[9102] | 1 | ///
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| 2 | /// This file is part of ILNumerics Community Edition.
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| 3 | ///
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| 4 | /// ILNumerics Community Edition - high performance computing for applications.
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| 5 | /// Copyright (C) 2006 - 2012 Haymo Kutschbach, http://ilnumerics.net
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| 6 | ///
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| 7 | /// ILNumerics Community Edition is free software: you can redistribute it and/or modify
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| 8 | /// it under the terms of the GNU General Public License version 3 as published by
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| 9 | /// the Free Software Foundation.
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| 10 | ///
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| 11 | /// ILNumerics Community Edition is distributed in the hope that it will be useful,
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| 12 | /// but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 13 | /// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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| 14 | /// GNU General Public License for more details.
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| 15 | ///
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| 16 | /// You should have received a copy of the GNU General Public License
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| 17 | /// along with ILNumerics Community Edition. See the file License.txt in the root
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| 18 | /// of your distribution package. If not, see <http://www.gnu.org/licenses/>.
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| 19 | ///
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| 20 | /// In addition this software uses the following components and/or licenses:
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| 21 | ///
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| 22 | /// =================================================================================
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| 23 | /// The Open Toolkit Library License
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| 24 | ///
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| 25 | /// Copyright (c) 2006 - 2009 the Open Toolkit library.
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| 26 | ///
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| 27 | /// Permission is hereby granted, free of charge, to any person obtaining a copy
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| 28 | /// of this software and associated documentation files (the "Software"), to deal
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| 29 | /// in the Software without restriction, including without limitation the rights to
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| 30 | /// use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of
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| 31 | /// the Software, and to permit persons to whom the Software is furnished to do
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| 32 | /// so, subject to the following conditions:
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| 33 | ///
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| 34 | /// The above copyright notice and this permission notice shall be included in all
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| 35 | /// copies or substantial portions of the Software.
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| 36 | ///
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| 37 | /// =================================================================================
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| 38 | ///
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| 39 |
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| 40 | using System;
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| 41 | using ILNumerics;
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| 42 | using ILNumerics.Misc;
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| 43 | using ILNumerics.Exceptions;
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| 44 | using ILNumerics.Storage;
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| 45 | using ILNumerics.Native;
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| 46 | using System.Text;
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| 47 |
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| 48 | namespace ILNumerics {
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| 49 | /// <summary>
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| 50 | /// Boolean array for high performance relational operations on arbitrary arrays
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| 51 | /// </summary>
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| 52 | /// <remarks>
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| 53 | /// Logical arrays are derived from <![CDATA[ILArray<byte>]]>. It consumes
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| 54 | /// 1 byte per element and is the output parameter of all relational comparisons
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| 55 | /// as well as the input parameter for all functions consuming <![CDATA[ILArray<byte>]]>.
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| 56 | /// The difference between <![CDATA[ILArray<byte>]]> and logical arrays is, the logical array
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| 57 | /// storing a integer value with the number of nonzero elements as additional information.
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| 58 | /// Therefore functions like 'find' are able to determine the lenght of output array to
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| 59 | /// be created omitting the need of multiple walks through the array. Therefore ILLogicalArrays
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| 60 | /// consume (a little) more time while construction but are much more performand on functions like
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| 61 | /// 'find'.
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| 62 | /// </remarks>
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| 63 | [Serializable]
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| 64 | public sealed class ILInLogical : ILBaseLogical {
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| 65 |
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| 66 | private static readonly bool s_isTempArray = true;
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| 67 |
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| 68 | #region constructors
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| 69 | /// <summary>
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| 70 | /// constructor - create logical array of specified size
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| 71 | /// </summary>
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| 72 | /// <param name="size">
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| 73 | /// Variable length int array specifying the number and size of dimensions to
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| 74 | /// be created.
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| 75 | /// </param>
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| 76 | /// <remarks>
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| 77 | /// The size parameter may not be null or an empty array! An exception will be
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| 78 | /// thrown in this case. The dimensions will be trimmed before processing
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| 79 | /// (removing trailing non singleton dimensions).
