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/*==LICENSE==*
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CyanWorlds.com Engine - MMOG client, server and tools
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Copyright (C) 2011 Cyan Worlds, Inc.
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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Additional permissions under GNU GPL version 3 section 7
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If you modify this Program, or any covered work, by linking or
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combining it with any of RAD Game Tools Bink SDK, Autodesk 3ds Max SDK,
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NVIDIA PhysX SDK, Microsoft DirectX SDK, OpenSSL library, Independent
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JPEG Group JPEG library, Microsoft Windows Media SDK, or Apple QuickTime SDK
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(or a modified version of those libraries),
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containing parts covered by the terms of the Bink SDK EULA, 3ds Max EULA,
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PhysX SDK EULA, DirectX SDK EULA, OpenSSL and SSLeay licenses, IJG
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JPEG Library README, Windows Media SDK EULA, or QuickTime SDK EULA, the
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licensors of this Program grant you additional
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permission to convey the resulting work. Corresponding Source for a
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non-source form of such a combination shall include the source code for
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the parts of OpenSSL and IJG JPEG Library used as well as that of the covered
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work.
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You can contact Cyan Worlds, Inc. by email legal@cyan.com
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or by snail mail at:
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Cyan Worlds, Inc.
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14617 N Newport Hwy
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Mead, WA 99021
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*==LICENSE==*/
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#include "hsTypes.h"
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#include "plLODMipmap.h"
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#include "hsResMgr.h"
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#include "../pnKeyedObject/plKey.h"
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#include "../pnKeyedObject/plUoid.h"
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#include "../pnMessage/plRefMsg.h"
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#include "../plPipeline/hsGDeviceRef.h"
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plLODMipmap::plLODMipmap()
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: fBase(nil),
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fLOD(0)
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{
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int i;
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for( i = 0; i < kNumLODs; i++ )
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fDeviceRefs[i] = nil;
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}
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plLODMipmap::plLODMipmap(plMipmap* mip)
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: fBase(nil),
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fLOD(0)
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{
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int i;
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for( i = 0; i < kNumLODs; i++ )
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fDeviceRefs[i] = nil;
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hsgResMgr::ResMgr()->NewKey(mip->GetKey()->GetName(), this, mip->GetKey()->GetUoid().GetLocation());
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// Need some kind of reffing assignment for the mipmap here
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fBase = mip;
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fLevelSizes = TRACKED_NEW UInt32[fBase->GetNumLevels()];
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ISetup();
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hsgResMgr::ResMgr()->AddViaNotify(mip->GetKey(), TRACKED_NEW plGenRefMsg(GetKey(), plRefMsg::kOnCreate, -1, kRefBase), plRefFlags::kActiveRef);
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}
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plLODMipmap::~plLODMipmap()
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{
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// And matching unreffing of the mipmap here.
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fImage = nil;
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int i;
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for( i = 0; i < kNumLODs; i++ )
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{
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hsRefCnt_SafeUnRef(fDeviceRefs[i]);
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fDeviceRefs[i] = nil;
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}
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}
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hsGDeviceRef* plLODMipmap::GetDeviceRef() const
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{
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return fDeviceRefs[GetLOD()];
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}
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void plLODMipmap::SetDeviceRef( hsGDeviceRef *const devRef )
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{
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hsRefCnt_SafeAssign(fDeviceRefs[GetLOD()], devRef);
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}
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void plLODMipmap::SetLOD(int lod)
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{
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hsAssert(fBase, "UnInitialized");
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const kMaxLOD = 5;
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if( lod > kMaxLOD )
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lod = kMaxLOD;
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if( lod >= fBase->GetNumLevels() )
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lod = fBase->GetNumLevels() - 1;
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if( fLOD != lod )
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{
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fLOD = lod;
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ISetup();
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}
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}
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void plLODMipmap::ISetup()
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{
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hsAssert(fBase, "UnInitialized");
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hsAssert(fBase->GetNumLevels() > GetLOD(), "Skipping all mip levels");
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fBase->SetCurrLevel(GetLOD());
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// plBitmap
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fPixelSize = fBase->GetPixelSize();
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// fSpace = fBase->fSpace;
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fFlags = fBase->GetFlags();
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fCompressionType = fBase->fCompressionType;
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if( !fBase->IsCompressed() )
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{
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fUncompressedInfo = fBase->fUncompressedInfo;
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}
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else
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{
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fDirectXInfo = fBase->fDirectXInfo;
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}
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// plMipmap
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fImage = fBase->GetCurrLevelPtr();
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fWidth = fBase->GetCurrWidth();
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fHeight = fBase->GetCurrHeight();
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fRowBytes = fBase->GetRowBytes();
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if( !fLevelSizes )
