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library / src / main / java / org / distorted / library / main / DistortedOutputSurface.java @ 51a3cbab

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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.main;
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import android.opengl.GLES31;
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import android.opengl.Matrix;
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import org.distorted.library.effect.EffectQuality;
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import java.nio.ByteBuffer;
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import java.nio.ByteOrder;
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import java.nio.IntBuffer;
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import java.util.ArrayList;
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * This is not really part of the public API.
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 *
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 * @y.exclude
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 */
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public abstract class DistortedOutputSurface extends DistortedSurface implements DistortedMaster.Slave
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{
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//////////// DEBUG FLAGS /////////////////////////////////////////////
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/**
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 * When rendering a Screen, show FPS in the upper-left corner?
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 */
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public static final int DEBUG_FPS = 1;
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//////////// END DEBUG FLAGS /////////////////////////////////////////
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/**
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 * Do not create DEPTH or STENCIL attachment
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 */
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  public static final int NO_DEPTH_NO_STENCIL = 0;
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/**
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 * Create DEPTH, but not STENCIL
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 */
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  public static final int DEPTH_NO_STENCIL    = 1;
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/**
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 * Create both DEPTH and STENCIL
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 */
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  public static final int BOTH_DEPTH_STENCIL  = 2;
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  private static final int ATTACH = 0;
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  private static final int DETACH = 1;
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  private static final int DETALL = 2;
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  private static final int SORT   = 3;
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  private ArrayList<DistortedNode> mChildren;
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  private int mNumChildren;   // ==mChildren.length(), but we only create mChildren if the first one gets added
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  private class Job
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    {
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    int type;
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    DistortedNode node;
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    Job(int t, DistortedNode n)
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      {
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      type = t;
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      node = n;
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      }
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    }
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  private ArrayList<Job> mJobs = new ArrayList<>();
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  DistortedOutputSurface[] mBuffer;
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  private long mTime;
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  private float mFOV;
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  float mDistance, mNear;
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  float[] mProjectionMatrix;
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  int mDepthStencilCreated;
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  int mDepthStencil;
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  int[] mDepthStencilH = new int[1];
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  int[] mFBOH          = new int[1];
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  private float mClearR, mClearG, mClearB, mClearA;
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  private float mClearDepth;
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  private int mClearStencil;
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  private int mClear;
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  float mMipmap;
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  private int mDebugLevel;
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  ////////////////////////////////////////////////////////////////////////////////
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  // section dealing with Shader Storage Buffer Object (for counting transparency)
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  private static final int BUFFERING = 3;
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  private static int mBufferSize     =10;
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  private static DistortedObjectCounter mSurfaceCounter = new DistortedObjectCounter();
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  private static int[] mSSBO = new int[1];
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  private static IntBuffer mIntBuffer;
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  static
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    {
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    mSSBO[0]= -1;
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    }
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  private int mSurfaceID;
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  private int mLastIndex;
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  private int mLastValue =-1;
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  // end section
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  ////////////////////////////////////////////////////////////////////////////////
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  abstract void prepareDebug(long time);
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  abstract void renderDebug(long time);
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  abstract void createSurface();
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  abstract void deleteSurface();
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  abstract void recreateSurface();
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  DistortedOutputSurface(int width, int height, int createColor, int numcolors, int depthStencil, int fbo, int type)
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    {
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    super(width,height,createColor,numcolors,type);
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    mProjectionMatrix = new float[16];
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    mFOV = 60.0f;
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    mNear=  0.5f;
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    mDepthStencilCreated= (depthStencil== NO_DEPTH_NO_STENCIL ? DONT_CREATE:NOT_CREATED_YET);
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    mDepthStencil = depthStencil;
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    mFBOH[0]         = fbo;
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    mDepthStencilH[0]= 0;
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    mTime = 0;
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    mDebugLevel = 0;
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    mClearR = 0.0f;
