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1 706 jeremybenn
------------------------------------------------------------------------------
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--                                                                          --
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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 . B O U N D E D _ O R D E R E D _ S E T S  --
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--                                                                          --
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--                                 S p e c                                  --
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--                                                                          --
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--          Copyright (C) 2004-2012, 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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------------------------------------------------------------------------------
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with Ada.Iterator_Interfaces;
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36
private with Ada.Containers.Red_Black_Trees;
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private with Ada.Streams;
38
 
39
generic
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   type Element_Type is private;
41
 
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   with function "<" (Left, Right : Element_Type) return Boolean is <>;
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   with function "=" (Left, Right : Element_Type) return Boolean is <>;
44
 
45
package Ada.Containers.Bounded_Ordered_Sets is
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   pragma Pure;
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   pragma Remote_Types;
48
 
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   function Equivalent_Elements (Left, Right : Element_Type) return Boolean;
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   type Set (Capacity : Count_Type) is tagged private
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   with Constant_Indexing => Constant_Reference,
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        Default_Iterator  => Iterate,
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        Iterator_Element  => Element_Type;
55
 
56
   pragma Preelaborable_Initialization (Set);
57
 
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   type Cursor is private;
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   pragma Preelaborable_Initialization (Cursor);
60
 
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   Empty_Set : constant Set;
62
 
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   No_Element : constant Cursor;
64
 
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   function Has_Element (Position : Cursor) return Boolean;
66
 
67
   package Set_Iterator_Interfaces is new
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     Ada.Iterator_Interfaces (Cursor, Has_Element);
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70
   function "=" (Left, Right : Set) return Boolean;
71
 
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   function Equivalent_Sets (Left, Right : Set) return Boolean;
73
 
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   function To_Set (New_Item : Element_Type) return Set;
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   function Length (Container : Set) return Count_Type;
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   function Is_Empty (Container : Set) return Boolean;
79
 
80
   procedure Clear (Container : in out Set);
81
 
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   function Element (Position : Cursor) return Element_Type;
83
 
84
   procedure Replace_Element
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     (Container : in out Set;
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      Position  : Cursor;
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      New_Item  : Element_Type);
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89
   procedure Query_Element
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     (Position : Cursor;
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      Process  : not null access procedure (Element : Element_Type));
92
 
93
   type Constant_Reference_Type
94
      (Element : not null access constant Element_Type) is
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   private
96
   with
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      Implicit_Dereference => Element;
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   function Constant_Reference
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     (Container : aliased Set;
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      Position  : Cursor) return Constant_Reference_Type;
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   procedure Assign (Target : in out Set; Source : Set);
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   function Copy (Source : Set; Capacity : Count_Type := 0) return Set;
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107
   procedure Move (Target : in out Set; Source : in out Set);
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   procedure Insert
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     (Container : in out Set;
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      New_Item  : Element_Type;
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      Position  : out Cursor;
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      Inserted  : out Boolean);
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   procedure Insert
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     (Container : in out Set;
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      New_Item  : Element_Type);
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119
   procedure Include
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     (Container : in out Set;
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      New_Item  : Element_Type);
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   procedure Replace
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     (Container : in out Set;
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      New_Item  : Element_Type);
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   procedure Exclude
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     (Container : in out Set;
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      Item      : Element_Type);
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   procedure Delete
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     (Container : in out Set;
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      Item      : Element_Type);
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   procedure Delete
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     (Container : in out Set;
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      Position  : in out Cursor);
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139
   procedure Delete_First (Container : in out Set);
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   procedure Delete_Last (Container : in out Set);
142
 
143
   procedure Union (Target : in out Set; Source : Set);
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145
   function Union (Left, Right : Set) return Set;
146
 
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   function "or" (Left, Right : Set) return Set renames Union;
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   procedure Intersection (Target : in out Set; Source : Set);
150
 
