6031f544dd
2015-10-23 Steve Baird <baird@adacore.com> * a-cbdlli.ads, a-cbhama.ads, a-cbhase.ads, a-cbmutr.ads, a-cborma.ads, a-cborse.ads, a-cbprqu.ads, a-cbsyqu.ads, a-cdlili.ads, a-cfdlli.ads, a-cfhama.ads, a-cfhase.ads, a-cfinve.ads, a-cforma.ads, a-cforse.ads, a-cidlli.ads, a-cihama.ads, a-cihase.ads, a-cimutr.ads, a-ciorma.ads, a-ciormu.ads, a-ciorse.ads, a-coboho.ads, a-cobove.ads, a-cofove.ads, a-cohama.ads, a-cohase.ads, a-coinho.ads, a-coinho-shared.ads, a-coinve.ads, a-comutr.ads, a-conhel.ads, a-convec.ads, a-coorma.ads, a-coormu.ads, a-coorse.ads, a-cuprqu.ads, a-cusyqu.ads, a-rbtgbo.ads: Add spec Annotate pragmas. * a-cbdlli.adb, a-cbhama.adb, a-cbhase.adb, a-cbmutr.adb, a-cborma.adb, a-cborse.adb, a-cbprqu.adb, a-cbsyqu.adb, a-cdlili.adb, a-cfdlli.adb, a-cfhama.adb, a-cfhase.adb, a-cfinve.adb, a-cforma.adb, a-cforse.adb, a-cidlli.adb, a-cihama.adb, a-cihase.adb, a-cimutr.adb, a-ciorma.adb, a-ciormu.adb, a-ciorse.adb, a-coboho.adb, a-cobove.adb, a-cofove.adb, a-cohama.adb, a-cohase.adb, a-coinho.adb, a-coinho-shared.adb, a-coinve.adb, a-comutr.adb, a-conhel.adb, a-convec.adb, a-coorma.adb, a-coormu.adb, a-coorse.adb, a-cuprqu.adb, a-cusyqu.adb, a-rbtgbo.adb: Remove body Annotate pragmas. 2015-10-23 Vincent Celier <celier@adacore.com> * gnatname.adb: When gnatname is invoked with a project file, specified with switch -P, if gprname is available, gnatname will invoke gprname, with the target if it is a cross gnatname. 2015-10-23 Arnaud Charlet <charlet@adacore.com> * exp_ch4.adb: Fix typo. * exp_ch6.adb: Update comment. * exp_attr.adb (Expand_Min_Max_Attribute): Simplify expansion. * exp_aggr.adb (Convert_To_Positional): Only convert to positional when generating C in case of an object declaration. (In_Object_Declaration): New. (Late_Expansion): Adapt to trees generated by Modify_Tree_For_C. * sinfo.ads: Update documentation. 2015-10-23 Joel Brobecker <brobecker@adacore.com brobecker> * sigtramp.h (struct sigcontext, struct ucontext): Remove declarations, and replace them by include of corresponding header file. From-SVN: r229243
468 lines
14 KiB
Ada
468 lines
14 KiB
Ada
------------------------------------------------------------------------------
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-- --
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-- GNAT LIBRARY COMPONENTS --
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-- --
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-- ADA.CONTAINERS.INDEFINITE_ORDERED_SETS --
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-- --
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-- S p e c --
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-- --
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-- Copyright (C) 2004-2015, 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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with Ada.Containers.Helpers;
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private with Ada.Containers.Red_Black_Trees;
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private with Ada.Finalization;
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private with Ada.Streams;
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generic
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type Element_Type (<>) is private;
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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 <>;
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package Ada.Containers.Indefinite_Ordered_Sets is
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pragma Annotate (CodePeer, Skip_Analysis);
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pragma Preelaborate;
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pragma Remote_Types;
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function Equivalent_Elements (Left, Right : Element_Type) return Boolean;
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type Set is tagged private with
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Constant_Indexing => Constant_Reference,
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Default_Iterator => Iterate,
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Iterator_Element => Element_Type;
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pragma Preelaborable_Initialization (Set);
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type Cursor is private;
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pragma Preelaborable_Initialization (Cursor);
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Empty_Set : constant Set;
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No_Element : constant Cursor;
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function Has_Element (Position : Cursor) return Boolean;
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package Set_Iterator_Interfaces is new
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Ada.Iterator_Interfaces (Cursor, Has_Element);
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function "=" (Left, Right : Set) return Boolean;
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function Equivalent_Sets (Left, Right : Set) return Boolean;
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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;
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procedure Clear (Container : in out Set);
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function Element (Position : Cursor) return Element_Type;
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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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procedure Query_Element
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(Position : Cursor;
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Process : not null access procedure (Element : Element_Type));
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type Constant_Reference_Type
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(Element : not null access constant Element_Type) is
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private 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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pragma Inline (Constant_Reference);
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procedure Assign (Target : in out Set; Source : Set);
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function Copy (Source : Set) return Set;
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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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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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procedure Delete_First (Container : in out Set);
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procedure Delete_Last (Container : in out Set);
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procedure Union (Target : in out Set; Source : Set);
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function Union (Left, Right : Set) return Set;
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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);
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function Intersection (Left, Right : Set) return Set;
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function "and" (Left, Right : Set) return Set renames Intersection;
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procedure Difference (Target : in out Set; Source : Set);
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function Difference (Left, Right : Set) return Set;
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function "-" (Left, Right : Set) return Set renames Difference;
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procedure Symmetric_Difference (Target : in out Set; Source : Set);
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function Symmetric_Difference (Left, Right : Set) return Set;
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function "xor" (Left, Right : Set) return Set renames Symmetric_Difference;
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function Overlap (Left, Right : Set) return Boolean;
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function Is_Subset (Subset : Set; Of_Set : Set) return Boolean;
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function First (Container : Set) return Cursor;
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function First_Element (Container : Set) return Element_Type;
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function Last (Container : Set) return Cursor;
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function Last_Element (Container : Set) return Element_Type;
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function Next (Position : Cursor) return Cursor;
