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library / src / main / java / org / distorted / library / main / DistortedOutputSurface.java @ 406e2f6b

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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.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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/**
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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 boolean mRenderWayOIT;
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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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  // Global buffers used for postprocessing.
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  private static DistortedOutputSurface[] mBuffer = new DistortedOutputSurface[EffectQuality.LENGTH];
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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;
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  int[] mFBOH;
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  private long[] mTime;
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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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  int mRealWidth;   // the Surface can be backed up with a texture that is
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  int mRealHeight;  // larger than the viewport we have to it.
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                    // mWidth,mHeight are the sizes of the Viewport, those -
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                    // sizes of the backing up texture.
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  DistortedOutputSurface(int width, int height, int createColor, int numfbos, int numcolors, int depthStencil, int fbo, int type)
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    {
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    super(width,height,createColor,numfbos,numcolors,type);
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    mRenderWayOIT = false;
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    mDepthStencilH = new int[numfbos];
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    mFBOH          = new int[numfbos];
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    mTime = new long[numfbos];
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    for(int i=0; i<mNumFBOs;i++) mTime[i]=0;
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    mRealWidth = width;
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    mRealHeight= height;
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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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    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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    mMipmap = 1.0f;
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    createProjection();
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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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        Matrix.orthoM(mProjectionMatrix, 0, left, right, bottom, top, near, far);
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        }
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      }
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  private static void createPostprocessingBuffers(int width, int height, float near)
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    {
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    float mipmap=1.0f;
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    for (int j=0; j<EffectQuality.LENGTH; j++)
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      {
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      mBuffer[j] = new DistortedFramebuffer(Distorted.FBO_QUEUE_SIZE,2,BOTH_DEPTH_STENCIL,TYPE_SYST, (int)(width*mipmap), (int)(height*mipmap) );
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      mBuffer[j].mMipmap = mipmap;
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      mBuffer[j].mNear = near;  // 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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    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);
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    GLES31.glClearColor(1.0f, 1.0f, 1.0f, 0.0f);
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    GLES31.glClearDepthf(1.0f);
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    GLES31.glClearStencil(0);
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    for (int j=0; j<EffectQuality.LENGTH; j++)
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      {
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      for(int k=0; k<Distorted.FBO_QUEUE_SIZE; k++)
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        {
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        GLES31.glBindFramebuffer(GLES31.GL_FRAMEBUFFER, mBuffer[j].mFBOH[k]);
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        GLES31.glFramebufferTexture2D(GLES31.GL_FRAMEBUFFER, GLES31.GL_COLOR_ATTACHMENT0, GLES31.GL_TEXTURE_2D, mBuffer[j].mColorH[2*k+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[2*k  ], 0);
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        GLES31.glClear(GLES31.GL_COLOR_BUFFER_BIT);
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        }
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      }
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    GLES31.glBindFramebuffer(GLES31.GL_FRAMEBUFFER, 0);
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  static synchronized void onDestroy()
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    {
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    for(int j=0; j<EffectQuality.LENGTH; j++)
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      {
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      mBuffer[j] = null;
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      }
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// The postprocessing buffers mBuffer[] are generally speaking too large (there's just one static
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// set of them) so before we use them for output, we need to adjust the Viewport as if they were
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// smaller. That takes care of outputting pixels to them. When we use them as input, we have to
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// adjust the texture coords - see the get{Width|Height}Correction functions.
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  private static void clonePostprocessingViewport(DistortedOutputSurface from)
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    {
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    if( mBuffer[0].mWidth != from.mWidth || mBuffer[0].mHeight != from.mHeight )
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      {
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      DistortedOutputSurface surface;
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      for(int i=0; i<EffectQuality.LENGTH; i++)
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        {
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        surface = mBuffer[i];
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        surface.mWidth  = (int)(from.mWidth *surface.mMipmap);
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        surface.mHeight = (int)(from.mHeight*surface.mMipmap);
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        surface.mNear   = from.mNear;  // Near plane is independent of the mipmap level
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        //android.util.Log.e("surface", "viewport "+i+" to ("+from.mWidth+"x"+from.mHeight+")");
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        surface.createProjection();
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        int maxw = surface.mWidth  > surface.mRealWidth  ? surface.mWidth  : surface.mRealWidth;
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        int maxh = surface.mHeight > surface.mRealHeight ? surface.mHeight : surface.mRealHeight;
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        if (maxw > surface.mRealWidth || maxh > surface.mRealHeight)
256
          {
257
          surface.mRealWidth = maxw;
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          surface.mRealHeight = maxh;
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          surface.recreate();
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          surface.create();
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          }
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        }
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      }
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  private int blitWithDepth(long currTime, DistortedOutputSurface buffer,int fbo)
270
    {
271
    GLES31.glViewport(0, 0, mWidth, mHeight);
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    setAsOutputFBO(currTime,fbo);
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    GLES31.glActiveTexture(GLES31.GL_TEXTURE0);
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    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, buffer.mColorH[2*fbo]);
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    GLES31.glActiveTexture(GLES31.GL_TEXTURE1);
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    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, buffer.mDepthStencilH[fbo]);
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    GLES31.glDisable(GLES31.GL_STENCIL_TEST);
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    GLES31.glStencilMask(0x00);
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    DistortedEffects.blitDepthPriv(this, buffer.getWidthCorrection(), buffer.getHeightCorrection() );
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    GLES31.glActiveTexture(GLES31.GL_TEXTURE0);
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    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, 0);
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    GLES31.glActiveTexture(GLES31.GL_TEXTURE1);
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    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, 0);
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287
    // clear buffers
288
    GLES31.glStencilMask(0xff);
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    GLES31.glDepthMask(true);
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    GLES31.glColorMask(true,true,true,true);
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    GLES31.glClearColor(0.0f,0.0f,0.0f,0.0f);
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    GLES31.glClearDepthf(1.0f);
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    GLES31.glClearStencil(0);
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    buffer.setAsOutputFBO(fbo);
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    GLES31.glFramebufferTexture2D(GLES31.GL_FRAMEBUFFER, GLES31.GL_COLOR_ATTACHMENT0, GLES31.GL_TEXTURE_2D, buffer.mColorH[2*fbo+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, buffer.mColorH[2*fbo  ], 0);
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    GLES31.glClear(GLES31.GL_COLOR_BUFFER_BIT);
300

