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338 lines
9.9 KiB
338 lines
9.9 KiB
5 years ago
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//========= Copyright Valve Corporation, All rights reserved. ============//
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//
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// Purpose: provide client-side access to the new particle system, with similar
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// usage to CSimpleEmitter
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//
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// $NoKeywords: $
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//===========================================================================//
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#ifndef PARTICLES_NEW_H
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#define PARTICLES_NEW_H
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#ifdef _WIN32
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#pragma once
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#endif
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#include "particlemgr.h"
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#include "particles/particles.h"
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#include "particlesphererenderer.h"
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#include "smartptr.h"
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#include "particles_simple.h"
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#include "tier1/utlobjectreference.h"
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//-----------------------------------------------------------------------------
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// Particle effect
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//-----------------------------------------------------------------------------
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class CNewParticleEffect : public IParticleEffect, public CParticleCollection, public CDefaultClientRenderable
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{
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public:
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DECLARE_CLASS_NOBASE( CNewParticleEffect );
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DECLARE_REFERENCED_CLASS( CNewParticleEffect );
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public:
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friend class CRefCountAccessor;
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// list management
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CNewParticleEffect *m_pNext;
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CNewParticleEffect *m_pPrev;
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// Call this before adding a bunch of particles to give it a rough estimate of where
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// your particles are for sorting amongst other translucent entities.
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void SetSortOrigin( const Vector &vSortOrigin );
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bool ShouldDraw( void );
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virtual bool IsTransparent( void );
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virtual bool IsTwoPass( void );
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virtual bool UsesPowerOfTwoFrameBufferTexture( void );
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virtual bool UsesFullFrameBufferTexture( void );
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const QAngle& GetRenderAngles( void );
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const matrix3x4_t& RenderableToWorldTransform();
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void GetRenderBounds( Vector& mins, Vector& maxs );
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// check if the new bounds of the particle system needs its client-leaf info needs to be updated
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void DetectChanges( void );
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const Vector &GetRenderOrigin( void );
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PMaterialHandle GetPMaterial( const char *name );
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bool RecalculateBoundingBox();
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Particle* AddParticle( unsigned int particleSize, PMaterialHandle material, const Vector &origin );
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const char *GetEffectName();
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void SetDontRemove( bool bSet );
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void SetDrawn( bool bDrawn );
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void SetFirstFrameFlag( bool bFirst );
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void SetNeedsBBoxUpdate( bool bNeedsUpdate );
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void SetAutoUpdateBBox( bool bNeedsUpdate );
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void SetRemoveFlag( void );
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bool GetRemoveFlag( void );
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bool GetFirstFrameFlag( void );
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bool GetNeedsBBoxUpdate( void );
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bool GetAutoUpdateBBox( void );
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bool ShouldPerformCullCheck() const;
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void MarkShouldPerformCullCheck( bool bEnable );
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CBaseEntity *GetOwner( void ) { return m_hOwner; }
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void SetOwner( CBaseEntity *pOwner ) { m_hOwner = pOwner; }
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CNewParticleEffect* ReplaceWith( const char *pParticleSystemName );
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static CSmartPtr<CNewParticleEffect> Create( CBaseEntity *pOwner, const char *pParticleSystemName,
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const char *pDebugName = NULL );
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static CSmartPtr<CNewParticleEffect> Create( CBaseEntity *pOwner, CParticleSystemDefinition *pDef,
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const char *pDebugName = NULL );
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virtual int DrawModel( int flags );
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void DebugDrawBbox ( bool bCulled );
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// CParticleCollection overrides
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public:
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void StopEmission( bool bInfiniteOnly = false, bool bRemoveAllParticles = false, bool bWakeOnStop = false );
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void SetDormant( bool bDormant );
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void SetControlPoint( int nWhichPoint, const Vector &v );
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void SetControlPointEntity( int nWhichPoint, CBaseEntity *pEntity );
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void SetControlPointOrientation( int nWhichPoint, const Quaternion &q );
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void SetControlPointOrientation( int nWhichPoint, const Vector &forward, const Vector &right, const Vector &up );
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void SetControlPointForwardVector( int nWhichPoint, const Vector &v );
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void SetControlPointUpVector( int nWhichPoint, const Vector &v );
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void SetControlPointRightVector( int nWhichPoint, const Vector &v );
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void SetIsViewModelEffect ( bool bIsViewModelEffect ) { m_bViewModelEffect = bIsViewModelEffect; }
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bool GetIsViewModelEffect () { return m_bViewModelEffect; }
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FORCEINLINE EHANDLE const &GetControlPointEntity( int nWhichPoint )
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{
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return m_hControlPointOwners[ nWhichPoint ];
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}
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// IParticleEffect overrides
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public:
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virtual void SimulateParticles( CParticleSimulateIterator *pIterator )
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{
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}
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virtual void RenderParticles( CParticleRenderIterator *pIterator )
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{
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}
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virtual void SetParticleCullRadius( float radius );
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virtual void NotifyRemove( void );
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virtual const Vector & GetSortOrigin( void );
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// virtual void NotifyDestroyParticle( Particle* pParticle );
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virtual void Update( float flTimeDelta );
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// All Create() functions should call this so the effect deletes itself
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// when it is removed from the particle manager.
