948 lines
24 KiB
Ada
948 lines
24 KiB
Ada
------------------------------------------------------------------------------
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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 . H A S H E D _ M A P S --
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-- --
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-- B o d y --
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-- --
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-- Copyright (C) 2004-2005, 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 2, 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. See the GNU General Public License --
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-- for more details. You should have received a copy of the GNU General --
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-- Public License distributed with GNAT; see file COPYING. If not, write --
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-- to the Free Software Foundation, 51 Franklin Street, Fifth Floor, --
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-- Boston, MA 02110-1301, USA. --
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-- --
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-- As a special exception, if other files instantiate generics from this --
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-- unit, or you link this unit with other files to produce an executable, --
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-- this unit does not by itself cause the resulting executable to be --
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-- covered by the GNU General Public License. This exception does not --
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-- however invalidate any other reasons why the executable file might be --
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-- covered by the GNU Public License. --
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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.Unchecked_Deallocation;
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with Ada.Containers.Hash_Tables.Generic_Operations;
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pragma Elaborate_All (Ada.Containers.Hash_Tables.Generic_Operations);
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with Ada.Containers.Hash_Tables.Generic_Keys;
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pragma Elaborate_All (Ada.Containers.Hash_Tables.Generic_Keys);
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package body Ada.Containers.Hashed_Maps is
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-----------------------
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-- Local Subprograms --
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-----------------------
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function Copy_Node
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(Source : Node_Access) return Node_Access;
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pragma Inline (Copy_Node);
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function Equivalent_Key_Node
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(Key : Key_Type;
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Node : Node_Access) return Boolean;
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pragma Inline (Equivalent_Key_Node);
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procedure Free (X : in out Node_Access);
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function Find_Equal_Key
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(R_HT : Hash_Table_Type;
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L_Node : Node_Access) return Boolean;
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function Hash_Node (Node : Node_Access) return Hash_Type;
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pragma Inline (Hash_Node);
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function Next (Node : Node_Access) return Node_Access;
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pragma Inline (Next);
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function Read_Node
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(Stream : access Root_Stream_Type'Class) return Node_Access;
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pragma Inline (Read_Node);
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procedure Set_Next (Node : Node_Access; Next : Node_Access);
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pragma Inline (Set_Next);
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function Vet (Position : Cursor) return Boolean;
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procedure Write_Node
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(Stream : access Root_Stream_Type'Class;
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Node : Node_Access);
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pragma Inline (Write_Node);
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--------------------------
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-- Local Instantiations --
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--------------------------
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package HT_Ops is
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new Hash_Tables.Generic_Operations
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(HT_Types => HT_Types,
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Hash_Node => Hash_Node,
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Next => Next,
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Set_Next => Set_Next,
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Copy_Node => Copy_Node,
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Free => Free);
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package Key_Ops is
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new Hash_Tables.Generic_Keys
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(HT_Types => HT_Types,
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Next => Next,
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Set_Next => Set_Next,
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Key_Type => Key_Type,
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Hash => Hash,
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Equivalent_Keys => Equivalent_Key_Node);
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function Is_Equal is new HT_Ops.Generic_Equal (Find_Equal_Key);
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procedure Read_Nodes is new HT_Ops.Generic_Read (Read_Node);
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procedure Write_Nodes is new HT_Ops.Generic_Write (Write_Node);
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---------
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-- "=" --
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---------
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function "=" (Left, Right : Map) return Boolean is
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begin
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return Is_Equal (Left.HT, Right.HT);
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end "=";
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------------
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-- Adjust --
