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403 lines
11 KiB
C++
403 lines
11 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 "tier0/vprof.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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CClientThinkList g_ClientThinkList;
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CClientThinkList::CClientThinkList()
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{
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}
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CClientThinkList::~CClientThinkList()
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{
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}
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//-----------------------------------------------------------------------------
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// Methods of IGameSystem
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//-----------------------------------------------------------------------------
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bool CClientThinkList::Init()
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{
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m_nIterEnum = 0;
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m_bInThinkLoop = false;
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return true;
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}
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void CClientThinkList::Shutdown()
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{
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}
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void CClientThinkList::LevelInitPreEntity()
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{
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m_nIterEnum = 0;
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}
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void CClientThinkList::LevelShutdownPreEntity()
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{
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}
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void CClientThinkList::LevelShutdownPostEntity()
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{
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}
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void CClientThinkList::PreRender()
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{
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}
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void CClientThinkList::Update( float frametime )
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{
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}
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//-----------------------------------------------------------------------------
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// Sets the client think
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//-----------------------------------------------------------------------------
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void CClientThinkList::SetNextClientThink( ClientThinkHandle_t hThink, float flNextTime )
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{
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if ( hThink == INVALID_THINK_HANDLE )
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return;
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if ( m_bInThinkLoop )
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{
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// Queue up all changes
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int i = m_aChangeList.AddToTail();
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m_aChangeList[i].m_hEnt = INVALID_CLIENTENTITY_HANDLE;
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m_aChangeList[i].m_hThink = hThink;
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m_aChangeList[i].m_flNextTime = flNextTime;
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return;
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}
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if ( flNextTime == CLIENT_THINK_NEVER )
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{
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RemoveThinkable( hThink );
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}
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else
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{
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GetThinkEntry( hThink )->m_flNextClientThink = flNextTime;
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}
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}
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void CClientThinkList::SetNextClientThink( ClientEntityHandle_t hEnt, float flNextTime )
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{
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if ( flNextTime == CLIENT_THINK_NEVER )
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{
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RemoveThinkable( hEnt );
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return;
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}
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IClientThinkable *pThink = ClientEntityList().GetClientThinkableFromHandle( hEnt );
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if ( !pThink )
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return;
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ClientThinkHandle_t hThink = pThink->GetThinkHandle();
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if ( m_bInThinkLoop )
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{
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// Queue up all changes
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int i = m_aChangeList.AddToTail();
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m_aChangeList[i].m_hEnt = hEnt;
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m_aChangeList[i].m_hThink = hThink;
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m_aChangeList[i].m_flNextTime = flNextTime;
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return;
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}
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// Add it to the list if it's not already in there.
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if ( hThink == INVALID_THINK_HANDLE )
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{
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hThink = (ClientThinkHandle_t)(uintp)m_ThinkEntries.AddToTail();
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pThink->SetThinkHandle( hThink );
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ThinkEntry_t *pEntry = GetThinkEntry( hThink );
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pEntry->m_hEnt = hEnt;
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pEntry->m_nIterEnum = -1;
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pEntry->m_flLastClientThink = 0.0f;
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}
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Assert( GetThinkEntry( hThink )->m_hEnt == hEnt );
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GetThinkEntry( hThink )->m_flNextClientThink = flNextTime;
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}
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//-----------------------------------------------------------------------------
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// Removes the thinkable from the list
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//-----------------------------------------------------------------------------
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void CClientThinkList::RemoveThinkable( ClientThinkHandle_t hThink )
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{
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if ( hThink == INVALID_THINK_HANDLE )
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return;
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if ( m_bInThinkLoop )
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{
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// Queue up all changes
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int i = m_aChangeList.AddToTail();
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m_aChangeList[i].m_hEnt = INVALID_CLIENTENTITY_HANDLE;
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m_aChangeList[i].m_hThink = hThink;
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m_aChangeList[i].m_flNextTime = CLIENT_THINK_NEVER;
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return;
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}
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ThinkEntry_t *pEntry = GetThinkEntry( hThink );
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IClientThinkable *pThink = ClientEntityList().GetClientThinkableFromHandle( pEntry->m_hEnt );
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if ( pThink )
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{
