mirror of
https://github.com/nillerusr/source-engine.git
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280 lines
8.1 KiB
C++
280 lines
8.1 KiB
C++
//========= Copyright Valve Corporation, All rights reserved. ============//
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//
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// Purpose:
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//
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// $NoKeywords: $
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//=============================================================================//
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#include "cbase.h"
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#include "particles_simple.h"
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#include "c_tracer.h"
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#include "particle_collision.h"
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#include "view.h"
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#include "clienteffectprecachesystem.h"
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// memdbgon must be the last include file in a .cpp file!!!
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#include "tier0/memdbgon.h"
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#define PLASMASPARK_LIFETIME 0.5
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#define SPRAYS_PER_THINK 12
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CLIENTEFFECT_REGISTER_BEGIN( PrecacheEffectPlasmaBeam )
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CLIENTEFFECT_MATERIAL( "sprites/plasmaember" )
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CLIENTEFFECT_REGISTER_END()
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class C_PlasmaBeamNode;
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//##################################################################
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//
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// > CPlasmaSpray
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//
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//##################################################################
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class CPlasmaSpray : public CSimpleEmitter
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{
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public:
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CPlasmaSpray( const char *pDebugName ) : CSimpleEmitter( pDebugName ) {}
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static CSmartPtr<CPlasmaSpray> Create( const char *pDebugName );
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void Think( void );
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void UpdateVelocity( SimpleParticle *pParticle, float timeDelta );
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virtual void RenderParticles( CParticleRenderIterator *pIterator );
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virtual void SimulateParticles( CParticleSimulateIterator *pIterator );
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EHANDLE m_pOwner;
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CParticleCollision m_ParticleCollision;
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private:
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CPlasmaSpray( const CPlasmaSpray & );
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};
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//##################################################################
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//
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// PlasmaBeamNode - generates plasma spray
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//
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//##################################################################
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class C_PlasmaBeamNode : public C_BaseEntity
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{
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public:
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DECLARE_CLASS( C_PlasmaBeamNode, C_BaseEntity );
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DECLARE_CLIENTCLASS();
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C_PlasmaBeamNode();
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~C_PlasmaBeamNode(void);
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public:
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void ClientThink(void);
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void AddEntity( void );
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void OnDataChanged(DataUpdateType_t updateType);
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bool ShouldDraw();
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bool m_bSprayOn;
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CSmartPtr<CPlasmaSpray> m_pFirePlasmaSpray;
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};
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//##################################################################
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//
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// > CPlasmaSpray
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//
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//##################################################################
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : *pParticle -
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// timeDelta -
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// Output : float
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//-----------------------------------------------------------------------------
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CSmartPtr<CPlasmaSpray> CPlasmaSpray::Create( const char *pDebugName )
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{
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CPlasmaSpray *pRet = new CPlasmaSpray( pDebugName );
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return pRet;
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : fTimeDelta -
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// Output : Vector
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//-----------------------------------------------------------------------------
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void CPlasmaSpray::UpdateVelocity( SimpleParticle *pParticle, float timeDelta )
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{
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Vector vGravity = Vector(0,0,-1000);
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float flFrametime = gpGlobals->frametime;
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vGravity = flFrametime * vGravity;
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pParticle->m_vecVelocity += vGravity;
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}
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void CPlasmaSpray::SimulateParticles( CParticleSimulateIterator *pIterator )
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{
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float timeDelta = pIterator->GetTimeDelta();
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SimpleParticle *pParticle = (SimpleParticle*)pIterator->GetFirst();
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while ( pParticle )
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{
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//Should this particle die?
