325 lines
8.1 KiB
C++
325 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 "stdafx.h"
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#include "Box3D.h"
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#include "fgdlib/HelperInfo.h"
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#include "MapAlignedBox.h"
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#include "MapEntity.h"
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#include "Options.h"
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#include "Render2D.h"
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#include "Render3D.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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IMPLEMENT_MAPCLASS(CMapAlignedBox)
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//-----------------------------------------------------------------------------
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// Purpose: Factory function. Used for creating a CMapAlignedBox from a set
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// of string parameters from the FGD file.
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// Input : *pInfo - Pointer to helper info class which gives us information
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// about how to create the class.
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// Output : Returns a pointer to the class, NULL if an error occurs.
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//-----------------------------------------------------------------------------
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CMapClass *CMapAlignedBox::Create(CHelperInfo *pHelperInfo, CMapEntity *pParent)
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{
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if (stricmp(pHelperInfo->GetName(), "wirebox") == 0)
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{
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const char *pMinsKeyName, *pMaxsKeyName;
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if (((pMinsKeyName = pHelperInfo->GetParameter(0)) != NULL) &&
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((pMaxsKeyName = pHelperInfo->GetParameter(1)) != NULL))
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{
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CMapAlignedBox *pBox = new CMapAlignedBox(pMinsKeyName, pMaxsKeyName);
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pBox->m_bWireframe = true;
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return pBox;
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}
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else
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{
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return NULL;
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}
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}
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else
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{
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//
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// Extract the box mins and maxs from the input parameter list.
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//
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Vector Mins;
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Vector Maxs;
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int nParam = 0;
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int nCount = pHelperInfo->GetParameterCount();
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for (int i = 0; i < nCount; i++)
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{
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const char *pszParam = pHelperInfo->GetParameter(i);
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if (nParam < 3)
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{
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Mins[nParam] = atof(pszParam);
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}
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else if (nParam < 6)
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{
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Maxs[nParam % 3] = atof(pszParam);
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}
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else
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{
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break;
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}
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nParam++;
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}
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CMapAlignedBox *pBox = NULL;
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//
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// If we got enough parameters to define the box, create it.
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//
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if (nParam >= 6)
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{
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pBox = new CMapAlignedBox(Mins, Maxs);
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}
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return(pBox);
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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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CMapAlignedBox::CMapAlignedBox(void)
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{
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m_bUseKeyName = false;
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m_bWireframe = false;
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m_Mins.Init();
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m_Maxs.Init();
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : pfMins -
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// pfMaxs -
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//-----------------------------------------------------------------------------
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CMapAlignedBox::CMapAlignedBox(Vector &Mins, Vector &Maxs)
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{
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m_bUseKeyName = false;
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m_bWireframe = false;
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m_Mins = Mins;
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m_Maxs = Maxs;
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : *pMinsKeyName -
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// *pMaxsKeyName -
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//-----------------------------------------------------------------------------
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CMapAlignedBox::CMapAlignedBox(const char *pMinsKeyName, const char *pMaxsKeyName)
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{
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m_bUseKeyName = true;
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m_bWireframe = false;
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strncpy(m_MinsKeyName, pMinsKeyName, sizeof(m_MinsKeyName)-1);
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strncpy(m_MaxsKeyName, pMaxsKeyName, sizeof(m_MaxsKeyName)-1);
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m_MinsKeyName[sizeof(m_MinsKeyName)-1] = 0;
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m_MaxsKeyName[sizeof(m_MaxsKeyName)-1] = 0;
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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//-----------------------------------------------------------------------------
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CMapAlignedBox::~CMapAlignedBox(void)
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{
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : bFullUpdate -
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//-----------------------------------------------------------------------------
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void CMapAlignedBox::CalcBounds(BOOL bFullUpdate)
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{
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Vector AbsMins = m_Origin + m_Mins;
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Vector AbsMaxs = m_Origin + m_Maxs;
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m_Render2DBox.ResetBounds();
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m_Render2DBox.UpdateBounds(AbsMins, AbsMaxs);
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m_CullBox = m_Render2DBox;
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m_BoundingBox = m_Render2DBox;
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Output : CMapClass
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//-----------------------------------------------------------------------------
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CMapClass *CMapAlignedBox::Copy(bool bUpdateDependencies)
