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https://port.numenaute.org/aleajactaest/khanat-opennel-code.git
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507 lines
14 KiB
C++
507 lines
14 KiB
C++
// NeL - MMORPG Framework <http://dev.ryzom.com/projects/nel/>
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// Copyright (C) 2010 Winch Gate Property Limited
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//
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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 Affero General Public License as
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// published by the Free Software Foundation, either version 3 of the
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// License, or (at your option) any later version.
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//
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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 Affero General Public License for more details.
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//
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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#include "std3d.h"
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#include "nel/3d/mesh_base.h"
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#include "nel/3d/mesh_base_instance.h"
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#include "nel/3d/lod_character_texture.h"
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#include "nel/3d/visual_collision_mesh.h"
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using namespace std;
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using namespace NLMISC;
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namespace NL3D
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{
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// ***************************************************************************
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CMeshBase::CMeshBase()
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{
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/* ***********************************************
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* WARNING: This Class/Method must be thread-safe (ctor/dtor/serial): no static access for instance
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* It can be loaded/called through CAsyncFileManager for instance
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* ***********************************************/
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_UseLightingLocalAttenuation= false;
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// To have same functionnality than previous version, init to identity.
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_DefaultPos.setDefaultValue(CVector(0,0,0));
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_DefaultPivot.setDefaultValue(CVector(0,0,0));
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_DefaultRotEuler.setDefaultValue(CVector(0,0,0));
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_DefaultRotQuat.setDefaultValue(CQuat::Identity);
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_DefaultScale.setDefaultValue(CVector(1,1,1));
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_DefaultLMFactor.setDefaultValue(CRGBA(255,255,255,255));
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_AutoAnim = false;
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_LodCharacterTexture= NULL;
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_CollisionMeshGeneration= AutoCameraCol;
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_VisualCollisionMesh= NULL;
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_DefaultOpacity= false;
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_DefaultTransparency= false;
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}
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// ***************************************************************************
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CMeshBase::~CMeshBase()
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{
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/* ***********************************************
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* WARNING: This Class/Method must be thread-safe (ctor/dtor/serial): no static access for instance
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* It can be loaded/called through CAsyncFileManager for instance
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* ***********************************************/
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// free if exist
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resetLodCharacterTexture();
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// delete the Col mesh if created
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if(_VisualCollisionMesh)
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{
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delete _VisualCollisionMesh;
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_VisualCollisionMesh= NULL;
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}
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}
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// ***************************************************************************
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// ***************************************************************************
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// Animated material.
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// ***************************************************************************
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// ***************************************************************************
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// ***************************************************************************
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void CMeshBase::setAnimatedMaterial(uint id, const std::string &matName)
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{
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nlassert(!matName.empty());
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if(id<_Materials.size())
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{
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// add / replace animated material.
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_AnimatedMaterials[id].Name= matName;
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// copy Material default.
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_AnimatedMaterials[id].copyFromMaterial(&_Materials[id]);
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}
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}
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// ***************************************************************************
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CMaterialBase *CMeshBase::getAnimatedMaterial(uint id)
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{
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TAnimatedMaterialMap::iterator it;
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it= _AnimatedMaterials.find(id);
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if(it!=_AnimatedMaterials.end())
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return &it->second;
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else
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return NULL;
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}
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// ***************************************************************************
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// ***************************************************************************
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// Serial - buildBase.
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// ***************************************************************************
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// ***************************************************************************
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// ***************************************************************************
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CMeshBase::CMeshBaseBuild::CMeshBaseBuild()
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{
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DefaultPos.set(0,0,0);
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DefaultPivot.set(0,0,0);
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DefaultRotEuler.set(0,0,0);
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DefaultScale.set(1,1,1);
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bCastShadows= false;
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bRcvShadows= false;
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UseLightingLocalAttenuation= false;
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CollisionMeshGeneration= CMeshBase::AutoCameraCol;
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}
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// ***************************************************************************
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#if 0
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void CMeshBase::CMeshBaseBuild::serial(NLMISC::IStream &f) throw(NLMISC::EStream)
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{
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/*
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Version 1:
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- Cut in version because of badly coded ITexture* serialisation. throw an exception if
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find a version < 1.
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Version 0:
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- 1st version.
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*/
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sint ver= f.serialVersion(1);
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if(ver<1)
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throw NLMISC::EStream(f, "MeshBuild in Stream is too old (MeshBaseBuild version < 1)");
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f.serial( DefaultPos );
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f.serial( DefaultPivot );
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f.serial( DefaultRotEuler );
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f.serial( DefaultRotQuat );
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f.serial( DefaultScale );
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f.serialCont( Materials );
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}
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#endif
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// ***************************************************************************
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void CMeshBase::serialMeshBase(NLMISC::IStream &f) throw(NLMISC::EStream)
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{
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/* ***********************************************
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* WARNING: This Class/Method must be thread-safe (ctor/dtor/serial): no static access for instance
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* It can be loaded/called through CAsyncFileManager for instance
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* ***********************************************/
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/*
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Version 9:
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- _CollisionMeshGeneration
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Version 8:
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- new format for CLightMapInfoList
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Version 7:
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- _LodCharacterTexture
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Version 6:
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- _DistMax
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Version 5:
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- _AutoAnim
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Version 4:
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- _UseLightingLocalAttenuation
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Version 3:
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- _IsLightable
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Version 2:
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- Added Blend Shapes factors
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Version 1:
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- Cut in version because of badly coded ITexture* serialisation. throw an exception if
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find a version < 1.