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   function Intersection (Left, Right : Set) return Set;
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153
   function "and" (Left, Right : Set) return Set renames Intersection;
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155
   procedure Difference (Target : in out Set; Source : Set);
156
 
157
   function Difference (Left, Right : Set) return Set;
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159
   function "-" (Left, Right : Set) return Set renames Difference;
160
 
161
   procedure Symmetric_Difference (Target : in out Set; Source : Set);
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163
   function Symmetric_Difference (Left, Right : Set) return Set;
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165
   function "xor" (Left, Right : Set) return Set renames Symmetric_Difference;
166
 
167
   function Overlap (Left, Right : Set) return Boolean;
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169
   function Is_Subset (Subset : Set; Of_Set : Set) return Boolean;
170
 
171
   function First (Container : Set) return Cursor;
172
 
173
   function First_Element (Container : Set) return Element_Type;
174
 
175
   function Last (Container : Set) return Cursor;
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177
   function Last_Element (Container : Set) return Element_Type;
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179
   function Next (Position : Cursor) return Cursor;
180
 
181
   procedure Next (Position : in out Cursor);
182
 
183
   function Previous (Position : Cursor) return Cursor;
184
 
185
   procedure Previous (Position : in out Cursor);
186
 
187
   function Find (Container : Set; Item : Element_Type) return Cursor;
188
 
189
   function Floor (Container : Set; Item : Element_Type) return Cursor;
190
 
191
   function Ceiling (Container : Set; Item : Element_Type) return Cursor;
192
 
193
   function Contains (Container : Set; Item : Element_Type) return Boolean;
194
 
195
   function "<" (Left, Right : Cursor) return Boolean;
196
 
197
   function ">" (Left, Right : Cursor) return Boolean;
198
 
199
   function "<" (Left : Cursor; Right : Element_Type) return Boolean;
200
 
201
   function ">" (Left : Cursor; Right : Element_Type) return Boolean;
202
 
203
   function "<" (Left : Element_Type; Right : Cursor) return Boolean;
204
 
205
   function ">" (Left : Element_Type; Right : Cursor) return Boolean;
206
 
207
   procedure Iterate
208
     (Container : Set;
209
      Process   : not null access procedure (Position : Cursor));
210
 
211
   procedure Reverse_Iterate
212
     (Container : Set;
213
      Process   : not null access procedure (Position : Cursor));
214
 
215
   function Iterate
216
     (Container : Set)
217
      return Set_Iterator_Interfaces.Reversible_Iterator'class;
218
 
219
   function Iterate
220
     (Container : Set;
221
      Start     : Cursor)
222
      return Set_Iterator_Interfaces.Reversible_Iterator'class;
223
 
224
   generic
225
      type Key_Type (<>) is private;
226
 
227
      with function Key (Element : Element_Type) return Key_Type;
228
 
229
      with function "<" (Left, Right : Key_Type) return Boolean is <>;
230
 
231
   package Generic_Keys is
232
 
233
      function Equivalent_Keys (Left, Right : Key_Type) return Boolean;
234
 
235
      function Key (Position : Cursor) return Key_Type;
236
 
237
      function Element (Container : Set; Key : Key_Type) return Element_Type;
238
 
239
      procedure Replace
240
        (Container : in out Set;
241
         Key       : Key_Type;
242
         New_Item  : Element_Type);
243
 
244
      procedure Exclude (Container : in out Set; Key : Key_Type);
245
 
246
      procedure Delete (Container : in out Set; Key : Key_Type);
247
 
248
      function Find (Container : Set; Key : Key_Type) return Cursor;
249
 
250
      function Floor (Container : Set; Key : Key_Type) return Cursor;
251
 
252
      function Ceiling (Container : Set; Key : Key_Type) return Cursor;
253
 
254
      function Contains (Container : Set; Key : Key_Type) return Boolean;
255
 
256
      procedure Update_Element_Preserving_Key
257
        (Container : in out Set;
258
         Position  : Cursor;
259
         Process   : not null access
260
                       procedure (Element : in out Element_Type));
261
 