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procedure Next (Position : in out Cursor);
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function Previous (Position : Cursor) return Cursor;
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procedure Previous (Position : in out Cursor);
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function Find
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(Container : Set;
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Item : Element_Type) return Cursor;
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function Floor
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(Container : Set;
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Item : Element_Type) return Cursor;
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function Ceiling
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(Container : Set;
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Item : Element_Type) return Cursor;
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function Contains
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(Container : Set;
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Item : Element_Type) return Boolean;
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function "<" (Left, Right : Cursor) return Boolean;
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function ">" (Left, Right : Cursor) return Boolean;
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function "<" (Left : Cursor; Right : Element_Type) return Boolean;
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function ">" (Left : Cursor; Right : Element_Type) return Boolean;
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function "<" (Left : Element_Type; Right : Cursor) return Boolean;
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function ">" (Left : Element_Type; Right : Cursor) return Boolean;
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procedure Iterate
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(Container : Set;
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Process : not null access procedure (Position : Cursor));
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procedure Reverse_Iterate
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(Container : Set;
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Process : not null access procedure (Position : Cursor));
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function Iterate
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(Container : Set)
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return Set_Iterator_Interfaces.Reversible_Iterator'class;
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function Iterate
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(Container : Set;
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Start : Cursor)
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return Set_Iterator_Interfaces.Reversible_Iterator'class;
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generic
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type Key_Type (<>) is private;
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with function Key (Element : Element_Type) return Key_Type;
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with function "<" (Left, Right : Key_Type) return Boolean is <>;
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package Generic_Keys is
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function Equivalent_Keys (Left, Right : Key_Type) return Boolean;
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function Key (Position : Cursor) return Key_Type;
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function Element (Container : Set; Key : Key_Type) return Element_Type;
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procedure Replace
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(Container : in out Set;
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Key : Key_Type;
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New_Item : Element_Type);
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procedure Exclude (Container : in out Set; Key : Key_Type);
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procedure Delete (Container : in out Set; Key : Key_Type);
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function Find
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(Container : Set;
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Key : Key_Type) return Cursor;
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function Floor
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(Container : Set;
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Key : Key_Type) return Cursor;
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function Ceiling
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(Container : Set;
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Key : Key_Type) return Cursor;
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function Contains
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(Container : Set;
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Key : Key_Type) return Boolean;
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procedure Update_Element_Preserving_Key
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(Container : in out Set;
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Position : Cursor;
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Process : not null access
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procedure (Element : in out Element_Type));
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type Reference_Type (Element : not null access Element_Type) is private
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with
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Implicit_Dereference => Element;
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function Reference_Preserving_Key
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(Container : aliased in out Set;
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Position : Cursor) return Reference_Type;
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function Constant_Reference
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(Container : aliased Set;
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Key : Key_Type) return Constant_Reference_Type;
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function Reference_Preserving_Key
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(Container : aliased in out Set;
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Key : Key_Type) return Reference_Type;
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private
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type Set_Access is access all Set;
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for Set_Access'Storage_Size use 0;
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type Key_Access is access all Key_Type;
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package Impl is new Helpers.Generic_Implementation;
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type Reference_Control_Type is
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new Impl.Reference_Control_Type with
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record
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Container : Set_Access;
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Pos : Cursor;
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Old_Key : Key_Access;
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end record;
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overriding procedure Finalize (Control : in out Reference_Control_Type);
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pragma Inline (Finalize);
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type Reference_Type (Element : not null access Element_Type) is record
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Control : Reference_Control_Type;
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end record;
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use Ada.Streams;
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procedure Write
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(Stream : not null access Root_Stream_Type'Class;
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Item : Reference_Type);
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for Reference_Type'Write use Write;
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procedure Read
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(Stream : not null access Root_Stream_Type'Class;
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Item : out Reference_Type);
