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677 lines
18 KiB
Java
677 lines
18 KiB
Java
/*
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* Copyright 1998-2014 University Corporation for Atmospheric Research/Unidata
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*
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* Portions of this software were developed by the Unidata Program at the
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* University Corporation for Atmospheric Research.
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*
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* Access and use of this software shall impose the following obligations
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* and understandings on the user. The user is granted the right, without
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* any fee or cost, to use, copy, modify, alter, enhance and distribute
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* this software, and any derivative works thereof, and its supporting
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* documentation for any purpose whatsoever, provided that this entire
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* notice appears in all copies of the software, derivative works and
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* supporting documentation. Further, UCAR requests that the user credit
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* UCAR/Unidata in any publications that result from the use of this
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* software or in any product that includes this software. The names UCAR
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* and/or Unidata, however, may not be used in any advertising or publicity
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* to endorse or promote any products or commercial entity unless specific
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* written permission is obtained from UCAR/Unidata. The user also
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* understands that UCAR/Unidata is not obligated to provide the user with
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* any support, consulting, training or assistance of any kind with regard
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* to the use, operation and performance of this software nor to provide
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* the user with any updates, revisions, new versions or "bug fixes."
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*
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* THIS SOFTWARE IS PROVIDED BY UCAR/UNIDATA "AS IS" AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL UCAR/UNIDATA BE LIABLE FOR ANY SPECIAL,
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* INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING
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* FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT,
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* NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION
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* WITH THE ACCESS, USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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package org.meteoinfo.ndarray;
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import java.nio.ByteBuffer;
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import java.nio.DoubleBuffer;
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import java.time.LocalDateTime;
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/**
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* Concrete implementation of Array specialized for doubles. Data storage is
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* with 1D java array of doubles.
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*
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* @see Array
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* @author caron
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*/
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public class ArrayDouble extends Array {
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/**
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* package private. use Array.factory()
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*/
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static ArrayDouble factory(Index index) {
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return ArrayDouble.factory(index, null);
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}
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/* Create new ArrayDouble with given indexImpl and backing store.
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* Should be private.
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* @param index use this Index
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* @param stor. use this storage. if null, allocate.
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* @return. new ArrayDouble.D<rank> or ArrayDouble object.
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*/
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static ArrayDouble factory(Index index, double[] storage) {
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switch (index.getRank()) {
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case 0:
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return new D0(index, storage);
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case 1:
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return new D1(index, storage);
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case 2:
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return new D2(index, storage);
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case 3:
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return new D3(index, storage);
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case 4:
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return new D4(index, storage);
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case 5:
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return new D5(index, storage);
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case 6:
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return new D6(index, storage);
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case 7:
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return new D7(index, storage);
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default:
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return new ArrayDouble(index, storage);
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}
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}
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///////////////////////////////////////////////////////////////////////////////
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protected double[] storageD;
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/**
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* Create a new Array of type double and the given shape. dimensions.length
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* determines the rank of the new Array.
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*
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* @param shape the shape of the Array.
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*/
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public ArrayDouble(int[] shape) {
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super(DataType.DOUBLE, shape);
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storageD = new double[(int) indexCalc.getSize()];
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}
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/**
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* create new Array with given indexImpl and the same backing store
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*/
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protected Array createView(Index index) {
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return ArrayDouble.factory(index, storageD);
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}
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/**
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* Create a new Array using the given IndexArray and backing store. used for
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* sections, and factory. Trusted package private.
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*
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* @param ima use this IndexArray as the index
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* @param data use this as the backing store. if null, allocate
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*/
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ArrayDouble(Index ima, double[] data) {
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super(DataType.DOUBLE, ima);
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if (data != null) {
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storageD = data;
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} else {
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storageD = new double[(int) indexCalc.getSize()];
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}
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}
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/* Get underlying primitive array storage. CAUTION! You may invalidate your warrentee! */
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public Object getStorage() {
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return storageD;
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}
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// copy from javaArray to storage using the iterator: used by factory( Object);
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protected void copyFrom1DJavaArray(IndexIterator iter, Object javaArray) {
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double[] ja = (double[]) javaArray;
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for (double aJa : ja) {
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iter.setDoubleNext(aJa);
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}
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}
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// copy to javaArray from storage using the iterator: used by copyToNDJavaArray;
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protected void copyTo1DJavaArray(IndexIterator iter, Object javaArray) {
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double[] ja = (double[]) javaArray;
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for (int i = 0; i < ja.length; i++) {
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ja[i] = iter.getDoubleNext();
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}
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}
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public ByteBuffer getDataAsByteBuffer() {
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ByteBuffer bb = ByteBuffer.allocate((int) (8 * getSize()));
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DoubleBuffer ib = bb.asDoubleBuffer();
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ib.put((double[]) get1DJavaArray(double.class)); // make sure its in canonical order
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return bb;
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}
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/**
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* Return the element class type
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*/
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public Class getElementType() {
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return double.class;
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}
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/**
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* get the value at the specified index.