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------------
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procedure Adjust (Container : in out Map) is
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begin
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HT_Ops.Adjust (Container.HT);
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end Adjust;
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--------------
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-- Capacity --
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--------------
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function Capacity (Container : Map) return Count_Type is
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begin
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return HT_Ops.Capacity (Container.HT);
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end Capacity;
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-----------
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-- Clear --
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-----------
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procedure Clear (Container : in out Map) is
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begin
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HT_Ops.Clear (Container.HT);
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end Clear;
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--------------
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-- Contains --
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--------------
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function Contains (Container : Map; Key : Key_Type) return Boolean is
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begin
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return Find (Container, Key) /= No_Element;
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end Contains;
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---------------
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-- Copy_Node --
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---------------
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function Copy_Node
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(Source : Node_Access) return Node_Access
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is
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Target : constant Node_Access :=
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new Node_Type'(Key => Source.Key,
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Element => Source.Element,
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Next => null);
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begin
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return Target;
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end Copy_Node;
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------------
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-- Delete --
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------------
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procedure Delete (Container : in out Map; Key : Key_Type) is
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X : Node_Access;
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begin
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Key_Ops.Delete_Key_Sans_Free (Container.HT, Key, X);
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if X = null then
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raise Constraint_Error with "attempt to delete key not in map";
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end if;
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Free (X);
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end Delete;
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procedure Delete (Container : in out Map; Position : in out Cursor) is
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begin
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if Position.Node = null then
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raise Constraint_Error with
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"Position cursor of Delete equals No_Element";
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end if;
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if Position.Container /= Container'Unrestricted_Access then
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raise Program_Error with
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"Position cursor of Delete designates wrong map";
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end if;
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if Container.HT.Busy > 0 then
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raise Program_Error with
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"Delete attempted to tamper with elements (map is busy)";
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end if;
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pragma Assert (Vet (Position), "bad cursor in Delete");
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HT_Ops.Delete_Node_Sans_Free (Container.HT, Position.Node);
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Free (Position.Node);
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Position.Container := null;
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end Delete;
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-------------
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-- Element --
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-------------
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function Element (Container : Map; Key : Key_Type) return Element_Type is
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Node : constant Node_Access := Key_Ops.Find (Container.HT, Key);
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begin
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if Node = null then
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raise Constraint_Error with
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"no element available because key not in map";
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end if;
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return Node.Element;
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end Element;
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function Element (Position : Cursor) return Element_Type is
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begin
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if Position.Node = null then
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raise Constraint_Error with
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"Position cursor of function Element equals No_Element";
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end if;
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pragma Assert (Vet (Position), "bad cursor in function Element");
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return Position.Node.Element;
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end Element;
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-------------------------
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-- Equivalent_Key_Node --
