111
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1 ------------------------------------------------------------------------------
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2 -- --
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3 -- GNAT RUN-TIME COMPONENTS --
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4 -- --
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5 -- A D A . S T R I N G S . W I D E _ F I X E D --
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6 -- --
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7 -- B o d y --
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8 -- --
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9 -- Copyright (C) 1992-2017, Free Software Foundation, Inc. --
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10 -- --
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11 -- GNAT is free software; you can redistribute it and/or modify it under --
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12 -- terms of the GNU General Public License as published by the Free Soft- --
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13 -- ware Foundation; either version 3, or (at your option) any later ver- --
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14 -- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
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15 -- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
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16 -- or FITNESS FOR A PARTICULAR PURPOSE. --
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17 -- --
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18 -- As a special exception under Section 7 of GPL version 3, you are granted --
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19 -- additional permissions described in the GCC Runtime Library Exception, --
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20 -- version 3.1, as published by the Free Software Foundation. --
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21 -- --
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22 -- You should have received a copy of the GNU General Public License and --
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23 -- a copy of the GCC Runtime Library Exception along with this program; --
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24 -- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
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25 -- <http://www.gnu.org/licenses/>. --
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26 -- --
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27 -- GNAT was originally developed by the GNAT team at New York University. --
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28 -- Extensive contributions were provided by Ada Core Technologies Inc. --
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29 -- --
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30 ------------------------------------------------------------------------------
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31
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32 with Ada.Strings.Wide_Maps; use Ada.Strings.Wide_Maps;
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33 with Ada.Strings.Wide_Search;
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34
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35 package body Ada.Strings.Wide_Fixed is
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36
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37 ------------------------
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38 -- Search Subprograms --
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39 ------------------------
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40
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41 function Index
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42 (Source : Wide_String;
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43 Pattern : Wide_String;
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44 Going : Direction := Forward;
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45 Mapping : Wide_Maps.Wide_Character_Mapping := Wide_Maps.Identity)
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46 return Natural
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47 renames Ada.Strings.Wide_Search.Index;
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48
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49 function Index
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50 (Source : Wide_String;
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51 Pattern : Wide_String;
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52 Going : Direction := Forward;
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53 Mapping : Wide_Maps.Wide_Character_Mapping_Function) return Natural
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54 renames Ada.Strings.Wide_Search.Index;
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55
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56 function Index
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57 (Source : Wide_String;
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58 Set : Wide_Maps.Wide_Character_Set;
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59 Test : Membership := Inside;
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60 Going : Direction := Forward) return Natural
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61 renames Ada.Strings.Wide_Search.Index;
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62
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63 function Index
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64 (Source : Wide_String;
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65 Pattern : Wide_String;
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66 From : Positive;
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67 Going : Direction := Forward;
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68 Mapping : Wide_Maps.Wide_Character_Mapping := Wide_Maps.Identity)
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69 return Natural
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70 renames Ada.Strings.Wide_Search.Index;
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71
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72 function Index
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73 (Source : Wide_String;
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74 Pattern : Wide_String;
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75 From : Positive;
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76 Going : Direction := Forward;
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77 Mapping : Wide_Maps.Wide_Character_Mapping_Function) return Natural
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78 renames Ada.Strings.Wide_Search.Index;
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79
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80 function Index
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81 (Source : Wide_String;
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82 Set : Wide_Maps.Wide_Character_Set;
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83 From : Positive;
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84 Test : Membership := Inside;
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85 Going : Direction := Forward) return Natural
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86 renames Ada.Strings.Wide_Search.Index;
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87
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88 function Index_Non_Blank
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89 (Source : Wide_String;
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90 Going : Direction := Forward) return Natural
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91 renames Ada.Strings.Wide_Search.Index_Non_Blank;
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92
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93 function Index_Non_Blank
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94 (Source : Wide_String;
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95 From : Positive;
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96 Going : Direction := Forward) return Natural
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97 renames Ada.Strings.Wide_Search.Index_Non_Blank;
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98
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99 function Count
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100 (Source : Wide_String;
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101 Pattern : Wide_String;
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102 Mapping : Wide_Maps.Wide_Character_Mapping := Wide_Maps.Identity)
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103 return Natural
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104 renames Ada.Strings.Wide_Search.Count;
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105
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106 function Count
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107 (Source : Wide_String;
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108 Pattern : Wide_String;
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109 Mapping : Wide_Maps.Wide_Character_Mapping_Function) return Natural
