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https://github.com/nillerusr/source-engine.git
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601 lines
16 KiB
C++
601 lines
16 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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//=====================================================================================//
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#include "cbase.h"
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#include "particles_simple.h"
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#include "citadel_effects_shared.h"
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#include "particles_attractor.h"
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#include "iefx.h"
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#include "dlight.h"
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#include "clienteffectprecachesystem.h"
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#include "c_te_effect_dispatch.h"
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#include "fx_quad.h"
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#include "c_ai_basenpc.h"
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// For material proxy
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#include "proxyentity.h"
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#include "materialsystem/imaterial.h"
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#include "materialsystem/imaterialvar.h"
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#define NUM_INTERIOR_PARTICLES 8
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#define DLIGHT_RADIUS (150.0f)
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#define DLIGHT_MINLIGHT (40.0f/255.0f)
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class C_NPC_Vortigaunt : public C_AI_BaseNPC
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{
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DECLARE_CLASS( C_NPC_Vortigaunt, C_AI_BaseNPC );
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DECLARE_CLIENTCLASS();
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public:
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virtual void OnDataChanged( DataUpdateType_t updateType );
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virtual void ClientThink( void );
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virtual void ReceiveMessage( int classID, bf_read &msg );
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public:
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bool m_bIsBlue; ///< wants to fade to blue
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float m_flBlueEndFadeTime; ///< when to end fading from one skin to another
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bool m_bIsBlack; ///< wants to fade to black (networked)
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float m_flBlackFade; ///< [0.00 .. 1.00] where 1.00 is all black. Locally interpolated.
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};
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IMPLEMENT_CLIENTCLASS_DT( C_NPC_Vortigaunt, DT_NPC_Vortigaunt, CNPC_Vortigaunt )
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RecvPropTime( RECVINFO(m_flBlueEndFadeTime ) ),
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RecvPropBool( RECVINFO(m_bIsBlue) ),
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RecvPropBool( RECVINFO(m_bIsBlack) ),
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END_RECV_TABLE()
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#define VORTIGAUNT_BLUE_FADE_TIME 2.25f // takes this long to fade from green to blue or back
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#define VORT_BLACK_FADE_TIME 2.2f // time to interpolate up or down in fading to black
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : updateType -
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//-----------------------------------------------------------------------------
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void C_NPC_Vortigaunt::OnDataChanged( DataUpdateType_t updateType )
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{
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BaseClass::OnDataChanged( updateType );
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// start thinking if we need to fade.
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if ( m_flBlackFade != (m_bIsBlack ? 1.0f : 0.0f) )
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{
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SetNextClientThink( CLIENT_THINK_ALWAYS );
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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_NPC_Vortigaunt::ClientThink( void )
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{
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// Don't update if our frame hasn't moved forward (paused)
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if ( gpGlobals->frametime <= 0.0f )
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return;
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if ( m_bIsBlack )
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{
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// are we done?
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if ( m_flBlackFade >= 1.0f )
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{
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m_flBlackFade = 1.0f;
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SetNextClientThink( CLIENT_THINK_NEVER );
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}
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else // interpolate there
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{
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float lerpQuant = gpGlobals->frametime / VORT_BLACK_FADE_TIME;
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m_flBlackFade += lerpQuant;
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if ( m_flBlackFade > 1.0f )
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{
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m_flBlackFade = 1.0f;
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}
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}
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}
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else
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{
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// are we done?
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if ( m_flBlackFade <= 0.0f )
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{
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m_flBlackFade = 0.0f;
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SetNextClientThink( CLIENT_THINK_NEVER );
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}
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else // interpolate there
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{
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float lerpQuant = gpGlobals->frametime / VORT_BLACK_FADE_TIME;
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m_flBlackFade -= lerpQuant;
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if ( m_flBlackFade < 0.0f )
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{
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m_flBlackFade = 0.0f;
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}
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}
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}
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}
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// FIXME: Move to shared code!
