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library / src / main / java / org / distorted / library / DistortedFramebuffer.java @ 8fa96e69

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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;
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import android.opengl.GLES20;
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import android.opengl.Matrix;
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import java.util.Iterator;
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import java.util.LinkedList;
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Class which represents a OpenGL Framebuffer object.
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 * <p>
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 * User is able to create either Framebuffers from objects already constructed outside
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 * of the library (the first constructor; primary use case: the screen) or an offscreen
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 * FBOs.
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 * <p>
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 * Keep all objects created in a static LinkedList. The point: we need to be able to mark
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 * Framebuffers for deletion, and delete all marked objects later at a convenient time (that's
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 * because we can only delete from a thread that holds the OpenGL context so here we provide a
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 * framework where one is able to mark for deletion at any time and actual deletion takes place
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 * on the next render).
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 */
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public class DistortedFramebuffer
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  {
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  private static final int FAILED_TO_CREATE = -1;
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  private static final int NOT_CREATED_YET  = -2;
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  private static final int DONT_CREATE      = -3;
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  private static boolean mListMarked = false;
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  private static LinkedList<DistortedFramebuffer> mList = new LinkedList<>();
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  private int[] colorIds = new int[1];
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  private int[] depthIds = new int[1];
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  private int[] fboIds   = new int[1];
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  private boolean mMarked;
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  private boolean mDepthWanted;
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  private int mTexWidth, mTexHeight;
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  // Projection stuff
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  private float mX, mY, mFOV;
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  int mWidth,mHeight,mDepth;
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  float mDistance;
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  float[] mProjectionMatrix;
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// Must be called from a thread holding OpenGL Context
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  void createFBO()
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    {
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    if( colorIds[0]==NOT_CREATED_YET )
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      {
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      GLES20.glGenTextures(1, colorIds, 0);
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      GLES20.glBindTexture(GLES20.GL_TEXTURE_2D, colorIds[0]);
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      GLES20.glTexParameteri(GLES20.GL_TEXTURE_2D, GLES20.GL_TEXTURE_WRAP_S, GLES20.GL_REPEAT);
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      GLES20.glTexParameteri(GLES20.GL_TEXTURE_2D, GLES20.GL_TEXTURE_WRAP_T, GLES20.GL_REPEAT);
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      GLES20.glTexParameterf(GLES20.GL_TEXTURE_2D, GLES20.GL_TEXTURE_MIN_FILTER, GLES20.GL_NEAREST);
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      GLES20.glTexParameterf(GLES20.GL_TEXTURE_2D, GLES20.GL_TEXTURE_MAG_FILTER, GLES20.GL_LINEAR);
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      GLES20.glTexImage2D(GLES20.GL_TEXTURE_2D, 0, GLES20.GL_RGBA, mTexWidth, mTexHeight, 0, GLES20.GL_RGBA, GLES20.GL_UNSIGNED_BYTE, null);
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      GLES20.glGenFramebuffers(1, fboIds, 0);
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      GLES20.glBindFramebuffer(GLES20.GL_FRAMEBUFFER, fboIds[0]);
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      GLES20.glFramebufferTexture2D(GLES20.GL_FRAMEBUFFER, GLES20.GL_COLOR_ATTACHMENT0, GLES20.GL_TEXTURE_2D, colorIds[0], 0);
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      checkStatus("color");
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      }
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    if( mDepthWanted && depthIds[0]==NOT_CREATED_YET ) // we need to create a new DEPTH attachment
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      {
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      GLES20.glGenTextures(1, depthIds, 0);
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      GLES20.glBindTexture(GLES20.GL_TEXTURE_2D, depthIds[0]);
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      GLES20.glTexParameteri(GLES20.GL_TEXTURE_2D, GLES20.GL_TEXTURE_WRAP_S, GLES20.GL_REPEAT);
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      GLES20.glTexParameteri(GLES20.GL_TEXTURE_2D, GLES20.GL_TEXTURE_WRAP_T, GLES20.GL_REPEAT);
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      GLES20.glTexParameteri(GLES20.GL_TEXTURE_2D, GLES20.GL_TEXTURE_MIN_FILTER, GLES20.GL_NEAREST);
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      GLES20.glTexParameteri(GLES20.GL_TEXTURE_2D, GLES20.GL_TEXTURE_MAG_FILTER, GLES20.GL_NEAREST);
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      GLES20.glTexImage2D(GLES20.GL_TEXTURE_2D, 0, GLES20.GL_DEPTH_COMPONENT, mTexWidth, mTexHeight, 0, GLES20.GL_DEPTH_COMPONENT, GLES20.GL_UNSIGNED_SHORT, null);
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      GLES20.glBindFramebuffer(GLES20.GL_FRAMEBUFFER, fboIds[0]);
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      GLES20.glFramebufferTexture2D(GLES20.GL_FRAMEBUFFER, GLES20.GL_DEPTH_ATTACHMENT, GLES20.GL_TEXTURE_2D, depthIds[0], 0);
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      checkStatus("depth");
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      }
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    if( !mDepthWanted && depthIds[0]!=NOT_CREATED_YET ) // we need to detach and destroy the DEPTH attachment.