    
301
    return 1;
302
    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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306
  private static void oitClear(DistortedOutputSurface buffer)
307
    {
308
    DistortedEffects.zeroOutAtomic();
309
    DistortedEffects.oitClear(buffer);
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    GLES31.glMemoryBarrier(GLES31.GL_SHADER_STORAGE_BARRIER_BIT|GLES31.GL_ATOMIC_COUNTER_BARRIER_BIT);
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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315
  private int oitBuild(long time, DistortedOutputSurface buffer, int fbo)
316
    {
317
    GLES31.glViewport(0, 0, mWidth, mHeight);
318
    setAsOutputFBO(time,fbo);
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    GLES31.glActiveTexture(GLES31.GL_TEXTURE0);
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    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, buffer.mColorH[2*fbo]);
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    GLES31.glActiveTexture(GLES31.GL_TEXTURE1);
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    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, buffer.mDepthStencilH[fbo]);
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324
    DistortedRenderState.colorDepthStencilOn();
325
    DistortedRenderState.enableDepthTest();
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327
    DistortedEffects.oitBuild(this, buffer.getWidthCorrection(), buffer.getHeightCorrection() );
328
    GLES31.glActiveTexture(GLES31.GL_TEXTURE0);
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    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, 0);
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    GLES31.glActiveTexture(GLES31.GL_TEXTURE1);
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    GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, 0);
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333
    DistortedRenderState.colorDepthStencilRestore();
334
    DistortedRenderState.restoreDepthTest();
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336
    return 1;
337
    }
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339
///////////////////////////////////////////////////////////////////////////////////////////////////
340
// two phases: 1. collapse the SSBO 2. blend the ssbo's color
341

    
342
  private int oitRender(long currTime, int fbo)
343
    {
344
    float corrW = getWidthCorrection();
345
    float corrH = getHeightCorrection();
346

    
347
    // Do the Collapse Pass only if we do have a Depth attachment.
348
    // Otherwise there's no point (in fact we then would create a feedback loop!)
349

