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library / src / main / java / org / distorted / library / mesh / MeshBase.java @ a8dfedcc

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///////////////////////////////////////////////////////////////////////////////////////////////////
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// Copyright 2016 Leszek Koltunski                                                               //
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//                                                                                               //
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// This file is part of Distorted.                                                               //
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//                                                                                               //
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// Distorted 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 2 of the License, or                             //
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// (at your option) any later version.                                                           //
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//                                                                                               //
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// Distorted 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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//                                                                                               //
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// You should have received a copy of the GNU General Public License                             //
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// along with Distorted.  If not, see <http://www.gnu.org/licenses/>.                            //
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///////////////////////////////////////////////////////////////////////////////////////////////////
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package org.distorted.library.mesh;
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import android.opengl.GLES30;
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import android.util.Log;
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import org.distorted.library.effect.VertexEffect;
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import org.distorted.library.effectqueue.EffectQueue;
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import org.distorted.library.main.InternalBuffer;
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import org.distorted.library.program.DistortedProgram;
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import org.distorted.library.type.Static4D;
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import java.nio.ByteBuffer;
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import java.nio.ByteOrder;
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import java.nio.FloatBuffer;
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import java.util.ArrayList;
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Abstract class which represents a Mesh, ie an array of vertices (rendered as a TRIANGLE_STRIP).
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 * <p>
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 * If you want to render to a particular shape, extend from here, construct a float array
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 * containing per-vertex attributes, and call back setAttribs().
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 */
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public abstract class MeshBase
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   {
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   private static final int MAX_COMPONENTS= 100;
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   private static final int DEFAULT_ASSOCIATION = 0xffffffff;
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   // sizes of attributes of an individual vertex.
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   private static final int POS_DATA_SIZE= 3; // vertex coordinates: x,y,z
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   private static final int NOR_DATA_SIZE= 3; // normal vector: x,y,z
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   private static final int INF_DATA_SIZE= 3; // 'inflate' vector: x,y,z
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   private static final int TEX_DATA_SIZE= 2; // texture coordinates: s,t
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   private static final int COM_DATA_SIZE= 1; // component number, a single float
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   static final int POS_ATTRIB   = 0;
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   static final int NOR_ATTRIB   = POS_DATA_SIZE;
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   static final int INF_ATTRIB   = POS_DATA_SIZE + NOR_DATA_SIZE;
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   static final int TEX_ATTRIB   = 0;
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   static final int COM_ATTRIB   = TEX_DATA_SIZE;
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   static final int VERT1_ATTRIBS= POS_DATA_SIZE + NOR_DATA_SIZE + INF_DATA_SIZE;  // number of attributes of a vertex (the part changed by preapply)
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   static final int VERT2_ATTRIBS= TEX_DATA_SIZE + COM_DATA_SIZE;                  // number of attributes of a vertex (the 'preapply invariant' part)
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   static final int TRAN_ATTRIBS = POS_DATA_SIZE + NOR_DATA_SIZE + INF_DATA_SIZE;  // number of attributes of a transform feedback vertex
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   private static final int BYTES_PER_FLOAT = 4;
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   private static final int OFFSET_POS = POS_ATTRIB*BYTES_PER_FLOAT;
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   private static final int OFFSET_NOR = NOR_ATTRIB*BYTES_PER_FLOAT;
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   private static final int OFFSET_INF = INF_ATTRIB*BYTES_PER_FLOAT;
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   private static final int OFFSET_TEX = TEX_ATTRIB*BYTES_PER_FLOAT;
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   private static final int OFFSET_COM = COM_ATTRIB*BYTES_PER_FLOAT;
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   private static final int TRAN_SIZE  = TRAN_ATTRIBS*BYTES_PER_FLOAT;
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   private static final int VERT1_SIZE = VERT1_ATTRIBS*BYTES_PER_FLOAT;
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   private static final int VERT2_SIZE = VERT2_ATTRIBS*BYTES_PER_FLOAT;
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   private boolean mShowNormals;              // when rendering this mesh, draw normal vectors?
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   private InternalBuffer mVBO1, mVBO2, mTFO; // main vertex buffer and transform feedback buffer
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   private int mNumVertices;
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   private float[] mVertAttribs1;             // packed: PosX,PosY,PosZ, NorX,NorY,NorZ, InfX,InfY,InfZ
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   private float[] mVertAttribs2;             // packed: TexS,TexT, Component
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   private float mInflate;
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   private int[] mAssociation;
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   DeferredJobs.JobNode[] mJobNode;
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   private static int[] mComponentAssociationH = new int[EffectQueue.MAIN_VARIANTS];
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   private static class Component
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     {
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     private int mEndIndex;
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     private Static4D mTextureMap;
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     Component(int end)
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       {
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       mEndIndex  = end;