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    mClearG = 0.0f;
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    mClearB = 0.0f;
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    mClearA = 0.0f;
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    mClearDepth = 1.0f;
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    mClearStencil = 0;
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    mClear = GLES31.GL_DEPTH_BUFFER_BIT | GLES31.GL_COLOR_BUFFER_BIT;
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    mBuffer = new DistortedOutputSurface[1+EffectQuality.LENGTH];
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    mMipmap = 1.0f;
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    createProjection();
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// Must be called from a thread holding OpenGL Context
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  void create()
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    {
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    if( mSSBO[0]<0 )
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      {
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      GLES31.glGenBuffers(1,mSSBO,0);
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      // here bind the new SSBO and map it
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      GLES31.glBindBuffer(GLES31.GL_SHADER_STORAGE_BUFFER, mSSBO[0]);
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      GLES31.glBufferData(GLES31.GL_SHADER_STORAGE_BUFFER, BUFFERING*mBufferSize*4 , null, GLES31.GL_DYNAMIC_READ);
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      ByteBuffer buf = (ByteBuffer) GLES31.glMapBufferRange(GLES31.GL_SHADER_STORAGE_BUFFER, 0, BUFFERING*mBufferSize*4, GLES31.GL_MAP_READ_BIT );
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      mIntBuffer = buf.order(ByteOrder.nativeOrder()).asIntBuffer();
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      GLES31.glBindBufferBase(GLES31.GL_SHADER_STORAGE_BUFFER,0, mSSBO[0]);
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      }
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    mSurfaceID = mSurfaceCounter.returnNext();
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    if( mSurfaceID>=mBufferSize )
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      {
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      // increase size of the Buffer, copy over old values, remap.
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      int[] tmp = new int[BUFFERING*mBufferSize];
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      for(int i=0;i<BUFFERING*mBufferSize;i++) tmp[i] = mIntBuffer.get(i);
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      mBufferSize*= 2;
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      GLES31.glBindBufferBase(GLES31.GL_SHADER_STORAGE_BUFFER, 0, 0);
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      GLES31.glUnmapBuffer(GLES31.GL_SHADER_STORAGE_BUFFER);
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      GLES31.glBindBuffer(GLES31.GL_SHADER_STORAGE_BUFFER,0);
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      GLES31.glBindBuffer(GLES31.GL_SHADER_STORAGE_BUFFER, mSSBO[0]);
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      GLES31.glBufferData(GLES31.GL_SHADER_STORAGE_BUFFER, BUFFERING*mBufferSize*4 , null, GLES31.GL_DYNAMIC_READ);
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      ByteBuffer buf = (ByteBuffer) GLES31.glMapBufferRange(GLES31.GL_SHADER_STORAGE_BUFFER, 0, BUFFERING*mBufferSize*4, GLES31.GL_MAP_READ_BIT );
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      mIntBuffer = buf.order(ByteOrder.nativeOrder()).asIntBuffer();
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      GLES31.glBindBufferBase(GLES31.GL_SHADER_STORAGE_BUFFER,0, mSSBO[0]);
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      for(int i=0;i<tmp.length;i++) mIntBuffer.put(i,tmp[i]);
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      }
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    createSurface();
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// Must be called from a thread holding OpenGL Context
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  void delete()
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    {
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    mSurfaceCounter.release(mSurfaceID);
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    deleteSurface();
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  void recreate()
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    {
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    mSSBO[0] = -1;
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    mSurfaceCounter.releaseAll();
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    recreateSurface();
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  int getNewCounter()
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    {
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    int value = mIntBuffer.get(BUFFERING*mSurfaceID+mLastIndex);
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    if( value!=mLastValue )
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      {
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      mLastValue = value;
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      android.util.Log.d("surface", "surface id: "+mSurfaceID+" value now: "+mLastValue);
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      }
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    mLastIndex++;
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    if( mLastIndex>=BUFFERING ) mLastIndex-=BUFFERING;
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    mIntBuffer.put(BUFFERING*mSurfaceID+mLastIndex,0);
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    return BUFFERING*mSurfaceID + mLastIndex;
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  private void createProjection()
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    {
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    if( mWidth>0 && mHeight>1 )
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      {
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      if( mFOV>0.0f )  // perspective projection
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        {
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        float a = 2.0f*(float)Math.tan(mFOV*Math.PI/360);
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        float q = mWidth*mNear;
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        float c = mHeight*mNear;
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        float left   = -q/2;
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        float right  = +q/2;
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        float bottom = -c/2;
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        float top    = +c/2;
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        float near   =  c/a;
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        mDistance    = mHeight/a;
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        float far    = 2*mDistance-near;
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        Matrix.frustumM(mProjectionMatrix, 0, left, right, bottom, top, near, far);
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        }
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      else             // parallel projection
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        {
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        float left   = -mWidth/2.0f;
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        float right  = +mWidth/2.0f;
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        float bottom = -mHeight/2.0f;
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        float top    = +mHeight/2.0f;
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        float near   = mWidth+mHeight-mHeight*(1.0f-mNear);
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        mDistance    = mWidth+mHeight;
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        float far    = mWidth+mHeight+mHeight*(1.0f-mNear);
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278
        Matrix.orthoM(mProjectionMatrix, 0, left, right, bottom, top, near, far);
279
        }
280
      }
281
    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
284