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*/
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public double get(Index i) {
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return storageD[i.currentElement()];
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}
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/**
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* set the value at the specified index.
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*/
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public void set(Index i, double value) {
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storageD[i.currentElement()] = value;
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}
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public double getDouble(Index i) {
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return storageD[i.currentElement()];
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}
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public void setDouble(Index i, double value) {
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storageD[i.currentElement()] = value;
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}
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public float getFloat(Index i) {
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return (float) storageD[i.currentElement()];
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}
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public void setFloat(Index i, float value) {
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storageD[i.currentElement()] = (double) value;
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}
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public long getLong(Index i) {
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return (long) storageD[i.currentElement()];
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}
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public void setLong(Index i, long value) {
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storageD[i.currentElement()] = (double) value;
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}
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public int getInt(Index i) {
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return (int) storageD[i.currentElement()];
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}
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public void setInt(Index i, int value) {
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storageD[i.currentElement()] = (double) value;
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}
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public short getShort(Index i) {
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return (short) storageD[i.currentElement()];
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}
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public void setShort(Index i, short value) {
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storageD[i.currentElement()] = (double) value;
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}
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public byte getByte(Index i) {
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return (byte) storageD[i.currentElement()];
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}
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public void setByte(Index i, byte value) {
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storageD[i.currentElement()] = (double) value;
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}
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public char getChar(Index i) {
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return (char) storageD[i.currentElement()];
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}
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public void setChar(Index i, char value) {
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storageD[i.currentElement()] = (double) value;
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}
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/**
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* not legal, throw ForbiddenConversionException
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*/
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public boolean getBoolean(Index i) {
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return storageD[i.currentElement()] != 0;
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}
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/**
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* not legal, throw ForbiddenConversionException
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*/
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public void setBoolean(Index i, boolean value) {
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storageD[i.currentElement()] = value ? 1 : 0;
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}
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/**
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* not legal, throw ForbiddenConversionException
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*/
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public String getString(Index i) {
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return String.format("%.8f", storageD[i.currentElement()]);
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}
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/**
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* not legal, throw ForbiddenConversionException
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*/
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public void setString(Index i, String value) {
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storageD[i.currentElement()] = Double.parseDouble(value);
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}
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/**
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* not legal, throw ForbiddenConversionException
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*/
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public Complex getComplex(Index i) {
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return new Complex(getDouble(i), 0);
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}
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/**
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* not legal, throw ForbiddenConversionException
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*/
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public void setComplex(Index i, Complex value) {
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throw new ForbiddenConversionException();
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}
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public LocalDateTime getDate(Index i) { throw new ForbiddenConversionException(); }
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public void setDate(Index i, LocalDateTime value) { throw new ForbiddenConversionException(); }
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public Object getObject(Index i) {
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return storageD[i.currentElement()];
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}
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public void setObject(Index i, Object value) {
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storageD[i.currentElement()] = ((Number) value).doubleValue();
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}
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// trusted, assumes that individual dimension lengths have been checked
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public double getDouble(int index) {
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return storageD[index];
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}
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public void setDouble(int index, double value) {
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storageD[index] = value;
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}
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public float getFloat(int index) {
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return (float) storageD[index];
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}
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public void setFloat(int index, float value) {
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storageD[index] = (double) value;
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}
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public long getLong(int index) {
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return (long) storageD[index];
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}
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public void setLong(int index, long value) {
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storageD[index] = (double) value;
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}
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public int getInt(int index) {
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return (int) storageD[index];
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}
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public void setInt(int index, int value) {
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storageD[index] = (double) value;
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}
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public short getShort(int index) {
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return (short) storageD[index];
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}
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public void setShort(int index, short value) {
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storageD[index] = (double) value;
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}
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public byte getByte(int index) {
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return (byte) storageD[index];
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}
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public void setByte(int index, byte value) {
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storageD[index] = (double) value;
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}
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public char getChar(int index) {
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return (char) storageD[index];
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}
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public void setChar(int index, char value) {
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storageD[index] = (double) value;
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}
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public boolean getBoolean(int index) {
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return storageD[index] != 0;
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}
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public void setBoolean(int index, boolean value) {
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storageD[index] = value ? 1 : 0;