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       mTextureMap= new Static4D(0,0,1,1);
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       }
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     Component(Component original)
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       {
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       mEndIndex = original.mEndIndex;
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       float x = original.mTextureMap.get0();
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       float y = original.mTextureMap.get1();
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       float z = original.mTextureMap.get2();
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       float w = original.mTextureMap.get3();
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       mTextureMap = new Static4D(x,y,z,w);
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       }
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     void setMap(Static4D map)
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       {
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       mTextureMap.set(map.get0(),map.get1(),map.get2(),map.get3());
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       }
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     }
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   private ArrayList<Component> mComponent;
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///////////////////////////////////////////////////////////////////////////////////////////////////
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   MeshBase()
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     {
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     mShowNormals= false;
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     mInflate    = 0.0f;
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     mComponent  = new ArrayList<>();
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     mAssociation= new int[MAX_COMPONENTS];
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     mJobNode = new DeferredJobs.JobNode[1];
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     for(int i=0; i<MAX_COMPONENTS; i++) mAssociation[i] = DEFAULT_ASSOCIATION;
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     mVBO1= new InternalBuffer(GLES30.GL_ARRAY_BUFFER             , GLES30.GL_STATIC_READ);
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     mVBO2= new InternalBuffer(GLES30.GL_ARRAY_BUFFER             , GLES30.GL_STATIC_READ);
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     mTFO = new InternalBuffer(GLES30.GL_TRANSFORM_FEEDBACK_BUFFER, GLES30.GL_STATIC_READ);
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     }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// copy constructor
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   MeshBase(MeshBase original, boolean deep)
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     {
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     mShowNormals     = original.mShowNormals;
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     mInflate         = original.mInflate;
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     mNumVertices     = original.mNumVertices;
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     int size = original.mComponent.size();
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     mComponent = new ArrayList<>();
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     for(int i=0; i<size; i++)
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       {
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       Component comp = new Component(original.mComponent.get(i));
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       mComponent.add(comp);
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       }
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     mAssociation= new int[MAX_COMPONENTS];
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     System.arraycopy(original.mAssociation, 0, mAssociation, 0, MAX_COMPONENTS);
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     if( deep )
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       {
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       mVBO1= new InternalBuffer(GLES30.GL_ARRAY_BUFFER, GLES30.GL_STATIC_READ);
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       mVertAttribs1= new float[mNumVertices*VERT1_ATTRIBS];
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       mJobNode = new DeferredJobs.JobNode[1];
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       if( original.mJobNode[0]!=null )
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         {
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         mJobNode[0] = DeferredJobs.copy(this,original);
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         }
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       else
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         {
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         deepCopyAttribs1(original);
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         }
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       }
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     else
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       {
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       mJobNode      = original.mJobNode;
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       mVBO1         = original.mVBO1;
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       mVertAttribs1 = original.mVertAttribs1;
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       }
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     mVBO2= new InternalBuffer(GLES30.GL_ARRAY_BUFFER, GLES30.GL_STATIC_READ);
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     mVertAttribs2= new float[mNumVertices*VERT2_ATTRIBS];
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     System.arraycopy(original.mVertAttribs2,0,mVertAttribs2,0,mNumVertices*VERT2_ATTRIBS);
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     mVBO2.invalidate();
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     mTFO = new InternalBuffer(GLES30.GL_TRANSFORM_FEEDBACK_BUFFER, GLES30.GL_STATIC_READ);
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     mTFO.invalidate();
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     }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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   public static int getMaxComponents()
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     {
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     return MAX_COMPONENTS;
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     }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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   public static void getUniforms(int mProgramH, int variant)
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     {
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     mComponentAssociationH[variant] = GLES30.glGetUniformLocation( mProgramH, "vComponAssoc");
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     }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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   void deepCopyAttribs1(MeshBase original)
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     {
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     System.arraycopy(original.mVertAttribs1,0,mVertAttribs1,0,mNumVertices*VERT1_ATTRIBS);
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     mVBO1.invalidate();
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     }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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   void merge()
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     {
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     int num = mComponent.size();
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     if( num>1 )
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       {
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       mComponent.clear();
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       mComponent.add(new Component(mNumVertices-1));
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       for(int index=0; index<mNumVertices; index++)
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         {