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110 renames Ada.Strings.Wide_Search.Count;
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111
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112 function Count
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113 (Source : Wide_String;
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114 Set : Wide_Maps.Wide_Character_Set) return Natural
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115 renames Ada.Strings.Wide_Search.Count;
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116
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117 procedure Find_Token
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118 (Source : Wide_String;
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119 Set : Wide_Maps.Wide_Character_Set;
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120 From : Positive;
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121 Test : Membership;
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122 First : out Positive;
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123 Last : out Natural)
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124 renames Ada.Strings.Wide_Search.Find_Token;
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125
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126 procedure Find_Token
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127 (Source : Wide_String;
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128 Set : Wide_Maps.Wide_Character_Set;
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129 Test : Membership;
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130 First : out Positive;
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131 Last : out Natural)
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132 renames Ada.Strings.Wide_Search.Find_Token;
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133
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134 ---------
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135 -- "*" --
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136 ---------
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137
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138 function "*"
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139 (Left : Natural;
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140 Right : Wide_Character) return Wide_String
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141 is
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142 Result : Wide_String (1 .. Left);
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143
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144 begin
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145 for J in Result'Range loop
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146 Result (J) := Right;
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147 end loop;
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148
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149 return Result;
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150 end "*";
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151
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152 function "*"
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153 (Left : Natural;
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154 Right : Wide_String) return Wide_String
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155 is
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156 Result : Wide_String (1 .. Left * Right'Length);
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157 Ptr : Integer := 1;
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158
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159 begin
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160 for J in 1 .. Left loop
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161 Result (Ptr .. Ptr + Right'Length - 1) := Right;
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162 Ptr := Ptr + Right'Length;
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163 end loop;
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164
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165 return Result;
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166 end "*";
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167
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168 ------------
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169 -- Delete --
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170 ------------
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171
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172 function Delete
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173 (Source : Wide_String;
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174 From : Positive;
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175 Through : Natural) return Wide_String
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176 is
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177 begin
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178 if From not in Source'Range
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179 or else Through > Source'Last
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180 then
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181 raise Index_Error;
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182
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183 elsif From > Through then
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184 return Source;
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185
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186 else
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187 declare
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188 Len : constant Integer := Source'Length - (Through - From + 1);
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189 Result : constant
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190 Wide_String (Source'First .. Source'First + Len - 1) :=
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191 Source (Source'First .. From - 1) &
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192 Source (Through + 1 .. Source'Last);
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193 begin
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194 return Result;
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195 end;
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196 end if;
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197 end Delete;
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198
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199 procedure Delete
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200 (Source : in out Wide_String;
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201 From : Positive;
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202 Through : Natural;
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203 Justify : Alignment := Left;
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204 Pad : Wide_Character := Wide_Space)
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205 is
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206 begin
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207 Move (Source => Delete (Source, From, Through),
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208 Target => Source,
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209 Justify => Justify,
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210 Pad => Pad);
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211 end Delete;
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212
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213 ----------
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214 -- Head --
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215 ----------
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216
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217 function Head
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218 (Source : Wide_String;
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219 Count : Natural;
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220 Pad : Wide_Character := Wide_Space) return Wide_String
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221 is
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222 Result : Wide_String (1 .. Count);
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223
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224 begin
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225 if Count <= Source'Length then
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226 Result := Source (Source'First .. Source'First + Count - 1);
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227
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228 else
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229 Result (1 .. Source'Length) := Source;
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230
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231 for J in Source'Length + 1 .. Count loop
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232 Result (J) := Pad;
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233 end loop;
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234 end if;
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235
