mirror of
https://github.com/nillerusr/source-engine.git
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250 lines
6.7 KiB
C++
250 lines
6.7 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 "fx_quad.h"
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#include "fx.h"
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class C_MortarShell : public C_BaseEntity
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{
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public:
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DECLARE_CLASS( C_MortarShell, C_BaseEntity );
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DECLARE_CLIENTCLASS();
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void OnDataChanged( DataUpdateType_t updateType );
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int DrawModel( int flags );
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RenderGroup_t GetRenderGroup( void ) { return RENDER_GROUP_TRANSLUCENT_ENTITY; }
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private:
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void AddRisingParticles( float flPerc );
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void AddExplodingParticles( float flPerc );
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inline float GetStartPerc( void );
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inline float GetEndPerc( void );
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CSmartPtr<CSimpleEmitter> m_pEmitter;
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TimedEvent m_ParticleEvent;
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float m_flLifespan;
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float m_flRadius;
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float m_flStarttime;
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Vector m_vecSurfaceNormal;
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};
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IMPLEMENT_CLIENTCLASS_DT( C_MortarShell, DT_MortarShell, CMortarShell )
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RecvPropFloat( RECVINFO( m_flLifespan ) ),
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RecvPropFloat( RECVINFO( m_flRadius ) ),
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RecvPropVector( RECVINFO( m_vecSurfaceNormal ) ),
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END_RECV_TABLE()
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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_MortarShell::OnDataChanged( DataUpdateType_t updateType )
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{
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BaseClass::OnDataChanged( updateType );
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if ( updateType == DATA_UPDATE_CREATED )
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{
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m_flStarttime = gpGlobals->curtime;
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AddToLeafSystem( RENDER_GROUP_TRANSLUCENT_ENTITY );
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m_pEmitter = CSimpleEmitter::Create( "C_EntityDissolve" );
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m_pEmitter->SetSortOrigin( GetAbsOrigin() );
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m_ParticleEvent.Init( 128 );
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}
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : flPerc -
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//-----------------------------------------------------------------------------
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void C_MortarShell::AddRisingParticles( float flPerc )
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{
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SimpleParticle *sParticle;
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Vector offset;
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float radius = m_flRadius * 0.25f * flPerc;
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float val = RemapValClamped( gpGlobals->curtime, m_flStarttime, m_flStarttime + m_flLifespan, 0.0f, 1.0f );
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float flCur = gpGlobals->frametime;
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// Anime ground effects
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while ( m_ParticleEvent.NextEvent( flCur ) )
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{
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offset.x = random->RandomFloat( -radius, radius );
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offset.y = random->RandomFloat( -radius, radius );
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offset.z = random->RandomFloat( -8.0f, 8.0f );
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offset += GetAbsOrigin();
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sParticle = (SimpleParticle *) m_pEmitter->AddParticle( sizeof(SimpleParticle), m_pEmitter->GetPMaterial( "effects/spark" ), offset );
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if ( sParticle == NULL )
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return;
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sParticle->m_vecVelocity = Vector( Helper_RandomFloat( -4.0f, 4.0f ), Helper_RandomFloat( -4.0f, 4.0f ), Helper_RandomFloat( 32.0f, 256.0f ) * Bias( val, 0.25f ) );
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sParticle->m_uchStartSize = random->RandomFloat( 4, 8 ) * flPerc;
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sParticle->m_flDieTime = random->RandomFloat( 0.5f, 1.0f );
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sParticle->m_flLifetime = 0.0f;
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sParticle->m_flRoll = Helper_RandomInt( 0, 360 );
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float alpha = 255 * flPerc;
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sParticle->m_flRollDelta = Helper_RandomFloat( -8.0f * flPerc, 8.0f * flPerc );
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sParticle->m_uchColor[0] = alpha;
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sParticle->m_uchColor[1] = alpha;
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sParticle->m_uchColor[2] = alpha;
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sParticle->m_uchStartAlpha = alpha;
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sParticle->m_uchEndAlpha = 0;
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sParticle->m_uchEndSize = 0;
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}
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : flPerc -
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//-----------------------------------------------------------------------------
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void C_MortarShell::AddExplodingParticles( float flPerc )
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{
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SimpleParticle *sParticle;
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Vector offset;
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float radius = 48.0f * flPerc;
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float flCur = gpGlobals->frametime;
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// Anime ground effects
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while ( m_ParticleEvent.NextEvent( flCur ) )