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pParticle->m_flLifetime += timeDelta;
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C_PlasmaBeamNode* pNode = (C_PlasmaBeamNode*)((C_BaseEntity*)m_pOwner);
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if ( pParticle->m_flLifetime >= pParticle->m_flDieTime )
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{
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pIterator->RemoveParticle( pParticle );
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}
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// If owner is gone or spray off remove me
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else if (pNode == NULL || !pNode->m_bSprayOn)
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{
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pIterator->RemoveParticle( pParticle );
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}
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//Simulate the movement with collision
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trace_t trace;
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m_ParticleCollision.MoveParticle( pParticle->m_Pos, pParticle->m_vecVelocity, NULL, timeDelta, &trace );
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pParticle = (SimpleParticle*)pIterator->GetNext();
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}
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}
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void CPlasmaSpray::RenderParticles( CParticleRenderIterator *pIterator )
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{
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const SimpleParticle *pParticle = (const SimpleParticle *)pIterator->GetFirst();
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while ( pParticle )
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{
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float scale = random->RandomFloat( 0.02, 0.08 );
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// NOTE: We need to do everything in screen space
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Vector delta;
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Vector start;
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TransformParticle(ParticleMgr()->GetModelView(), pParticle->m_Pos, start);
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float sortKey = start.z;
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Vector3DMultiply( CurrentWorldToViewMatrix(), pParticle->m_vecVelocity, delta );
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delta[0] *= scale;
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delta[1] *= scale;
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delta[2] *= scale;
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// See c_tracer.* for this method
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Tracer_Draw( pIterator->GetParticleDraw(), start, delta, random->RandomInt( 2, 8 ), 0 );
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pParticle = (const SimpleParticle *)pIterator->GetNext( sortKey );
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}
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}
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//##################################################################
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//
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// PlasmaBeamNode - generates plasma spray
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//
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//##################################################################
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//------------------------------------------------------------------------------
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// Purpose :
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// Input :
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// Output :
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//------------------------------------------------------------------------------
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C_PlasmaBeamNode::C_PlasmaBeamNode(void)
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{
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m_bSprayOn = false;
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m_pFirePlasmaSpray = CPlasmaSpray::Create( "C_PlasmaBeamNode" );
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}
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//------------------------------------------------------------------------------
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// Purpose :
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// Input :
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// Output :
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//------------------------------------------------------------------------------
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C_PlasmaBeamNode::~C_PlasmaBeamNode(void)
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{
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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//-----------------------------------------------------------------------------
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void C_PlasmaBeamNode::AddEntity( void )
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{
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m_pFirePlasmaSpray->SetSortOrigin( GetAbsOrigin() );
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}
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//------------------------------------------------------------------------------
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// Purpose :
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// Input :
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// Output :
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//------------------------------------------------------------------------------
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void C_PlasmaBeamNode::OnDataChanged(DataUpdateType_t updateType)
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{
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if (updateType == DATA_UPDATE_CREATED)
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{
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Vector vMoveDir = GetAbsVelocity();
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float flVel = VectorNormalize(vMoveDir);
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m_pFirePlasmaSpray->m_ParticleCollision.Setup( GetAbsOrigin(), &vMoveDir, 0.3,
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flVel-50, flVel+50, 800, 0.5 );
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SetNextClientThink(gpGlobals->curtime + 0.01);
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}
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C_BaseEntity::OnDataChanged(updateType);
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}
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//------------------------------------------------------------------------------
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// Purpose :
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// Input :
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// Output :
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//------------------------------------------------------------------------------
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bool C_PlasmaBeamNode::ShouldDraw()
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{
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return false;
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}
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//------------------------------------------------------------------------------
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// Purpose :
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// Input :
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// Output :
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//------------------------------------------------------------------------------
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void C_PlasmaBeamNode::ClientThink(void)
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{
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if (!m_bSprayOn)
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{
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return;
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}
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trace_t trace;
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Vector vEndTrace = GetAbsOrigin() + (0.3*GetAbsVelocity());
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UTIL_TraceLine( GetAbsOrigin(), vEndTrace, MASK_SHOT, NULL, COLLISION_GROUP_NONE, &trace );
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if ( trace.fraction != 1.0f || trace.startsolid)
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{
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m_bSprayOn = false;
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return;
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}
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PMaterialHandle handle = m_pFirePlasmaSpray->GetPMaterial( "sprites/plasmaember" );
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for (int i=0;i<SPRAYS_PER_THINK;i++)
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{
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SimpleParticle *sParticle;
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//Make a new particle
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if ( random->RandomInt( 0, 2 ) == 0 )
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{
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float ranx = random->RandomFloat( -28.0f, 28.0f );
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float rany = random->RandomFloat( -28.0f, 28.0f );
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float ranz = random->RandomFloat( -28.0f, 28.0f );
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Vector vNewPos = GetAbsOrigin();
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Vector vAdd = Vector(GetAbsAngles().x,GetAbsAngles().y,GetAbsAngles().z)*random->RandomFloat(-60,120);
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vNewPos += vAdd;
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sParticle = (SimpleParticle *) m_pFirePlasmaSpray->AddParticle( sizeof(SimpleParticle), handle, vNewPos );
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sParticle->m_flLifetime = 0.0f;
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sParticle->m_flDieTime = PLASMASPARK_LIFETIME;
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sParticle->m_vecVelocity = GetAbsVelocity();
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sParticle->m_vecVelocity.x += ranx;
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sParticle->m_vecVelocity.y += rany;
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sParticle->m_vecVelocity.z += ranz;
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m_pFirePlasmaSpray->m_pOwner = this;
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}
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}
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SetNextClientThink(gpGlobals->curtime + 0.05);
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}
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IMPLEMENT_CLIENTCLASS_DT(C_PlasmaBeamNode, DT_PlasmaBeamNode, CPlasmaBeamNode )
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RecvPropVector (RECVINFO(m_vecVelocity), 0, RecvProxy_LocalVelocity),
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RecvPropInt (RECVINFO(m_bSprayOn)),
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END_RECV_TABLE()
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