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-------------------------
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function Equivalent_Key_Node
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(Key : Key_Type;
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Node : Node_Access) return Boolean is
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begin
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return Equivalent_Keys (Key, Node.Key);
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end Equivalent_Key_Node;
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---------------------
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-- Equivalent_Keys --
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---------------------
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function Equivalent_Keys (Left, Right : Cursor)
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return Boolean is
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begin
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if Left.Node = null then
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raise Constraint_Error with
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"Left cursor of Equivalent_Keys equals No_Element";
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end if;
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if Right.Node = null then
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raise Constraint_Error with
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"Right cursor of Equivalent_Keys equals No_Element";
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end if;
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pragma Assert (Vet (Left), "Left cursor of Equivalent_Keys is bad");
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pragma Assert (Vet (Right), "Right cursor of Equivalent_Keys is bad");
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return Equivalent_Keys (Left.Node.Key, Right.Node.Key);
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end Equivalent_Keys;
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function Equivalent_Keys (Left : Cursor; Right : Key_Type) return Boolean is
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begin
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if Left.Node = null then
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raise Constraint_Error with
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"Left cursor of Equivalent_Keys equals No_Element";
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end if;
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pragma Assert (Vet (Left), "Left cursor in Equivalent_Keys is bad");
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return Equivalent_Keys (Left.Node.Key, Right);
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end Equivalent_Keys;
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function Equivalent_Keys (Left : Key_Type; Right : Cursor) return Boolean is
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begin
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if Right.Node = null then
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raise Constraint_Error with
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"Right cursor of Equivalent_Keys equals No_Element";
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end if;
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pragma Assert (Vet (Right), "Right cursor of Equivalent_Keys is bad");
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return Equivalent_Keys (Left, Right.Node.Key);
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end Equivalent_Keys;
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-------------
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-- Exclude --
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-------------
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procedure Exclude (Container : in out Map; Key : Key_Type) is
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X : Node_Access;
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begin
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Key_Ops.Delete_Key_Sans_Free (Container.HT, Key, X);
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Free (X);
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end Exclude;
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--------------
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-- Finalize --
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--------------
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procedure Finalize (Container : in out Map) is
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begin
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HT_Ops.Finalize (Container.HT);
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end Finalize;
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----------
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-- Find --
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----------
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function Find (Container : Map; Key : Key_Type) return Cursor is
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Node : constant Node_Access := Key_Ops.Find (Container.HT, Key);
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begin
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if Node = null then
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return No_Element;
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end if;
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return Cursor'(Container'Unchecked_Access, Node);
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end Find;
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--------------------
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-- Find_Equal_Key --
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--------------------
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function Find_Equal_Key
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(R_HT : Hash_Table_Type;
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L_Node : Node_Access) return Boolean
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is
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R_Index : constant Hash_Type := Key_Ops.Index (R_HT, L_Node.Key);
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R_Node : Node_Access := R_HT.Buckets (R_Index);
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begin
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while R_Node /= null loop
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if Equivalent_Keys (L_Node.Key, R_Node.Key) then
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return L_Node.Element = R_Node.Element;
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end if;
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R_Node := R_Node.Next;
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end loop;
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return False;
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end Find_Equal_Key;
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-----------
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-- First --
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-----------
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function First (Container : Map) return Cursor is