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void SetDynamicallyAllocated( bool bDynamic = true );
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virtual bool ShouldSimulate() const { return m_bSimulate; }
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virtual void SetShouldSimulate( bool bSim ) { m_bSimulate = bSim; }
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int AllocateToolParticleEffectId();
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int GetToolParticleEffectId() const;
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CNewParticleEffect( CBaseEntity *pOwner, const char *pEffectName );
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CNewParticleEffect( CBaseEntity *pOwner, CParticleSystemDefinition *pEffect );
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virtual ~CNewParticleEffect();
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protected:
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// Returns nonzero if Release() has been called.
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int IsReleased();
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// Used to track down bugs.
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const char *m_pDebugName;
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bool m_bDontRemove : 1;
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bool m_bRemove : 1;
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bool m_bDrawn : 1;
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bool m_bNeedsBBoxUpdate : 1;
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bool m_bIsFirstFrame : 1;
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bool m_bAutoUpdateBBox : 1;
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bool m_bAllocated : 1;
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bool m_bSimulate : 1;
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bool m_bShouldPerformCullCheck : 1;
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int m_nToolParticleEffectId;
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Vector m_vSortOrigin;
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EHANDLE m_hOwner;
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EHANDLE m_hControlPointOwners[MAX_PARTICLE_CONTROL_POINTS];
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// holds the min/max bounds used to manage this thing in the client leaf system
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Vector m_LastMin;
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Vector m_LastMax;
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bool m_bViewModelEffect;
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private:
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// Update the reference count.
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void AddRef();
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void Release();
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void RecordControlPointOrientation( int nWhichPoint );
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void Construct();
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int m_RefCount; // When this goes to zero and the effect has no more active
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// particles, (and it's dynamically allocated), it will delete itself.
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CNewParticleEffect( const CNewParticleEffect & ); // not defined, not accessible
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};
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//-----------------------------------------------------------------------------
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// Inline methods
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//-----------------------------------------------------------------------------
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inline int CNewParticleEffect::GetToolParticleEffectId() const
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{
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return m_nToolParticleEffectId;
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}
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inline int CNewParticleEffect::AllocateToolParticleEffectId()
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{
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m_nToolParticleEffectId = ParticleMgr()->AllocateToolParticleEffectId();
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return m_nToolParticleEffectId;
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}
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// Call this before adding a bunch of particles to give it a rough estimate of where
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// your particles are for sorting amongst other translucent entities.
