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https://port.numenaute.org/aleajactaest/khanat-opennel-code.git
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223 lines
5.4 KiB
C++
223 lines
5.4 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/vegetable_shape.h"
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#include "nel/misc/path.h"
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#include "nel/misc/file.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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CVegetableShape::CVegetableShape()
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{
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Lighted= false;
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DoubleSided= false;
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PreComputeLighting= false;
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AlphaBlend= false;
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BestSidedPreComputeLighting= false;
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}
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// ***************************************************************************
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void CVegetableShape::build(CVegetableShapeBuild &vbuild)
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{
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// Must have TexCoord0.
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nlassert( vbuild.VB.getVertexFormat() & CVertexBuffer::TexCoord0Flag );
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// Header
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//---------
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// Lighted ?
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if(vbuild.Lighted && ( vbuild.VB.getVertexFormat() & CVertexBuffer::NormalFlag) )
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Lighted= true;
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else
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Lighted= false;
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// DoubleSided
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DoubleSided= vbuild.DoubleSided;
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// PreComputeLighting.
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PreComputeLighting= Lighted && vbuild.PreComputeLighting;
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// AlphaBlend: valid only for 2Sided and Unlit (or similar PreComputeLighting) mode
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AlphaBlend= vbuild.AlphaBlend && DoubleSided && (!Lighted || PreComputeLighting);
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// BestSidedPreComputeLighting
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BestSidedPreComputeLighting= PreComputeLighting && vbuild.BestSidedPreComputeLighting;
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// BendCenterMode
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BendCenterMode= vbuild.BendCenterMode;
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// Format of the VB.
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uint32 format;
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format= CVertexBuffer::PositionFlag | CVertexBuffer::TexCoord0Flag | CVertexBuffer::TexCoord1Flag;
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// lighted?
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if(Lighted)
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format|= CVertexBuffer::NormalFlag;
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// set VB.
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VB.setVertexFormat(format);
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// Fill triangles.
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//---------
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uint i;
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// resisz
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TriangleIndices.resize(vbuild.PB.getNumIndexes());
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CIndexBufferRead ibaRead;
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vbuild.PB.lock (ibaRead);
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const uint32 *srcTri= (const uint32 *) ibaRead.getPtr();
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// fill
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for(i=0; i<vbuild.PB.getNumIndexes()/3; i++)
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{
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TriangleIndices[i*3+0]= *(srcTri++);
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TriangleIndices[i*3+1]= *(srcTri++);
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TriangleIndices[i*3+2]= *(srcTri++);
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}
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// Fill vertices.
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//---------
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// resize
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uint32 nbVerts= vbuild.VB.getNumVertices();
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VB.setNumVertices(nbVerts);
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CVertexBufferRead vba;
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vbuild.VB.lock (vba);
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CVertexBufferReadWrite vbaOut;
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VB.lock (vbaOut);
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// if no vertex color,
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float maxZ= 0;
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bool bendFromColor= true;
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if(! (vbuild.VB.getVertexFormat() & CVertexBuffer::PrimaryColorFlag) )
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{
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// must compute bendWeight from z.
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bendFromColor= false;
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// get the maximum Z.
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for(i=0;i<nbVerts;i++)
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{
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float z= (vba.getVertexCoordPointer(i))->z;
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maxZ= max(z, maxZ);
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}
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// if no positive value, bend will always be 0.
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if(maxZ==0)
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maxZ= 1;
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}
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// For all vertices, fill
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for(i=0;i<nbVerts;i++)
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{
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// Position.
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const CVector *srcPos= vba.getVertexCoordPointer(i);
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CVector *dstPos= vbaOut.getVertexCoordPointer(i);
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*dstPos= *srcPos;
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// Normal
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if(Lighted)
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{
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const CVector *srcNormal= vba.getNormalCoordPointer(i);
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CVector *dstNormal= vbaOut.getNormalCoordPointer(i);
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*dstNormal= *srcNormal;
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}
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// Texture.
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const CUV *srcUV= vba.getTexCoordPointer(i, 0);
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CUV *dstUV= vbaOut.getTexCoordPointer(i, 0);
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*dstUV= *srcUV;
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// Bend.
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// copy to texture stage 1.
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CUV *dstUVBend= vbaOut.getTexCoordPointer(i, 1);
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if(bendFromColor)
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{
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// todo hulud d3d vertex color RGBA / BGRA
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const CRGBA *srcColor= (const CRGBA*)vba.getColorPointer(i);
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// Copy and scale by MaxBendWeight
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dstUVBend->U= (srcColor->R / 255.f) * vbuild.MaxBendWeight;
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}
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else
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{
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float w= srcPos->z / maxZ;
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w= max(w, 0.f);
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// Copy and scale by MaxBendWeight
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dstUVBend->U= w * vbuild.MaxBendWeight;
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}
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}
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// Misc.
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//---------
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// prepare for instanciation
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InstanceVertices.resize(VB.getNumVertices());
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}
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// ***************************************************************************
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bool CVegetableShape::loadShape(const std::string &shape)
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{
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string path= CPath::lookup(shape, false);
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if( path.empty() )
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return false;
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// read this file
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CIFile f(path);
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serial(f);
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return true;
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}
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// ***************************************************************************
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void CVegetableShape::serial(NLMISC::IStream &f)
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{
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/*
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Version 1:
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- BestSidedPreComputeLighting
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*/
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sint ver= f.serialVersion(1);
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f.serialCheck((uint32)'_LEN');
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f.serialCheck((uint32)'GEV_');
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f.serialCheck((uint32)'BATE');
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f.serialCheck((uint32)'__EL');
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f.serial(Lighted);
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f.serial(DoubleSided);
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f.serial(PreComputeLighting);
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f.serial(AlphaBlend);
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f.serialEnum(BendCenterMode);
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f.serial(VB);
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f.serialCont(TriangleIndices);
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if(ver>=1)
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f.serial(BestSidedPreComputeLighting);
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else if(f.isReading())
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BestSidedPreComputeLighting= false;
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// if reading
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if(f.isReading())
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{
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// prepare for instanciation
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InstanceVertices.resize(VB.getNumVertices());
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}
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}
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} // NL3D
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