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      {
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      GLES20.glDeleteTextures(1, depthIds, 0);
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      depthIds[0]=NOT_CREATED_YET;
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      }
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  private boolean checkStatus(String message)
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    {
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    int status = GLES20.glCheckFramebufferStatus(GLES20.GL_FRAMEBUFFER);
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    if(status != GLES20.GL_FRAMEBUFFER_COMPLETE)
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      {
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      android.util.Log.e("DistortedFramebuffer", "FRAMEBUFFER INCOMPLETE, "+message+" error="+status);
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      GLES20.glDeleteTextures(1, colorIds, 0);
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      GLES20.glDeleteTextures(1, depthIds, 0);
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      GLES20.glDeleteFramebuffers(1, fboIds, 0);
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      fboIds[0]   = 0;
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      colorIds[0] = FAILED_TO_CREATE;
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      depthIds[0] = FAILED_TO_CREATE;
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      return false;
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      }
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    return true;
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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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  private void deleteFBO()
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    {
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    if( colorIds[0]>=0 )
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      {
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      //android.util.Log.e("FBO", "deleting ("+mWidth+","+mHeight+") "+fboIds[0]);
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      if( depthIds[0]>=0 )
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        {
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        GLES20.glDeleteTextures(1, depthIds, 0);
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        depthIds[0]=NOT_CREATED_YET;
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        }
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      GLES20.glDeleteTextures(1, colorIds, 0);
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      colorIds[0] = NOT_CREATED_YET;
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      GLES20.glDeleteFramebuffers(1, fboIds, 0);
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      fboIds[0] = 0;
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      }
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    mMarked = false;
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  void setAsOutput()
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    {
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    GLES20.glBindFramebuffer(GLES20.GL_FRAMEBUFFER, fboIds[0]);
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    if( depthIds[0]!=NOT_CREATED_YET )
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      {
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      GLES20.glEnable(GLES20.GL_DEPTH_TEST);
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      GLES20.glDepthMask(true);
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      }
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    else
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      {
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      GLES20.glDisable(GLES20.GL_DEPTH_TEST);
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      GLES20.glDepthMask(false);
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      }
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  void setAsInput()
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    {
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    GLES20.glBindTexture(GLES20.GL_TEXTURE_2D, colorIds[0]);
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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 left   = (-mX-mWidth /2.0f)/mHeight;
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        float right  = (-mX+mWidth /2.0f)/mHeight;
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        float bottom = (-mY-mHeight/2.0f)/mHeight;
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        float top    = (-mY+mHeight/2.0f)/mHeight;
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        float near   = (top-bottom) / (2.0f*(float)Math.tan(mFOV*Math.PI/360));
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        mDistance    = mHeight*near/(top-bottom);
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        float far    = 2*mDistance-near;
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        mDepth       = (int)((far-near)/2);
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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   = -mX-mWidth /2.0f;
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        float right  = -mX+mWidth /2.0f;
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        float bottom = -mY-mHeight/2.0f;
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        float top    = -mY+mHeight/2.0f;
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        float near   = (mWidth+mHeight)/2;
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        mDistance    = 2*near;
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        float far    = 3*near;
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        mDepth       = (int)near;
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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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  static synchronized void onDestroy()
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    {
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    for( DistortedFramebuffer fbo : mList)
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      {
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      if( fbo.colorIds[0]!=DONT_CREATE ) fbo.colorIds[0] = NOT_CREATED_YET;
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      if( fbo.mDepthWanted             ) fbo.depthIds[0] = NOT_CREATED_YET;
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      }
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// must be called form a thread holding OpenGL Context
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  private static synchronized void deleteAllMarked()
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    {
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    if( mListMarked )
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      {
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      DistortedFramebuffer tmp;
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      Iterator<DistortedFramebuffer> iterator = mList.iterator();
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      while(iterator.hasNext())
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        {
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        tmp = iterator.next();
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        if( tmp.mMarked )
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          {
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          tmp.deleteFBO();
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          iterator.remove();
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          }
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        }
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      mListMarked = false;
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      }
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// if new size fits into the size of the underlying Texture, just change the projection without
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// reallocating the Texture. Otherwise, we need to reallocate.