    
350
    if( mDepthStencilH[fbo] != 0 )
351
      {
352
      GLES31.glBindFramebuffer(GLES31.GL_FRAMEBUFFER, 0);
353
      GLES31.glActiveTexture(GLES31.GL_TEXTURE1);
354
      GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, mDepthStencilH[fbo]);
355
      DistortedRenderState.switchOffColorDepthStencil();
356
      DistortedEffects.oitCollapse(this, corrW, corrH);
357
      GLES31.glBindTexture(GLES31.GL_TEXTURE_2D, 0);
358
      }
359

    
360
    setAsOutputFBO(currTime,fbo);
361
    DistortedRenderState.switchColorDepthOnStencilOff();
362
    DistortedEffects.oitRender(this, corrW, corrH);
363
    DistortedRenderState.restoreColorDepthStencil();
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365
    return 1;
366
    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
369

    
370
  void clear()
371
    {
372
    DistortedRenderState.colorDepthStencilOn();
373
    GLES31.glClearColor(mClearR, mClearG, mClearB, mClearA);
374
    GLES31.glClearDepthf(mClearDepth);
375
    GLES31.glClearStencil(mClearStencil);
376
    GLES31.glClear(mClear);
377
    DistortedRenderState.colorDepthStencilRestore();
378
    }
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380
///////////////////////////////////////////////////////////////////////////////////////////////////
381
// Render all children, one by one. If there are no postprocessing effects, just render to THIS.
382
// Otherwise, render to a buffer and on each change of Postprocessing Bucket, apply the postprocessing
383
// to a whole buffer (lastQueue.postprocess) and merge it (this.oitBuild).
384

    
385
  int renderChildren(long time, int numChildren, ArrayList<DistortedNode> children, int fbo, boolean oit)
386
    {
387
    int quality=0, internalQuality = 0, numRenders = 0, bucketChange = 0;
388
    DistortedNode child1, child2;
389
    EffectQueuePostprocess lastQueue=null, currQueue;
390
    long lastBucket=0, currBucket;
391

    
392
    for(int i=0; i<numChildren; i++)
393
      {
394
      child1 = children.get(i);
395
      currQueue = child1.getPostprocessQueue();
396
      currBucket= currQueue.getID();
397

    
398
      if( currBucket==0 )
399
        {
400
        setAsOutputFBO(time,fbo);
401
        numRenders += child1.draw(time,this);
402
        }
403
      else
404
        {
405
        if( mBuffer[0]==null ) createPostprocessingBuffers(mWidth,mHeight,mNear);
406

    
407
        if( lastBucket!=currBucket )
408
          {
409
          if( lastBucket==0 )
410
            {
411
            clonePostprocessingViewport(this);
412

    
413
            if( oit )
414
              {
415
              oitClear(this);
416
              }
417
            }
418
          else
419
            {
420
            for(int j=bucketChange; j<i; j++)
421
              {
422
              child2 = children.get(j);
423
              mBuffer[internalQuality].setAsOutputFBO(fbo);
424
              numRenders += child2.markStencilAndDepth(time,mBuffer[internalQuality],lastQueue);
425
              }
426

    
427
            numRenders += lastQueue.postprocess(mBuffer,fbo);
428

    
429
            if( oit )
430
              {
431
              numRenders += oitBuild(time, mBuffer[quality], fbo);
432
              GLES31.glMemoryBarrier(GLES31.GL_SHADER_STORAGE_BARRIER_BIT | GLES31.GL_ATOMIC_COUNTER_BARRIER_BIT);
433
              }
434
            else
435
              {
436
              numRenders += blitWithDepth(time, mBuffer[quality],fbo);
437
              }
438
            mBuffer[quality].clearBuffer(fbo);
439
            }
440

    
441
          internalQuality = currQueue.getInternalQuality();
442
          quality         = currQueue.getQuality();
443
          bucketChange    = i;
444
          }
445

    
446
        mBuffer[quality].setAsOutputFBO(time,fbo);
447
        child1.drawNoBlend(time,mBuffer[quality]);
448

    
449
        if( i==numChildren-1 )
450
          {
451
          for(int j=bucketChange; j<numChildren; j++)
452
            {
453
            child2 = children.get(j);
454
            mBuffer[internalQuality].setAsOutputFBO(fbo);
455
            numRenders += child2.markStencilAndDepth(time,mBuffer[internalQuality],currQueue);
456
            }
457

