annotate liboctave/oct-sort.h @ 10158:4c0cdbe0acca

remove Emacs local-variable settings from liboctave source files
author John W. Eaton <jwe@octave.org>
date Wed, 20 Jan 2010 19:04:35 -0500
parents 7c8392a034e6
children cbc402e64d83
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1 /*
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2 Copyright (C) 2003, 2004, 2005, 2006, 2007, 2008, 2009 David Bateman
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3
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4 This file is part of Octave.
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5
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6 Octave is free software; you can redistribute it and/or modify it
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7 under the terms of the GNU General Public License as published by the
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8 Free Software Foundation; either version 3 of the License, or (at your
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9 option) any later version.
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10
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11 Octave is distributed in the hope that it will be useful, but WITHOUT
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12 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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14 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 Octave; see the file COPYING. If not, see
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18 <http://www.gnu.org/licenses/>.
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19
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20 Code stolen in large part from Python's, listobject.c, which itself had
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21 no license header. However, thanks to Tim Peters for the parts of the
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22 code I ripped-off.
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23
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24 As required in the Python license the short description of the changes
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25 made are
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26
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27 * convert the sorting code in listobject.cc into a generic class,
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28 replacing PyObject* with the type of the class T.
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29
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30 The Python license is
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31
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32 PSF LICENSE AGREEMENT FOR PYTHON 2.3
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33 --------------------------------------
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34
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35 1. This LICENSE AGREEMENT is between the Python Software Foundation
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36 ("PSF"), and the Individual or Organization ("Licensee") accessing and
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37 otherwise using Python 2.3 software in source or binary form and its
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38 associated documentation.
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39
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40 2. Subject to the terms and conditions of this License Agreement, PSF
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41 hereby grants Licensee a nonexclusive, royalty-free, world-wide
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42 license to reproduce, analyze, test, perform and/or display publicly,
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43 prepare derivative works, distribute, and otherwise use Python 2.3
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44 alone or in any derivative version, provided, however, that PSF's
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45 License Agreement and PSF's notice of copyright, i.e., "Copyright (c)
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46 2001, 2002, 2003 Python Software Foundation; All Rights Reserved" are
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47 retained in Python 2.3 alone or in any derivative version prepared by
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48 Licensee.
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49
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50 3. In the event Licensee prepares a derivative work that is based on
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51 or incorporates Python 2.3 or any part thereof, and wants to make
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52 the derivative work available to others as provided herein, then
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53 Licensee hereby agrees to include in any such work a brief summary of
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54 the changes made to Python 2.3.
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55
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56 4. PSF is making Python 2.3 available to Licensee on an "AS IS"
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57 basis. PSF MAKES NO REPRESENTATIONS OR WARRANTIES, EXPRESS OR
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58 IMPLIED. BY WAY OF EXAMPLE, BUT NOT LIMITATION, PSF MAKES NO AND
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59 DISCLAIMS ANY REPRESENTATION OR WARRANTY OF MERCHANTABILITY OR FITNESS
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60 FOR ANY PARTICULAR PURPOSE OR THAT THE USE OF PYTHON 2.3 WILL NOT
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61 INFRINGE ANY THIRD PARTY RIGHTS.
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62
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63 5. PSF SHALL NOT BE LIABLE TO LICENSEE OR ANY OTHER USERS OF PYTHON
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64 2.3 FOR ANY INCIDENTAL, SPECIAL, OR CONSEQUENTIAL DAMAGES OR LOSS AS
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65 A RESULT OF MODIFYING, DISTRIBUTING, OR OTHERWISE USING PYTHON 2.3,
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66 OR ANY DERIVATIVE THEREOF, EVEN IF ADVISED OF THE POSSIBILITY THEREOF.
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67
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68 6. This License Agreement will automatically terminate upon a material
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69 breach of its terms and conditions.
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70
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71 7. Nothing in this License Agreement shall be deemed to create any
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72 relationship of agency, partnership, or joint venture between PSF and
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73 Licensee. This License Agreement does not grant permission to use PSF
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74 trademarks or trade name in a trademark sense to endorse or promote
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75 products or services of Licensee, or any third party.
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76
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77 8. By copying, installing or otherwise using Python 2.3, Licensee
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78 agrees to be bound by the terms and conditions of this License
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79 Agreement.
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80 */
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81
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82 #if !defined (octave_sort_h)
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83 #define octave_sort_h 1
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84
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85 #include "lo-traits.h"
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86
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87 // The maximum number of entries in a MergeState's pending-runs stack.