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}
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public String getString(int index) {
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return String.format("%.8f", storageD[index]);
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}
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public void setString(int index, String value) {
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storageD[index] = Double.parseDouble(value);
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}
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public Complex getComplex(int index) {
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return new Complex(getDouble(index), 0);
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}
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public void setComplex(int index, Complex value) {
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throw new ForbiddenConversionException();
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}
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public LocalDateTime getDate(int index) { throw new ForbiddenConversionException(); }
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public void setDate(int index, LocalDateTime value) { throw new ForbiddenConversionException(); }
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public Object getObject(int index) {
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return getDouble(index);
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}
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public void setObject(int index, Object value) {
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storageD[index] = ((Number) value).doubleValue();
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}
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/**
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* Concrete implementation of Array specialized for doubles, rank 0.
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*/
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public static class D0 extends ArrayDouble {
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private Index0D ix;
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/**
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* Constructor.
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*/
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public D0() {
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super(new int[]{});
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ix = (Index0D) indexCalc;
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}
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private D0(Index i, double[] store) {
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super(i, store);
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ix = (Index0D) indexCalc;
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}
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/**
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* get the value.
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*/
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public double get() {
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return storageD[ix.currentElement()];
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}
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/**
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* set the value.
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*/
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public void set(double value) {
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storageD[ix.currentElement()] = value;
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}
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}
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/**
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* Concrete implementation of Array specialized for doubles, rank 1.
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*/
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public static class D1 extends ArrayDouble {
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private Index1D ix;
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/**
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* Constructor for array of shape {len0}.
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*/
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public D1(int len0) {
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super(new int[]{len0});
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ix = (Index1D) indexCalc;
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}
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private D1(Index i, double[] store) {
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super(i, store);
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ix = (Index1D) indexCalc;
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}
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/**
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* get the value.
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*/
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public double get(int i) {
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return storageD[ix.setDirect(i)];
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}
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/**
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* set the value.
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*/
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public void set(int i, double value) {
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storageD[ix.setDirect(i)] = value;
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}
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}
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/**
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* Concrete implementation of Array specialized for doubles, rank 2.
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*/
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public static class D2 extends ArrayDouble {
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private Index2D ix;
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/**
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* Constructor for array of shape {len0,len1}.
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*/
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public D2(int len0, int len1) {
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super(new int[]{len0, len1});
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ix = (Index2D) indexCalc;
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}
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private D2(Index i, double[] store) {
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super(i, store);
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ix = (Index2D) indexCalc;
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}
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/**
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* get the value.
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*/
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public double get(int i, int j) {
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return storageD[ix.setDirect(i, j)];
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}
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/**
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* set the value.
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*/
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public void set(int i, int j, double value) {
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storageD[ix.setDirect(i, j)] = value;
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}
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}
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/**
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* Concrete implementation of Array specialized for doubles, rank 3.
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*/
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public static class D3 extends ArrayDouble {
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private Index3D ix;
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/**
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* Constructor for array of shape {len0,len1,len2}.
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*/
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public D3(int len0, int len1, int len2) {
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super(new int[]{len0, len1, len2});
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ix = (Index3D) indexCalc;
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}
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private D3(Index i, double[] store) {
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super(i, store);
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ix = (Index3D) indexCalc;
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}
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/**
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* get the value.
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*/
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public double get(int i, int j, int k) {
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return storageD[ix.setDirect(i, j, k)];
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}
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/**
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* set the value.
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*/
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public void set(int i, int j, int k, double value) {
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storageD[ix.setDirect(i, j, k)] = value;
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}
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public IF getIF() {
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return new IF();
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}
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public class IF {
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private int currElement = -1;
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private int size = (int) ix.getSize();
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public boolean hasNext(int howMany) {
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return currElement < size - howMany;
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}
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public double getNext() {
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return storageD[++currElement];
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}
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public void setNext(double val) {
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storageD[++currElement] = val;
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}
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}
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}
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/**
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* Concrete implementation of Array specialized for doubles, rank 4.