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         mVertAttribs2[VERT2_ATTRIBS*index+COM_ATTRIB] = 0;
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         }
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       mVBO2.invalidate();
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       }
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     }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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   int numComponents()
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     {
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     return mComponent.size();
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     }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// when a derived class is done computing its mesh, it has to call this method.
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   void setAttribs(float[] vert1Attribs, float[] vert2Attribs)
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     {
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     mNumVertices = vert1Attribs.length/VERT1_ATTRIBS;
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     mVertAttribs1= vert1Attribs;
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     mVertAttribs2= vert2Attribs;
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     mComponent.add(new Component(mNumVertices-1));
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     mVBO1.invalidate();
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     mVBO2.invalidate();
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     }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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   void joinAttrib1(MeshBase[] meshes, int origVertices)
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     {
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     MeshBase mesh;
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     int numMeshes = meshes.length;
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     int numVertices = origVertices;
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     float[] newAttribs1 = new float[VERT1_ATTRIBS*mNumVertices];
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     if( origVertices>0 )
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       {
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       System.arraycopy(mVertAttribs1,                              0, newAttribs1,                         0, VERT1_ATTRIBS*numVertices);
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       System.arraycopy(mVertAttribs1, VERT1_ATTRIBS*(origVertices-1), newAttribs1, VERT1_ATTRIBS*origVertices, VERT1_ATTRIBS    );
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       origVertices++;
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       if( numVertices%2==1 )
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         {
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         System.arraycopy(mVertAttribs1, VERT1_ATTRIBS*(origVertices-1), newAttribs1, VERT1_ATTRIBS*origVertices, VERT1_ATTRIBS);
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         origVertices++;
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         }
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       }
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     for(int i=0; i<numMeshes; i++)
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       {
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       mesh = meshes[i];
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       numVertices = mesh.mNumVertices;
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       if( origVertices>0 )
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         {
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         System.arraycopy(mesh.mVertAttribs1, 0, newAttribs1, VERT1_ATTRIBS*origVertices, VERT1_ATTRIBS    );
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         origVertices++;
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         }
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       System.arraycopy(mesh.mVertAttribs1, 0, newAttribs1, VERT1_ATTRIBS*origVertices, VERT1_ATTRIBS*numVertices);
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       origVertices+=numVertices;
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       if( i<numMeshes-1 )
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         {
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         System.arraycopy(mesh.mVertAttribs1, VERT1_ATTRIBS*(numVertices-1), newAttribs1, VERT1_ATTRIBS*origVertices, VERT1_ATTRIBS);
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         origVertices++;
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         if( numVertices%2==1 )
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           {
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           System.arraycopy(mesh.mVertAttribs1, VERT1_ATTRIBS*(numVertices-1), newAttribs1, VERT1_ATTRIBS*origVertices, VERT1_ATTRIBS);
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           origVertices++;
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           }
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         }
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       }
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     mVertAttribs1 = newAttribs1;
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     mVBO1.invalidate();
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     }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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   private void joinAttrib2(MeshBase[] meshes, int origVertices)
309
     {
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     MeshBase mesh;
311
     int numMeshes = meshes.length;
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     int numVertices = origVertices;
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     float[] newAttribs2 = new float[VERT2_ATTRIBS*mNumVertices];
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     if( origVertices>0 )
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       {
318
       System.arraycopy(mVertAttribs2,                              0, newAttribs2,                         0, VERT2_ATTRIBS*numVertices);
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       System.arraycopy(mVertAttribs2, VERT2_ATTRIBS*(origVertices-1), newAttribs2, VERT2_ATTRIBS*origVertices, VERT2_ATTRIBS    );
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       origVertices++;
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       if( numVertices%2==1 )
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         {
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         System.arraycopy(mVertAttribs2, VERT2_ATTRIBS*(origVertices-1), newAttribs2, VERT2_ATTRIBS*origVertices, VERT2_ATTRIBS);
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         origVertices++;
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         }
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       }
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     for(int i=0; i<numMeshes; i++)
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       {
331
       mesh = meshes[i];
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       numVertices = mesh.mNumVertices;
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334
       if( origVertices>0 )
335
         {
336
         System.arraycopy(mesh.mVertAttribs2, 0, newAttribs2, VERT2_ATTRIBS*origVertices, VERT2_ATTRIBS    );
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         origVertices++;
338
         }
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       System.arraycopy(mesh.mVertAttribs2, 0, newAttribs2, VERT2_ATTRIBS*origVertices, VERT2_ATTRIBS*numVertices);
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       origVertices+=numVertices;
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       if( i<numMeshes-1 )
343
         {
344
         System.arraycopy(mesh.mVertAttribs2, VERT2_ATTRIBS*(numVertices-1), newAttribs2, VERT2_ATTRIBS*origVertices, VERT2_ATTRIBS);
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         origVertices++;
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         if( numVertices%2==1 )
348
           {
349
           System.arraycopy(mesh.mVertAttribs2, VERT2_ATTRIBS*(numVertices-1), newAttribs2, VERT2_ATTRIBS*origVertices, VERT2_ATTRIBS);
350
           origVertices++;
351
           }
352
         }
353
       }
354