    
458
          numRenders += currQueue.postprocess(mBuffer,fbo);
459

    
460
          if( oit )
461
            {
462
            numRenders += oitBuild(time, mBuffer[quality], fbo);
463
            GLES31.glMemoryBarrier(GLES31.GL_SHADER_STORAGE_BARRIER_BIT | GLES31.GL_ATOMIC_COUNTER_BARRIER_BIT);
464
            numRenders += oitRender(time, fbo);  // merge the OIT linked list
465
            mBuffer[quality].clearBuffer(fbo);
466
            }
467
          else
468
            {
469
            numRenders += blitWithDepth(time, mBuffer[quality],fbo);
470
            }
471
          }
472
        } // end else (postprocessed child)
473

    
474
      lastQueue = currQueue;
475
      lastBucket= currBucket;
476
      } // end main for loop
477

    
478
    return numRenders;
479
    }
480

    
481
///////////////////////////////////////////////////////////////////////////////////////////////////
482

    
483
  ArrayList<DistortedNode> getChildren()
484
    {
485
    return mChildren;
486
    }
487

    
488
///////////////////////////////////////////////////////////////////////////////////////////////////
489
/**
490
 * Not part of the Public API.
491
 *
492
 * @y.exclude
493
 */
494
  public float getWidthCorrection()
495
    {
496
    return (float)mWidth/mRealWidth;
497
    }
498

    
499
///////////////////////////////////////////////////////////////////////////////////////////////////
500
/**
501
 * Not part of the Public API.
502
 *
503
 * @y.exclude
504
 */
505
  public float getHeightCorrection()
506
    {
507
    return (float)mHeight/mRealHeight;
508
    }
509

    
510
///////////////////////////////////////////////////////////////////////////////////////////////////
511

    
512
  private void clearBuffer(int fbo)
513
    {
514
    DistortedRenderState.colorDepthStencilOn();
515

    
516
    GLES31.glClearColor(mClearR, mClearG, mClearB, mClearA);
517
    GLES31.glClearDepthf(mClearDepth);
518
    GLES31.glClearStencil(mClearStencil);
519

    
520
    GLES31.glBindFramebuffer(GLES31.GL_FRAMEBUFFER, mFBOH[fbo]);
521
    GLES31.glFramebufferTexture2D(GLES31.GL_FRAMEBUFFER, GLES31.GL_COLOR_ATTACHMENT0, GLES31.GL_TEXTURE_2D, mColorH[2*fbo+1], 0);
522
    GLES31.glClear(GLES31.GL_COLOR_BUFFER_BIT|GLES31.GL_DEPTH_BUFFER_BIT|GLES31.GL_STENCIL_BUFFER_BIT);
523
    GLES31.glFramebufferTexture2D(GLES31.GL_FRAMEBUFFER, GLES31.GL_COLOR_ATTACHMENT0, GLES31.GL_TEXTURE_2D, mColorH[2*fbo  ], 0);
524
    GLES31.glClear(GLES31.GL_COLOR_BUFFER_BIT);
525

    
526
    DistortedRenderState.colorDepthStencilRestore();
527
    }
528

    
529
///////////////////////////////////////////////////////////////////////////////////////////////////
530

    
531
  private void setAsOutputFBO(long time, int fbo)
532
    {
533
    if( fbo>=0 && fbo<mNumFBOs )
534
      {
535
      GLES31.glBindFramebuffer(GLES31.GL_FRAMEBUFFER, mFBOH[fbo]);
536

    
537
      if (mTime[fbo] != time)
538
        {
539
        mTime[fbo] = time;
540
        clear();
541
        }
542
      }
543
    else
544
      {
545
      android.util.Log.e("surface", "error in setAsOutput1, fbo="+fbo);
546
      }
547
    }
548

    
549
///////////////////////////////////////////////////////////////////////////////////////////////////
550
/**
551
 * Not part of the Public API.
552
 *
553
 * @y.exclude
554
 */
555
  public void setAsOutputFBO(int fbo)
556
    {
557
    if( fbo>=0 && fbo<mNumFBOs )
558
      {
559
      GLES31.glBindFramebuffer(GLES31.GL_FRAMEBUFFER, mFBOH[fbo]);
560
      }
561
    else
562
      {
563
      android.util.Log.e("surface", "error in setAsOutput2, fbo="+fbo);
564
      }
565
    }
566

