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2ae2a551a6
GLES drivers adapted, but only did make compile-tests. git-svn-id: svn://svn.code.sf.net/p/irrlicht/code/branches/ogl-es@6038 dfc29bdd-3216-0410-991c-e03cc46cb475
129 lines
3.8 KiB
C++
129 lines
3.8 KiB
C++
// Copyright (C) 2002-2012 Nikolaus Gebhardt
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// This file is part of the "Irrlicht Engine".
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// For conditions of distribution and use, see copyright notice in irrlicht.h
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#ifndef __I_PARTICLE_EMITTER_H_INCLUDED__
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#define __I_PARTICLE_EMITTER_H_INCLUDED__
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#include "IAttributeExchangingObject.h"
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#include "SParticle.h"
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namespace irr
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{
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namespace scene
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{
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//! Types of built in particle emitters
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enum E_PARTICLE_EMITTER_TYPE
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{
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EPET_POINT = 0,
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EPET_ANIMATED_MESH,
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EPET_BOX,
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EPET_CYLINDER,
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EPET_MESH,
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EPET_RING,
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EPET_SPHERE,
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EPET_COUNT
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};
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//! Names for built in particle emitters
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const c8* const ParticleEmitterTypeNames[] =
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{
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"Point",
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"AnimatedMesh",
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"Box",
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"Cylinder",
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"Mesh",
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"Ring",
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"Sphere",
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0
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};
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//! A particle emitter for using with particle systems.
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/** A Particle emitter emits new particles into a particle system.
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*/
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class IParticleEmitter : public virtual io::IAttributeExchangingObject
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{
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public:
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//! Prepares an array with new particles to emit into the system
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/** \param now Current time.
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\param timeSinceLastCall Time elapsed since last call, in milliseconds.
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\param outArray Pointer which will point to the array with the new
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particles to add into the system.
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\return Amount of new particles in the array. Can be 0. */
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virtual s32 emitt(u32 now, u32 timeSinceLastCall, SParticle*& outArray) = 0;
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//! Set direction the emitter emits particles
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virtual void setDirection( const core::vector3df& newDirection ) = 0;
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//! Set minimum number of particles the emitter emits per second
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virtual void setMinParticlesPerSecond( u32 minPPS ) = 0;
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//! Set maximum number of particles the emitter emits per second
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virtual void setMaxParticlesPerSecond( u32 maxPPS ) = 0;
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//! Set minimum starting color for particles
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virtual void setMinStartColor( const video::SColor& color ) = 0;
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//! Set maximum starting color for particles
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virtual void setMaxStartColor( const video::SColor& color ) = 0;
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//! Set the maximum starting size for particles
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virtual void setMaxStartSize( const core::dimension2df& size ) = 0;
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//! Set the minimum starting size for particles
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virtual void setMinStartSize( const core::dimension2df& size ) = 0;
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//! Set the minimum particle life-time in milliseconds
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virtual void setMinLifeTime( u32 lifeTimeMin ) = 0;
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//! Set the maximum particle life-time in milliseconds
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virtual void setMaxLifeTime( u32 lifeTimeMax ) = 0;
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//! Set maximal random derivation from the direction
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virtual void setMaxAngleDegrees( s32 maxAngleDegrees ) = 0;
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//! Get direction the emitter emits particles
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virtual const core::vector3df& getDirection() const = 0;
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//! Get the minimum number of particles the emitter emits per second
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virtual u32 getMinParticlesPerSecond() const = 0;
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//! Get the maximum number of particles the emitter emits per second
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virtual u32 getMaxParticlesPerSecond() const = 0;
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//! Get the minimum starting color for particles
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virtual const video::SColor& getMinStartColor() const = 0;
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//! Get the maximum starting color for particles
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virtual const video::SColor& getMaxStartColor() const = 0;
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//! Get the maximum starting size for particles
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virtual const core::dimension2df& getMaxStartSize() const = 0;
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//! Get the minimum starting size for particles
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virtual const core::dimension2df& getMinStartSize() const = 0;
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//! Get the minimum particle life-time in milliseconds
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virtual u32 getMinLifeTime() const = 0;
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//! Get the maximum particle life-time in milliseconds
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virtual u32 getMaxLifeTime() const = 0;
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//! Get maximal random derivation from the direction
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virtual s32 getMaxAngleDegrees() const = 0;
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//! Get emitter type
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virtual E_PARTICLE_EMITTER_TYPE getType() const { return EPET_POINT; }
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};
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typedef IParticleEmitter IParticlePointEmitter;
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} // end namespace scene
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} // end namespace irr
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#endif
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