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236 return Result;
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237 end Head;
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238
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239 procedure Head
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240 (Source : in out Wide_String;
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241 Count : Natural;
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242 Justify : Alignment := Left;
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243 Pad : Wide_Character := Ada.Strings.Wide_Space)
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244 is
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245 begin
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246 Move (Source => Head (Source, Count, Pad),
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247 Target => Source,
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248 Drop => Error,
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249 Justify => Justify,
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250 Pad => Pad);
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251 end Head;
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252
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253 ------------
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254 -- Insert --
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255 ------------
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256
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257 function Insert
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258 (Source : Wide_String;
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259 Before : Positive;
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260 New_Item : Wide_String) return Wide_String
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261 is
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262 Result : Wide_String (1 .. Source'Length + New_Item'Length);
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263
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264 begin
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265 if Before < Source'First or else Before > Source'Last + 1 then
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266 raise Index_Error;
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267 end if;
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268
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269 Result := Source (Source'First .. Before - 1) & New_Item &
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270 Source (Before .. Source'Last);
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271 return Result;
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272 end Insert;
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273
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274 procedure Insert
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275 (Source : in out Wide_String;
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276 Before : Positive;
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277 New_Item : Wide_String;
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278 Drop : Truncation := Error)
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279 is
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280 begin
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281 Move (Source => Insert (Source, Before, New_Item),
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282 Target => Source,
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283 Drop => Drop);
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284 end Insert;
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285
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286 ----------
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287 -- Move --
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288 ----------
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289
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290 procedure Move
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291 (Source : Wide_String;
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292 Target : out Wide_String;
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293 Drop : Truncation := Error;
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294 Justify : Alignment := Left;
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295 Pad : Wide_Character := Wide_Space)
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296 is
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297 Sfirst : constant Integer := Source'First;
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298 Slast : constant Integer := Source'Last;
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299 Slength : constant Integer := Source'Length;
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300
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301 Tfirst : constant Integer := Target'First;
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302 Tlast : constant Integer := Target'Last;
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303 Tlength : constant Integer := Target'Length;
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304
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305 function Is_Padding (Item : Wide_String) return Boolean;
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306 -- Determine if all characters in Item are pad characters
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307
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308 ----------------
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309 -- Is_Padding --
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310 ----------------
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311
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312 function Is_Padding (Item : Wide_String) return Boolean is
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313 begin
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314 for J in Item'Range loop
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315 if Item (J) /= Pad then
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316 return False;
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317 end if;
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318 end loop;
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319
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320 return True;
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321 end Is_Padding;
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322
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323 -- Start of processing for Move
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324
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325 begin
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326 if Slength = Tlength then
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327 Target := Source;
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328
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329 elsif Slength > Tlength then
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330 case Drop is
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331 when Left =>
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332 Target := Source (Slast - Tlength + 1 .. Slast);
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333
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334 when Right =>
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335 Target := Source (Sfirst .. Sfirst + Tlength - 1);
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336
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337 when Error =>
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338 case Justify is
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339 when Left =>
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340 if Is_Padding (Source (Sfirst + Tlength .. Slast)) then
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341 Target :=
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342 Source (Sfirst .. Sfirst + Target'Length - 1);
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343 else
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344 raise Length_Error;
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345 end if;
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346
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347 when Right =>
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348 if Is_Padding (Source (Sfirst .. Slast - Tlength)) then
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349 Target := Source (Slast - Tlength + 1 .. Slast);
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350 else
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351 raise Length_Error;
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352 end if;
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353
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354 when Center =>
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355 raise Length_Error;
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356 end case;
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357 end case;
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358
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359 -- Source'Length < Target'Length
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360