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| 80 | /// </remarks>
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| 81 | internal ILInLogical(params int[] size)
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| 82 | : base(new ILLogicalStorage(new ILSize(size)), s_isTempArray) {
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| 83 | NumberNonZero = sumElements();
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| 84 | }
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| 85 | /// <summary>
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| 86 | /// constructor - create logical array of specified size
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| 87 | /// </summary>
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| 88 | /// <param name="size">
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| 89 | /// dimension object
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| 90 | /// </param>
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| 91 | /// <remarks>
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| 92 | /// The size parameter may not be null. An exception will be
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| 93 | /// thrown in this case. The dimensions will be trimmed before processing
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| 94 | /// (removing trailing singleton dimensions).
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| 95 | /// </remarks>
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| 96 | internal ILInLogical(ILSize size)
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| 97 | : base(new ILLogicalStorage(size), s_isTempArray) {
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| 98 | NumberNonZero = sumElements();
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| 99 | }
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| 100 | /// <summary>
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| 101 | /// Constructor creating logical array from dense storage
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| 102 | /// </summary>
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| 103 | /// <param name="A">input array, the storage of this ILArray will directly be used for
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| 104 | /// storage of the new logical array</param>
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| 105 | internal ILInLogical(ILLogicalStorage A)
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| 106 | : base(A, s_isTempArray) {
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| 107 | NumberNonZero = sumElements();
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| 108 | }
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| 109 | /// <summary>
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| 110 | /// Constructor creating logical array from (dense) storage
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| 111 | /// </summary>
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| 112 | /// <param name="A">input array storage, the storage will directly be used for
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| 113 | /// storage of the new logical array</param>
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| 114 | /// <param name="numberNonZero">number of nonzero elements in A. Must be positive or 0.</param>
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| 115 | /// <remarks> Providing this parameter prevents the constructor from having to count the
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| 116 | /// 'true' elements in A.</remarks>
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| 117 | internal ILInLogical(ILLogicalStorage A, long numberNonZero)
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| 118 | : base(A, s_isTempArray) {
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| 119 | if (numberNonZero < 0)
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| 120 | throw new ILNumerics.Exceptions.ILArgumentException("invalid number of non-zero-elements given!");
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| 121 | NumberNonZero = numberNonZero;
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| 122 | }
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| 123 | /// <summary>
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| 124 | /// constructor - create logical array of specified size
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| 125 | /// from data array
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| 126 | /// </summary>
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| 127 | /// <param name="size">
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| 128 | /// Variable length int array specifying the number and size of dimensions to
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| 129 | /// be created.
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| 130 | /// </param>
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| 131 | /// <param name="data"> byte array matching the size of the dimensions
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| 132 | /// specified. The data will directly be used as storage! No copy will be made!</param>
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| 133 | /// <remarks>
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| 134 | /// The size parameter may not be null or an empty array! An Exception will be
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| 135 | /// thrown in this case. The dimensions will be trimmed before processing
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| 136 | /// (removing trailing non singleton dimensions).
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| 137 | /// </remarks>
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| 138 | internal ILInLogical(byte[] data, params int[] size)
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| 139 | : base(new ILLogicalStorage(data, new ILSize(size)), s_isTempArray) {
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| 140 | NumberNonZero = sumElements();
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| 141 | }
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| 142 | /// <summary>
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| 143 | /// Constructor creating logical array, provide predefined storage
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| 144 | /// </summary>
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| 145 | /// <param name="data">predefined storage elements. The array will directly be used
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| 146 | /// as underlying storage. No copy will be made! </param>
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| 147 | /// <param name="dimension">Dimensions specification.</param>
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| 148 | internal ILInLogical(byte[] data, ILSize dimension)
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| 149 | : base(new ILLogicalStorage(data, dimension), s_isTempArray) {
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| 150 | NumberNonZero = sumElements();
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| 151 | }
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| 152 | /// <summary>
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| 153 | /// Constructor creating logical array, predefined storage (fast version)
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| 154 | /// </summary>
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| 155 | /// <param name="data">predefined storage elements. The array will directly be used
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| 156 | /// as underlying storage. No copy will be made! </param>
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| 157 | /// <param name="dimension">Dimensions specification.</param>
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| 158 | /// <param name="nonZeroCount">number of nonzero elements in <paramref name="data"/>.