    
285
  private void createBuffers()
286
    {
287
    float mipmap=1.0f;
288

    
289
    for(int j=0; j<EffectQuality.LENGTH; j++)
290
      {
291
      mBuffer[j] = new DistortedFramebuffer(2,BOTH_DEPTH_STENCIL,TYPE_SYST, (int)(mWidth*mipmap), (int)(mHeight*mipmap) );
292
      mBuffer[j].mMipmap = mipmap;
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      mBuffer[j].mNear   = mNear;  // copy mNear as well (for blitting- see PostprocessEffect.apply() )
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      mBuffer[j].glClearColor(1.0f,1.0f,1.0f,0.0f);
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      mipmap *= EffectQuality.MULTIPLIER;
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      }
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298
    mBuffer[EffectQuality.LENGTH] = this;
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    DistortedObject.toDo(); // create the FBOs immediately. This is safe as we must be holding the OpenGL context now.
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    GLES31.glStencilMask(0xff);
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    GLES31.glDepthMask(true);
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    GLES31.glColorMask(true,true,true,true);
305
    GLES31.glClearColor(0.0f,0.0f,0.0f,0.0f);
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    GLES31.glClearDepthf(1.0f);
307
    GLES31.glClearStencil(0);
308

    
309
    for(int j=0; j<EffectQuality.LENGTH; j++)
310
      {
311
      mBuffer[j].setAsOutput();
312
      GLES31.glFramebufferTexture2D(GLES31.GL_FRAMEBUFFER, GLES31.GL_COLOR_ATTACHMENT0, GLES31.GL_TEXTURE_2D, mBuffer[j].mColorH[1], 0);
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      GLES31.glClear(GLES31.GL_COLOR_BUFFER_BIT|GLES31.GL_DEPTH_BUFFER_BIT|GLES31.GL_STENCIL_BUFFER_BIT);
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      GLES31.glFramebufferTexture2D(GLES31.GL_FRAMEBUFFER, GLES31.GL_COLOR_ATTACHMENT0, GLES31.GL_TEXTURE_2D, mBuffer[j].mColorH[0], 0);
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      GLES31.glClear(GLES31.GL_COLOR_BUFFER_BIT);
316
      }
317
    }
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319
///////////////////////////////////////////////////////////////////////////////////////////////////
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321
  private int blitWithDepth(long currTime, DistortedOutputSurface buffer)
322
    {
323
    GLES31.glViewport(0, 0, mWidth, mHeight);
324
    setAsOutput(currTime);
325
    GLES31.glActiveTexture(GLES31.GL_TEXTURE0);
326
    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, buffer.mColorH[0]);
327
    GLES31.glActiveTexture(GLES31.GL_TEXTURE1);
328
    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, buffer.mDepthStencilH[0]);
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330
    GLES31.glDisable(GLES31.GL_STENCIL_TEST);
331
    GLES31.glStencilMask(0x00);
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333
    DistortedEffects.blitDepthPriv(this);
334
    GLES31.glActiveTexture(GLES31.GL_TEXTURE0);
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    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, 0);
336
    GLES31.glActiveTexture(GLES31.GL_TEXTURE1);
337
    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, 0);
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    // clear buffers
340
    GLES31.glStencilMask(0xff);
341
    GLES31.glDepthMask(true);
342
    GLES31.glColorMask(true,true,true,true);
343
    GLES31.glClearColor(0.0f,0.0f,0.0f,0.0f);
344
    GLES31.glClearDepthf(1.0f);
345
    GLES31.glClearStencil(0);
346