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//
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// Must be called form a thread holding the OpenGL context.
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  void resizeFast(int width, int height)
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    {
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    if( mWidth!=width || mHeight!=height )
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      {
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      mWidth = width;
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      mHeight= height;
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      createProjection();
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      if( mWidth>mTexWidth || mHeight>mTexHeight )
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        {
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        mTexWidth = mWidth;
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        mTexHeight= mHeight;
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        deleteFBO();
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        }
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      }
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    createFBO();
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// PUBLIC API
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Create a new offscreen Framebuffer.
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 *
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 * @param width Width of the COLOR attachment.
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 * @param height Height of the COLOR attachment.
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 */
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  @SuppressWarnings("unused")
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  public DistortedFramebuffer(int width, int height)
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    {
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    mProjectionMatrix = new float[16];
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    mHeight     = height;
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    mWidth      = width;
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    mTexHeight  = height;
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    mTexWidth   = width;
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    mFOV        = 60.0f;
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    mX          = 0.0f;
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    mY          = 0.0f;
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    mMarked     = false;
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    mDepthWanted= false;
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    fboIds[0]  =-1;
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    colorIds[0]= NOT_CREATED_YET;
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    depthIds[0]= NOT_CREATED_YET;
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    createProjection();
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    mList.add(this);
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Create a new Framebuffer from an already created OpenGL Framebuffer.
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 * <p>
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 * Has to be followed by a 'resize()' to set the size.
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 *
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 * @param fbo the ID of a OpenGL Framebuffer object. Typically 0 (the screen)
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 */
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  public DistortedFramebuffer(int fbo)
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    {
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    mProjectionMatrix = new float[16];
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    mFOV        = 60.0f;
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    mX          = 0.0f;
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    mY          = 0.0f;
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    mMarked     = false;
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    mDepthWanted= true;
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    fboIds[0]  = fbo;
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    colorIds[0]= DONT_CREATE;
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    depthIds[0]= DONT_CREATE;
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Create a new DEPTH buffer and attach it or (param=false) detach an existing DEPTh attachment and destroy it.
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 *
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 * @param hasDepthAttachment <bold>true</bold> if we want to attach a new DEPTH buffer to the FBO.<br>
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 *                           <bold>false</bold> if we want to detach the DEPTH attachment.
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 */
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  public void setDepthAttachment(boolean hasDepthAttachment)
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    {
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    mDepthWanted = hasDepthAttachment;
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Draw the (texture,mesh,effects) object to the Framebuffer.
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 * <p>
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 * Must be called from a thread holding OpenGL Context.
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 *
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 * @param tex input Texture to use.
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 * @param mesh Class descendant from MeshObject
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 * @param effects The DistortedEffects to use when rendering
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 * @param time Current time, in milliseconds.
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 */
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  public void renderTo(DistortedTexture tex, MeshObject mesh, DistortedEffects effects, long time)
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    {
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    tex.createTexture();
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    DistortedFramebuffer.deleteAllMarked();
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    DistortedTexture.deleteAllMarked();
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    createFBO();
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    tex.setAsInput();
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    effects.drawPriv(tex.mHalfX, tex.mHalfY, mesh, this, time);
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Draw the (framebuffer,mesh,effects) object to the Framebuffer.