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| 159 | /// Providing this parameter prevents from counting the 'true' elements (again). </param>
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| 160 | internal ILInLogical(byte[] data, ILSize dimension, long nonZeroCount)
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| 161 | : base(new ILLogicalStorage(data, dimension), s_isTempArray) {
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| 162 | if (nonZeroCount < 0)
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| 163 | throw new ILNumerics.Exceptions.ILArgumentException("invalid number of non-zero-elements given!");
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| 164 | NumberNonZero = nonZeroCount;
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| 165 | }
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| 166 | #endregion
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| 167 |
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| 168 | #region operator overloading
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| 169 |
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| 170 | #region operational operators
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| 171 | /// <summary>
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| 172 | /// Invert values of array elements
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| 173 | /// </summary>
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| 174 | /// <param name="A">Input array</param>
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| 175 | /// <returns>New logical array, having the element values of A inverted</returns>
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| 176 | public static ILRetLogical operator !(ILInLogical A) {
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| 177 | if (object.Equals(A, null))
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| 178 | throw new ILArgumentException("operator !: array must not be null");
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| 179 | return (A != (byte)1);
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| 180 | }
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| 181 | #endregion
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| 182 |
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| 183 | #region conversional operators
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| 184 | public static implicit operator ILInLogical(ILArray<byte> a) {
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| 185 | if (object.Equals(a, null))
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| 186 | return null;
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| 187 | ILInLogical ret = new ILInLogical(new ILLogicalStorage(
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| 188 | a.Storage.GetDataArray(), a.Size));
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| 189 | if (Settings.AllowInArrayAssignments)
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| 190 | ILScope.Context.RegisterArray(ret);
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| 191 | return ret;
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| 192 | }
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| 193 | public static implicit operator ILInLogical(ILInArray<byte> a) {
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| 194 | if (object.Equals(a, null))
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| 195 | return null;
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| 196 | ILInLogical ret = new ILInLogical(new ILLogicalStorage(
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| 197 | a.Storage.GetDataArray(), a.Size));
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| 198 | if (Settings.AllowInArrayAssignments)
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| 199 | ILScope.Context.RegisterArray(ret);
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| 200 | return ret;
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| 201 | }
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| 202 | public static implicit operator ILArray<byte>(ILInLogical a) {
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| 203 | if (object.Equals(a, null))
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| 204 | return null;
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| 205 | ILArray<byte> ret = new ILArray<byte>(
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| 206 | new ILDenseStorage<byte>(a.Storage.GetDataArray(), a.Size));
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| 207 | ILScope.Context.RegisterArray(ret);
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| 208 | return ret;
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| 209 | }
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| 210 | public static implicit operator ILInArray<byte>(ILInLogical a) {
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| 211 | if (object.Equals(a, null))
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| 212 | return null;
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| 213 | ILInArray<byte> ret = new ILInArray<byte>(
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| 214 | new ILDenseStorage<byte>(a.Storage.GetDataArray(), a.Size));
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| 215 | if (Settings.AllowInArrayAssignments)
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| 216 | ILScope.Context.RegisterArray(ret);
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| 217 | return ret;
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| 218 | }
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| 219 | public static implicit operator ILInLogical(ILRetLogical a) {
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| 220 | if (object.Equals(a,null))
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| 221 | return null;
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| 222 | ILLogicalStorage storage = (ILLogicalStorage)a.GiveStorageAwayOrClone();
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| 223 | ILInLogical ret = new ILInLogical(storage, storage.NumberNonZero);
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| 224 | if (Settings.AllowInArrayAssignments)
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| 225 | ILScope.Context.RegisterArray(ret);
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| 226 | return ret;
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| 227 | }
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| 228 | public static implicit operator ILInLogical(ILLogical a) {
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| 229 | if (object.Equals(a, null))
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| 230 | return null;
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| 231 | ILInLogical ret = new ILInLogical(new ILLogicalStorage(a.Storage.GetDataArray(), a.Size));
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| 232 | if (Settings.AllowInArrayAssignments)
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| 233 | ILScope.Context.RegisterArray(ret);
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| 234 | return ret;
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| 235 | }
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| 236 | #endregion
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| 237 |
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| 238 | #region constructional operators
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| 239 | /// <summary>
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| 240 | /// Implicitly convert logical array to bool
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| 241 | /// </summary>
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| 242 | /// <param name="A">logical array</param>
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| 243 | /// <returns>true if <b>all</b> elements of A are non-zero, false otherwise
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| 244 | /// </returns>
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| 245 | /// <remarks>If A is null or empty, the function returns false. Otherwise allall returns true,
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| 246 | /// if all elements of A are non-zero and returns false, if A contains any zero elements.</remarks>
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| 247 | public static implicit operator bool(ILInLogical A) {
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| 248 | // this operator is implicit for convenience reasons:
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| 249 | // if(tmp[0]!=-10.0) { ... is only possible this way
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| 250 | if (object.Equals(A, null) || A.IsEmpty)
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| 251 | return false;
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| 252 | if (A.IsScalar)
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| 253 | return A.GetValue(0, 0) == 1;
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| 254 | if (Settings.LogicalArrayToBoolConversion == LogicalConversionMode.ImplicitAllAll) {
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| 255 | if (A.Size.NumberOfElements > 0) {
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| 256 | return ILMath.allall(A).GetValue(0) == 1;
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| 257 | } else {
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| 258 | return false;
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| 259 | }
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| 260 | } else { // if (Settings.LogicalArrayToBoolConversion == LogicalConversionMode.NonScalarThrowsException) {
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| 261 | if (!A.IsScalar) {
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| 262 | throw new ILArgumentException("error while attempting to convert logical of size " + A.Size.ToString() + " to boolean");
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| 263 | } else {
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| 264 | return A.GetValue(0) == 1;
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| 265 | }
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| 266 | }
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| 267 | }
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| 268 |
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| 269 | /// <summary>
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| 270 | /// Implicitly convert scalar byte to logical array of size 1x1 (scalar).