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#define VORTFX_ZAPBEAM 0
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#define VORTFX_ARMBEAM 1
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//-----------------------------------------------------------------------------
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// Purpose: Receive messages from the server
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//-----------------------------------------------------------------------------
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void C_NPC_Vortigaunt::ReceiveMessage( int classID, bf_read &msg )
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{
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// Is the message for a sub-class?
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if ( classID != GetClientClass()->m_ClassID )
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{
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BaseClass::ReceiveMessage( classID, msg );
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return;
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}
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int messageType = msg.ReadByte();
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switch( messageType )
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{
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case VORTFX_ZAPBEAM:
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{
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// Find our attachment point
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unsigned char nAttachment = msg.ReadByte();
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// Get our attachment position
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Vector vecStart;
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QAngle vecAngles;
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GetAttachment( nAttachment, vecStart, vecAngles );
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// Get the final position we'll strike
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Vector vecEndPos;
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msg.ReadBitVec3Coord( vecEndPos );
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// Place a beam between the two points
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CNewParticleEffect *pEffect = ParticleProp()->Create( "vortigaunt_beam", PATTACH_POINT_FOLLOW, nAttachment );
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if ( pEffect )
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{
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pEffect->SetControlPoint( 0, vecStart );
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pEffect->SetControlPoint( 1, vecEndPos );
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}
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}
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break;
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case VORTFX_ARMBEAM:
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{
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int nIndex = msg.ReadLong();
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C_BaseEntity *pEnt = ClientEntityList().GetBaseEntityFromHandle( ClientEntityList().EntIndexToHandle( nIndex ) );
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if ( pEnt )
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{
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unsigned char nAttachment = msg.ReadByte();
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Vector vecEndPos;
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msg.ReadBitVec3Coord( vecEndPos );
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Vector vecNormal;
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msg.ReadBitVec3Normal( vecNormal );
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CNewParticleEffect *pEffect = pEnt->ParticleProp()->Create( "vortigaunt_beam_charge", PATTACH_POINT_FOLLOW, nAttachment );
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if ( pEffect )
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{
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// Set the control point's angles to be the surface normal we struct
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Vector vecRight, vecUp;
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VectorVectors( vecNormal, vecRight, vecUp );
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pEffect->SetControlPointOrientation( 1, vecNormal, vecRight, vecUp );
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pEffect->SetControlPoint( 1, vecEndPos );
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}
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}
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}
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break;
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default:
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AssertMsg1( false, "Received unknown message %d", messageType);
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}
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}
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class C_VortigauntChargeToken : public C_BaseEntity
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{
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DECLARE_CLASS( C_VortigauntChargeToken, C_BaseEntity );
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DECLARE_CLIENTCLASS();
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public:
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virtual void UpdateOnRemove( void );
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virtual void ClientThink( void );
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virtual void NotifyShouldTransmit( ShouldTransmitState_t state );
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virtual void OnDataChanged( DataUpdateType_t type );
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// For RecvProxy handlers
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float m_flFadeOutTime;
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float m_flFadeOutStart;
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private:
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bool SetupEmitters( void );
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bool m_bFadeOut;
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CNewParticleEffect *m_hEffect;
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dlight_t *m_pDLight;
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};
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void RecvProxy_FadeOutDuration( const CRecvProxyData *pData, void *pStruct, void *pOut )
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{
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C_VortigauntChargeToken *pVortToken = (C_VortigauntChargeToken *) pStruct;
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Assert( pOut == &pVortToken->m_flFadeOutTime );
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pVortToken->m_flFadeOutStart = gpGlobals->curtime;
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pVortToken->m_flFadeOutTime = ( pData->m_Value.m_Float - gpGlobals->curtime );
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}
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IMPLEMENT_CLIENTCLASS_DT( C_VortigauntChargeToken, DT_VortigauntChargeToken, CVortigauntChargeToken )
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RecvPropBool( RECVINFO( m_bFadeOut ) ),
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END_RECV_TABLE()
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void C_VortigauntChargeToken::UpdateOnRemove( void )
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{
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if ( m_hEffect )
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{
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m_hEffect->StopEmission();
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m_hEffect = NULL;
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}
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if ( m_pDLight != NULL )
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{
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m_pDLight->die = gpGlobals->curtime;
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}
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}
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//-----------------------------------------------------------------------------
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// Purpose: Change our transmission state
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//-----------------------------------------------------------------------------
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void C_VortigauntChargeToken::NotifyShouldTransmit( ShouldTransmitState_t state )
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{
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BaseClass::NotifyShouldTransmit( state );