    
567
///////////////////////////////////////////////////////////////////////////////////////////////////
568
// PUBLIC API
569
///////////////////////////////////////////////////////////////////////////////////////////////////
570
/**
571
 * Draws all the attached children to this OutputSurface's 0th FBO.
572
 * <p>
573
 * Must be called from a thread holding OpenGL Context.
574
 *
575
 * @param time Current time, in milliseconds. This will be passed to all the Effects stored in the children Nodes.
576
 * @return Number of objects rendered.
577
 */
578
  public int render(long time)
579
    {
580
    return render(time,0);
581
    }
582

    
583
///////////////////////////////////////////////////////////////////////////////////////////////////
584
/**
585
 * Draws all the attached children to this OutputSurface.
586
 * <p>
587
 * Must be called from a thread holding OpenGL Context.
588
 *
589
 * @param time Current time, in milliseconds. This will be passed to all the Effects stored in the children Nodes.
590
 * @param fbo The surface can have many FBOs backing it up - render this to FBO number 'fbo'.
591
 * @return Number of objects rendered.
592
 */
593
  public int render(long time, int fbo)
594
    {
595
    // change tree topology (attach and detach children)
596
/*
597
    boolean changed1 =
598
*/
599
    DistortedMaster.toDo();
600
/*
601
    if( changed1 )
602
      {
603
      for(int i=0; i<mNumChildren; i++)
604
        {
605
        mChildren.get(i).debug(0);
606
        }
607

    
608
      DistortedNode.debugMap();
609
      }
610
*/
611
    // create and delete all underlying OpenGL resources
612
    // Watch out: FIRST change topology, only then deal
613
    // with OpenGL resources. That's because changing Tree
614
    // can result in additional Framebuffers that would need
615
    // to be created immediately, before the calls to drawRecursive()
616
/*
617
    boolean changed2 =
618
*/
619
    toDo();
620
/*
621
    if( changed2 )
622
      {
623
      DistortedObject.debugLists();
624
      }
625
*/
626
    // mark OpenGL state as unknown
627
    DistortedRenderState.reset();
628

    
629
    int numRenders=0;
630

    
631
    for(int i=0; i<mNumChildren; i++)
632
      {
633
      numRenders += mChildren.get(i).renderRecursive(time);
634
      }
635

    
636
    numRenders += renderChildren(time,mNumChildren,mChildren,fbo, mRenderWayOIT);
637

    
638
    return numRenders;
639
    }
640

    
641
///////////////////////////////////////////////////////////////////////////////////////////////////
642
/**
643
 * Bind this Surface as a Framebuffer we can render to.
644
 *
645
 * @param time Present time, in milliseconds. The point: looking at this param the library can figure
646
 *             out if this is the first time during present frame that this FBO is being set as output.
647
 *             If so, the library, in addition to binding the Surface for output, also clears the
648
 *             Surface's color and depth attachments.
649
 */
650
  public void setAsOutput(long time)
651
    {
652
    GLES31.glBindFramebuffer(GLES31.GL_FRAMEBUFFER, mFBOH[0]);
653

    
654
    if( mTime[0]!=time )
655
      {
656
      mTime[0] = time;
657
      clear();
658
      }
659
    }
660

    
661
///////////////////////////////////////////////////////////////////////////////////////////////////
662
/**
663
 * Bind this Surface as a Framebuffer we can render to.
664
 * <p>
665
 * This version does not attempt to clear anything.
666
 */
667
  public void setAsOutput()
668
    {
669
    GLES31.glBindFramebuffer(GLES31.GL_FRAMEBUFFER, mFBOH[0]);
670
    }
671

    
672
///////////////////////////////////////////////////////////////////////////////////////////////////
673
/**
674
 * Return the Near plane of the Projection included in the Surface.
675
 *
676
 * @return the Near plane.
677
 */
678
  public float getNear()
679
    {
680
    return mNear;
681
    }
682