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Version 0:
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- 1st version.
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*/
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sint ver = f.serialVersion(9);
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if (ver >= 2)
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{
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f.serialCont (_AnimatedMorph);
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}
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if(ver<1)
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throw NLMISC::EStream(f, "Mesh in Stream is too old (MeshBase version < 1)");
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f.serial (_DefaultPos);
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f.serial (_DefaultPivot);
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f.serial (_DefaultRotEuler);
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f.serial (_DefaultRotQuat);
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f.serial (_DefaultScale);
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f.serialCont(_Materials);
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f.serialCont(_AnimatedMaterials);
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if(ver >= 8)
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f.serialCont(_LightInfos);
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else
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{
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TLightInfoMapV7 temp;
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f.serialCont(temp);
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}
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if(ver>=3)
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// read/write _IsLightable flag.
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f.serial(_IsLightable);
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else if( f.isReading() )
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// update _IsLightable flag.
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computeIsLightable();
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if(ver>=4)
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f.serial(_UseLightingLocalAttenuation);
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else if( f.isReading() )
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_UseLightingLocalAttenuation= false;
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if (ver >= 5)
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{
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f.serial(_AutoAnim);
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}
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if(ver >= 6)
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f.serial(_DistMax);
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if(ver >= 7)
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f.serialPtr(_LodCharacterTexture);
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if(ver >= 9)
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f.serialEnum(_CollisionMeshGeneration);
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else
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_CollisionMeshGeneration= AutoCameraCol;
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// Some runtime not serialized compilation
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if(f.isReading())
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compileRunTime();
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}
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// ***************************************************************************
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void CMeshBase::buildMeshBase(CMeshBaseBuild &m)
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{
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// Copy light information
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_LightInfos = m.LightInfoMap;
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// copy the materials.
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_Materials= m.Materials;
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// clear the animated materials.
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_AnimatedMaterials.clear();
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/// Copy default position values
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_DefaultPos.setDefaultValue (m.DefaultPos);
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_DefaultPivot.setDefaultValue (m.DefaultPivot);
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_DefaultRotEuler.setDefaultValue (m.DefaultRotEuler);
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_DefaultRotQuat.setDefaultValue (m.DefaultRotQuat);
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_DefaultScale.setDefaultValue (m.DefaultScale);
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_AnimatedMorph .resize(m.DefaultBSFactors.size());
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for (uint32 i = 0; i < m.DefaultBSFactors.size(); ++i)
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{
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_AnimatedMorph[i].DefaultFactor.setDefaultValue (m.DefaultBSFactors[i]);
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_AnimatedMorph[i].Name = m.BSNames[i];
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}
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// update _IsLightable flag.
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computeIsLightable();
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// copy _UseLightingLocalAttenuation
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_UseLightingLocalAttenuation= m.UseLightingLocalAttenuation;
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// copy CollisionMeshGeneration
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_CollisionMeshGeneration= m.CollisionMeshGeneration;
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// Some runtime not serialized compilation
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compileRunTime();
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}
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// ***************************************************************************
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void CMeshBase::instanciateMeshBase(CMeshBaseInstance *mi, CScene *ownerScene)
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{
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uint32 i;
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// setup animated blendShapes
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//===========================
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mi->_AnimatedMorphFactor.reserve(_AnimatedMorph.size());
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for(i = 0; i < _AnimatedMorph.size(); ++i)
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{
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CAnimatedMorph am(&_AnimatedMorph[i]);
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mi->_AnimatedMorphFactor.push_back (am);
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}
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// setup materials.
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//=================
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// Copy material. Textures are referenced only
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mi->Materials= _Materials;
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// Instanciate selectable textures (use default set)
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mi->selectTextureSet(0);
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// prepare possible AsyncTextures
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mi->AsyncTextures.resize(_Materials.size());
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// setup animated materials.
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//==========================
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TAnimatedMaterialMap::iterator it;
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mi->_AnimatedMaterials.reserve(_AnimatedMaterials.size());
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for(it= _AnimatedMaterials.begin(); it!= _AnimatedMaterials.end(); it++)
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{
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CAnimatedMaterial aniMat(&it->second);
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// set the target instance material.
