/* * Copyright (C) 2014-2016 Samuel Audet * * Licensed either under the Apache License, Version 2.0, or (at your option) * under the terms of the GNU General Public License as published by * the Free Software Foundation (subject to the "Classpath" exception), * either version 2, or any later version (collectively, the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * http://www.gnu.org/licenses/ * http://www.gnu.org/software/classpath/license.html * * or as provided in the LICENSE.txt file that accompanied this code. * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ package org.bytedeco.javacpp.indexer; import java.nio.FloatBuffer; import org.bytedeco.javacpp.FloatPointer; /** * Abstract indexer for the {@code float} primitive type. * * @author Samuel Audet */ public abstract class FloatIndexer extends Indexer { /** The number of bytes used to represent a float. */ public static final int VALUE_BYTES = 4; protected FloatIndexer(long[] sizes, long[] strides) { super(sizes, strides); } /** Returns {@code new FloatArrayIndexer(array)} */ public static FloatIndexer create(float[] array) { return new FloatArrayIndexer(array); } /** Returns {@code new FloatBufferIndexer(buffer)} */ public static FloatIndexer create(FloatBuffer buffer) { return new FloatBufferIndexer(buffer); } /** Returns {@code create(pointer, { pointer.limit() - pointer.position() }, { 1 }, true)} */ public static FloatIndexer create(FloatPointer pointer) { return create(pointer, new long[] { pointer.limit() - pointer.position() }, new long[] { 1 }); } /** Returns {@code new FloatArrayIndexer(array, sizes, strides)} */ public static FloatIndexer create(float[] array, long[] sizes, long[] strides) { return new FloatArrayIndexer(array, sizes, strides); } /** Returns {@code new FloatBufferIndexer(buffer, sizes, strides)} */ public static FloatIndexer create(FloatBuffer buffer, long[] sizes, long[] strides) { return new FloatBufferIndexer(buffer, sizes, strides); } /** Returns {@code create(pointer, sizes, strides, true)} */ public static FloatIndexer create(FloatPointer pointer, long[] sizes, long[] strides) { return create(pointer, sizes, strides, true); } /** * Creates a float indexer to access efficiently the data of a pointer. * * @param pointer data to access via a buffer or to copy to an array * @param direct {@code true} to use a direct buffer, see {@link Indexer} for details * @return the new float indexer backed by the raw memory interface, a buffer, or an array */ public static FloatIndexer create(final FloatPointer pointer, long[] sizes, long[] strides, boolean direct) { if (direct) { return Raw.getInstance() != null ? new FloatRawIndexer(pointer, sizes, strides) : new FloatBufferIndexer(pointer.asBuffer(), sizes, strides); } else { final long position = pointer.position(); float[] array = new float[(int)Math.min(pointer.limit() - position, Integer.MAX_VALUE)]; pointer.get(array); return new FloatArrayIndexer(array, sizes, strides) { @Override public void release() { pointer.position(position).put(array); super.release(); } }; } } /** Returns {@code array/buffer[i]} */ public abstract float get(long i); /** Returns {@code this} where {@code f = array/buffer[i]} */ public FloatIndexer get(long i, float[] f) { return get(i, f, 0, f.length); } /** Returns {@code this} where {@code f[offset:offset + length] = array/buffer[i]} */ public abstract FloatIndexer get(long i, float[] f, int offset, int length); /** Returns {@code array/buffer[i * strides[0] + j]} */ public abstract float get(long i, long j); /** Returns {@code this} where {@code f = array/buffer[i * strides[0] + j]} */ public FloatIndexer get(long i, long j, float[] f) { return get(i, j, f, 0, f.length); } /** Returns {@code this} where {@code f[offset:offset + length] = array/buffer[i * strides[0] + j]} */ public abstract FloatIndexer get(long i, long j, float[] f, int offset, int length); /** Returns {@code array/buffer[i * strides[0] + j * strides[1] + k]} */ public abstract float get(long i, long j, long k); /** Returns {@code array/buffer[index(indices)]} */ public abstract float get(long... indices); /** Returns {@code this} where {@code f = array/buffer[index(indices)]} */ public FloatIndexer get(long[] indices, float[] f) { return get(indices, f, 0, f.length); } /** Returns {@code this} where {@code f[offset:offset + length] = array/buffer[index(indices)]} */ public abstract FloatIndexer get(long[] indices, float[] f, int offset, int length); /** Returns {@code this} where {@code array/buffer[i] = f} */ public abstract FloatIndexer put(long i, float f); /** Returns {@code this} where {@code array/buffer[i] = f} */ public FloatIndexer put(long i, float... f) { return put(i, f, 0, f.length); } /** Returns {@code this} where {@code array/buffer[i] = f[offset:offset + length]} */ public abstract FloatIndexer put(long i, float[] f, int offset, int length); /** Returns {@code this} where {@code array/buffer[i * strides[0] + j] = f} */ public abstract FloatIndexer put(long i, long j, float f); /** Returns {@code this} where {@code array/buffer[i * strides[0] + j] = f} */ public FloatIndexer put(long i, long j, float... f) { return put(i, j, f, 0, f.length); } /** Returns {@code this} where {@code array/buffer[i * strides[0] + j] = f[offset:offset + length]} */ public abstract FloatIndexer put(long i, long j, float[] f, int offset, int length); /** Returns {@code this} where {@code array/buffer[i * strides[0] + j * strides[1] + k] = f} */ public abstract FloatIndexer put(long i, long j, long k, float f); /** Returns {@code this} where {@code array/buffer[index(indices)] = f} */ public abstract FloatIndexer put(long[] indices, float f); /** Returns {@code this} where {@code array/buffer[index(indices)] = f} */ public FloatIndexer put(long[] indices, float... f) { return put(indices, f, 0, f.length); } /** Returns {@code this} where {@code array/buffer[index(indices)] = f[offset:offset + length]} */ public abstract FloatIndexer put(long[] indices, float[] f, int offset, int length); @Override public double getDouble(long... indices) { return get(indices); } @Override public FloatIndexer putDouble(long[] indices, double f) { return put(indices, (float)f); } }