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1 281 jeremybenn
------------------------------------------------------------------------------
2
--                                                                          --
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--                         GNAT LIBRARY COMPONENTS                          --
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--                                                                          --
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--    A D A . C O N T A I N E R S . I N D E F I N I T E _ V E C T O R S     --
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--                                                                          --
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--                                 S p e c                                  --
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--                                                                          --
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--          Copyright (C) 2004-2008, Free Software Foundation, Inc.         --
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--                                                                          --
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-- This specification is derived from the Ada Reference Manual for use with --
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-- GNAT. The copyright notice above, and the license provisions that follow --
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-- apply solely to the  contents of the part following the private keyword. --
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--                                                                          --
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-- GNAT is free software;  you can  redistribute it  and/or modify it under --
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-- terms of the  GNU General Public License as published  by the Free Soft- --
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-- ware  Foundation;  either version 3,  or (at your option) any later ver- --
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-- sion.  GNAT is distributed in the hope that it will be useful, but WITH- --
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-- OUT ANY WARRANTY;  without even the  implied warranty of MERCHANTABILITY --
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-- or FITNESS FOR A PARTICULAR PURPOSE.                                     --
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--                                                                          --
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-- As a special exception under Section 7 of GPL version 3, you are granted --
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-- additional permissions described in the GCC Runtime Library Exception,   --
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-- version 3.1, as published by the Free Software Foundation.               --
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--                                                                          --
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-- You should have received a copy of the GNU General Public License and    --
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-- a copy of the GCC Runtime Library Exception along with this program;     --
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-- see the files COPYING3 and COPYING.RUNTIME respectively.  If not, see    --
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-- <http://www.gnu.org/licenses/>.                                          --
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--                                                                          --
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-- This unit was originally developed by Matthew J Heaney.                  --
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------------------------------------------------------------------------------
33
 
34
private with Ada.Finalization;
35
private with Ada.Streams;
36
 
37
generic
38
   type Index_Type is range <>;
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   type Element_Type (<>) is private;
40
 
41
   with function "=" (Left, Right : Element_Type) return Boolean is <>;
42
 
43
package Ada.Containers.Indefinite_Vectors is
44
   pragma Preelaborate;
45
   pragma Remote_Types;
46
 
47
   subtype Extended_Index is Index_Type'Base
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     range Index_Type'First - 1 ..
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           Index_Type'Min (Index_Type'Base'Last - 1, Index_Type'Last) + 1;
50
 
51
   No_Index : constant Extended_Index := Extended_Index'First;
52
 
53
   type Vector is tagged private;
54
   pragma Preelaborable_Initialization (Vector);
55
 
56
   type Cursor is private;
57
   pragma Preelaborable_Initialization (Cursor);
58
 
59
   Empty_Vector : constant Vector;
60
 
61
   No_Element : constant Cursor;
62
 
63
   overriding function "=" (Left, Right : Vector) return Boolean;
64
 
65
   function To_Vector (Length : Count_Type) return Vector;
66
 
67
   function To_Vector
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     (New_Item : Element_Type;
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      Length   : Count_Type) return Vector;
70
 
71
   function "&" (Left, Right : Vector) return Vector;
72
 
73
   function "&" (Left : Vector; Right : Element_Type) return Vector;
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75
   function "&" (Left : Element_Type; Right : Vector) return Vector;
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77
   function "&" (Left, Right : Element_Type) return Vector;
78
 
79
   function Capacity (Container : Vector) return Count_Type;
80
 
81
   procedure Reserve_Capacity
82
     (Container : in out Vector;
83
      Capacity  : Count_Type);
84
 
85
   function Length (Container : Vector) return Count_Type;
86
 
87
   procedure Set_Length
88
     (Container : in out Vector;
89
      Length    : Count_Type);
90
 
91
   function Is_Empty (Container : Vector) return Boolean;
92
 
93
   procedure Clear (Container : in out Vector);
94
 
95
   function To_Cursor
96
     (Container : Vector;
97
      Index     : Extended_Index) return Cursor;
98
 
99
   function To_Index (Position : Cursor) return Extended_Index;
100
 
101
   function Element
102
     (Container : Vector;
103
      Index     : Index_Type) return Element_Type;
104
 