    
347
    buffer.setAsOutput();
348
    GLES31.glFramebufferTexture2D(GLES31.GL_FRAMEBUFFER, GLES31.GL_COLOR_ATTACHMENT0, GLES31.GL_TEXTURE_2D, buffer.mColorH[1], 0);
349
    GLES31.glClear(GLES31.GL_COLOR_BUFFER_BIT|GLES31.GL_DEPTH_BUFFER_BIT|GLES31.GL_STENCIL_BUFFER_BIT);
350
    GLES31.glFramebufferTexture2D(GLES31.GL_FRAMEBUFFER, GLES31.GL_COLOR_ATTACHMENT0, GLES31.GL_TEXTURE_2D, buffer.mColorH[0], 0);
351
    GLES31.glClear(GLES31.GL_COLOR_BUFFER_BIT);
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353
    return 1;
354
    }
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356
///////////////////////////////////////////////////////////////////////////////////////////////////
357
// Render all children, one by one. If there are no postprocessing effects, just render to THIS.
358
// Otherwise, render to a buffer and on each change of Postprocessing Bucket, apply the postprocessing
359
// to a whole buffer and merge it.
360

    
361
  int renderChildren(long time, int numChildren, ArrayList<DistortedNode> children)
362
    {
363
    int quality=0, internalQuality = 0, numRenders = 0, bucketChange = 0;
364
    DistortedNode child1, child2;
365
    EffectQueuePostprocess lastQueue=null, currQueue;
366
    long lastBucket=0, currBucket;
367

    
368
    for(int i=0; i<numChildren; i++)
369
      {
370
      child1 = children.get(i);
371
      currQueue = child1.getPostprocessQueue();
372
      currBucket= currQueue.getID();
373

    
374
      if( currBucket==0 ) numRenders += child1.draw(time,this);
375
      else
376
        {
377
        if( mBuffer[0]==null ) createBuffers();
378

    
379
        if( lastBucket!=currBucket )
380
          {
381
          if( lastBucket!=0 )
382
            {
383
            for(int j=bucketChange; j<i; j++)
384
              {
385
              child2 = children.get(j);
386
              numRenders += child2.markStencilAndDepth(time,mBuffer[internalQuality],lastQueue);
387
              }
388

    
389
            numRenders += lastQueue.postprocess(this);
390
            numRenders += blitWithDepth(time, mBuffer[quality]);
391
            }
392

    
393
          internalQuality = currQueue.getInternalQuality();
394
          quality         = currQueue.getQuality();
395
          bucketChange    = i;
396
          }
397

    
398
        child1.draw(time,mBuffer[quality]);
399
        //numRenders += currQueue.draw(child1,time,mBuffer);
400

    
401
        if( i==numChildren-1 )
402
          {
403
          for(int j=bucketChange; j<numChildren; j++)
404
            {
405
            child2 = children.get(j);
406
            numRenders += child2.markStencilAndDepth(time,mBuffer[internalQuality],currQueue);
407
            }
408

    
409
          numRenders += currQueue.postprocess(this);
410
          numRenders += blitWithDepth(time, mBuffer[quality]);
411
          }
412
        }
413

    
414
      lastQueue = currQueue;
415
      lastBucket= currBucket;
416
      }
417

    
418
    return numRenders;
419
    }
420

    
421
///////////////////////////////////////////////////////////////////////////////////////////////////
422