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361 else
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362 case Justify is
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363 when Left =>
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364 Target (Tfirst .. Tfirst + Slength - 1) := Source;
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365
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366 for J in Tfirst + Slength .. Tlast loop
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367 Target (J) := Pad;
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368 end loop;
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369
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370 when Right =>
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371 for J in Tfirst .. Tlast - Slength loop
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372 Target (J) := Pad;
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373 end loop;
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374
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375 Target (Tlast - Slength + 1 .. Tlast) := Source;
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376
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377 when Center =>
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378 declare
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379 Front_Pad : constant Integer := (Tlength - Slength) / 2;
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380 Tfirst_Fpad : constant Integer := Tfirst + Front_Pad;
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381
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382 begin
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383 for J in Tfirst .. Tfirst_Fpad - 1 loop
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384 Target (J) := Pad;
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385 end loop;
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386
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387 Target (Tfirst_Fpad .. Tfirst_Fpad + Slength - 1) := Source;
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388
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389 for J in Tfirst_Fpad + Slength .. Tlast loop
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390 Target (J) := Pad;
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391 end loop;
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392 end;
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393 end case;
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394 end if;
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395 end Move;
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396
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397 ---------------
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398 -- Overwrite --
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399 ---------------
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400
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401 function Overwrite
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402 (Source : Wide_String;
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403 Position : Positive;
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404 New_Item : Wide_String) return Wide_String
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405 is
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406 begin
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407 if Position not in Source'First .. Source'Last + 1 then
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408 raise Index_Error;
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409 else
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410 declare
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411 Result_Length : constant Natural :=
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412 Natural'Max
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413 (Source'Length,
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414 Position - Source'First + New_Item'Length);
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415
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416 Result : Wide_String (1 .. Result_Length);
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417
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418 begin
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419 Result := Source (Source'First .. Position - 1) & New_Item &
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420 Source (Position + New_Item'Length .. Source'Last);
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421 return Result;
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422 end;
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423 end if;
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424 end Overwrite;
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425
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426 procedure Overwrite
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427 (Source : in out Wide_String;
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428 Position : Positive;
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429 New_Item : Wide_String;
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430 Drop : Truncation := Right)
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431 is
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432 begin
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433 Move (Source => Overwrite (Source, Position, New_Item),
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434 Target => Source,
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435 Drop => Drop);
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436 end Overwrite;
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437
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438 -------------------
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439 -- Replace_Slice --
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440 -------------------
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441
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442 function Replace_Slice
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443 (Source : Wide_String;
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444 Low : Positive;
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445 High : Natural;
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446 By : Wide_String) return Wide_String
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447 is
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448 begin
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449 if Low > Source'Last + 1 or else High < Source'First - 1 then
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450 raise Index_Error;
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451 end if;
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452
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453 if High >= Low then
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454 declare
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455 Front_Len : constant Integer :=
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456 Integer'Max (0, Low - Source'First);
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457 -- Length of prefix of Source copied to result
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458
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459 Back_Len : constant Integer := Integer'Max (0, Source'Last - High);
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460 -- Length of suffix of Source copied to result
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461
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462 Result_Length : constant Integer :=
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463 Front_Len + By'Length + Back_Len;
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464 -- Length of result
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465
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466 Result : Wide_String (1 .. Result_Length);
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467
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468 begin
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469 Result (1 .. Front_Len) := Source (Source'First .. Low - 1);
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470 Result (Front_Len + 1 .. Front_Len + By'Length) := By;
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471 Result (Front_Len + By'Length + 1 .. Result'Length) :=
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472 Source (High + 1 .. Source'Last);
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473 return Result;
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474 end;
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475
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476 else
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477 return Insert (Source, Before => Low, New_Item => By);
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478 end if;
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479 end Replace_Slice;
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480
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481 procedure Replace_Slice
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482 (Source : in out Wide_String;
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483 Low : Positive;