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fLevelSizes = TRACKED_NEW UInt32[fBase->GetNumLevels()];
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fNumLevels = fBase->GetNumLevels() - GetLOD();
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fNumLevels = 1;
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fTotalSize = 0;
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int i;
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for( i = 0; i < fNumLevels; i++ )
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{
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fLevelSizes[i] = fBase->GetLevelSize(i + GetLOD());
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fTotalSize += fBase->GetLevelSize(i + GetLOD());
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}
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ISetupCurrLevel();
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IMarkDirty();
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}
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void plLODMipmap::ISetupCurrLevel()
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{
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fCurrLevelPtr = fBase->GetCurrLevelPtr();
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fCurrLevel = (UInt8)(fBase->GetCurrLevel());
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fCurrLevelWidth = fBase->GetCurrWidth();
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fCurrLevelHeight = fBase->GetCurrHeight();
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fCurrLevelRowBytes = fBase->GetRowBytes();
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}
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void plLODMipmap::INilify()
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{
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fBase = nil;
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fPixelSize = 0;
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fSpace = kNoSpace;
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fFlags = 0;
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fCompressionType = kUncompressed;
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fUncompressedInfo.fType = UncompressedInfo::kRGB8888;
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// plMipmap
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fImage = nil;
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fWidth = 0;
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fHeight = 0;
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fRowBytes = 0;
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fNumLevels = 0;
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fTotalSize = 0;
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fCurrLevelPtr = nil;
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fCurrLevel = 0;
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fCurrLevelWidth = 0;
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fCurrLevelHeight = 0;
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fCurrLevelRowBytes = 0;
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delete [] fLevelSizes;
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fLevelSizes = nil;
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int i;
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for( i = 0; i < kNumLODs; i++ )
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{
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hsRefCnt_SafeUnRef(fDeviceRefs[i]);
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fDeviceRefs[i] = nil;
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}
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}
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void plLODMipmap::IMarkDirty()
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{
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int i;
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for( i = 0; i < kNumLODs; i++ )
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{
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if( fDeviceRefs[i] )
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fDeviceRefs[i]->SetDirty(true);
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}
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}
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void plLODMipmap::SetCurrLevel(UInt8 level)
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{
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fBase->SetCurrLevel(level + GetLOD());
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ISetupCurrLevel();
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}
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void plLODMipmap::Reset()
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{
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fBase->Reset();
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ISetup();
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}
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void plLODMipmap::ScaleNicely(UInt32 *destPtr, UInt16 destWidth, UInt16 destHeight,
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UInt16 destStride, plMipmap::ScaleFilter filter) const
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{
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fBase->ScaleNicely(destPtr, destWidth, destHeight, destStride, filter);
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}
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hsBool plLODMipmap::ResizeNicely(UInt16 newWidth, UInt16 newHeight, plMipmap::ScaleFilter filter)
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{
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hsBool retVal = fBase->ResizeNicely(newWidth, newHeight, filter);
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ISetup();
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return retVal;
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}
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void plLODMipmap::CopyFrom(const plMipmap *source)
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{
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fBase->CopyFrom(source);
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ISetup();
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}
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void plLODMipmap::Composite(plMipmap *source, UInt16 x, UInt16 y, CompositeOptions *options)
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{
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fBase->Composite(source, x, y, options);
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IMarkDirty();
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}
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hsBool plLODMipmap::MsgReceive(plMessage *msg)
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{
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plGenRefMsg* ref = plGenRefMsg::ConvertNoRef(msg);
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if( ref )
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{
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if( ref->fType == kRefBase )
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{
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INilify();
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if( ref->GetContext() & (plRefMsg::kOnCreate|plRefMsg::kOnRequest|plRefMsg::kOnReplace) )
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{
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fBase = plMipmap::ConvertNoRef(ref->GetRef());
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ISetup();
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}
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return true;
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}
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}
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return plMipmap::MsgReceive(msg);
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}
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void plLODMipmap::Read(hsStream *s, hsResMgr *mgr)
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{
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INilify();
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hsKeyedObject::Read(s, mgr);
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mgr->ReadKeyNotifyMe(s, TRACKED_NEW plGenRefMsg(GetKey(), plRefMsg::kOnCreate, -1, kRefBase), plRefFlags::kActiveRef); // fBase
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}
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void plLODMipmap::Write(hsStream *s, hsResMgr *mgr)
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{
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hsKeyedObject::Write(s, mgr);
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mgr->WriteKey(s, fBase);
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}
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