    
355
     if( origVertices!=mNumVertices )
356
       {
357
       android.util.Log.e("mesh", "join: origVertices: "+origVertices+" numVertices: "+mNumVertices);
358
       }
359

    
360
     int endIndex, index=0, numComp = mComponent.size();
361

    
362
     for(int component=0; component<numComp; component++)
363
       {
364
       endIndex = mComponent.get(component).mEndIndex;
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366
       for( ; index<=endIndex; index++) newAttribs2[VERT2_ATTRIBS*index+COM_ATTRIB] = component;
367
       }
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     mVertAttribs2 = newAttribs2;
370
     mVBO2.invalidate();
371
     }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// called from MeshJoined
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   void join(MeshBase[] meshes)
377
     {
378
     MeshBase mesh;
379
     Component comp;
380
     int origComponents=0, numComponents, numVertices, numMeshes = meshes.length;
381
     int origVertices = mNumVertices;
382

    
383
     if( origVertices>0 )
384
       {
385
       origComponents = mComponent.size();
386
       mNumVertices+= ( mNumVertices%2==1 ? 2:1 );
387
       mComponent.get(origComponents-1).mEndIndex = mNumVertices-1;
388
       }
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390
     for(int i=0; i<numMeshes; i++)
391
       {
392
       mesh = meshes[i];
393
       numComponents = mesh.mComponent.size();
394

    
395
       numVertices = mesh.mNumVertices;
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397
       int extraVerticesBefore = mNumVertices==0 ? 0:1;
398
       int extraVerticesAfter  = (i==numMeshes-1) ? 0 : (numVertices%2==1 ? 2:1);
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400
       for(int j=0; j<numComponents; j++)
401
         {
402
         comp = new Component(mesh.mComponent.get(j));
403
         comp.mEndIndex += (extraVerticesBefore+mNumVertices+extraVerticesAfter);
404
         mComponent.add(comp);
405

    
406
         if( origComponents<MAX_COMPONENTS )
407
           {
408
           mAssociation[origComponents] = mesh.mAssociation[j];
409
           origComponents++;
410
           }
411
         }
412

    
413
       mNumVertices += (extraVerticesBefore+numVertices+extraVerticesAfter);
414
       }
415

    
416
     if( mJobNode[0]!=null )
417
       {
418
       mJobNode[0] = DeferredJobs.join(this,meshes,origVertices);
419
       }
420
     else
421
       {
422
       joinAttrib1(meshes,origVertices);
423
       }
424