    
683
///////////////////////////////////////////////////////////////////////////////////////////////////
684
/**
685
 * Set mipmap level.
686
 * <p>
687
 * Trick for speeding up your renders - one can create a pyramid of OutputSurface objects, each next
688
 * one some constant FACTOR smaller than the previous (0.5 is the common value), then set the Mipmap
689
 * Level of the i-th object to be FACTOR^i (we start counting from 0). When rendering any scene into
690
 * such prepared OutputSurface, the library will make sure to scale any Effects used so that the end
691
 * scene will end up looking identical no matter which object we render to. Identical, that is, except
692
 * for the loss of quality and gain in speed associated with rendering to a smaller Surface.
693
 * <p>
694
 * Example: if you create two FBOs, one 1000x1000 and another 500x500 in size, and set the second one
695
 * mipmap to 0.5 (the first one's is 1.0 by default), define Effects to be a single move by (100,100),
696
 * and render a skinned Mesh into both FBO, the end result will look proportionally the same, because
697
 * in the second case the move vector (100,100) will be auto-scaled to (50,50).
698
 *
699
 * @param mipmap The mipmap level. Acceptable range: 0&lt;mipmap&lt;infinity, although mipmap&gt;1
700
 *               does not make any sense (that would result in loss of speed and no gain in quality)
701
 */
702
  public void setMipmap(float mipmap)
703
    {
704
    mMipmap = mipmap;
705
    }
706

    
707
///////////////////////////////////////////////////////////////////////////////////////////////////
708
/**
709
 * Set the (R,G,B,A) values of GLES31.glClearColor() to set up color with which to clear
710
 * this Surface at the beginning of each frame.
711
 *
712
 * @param r the Red component. Default: 0.0f
713
 * @param g the Green component. Default: 0.0f
714
 * @param b the Blue component. Default: 0.0f
715
 * @param a the Alpha component. Default: 0.0f
716
 */
717
  public void glClearColor(float r, float g, float b, float a)
718
    {
719
    mClearR = r;
720
    mClearG = g;
721
    mClearB = b;
722
    mClearA = a;
723
    }
724

    
725
///////////////////////////////////////////////////////////////////////////////////////////////////
726
/**
727
 * Uses glClearDepthf() to set up a value with which to clear
728
 * the Depth buffer of our Surface at the beginning of each frame.
729
 *
730
 * @param d the Depth. Default: 1.0f
731
 */
732
  public void glClearDepthf(float d)
733
    {
734
    mClearDepth = d;
735
    }
736

    
737
///////////////////////////////////////////////////////////////////////////////////////////////////
738
/**
739
 * Uses glClearStencil() to set up a value with which to clear the
740
 * Stencil buffer of our Surface at the beginning of each frame.
741
 *
742
 * @param s the Stencil. Default: 0
743
 */
744
  public void glClearStencil(int s)
745
    {
746
    mClearStencil = s;
747
    }
748

    
749
///////////////////////////////////////////////////////////////////////////////////////////////////
750
/**
751
 * Which buffers to Clear at the beginning of each frame?
752
 * <p>
753
 * Valid values: 0, or bitwise OR of one or more values from the set GL_COLOR_BUFFER_BIT,
754
 *               GL_DEPTH_BUFFER_BIT, GL_STENCIL_BUFFER_BIT.
755
 * Default: GL_DEPTH_BUFFER_BIT | GL_COLOR_BUFFER_BIT.
756
 *
757
 * @param mask bitwise OR of BUFFER_BITs to clear.
758
 */
759
  public void glClear(int mask)
760
    {
761
    mClear = mask;
762
    }
763

    
764
///////////////////////////////////////////////////////////////////////////////////////////////////
765
/**
766
 * Create new Projection matrix.
767
 *
768
 * @param fov Vertical 'field of view' of the Projection frustrum (in degrees).
769
 *            Valid values: 0<=fov<180. FOV==0 means 'parallel projection'.
770
 * @param near Distance between the screen plane and the near plane.
771
 *             Valid vaules: 0<near<1. When near==0 (illegal!), the Near Plane is exactly at the tip of
772
 *             the pyramid. When near==1 (illegal!) the near plane is equivalent to the screen plane.
773
 */
774
  public void setProjection(float fov, float near)
775
    {
776
    if( fov < 180.0f && fov >=0.0f )
777
      {
778
      mFOV = fov;
779
      }
780