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{
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CMapAlignedBox *pCopy = new CMapAlignedBox;
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if (pCopy != NULL)
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{
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pCopy->CopyFrom(this, bUpdateDependencies);
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}
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return(pCopy);
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : pObject -
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// Output : CMapClass
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//-----------------------------------------------------------------------------
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CMapClass *CMapAlignedBox::CopyFrom(CMapClass *pObject, bool bUpdateDependencies)
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{
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Assert(pObject->IsMapClass(MAPCLASS_TYPE(CMapAlignedBox)));
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CMapAlignedBox *pFrom = (CMapAlignedBox *)pObject;
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CMapClass::CopyFrom(pObject, bUpdateDependencies);
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m_bUseKeyName = pFrom->m_bUseKeyName;
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m_bWireframe = pFrom->m_bWireframe;
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strncpy(m_MinsKeyName, pFrom->m_MinsKeyName, sizeof(m_MinsKeyName)-1);
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strncpy(m_MaxsKeyName, pFrom->m_MaxsKeyName, sizeof(m_MaxsKeyName)-1);
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m_MinsKeyName[sizeof(pFrom->m_MinsKeyName)-1] = 0;
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m_MaxsKeyName[sizeof(pFrom->m_MaxsKeyName)-1] = 0;
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m_Mins = pFrom->m_Mins;
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m_Maxs = pFrom->m_Maxs;
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return(this);
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : pRender -
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//-----------------------------------------------------------------------------
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void CMapAlignedBox::Render2D(CRender2D *pRender)
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{
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Vector vecMins, vecMaxs;
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GetRender2DBox(vecMins, vecMaxs);
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if (!IsSelected())
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{
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pRender->SetDrawColor( r, g, b);
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pRender->SetHandleColor( r, g, b);
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}
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else
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{
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pRender->SetDrawColor( GetRValue(Options.colors.clrSelection), GetGValue(Options.colors.clrSelection), GetBValue(Options.colors.clrSelection) );
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pRender->SetHandleColor( GetRValue(Options.colors.clrSelection), GetGValue(Options.colors.clrSelection), GetBValue(Options.colors.clrSelection) );
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}
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// Draw the bounding box.
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pRender->DrawBox( vecMins, vecMaxs );
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//
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// Draw center handle.
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//
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if ( pRender->IsActiveView() )
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{
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Vector2D pt, pt2;
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pRender->TransformPoint(pt, vecMins);
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pRender->TransformPoint(pt2, vecMaxs);
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int sizex = abs(pt.x - pt2.x)+1;
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int sizey = abs(pt.y - pt2.y)+1;
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// dont draw handle if object is too small
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if ( sizex > 6 && sizey > 6 )
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{
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pRender->SetHandleStyle( HANDLE_RADIUS, CRender::HANDLE_CROSS );
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pRender->DrawHandle( (vecMins+vecMaxs)/2 );
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}
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}
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : pRender -
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//-----------------------------------------------------------------------------
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void CMapAlignedBox::Render3D(CRender3D *pRender)
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{
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if (!m_bWireframe)
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{
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pRender->BeginRenderHitTarget(this);
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pRender->RenderBox(m_CullBox.bmins, m_CullBox.bmaxs, r, g, b, GetSelectionState());
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pRender->EndRenderHitTarget();
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}
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else if (GetSelectionState() != SELECT_NONE)
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{
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pRender->RenderWireframeBox(m_CullBox.bmins, m_CullBox.bmaxs, 255, 255, 0);
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}
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : File -
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// bRMF -
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// Output : int
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//-----------------------------------------------------------------------------
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int CMapAlignedBox::SerializeRMF(std::fstream &File, BOOL bRMF)
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{
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return(0);
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : File -
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// bRMF -
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// Output : int
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//-----------------------------------------------------------------------------
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int CMapAlignedBox::SerializeMAP(std::fstream &File, BOOL bRMF)
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{
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return(0);
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}
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//-----------------------------------------------------------------------------
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// Purpose:
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// Input : key -
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// value -
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//-----------------------------------------------------------------------------
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void CMapAlignedBox::OnParentKeyChanged( const char* key, const char* value )
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{
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if (!m_bUseKeyName)
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{
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return;
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}
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if (stricmp(key, m_MinsKeyName) == 0)
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{
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sscanf(value, "%f %f %f", &m_Mins[0], &m_Mins[1], &m_Mins[2]);
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}
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else if (stricmp(key, m_MaxsKeyName) == 0)
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{
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sscanf(value, "%f %f %f", &m_Maxs[0], &m_Maxs[1], &m_Maxs[2]);
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}
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PostUpdate(Notify_Changed);
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}
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