    
423
  ArrayList<DistortedNode> getChildren()
424
    {
425
    return mChildren;
426
    }
427

    
428
///////////////////////////////////////////////////////////////////////////////////////////////////
429
// PUBLIC API
430
///////////////////////////////////////////////////////////////////////////////////////////////////
431
/**
432
 * Make the library show various debugging information.
433
 * <p>
434
 * Currently only DEBUG_FPS - show FPS in the upper-left corner of every Screen - is defined.
435
 *
436
 * @param bitmask 0, or a bitmask of DEBUG_** flags to enable (currently only DEBUG_FPS defined)
437
 */
438
  public void setDebug(int bitmask)
439
    {
440
    if( this instanceof DistortedScreen )
441
      mDebugLevel = bitmask;
442
    }
443

    
444
///////////////////////////////////////////////////////////////////////////////////////////////////
445

    
446
/**
447
 * Draws all the attached children to this OutputSurface.
448
 * <p>
449
 * Must be called from a thread holding OpenGL Context.
450
 *
451
 * @param time Current time, in milliseconds. This will be passed to all the Effects stored in the children Nodes.
452
 * @return Number of objects rendered.
453
 */
454
  public int render(long time)
455
    {
456
    if( mDebugLevel!=0 ) prepareDebug(time);
457

    
458
    // change tree topology (attach and detach children)
459
/*
460
    boolean changed1 =
461
*/
462
    DistortedMaster.toDo();
463
/*
464
    if( changed1 )
465
      {
466
      for(int i=0; i<mNumChildren; i++)
467
        {
468
        mChildren.get(i).debug(0);
469
        }
470

    
471
      DistortedNode.debugMap();
472
      }
473
*/
474
    // create and delete all underlying OpenGL resources
475
    // Watch out: FIRST change topology, only then deal
476
    // with OpenGL resources. That's because changing Tree
477
    // can result in additional Framebuffers that would need
478
    // to be created immediately, before the calls to drawRecursive()
479
/*
480
    boolean changed2 =
481
*/
482
    toDo();
483
/*
484
    if( changed2 )
485
      {
486
      DistortedObject.debugLists();
487
      }
488
*/
489
    // mark OpenGL state as unknown
490
    DistortedRenderState.reset();
491

    
492
    int numRenders=0;
493

    
494
    for(int i=0; i<mNumChildren; i++)
495
      {
496
      numRenders += mChildren.get(i).renderRecursive(time);
497
      }
498

    
499
    setAsOutput(time);
500
    numRenders += renderChildren(time,mNumChildren,mChildren);
501

    
502
    if( mDebugLevel != 0 ) renderDebug(time);
503

    
504
    return numRenders;
505
    }
506

    
507
///////////////////////////////////////////////////////////////////////////////////////////////////
508
/**
509
 * Bind this Surface as a Framebuffer we can render to.
510
 *
511
 * @param time Present time, in milliseconds. The point: looking at this param the library can figure
512
 *             out if this is the first time during present frame that this FBO is being set as output.
513
 *             If so, the library, in addition to binding the Surface for output, also clears the
514
 *             Surface's color and depth attachments.
515
 */
516
  public void setAsOutput(long time)
517
    {
518
    GLES31.glBindFramebuffer(GLES31.GL_FRAMEBUFFER, mFBOH[0]);
519

    
520
    if( mTime!=time )
521
      {
522
      mTime = time;
523
      DistortedRenderState.colorDepthStencilOn();
524
      GLES31.glClearColor(mClearR, mClearG, mClearB, mClearA);
525
      GLES31.glClearDepthf(mClearDepth);
526
      GLES31.glClearStencil(mClearStencil);
527
      GLES31.glClear(mClear);
528
      DistortedRenderState.colorDepthStencilRestore();
529
      }
530
    }
531

    
532
///////////////////////////////////////////////////////////////////////////////////////////////////
533
/**
534
 * Bind this Surface as a Framebuffer we can render to.
535
 * <p>
536
 * This version does not attempt to clear anything.
537
 */
538

    
539
  public void setAsOutput()
540
    {
541
    GLES31.glBindFramebuffer(GLES31.GL_FRAMEBUFFER, mFBOH[0]);
542
    }
543

    
544
///////////////////////////////////////////////////////////////////////////////////////////////////
545
/**
546
 * Return the Near plane of the Projection included in the Surface.
547
 *
548
 * @return the Near plane.
549
 */
550
  public float getNear()
551
    {
552
    return mNear;
553
    }
554