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inline void CNewParticleEffect::SetSortOrigin( const Vector &vSortOrigin )
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{
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m_vSortOrigin = vSortOrigin;
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}
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inline const Vector &CNewParticleEffect::GetSortOrigin( void )
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{
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return m_vSortOrigin;
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}
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inline bool CNewParticleEffect::ShouldDraw( void )
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{
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return true;
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}
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inline bool CNewParticleEffect::IsTransparent( void )
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{
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return CParticleCollection::IsTranslucent();
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}
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inline const QAngle& CNewParticleEffect::GetRenderAngles( void )
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{
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return vec3_angle;
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}
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inline const matrix3x4_t & CNewParticleEffect::RenderableToWorldTransform()
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{
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static matrix3x4_t mat;
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SetIdentityMatrix( mat );
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PositionMatrix( GetRenderOrigin(), mat );
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return mat;
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}
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inline Vector const &CNewParticleEffect::GetRenderOrigin( void )
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{
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return m_vSortOrigin;
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}
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inline PMaterialHandle CNewParticleEffect::GetPMaterial(const char *name)
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{
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//!!
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Assert( 0 );
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return NULL;
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}
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inline Particle* CNewParticleEffect::AddParticle( unsigned int particleSize, PMaterialHandle material, const Vector &origin )
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{
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//!!
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Assert( 0 );
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return NULL;
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}
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inline const char *CNewParticleEffect::GetEffectName()
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{
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return GetName();
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}
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inline void CNewParticleEffect::SetDontRemove( bool bSet )
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{
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m_bDontRemove = bSet;
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}
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inline void CNewParticleEffect::SetDrawn( bool bDrawn )
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{
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m_bDrawn = bDrawn;
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}
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inline void CNewParticleEffect::SetFirstFrameFlag( bool bFirst )
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{
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m_bIsFirstFrame = bFirst;
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}
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inline void CNewParticleEffect::SetDynamicallyAllocated( bool bDynamic )
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{
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m_bAllocated = bDynamic;
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}
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inline void CNewParticleEffect::SetNeedsBBoxUpdate( bool bNeedsUpdate )
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{
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m_bNeedsBBoxUpdate = bNeedsUpdate;
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}
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inline void CNewParticleEffect::SetAutoUpdateBBox( bool bNeedsUpdate )
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{
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m_bAutoUpdateBBox = bNeedsUpdate;
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}
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inline void CNewParticleEffect::SetRemoveFlag( void )
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{
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m_bRemove = true;
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}
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inline bool CNewParticleEffect::GetRemoveFlag( void )
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{
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return m_bRemove;
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}
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inline bool CNewParticleEffect::GetFirstFrameFlag( void )
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{
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return m_bIsFirstFrame;
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}
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inline bool CNewParticleEffect::GetNeedsBBoxUpdate( void )
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{
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return m_bNeedsBBoxUpdate;
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}
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inline bool CNewParticleEffect::GetAutoUpdateBBox( void )
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{
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return m_bAutoUpdateBBox;
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}
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inline bool CNewParticleEffect::ShouldPerformCullCheck() const
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{
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return m_bShouldPerformCullCheck;
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}
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inline void CNewParticleEffect::MarkShouldPerformCullCheck( bool bEnable )
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{
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m_bShouldPerformCullCheck = bEnable;
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}
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inline CSmartPtr<CNewParticleEffect> CNewParticleEffect::Create( CBaseEntity *pOwner, const char *pParticleSystemName, const char *pDebugName )
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{
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CNewParticleEffect *pRet = new CNewParticleEffect( pOwner, pParticleSystemName );
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pRet->m_pDebugName = pDebugName ? pDebugName : pParticleSystemName;
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pRet->SetDynamicallyAllocated( true );
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return pRet;
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}
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inline CSmartPtr<CNewParticleEffect> CNewParticleEffect::Create( CBaseEntity *pOwner, CParticleSystemDefinition *pDef, const char *pDebugName )
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{
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CNewParticleEffect *pRet = new CNewParticleEffect( pOwner, pDef );
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pRet->m_pDebugName = pDebugName ? pDebugName : pDef->GetName();
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pRet->SetDynamicallyAllocated( true );
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return pRet;
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}
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//--------------------------------------------------------------------------------
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// If you use an HPARTICLEFFECT instead of a cnewparticleeffect *, you get a pointer
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// which will go to null when the effect is deleted
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//--------------------------------------------------------------------------------
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typedef CUtlReference<CNewParticleEffect> HPARTICLEFFECT;
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#endif // PARTICLES_NEW_H
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