262
      type Reference_Type (Element : not null access Element_Type) is private
263
      with
264
         Implicit_Dereference => Element;
265
 
266
      function Reference_Preserving_Key
267
        (Container : aliased in out Set;
268
         Position  : Cursor) return Reference_Type;
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270
      function Constant_Reference
271
        (Container : aliased Set;
272
         Key       : Key_Type) return Constant_Reference_Type;
273
 
274
      function Reference_Preserving_Key
275
        (Container : aliased in out Set;
276
         Key       : Key_Type) return Reference_Type;
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278
   private
279
      type Reference_Type
280
         (Element : not null access Element_Type) is null record;
281
 
282
      use Ada.Streams;
283
 
284
      procedure Read
285
        (Stream : not null access Root_Stream_Type'Class;
286
         Item   : out Reference_Type);
287
 
288
      for Reference_Type'Read use Read;
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290
      procedure Write
291
        (Stream : not null access Root_Stream_Type'Class;
292
         Item   : Reference_Type);
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294
      for Reference_Type'Write use Write;
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296
   end Generic_Keys;
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298
private
299
 
300
   pragma Inline (Next);
301
   pragma Inline (Previous);
302
 
303
   type Node_Type is record
304
      Parent  : Count_Type;
305
      Left    : Count_Type;
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      Right   : Count_Type;
307
      Color   : Red_Black_Trees.Color_Type := Red_Black_Trees.Red;
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      Element : aliased Element_Type;
309
   end record;
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311
   package Tree_Types is
312
     new Red_Black_Trees.Generic_Bounded_Tree_Types (Node_Type);
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314
   type Set (Capacity : Count_Type) is
315
     new Tree_Types.Tree_Type (Capacity) with null record;
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317
   use Tree_Types;
318
   use Ada.Streams;
319
 
320
   procedure Write
321
     (Stream    : not null access Root_Stream_Type'Class;
322
      Container : Set);
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324
   for Set'Write use Write;
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326
   procedure Read
327
     (Stream    : not null access Root_Stream_Type'Class;
328
      Container : out Set);
329
 
330
   for Set'Read use Read;
331
 
332
   type Set_Access is access all Set;
333
   for Set_Access'Storage_Size use 0;
334
 
335
   --  Note: If a Cursor object has no explicit initialization expression,
336
   --  it must default initialize to the same value as constant No_Element.
337
   --  The Node component of type Cursor has scalar type Count_Type, so it
338
   --  requires an explicit initialization expression of its own declaration,
339
   --  in order for objects of record type Cursor to properly initialize.
340
 
341
   type Cursor is record
342
      Container : Set_Access;
343
      Node      : Count_Type := 0;
344
   end record;
345
 
346
   procedure Write
347
     (Stream : not null access Root_Stream_Type'Class;
348
      Item   : Cursor);
349
 
350
   for Cursor'Write use Write;
351
 
352
   procedure Read
353
     (Stream : not null access Root_Stream_Type'Class;
354
      Item   : out Cursor);
355
 
356
   for Cursor'Read use Read;
357
 
358
   type Constant_Reference_Type
359
      (Element : not null access constant Element_Type) is null record;
360
 
361
   procedure Read
362
     (Stream : not null access Root_Stream_Type'Class;
363
      Item   : out Constant_Reference_Type);
364
 
365
   for Constant_Reference_Type'Read use Read;
366
 
367
   procedure Write
368
     (Stream : not null access Root_Stream_Type'Class;
369
      Item   : Constant_Reference_Type);
370
 
371
   for Constant_Reference_Type'Write use Write;
372
 
373
   Empty_Set : constant Set := Set'(Tree_Type with Capacity => 0);
374
 
375
   No_Element : constant Cursor := Cursor'(null, 0);
376
 
377
end Ada.Containers.Bounded_Ordered_Sets;

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