    
555
///////////////////////////////////////////////////////////////////////////////////////////////////
556
/**
557
 * Set mipmap level.
558
 * <p>
559
 * Trick for speeding up your renders - one can create a pyramid of OutputSurface objects, each next
560
 * one some constant FACTOR smaller than the previous (0.5 is the common value), then set the Mipmap
561
 * Level of the i-th object to be FACTOR^i (we start counting from 0). When rendering any scene into
562
 * such prepared OutputSurface, the library will make sure to scale any Effects used so that the end
563
 * scene will end up looking identical no matter which object we render to. Identical, that is, except
564
 * for the loss of quality and gain in speed associated with rendering to a smaller Surface.
565
 * <p>
566
 * Example: if you create two FBOs, one 1000x1000 and another 500x500 in size, and set the second one
567
 * mipmap to 0.5 (the first one's is 1.0 by default), define Effects to be a single move by (100,100),
568
 * and render a skinned Mesh into both FBO, the end result will look proportionally the same, because
569
 * in the second case the move vector (100,100) will be auto-scaled to (50,50).
570
 *
571
 * @param mipmap The mipmap level. Acceptable range: 0&lt;mipmap&lt;infinity, although mipmap&gt;1
572
 *               does not make any sense (that would result in loss of speed and no gain in quality)
573
 */
574
  public void setMipmap(float mipmap)
575
    {
576
    mMipmap = mipmap;
577
    }
578

    
579
///////////////////////////////////////////////////////////////////////////////////////////////////
580
/**
581
 * Set the (R,G,B,A) values of GLES31.glClearColor() to set up color with which to clear
582
 * this Surface at the beginning of each frame.
583
 *
584
 * @param r the Red component. Default: 0.0f
585
 * @param g the Green component. Default: 0.0f
586
 * @param b the Blue component. Default: 0.0f
587
 * @param a the Alpha component. Default: 0.0f
588
 */
589
  public void glClearColor(float r, float g, float b, float a)
590
    {
591
    mClearR = r;
592
    mClearG = g;
593
    mClearB = b;
594
    mClearA = a;
595
    }
596

    
597
///////////////////////////////////////////////////////////////////////////////////////////////////
598
/**
599
 * Uses glClearDepthf() to set up a value with which to clear
600
 * the Depth buffer of our Surface at the beginning of each frame.
601
 *
602
 * @param d the Depth. Default: 1.0f
603
 */
604
  public void glClearDepthf(float d)
605
    {
606
    mClearDepth = d;
607
    }
608

    
609
///////////////////////////////////////////////////////////////////////////////////////////////////
610
/**
611
 * Uses glClearStencil() to set up a value with which to clear the
612
 * Stencil buffer of our Surface at the beginning of each frame.
613
 *
614
 * @param s the Stencil. Default: 0
615
 */
616
  public void glClearStencil(int s)
617
    {
618
    mClearStencil = s;
619
    }
620

    
621
///////////////////////////////////////////////////////////////////////////////////////////////////
622
/**
623
 * Which buffers to Clear at the beginning of each frame?
624
 * <p>
625
 * Valid values: 0, or bitwise OR of one or more values from the set GL_COLOR_BUFFER_BIT,
626
 *               GL_DEPTH_BUFFER_BIT, GL_STENCIL_BUFFER_BIT.
627
 * Default: GL_DEPTH_BUFFER_BIT | GL_COLOR_BUFFER_BIT.
628
 *
629
 * @param mask bitwise OR of BUFFER_BITs to clear.
630
 */
631
  public void glClear(int mask)
632
    {
633
    mClear = mask;
634
    }
635