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pThink->SetThinkHandle( INVALID_THINK_HANDLE );
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}
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m_ThinkEntries.Remove( (unsigned long)hThink );
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}
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//-----------------------------------------------------------------------------
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// Removes the thinkable from the list
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//-----------------------------------------------------------------------------
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void CClientThinkList::RemoveThinkable( ClientEntityHandle_t hEnt )
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{
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IClientThinkable *pThink = ClientEntityList().GetClientThinkableFromHandle( hEnt );
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if ( pThink )
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{
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ClientThinkHandle_t hThink = pThink->GetThinkHandle();
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if ( hThink != INVALID_THINK_HANDLE )
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{
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Assert( GetThinkEntry( hThink )->m_hEnt == hEnt );
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RemoveThinkable( hThink );
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}
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}
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}
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//-----------------------------------------------------------------------------
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// Performs the think function
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//-----------------------------------------------------------------------------
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void CClientThinkList::PerformThinkFunction( ThinkEntry_t *pEntry, float flCurtime )
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{
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IClientThinkable *pThink = ClientEntityList().GetClientThinkableFromHandle( pEntry->m_hEnt );
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if ( !pThink )
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{
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RemoveThinkable( pEntry->m_hEnt );
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return;
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}
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if ( pEntry->m_flNextClientThink == CLIENT_THINK_ALWAYS )
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{
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// NOTE: The Think function here could call SetNextClientThink
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// which would cause it to be removed + readded into the list
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pThink->ClientThink();
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}
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else if ( pEntry->m_flNextClientThink == FLT_MAX )
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{
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// This is an entity that doesn't need to think again; remove it
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RemoveThinkable( pEntry->m_hEnt );
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}
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else
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{
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Assert( pEntry->m_flNextClientThink <= flCurtime );
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// Indicate we're not going to think again
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pEntry->m_flNextClientThink = FLT_MAX;
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// NOTE: The Think function here could call SetNextClientThink
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// which would cause it to be readded into the list
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pThink->ClientThink();
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}
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// Set this after the Think calls in case they look at LastClientThink
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pEntry->m_flLastClientThink = flCurtime;
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}
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//-----------------------------------------------------------------------------
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// Add entity to frame think list
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//-----------------------------------------------------------------------------
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void CClientThinkList::AddEntityToFrameThinkList( ThinkEntry_t *pEntry, bool bAlwaysChain, int &nCount, ThinkEntry_t **ppFrameThinkList )
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{
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// We may already have processed this owing to hierarchy rules
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if ( pEntry->m_nIterEnum == m_nIterEnum )
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return;
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// If we're not thinking this frame, we don't have to worry about thinking after our parents
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bool bThinkThisInterval = ( pEntry->m_flNextClientThink == CLIENT_THINK_ALWAYS ) ||
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( pEntry->m_flNextClientThink <= gpGlobals->curtime );
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// This logic makes it so that if a child thinks,
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// *all* hierarchical parents + grandparents will think first, even if some
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// of the parents don't need to think this frame
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if ( !bThinkThisInterval && !bAlwaysChain )
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return;
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// Respect hierarchy
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C_BaseEntity *pEntity = ClientEntityList().GetBaseEntityFromHandle( pEntry->m_hEnt );
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if ( pEntity )
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{
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C_BaseEntity *pParent = pEntity->GetMoveParent();
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if ( pParent && (pParent->GetThinkHandle() != INVALID_THINK_HANDLE) )
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{
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ThinkEntry_t *pParentEntry = GetThinkEntry( pParent->GetThinkHandle() );
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AddEntityToFrameThinkList( pParentEntry, true, nCount, ppFrameThinkList );
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}
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}
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if ( !bThinkThisInterval )
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return;
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// Add the entry into the list
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pEntry->m_nIterEnum = m_nIterEnum;
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ppFrameThinkList[nCount++] = pEntry;
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}
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//-----------------------------------------------------------------------------
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// Think for all entities that need it
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//-----------------------------------------------------------------------------
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void CClientThinkList::PerformThinkFunctions()
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{
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VPROF_("Client Thinks", 1, VPROF_BUDGETGROUP_CLIENT_SIM, false, BUDGETFLAG_CLIENT);
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int nMaxList = m_ThinkEntries.Count();
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if ( nMaxList == 0 )
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return;
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++m_nIterEnum;
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// Build a list of entities to think this frame, in order of hierarchy.
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// Do this because the list may be modified during the thinking and also to
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// prevent bad situations where an entity can think more than once in a frame.