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// Turn off
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if ( state == SHOULDTRANSMIT_END )
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{
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if ( m_hEffect )
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{
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m_hEffect->StopEmission();
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m_hEffect = NULL;
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}
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}
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// Turn on
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if ( state == SHOULDTRANSMIT_START )
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{
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m_hEffect = ParticleProp()->Create( "vortigaunt_charge_token", PATTACH_ABSORIGIN_FOLLOW );
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m_hEffect->SetControlPointEntity( 0, this );
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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_VortigauntChargeToken::OnDataChanged( DataUpdateType_t type )
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{
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if ( m_bFadeOut )
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{
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if ( m_hEffect )
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{
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m_hEffect->StopEmission();
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m_hEffect = NULL;
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}
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}
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BaseClass::OnDataChanged( type );
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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//-----------------------------------------------------------------------------
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void C_VortigauntChargeToken::ClientThink( void )
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{
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//
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// -- DLight
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//
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if ( m_pDLight != NULL )
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{
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m_pDLight->origin = GetAbsOrigin();
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m_pDLight->radius = DLIGHT_RADIUS;
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}
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}
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//=============================================================================
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//
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// Dispel Effect
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//
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//=============================================================================
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class C_VortigauntEffectDispel : public C_BaseEntity
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{
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DECLARE_CLASS( C_VortigauntEffectDispel, C_BaseEntity );
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DECLARE_CLIENTCLASS();
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public:
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virtual void UpdateOnRemove( void );
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virtual void ClientThink( void );
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virtual void NotifyShouldTransmit( ShouldTransmitState_t state );
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virtual void OnDataChanged( DataUpdateType_t type );
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// For RecvProxy handlers
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float m_flFadeOutTime;
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float m_flFadeOutStart;
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private:
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bool SetupEmitters( void );
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CNewParticleEffect *m_hEffect;
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bool m_bFadeOut;
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dlight_t *m_pDLight;
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};
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void RecvProxy_DispelFadeOutDuration( const CRecvProxyData *pData, void *pStruct, void *pOut )
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{
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C_VortigauntEffectDispel *pVortToken = (C_VortigauntEffectDispel *) pStruct;
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Assert( pOut == &pVortToken->m_flFadeOutTime );
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pVortToken->m_flFadeOutStart = gpGlobals->curtime;
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pVortToken->m_flFadeOutTime = ( pData->m_Value.m_Float - gpGlobals->curtime );
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}
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IMPLEMENT_CLIENTCLASS_DT( C_VortigauntEffectDispel, DT_VortigauntEffectDispel, CVortigauntEffectDispel )
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RecvPropBool( RECVINFO( m_bFadeOut ) ),
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END_RECV_TABLE()
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void C_VortigauntEffectDispel::UpdateOnRemove( void )
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{
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if ( m_hEffect )
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{
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m_hEffect->StopEmission();
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m_hEffect = NULL;
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}
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if ( m_pDLight != NULL )
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{
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m_pDLight->die = gpGlobals->curtime;
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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_VortigauntEffectDispel::OnDataChanged( DataUpdateType_t type )
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{
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if ( m_bFadeOut )
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{
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if ( m_hEffect )
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{
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m_hEffect->StopEmission();
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m_hEffect = NULL;
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}
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}
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BaseClass::OnDataChanged( type );
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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//-----------------------------------------------------------------------------
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void C_VortigauntEffectDispel::NotifyShouldTransmit( ShouldTransmitState_t state )
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{
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BaseClass::NotifyShouldTransmit( state );
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// Turn off
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if ( state == SHOULDTRANSMIT_END )
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{
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if ( m_hEffect )
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{
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m_hEffect->StopEmission();
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m_hEffect = NULL;
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}
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}
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// Turn on
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if ( state == SHOULDTRANSMIT_START )
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{
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m_hEffect = ParticleProp()->Create( "vortigaunt_hand_glow", PATTACH_ABSORIGIN_FOLLOW );
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m_hEffect->SetControlPointEntity( 0, this );
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}
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}
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//-----------------------------------------------------------------------------
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// Purpose: Create our emitter