105
   function Element (Position : Cursor) return Element_Type;
106
 
107
   procedure Replace_Element
108
     (Container : in out Vector;
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      Index     : Index_Type;
110
      New_Item  : Element_Type);
111
 
112
   procedure Replace_Element
113
     (Container : in out Vector;
114
      Position  : Cursor;
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      New_Item  : Element_Type);
116
 
117
   procedure Query_Element
118
     (Container : Vector;
119
      Index     : Index_Type;
120
      Process   : not null access procedure (Element : Element_Type));
121
 
122
   procedure Query_Element
123
     (Position : Cursor;
124
      Process  : not null access procedure (Element : Element_Type));
125
 
126
   procedure Update_Element
127
     (Container : in out Vector;
128
      Index     : Index_Type;
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      Process   : not null access procedure (Element : in out Element_Type));
130
 
131
   procedure Update_Element
132
     (Container : in out Vector;
133
      Position  : Cursor;
134
      Process   : not null access procedure (Element : in out Element_Type));
135
 
136
   procedure Move (Target : in out Vector; Source : in out Vector);
137
 
138
   procedure Insert
139
     (Container : in out Vector;
140
      Before    : Extended_Index;
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      New_Item  : Vector);
142
 
143
   procedure Insert
144
     (Container : in out Vector;
145
      Before    : Cursor;
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      New_Item  : Vector);
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148
   procedure Insert
149
     (Container : in out Vector;
150
      Before    : Cursor;
151
      New_Item  : Vector;
152
      Position  : out Cursor);
153
 
154
   procedure Insert
155
     (Container : in out Vector;
156
      Before    : Extended_Index;
157
      New_Item  : Element_Type;
158
      Count     : Count_Type := 1);
159
 
160
   procedure Insert
161
     (Container : in out Vector;
162
      Before    : Cursor;
163
      New_Item  : Element_Type;
164
      Count     : Count_Type := 1);
165
 
166
   procedure Insert
167
     (Container : in out Vector;
168
      Before    : Cursor;
169
      New_Item  : Element_Type;
170
      Position  : out Cursor;
171
      Count     : Count_Type := 1);
172
 
173
   procedure Prepend
174
     (Container : in out Vector;
175
      New_Item  : Vector);
176
 
177
   procedure Prepend
178
     (Container : in out Vector;
179
      New_Item  : Element_Type;
180
      Count     : Count_Type := 1);
181
 
182
   procedure Append
183
     (Container : in out Vector;
184
      New_Item  : Vector);
185
 
186
   procedure Append
187
     (Container : in out Vector;
188
      New_Item  : Element_Type;
189
      Count     : Count_Type := 1);
190
 
191
   procedure Insert_Space
192
     (Container : in out Vector;
193
      Before    : Extended_Index;
194
      Count     : Count_Type := 1);
195
 
196
   procedure Insert_Space
197
     (Container : in out Vector;
198
      Before    : Cursor;
199
      Position  : out Cursor;
200
      Count     : Count_Type := 1);
201
 
202
   procedure Delete
203
     (Container : in out Vector;
204
      Index     : Extended_Index;
205
      Count     : Count_Type := 1);
206
 
207
   procedure Delete
208
     (Container : in out Vector;
209
      Position  : in out Cursor;
210
      Count     : Count_Type := 1);
211
 
212
   procedure Delete_First
213
     (Container : in out Vector;
214
      Count     : Count_Type := 1);
215
 
216
   procedure Delete_Last
217
     (Container : in out Vector;
218
      Count     : Count_Type := 1);
219
 
220
   procedure Reverse_Elements (Container : in out Vector);
221
 
222
   procedure Swap (Container : in out Vector; I, J : Index_Type);
223
 
224
   procedure Swap (Container : in out Vector; I, J : Cursor);
225
 
226
   function First_Index (Container : Vector) return Index_Type;
227
 
228
   function First (Container : Vector) return Cursor;
229
 
230
   function First_Element (Container : Vector) return Element_Type;
231
 
232
   function Last_Index (Container : Vector) return Extended_Index;
233
 
234
   function Last (Container : Vector) return Cursor;
235
 
236
   function Last_Element (Container : Vector) return Element_Type;
237
 
238
   function Next (Position : Cursor) return Cursor;
239
 
240
   procedure Next (Position : in out Cursor);
241
 
242
   function Previous (Position : Cursor) return Cursor;
243
 
244
   procedure Previous (Position : in out Cursor);
245
 
246
   function Find_Index
247
     (Container : Vector;
248
      Item      : Element_Type;
249
      Index     : Index_Type := Index_Type'First) return Extended_Index;
250
 
