254 lines
7.8 KiB
C++
254 lines
7.8 KiB
C++
//===== Copyright © 1996-2005, Valve Corporation, All rights reserved. ======//
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//
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// Purpose:
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//
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// $Workfile: $
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// $NoKeywords: $
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//===========================================================================//
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#include "materialsystem/MaterialSystemUtil.h"
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#include "materialsystem/imaterial.h"
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#include "materialsystem/itexture.h"
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#include "materialsystem/imaterialsystem.h"
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#include "tier1/KeyValues.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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//-----------------------------------------------------------------------------
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// Little utility class to deal with material references
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//-----------------------------------------------------------------------------
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//-----------------------------------------------------------------------------
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// constructor, destructor
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//-----------------------------------------------------------------------------
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CMaterialReference::CMaterialReference( char const* pMaterialName, const char *pTextureGroupName, bool bComplain ) : m_pMaterial( 0 )
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{
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if ( pMaterialName )
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{
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Assert( pTextureGroupName );
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Init( pMaterialName, pTextureGroupName, bComplain );
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}
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}
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const CMaterialReference& CMaterialReference::operator=( const CMaterialReference &ref )
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{
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Init( ref.m_pMaterial );
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return *this;
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}
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CMaterialReference::~CMaterialReference()
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{
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Shutdown();
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}
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//-----------------------------------------------------------------------------
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// Attach to a material
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//-----------------------------------------------------------------------------
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void CMaterialReference::Init( char const* pMaterialName, const char *pTextureGroupName, bool bComplain )
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{
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IMaterial *pMaterial = materials->FindMaterial( pMaterialName, pTextureGroupName, bComplain);
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Assert( pMaterial );
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Init( pMaterial );
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}
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void CMaterialReference::Init( const char *pMaterialName, KeyValues *pVMTKeyValues )
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{
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// CreateMaterial has a refcount of 1
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Shutdown();
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m_pMaterial = materials->CreateMaterial( pMaterialName, pVMTKeyValues );
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}
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void CMaterialReference::Init( const char *pMaterialName, const char *pTextureGroupName, KeyValues *pVMTKeyValues )
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{
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IMaterial *pMaterial = materials->FindProceduralMaterial( pMaterialName, pTextureGroupName, pVMTKeyValues );
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Assert( pMaterial );
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Init( pMaterial );
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}
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void CMaterialReference::Init( IMaterial* pMaterial )
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{
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if ( m_pMaterial != pMaterial )
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{
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Shutdown();
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m_pMaterial = pMaterial;
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if ( m_pMaterial )
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{
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m_pMaterial->IncrementReferenceCount();
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}
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}
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}
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void CMaterialReference::Init( CMaterialReference& ref )
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{
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if ( m_pMaterial != ref.m_pMaterial )
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{
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Shutdown();
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m_pMaterial = ref.m_pMaterial;
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if (m_pMaterial)
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{
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m_pMaterial->IncrementReferenceCount();
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}
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}
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}
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//-----------------------------------------------------------------------------
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// Detach from a material
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//-----------------------------------------------------------------------------
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void CMaterialReference::Shutdown( bool bDeleteIfUnreferenced /*=false*/ )
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{
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if ( m_pMaterial && materials )
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{
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m_pMaterial->DecrementReferenceCount();
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if ( bDeleteIfUnreferenced )
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{
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m_pMaterial->DeleteIfUnreferenced();
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}
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m_pMaterial = NULL;
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}
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}
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//-----------------------------------------------------------------------------
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// Little utility class to deal with texture references
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//-----------------------------------------------------------------------------
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//-----------------------------------------------------------------------------
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// constructor, destructor
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//-----------------------------------------------------------------------------
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CTextureReference::CTextureReference( ) : m_pTexture(NULL)
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{
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}
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CTextureReference::CTextureReference( const CTextureReference &ref ) : m_pTexture( NULL )
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{
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Init( ref.m_pTexture );
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}
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const CTextureReference& CTextureReference::operator=( CTextureReference &ref )
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{
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Init( ref.m_pTexture );
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return *this;
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}
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CTextureReference::~CTextureReference( )
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{
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Shutdown();
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}
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//-----------------------------------------------------------------------------
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// Attach to a texture
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//-----------------------------------------------------------------------------
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void CTextureReference::Init( char const* pTextureName, const char *pTextureGroupName, bool bComplain )
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{
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Shutdown();
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m_pTexture = materials->FindTexture( pTextureName, pTextureGroupName, bComplain );
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if ( m_pTexture )
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{
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m_pTexture->IncrementReferenceCount();
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}
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}
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void CTextureReference::Init( ITexture* pTexture )
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{
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if ( m_pTexture != pTexture )
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{
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Shutdown();
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m_pTexture = pTexture;
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if (m_pTexture)
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{
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m_pTexture->IncrementReferenceCount();
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}
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}
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}
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void CTextureReference::InitProceduralTexture( const char *pTextureName, const char *pTextureGroupName, int w, int h, ImageFormat fmt, int nFlags )
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{
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Shutdown();
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m_pTexture = materials->CreateProceduralTexture( pTextureName, pTextureGroupName, w, h, fmt, nFlags );
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// NOTE: The texture reference is already incremented internally above!