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ThinkEntry_t **ppThinkEntryList = (ThinkEntry_t**)stackalloc( nMaxList * sizeof(ThinkEntry_t*) );
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int nThinkCount = 0;
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for ( unsigned short iCur=m_ThinkEntries.Head(); iCur != m_ThinkEntries.InvalidIndex(); iCur = m_ThinkEntries.Next( iCur ) )
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{
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AddEntityToFrameThinkList( &m_ThinkEntries[iCur], false, nThinkCount, ppThinkEntryList );
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Assert( nThinkCount <= nMaxList );
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}
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// While we're in the loop, no changes to the think list are allowed
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m_bInThinkLoop = true;
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// Perform thinks on all entities that need it
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int i;
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for ( i = 0; i < nThinkCount; ++i )
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{
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PerformThinkFunction( ppThinkEntryList[i], gpGlobals->curtime );
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}
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m_bInThinkLoop = false;
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// Apply changes to the think list
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int nCount = m_aChangeList.Count();
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for ( i = 0; i < nCount; ++i )
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{
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ClientThinkHandle_t hThink = m_aChangeList[i].m_hThink;
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if ( hThink != INVALID_THINK_HANDLE )
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{
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// This can happen if the same think handle was removed twice
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if ( !m_ThinkEntries.IsInList( (unsigned long)hThink ) )
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continue;
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// NOTE: This is necessary for the case where the client entity handle
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// is slammed to NULL during a think interval; the hThink will get stuck
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// in the list and can never leave.
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SetNextClientThink( hThink, m_aChangeList[i].m_flNextTime );
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}
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else
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{
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SetNextClientThink( m_aChangeList[i].m_hEnt, m_aChangeList[i].m_flNextTime );
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}
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}
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m_aChangeList.RemoveAll();
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// Clear out the client-side entity deletion list.
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CleanUpDeleteList();
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}
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//-----------------------------------------------------------------------------
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// Queued-up entity deletion
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//-----------------------------------------------------------------------------
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void CClientThinkList::AddToDeleteList( ClientEntityHandle_t hEnt )
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{
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// Sanity check!
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Assert( hEnt != ClientEntityList().InvalidHandle() );
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if ( hEnt == ClientEntityList().InvalidHandle() )
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return;
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// Check to see if entity is networkable -- don't let it release!
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C_BaseEntity *pEntity = ClientEntityList().GetBaseEntityFromHandle( hEnt );
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if ( pEntity )
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{
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// Check to see if the entity is already being removed!
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if ( pEntity->IsMarkedForDeletion() )
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return;
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// Don't add networkable entities to delete list -- the server should
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// take care of this. The delete list is for client-side only entities.
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if ( !pEntity->GetClientNetworkable() )
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{
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m_aDeleteList.AddToTail( hEnt );
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pEntity->SetRemovalFlag( true );
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}
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}
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}
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void CClientThinkList::RemoveFromDeleteList( ClientEntityHandle_t hEnt )
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{
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// Sanity check!
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Assert( hEnt != ClientEntityList().InvalidHandle() );
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if ( hEnt == ClientEntityList().InvalidHandle() )
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return;
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int nSize = m_aDeleteList.Count();
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for ( int iHandle = 0; iHandle < nSize; ++iHandle )
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{
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if ( m_aDeleteList[iHandle] == hEnt )
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{
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m_aDeleteList[iHandle] = ClientEntityList().InvalidHandle();
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C_BaseEntity *pEntity = ClientEntityList().GetBaseEntityFromHandle( hEnt );
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if ( pEntity )
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{
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pEntity->SetRemovalFlag( false );
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}
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}
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}
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}
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void CClientThinkList::CleanUpDeleteList()
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{
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int nThinkCount = m_aDeleteList.Count();
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for ( int iThink = 0; iThink < nThinkCount; ++iThink )
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{
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ClientEntityHandle_t handle = m_aDeleteList[iThink];
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if ( handle != ClientEntityList().InvalidHandle() )
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{
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C_BaseEntity *pEntity = ClientEntityList().GetBaseEntityFromHandle( handle );
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if ( pEntity )
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{
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pEntity->SetRemovalFlag( false );
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}
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IClientThinkable *pThink = ClientEntityList().GetClientThinkableFromHandle( handle );
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if ( pThink )
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{
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pThink->Release();
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}
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}
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}
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m_aDeleteList.RemoveAll();
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}
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