    
425
     joinAttrib2(meshes,origVertices);
426
     }
427

    
428
///////////////////////////////////////////////////////////////////////////////////////////////////
429
/**
430
 * Not part of public API, do not document (public only because has to be used from the main package)
431
 *
432
 * @y.exclude
433
 */
434
   public void copyTransformToVertex()
435
     {
436
     ByteBuffer buffer = (ByteBuffer)GLES30.glMapBufferRange( GLES30.GL_TRANSFORM_FEEDBACK_BUFFER, 0,
437
                                                              TRAN_SIZE*mNumVertices, GLES30.GL_MAP_READ_BIT);
438
     if( buffer!=null )
439
       {
440
       FloatBuffer feedback = buffer.order(ByteOrder.nativeOrder()).asFloatBuffer();
441
       feedback.get(mVertAttribs1,0,VERT1_ATTRIBS*mNumVertices);
442
       mVBO1.update(mVertAttribs1);
443
       }
444
     else
445
       {
446
       int error = GLES30.glGetError();
447
       Log.e("mesh", "failed to map tf buffer, error="+error);
448
       }
449

    
450
     GLES30.glUnmapBuffer(GLES30.GL_TRANSFORM_FEEDBACK);
451
     }
452

    
453
///////////////////////////////////////////////////////////////////////////////////////////////////
454
/**
455
 * Not part of public API, do not document (public only because has to be used from the main package)
456
 *
457
 * @y.exclude
458
 */
459
   public int getTFO()
460
     {
461
     return mTFO.createImmediately(mNumVertices*TRAN_SIZE, null);
462
     }
463

    
464
///////////////////////////////////////////////////////////////////////////////////////////////////
465
/**
466
 * Not part of public API, do not document (public only because has to be used from the main package)
467
 *
468
 * @y.exclude
469
 */
470
   public int getNumVertices()
471
     {
472
     return mNumVertices;
473
     }
474

    
475
///////////////////////////////////////////////////////////////////////////////////////////////////
476
/**
477
 * Not part of public API, do not document (public only because has to be used from the main package)
478
 *
479
 * @y.exclude
480
 */
481
   public void send(int variant)
482
     {
483
     GLES30.glUniform1iv( mComponentAssociationH[variant], MAX_COMPONENTS, mAssociation, 0);
484
     }
485

    
486
///////////////////////////////////////////////////////////////////////////////////////////////////
487
/**
488
 * Not part of public API, do not document (public only because has to be used from the main package)
489
 *
490
 * @y.exclude
491
 */
492
   public void bindVertexAttribs(DistortedProgram program)
493
     {
494
     if( mJobNode[0]!=null )
495
       {
496
       mJobNode[0].execute();  // this will set itself to null
497
       }
498

    
499
     int index1 = mVBO1.createImmediately(mNumVertices*VERT1_SIZE, mVertAttribs1);
500
     int index2 = mVBO2.createImmediately(mNumVertices*VERT2_SIZE, mVertAttribs2);
501

    
502
     GLES30.glBindBuffer(GLES30.GL_ARRAY_BUFFER, index1 );
503
     GLES30.glVertexAttribPointer(program.mAttribute[0], POS_DATA_SIZE, GLES30.GL_FLOAT, false, VERT1_SIZE, OFFSET_POS);
504
     GLES30.glVertexAttribPointer(program.mAttribute[1], NOR_DATA_SIZE, GLES30.GL_FLOAT, false, VERT1_SIZE, OFFSET_NOR);
505
     GLES30.glVertexAttribPointer(program.mAttribute[2], INF_DATA_SIZE, GLES30.GL_FLOAT, false, VERT1_SIZE, OFFSET_INF);
506
     GLES30.glBindBuffer(GLES30.GL_ARRAY_BUFFER, index2 );
507
     GLES30.glVertexAttribPointer(program.mAttribute[3], TEX_DATA_SIZE, GLES30.GL_FLOAT, false, VERT2_SIZE, OFFSET_TEX);
508
     GLES30.glVertexAttribPointer(program.mAttribute[4], COM_DATA_SIZE, GLES30.GL_FLOAT, false, VERT2_SIZE, OFFSET_COM);
509
     GLES30.glBindBuffer(GLES30.GL_ARRAY_BUFFER, 0);
510
     }
511

