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distorted-objectlib / src / main / java / org / distorted / objectlib / tablebases / TablebasesAbstract.java @ aacf5e27

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///////////////////////////////////////////////////////////////////////////////////////////////////
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// Copyright 2023 Leszek Koltunski                                                               //
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//                                                                                               //
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// This file is part of Magic Cube.                                                              //
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//                                                                                               //
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// Magic Cube is proprietary software licensed under an EULA which you should have received      //
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// along with the code. If not, check https://distorted.org/magic/License-Magic-Cube.html        //
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///////////////////////////////////////////////////////////////////////////////////////////////////
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package org.distorted.objectlib.tablebases;
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import org.distorted.library.helpers.QuatHelper;
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import org.distorted.library.type.Static3D;
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import org.distorted.library.type.Static4D;
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import org.distorted.objectlib.helpers.OperatingSystemInterface;
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import org.distorted.objectlib.helpers.QuatGroupGenerator;
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import java.io.ByteArrayOutputStream;
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import java.io.IOException;
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import java.io.InputStream;
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import java.util.ArrayList;
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import java.util.Random;
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///////////////////////////////////////////////////////////////////////////////////////////////////
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public abstract class TablebasesAbstract
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{
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  private final Static3D[] mAxis;
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  private final int mSize, mMinScramble;
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  private final int[][] mAngles;
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  private final int[] mNumLayers;
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  private final int mNumQuats;
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  private final Static4D[] mQuats;
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  private final float[][] mCuts;
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  private final int[] mNumCuts;
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  private int[][] mQuatMult;
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  private int[] mInvertedQuat;
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  Tablebase mTablebase;
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  boolean mInitialized;
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  final int mScalingFactor;
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  final int mNumAxis;
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  final float[][] mPosition;
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  final int[][] mRotRow;
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  final int mNumCubits;
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  final boolean[][] mRotatable;
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  private static final float[] mTmp = new float[4];
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  abstract int[][] getBasicAngles();
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  abstract Static3D[] getRotationAxis();
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  abstract float[][] getPosition();
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  abstract float[][] getCuts();
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  abstract boolean[][] getRotatable();
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  abstract int getMinScramble();
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  abstract int getSize();
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  abstract int[] getQuats(int index);
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  abstract int getIndex(int[] quats);
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  public TablebasesAbstract()
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    {
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    mSize = getSize();
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    mMinScramble = getMinScramble();
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    mAngles = getBasicAngles();
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    mAxis = getRotationAxis();
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    mNumAxis = mAxis.length;
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    mNumLayers = new int[mNumAxis];
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    for(int i=0; i<mNumAxis; i++) mNumLayers[i] = mAngles[i].length;
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    mQuats = QuatGroupGenerator.computeGroup(mAxis,mAngles);
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    mNumQuats = mQuats.length;
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    mPosition = getPosition();
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    mNumCubits = mPosition.length;
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    mRotatable = getRotatable();
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    mCuts = getCuts();
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    mNumCuts = new int[mNumAxis];
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    int scaling = 0;
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    for(int i=0; i<mNumAxis; i++)
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      {
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      mNumCuts[i] = (mCuts==null || mCuts[i]==null ? 0 : mCuts[i].length);
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      int numLayers = mNumLayers[i];
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      for(int j=0; j<numLayers; j++) scaling+=(mAngles[i][j]-1);
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      }
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    mScalingFactor = scaling;
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    mRotRow = new int[mNumCubits][mNumAxis];
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    mInitialized = false;
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  public TablebasesAbstract(OperatingSystemInterface os, int resource)
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    {
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    this();
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    mInitialized = true;
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    InputStream stream = os.openLocalFile(resource);
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    ByteArrayOutputStream buffer = new ByteArrayOutputStream();
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    int nRead;
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    byte[] tmp = new byte[16384];
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    try
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      {
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      while ((nRead = stream.read(tmp, 0, tmp.length)) != -1)
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        {
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        buffer.write(tmp, 0, nRead);
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        }
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      stream.close();
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      byte[] data = buffer.toByteArray();
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      buffer.close();
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      mTablebase = new Tablebase(data);
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      }
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    catch(IOException ex)
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      {
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      mInitialized = false;
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      }
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  int computeBitLayer(int ax, int layer)
