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217 lines
6.3 KiB
C++
217 lines
6.3 KiB
C++
#ifndef OPENMW_COMPONENTS_NIFOSG_PARTICLE_H
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#define OPENMW_COMPONENTS_NIFOSG_PARTICLE_H
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#include <osgParticle/Particle>
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#include <osgParticle/Shooter>
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#include <osgParticle/Operator>
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#include <osgParticle/Emitter>
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#include <osgParticle/Placer>
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#include <osgParticle/Counter>
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#include <osg/NodeCallback>
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#include "controller.hpp" // ValueInterpolator
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namespace Nif
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{
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class NiGravity;
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class NiPlanarCollider;
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class NiColorData;
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}
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namespace NifOsg
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{
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// Subclass ParticleSystem to support a limit on the number of active particles.
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class ParticleSystem : public osgParticle::ParticleSystem
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{
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public:
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ParticleSystem();
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ParticleSystem(const ParticleSystem& copy, const osg::CopyOp& copyop);
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META_Object(NifOsg, ParticleSystem)
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virtual osgParticle::Particle* createParticle(const osgParticle::Particle *ptemplate);
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void setQuota(int quota);
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private:
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int mQuota;
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};
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// HACK: Particle doesn't allow setting the initial age, but we need this for loading the particle system state
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class ParticleAgeSetter : public osgParticle::Particle
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{
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public:
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ParticleAgeSetter(float age)
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: Particle()
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{
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_t0 = age;
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}
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};
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// Node callback used to set the inverse of the parent's world matrix on the MatrixTransform
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// that the callback is attached to. Used for certain particle systems,
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// so that the particles do not move with the node they are attached to.
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class InverseWorldMatrix : public osg::NodeCallback
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{
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public:
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InverseWorldMatrix()
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{
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}
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InverseWorldMatrix(const InverseWorldMatrix& copy, const osg::CopyOp& op)
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: osg::Object(), osg::NodeCallback()
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{
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}
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META_Object(NifOsg, InverseWorldMatrix)
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void operator()(osg::Node* node, osg::NodeVisitor* nv);
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};
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class ParticleShooter : public osgParticle::Shooter
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{
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public:
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ParticleShooter(float minSpeed, float maxSpeed, float horizontalDir, float horizontalAngle, float verticalDir, float verticalAngle,
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float lifetime, float lifetimeRandom);
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ParticleShooter();
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ParticleShooter(const ParticleShooter& copy, const osg::CopyOp& copyop = osg::CopyOp::SHALLOW_COPY);
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META_Object(NifOsg, ParticleShooter)
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virtual void shoot(osgParticle::Particle* particle) const;
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private:
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float mMinSpeed;
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float mMaxSpeed;
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float mHorizontalDir;
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float mHorizontalAngle;
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float mVerticalDir;
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float mVerticalAngle;
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float mLifetime;
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float mLifetimeRandom;
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};
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class PlanarCollider : public osgParticle::Operator
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{
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public:
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PlanarCollider(const Nif::NiPlanarCollider* collider);
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PlanarCollider();
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PlanarCollider(const PlanarCollider& copy, const osg::CopyOp& copyop);
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META_Object(NifOsg, PlanarCollider)
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virtual void beginOperate(osgParticle::Program* program);
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virtual void operate(osgParticle::Particle* particle, double dt);
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private:
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float mBounceFactor;
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osg::Plane mPlane;
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osg::Plane mPlaneInParticleSpace;
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};
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class GrowFadeAffector : public osgParticle::Operator
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{
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public:
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GrowFadeAffector(float growTime, float fadeTime);
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GrowFadeAffector();
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GrowFadeAffector(const GrowFadeAffector& copy, const osg::CopyOp& copyop = osg::CopyOp::SHALLOW_COPY);
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META_Object(NifOsg, GrowFadeAffector)
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virtual void beginOperate(osgParticle::Program* program);
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virtual void operate(osgParticle::Particle* particle, double dt);
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private:
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float mGrowTime;
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float mFadeTime;
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float mCachedDefaultSize;
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};
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typedef ValueInterpolator<Nif::Vector4KeyMap, LerpFunc> Vec4Interpolator;
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class ParticleColorAffector : public osgParticle::Operator
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{
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public:
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ParticleColorAffector(const Nif::NiColorData* clrdata);
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ParticleColorAffector();
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ParticleColorAffector(const ParticleColorAffector& copy, const osg::CopyOp& copyop = osg::CopyOp::SHALLOW_COPY);
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META_Object(NifOsg, ParticleColorAffector)
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virtual void operate(osgParticle::Particle* particle, double dt);
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private:
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Vec4Interpolator mData;
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};
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class GravityAffector : public osgParticle::Operator
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{
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public:
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GravityAffector(const Nif::NiGravity* gravity);
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GravityAffector();
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GravityAffector(const GravityAffector& copy, const osg::CopyOp& copyop = osg::CopyOp::SHALLOW_COPY);
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META_Object(NifOsg, GravityAffector)
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virtual void operate(osgParticle::Particle* particle, double dt);
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virtual void beginOperate(osgParticle::Program *);
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private:
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float mForce;
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enum ForceType {
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Type_Wind,
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Type_Point
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};
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ForceType mType;
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osg::Vec3f mPosition;
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osg::Vec3f mDirection;
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float mDecay;
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osg::Vec3f mCachedWorldPosition;
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osg::Vec3f mCachedWorldDirection;
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};
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// NodeVisitor to find a Group node with the given record index, stored in the node's user data container.
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// Alternatively, returns the node's parent Group if that node is not a Group (i.e. a leaf node).
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class FindGroupByRecIndex : public osg::NodeVisitor
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{
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public:
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FindGroupByRecIndex(int recIndex);
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virtual void apply(osg::Node &searchNode);
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osg::Group* mFound;
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osg::NodePath mFoundPath;
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private:
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int mRecIndex;
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};
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// Subclass emitter to support randomly choosing one of the child node's transforms for the emit position of new particles.
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class Emitter : public osgParticle::Emitter
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{
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public:
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Emitter(const std::vector<int>& targets);
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Emitter();
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Emitter(const Emitter& copy, const osg::CopyOp& copyop);
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META_Object(NifOsg, Emitter)
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virtual void emitParticles(double dt);
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void setShooter(osgParticle::Shooter* shooter);
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void setPlacer(osgParticle::Placer* placer);
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void setCounter(osgParticle::Counter* counter);
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private:
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// NIF Record indices
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std::vector<int> mTargets;
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osg::ref_ptr<osgParticle::Placer> mPlacer;
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osg::ref_ptr<osgParticle::Shooter> mShooter;
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osg::ref_ptr<osgParticle::Counter> mCounter;
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};
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}
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#endif
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