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88 // This is enough to sort arrays of size up to about
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89 // 32 * phi ** MAX_MERGE_PENDING
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90 // where phi ~= 1.618. 85 is ridiculously large enough, good for an array
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91 // with 2**64 elements.
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92 #define MAX_MERGE_PENDING 85
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93
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94 // When we get into galloping mode, we stay there until both runs win less
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95 // often than MIN_GALLOP consecutive times. See listsort.txt for more info.
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96 #define MIN_GALLOP 7
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97
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98 // Avoid malloc for small temp arrays.
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99 #define MERGESTATE_TEMP_SIZE 1024
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100
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101 // Enum for type of sort function
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102 enum sortmode { UNSORTED = 0, ASCENDING, DESCENDING };
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103
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104 template <class T>
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105 class
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106 octave_sort
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107 {
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108 public:
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109
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110 typedef bool (*compare_fcn_type) (typename ref_param<T>::type,
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111 typename ref_param<T>::type);
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112
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113 octave_sort (void);
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114
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115 octave_sort (compare_fcn_type);
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116
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117 ~octave_sort (void);
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118
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119 void set_compare (compare_fcn_type comp) { compare = comp; }
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120
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121 void set_compare (sortmode mode);
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122
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123 // Sort an array in-place.
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124 void sort (T *data, octave_idx_type nel);
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125
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126 // Ditto, but also permute the passed indices (may not be valid indices).
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127 void sort (T *data, octave_idx_type *idx, octave_idx_type nel);
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128
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129 // Check whether an array is sorted.
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130 bool is_sorted (const T *data, octave_idx_type nel);
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131
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132 // Sort a matrix by rows, return a permutation
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133 // vector.
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134 void sort_rows (const T *data, octave_idx_type *idx,
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135 octave_idx_type rows, octave_idx_type cols);
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136
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137 // Determine whether a matrix (as a contiguous block) is sorted by rows.
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138 bool is_sorted_rows (const T *data,
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139 octave_idx_type rows, octave_idx_type cols);
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140
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141 // Do a binary lookup in a sorted array.
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142 octave_idx_type lookup (const T *data, octave_idx_type nel,
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143 const T& value);
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144
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145 // Ditto, but for an array.
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146 void lookup (const T *data, octave_idx_type nel,
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147 const T* values, octave_idx_type nvalues,
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148 octave_idx_type *idx);
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149
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150 // A linear merge of two sorted tables. rev indicates the second table is
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151 // in reverse order.
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152 void lookup_sorted (const T *data, octave_idx_type nel,
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153 const T* values, octave_idx_type nvalues,
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154 octave_idx_type *idx, bool rev = false);
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155
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156 // Rearranges the array so that the elements with indices
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157 // lo..up-1 are in their correct place.
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158 void nth_element (T *data, octave_idx_type nel,
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159 octave_idx_type lo, octave_idx_type up = -1);
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160
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161 static bool ascending_compare (typename ref_param<T>::type,
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162 typename ref_param<T>::type);
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163
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164 static bool descending_compare (typename ref_param<T>::type,
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165 typename ref_param<T>::type);
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166
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167 private:
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168
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169 // One MergeState exists on the stack per invocation of mergesort.
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170 // It's just a convenient way to pass state around among the helper
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171 // functions.
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172 //
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173 // DGB: This isn't needed with mergesort in a class, but it doesn't
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174 // slow things up, and it is likely to make my life easier for any
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175 // potential backporting of changes in the Python code.
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176
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177 struct s_slice
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178 {
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179 octave_idx_type base, len;
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180 };
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181
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182 struct MergeState
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183 {
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184 MergeState (void)
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185 : a (0), ia (0), alloced (0)
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186 { reset (); }
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187
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188 ~MergeState (void)
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189 { delete [] a; delete [] ia; }
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190
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191 void reset (void)
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192 { min_gallop = MIN_GALLOP; n = 0; }
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193
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194 void getmem (octave_idx_type need);
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195
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196 void getmemi (octave_idx_type need);
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197
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198 // This controls when we get *into* galloping mode. It's
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199 // initialized to MIN_GALLOP. merge_lo and merge_hi tend to nudge
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200 // it higher for random data, and lower for highly structured
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201 // data.
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202 octave_idx_type min_gallop;
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203
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204 // 'a' is temp storage to help with merges. It contains room for
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205 // alloced entries.