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Node : constant Node_Access := HT_Ops.First (Container.HT);
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begin
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if Node = null then
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return No_Element;
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end if;
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return Cursor'(Container'Unchecked_Access, Node);
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end First;
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----------
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-- Free --
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----------
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procedure Free (X : in out Node_Access) is
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procedure Deallocate is
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new Ada.Unchecked_Deallocation (Node_Type, Node_Access);
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begin
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if X /= null then
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X.Next := X; -- detect mischief (in Vet)
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Deallocate (X);
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end if;
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end Free;
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-----------------
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-- Has_Element --
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-----------------
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function Has_Element (Position : Cursor) return Boolean is
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begin
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pragma Assert (Vet (Position), "bad cursor in Has_Element");
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return Position.Node /= null;
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end Has_Element;
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---------------
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-- Hash_Node --
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---------------
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function Hash_Node (Node : Node_Access) return Hash_Type is
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begin
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return Hash (Node.Key);
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end Hash_Node;
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-------------
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-- Include --
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-------------
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procedure Include
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(Container : in out Map;
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Key : Key_Type;
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New_Item : Element_Type)
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is
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Position : Cursor;
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Inserted : Boolean;
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begin
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Insert (Container, Key, New_Item, Position, Inserted);
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if not Inserted then
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if Container.HT.Lock > 0 then
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raise Program_Error with
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"Include attempted to tamper with cursors (map is locked)";
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end if;
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Position.Node.Key := Key;
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Position.Node.Element := New_Item;
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end if;
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end Include;
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------------
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-- Insert --
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------------
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procedure Insert
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(Container : in out Map;
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Key : Key_Type;
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Position : out Cursor;
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Inserted : out Boolean)
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is
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function New_Node (Next : Node_Access) return Node_Access;
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pragma Inline (New_Node);
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procedure Local_Insert is
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new Key_Ops.Generic_Conditional_Insert (New_Node);
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--------------
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-- New_Node --
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--------------
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function New_Node (Next : Node_Access) return Node_Access is
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begin
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return new Node_Type'(Key => Key,
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Element => <>,
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Next => Next);
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end New_Node;
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HT : Hash_Table_Type renames Container.HT;
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-- Start of processing for Insert
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begin
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if HT_Ops.Capacity (HT) = 0 then
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HT_Ops.Reserve_Capacity (HT, 1);
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end if;
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Local_Insert (HT, Key, Position.Node, Inserted);
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if Inserted
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and then HT.Length > HT_Ops.Capacity (HT)
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then
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HT_Ops.Reserve_Capacity (HT, HT.Length);
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end if;
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Position.Container := Container'Unchecked_Access;
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end Insert;
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procedure Insert
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(Container : in out Map;
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Key : Key_Type;
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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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is