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    {
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    return (1<<layer);
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  int computeRow(float[] pos, int quat, int axisIndex)
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    {
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    int ret=0;
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    int len = pos.length/3;
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    Static3D axis = mAxis[axisIndex];
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    float axisX = axis.get0();
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    float axisY = axis.get1();
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    float axisZ = axis.get2();
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    float casted, xoff=0, yoff=0, zoff=0;
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    Static4D q = mQuats[quat];
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    for(int i=0; i<len; i++)
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      {
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      QuatHelper.rotateVectorByQuat(mTmp,pos[3*i],pos[3*i+1],pos[3*i+2],1.0f,q);
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      casted = (mTmp[0]+xoff)*axisX + (mTmp[1]+yoff)*axisY + (mTmp[2]+zoff)*axisZ;
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      ret |= computeSingleRow(axisIndex,casted);
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      }
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    return ret;
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  private int computeSingleRow(int axisIndex,float casted)
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    {
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    int num = mNumCuts[axisIndex];
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    for(int i=0; i<num; i++)
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      {
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      if( casted<mCuts[axisIndex][i] ) return (1<<i);
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      }
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    return (1<<num);
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// remember about the double cover or unit quaternions!
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  public static int mulQuat(int q1, int q2, Static4D[] quats)
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    {
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    int numQuats = quats.length;
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    Static4D result = QuatHelper.quatMultiply(quats[q1],quats[q2]);
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    float rX = result.get0();
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    float rY = result.get1();
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    float rZ = result.get2();
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    float rW = result.get3();
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    final float MAX_ERROR = 0.1f;
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    float dX,dY,dZ,dW;
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    for(int i=0; i<numQuats; i++)
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      {
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      dX = quats[i].get0() - rX;
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      dY = quats[i].get1() - rY;
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      dZ = quats[i].get2() - rZ;
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      dW = quats[i].get3() - rW;
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      if( dX<MAX_ERROR && dX>-MAX_ERROR &&
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          dY<MAX_ERROR && dY>-MAX_ERROR &&
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          dZ<MAX_ERROR && dZ>-MAX_ERROR &&
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          dW<MAX_ERROR && dW>-MAX_ERROR  ) return i;
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      dX = quats[i].get0() + rX;
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      dY = quats[i].get1() + rY;
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      dZ = quats[i].get2() + rZ;
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      dW = quats[i].get3() + rW;
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      if( dX<MAX_ERROR && dX>-MAX_ERROR &&
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          dY<MAX_ERROR && dY>-MAX_ERROR &&
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          dZ<MAX_ERROR && dZ>-MAX_ERROR &&
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          dW<MAX_ERROR && dW>-MAX_ERROR  ) return i;
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      }
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    return -1;
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  int getMultQuat(int index1, int index2)
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    {
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    if( mQuatMult==null )
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      {
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      mQuatMult = new int[mNumQuats][mNumQuats];
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      for(int i=0; i<mNumQuats; i++)
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        for(int j=0; j<mNumQuats; j++) mQuatMult[i][j] = -1;
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      }
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    if( index1<mNumQuats && index2<mNumQuats )
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      {
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      if( mQuatMult[index1][index2]==-1 ) mQuatMult[index1][index2] = mulQuat(index1,index2, mQuats);
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      return mQuatMult[index1][index2];
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      }
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    return -2;
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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  int getInvertedQuat(int index)
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    {
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    if( mInvertedQuat==null )
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      {
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      mInvertedQuat = new int[mNumQuats];
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      for(int i=0; i<mNumQuats; i++)
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        for(int j=0; j<mNumQuats; j++)
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          {
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          int result = getMultQuat(i,j);
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          if( result==0 )
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            {
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            mInvertedQuat[i] = j;
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            break;
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            }
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          }
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      }
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    return mInvertedQuat[index];
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// assumption: all layers have the same basicAngles!
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  private int insertAllChildren(int index, byte level)
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    {
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    int ret = 0;
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    int[] quats = getQuats(index);
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    int numQuats = quats.length;
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    int[] tmpQuats = new int[numQuats];
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    byte newLevel = (byte)(level+1);
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    int quatBasis = 0;
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    for(int ax=0; ax<mNumAxis; ax++)
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      for(int cubit=0; cubit<mNumCubits; cubit++)
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        mRotRow[cubit][ax] = computeRow(mPosition[cubit],quats[cubit],ax);
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    for(int ax=0; ax<mNumAxis; ax++)
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      {
278
      for(int layer=0; layer<mNumLayers[ax]; layer++)
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        {
280
        if( !mRotatable[ax][layer] ) continue;
281
        int bitLayer = computeBitLayer(ax,layer);
282
        int maxAngle = mAngles[ax][layer];
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284
        for(int angle=1; angle<maxAngle; angle++ )
285
          {
286
          System.arraycopy(quats, 0, tmpQuats, 0, numQuats);
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          int quat = quatBasis + angle;
288