    
636
///////////////////////////////////////////////////////////////////////////////////////////////////
637
/**
638
 * Create new Projection matrix.
639
 *
640
 * @param fov Vertical 'field of view' of the Projection frustrum (in degrees).
641
 *            Valid values: 0<=fov<180. FOV==0 means 'parallel projection'.
642
 * @param near Distance between the screen plane and the near plane.
643
 *             Valid vaules: 0<near<1. When near==0, the Near Plane is exactly at the tip of the
644
 *             pyramid. When near==1 (illegal!) the near plane is equivalent to the screen plane.
645
 */
646
  public void setProjection(float fov, float near)
647
    {
648
    if( fov < 180.0f && fov >=0.0f )
649
      {
650
      mFOV = fov;
651
      }
652

    
653
    if( near<   1.0f && near> 0.0f )
654
      {
655
      mNear= near;
656
      }
657
    else if( near<=0.0f )
658
      {
659
      mNear = 0.01f;
660
      }
661
    else if( near>=1.0f )
662
      {
663
      mNear=0.99f;
664
      }
665

    
666
    if( mBuffer[0]!=null )
667
      {
668
      for(int j=0; j<EffectQuality.LENGTH; j++) mBuffer[j].mNear = mNear;
669
      }
670

    
671
    createProjection();
672
    }
673

    
674
///////////////////////////////////////////////////////////////////////////////////////////////////
675
/**
676
 * Resize the underlying Framebuffer.
677
 * <p>
678
 * This method can be safely called mid-render as it doesn't interfere with rendering.
679
 *
680
 * @param width The new width.
681
 * @param height The new height.
682
 */
683
  public void resize(int width, int height)
684
    {
685
    if( mWidth!=width || mHeight!=height )
686
      {
687
      mWidth = width;
688
      mHeight= height;
689

    
690
      createProjection();
691

    
692
      if( mColorCreated==CREATED )
693
        {
694
        markForCreation();
695
        recreate();
696
        }
697
      }
698
    }
699

    
700
///////////////////////////////////////////////////////////////////////////////////////////////////
701
/**
702
 * Return true if the Surface contains a DEPTH attachment.
703
 *
704
 * @return <bold>true</bold> if the Surface contains a DEPTH attachment.
705
 */
706
  public boolean hasDepth()
707
    {
708
    return mDepthStencilCreated==CREATED;
709
    }
710

    
711
///////////////////////////////////////////////////////////////////////////////////////////////////
712
/**
713
 * Return true if the Surface contains a STENCIL attachment.
714
 *
715
 * @return <bold>true</bold> if the Surface contains a STENCIL attachment.
716
 */
717
  public boolean hasStencil()
718
    {
719
    return (mDepthStencilCreated==CREATED && mDepthStencil==BOTH_DEPTH_STENCIL);
720
    }
721

    
722
///////////////////////////////////////////////////////////////////////////////////////////////////
723
/**
724
 * Adds a new child to the last position in the list of our Surface's children.
725
 * <p>
726
 * We cannot do this mid-render - actual attachment will be done just before the next render, by the
727
 * DistortedMaster (by calling doWork())
728
 *
729
 * @param node The new Node to add.
730
 */
731
  public void attach(DistortedNode node)
732
    {
733
    mJobs.add(new Job(ATTACH,node));
734
    DistortedMaster.newSlave(this);
735
    }
736

    
737
///////////////////////////////////////////////////////////////////////////////////////////////////
738
/**
739
 * Adds a new child to the last position in the list of our Surface's children.
740
 * <p>
741
 * We cannot do this mid-render - actual attachment will be done just before the next render, by the
742
 * DistortedMaster (by calling doWork())
743
 *
744
 * @param surface InputSurface to initialize our child Node with.
745
 * @param effects DistortedEffects to initialize our child Node with.
746
 * @param mesh MeshObject to initialize our child Node with.
747
 * @return the newly constructed child Node, or null if we couldn't allocate resources.
748
 */
749
  public DistortedNode attach(DistortedInputSurface surface, DistortedEffects effects, MeshObject mesh)
750
    {
751
    DistortedNode node = new DistortedNode(surface,effects,mesh);
752
    mJobs.add(new Job(ATTACH,node));
753
    DistortedMaster.newSlave(this);
754
    return node;
755
    }
756