    
781
    if( near<   1.0f && near> 0.0f )
782
      {
783
      mNear= near;
784
      }
785
    else if( near<=0.0f )
786
      {
787
      mNear = 0.01f;
788
      }
789
    else if( near>=1.0f )
790
      {
791
      mNear=0.99f;
792
      }
793

    
794
    if( mBuffer!=null )
795
      {
796
      for(int j=0; j<EffectQuality.LENGTH; j++) mBuffer[j].mNear = mNear;
797
      }
798

    
799
    createProjection();
800
    }
801

    
802
///////////////////////////////////////////////////////////////////////////////////////////////////
803
/**
804
 * Resize the underlying Framebuffer.
805
 * <p>
806
 * This method can be safely called mid-render as it doesn't interfere with rendering.
807
 *
808
 * @param width The new width.
809
 * @param height The new height.
810
 */
811
  public void resize(int width, int height)
812
    {
813
    if( mWidth!=width || mHeight!=height )
814
      {
815
      mWidth = mRealWidth = width;
816
      mHeight= mRealHeight= height;
817

    
818
      createProjection();
819

    
820
      if( mColorCreated==CREATED )
821
        {
822
        markForCreation();
823
        recreate();
824
        }
825
      }
826
    }
827

    
828
///////////////////////////////////////////////////////////////////////////////////////////////////
829
/**
830
 * Return true if the Surface contains a DEPTH attachment.
831
 *
832
 * @return <bold>true</bold> if the Surface contains a DEPTH attachment.
833
 */
834
  public boolean hasDepth()
835
    {
836
    return mDepthStencilCreated==CREATED;
837
    }
838

    
839
///////////////////////////////////////////////////////////////////////////////////////////////////
840
/**
841
 * Return true if the Surface contains a STENCIL attachment.
842
 *
843
 * @return <bold>true</bold> if the Surface contains a STENCIL attachment.
844
 */
845
  public boolean hasStencil()
846
    {
847
    return (mDepthStencilCreated==CREATED && mDepthStencil==BOTH_DEPTH_STENCIL);
848
    }
849

    
850
///////////////////////////////////////////////////////////////////////////////////////////////////
851
/**
852
 * When rendering this Node, should we use the Order Independent Transparency render more?
853
 * <p>
854
 * There are two modes of rendering: the fast 'normal' way, which however renders transparent
855
 * fragments in different ways depending on which fragments get rendered first, or the slower
856
 * 'oit' way, which renders transparent fragments correctly regardless of their order.
857
 *
858
 * @param oit True if we want to render more slowly, but in a way which accounts for transparency.
859
 */
860
  public void setOrderIndependentTransparency(boolean oit)
861
    {
862
    mRenderWayOIT = oit;
863
    }
864

    
865
///////////////////////////////////////////////////////////////////////////////////////////////////
866
/**
867
 * Adds a new child to the last position in the list of our Surface's children.
868
 * <p>
869
 * We cannot do this mid-render - actual attachment will be done just before the next render, by the
870
 * DistortedMaster (by calling doWork())
871
 *
872
 * @param node The new Node to add.
873
 */
874
  public void attach(DistortedNode node)
875
    {
876
    mJobs.add(new Job(ATTACH,node));
877
    DistortedMaster.newSlave(this);
878
    }
879

    
880
///////////////////////////////////////////////////////////////////////////////////////////////////
881
/**
882
 * Adds a new child to the last position in the list of our Surface's children.
883
 * <p>
884
 * We cannot do this mid-render - actual attachment will be done just before the next render, by the
885
 * DistortedMaster (by calling doWork())
886
 *
887
 * @param surface InputSurface to initialize our child Node with.
888
 * @param effects DistortedEffects to initialize our child Node with.
889
 * @param mesh MeshObject to initialize our child Node with.
890
 * @return the newly constructed child Node, or null if we couldn't allocate resources.
891
 */
892
  public DistortedNode attach(DistortedInputSurface surface, DistortedEffects effects, MeshObject mesh)
893
    {
894
    DistortedNode node = new DistortedNode(surface,effects,mesh);
895
    mJobs.add(new Job(ATTACH,node));
896
    DistortedMaster.newSlave(this);
897
    return node;
898
    }
899