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/*
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if ( m_pTexture )
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{
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m_pTexture->IncrementReferenceCount();
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}
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*/
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}
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void CTextureReference::InitRenderTarget( int w, int h, RenderTargetSizeMode_t sizeMode, ImageFormat fmt, MaterialRenderTargetDepth_t depth, bool bHDR, char *pStrOptionalName /* = NULL */ )
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{
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Shutdown();
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int textureFlags = TEXTUREFLAGS_CLAMPS | TEXTUREFLAGS_CLAMPT;
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if ( depth == MATERIAL_RT_DEPTH_ONLY )
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textureFlags |= TEXTUREFLAGS_POINTSAMPLE;
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int renderTargetFlags = bHDR ? CREATERENDERTARGETFLAGS_HDR : 0;
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// NOTE: Refcount returned by CreateRenderTargetTexture is 1
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m_pTexture = materials->CreateNamedRenderTargetTextureEx( pStrOptionalName, w, h, sizeMode, fmt,
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depth, textureFlags, renderTargetFlags );
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Assert( m_pTexture );
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}
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//-----------------------------------------------------------------------------
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// Detach from a texture
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//-----------------------------------------------------------------------------
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void CTextureReference::Shutdown( bool bDeleteIfUnReferenced )
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{
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if ( m_pTexture && materials )
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{
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m_pTexture->DecrementReferenceCount();
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if ( bDeleteIfUnReferenced )
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{
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m_pTexture->DeleteIfUnreferenced();
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}
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m_pTexture = NULL;
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}
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}
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//-----------------------------------------------------------------------------
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// Builds ONLY the system ram render target. Used when caller is explicitly managing.
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// The paired EDRAM surface can be built in an alternate format.
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//-----------------------------------------------------------------------------
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#if defined( _X360 )
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void CTextureReference::InitRenderTargetTexture( int w, int h, RenderTargetSizeMode_t sizeMode, ImageFormat fmt, MaterialRenderTargetDepth_t depth, bool bHDR, char *pStrOptionalName )
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{
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// other variants not implemented yet
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Assert( depth == MATERIAL_RT_DEPTH_NONE || depth == MATERIAL_RT_DEPTH_SHARED );
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Assert( !bHDR );
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int renderTargetFlags = CREATERENDERTARGETFLAGS_NOEDRAM;
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m_pTexture = materials->CreateNamedRenderTargetTextureEx(
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pStrOptionalName,
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w,
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h,
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sizeMode,
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fmt,
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depth,
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TEXTUREFLAGS_CLAMPS | TEXTUREFLAGS_CLAMPT,
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renderTargetFlags );
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Assert( m_pTexture );
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}
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#endif
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//-----------------------------------------------------------------------------
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// Builds ONLY the EDRAM render target surface. Used when caller is explicitly managing.
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// The paired system memory texture can be built in an alternate format.
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//-----------------------------------------------------------------------------
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#if defined( _X360 )
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void CTextureReference::InitRenderTargetSurface( int width, int height, ImageFormat fmt, bool bSameAsTexture, RTMultiSampleCount360_t multiSampleCount )
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{
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// texture has to be created first
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Assert( m_pTexture && m_pTexture->IsRenderTarget() );
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m_pTexture->CreateRenderTargetSurface( width, height, fmt, bSameAsTexture, multiSampleCount );
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}
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#endif
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