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for Reference_Type'Read use Read;
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end Generic_Keys;
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private
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pragma Inline (Next);
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pragma Inline (Previous);
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type Node_Type;
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type Node_Access is access Node_Type;
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type Element_Access is access all Element_Type;
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type Node_Type is limited record
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Parent : Node_Access;
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Left : Node_Access;
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Right : Node_Access;
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Color : Red_Black_Trees.Color_Type := Red_Black_Trees.Red;
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Element : Element_Access;
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end record;
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package Tree_Types is new Red_Black_Trees.Generic_Tree_Types
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(Node_Type,
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Node_Access);
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type Set is new Ada.Finalization.Controlled with record
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Tree : Tree_Types.Tree_Type;
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end record;
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overriding procedure Adjust (Container : in out Set);
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overriding procedure Finalize (Container : in out Set) renames Clear;
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use Red_Black_Trees;
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use Tree_Types, Tree_Types.Implementation;
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use Ada.Finalization;
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use Ada.Streams;
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procedure Write
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(Stream : not null access Root_Stream_Type'Class;
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Container : Set);
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for Set'Write use Write;
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procedure Read
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(Stream : not null access Root_Stream_Type'Class;
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Container : out Set);
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for Set'Read use Read;
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type Set_Access is access all Set;
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for Set_Access'Storage_Size use 0;
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type Cursor is record
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Container : Set_Access;
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Node : Node_Access;
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end record;
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procedure Write
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(Stream : not null access Root_Stream_Type'Class;
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Item : Cursor);
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for Cursor'Write use Write;
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procedure Read
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(Stream : not null access Root_Stream_Type'Class;
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Item : out Cursor);
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for Cursor'Read use Read;
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subtype Reference_Control_Type is Implementation.Reference_Control_Type;
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-- It is necessary to rename this here, so that the compiler can find it
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type Constant_Reference_Type
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(Element : not null access constant Element_Type) is
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record
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Control : Reference_Control_Type :=
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raise Program_Error with "uninitialized reference";
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-- The RM says, "The default initialization of an object of
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-- type Constant_Reference_Type or Reference_Type propagates
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-- Program_Error."
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end record;
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procedure Read
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(Stream : not null access Root_Stream_Type'Class;
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Item : out Constant_Reference_Type);
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for Constant_Reference_Type'Read use Read;
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procedure Write
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(Stream : not null access Root_Stream_Type'Class;
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Item : Constant_Reference_Type);
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for Constant_Reference_Type'Write use Write;
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-- Three operations are used to optimize in the expansion of "for ... of"
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-- loops: the Next(Cursor) procedure in the visible part, and the following
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-- Pseudo_Reference and Get_Element_Access functions. See Sem_Ch5 for
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-- details.
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function Pseudo_Reference
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(Container : aliased Set'Class) return Reference_Control_Type;
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pragma Inline (Pseudo_Reference);
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-- Creates an object of type Reference_Control_Type pointing to the
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-- container, and increments the Lock. Finalization of this object will
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-- decrement the Lock.
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function Get_Element_Access
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(Position : Cursor) return not null Element_Access;
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-- Returns a pointer to the element designated by Position.
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Empty_Set : constant Set := (Controlled with others => <>);
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No_Element : constant Cursor := Cursor'(null, null);
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type Iterator is new Limited_Controlled and
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Set_Iterator_Interfaces.Reversible_Iterator with
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record
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Container : Set_Access;
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Node : Node_Access;
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end record
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with Disable_Controlled => not T_Check;
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overriding procedure Finalize (Object : in out Iterator);
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overriding function First (Object : Iterator) return Cursor;
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overriding function Last (Object : Iterator) return Cursor;
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overriding function Next
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(Object : Iterator;
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Position : Cursor) return Cursor;
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overriding function Previous
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(Object : Iterator;
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Position : Cursor) return Cursor;
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end Ada.Containers.Indefinite_Ordered_Sets;
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