    
289
          for(int cubit=0; cubit<mNumCubits; cubit++)
290
            if( (mRotRow[cubit][ax] & bitLayer) != 0 )
291
              {
292
              int currQuat = tmpQuats[cubit];
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              int newQuat = getMultQuat(quat,currQuat);
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              tmpQuats[cubit] = newQuat;
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              }
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          int childIndex = getIndex(tmpQuats);
298
          if( mTablebase.insertUnpacked(childIndex,newLevel) ) ret++;
299
          }
300
        }
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      quatBasis += (mAngles[ax][0]-1);
303
      }
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    return ret;
306
    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
309

    
310
  public boolean useForScrambling()
311
    {
312
    return true;
313
    }
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315
///////////////////////////////////////////////////////////////////////////////////////////////////
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317
  public void createTablebase(int maxLevel)
318
    {
319
    mTablebase = new Tablebase(mSize);
320
    int[] solved = getSolvedIndices();
321
    int numSolved = solved.length;
322
    for(int s : solved ) mTablebase.insertUnpacked(s,(byte)0);
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324
    int numInserted, totalInserted=numSolved;
325
    byte insertingLevel = 0;
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327
    android.util.Log.e("D", "creating tablebase of size "+mSize);
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329
    do
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      {
331
      numInserted = 0;
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      for(int i=0; i<mSize; i++)
334
        {
335
        byte level = mTablebase.retrieveUnpacked(i);
336
        if( level==insertingLevel ) numInserted += insertAllChildren(i,level);
337
        }
338

    
339
      insertingLevel++;
340
      totalInserted += numInserted;
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      android.util.Log.e("D", "inserted "+numInserted+" positions at level "+insertingLevel);
342
      }
343
    while( numInserted>0 && insertingLevel!=maxLevel );
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    android.util.Log.e("D", "total Inserted: "+totalInserted);
346
    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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350
  int[] getSolvedIndices()
351
    {
352
    return new int[] {0};
353
    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
356

    
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  boolean isSolved(int index)
358
    {
359
    return index==0;
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    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
363

    
364
  public void pack()
365
    {
366
    android.util.Log.e("D", "packing...");
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    mTablebase.pack();
368
    android.util.Log.e("D", "all done");
369
    mInitialized = true;
370
    }
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///////////////////////////////////////////////////////////////////////////////////////////////////
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374
  public byte[][] getPacked()
375
    {
376
    if( !mInitialized )
377
      {
378
      createTablebase(-1);
379
      pack();
380
      }
381

    
382
    byte[] data = mTablebase.getPacked();
383
    return new byte[][] { data };
384
    }
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386
///////////////////////////////////////////////////////////////////////////////////////////////////
387

    
388
  void convertMoves(int[][] moves)
389
    {
390
    for(int[] move : moves )
391
      {
392
      int[] m = newMove(move[0],move[1],move[2]);
393

