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pragma License (Modified_GPL);
------------------------------------------------------------------------------
-- --
-- CHARLES CONTAINER LIBRARY --
-- --
-- Copyright (C) 2001-2003 Matthew J Heaney --
-- --
-- The Charles Container Library ("Charles") is free software; you can --
-- redistribute it and/or modify it under terms of the GNU General Public --
-- License as published by the Free Software Foundation; either version 2, --
-- or (at your option) any later version. Charles is distributed in the --
-- hope that it will be useful, but WITHOUT ANY WARRANTY; without even the --
-- implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. --
-- See the GNU General Public License for more details. You should have --
-- received a copy of the GNU General Public License distributed with --
-- Charles; see file COPYING.TXT. If not, write to the Free Software --
-- Foundation, 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. --
-- --
-- As a special exception, if other files instantiate generics from this --
-- unit, or you link this unit with other files to produce an executable, --
-- this unit does not by itself cause the resulting executable to be --
-- covered by the GNU General Public License. This exception does not --
-- however invalidate any other reasons why the executable file might be --
-- covered by the GNU Public License. --
-- --
-- Charles is maintained by Matthew J Heaney. --
-- --
-- http://home.earthlink.net/~matthewjheaney/index.html --
-- mailto:matthewjheaney@earthlink.net --
-- --
------------------------------------------------------------------------------
with Ada.Finalization;
with Charles.Hash_Tables;
pragma Elaborate_All (Charles.Hash_Tables);
with Charles.Hash_String;
generic
type Element_Type is private;
with function Hash (Key : String)
return Hash_Type is Charles.Hash_String;
with function Is_Equal_Key (Left, Right : String)
return Boolean is "=";
with function "=" (Left, Right : Element_Type)
return Boolean is <>;
package Charles.Multimaps.Hashed.Strings.Unbounded is
pragma Preelaborate (Unbounded);
subtype Key_Subtype is String;
subtype Element_Subtype is Element_Type;
function Compare_Keys (Left, Right : String)
return Boolean renames Is_Equal_Key;
function Compare_Elements (Left, Right : Element_Type)
return Boolean renames "=";
type Container_Type is private;
type Iterator_Type is private;
Null_Iterator : constant Iterator_Type;
procedure Assign
(Target : in out Container_Type;
Source : in Container_Type);
function "=" (Left, Right : Container_Type) return Boolean;
function Length (Container : Container_Type) return Natural;
function Is_Empty (Container : Container_Type) return Boolean;
procedure Clear (Container : in out Container_Type);
procedure Swap (Left, Right : in out Container_Type);
procedure Insert
(Container : in out Container_Type;
Key : in String;
New_Item : in Element_Type;
Iterator : out Iterator_Type);
procedure Insert
(Container : in out Container_Type;
Key : in String;
New_Item : in Element_Type);
procedure Insert
(Container : in out Container_Type;
Key : in String;
Iterator : out Iterator_Type);
procedure Insert
(Container : in out Container_Type;
Key : in String);
procedure Insert_Sans_Resize
(Container : in out Container_Type;
Key : in String;
New_Item : in Element_Type;
Iterator : out Iterator_Type);
procedure Insert_Sans_Resize
(Container : in out Container_Type;
Key : in String;
New_Item : in Element_Type);
procedure Insert_Sans_Resize
(Container : in out Container_Type;
Key : in String;
Iterator : out Iterator_Type);
procedure Insert_Sans_Resize
(Container : in out Container_Type;
Key : in String);
procedure Delete
(Container : in out Container_Type;
Key : in String);
procedure Delete
(Container : in out Container_Type;
Iterator : in out Iterator_Type);
function Is_In
(Key : String;
Container : Container_Type) return Boolean;
function Find
(Container : Container_Type;
Key : String) return Iterator_Type;
function Size (Container : Container_Type) return Natural;
procedure Resize
(Container : in out Container_Type;
Length : in Natural);
generic
with procedure Process
(Iterator : Iterator_Type) is <>;
procedure Generic_Equal_Range
(Container : in Container_Type;
Key : in String);
function First (Container : Container_Type) return Iterator_Type;
function First_Key (Container : Container_Type) return String;
function First_Element (Container : Container_Type) return Element_Type;
function Back (Container : Container_Type) return Iterator_Type;
function Succ
(Container : Container_Type;
Iterator : Iterator_Type) return Iterator_Type;
procedure Increment
(Container : in Container_type;
Iterator : in out Iterator_Type);
function Is_Equal_Key
(Left, Right : Iterator_Type) return Boolean;
function Is_Equal_Key
(Left : Iterator_Type;
Right : String) return Boolean;
function Is_Equal_Key
(Left : String;
Right : Iterator_Type) return Boolean;
function Is_Equal (Left, Right : Iterator_Type) return Boolean;
function Is_Equal
(Left : Iterator_Type;
Right : Element_Type) return Boolean;
function Is_Equal
(Left : Element_Type;
Right : Iterator_Type) return Boolean;
function Key (Iterator : Iterator_Type) return String;
function Element (Iterator : Iterator_Type) return Element_Type;
function Element
(Container : Container_Type;
Key : String) return Element_Type;
generic
type Element_Access is access all Element_Type;
function Generic_Element
(Iterator : Iterator_Type) return Element_Access;
procedure Replace_Element
(Iterator : in Iterator_Type;
By : in Element_Type);
generic
with procedure Process
(Iterator : in Iterator_Type) is <>;
procedure Generic_Iteration
(Container : in Container_Type);
private
type Node_Type;
type Node_Access is access Node_Type;
procedure Set_Next
(Node : Node_Access;
Next : Node_Access);
pragma Inline (Set_Next);
function Next (Node : Node_Access) return Node_Access;
pragma Inline (Next);
procedure Free (X : in out Node_Access);
pragma Inline (Free);
function Hash (Node : Node_Access) return Hash_Type;
pragma Inline (Hash);
package Hash_Table_Types is
new Charles.Hash_Tables (Node_Access, null);
use Hash_Table_Types;
type Container_Type is
new Ada.Finalization.Controlled with record
Hash_Table : Hash_Table_Type := (Buckets => null, Length => 0);
end record;
procedure Adjust (Container : in out Container_Type);
procedure Finalize (Container : in out Container_Type);
type Iterator_Type is
record
Node : Node_Access;
end record;
Null_Iterator : constant Iterator_Type := (Node => null);
end Charles.Multimaps.Hashed.Strings.Unbounded;
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