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 * <p>
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 * Must be called from a thread holding OpenGL Context.
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 *
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 * @param fbo The Framebuffer (previously created with the first constructor, drawing FROM the screen
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 *            is unsupported!) whose COLOR attachment 0 will be used as input texture.
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 *            Please note that rendering from an FBO to itself is unsupported by OpenGL!
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 * @param mesh Class descendant from MeshObject
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 * @param effects The DistortedEffects to use when rendering
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 * @param time Current time, in milliseconds.
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 */
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  public void renderTo(DistortedFramebuffer fbo, MeshObject mesh, DistortedEffects effects, long time)
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    {
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    fbo.createFBO();
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    if( fbo.colorIds[0]>0 )    // fbo created with the first constructor
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      {
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      DistortedFramebuffer.deleteAllMarked();
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      DistortedTexture.deleteAllMarked();
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      createFBO();
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      GLES20.glBindTexture(GLES20.GL_TEXTURE_2D, fbo.colorIds[0]);
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      effects.drawPriv(fbo.mWidth/2, fbo.mHeight/2, mesh, this, time);
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      }
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Draws the Tree, and all its children, to the Framebuffer.
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 * <p>
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 * Must be called from a thread holding OpenGL Context.
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 *
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 * @param dt DistortedTree to render.
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 * @param time Current time, in milliseconds. This will be passed to all the Effects stored in the Tree.
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 */
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  public void renderTo(DistortedTree dt, long time)
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    {
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    DistortedFramebuffer.deleteAllMarked();
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    DistortedTexture.deleteAllMarked();
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    createFBO();
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    dt.drawRecursive(time,this);
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Mark the underlying OpenGL object for deletion. Actual deletion will take place on the next render.
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 */
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  public void markForDeletion()
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    {
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    //android.util.Log.e("FBO", "marking for deletion ("+mWidth+","+mHeight+") "+fboIds[0]);
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    mListMarked = true;
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    mMarked     = true;
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Create new Projection matrix.
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 *
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 * @param fov Vertical 'field of view' of the Projection frustrum (in degrees).
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 * @param x X-coordinate of the point at which our camera looks at. 0 is the center.
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 * @param y Y-coordinate of the point at which our camera looks at. 0 is the center.
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 */
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  public void setProjection(float fov, float x, float y)
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    {
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    mFOV = fov;
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    mX   = x;
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    mY   = y;
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    createProjection();
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Resize the underlying Framebuffer.
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 *
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 * As the Framebuffer is not created until the first render, typical usage of this API is actually
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 * to set the size of an not-yet-created Framebuffer of an object that has been created with the
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 * second constructor.
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 * <p>
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 * Fully creating an object, rendering to it, then resizing mid-render is also possible. Actual
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 * resize takes place on the next render.
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 *
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 * @param width The new width.
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 * @param height The new height.
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 */
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  public void resize(int width, int height)
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    {
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    if( mWidth!=width || mHeight!=height )
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      {
460
      mWidth    = width;
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      mHeight   = height;
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      mTexWidth = width;
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      mTexHeight= height;
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      createProjection();
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      if( colorIds[0]>0 ) markForDeletion();
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      }
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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 * Return the ID of the Texture (COLOR attachment 0) that's backing this FBO.
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 * <p>
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 * Catch: this will only work if the library has had time to actually create the texture. Remember
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 * that the texture gets created only on first render, thus creating a Texture object and immediately
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 * calling this method will return an invalid (negative) result.
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 *
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 * @return If there was not a single render between creation of the Object and calling this method on
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 *         it, return a negative value. Otherwise, return ID of COLOR attachment 0.
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 */
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  public int getTextureID()
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    {
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    return colorIds[0];
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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/**
489
 * Return true if the FBO contains a DEPTH attachment.
490
 *
491
 * @return <bold>true</bold> if the FBO contains a DEPTH attachment.
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 */
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  public boolean hasDepth()
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    {
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    return mDepthWanted;
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    }
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  }
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