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function New_Node (Next : Node_Access) return Node_Access;
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pragma Inline (New_Node);
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procedure Local_Insert is
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new Key_Ops.Generic_Conditional_Insert (New_Node);
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--------------
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-- New_Node --
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--------------
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function New_Node (Next : Node_Access) return Node_Access is
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begin
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return new Node_Type'(Key, New_Item, Next);
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end New_Node;
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HT : Hash_Table_Type renames Container.HT;
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-- Start of processing for Insert
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begin
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if HT_Ops.Capacity (HT) = 0 then
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HT_Ops.Reserve_Capacity (HT, 1);
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end if;
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Local_Insert (HT, Key, Position.Node, Inserted);
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if Inserted
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and then HT.Length > HT_Ops.Capacity (HT)
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then
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HT_Ops.Reserve_Capacity (HT, HT.Length);
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end if;
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Position.Container := Container'Unchecked_Access;
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end Insert;
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procedure Insert
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(Container : in out Map;
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Key : Key_Type;
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New_Item : Element_Type)
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is
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Position : Cursor;
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Inserted : Boolean;
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begin
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Insert (Container, Key, New_Item, Position, Inserted);
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if not Inserted then
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raise Constraint_Error with
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"attempt to insert key already in map";
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end if;
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end Insert;
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--------------
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-- Is_Empty --
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--------------
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function Is_Empty (Container : Map) return Boolean is
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begin
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return Container.HT.Length = 0;
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end Is_Empty;
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|
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-------------
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-- Iterate --
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-------------
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procedure Iterate
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(Container : Map;
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Process : not null access procedure (Position : Cursor))
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is
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procedure Process_Node (Node : Node_Access);
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pragma Inline (Process_Node);
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procedure Local_Iterate is new HT_Ops.Generic_Iteration (Process_Node);
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------------------
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-- Process_Node --
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------------------
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procedure Process_Node (Node : Node_Access) is
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begin
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Process (Cursor'(Container'Unchecked_Access, Node));
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end Process_Node;
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|
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-- Start of processing for Iterate
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begin
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Local_Iterate (Container.HT);
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end Iterate;
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|
|
---------
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-- Key --
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---------
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|
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function Key (Position : Cursor) return Key_Type is
|
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begin
|
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if Position.Node = null then
|
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raise Constraint_Error with
|
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"Position cursor of function Key equals No_Element";
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end if;
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pragma Assert (Vet (Position), "bad cursor in function Key");
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return Position.Node.Key;
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end Key;
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|
|
|
------------
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-- Length --
|
|
------------
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|
|
|
function Length (Container : Map) return Count_Type is
|
|
begin
|
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return Container.HT.Length;
|
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end Length;
|
|
|
|
----------
|
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-- Move --
|
|
----------
|
|
|
|
procedure Move
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|
(Target : in out Map;
|
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Source : in out Map)
|
|
is
|
|
begin
|
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HT_Ops.Move (Target => Target.HT, Source => Source.HT);
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end Move;
|
|
|
|
----------
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-- Next --
|
|
----------
|
|
|
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function Next (Node : Node_Access) return Node_Access is