    
512
///////////////////////////////////////////////////////////////////////////////////////////////////
513
/**
514
 * Not part of public API, do not document (public only because has to be used from the main package)
515
 *
516
 * @y.exclude
517
 */
518
   public void bindTransformAttribs(DistortedProgram program)
519
     {
520
     int index = mTFO.createImmediately(mNumVertices*TRAN_SIZE, null);
521

    
522
     GLES30.glBindBuffer(GLES30.GL_ARRAY_BUFFER, index );
523
     GLES30.glVertexAttribPointer(program.mAttribute[0], POS_DATA_SIZE, GLES30.GL_FLOAT, false, 0, 0);
524
     GLES30.glBindBuffer(GLES30.GL_ARRAY_BUFFER, 0);
525
     }
526

    
527
///////////////////////////////////////////////////////////////////////////////////////////////////
528
/**
529
 * Not part of public API, do not document (public only because has to be used from the main package)
530
 *
531
 * @y.exclude
532
 */
533
   public void setInflate(float inflate)
534
     {
535
     mInflate = inflate;
536
     }
537

    
538
///////////////////////////////////////////////////////////////////////////////////////////////////
539
/**
540
 * Not part of public API, do not document (public only because has to be used from the main package)
541
 *
542
 * @y.exclude
543
 */
544
   public float getInflate()
545
     {
546
     return mInflate;
547
     }
548

    
549
///////////////////////////////////////////////////////////////////////////////////////////////////
550
// PUBLIC API
551
///////////////////////////////////////////////////////////////////////////////////////////////////
552
/**
553
 * When rendering this Mesh, do we want to render the Normal vectors as well?
554
 * <p>
555
 * Will work only on OpenGL ES >= 3.0 devices.
556
 *
557
 * @param show Controls if we render the Normal vectors or not.
558
 */
559
   public void setShowNormals(boolean show)
560
     {
561
     mShowNormals = show;
562
     }
563

    
564
///////////////////////////////////////////////////////////////////////////////////////////////////
565
/**
566
 * When rendering this mesh, should we also draw the normal vectors?
567
 *
568
 * @return <i>true</i> if we do render normal vectors
569
 */
570
   public boolean getShowNormals()
571
     {
572
     return mShowNormals;
573
     }
574

    
575
///////////////////////////////////////////////////////////////////////////////////////////////////
576
/**
577
 * Merge all components of this Mesh into a single one.
578
 */
579
   public void mergeComponents()
580
     {
581
     if( mJobNode==null )
582
       {
583
       merge();
584
       }
585
     else
586
       {
587
       mJobNode[0] = DeferredJobs.merge(this);
588
       }
589
     }
590

    
591
///////////////////////////////////////////////////////////////////////////////////////////////////
592
/**
593
 * Release all internal resources.
594
 */
595
   public void markForDeletion()
596
     {
597
     mVertAttribs1 = null;
598
     mVertAttribs2 = null;
599

    
600
     mVBO1.markForDeletion();
601
     mVBO2.markForDeletion();
602
     mTFO.markForDeletion();
603
     }
604

    
605
///////////////////////////////////////////////////////////////////////////////////////////////////
606
/**
607
 * Apply a Vertex Effect to the vertex mesh.
608
 * <p>
609
 * This is a static, permanent modification of the vertices contained in this Mesh. If the effects
610
 * contain any Dynamics, the Dynamics will be evaluated at 0.
611
 *
612
 * We would call this several times building up a list of Effects to do. This list of effects gets
613
 * lazily executed only when the Mesh is used for rendering for the first time.
614
 *
615
 * @param effect Vertex Effect to apply to the Mesh.
616
 */
617
   public void apply(VertexEffect effect)
618
     {
619
     mJobNode[0] = DeferredJobs.vertex(this,effect);
620
     }
621