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| 271 | /// </summary>
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| 272 | /// <param name="val">Byte scalar</param>
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| 273 | /// <returns>New logical array of size 1x1 holding the only element of type <c>byte</c>
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| 274 | /// with value of val.</returns>
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| 275 | public static implicit operator ILInLogical(bool val) {
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| 276 | ILInLogical ret = new ILInLogical(new byte[1] { val ? (byte)1 : (byte)0 }, 1, 1);
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| 277 | return ret;
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| 278 | }
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| 279 |
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| 280 | /// <summary>
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| 281 | /// Implicitly convert integer scalar to logical array of size 1x1 (scalar).
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| 282 | /// </summary>
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| 283 | /// <param name="val">Scalar value</param>
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| 284 | /// <returns>New logical array of size 1x1 holding the only element of type Byte
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| 285 | /// with value of val.</returns>
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| 286 | public static implicit operator ILInLogical(int val) {
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| 287 | ILInLogical ret = new ILInLogical(new Byte[1] {
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| 288 | val != 0 ? (byte)1:(byte)0 }, 1, 1);
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| 289 | return ret;
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| 290 | }
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| 291 | /// <summary>
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| 292 | /// implicitly cast one dimensional System.Array to ILNumerics array (vector)
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| 293 | /// </summary>
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| 294 | /// <param name="A">1 dimensional system array, arbitrary type</param>
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| 295 | /// <returns>ILNumerics array of same element type as elements of A.
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| 296 | /// Row vector. If A is null: empty array.</returns>
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| 297 | /// <remarks>The System.Array A will directly be used for the new ILNumerics array!
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| 298 | /// No copy will be done! Make sure, not to reference A after this conversion!</remarks>
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| 299 | public static implicit operator ILInLogical(byte[] A) {
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| 300 | if (A == null) {
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| 301 | ILLogicalStorage dS = new ILLogicalStorage(new byte[0], ILSize.Empty00);
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| 302 | return new ILInLogical(dS);
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| 303 | }
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| 304 | ILInLogical ret = new ILInLogical(A, 1, A.Length);
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| 305 | if (Settings.AllowInArrayAssignments)
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| 306 | ILScope.Context.RegisterArray(ret);
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| 307 | return ret;
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| 308 | }
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| 309 | /// <summary>
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| 310 | /// Implicitly convert n-dim. System.Array to ILNumerics array
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| 311 | /// </summary>
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| 312 | /// <param name="A">Arbitrarily sized System.Array</param>
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| 313 | /// <returns>If A is null: empty array. Else: new ILNumerics array of the same size as A</returns>
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| 314 | /// <remarks>The inner type of input array <paramref name="A"/> must match the requested type
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| 315 | /// <typeparamref name="ElementType"/>. The resulting ILArray will reflect all dimensions of
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| 316 | /// A. Elements of A will get copied to elements of output array (shallow copy).</remarks>
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| 317 | /// <exception cref="ILNumerics.Exceptions.ILCastException">If type of input does not match
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| 318 | /// ElementType</exception>
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| 319 | public static implicit operator ILInLogical(Array elements) {
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| 320 | if (elements == null || elements.Length == 0) {
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| 321 | return new ILInLogical(ILSize.Empty00);
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| 322 | }
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| 323 | if (elements.GetType().GetElementType() != typeof(byte))
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| 324 | throw new ILCastException("inner type of System.Array must match");
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| 325 | int[] dims = new int[elements.Rank];
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| 326 | byte[] retArr = ILMemoryPool.Pool.New<byte>(elements.Length);
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| 327 | int posArr = 0;
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| 328 | for (int i = 0; i < dims.Length; i++) {
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| 329 | dims[i] = elements.GetLength(dims.Length - i - 1);
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| 330 | }
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| 331 | foreach (byte item in elements)
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| 332 | retArr[posArr++] = item;
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| 333 | ILInLogical ret = new ILInLogical(retArr, dims);
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| 334 | if (Settings.AllowInArrayAssignments)