    
757
///////////////////////////////////////////////////////////////////////////////////////////////////
758
/**
759
 * Removes the first occurrence of a specified child from the list of children of our Surface.
760
 * <p>
761
 * A bit questionable method as there can be many different Nodes attached as children, some
762
 * of them having the same Effects but - for instance - different Mesh. Use with care.
763
 * <p>
764
 * We cannot do this mid-render - actual detachment will be done just before the next render, by the
765
 * DistortedMaster (by calling doWork())
766
 *
767
 * @param effects DistortedEffects to remove.
768
 */
769
  public void detach(DistortedEffects effects)
770
    {
771
    long id = effects.getID();
772
    DistortedNode node;
773
    boolean detached = false;
774

    
775
    for(int i=0; i<mNumChildren; i++)
776
      {
777
      node = mChildren.get(i);
778

    
779
      if( node.getEffects().getID()==id )
780
        {
781
        detached = true;
782
        mJobs.add(new Job(DETACH,node));
783
        DistortedMaster.newSlave(this);
784
        break;
785
        }
786
      }
787

    
788
    if( !detached )
789
      {
790
      // if we failed to detach any, it still might be the case that
791
      // there's an ATTACH job that we need to cancel.
792
      int num = mJobs.size();
793
      Job job;
794

    
795
      for(int i=0; i<num; i++)
796
        {
797
        job = mJobs.get(i);
798

    
799
        if( job.type==ATTACH && job.node.getEffects()==effects )
800
          {
801
          mJobs.remove(i);
802
          break;
803
          }
804
        }
805
      }
806
    }
807

    
808
///////////////////////////////////////////////////////////////////////////////////////////////////
809
/**
810
 * Removes the first occurrence of a specified child from the list of children of our Surface.
811
 * <p>
812
 * We cannot do this mid-render - actual attachment will be done just before the next render, by the
813
 * DistortedMaster (by calling doWork())
814
 *
815
 * @param node The Node to remove.
816
 */
817
  public void detach(DistortedNode node)
818
    {
819
    mJobs.add(new Job(DETACH,node));
820
    DistortedMaster.newSlave(this);
821
    }
822

    
823
///////////////////////////////////////////////////////////////////////////////////////////////////
824
/**
825
 * Removes all children Nodes.
826
 * <p>
827
 * We cannot do this mid-render - actual attachment will be done just before the next render, by the
828
 * DistortedMaster (by calling doWork())
829
 */
830
  public void detachAll()
831
    {
832
    mJobs.add(new Job(DETALL,null));
833
    DistortedMaster.newSlave(this);
834
    }
835

    
836
///////////////////////////////////////////////////////////////////////////////////////////////////
837
/**
838
 * This is not really part of the public API. Has to be public only because it is a part of the
839
 * DistortedSlave interface, which should really be a class that we extend here instead but
840
 * Java has no multiple inheritance.
841
 *
842
 * @y.exclude
843
 */
844
  public void doWork()
845
    {
846
    int num = mJobs.size();
847
    Job job;
848

    
849
    for(int i=0; i<num; i++)
850
      {
851
      job = mJobs.remove(0);
852

    
853
      switch(job.type)
854
        {
855
        case ATTACH: if( mChildren==null ) mChildren = new ArrayList<>(2);
856
                     job.node.setSurfaceParent(this);
857
                     DistortedMaster.addSorted(mChildren,job.node);
858
                     mNumChildren++;
859
                     break;
860
        case DETACH: if( mNumChildren>0 && mChildren.remove(job.node) )
861
                       {
862
                       job.node.setSurfaceParent(null);
863
                       mNumChildren--;
864
                       }
865
                     break;
866
        case DETALL: if( mNumChildren>0 )
867
                       {
868
                       DistortedNode tmp;
869

    
870
                       for(int j=mNumChildren-1; j>=0; j--)
871
                         {
872
                         tmp = mChildren.remove(j);
873
                         tmp.setSurfaceParent(null);
874
                         }
875

    
876
                       mNumChildren = 0;
877
                       }
878
                     break;
879
        case SORT  : mChildren.remove(job.node);
880
                     DistortedMaster.addSorted(mChildren,job.node);
881
                     break;
882
        }
883
      }
884
    }
885
}
(9-9/22)