the outlines of the faces of the convex hull when drawing the shape
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inline static bool sDrawFaceOutlines = false;
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#endif // JPH_DEBUG_RENDERER
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protected:
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// See: Shape::RestoreBinaryState
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virtual void RestoreBinaryState(StreamIn &inStream) override;
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private:
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/// Helper function that returns the min and max fraction along the ray that hits the convex hull. Returns false if there is no hit.
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bool CastRayHelper(const RayCast &inRay, float &outMinFraction, float &outMaxFraction) const;
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/// Class for GetTrianglesStart/Next
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class CHSGetTrianglesContext;
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/// Classes for GetSupportFunction
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class HullNoConvex;
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class HullWithConvex;
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class HullWithConvexScaled;
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struct Face
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{
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uint16 mFirstVertex; ///< First index in mVertexIdx to use
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uint16 mNumVertices = 0; ///< Number of vertices in the mVertexIdx to use
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};
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static_assert(sizeof(Face) == 4, "Unexpected size");
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static_assert(alignof(Face) == 2, "Unexpected alignment");
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struct Point
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{
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Vec3 mPosition; ///< Position of vertex
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int mNumFaces = 0; ///< Number of faces in the face array below
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int mFaces[3] = { -1, -1, -1 }; ///< Indices of 3 neighboring faces with the biggest difference in normal (used to shift vertices for convex radius)
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};
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static_assert(sizeof(Point) == 32, "Unexpected size");
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static_assert(alignof(Point) == JPH_VECTOR_ALIGNMENT, "Unexpected alignment");
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Vec3 mCenterOfMass; ///< Center of mass of this convex hull
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Mat44 mInertia; ///< Inertia matrix assuming density is 1 (needs to be multiplied by density)
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AABox mLocalBounds; ///< Local bounding box for the convex hull
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Array<Point> mPoints; ///< Points on the convex hull surface
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Array<Face> mFaces; ///< Faces of the convex hull surface
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Array<Plane> mPlanes; ///< Planes for the faces (1-on-1 with mFaces array, separate because they need to be 16 byte aligned)
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Array<uint8> mVertexIdx; ///< A list of vertex indices (indexing in mPoints) for each of the faces
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float mConvexRadius = 0.0f; ///< Convex radius
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float mVolume; ///< Total volume of the convex hull
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float mInnerRadius = FLT_MAX; ///< Radius of the biggest sphere that fits entirely in the convex hull
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#ifdef JPH_DEBUG_RENDERER
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mutable DebugRenderer::GeometryRef mGeometry;
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#endif // JPH_DEBUG_RENDERER
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};
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JPH_NAMESPACE_END
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