    
394
      move[0] = m[0];
395
      move[1] = m[1];
396
      move[2] = m[2];
397
      }
398
    }
399

    
400
///////////////////////////////////////////////////////////////////////////////////////////////////
401

    
402
  int[] newMove(int ax, int layer, int angle)
403
    {
404
    int maxAngle = mAngles[ax][layer];
405
    angle = maxAngle-angle;
406
    if( angle> 0.5f*maxAngle ) angle -= maxAngle;
407

    
408
    return new int[] { ax, computeBitLayer(ax,layer), angle };
409
    }
410

    
411
///////////////////////////////////////////////////////////////////////////////////////////////////
412

    
413
  int[][] convertMovesFromArray(ArrayList<int[]> moves)
414
    {
415
    int len = moves.size();
416
    int[][] ret = new int[len][];
417
    for(int i=0; i<len; i++) ret[i] = moves.get(i);
418
    return ret;
419
    }
420

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

    
423
  void getNextAxisLayerAngleQuat(int[] data)
424
    {
425
    int axis = data[0];
426
    int layer= data[1];
427
    int angle= data[2];
428

    
429
    if( angle< mAngles[axis][layer]-1 ) data[2]++;
430
    else
431
      {
432
      data[2] = 1;
433

    
434
      if( layer< mNumLayers[axis]-1 ) data[1]++;
435
      else
436
        {
437
        data[1] = 0;
438
        data[0] = (axis<mNumAxis-1) ? axis+1 : 0;
439
        }
440
      }
441

    
442
    data[3] = data[2];
443
    for(int i=0; i<data[0]; i++) data[3] += (mAngles[i][0]-1);
444
    }
445

    
446
///////////////////////////////////////////////////////////////////////////////////////////////////
447

    
448
  int[][] extraInfo(int[][] moves, int[] extra)
449
    {
450
    return moves;
451
    }
452

    
453
///////////////////////////////////////////////////////////////////////////////////////////////////
454

    
455
  public int[][] solution(int index, int[] extra, OperatingSystemInterface osi)
456
    {
457
    if( !mInitialized ) return null;
458

    
459
    int[] data = new int[4];
460
    byte level = mTablebase.retrievePacked(index);
461
    ArrayList<int[]> moves = new ArrayList<>();
462
    int[] quats = getQuats(index);
463
    int numQuats = quats.length;
464
    int[] tmpQuats = new int[numQuats];
465

    
466
    while( !isSolved(index) )
467
      {
468
      boolean found = false;
469

    
470
      data[0]=0;
471
      data[1]=0;
472
      data[2]=1;
473
      data[3]=1;
474

    
475
      for(int ax=0; ax<mNumAxis; ax++)
476
        for(int cubit=0; cubit<mNumCubits; cubit++)
477
          mRotRow[cubit][ax] = computeRow(mPosition[cubit],quats[cubit],ax);
478

    
479
      for(int s=0; s<mScalingFactor && !found; s++)
480
        {
481
        int ax    = data[0];
482
        int layer = data[1];
483
        int angle = data[2];
484
        int quat  = data[3];
485

    
486
        if( mRotatable[ax][layer] )
487
          {
488
          int bitLayer = computeBitLayer(ax,layer);
489
          System.arraycopy(quats, 0, tmpQuats, 0, numQuats);
490

    
491
          for(int cubit=0; cubit<mNumCubits; cubit++)
492
            if( (mRotRow[cubit][ax] & bitLayer) != 0 )
493
              {
494
              int currQuat = tmpQuats[cubit];
495
              int newQuat = getMultQuat(quat,currQuat);
496
              tmpQuats[cubit] = newQuat;
497
              }
498

    
499
          int childIndex = getIndex(tmpQuats);
500
          byte newLevel = mTablebase.retrievePacked(childIndex);
501

    
502
          if( ((newLevel-level+1)%3) == 0 )
503
            {
504
            int[] tmpMove = newMove(ax,layer,angle);
505
            moves.add(tmpMove);
506
            index = childIndex;
507
            level = (level==0 ? 2 : (byte)(level-1));
508
            found = true;
509
            }
510
          }
511