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//-----------------------------------------------------------------------------
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bool C_VortigauntEffectDispel::SetupEmitters( void )
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{
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m_pDLight = NULL;
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#ifndef _X360
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m_pDLight = effects->CL_AllocDlight ( index );
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m_pDLight->origin = GetAbsOrigin();
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m_pDLight->color.r = 64;
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m_pDLight->color.g = 255;
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m_pDLight->color.b = 64;
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m_pDLight->radius = 0;
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m_pDLight->minlight = DLIGHT_MINLIGHT;
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m_pDLight->die = FLT_MAX;
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#endif // _X360
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return true;
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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//-----------------------------------------------------------------------------
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void C_VortigauntEffectDispel::ClientThink( void )
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{
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if ( m_pDLight != NULL )
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{
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m_pDLight->origin = GetAbsOrigin();
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m_pDLight->radius = DLIGHT_RADIUS;
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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 DispelCallback( const CEffectData &data )
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{
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// Kaboom!
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Vector startPos = data.m_vOrigin + Vector(0,0,16);
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Vector endPos = data.m_vOrigin + Vector(0,0,-64);
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trace_t tr;
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UTIL_TraceLine( startPos, endPos, MASK_SOLID_BRUSHONLY, NULL, COLLISION_GROUP_NONE, &tr );
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if ( tr.fraction < 1.0f )
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{
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//Add a ripple quad to the surface
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FX_AddQuad( tr.endpos + ( tr.plane.normal * 8.0f ),
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Vector( 0, 0, 1 ),
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64.0f,
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600.0f,
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0.8f,
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1.0f, // start alpha
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0.0f, // end alpha
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0.3f,
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random->RandomFloat( 0, 360 ),
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0.0f,
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Vector( 0.5f, 1.0f, 0.5f ),
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0.75f,
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"effects/ar2_altfire1b",
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(FXQUAD_BIAS_SCALE|FXQUAD_BIAS_ALPHA|FXQUAD_COLOR_FADE) );
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//Add a ripple quad to the surface
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FX_AddQuad( tr.endpos + ( tr.plane.normal * 8.0f ),
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Vector( 0, 0, 1 ),
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16.0f,
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300.0f,
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0.9f,
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1.0f, // start alpha
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0.0f, // end alpha
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0.9f,
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random->RandomFloat( 0, 360 ),
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0.0f,
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Vector( 0.5f, 1.0f, 0.5f ),
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1.25f,
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"effects/rollerglow",
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(FXQUAD_BIAS_SCALE|FXQUAD_BIAS_ALPHA) );
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}
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}
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DECLARE_CLIENT_EFFECT( "VortDispel", DispelCallback );
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//-----------------------------------------------------------------------------
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// Purpose: Used for emissive lightning layer on vort
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//-----------------------------------------------------------------------------
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class CVortEmissiveProxy : public CEntityMaterialProxy
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{
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public:
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CVortEmissiveProxy( void );
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virtual ~CVortEmissiveProxy( void );
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virtual bool Init( IMaterial *pMaterial, KeyValues* pKeyValues );
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virtual void OnBind( C_BaseEntity *pC_BaseEntity );
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virtual IMaterial * GetMaterial();
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private:
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IMaterialVar *m_pMatEmissiveStrength;
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IMaterialVar *m_pMatDetailBlendStrength;
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};
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//-----------------------------------------------------------------------------
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CVortEmissiveProxy::CVortEmissiveProxy( void )
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{
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m_pMatEmissiveStrength = NULL;
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m_pMatDetailBlendStrength = NULL;
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}
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CVortEmissiveProxy::~CVortEmissiveProxy( void )
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{
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// Do nothing
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}
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//-----------------------------------------------------------------------------
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bool CVortEmissiveProxy::Init( IMaterial *pMaterial, KeyValues* pKeyValues )
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{
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Assert( pMaterial );
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// Need to get the material var
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bool bFound;
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m_pMatEmissiveStrength = pMaterial->FindVar( "$emissiveblendstrength", &bFound );
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if ( bFound )
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{
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// Optional
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bool bFound2;
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m_pMatDetailBlendStrength = pMaterial->FindVar( "$detailblendfactor", &bFound2 );
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}
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return bFound;
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}
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//-----------------------------------------------------------------------------
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void CVortEmissiveProxy::OnBind( C_BaseEntity *pEnt )
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{
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C_NPC_Vortigaunt *pVort = dynamic_cast<C_NPC_Vortigaunt *>(pEnt);
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float flBlendValue;
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if (pVort)
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{
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// do we need to crossfade?