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*/
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public static class D4 extends ArrayDouble {
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private Index4D ix;
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/**
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* Constructor for array of shape {len0,len1,len2,len3}.
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*/
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public D4(int len0, int len1, int len2, int len3) {
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super(new int[]{len0, len1, len2, len3});
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ix = (Index4D) indexCalc;
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}
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private D4(Index i, double[] store) {
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super(i, store);
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ix = (Index4D) indexCalc;
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}
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/**
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* get the value.
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*/
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public double get(int i, int j, int k, int l) {
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return storageD[ix.setDirect(i, j, k, l)];
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}
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/**
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* set the value.
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*/
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public void set(int i, int j, int k, int l, double value) {
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storageD[ix.setDirect(i, j, k, l)] = value;
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}
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}
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/**
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* Concrete implementation of Array specialized for doubles, rank 5.
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*/
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public static class D5 extends ArrayDouble {
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private Index5D ix;
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/**
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* Constructor for array of shape {len0,len1,len2,len3,len4}.
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*/
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public D5(int len0, int len1, int len2, int len3, int len4) {
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super(new int[]{len0, len1, len2, len3, len4});
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ix = (Index5D) indexCalc;
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}
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private D5(Index i, double[] store) {
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super(i, store);
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ix = (Index5D) indexCalc;
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}
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/**
|
|
* get the value.
|
|
*/
|
|
public double get(int i, int j, int k, int l, int m) {
|
|
return storageD[ix.setDirect(i, j, k, l, m)];
|
|
}
|
|
|
|
/**
|
|
* set the value.
|
|
*/
|
|
public void set(int i, int j, int k, int l, int m, double value) {
|
|
storageD[ix.setDirect(i, j, k, l, m)] = value;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Concrete implementation of Array specialized for doubles, rank 6.
|
|
*/
|
|
public static class D6 extends ArrayDouble {
|
|
|
|
private Index6D ix;
|
|
|
|
/**
|
|
* Constructor for array of shape {len0,len1,len2,len3,len4,len5,}.
|
|
*/
|
|
public D6(int len0, int len1, int len2, int len3, int len4, int len5) {
|
|
super(new int[]{len0, len1, len2, len3, len4, len5});
|
|
ix = (Index6D) indexCalc;
|
|
}
|
|
|
|
private D6(Index i, double[] store) {
|
|
super(i, store);
|
|
ix = (Index6D) indexCalc;
|
|
}
|
|
|
|
/**
|
|
* get the value.
|
|
*/
|
|
public double get(int i, int j, int k, int l, int m, int n) {
|
|
return storageD[ix.setDirect(i, j, k, l, m, n)];
|
|
}
|
|
|
|
/**
|
|
* set the value.
|
|
*/
|
|
public void set(int i, int j, int k, int l, int m, int n, double value) {
|
|
storageD[ix.setDirect(i, j, k, l, m, n)] = value;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Concrete implementation of Array specialized for doubles, rank 7.
|
|
*/
|
|
public static class D7 extends ArrayDouble {
|
|
|
|
private Index7D ix;
|
|
|
|
/**
|
|
* Constructor for array of shape {len0,len1,len2,len3,len4,len5,len6}.
|
|
*/
|
|
public D7(int len0, int len1, int len2, int len3, int len4, int len5, int len6) {
|
|
super(new int[]{len0, len1, len2, len3, len4, len5, len6});
|
|
ix = (Index7D) indexCalc;
|
|
}
|
|
|
|
private D7(Index i, double[] store) {
|
|
super(i, store);
|
|
ix = (Index7D) indexCalc;
|
|
}
|
|
|
|
/**
|
|
* get the value.
|
|
*/
|
|
public double get(int i, int j, int k, int l, int m, int n, int o) {
|
|
return storageD[ix.setDirect(i, j, k, l, m, n, o)];
|
|
}
|
|
|
|
/**
|
|
* set the value.
|
|
*/
|
|
public void set(int i, int j, int k, int l, int m, int n, int o, double value) {
|
|
storageD[ix.setDirect(i, j, k, l, m, n, o)] = value;
|
|
}
|
|
}
|
|
|
|
}
|