    
622
///////////////////////////////////////////////////////////////////////////////////////////////////
623
/**
624
 * Sets texture maps for (some of) the components of this mesh.
625
 * <p>
626
 * Format: ( x of lower-left corner, y of lower-left corner, width, height ).
627
 * For example maps[0] = new Static4D( 0.0, 0.5, 0.5, 0.5 ) sets the 0th component texture map to the
628
 * upper-left quadrant of the texture.
629
 * <p>
630
 * Probably the most common user case would be sending as many maps as there are components in this
631
 * Mesh. One can also send less, or more (the extraneous ones will be ignored) and set some of them
632
 * to null (those will be ignored as well). So if there are 5 components, and we want to set the map
633
 * of the 2nd and 4rd one, call this with
634
 * maps = new Static4D[4]
635
 * maps[0] = null
636
 * maps[1] = the map for the 2nd component
637
 * maps[2] = null
638
 * maps[3] = the map for the 4th component
639
 *
640
 * A map's width and height have to be non-zero (but can be negative!)
641
 *
642
 * @param maps List of texture maps to apply to the texture's components.
643
 */
644
   public void setTextureMap(Static4D[] maps)
645
     {
646
     int num_comp = mComponent.size();
647
     int num_maps = maps.length;
648
     int min = Math.min(num_comp, num_maps);
649
     int vertex = 0;
650
     Static4D newMap, oldMap;
651
     Component comp;
652
     float newW, newH, ratW, ratH, movX, movY;
653

    
654
     for(int i=0; i<min; i++)
655
       {
656
       newMap = maps[i];
657
       comp = mComponent.get(i);
658

    
659
       if( newMap!=null )
660
         {
661
         newW = newMap.get2();
662
         newH = newMap.get3();
663

    
664
         if( newW!=0.0f && newH!=0.0f )
665
           {
666
           oldMap = comp.mTextureMap;
667
           ratW = newW/oldMap.get2();
668
           ratH = newH/oldMap.get3();
669
           movX = newMap.get0() - ratW*oldMap.get0();
670
           movY = newMap.get1() - ratH*oldMap.get1();
671

    
672
           for( int index=vertex*VERT2_ATTRIBS+TEX_ATTRIB ; vertex<=comp.mEndIndex; vertex++, index+=VERT2_ATTRIBS)
673
             {
674
             mVertAttribs2[index  ] = ratW*mVertAttribs2[index  ] + movX;
675
             mVertAttribs2[index+1] = ratH*mVertAttribs2[index+1] + movY;
676
             }
677
           comp.setMap(newMap);
678
           }
679
         }
680

    
681
       vertex= comp.mEndIndex+1;
682
       }
683

    
684
     mVBO2.invalidate();
685
     }
686

    
687
///////////////////////////////////////////////////////////////////////////////////////////////////
688
/**
689
 * Return the texture map of one of the components.
690
 *
691
 * @param component The component number whose texture map we want to retrieve.
692
 */
693
   public Static4D getTextureMap(int component)
694
     {
695
     return (component>=0 && component<mComponent.size()) ? mComponent.get(component).mTextureMap : null;
696
     }
697

    
698
///////////////////////////////////////////////////////////////////////////////////////////////////
699
/**
700
 * Set Effect association.
701
 *
702
 * This creates an association between a Component of this Mesh and a Vertex Effect.
703
 * One can set the association of an Effect and of a Component, and the Effect will only be active on
704
 * vertices of Components such that
705
 *
706
 * (effect assoc) & (component assoc) != 0 || (effect component) == (mesh component)
707
 *
708
 * (see main_vertex_shader)
709
 *
710
 * The point: this way we can configure the system so that each Vertex Effect acts only on a certain
711
 * subset of a Mesh, thus potentially significantly reducing the number of render calls.
712
 */
713
  public void setEffectAssociation(int component, int association)
714
    {
715
    if( component>=0 && component<MAX_COMPONENTS )
716
      {
717
      mAssociation[component] = association;
718
      }
719
    }
720

    
721
///////////////////////////////////////////////////////////////////////////////////////////////////
722
/**
723
 * Copy the Mesh.
724
 *
725
 * @param deep If to be a deep or shallow copy of mVertAttribs1, i.e. the array holding vertices,
726
 *             normals and inflates (the rest, in particular the mVertAttribs2 containing texture
727
 *             coordinates and effect associations, is always deep copied)
728
 */
729
   public abstract MeshBase copy(boolean deep);
730
   }
(2-2/8)