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| 335 | ILScope.Context.RegisterArray(ret);
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| 336 | return ret;
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| 337 | }
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| 338 | /// <summary>
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| 339 | /// Implicitly cast two dimensional System.Array to ILNumerics array
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| 340 | /// </summary>
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| 341 | /// <param name="A">2-dimensional System.Array</param>
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| 342 | /// <returns>If A is null: empty array. ILNumerics array of same size and type as A otherwise.</returns>
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| 343 | public static implicit operator ILInLogical(byte[,] A) {
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| 344 | if (A == null || A.Length == 0) {
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| 345 | return new ILInLogical(ILSize.Empty00);
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| 346 | }
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| 347 | int[] dims = new int[2];
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| 348 | byte[] retArr = ILMemoryPool.Pool.New<byte>(A.Length);
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| 349 | int posArr = 0;
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| 350 | for (int i = 0; i < 2; i++) {
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| 351 | dims[i] = A.GetLength(dims.Length - i - 1);
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| 352 | }
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| 353 | foreach (byte item in A)
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| 354 | retArr[posArr++] = item;
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| 355 | ILInLogical ret = new ILInLogical(retArr, dims);
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| 356 | if (Settings.AllowInArrayAssignments)
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| 357 | ILScope.Context.RegisterArray(ret);
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| 358 | return ret;
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| 359 | }
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| 360 | /// <summary>
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| 361 | /// Implicitly cast three dimensional System.Array to ILNumerics array
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| 362 | /// </summary>
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| 363 | /// <param name="A">3-dimensional System.Array</param>
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| 364 | /// <returns>If A is null: empty array. ILNumerics array of same size and type as A otherwise.</returns>
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| 365 | public static implicit operator ILInLogical(byte[, ,] A) {
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| 366 | if (A == null || A.Length == 0) {
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| 367 | return new ILInLogical(ILSize.Empty00);
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| 368 | }
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| 369 | int[] dims = new int[3];
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| 370 | byte[] retArr = ILMemoryPool.Pool.New<byte>(A.Length);
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| 371 | int posArr = 0;
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| 372 | for (int i = 0; i < 3; i++) {
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| 373 | dims[i] = A.GetLength(dims.Length - i - 1);
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| 374 | }
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| 375 | foreach (byte item in A)
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| 376 | retArr[posArr++] = item;
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| 377 | ILInLogical ret = new ILInLogical(retArr, dims);
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| 378 | if (Settings.AllowInArrayAssignments)
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| 379 | ILScope.Context.RegisterArray(ret);
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| 380 | return ret;
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| 381 | }
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| 382 | #endregion
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| 383 | #endregion
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| 384 |
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| 385 | #region index access + mutability
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| 386 | /// <summary>
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| 387 | /// Subarray access (readonly)
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| 388 | /// </summary>
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| 389 | /// <param name="range">Range specification</param>
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| 390 | /// <returns>Logical array with the elements specified by range</returns>
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| 391 | /// <remarks>Query access: for N-dimensional arrays trailing dimensions will be choosen to be 0. Therefore you
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| 392 | /// may ommit those trailing dimensions in range.
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| 393 | /// <para>The indexer may be used for querying any elements
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| 394 | /// in this array. <c>range</c> may contains index specifications for one ... to any
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| 395 | /// dimension. The array returned will have the size specified by range.</para>
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| 396 | /// </remarks>
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| 397 | public ILRetLogical this[params ILBaseArray[] dims] {
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| 398 | get {
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| 399 | return new ILRetLogical((ILLogicalStorage)Storage.Subarray(dims));
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| 400 | }
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| 401 | }
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| 402 | #endregion
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| 403 |
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| 404 | }
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| 405 | }
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