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484 High : Natural;
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485 By : Wide_String;
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486 Drop : Truncation := Error;
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487 Justify : Alignment := Left;
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488 Pad : Wide_Character := Wide_Space)
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489 is
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490 begin
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491 Move (Replace_Slice (Source, Low, High, By), Source, Drop, Justify, Pad);
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492 end Replace_Slice;
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493
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494 ----------
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495 -- Tail --
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496 ----------
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497
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498 function Tail
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499 (Source : Wide_String;
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500 Count : Natural;
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501 Pad : Wide_Character := Wide_Space) return Wide_String
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502 is
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503 Result : Wide_String (1 .. Count);
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504
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505 begin
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506 if Count < Source'Length then
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507 Result := Source (Source'Last - Count + 1 .. Source'Last);
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508
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509 -- Pad on left
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510
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511 else
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512 for J in 1 .. Count - Source'Length loop
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513 Result (J) := Pad;
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514 end loop;
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515
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516 Result (Count - Source'Length + 1 .. Count) := Source;
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517 end if;
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518
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519 return Result;
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520 end Tail;
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521
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522 procedure Tail
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523 (Source : in out Wide_String;
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524 Count : Natural;
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525 Justify : Alignment := Left;
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526 Pad : Wide_Character := Ada.Strings.Wide_Space)
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527 is
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528 begin
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529 Move (Source => Tail (Source, Count, Pad),
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530 Target => Source,
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531 Drop => Error,
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532 Justify => Justify,
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533 Pad => Pad);
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534 end Tail;
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535
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536 ---------------
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537 -- Translate --
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538 ---------------
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539
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540 function Translate
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541 (Source : Wide_String;
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542 Mapping : Wide_Maps.Wide_Character_Mapping) return Wide_String
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543 is
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544 Result : Wide_String (1 .. Source'Length);
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545
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546 begin
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547 for J in Source'Range loop
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548 Result (J - (Source'First - 1)) := Value (Mapping, Source (J));
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549 end loop;
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550
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551 return Result;
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552 end Translate;
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553
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554 procedure Translate
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555 (Source : in out Wide_String;
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556 Mapping : Wide_Maps.Wide_Character_Mapping)
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557 is
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558 begin
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559 for J in Source'Range loop
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560 Source (J) := Value (Mapping, Source (J));
|
|
561 end loop;
|
|
562 end Translate;
|
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563
|
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564 function Translate
|
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565 (Source : Wide_String;
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566 Mapping : Wide_Maps.Wide_Character_Mapping_Function) return Wide_String
|
|
567 is
|
|
568 Result : Wide_String (1 .. Source'Length);
|
|
569
|
|
570 begin
|
|
571 for J in Source'Range loop
|
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572 Result (J - (Source'First - 1)) := Mapping (Source (J));
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|
573 end loop;
|
|
574
|
|
575 return Result;
|
|
576 end Translate;
|
|
577
|
|
578 procedure Translate
|
|
579 (Source : in out Wide_String;
|
|
580 Mapping : Wide_Maps.Wide_Character_Mapping_Function)
|
|
581 is
|
|
582 begin
|
|
583 for J in Source'Range loop
|
|
584 Source (J) := Mapping (Source (J));
|
|
585 end loop;
|
|
586 end Translate;
|
|
587
|
|
588 ----------
|
|
589 -- Trim --
|
|
590 ----------
|
|
591
|
|
592 function Trim
|
|
593 (Source : Wide_String;
|
|
594 Side : Trim_End) return Wide_String
|
|
595 is
|
|
596 Low : Natural := Source'First;
|
|
597 High : Natural := Source'Last;
|
|
598
|
|
599 begin
|
|
600 if Side = Left or else Side = Both then
|
|
601 while Low <= High and then Source (Low) = Wide_Space loop
|
|
602 Low := Low + 1;
|
|
603 end loop;
|
|
604 end if;
|
|
605
|
|
606 if Side = Right or else Side = Both then
|
|
607 while High >= Low and then Source (High) = Wide_Space loop
|
|
608 High := High - 1;
|
|
609 end loop;
|
|
610 end if;
|
|
611
|
|
612 -- All blanks case
|
|
613
|
|
614 if Low > High then
|
|
615 return "";
|
|
616
|
|
617 -- At least one non-blank
|
|
618
|
|
619 else
|
|
620 declare
|
|
621 Result : constant Wide_String (1 .. High - Low + 1) :=
|
|
622 Source (Low .. High);
|
|
623
|
|
624 begin
|
|
625 return Result;
|
|
626 end;
|
|
627 end if;
|
|
628 end Trim;
|
|
629
|
|
630 procedure Trim
|
|
631 (Source : in out Wide_String;
|
|
632 Side : Trim_End;
|
|
633 Justify : Alignment := Left;
|
|
634 Pad : Wide_Character := Wide_Space)
|
|
635 is
|
|
636 begin
|
|
637 Move (Source => Trim (Source, Side),
|
|
638 Target => Source,
|
|
639 Justify => Justify,
|
|
640 Pad => Pad);
|
|
641 end Trim;
|
|
642
|
|
643 function Trim
|
|
644 (Source : Wide_String;
|
|
645 Left : Wide_Maps.Wide_Character_Set;
|
|
646 Right : Wide_Maps.Wide_Character_Set) return Wide_String
|
|
647 is
|
|
648 Low : Natural := Source'First;
|
|
649 High : Natural := Source'Last;
|
|
650
|
|
651 begin
|
|
652 while Low <= High and then Is_In (Source (Low), Left) loop
|
|
653 Low := Low + 1;
|
|
654 end loop;
|
|
655
|
|
656 while High >= Low and then Is_In (Source (High), Right) loop
|
|
657 High := High - 1;
|
|
658 end loop;
|
|
659
|
|
660 -- Case where source comprises only characters in the sets
|
|
661
|
|
662 if Low > High then
|
|
663 return "";
|
|
664 else
|
|
665 declare
|
|
666 subtype WS is Wide_String (1 .. High - Low + 1);
|
|
667
|
|
668 begin
|
|
669 return WS (Source (Low .. High));
|
|
670 end;
|
|
671 end if;
|
|
672 end Trim;
|
|
673
|
|
674 procedure Trim
|
|
675 (Source : in out Wide_String;
|
|
676 Left : Wide_Maps.Wide_Character_Set;
|
|
677 Right : Wide_Maps.Wide_Character_Set;
|
|
678 Justify : Alignment := Strings.Left;
|
|
679 Pad : Wide_Character := Wide_Space)
|
|
680 is
|
|
681 begin
|
|
682 Move (Source => Trim (Source, Left, Right),
|
|
683 Target => Source,
|
|
684 Justify => Justify,
|
|
685 Pad => Pad);
|
|
686 end Trim;
|
|
687
|
|
688 end Ada.Strings.Wide_Fixed;
|