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206 T *a; // may point to temparray below
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207 octave_idx_type *ia;
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208 octave_idx_type alloced;
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209
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210 // A stack of n pending runs yet to be merged. Run #i starts at
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211 // address base[i] and extends for len[i] elements. It's always
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212 // true (so long as the indices are in bounds) that
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213 //
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214 // pending[i].base + pending[i].len == pending[i+1].base
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215 //
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216 // so we could cut the storage for this, but it's a minor amount,
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217 // and keeping all the info explicit simplifies the code.
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218 octave_idx_type n;
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219 struct s_slice pending[MAX_MERGE_PENDING];
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220 };
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221
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222 compare_fcn_type compare;
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223
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224 MergeState *ms;
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225
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226
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227 template <class Comp>
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228 void binarysort (T *data, octave_idx_type nel,
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229 octave_idx_type start, Comp comp);
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230
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231 template <class Comp>
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232 void binarysort (T *data, octave_idx_type *idx, octave_idx_type nel,
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233 octave_idx_type start, Comp comp);
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234
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235 template <class Comp>
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236 octave_idx_type count_run (T *lo, octave_idx_type n, bool& descending, Comp comp);
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237
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238 template <class Comp>
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239 octave_idx_type gallop_left (T key, T *a, octave_idx_type n, octave_idx_type hint,
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240 Comp comp);
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241
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242 template <class Comp>
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243 octave_idx_type gallop_right (T key, T *a, octave_idx_type n, octave_idx_type hint,
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244 Comp comp);
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245
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246 template <class Comp>
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247 int merge_lo (T *pa, octave_idx_type na,
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248 T *pb, octave_idx_type nb,
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249 Comp comp);
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250
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251 template <class Comp>
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252 int merge_lo (T *pa, octave_idx_type *ipa, octave_idx_type na,
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253 T *pb, octave_idx_type *ipb, octave_idx_type nb,
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254 Comp comp);
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255
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256 template <class Comp>
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257 int merge_hi (T *pa, octave_idx_type na,
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258 T *pb, octave_idx_type nb,
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259 Comp comp);
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260
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261 template <class Comp>
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262 int merge_hi (T *pa, octave_idx_type *ipa, octave_idx_type na,
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263 T *pb, octave_idx_type *ipb, octave_idx_type nb,
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264 Comp comp);
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265
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266 template <class Comp>
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267 int merge_at (octave_idx_type i, T *data,
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268 Comp comp);
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269
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270 template <class Comp>
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271 int merge_at (octave_idx_type i, T *data, octave_idx_type *idx,
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272 Comp comp);
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273
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274 template <class Comp>
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275 int merge_collapse (T *data, Comp comp);
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276
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277 template <class Comp>
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278 int merge_collapse (T *data, octave_idx_type *idx, Comp comp);
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279
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280 template <class Comp>
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281 int merge_force_collapse (T *data, Comp comp);
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282
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283 template <class Comp>
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284 int merge_force_collapse (T *data, octave_idx_type *idx, Comp comp);
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285
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286 octave_idx_type merge_compute_minrun (octave_idx_type n);
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287
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288 template <class Comp>
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289 void sort (T *data, octave_idx_type nel, Comp comp);
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290
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291 template <class Comp>
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292 void sort (T *data, octave_idx_type *idx, octave_idx_type nel, Comp comp);
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293
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294 template <class Comp>
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295 bool is_sorted (const T *data, octave_idx_type nel, Comp comp);
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296
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297 template <class Comp>
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298 void sort_rows (const T *data, octave_idx_type *idx,
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299 octave_idx_type rows, octave_idx_type cols,
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300 Comp comp);
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301
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302 template <class Comp>
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303 bool is_sorted_rows (const T *data, octave_idx_type rows,
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304 octave_idx_type cols, Comp comp);
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305
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306 template <class Comp>
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307 octave_idx_type lookup (const T *data, octave_idx_type nel,
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308 const T& value, Comp comp);
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309
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310 template <class Comp>
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311 void lookup (const T *data, octave_idx_type nel,
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312 const T* values, octave_idx_type nvalues,
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313 octave_idx_type *idx, Comp comp);
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314
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315 template <class Comp>
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316 void lookup_sorted (const T *data, octave_idx_type nel,
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317 const T* values, octave_idx_type nvalues,
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318 octave_idx_type *idx, bool rev, Comp comp);
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319
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320 template <class Comp>
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321 void nth_element (T *data, octave_idx_type nel,
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322 octave_idx_type lo, octave_idx_type up,
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323 Comp comp);
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324 };
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325
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326 template <class T>
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327 class
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328 vec_index
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329 {
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330 public:
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331 T vec;
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332 octave_idx_type indx;
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333 };
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334 #endif