251
   function Find
252
     (Container : Vector;
253
      Item      : Element_Type;
254
      Position  : Cursor := No_Element) return Cursor;
255
 
256
   function Reverse_Find_Index
257
     (Container : Vector;
258
      Item      : Element_Type;
259
      Index     : Index_Type := Index_Type'Last) return Extended_Index;
260
 
261
   function Reverse_Find
262
     (Container : Vector;
263
      Item      : Element_Type;
264
      Position  : Cursor := No_Element) return Cursor;
265
 
266
   function Contains
267
     (Container : Vector;
268
      Item      : Element_Type) return Boolean;
269
 
270
   function Has_Element (Position : Cursor) return Boolean;
271
 
272
   procedure Iterate
273
     (Container : Vector;
274
      Process   : not null access procedure (Position : Cursor));
275
 
276
   procedure Reverse_Iterate
277
     (Container : Vector;
278
      Process   : not null access procedure (Position : Cursor));
279
 
280
   generic
281
      with function "<" (Left, Right : Element_Type) return Boolean is <>;
282
   package Generic_Sorting is
283
 
284
      function Is_Sorted (Container : Vector) return Boolean;
285
 
286
      procedure Sort (Container : in out Vector);
287
 
288
      procedure Merge (Target : in out Vector; Source : in out Vector);
289
 
290
   end Generic_Sorting;
291
 
292
private
293
 
294
   pragma Inline (First_Index);
295
   pragma Inline (Last_Index);
296
   pragma Inline (Element);
297
   pragma Inline (First_Element);
298
   pragma Inline (Last_Element);
299
   pragma Inline (Query_Element);
300
   pragma Inline (Update_Element);
301
   pragma Inline (Replace_Element);
302
   pragma Inline (Contains);
303
   pragma Inline (Next);
304
   pragma Inline (Previous);
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306
   type Element_Access is access Element_Type;
307
 
308
   type Elements_Array is array (Index_Type range <>) of Element_Access;
309
   function "=" (L, R : Elements_Array) return Boolean is abstract;
310
 
311
   type Elements_Type (Last : Index_Type) is limited record
312
      EA : Elements_Array (Index_Type'First .. Last);
313
   end record;
314
 
315
   type Elements_Access is access Elements_Type;
316
 
317
   use Ada.Finalization;
318
 
319
   type Vector is new Controlled with record
320
      Elements : Elements_Access;
321
      Last     : Extended_Index := No_Index;
322
      Busy     : Natural := 0;
323
      Lock     : Natural := 0;
324
   end record;
325
 
326
   overriding
327
   procedure Adjust (Container : in out Vector);
328
 
329
   overriding
330
   procedure Finalize (Container : in out Vector);
331
 
332
   use Ada.Streams;
333
 
334
   procedure Write
335
     (Stream    : not null access Root_Stream_Type'Class;
336
      Container : Vector);
337
 
338
   for Vector'Write use Write;
339
 
340
   procedure Read
341
     (Stream    : not null access Root_Stream_Type'Class;
342
      Container : out Vector);
343
 
344
   for Vector'Read use Read;
345
 
346
   type Vector_Access is access constant Vector;
347
   for Vector_Access'Storage_Size use 0;
348
 
349
   type Cursor is record
350
      Container : Vector_Access;
351
      Index     : Index_Type := Index_Type'First;
352
   end record;
353
 
354
   procedure Write
355
     (Stream   : not null access Root_Stream_Type'Class;
356
      Position : Cursor);
357
 
358
   for Cursor'Write use Write;
359
 
360
   procedure Read
361
     (Stream   : not null access Root_Stream_Type'Class;
362
      Position : out Cursor);
363
 
364
   for Cursor'Read use Read;
365
 
366
   Empty_Vector : constant Vector := (Controlled with null, No_Index, 0, 0);
367
 
368
   No_Element : constant Cursor := Cursor'(null, Index_Type'First);
369
 
370
end Ada.Containers.Indefinite_Vectors;

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