    
900
///////////////////////////////////////////////////////////////////////////////////////////////////
901
/**
902
 * Removes the first occurrence of a specified child from the list of children of our Surface.
903
 * <p>
904
 * A bit questionable method as there can be many different Nodes attached as children, some
905
 * of them having the same Effects but - for instance - different Mesh. Use with care.
906
 * <p>
907
 * We cannot do this mid-render - actual detachment will be done just before the next render, by the
908
 * DistortedMaster (by calling doWork())
909
 *
910
 * @param effects DistortedEffects to remove.
911
 */
912
  public void detach(DistortedEffects effects)
913
    {
914
    long id = effects.getID();
915
    DistortedNode node;
916
    boolean detached = false;
917

    
918
    for(int i=0; i<mNumChildren; i++)
919
      {
920
      node = mChildren.get(i);
921

    
922
      if( node.getEffects().getID()==id )
923
        {
924
        detached = true;
925
        mJobs.add(new Job(DETACH,node));
926
        DistortedMaster.newSlave(this);
927
        break;
928
        }
929
      }
930

    
931
    if( !detached )
932
      {
933
      // if we failed to detach any, it still might be the case that
934
      // there's an ATTACH job that we need to cancel.
935
      int num = mJobs.size();
936
      Job job;
937

    
938
      for(int i=0; i<num; i++)
939
        {
940
        job = mJobs.get(i);
941

    
942
        if( job.type==ATTACH && job.node.getEffects()==effects )
943
          {
944
          mJobs.remove(i);
945
          break;
946
          }
947
        }
948
      }
949
    }
950

    
951
///////////////////////////////////////////////////////////////////////////////////////////////////
952
/**
953
 * Removes the first occurrence of a specified child from the list of children of our Surface.
954
 * <p>
955
 * We cannot do this mid-render - actual attachment will be done just before the next render, by the
956
 * DistortedMaster (by calling doWork())
957
 *
958
 * @param node The Node to remove.
959
 */
960
  public void detach(DistortedNode node)
961
    {
962
    mJobs.add(new Job(DETACH,node));
963
    DistortedMaster.newSlave(this);
964
    }
965

    
966
///////////////////////////////////////////////////////////////////////////////////////////////////
967
/**
968
 * Removes all children Nodes.
969
 * <p>
970
 * We cannot do this mid-render - actual attachment will be done just before the next render, by the
971
 * DistortedMaster (by calling doWork())
972
 */
973
  public void detachAll()
974
    {
975
    mJobs.add(new Job(DETALL,null));
976
    DistortedMaster.newSlave(this);
977
    }
978

    
979
///////////////////////////////////////////////////////////////////////////////////////////////////
980
/**
981
 * This is not really part of the public API. Has to be public only because it is a part of the
982
 * DistortedSlave interface, which should really be a class that we extend here instead but
983
 * Java has no multiple inheritance.
984
 *
985
 * @y.exclude
986
 */
987
  public void doWork()
988
    {
989
    int num = mJobs.size();
990
    Job job;
991

    
992
    for(int i=0; i<num; i++)
993
      {
994
      job = mJobs.remove(0);
995

    
996
      switch(job.type)
997
        {
998
        case ATTACH: if( mChildren==null ) mChildren = new ArrayList<>(2);
999
                     job.node.setSurfaceParent(this);
1000
                     DistortedMaster.addSortingByBuckets(mChildren,job.node);
1001
                     mNumChildren++;
1002
                     break;
1003
        case DETACH: if( mNumChildren>0 && mChildren.remove(job.node) )
1004
                       {
1005
                       job.node.setSurfaceParent(null);
1006
                       mNumChildren--;
1007
                       }
1008
                     break;
1009
        case DETALL: if( mNumChildren>0 )
1010
                       {
1011
                       DistortedNode tmp;
1012

    
1013
                       for(int j=mNumChildren-1; j>=0; j--)
1014
                         {
1015
                         tmp = mChildren.remove(j);
1016
                         tmp.setSurfaceParent(null);
1017
                         }
1018

    
1019
                       mNumChildren = 0;
1020
                       }
1021
                     break;
1022
        case SORT  : mChildren.remove(job.node);
1023
                     DistortedMaster.addSortingByBuckets(mChildren,job.node);
1024
                     break;
1025
        }
1026
      }
1027
    }
1028
}
(8-8/21)