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{
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offset.x = random->RandomFloat( -radius, radius );
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offset.y = random->RandomFloat( -radius, radius );
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offset.z = random->RandomFloat( -8.0f, 8.0f );
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offset += GetAbsOrigin();
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sParticle = (SimpleParticle *) m_pEmitter->AddParticle( sizeof(SimpleParticle), m_pEmitter->GetPMaterial( "effects/spark" ), offset );
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if ( sParticle == NULL )
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return;
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sParticle->m_vecVelocity = RandomVector( -1.0f, 1.0f ) + Vector( 0, 0, 1 );
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sParticle->m_vecVelocity *= ( 750.0f * flPerc );
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sParticle->m_uchStartSize = random->RandomFloat( 2, 4 ) * flPerc;
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sParticle->m_flDieTime = random->RandomFloat( 0.25f, 0.5f );
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sParticle->m_flLifetime = 0.0f;
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sParticle->m_flRoll = Helper_RandomInt( 0, 360 );
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float alpha = 255 * flPerc;
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sParticle->m_flRollDelta = Helper_RandomFloat( -8.0f * flPerc, 8.0f * flPerc );
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sParticle->m_uchColor[0] = alpha;
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sParticle->m_uchColor[1] = alpha;
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sParticle->m_uchColor[2] = alpha;
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sParticle->m_uchStartAlpha = alpha;
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sParticle->m_uchEndAlpha = 0;
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sParticle->m_uchEndSize = 0;
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}
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Output : inline float
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//-----------------------------------------------------------------------------
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inline float C_MortarShell::GetStartPerc( void )
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{
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float val = RemapValClamped( gpGlobals->curtime, m_flStarttime, m_flStarttime + m_flLifespan, 0.0f, 1.0f );
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return ( Gain( val, 0.2f ) );
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Output : inline float
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//-----------------------------------------------------------------------------
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inline float C_MortarShell::GetEndPerc( void )
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{
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float val = RemapValClamped( gpGlobals->curtime, m_flStarttime + m_flLifespan, m_flStarttime + m_flLifespan + 1.0f, 1.0f, 0.0f );
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return ( Gain( val, 0.75f ) );
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}
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#define ALPHA_MIN 0.0f
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#define ALPHA_MAX 1.0f
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#define SCALE_MIN 8
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#define SCALE_MAX 200
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//-----------------------------------------------------------------------------
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// Purpose:
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//-----------------------------------------------------------------------------
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int C_MortarShell::DrawModel( int flags )
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{
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if ( gpGlobals->frametime <= 0.0f )
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return 0;
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float flPerc;
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bool ending;
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// See if we're in the beginning phase
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if ( gpGlobals->curtime < ( m_flStarttime + m_flLifespan ) )
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{
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flPerc = GetStartPerc();
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ending = false;
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}
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else
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{
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flPerc = GetEndPerc();
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ending = true;
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}
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float flAlpha = ALPHA_MIN + ( ( ALPHA_MAX - ALPHA_MIN ) * flPerc );
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float flScale = ( ending ) ? m_flRadius : ( (m_flRadius*0.1f)+ ( ( m_flRadius - (m_flRadius*0.1f) ) * flPerc ) );
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// Do the ground effect
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FX_AddQuad( GetAbsOrigin() + ( m_vecSurfaceNormal * 2.0f ),
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m_vecSurfaceNormal,
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flScale,
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flScale,
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1.0f,
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flAlpha,
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flAlpha,
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1.0f,
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0,
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0,
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Vector( 1.0f, 1.0f, 1.0f ),
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0.0001f,
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"effects/combinemuzzle2_nocull",
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0 );
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if ( !ending )
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{
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// Add extra effects on startup
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AddRisingParticles( flPerc );
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}
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else
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{
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// Add exploding particles after the impact
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AddExplodingParticles( flPerc );
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}
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return 1;
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}
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