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if (gpGlobals->curtime < pVort->m_flBlueEndFadeTime)
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{
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// will be 0 when fully faded and 1 when not faded at all:
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float fadeRatio = (pVort->m_flBlueEndFadeTime - gpGlobals->curtime) / VORTIGAUNT_BLUE_FADE_TIME;
|
|
if (pVort->m_bIsBlue)
|
|
{
|
|
fadeRatio = 1.0f - fadeRatio;
|
|
}
|
|
flBlendValue = clamp( fadeRatio, 0.0f, 1.0f );
|
|
}
|
|
else // no crossfade
|
|
{
|
|
flBlendValue = pVort->m_bIsBlue ? 1.0f : 0.0f;
|
|
}
|
|
|
|
// ALEX VLACHOS:
|
|
// The following variable varies on [0 .. 1]. 0.0 means the vort wants to be his normal
|
|
// color. 1.0 means he wants to be all black. It is interpolated in the
|
|
// C_NPC_Vortigaunt::ClientThink() function.
|
|
//
|
|
// pVort->m_flBlackFade
|
|
}
|
|
else
|
|
{ // if you bind this proxy to anything non-vort (eg a ragdoll) it's always green
|
|
flBlendValue = 0.0f;
|
|
}
|
|
|
|
|
|
/*
|
|
// !!! Change me !!! I'm using a clamped sin wave for debugging
|
|
float flBlendValue = sinf( gpGlobals->curtime * 4.0f ) * 0.75f + 0.25f;
|
|
|
|
// Clamp 0-1
|
|
flBlendValue = ( flBlendValue < 0.0f ) ? 0.0f : ( flBlendValue > 1.0f ) ? 1.0f : flBlendValue;
|
|
*/
|
|
|
|
if( m_pMatEmissiveStrength != NULL )
|
|
{
|
|
m_pMatEmissiveStrength->SetFloatValue( flBlendValue );
|
|
}
|
|
|
|
if( m_pMatDetailBlendStrength != NULL )
|
|
{
|
|
m_pMatDetailBlendStrength->SetFloatValue( flBlendValue );
|
|
}
|
|
}
|
|
|
|
//-----------------------------------------------------------------------------
|
|
IMaterial *CVortEmissiveProxy::GetMaterial()
|
|
{
|
|
if ( m_pMatEmissiveStrength != NULL )
|
|
return m_pMatEmissiveStrength->GetOwningMaterial();
|
|
else if ( m_pMatDetailBlendStrength != NULL )
|
|
return m_pMatDetailBlendStrength->GetOwningMaterial();
|
|
else
|
|
return NULL;
|
|
}
|
|
|
|
EXPOSE_INTERFACE( CVortEmissiveProxy, IMaterialProxy, "VortEmissive" IMATERIAL_PROXY_INTERFACE_VERSION );
|