|
|
begin
|
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return Node.Next;
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end Next;
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|
|
function Next (Position : Cursor) return Cursor is
|
|
begin
|
|
if Position.Node = null then
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return No_Element;
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|
end if;
|
|
|
|
pragma Assert (Vet (Position), "bad cursor in function Next");
|
|
|
|
declare
|
|
HT : Hash_Table_Type renames Position.Container.HT;
|
|
Node : constant Node_Access := HT_Ops.Next (HT, Position.Node);
|
|
|
|
begin
|
|
if Node = null then
|
|
return No_Element;
|
|
end if;
|
|
|
|
return Cursor'(Position.Container, Node);
|
|
end;
|
|
end Next;
|
|
|
|
procedure Next (Position : in out Cursor) is
|
|
begin
|
|
Position := Next (Position);
|
|
end Next;
|
|
|
|
-------------------
|
|
-- Query_Element --
|
|
-------------------
|
|
|
|
procedure Query_Element
|
|
(Position : Cursor;
|
|
Process : not null access
|
|
procedure (Key : Key_Type; Element : Element_Type))
|
|
is
|
|
begin
|
|
if Position.Node = null then
|
|
raise Constraint_Error with
|
|
"Position cursor of Query_Element equals No_Element";
|
|
end if;
|
|
|
|
pragma Assert (Vet (Position), "bad cursor in Query_Element");
|
|
|
|
declare
|
|
M : Map renames Position.Container.all;
|
|
HT : Hash_Table_Type renames M.HT'Unrestricted_Access.all;
|
|
|
|
B : Natural renames HT.Busy;
|
|
L : Natural renames HT.Lock;
|
|
|
|
begin
|
|
B := B + 1;
|
|
L := L + 1;
|
|
|
|
declare
|
|
K : Key_Type renames Position.Node.Key;
|
|
E : Element_Type renames Position.Node.Element;
|
|
|
|
begin
|
|
Process (K, E);
|
|
exception
|
|
when others =>
|
|
L := L - 1;
|
|
B := B - 1;
|
|
raise;
|
|
end;
|
|
|
|
L := L - 1;
|
|
B := B - 1;
|
|
end;
|
|
end Query_Element;
|
|
|
|
----------
|
|
-- Read --
|
|
----------
|
|
|
|
procedure Read
|
|
(Stream : access Root_Stream_Type'Class;
|
|
Container : out Map)
|
|
is
|
|
begin
|
|
Read_Nodes (Stream, Container.HT);
|
|
end Read;
|
|
|
|
procedure Read
|
|
(Stream : access Root_Stream_Type'Class;
|
|
Item : out Cursor)
|
|
is
|
|
begin
|
|
raise Program_Error with "attempt to stream map cursor";
|
|
end Read;
|
|
|
|
---------------
|
|
-- Read_Node --
|
|
---------------
|
|
|
|
function Read_Node
|
|
(Stream : access Root_Stream_Type'Class) return Node_Access
|
|
is
|
|
Node : Node_Access := new Node_Type;
|
|
|
|
begin
|
|
Key_Type'Read (Stream, Node.Key);
|
|
Element_Type'Read (Stream, Node.Element);
|
|
return Node;
|
|
|
|
exception
|
|
when others =>
|
|
Free (Node);
|
|
raise;
|
|
end Read_Node;
|
|
|
|
-------------
|
|
-- Replace --
|
|
-------------
|
|
|
|
procedure Replace
|
|
(Container : in out Map;
|
|
Key : Key_Type;
|
|
New_Item : Element_Type)
|
|
is
|
|
Node : constant Node_Access := Key_Ops.Find (Container.HT, Key);
|
|
|
|
begin
|
|
if Node = null then
|
|
raise Constraint_Error with
|
|
"attempt to replace key not in map";
|
|
end if;
|
|
|
|
if Container.HT.Lock > 0 then
|
|
raise Program_Error with
|
|
"Replace attempted to tamper with cursors (map is locked)";
|
|
end if;
|
|
|
|
Node.Key := Key;
|
|
Node.Element := New_Item;
|
|
end Replace;
|
|
|
|
---------------------
|
|
-- Replace_Element --
|
|
---------------------
|
|
|
|
procedure Replace_Element
|
|
(Container : in out Map;
|
|
Position : Cursor;
|
|
New_Item : Element_Type)
|
|
is
|
|
begin
|
|
if Position.Node = null then
|
|
raise Constraint_Error with
|
|
"Position cursor of Replace_Element equals No_Element";
|
|
end if;
|
|
|
|
if Position.Container /= Container'Unrestricted_Access then
|
|
raise Program_Error with
|
|
"Position cursor of Replace_Element designates wrong map";
|
|
end if;
|
|
|
|
if Position.Container.HT.Lock > 0 then
|
|
raise Program_Error with
|
|
"Replace_Element attempted to tamper with cursors (map is locked)";
|
|
end if;
|
|
|
|
pragma Assert (Vet (Position), "bad cursor in Replace_Element");
|
|
|
|
Position.Node.Element := New_Item;
|
|
end Replace_Element;
|
|
|
|
----------------------
|
|
-- Reserve_Capacity --
|
|
----------------------
|
|
|
|
procedure Reserve_Capacity
|
|
(Container : in out Map;
|
|
Capacity : Count_Type)
|
|
is
|
|
begin
|
|
HT_Ops.Reserve_Capacity (Container.HT, Capacity);
|
|
end Reserve_Capacity;
|
|
|
|
--------------
|
|
-- Set_Next --
|
|
--------------
|
|
|
|
procedure Set_Next (Node : Node_Access; Next : Node_Access) is
|
|
begin
|
|
Node.Next := Next;
|
|
end Set_Next;
|
|
|
|
--------------------
|
|
-- Update_Element --
|
|
--------------------
|
|
|
|
procedure Update_Element
|
|
(Container : in out Map;
|
|
Position : Cursor;
|
|
Process : not null access procedure (Key : Key_Type;
|
|
Element : in out Element_Type))
|
|
is
|
|
begin
|
|
if Position.Node = null then
|
|
raise Constraint_Error with
|
|
"Position cursor of Update_Element equals No_Element";
|
|
end if;
|
|
|
|
if Position.Container /= Container'Unrestricted_Access then
|
|
raise Program_Error with
|
|
"Position cursor of Update_Element designates wrong map";
|
|
end if;
|
|
|
|
pragma Assert (Vet (Position), "bad cursor in Update_Element");
|
|
|
|
declare
|
|
HT : Hash_Table_Type renames Container.HT;
|
|
B : Natural renames HT.Busy;
|
|
L : Natural renames HT.Lock;
|
|
|
|
begin
|
|
B := B + 1;
|
|
L := L + 1;
|
|
|
|
declare
|
|
K : Key_Type renames Position.Node.Key;
|
|
E : Element_Type renames Position.Node.Element;
|
|
begin
|
|
Process (K, E);
|
|
exception
|
|
when others =>
|
|
L := L - 1;
|
|
B := B - 1;
|
|
raise;
|
|
end;
|
|
|
|
L := L - 1;
|
|
B := B - 1;
|
|
end;
|
|
end Update_Element;
|
|
|
|
---------
|
|
-- Vet --
|
|
---------
|
|
|
|
function Vet (Position : Cursor) return Boolean is
|
|
begin
|
|
if Position.Node = null then
|
|
return Position.Container = null;
|
|
end if;
|
|
|
|
if Position.Container = null then
|
|
return False;
|
|
end if;
|
|
|
|
if Position.Node.Next = Position.Node then
|
|
return False;
|
|
end if;
|
|
|
|
declare
|
|
HT : Hash_Table_Type renames Position.Container.HT;
|
|
X : Node_Access;
|
|
|
|
begin
|
|
if HT.Length = 0 then
|
|
return False;
|
|
end if;
|
|
|
|
if HT.Buckets = null
|
|
or else HT.Buckets'Length = 0
|
|
then
|
|
return False;
|
|
end if;
|
|
|
|
X := HT.Buckets (Key_Ops.Index (HT, Position.Node.Key));
|
|
|
|
for J in 1 .. HT.Length loop
|
|
if X = Position.Node then
|
|
return True;
|
|
end if;
|
|
|
|
if X = null then
|
|
return False;
|
|
end if;
|
|
|
|
if X = X.Next then -- to prevent endless loop
|
|
return False;
|
|
end if;
|
|
|
|
X := X.Next;
|
|
end loop;
|
|
|
|
return False;
|
|
end;
|
|
end Vet;
|
|
|
|
-----------
|
|
-- Write --
|
|
-----------
|
|
|
|
procedure Write
|
|
(Stream : access Root_Stream_Type'Class;
|
|
Container : Map)
|
|
is
|
|
begin
|
|
Write_Nodes (Stream, Container.HT);
|
|
end Write;
|
|
|
|
procedure Write
|
|
(Stream : access Root_Stream_Type'Class;
|
|
Item : Cursor)
|
|
is
|
|
begin
|
|
raise Program_Error with "attempt to stream map cursor";
|
|
end Write;
|
|
|
|
----------------
|
|
-- Write_Node --
|
|
----------------
|
|
|
|
procedure Write_Node
|
|
(Stream : access Root_Stream_Type'Class;
|
|
Node : Node_Access)
|
|
is
|
|
begin
|
|
Key_Type'Write (Stream, Node.Key);
|
|
Element_Type'Write (Stream, Node.Element);
|
|
end Write_Node;
|
|
|
|
end Ada.Containers.Hashed_Maps;
|