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nlassert(it->first < mi->Materials.size());
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aniMat.setMaterial(&mi->Materials[it->first]);
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// Must set the Animatable father of the animated material (the mesh_base_instance!).
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aniMat.setFather(mi, CMeshBaseInstance::OwnerBit);
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// Append this animated material.
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mi->_AnimatedMaterials.push_back(aniMat);
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}
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// Misc
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//==========================
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// Setup position with the default value
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mi->ITransformable::setPos( _DefaultPos.getDefaultValue() );
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mi->ITransformable::setRotQuat( _DefaultRotQuat.getDefaultValue() );
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mi->ITransformable::setScale( _DefaultScale.getDefaultValue() );
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mi->ITransformable::setPivot( _DefaultPivot.getDefaultValue() );
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// Setup default opcaity / transparency state
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mi->setOpacity( this->getDefaultOpacity() );
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mi->setTransparency( this->getDefaultTransparency() );
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// if the mesh is lightable, then the instance is
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mi->setIsLightable(this->isLightable());
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// a mesh is considered big for lightable if it uses localAttenuation
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mi->setIsBigLightable(this->useLightingLocalAttenuation());
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// The mesh support fast intersect, if the system geometry has been built
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mi->enableFastIntersectSupport(!_SystemGeometry.empty());
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}
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// ***************************************************************************
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void CMeshBase::applyMaterialUsageOptim(const std::vector<bool> &materialUsed, std::vector<sint> &remap)
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{
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nlassert(_Materials.size()==materialUsed.size());
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// security reset
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resetLodCharacterTexture();
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_AnimatedMaterials.clear();
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// init all ids to "Not Used"
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remap.clear();
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remap.resize(_Materials.size(), -1);
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// remove unused materials and build remap
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vector<CMaterial>::iterator itMat= _Materials.begin();
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uint dstIdx= 0;
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uint i;
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for(i=0;i<materialUsed.size();i++)
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{
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// if used, still use it, and remap.
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if(materialUsed[i])
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{
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remap[i]= dstIdx;
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itMat++;
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dstIdx++;
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}
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// remove from the array
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else
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{
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itMat= _Materials.erase(itMat);
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}
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}
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// apply the remap to LightMaps infos
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const uint count = (uint)_LightInfos.size ();
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for (i=0; i<count; i++)
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{
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CLightMapInfoList &mapInfoList = _LightInfos[i];
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std::list<CMeshBase::CLightMapInfoList::CMatStage>::iterator ite = mapInfoList.StageList.begin ();
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while (ite != mapInfoList.StageList.end ())
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{
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sint newId= remap[ite->MatId];
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// If material used
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if(newId>=0)
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{
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// apply remap on the material id
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ite->MatId= newId;
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ite++;
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}
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else
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{
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// remove it from list of light infos
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ite= mapInfoList.StageList.erase(ite);
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}
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}
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}
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}
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// ***************************************************************************
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void CMeshBase::flushTextures(IDriver &driver, uint selectedTexture)
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{
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// Mat count
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uint matCount=(uint)_Materials.size();
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// Flush each material textures
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for (uint mat=0; mat<matCount; mat++)
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{
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/// Flush material textures
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_Materials[mat].flushTextures (driver, selectedTexture);
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}
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}
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// ***************************************************************************
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void CMeshBase::computeIsLightable()
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{
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// by default the mesh is not lightable
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_IsLightable= false;
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// Mat count
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uint matCount=(uint)_Materials.size();
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// for each material
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for (uint mat=0; mat<matCount; mat++)
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{
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// if this one is not a lightmap, then OK, the mesh is lightable
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if( _Materials[mat].getShader()!=CMaterial::LightMap )
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{
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_IsLightable= true;
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break;
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}
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}
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}
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// ***************************************************************************
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bool CMeshBase::useLightingLocalAttenuation () const
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{
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return _UseLightingLocalAttenuation;
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}
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// ***************************************************************************
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void CMeshBase::resetLodCharacterTexture()
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{
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if(_LodCharacterTexture)
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{
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delete _LodCharacterTexture;
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_LodCharacterTexture= NULL;
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}
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}
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// ***************************************************************************
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void CMeshBase::setupLodCharacterTexture(CLodCharacterTexture &lodText)
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{
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// delete old
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resetLodCharacterTexture();
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// seutp new
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_LodCharacterTexture= new CLodCharacterTexture;
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*_LodCharacterTexture= lodText;
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}
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// ***************************************************************************
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CVisualCollisionMesh *CMeshBase::getVisualCollisionMesh() const
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{
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return _VisualCollisionMesh;
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}
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// ***************************************************************************
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void CMeshBase::compileRunTime()
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{
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_DefaultTransparency= false;
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_DefaultOpacity= false;
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for( uint i = 0; i < _Materials.size(); ++i )
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if( _Materials[i].getBlend() )
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_DefaultTransparency= true;
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else
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_DefaultOpacity= true;
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}
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} // NL3D
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