    
512
        getNextAxisLayerAngleQuat(data);
513
        }
514

    
515
      quats = getQuats(index);
516

    
517
      if( !found )
518
        {
519
        if( osi!=null ) osi.reportError("solution error: no move found!"+index);
520
        return null;
521
        }
522
      }
523

    
524
    int[][] ret = convertMovesFromArray(moves);
525
    return extraInfo(ret,extra);
526
    }
527

    
528
///////////////////////////////////////////////////////////////////////////////////////////////////
529

    
530
  public void scramble(Random rnd, int depth, int[][] scramble)
531
    {
532
    if( !mInitialized ) return;
533

    
534
    int solDepth = 0;
535
    int scraLen = scramble.length;
536
    if( depth>mMinScramble ) depth = mMinScramble;
537

    
538
    int[] cornerTwist = new int[4];
539
    for(int i=0; i<4; i++) cornerTwist[i] = (rnd.nextInt(3)-1);
540

    
541
    while( solDepth<depth )
542
      {
543
      int randomPosition = rnd.nextInt(mSize-1);
544
      int[][] sol = solution(randomPosition,cornerTwist,null);
545
      solDepth = (sol!=null ? sol.length : 0);
546

    
547
      if( solDepth>=depth )
548
        {
549
        int num = Math.min(scraLen,solDepth);
550

    
551
        for(int i=0; i<num; i++)
552
          {
553
          int[] source = sol[solDepth-1-i];
554
          scramble[i][0] = source[0];
555
          scramble[i][1] = source[1];
556
          scramble[i][2] =-source[2];
557
          }
558
        }
559
      }
560
    }
561

    
562
///////////////////////////////////////////////////////////////////////////////////////////////////
563
// TESTING
564
///////////////////////////////////////////////////////////////////////////////////////////////////
565

    
566
  public boolean test(int index)
567
    {
568
    if( !mInitialized ) return false;
569

    
570
    int[] data = new int[4];
571
    byte level = mTablebase.retrievePacked(index);
572
    int[] quats = getQuats(index);
573
    int numQuats = quats.length;
574
    int[] tmpQuats = new int[numQuats];
575

    
576
    data[0]=0;
577
    data[1]=0;
578
    data[2]=1;
579
    data[3]=1;
580

    
581
    for(int ax=0; ax<mNumAxis; ax++)
582
      for(int cubit=0; cubit<mNumCubits; cubit++)
583
        mRotRow[cubit][ax] = computeRow(mPosition[cubit],quats[cubit],ax);
584

    
585
    for(int s=0; s<mScalingFactor; s++)
586
      {
587
      int ax    = data[0];
588
      int layer = data[1];
589
      int quat  = data[3];
590

    
591
      if( mRotatable[ax][layer] )
592
        {
593
        int bitLayer = computeBitLayer(ax,layer);
594
        System.arraycopy(quats, 0, tmpQuats, 0, numQuats);
595

    
596
        for(int cubit=0; cubit<mNumCubits; cubit++)
597
          if( (mRotRow[cubit][ax] & bitLayer) != 0 )
598
            {
599
            int currQuat = tmpQuats[cubit];
600
            int newQuat = getMultQuat(quat,currQuat);
601
            tmpQuats[cubit] = newQuat;
602
            }
603

    
604
        int childIndex = getIndex(tmpQuats);
605
        byte newLevel = mTablebase.retrievePacked(childIndex);
606

    
607
        if( ((newLevel-level+1)%3) == 0 ) return true;
608
        }
609

    
610
      getNextAxisLayerAngleQuat(data);
611
      }
612

    
613
    return false;
614
    }
615

    
616
///////////////////////////////////////////////////////////////////////////////////////////////////
617

    
618
  public void test(OperatingSystemInterface os)
619
    {
620
    int index = 252373232;
621
    int[] q = getQuats(index);
622
    TablebaseHelpers.displayTable(q , "QUATS ");
623
    }
624
}
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