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jeremybenn |
------------------------------------------------------------------------------
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-- --
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-- GNAT COMPILER COMPONENTS --
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-- --
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-- A S P E C T S --
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-- --
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-- B o d y --
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-- --
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-- Copyright (C) 2010-2012, Free Software Foundation, Inc. --
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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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-- GNAT was originally developed by the GNAT team at New York University. --
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-- Extensive contributions were provided by Ada Core Technologies Inc. --
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-- --
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------------------------------------------------------------------------------
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with Atree; use Atree;
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with Einfo; use Einfo;
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with Nlists; use Nlists;
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with Sinfo; use Sinfo;
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with Tree_IO; use Tree_IO;
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with GNAT.HTable; use GNAT.HTable;
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package body Aspects is
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procedure Set_Aspect_Specifications_No_Check (N : Node_Id; L : List_Id);
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-- Same as Set_Aspect_Specifications, but does not contain the assertion
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-- that checks that N does not already have aspect specifications. This
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-- subprogram is supposed to be used as a part of Tree_Read. When reading
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-- tree, first read nodes with their basic properties (as Atree.Tree_Read),
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-- this includes reading the Has_Aspects flag for each node, then we reed
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-- all the list tables and only after that we call Tree_Read for Aspects.
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-- That is, when reading the tree, the list of aspects is attached to the
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-- node that already has Has_Aspects flag set ON.
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------------------------------------------
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-- Hash Table for Aspect Specifications --
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------------------------------------------
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type AS_Hash_Range is range 0 .. 510;
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-- Size of hash table headers
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function AS_Hash (F : Node_Id) return AS_Hash_Range;
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-- Hash function for hash table
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function AS_Hash (F : Node_Id) return AS_Hash_Range is
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begin
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return AS_Hash_Range (F mod 511);
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end AS_Hash;
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package Aspect_Specifications_Hash_Table is new
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GNAT.HTable.Simple_HTable
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(Header_Num => AS_Hash_Range,
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Element => List_Id,
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No_Element => No_List,
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Key => Node_Id,
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Hash => AS_Hash,
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Equal => "=");
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-------------------------------------
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-- Hash Table for Aspect Id Values --
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-------------------------------------
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type AI_Hash_Range is range 0 .. 112;
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-- Size of hash table headers
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function AI_Hash (F : Name_Id) return AI_Hash_Range;
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-- Hash function for hash table
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function AI_Hash (F : Name_Id) return AI_Hash_Range is
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begin
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return AI_Hash_Range (F mod 113);
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end AI_Hash;
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package Aspect_Id_Hash_Table is new
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GNAT.HTable.Simple_HTable
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(Header_Num => AI_Hash_Range,
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Element => Aspect_Id,
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No_Element => No_Aspect,
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Key => Name_Id,
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Hash => AI_Hash,
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Equal => "=");
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---------------------------
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-- Aspect_Specifications --
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---------------------------
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function Aspect_Specifications (N : Node_Id) return List_Id is
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begin
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if Has_Aspects (N) then
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return Aspect_Specifications_Hash_Table.Get (N);
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else
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return No_List;
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end if;
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end Aspect_Specifications;
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-------------------
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-- Get_Aspect_Id --
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-------------------
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function Get_Aspect_Id (Name : Name_Id) return Aspect_Id is
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begin
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return Aspect_Id_Hash_Table.Get (Name);
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end Get_Aspect_Id;
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-----------------
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-- Find_Aspect --
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-----------------
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function Find_Aspect (Ent : Entity_Id; A : Aspect_Id) return Node_Id is
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Ritem : Node_Id;
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Typ : Entity_Id;
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begin
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-- If the aspect is an inherited one and the entity is a class-wide
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-- type, use the aspect of the specific type. If the type is a base
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-- aspect, examine the rep. items of the base type.
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if Is_Type (Ent) then
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if Base_Aspect (A) then
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Typ := Base_Type (Ent);
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else
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Typ := Ent;
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end if;
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if Is_Class_Wide_Type (Typ)
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and then Inherited_Aspect (A)
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then
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Ritem := First_Rep_Item (Etype (Typ));
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else
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Ritem := First_Rep_Item (Typ);
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end if;
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else
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Ritem := First_Rep_Item (Ent);
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end if;
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while Present (Ritem) loop
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if Nkind (Ritem) = N_Aspect_Specification
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and then Get_Aspect_Id (Chars (Identifier (Ritem))) = A
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then
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if A = Aspect_Default_Iterator then
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return Expression (Aspect_Rep_Item (Ritem));
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else
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return Expression (Ritem);
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end if;
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end if;
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Next_Rep_Item (Ritem);
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end loop;
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return Empty;
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end Find_Aspect;
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------------------
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-- Move_Aspects --
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------------------
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procedure Move_Aspects (From : Node_Id; To : Node_Id) is
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pragma Assert (not Has_Aspects (To));
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begin
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if Has_Aspects (From) then
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Set_Aspect_Specifications (To, Aspect_Specifications (From));
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Aspect_Specifications_Hash_Table.Remove (From);
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Set_Has_Aspects (From, False);
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end if;
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end Move_Aspects;
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-----------------------------------
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-- Permits_Aspect_Specifications --
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-----------------------------------
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Has_Aspect_Specifications_Flag : constant array (Node_Kind) of Boolean :=
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(N_Abstract_Subprogram_Declaration => True,
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N_Component_Declaration => True,
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N_Entry_Declaration => True,
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N_Exception_Declaration => True,
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N_Exception_Renaming_Declaration => True,
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N_Expression_Function => True,
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N_Formal_Abstract_Subprogram_Declaration => True,
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N_Formal_Concrete_Subprogram_Declaration => True,
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N_Formal_Object_Declaration => True,
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N_Formal_Package_Declaration => True,
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N_Formal_Type_Declaration => True,
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N_Full_Type_Declaration => True,
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N_Function_Instantiation => True,
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N_Generic_Package_Declaration => True,
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N_Generic_Renaming_Declaration => True,
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N_Generic_Subprogram_Declaration => True,
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N_Object_Declaration => True,
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N_Object_Renaming_Declaration => True,
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N_Package_Declaration => True,
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N_Package_Instantiation => True,
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N_Package_Specification => True,
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N_Package_Renaming_Declaration => True,
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N_Private_Extension_Declaration => True,
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N_Private_Type_Declaration => True,
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N_Procedure_Instantiation => True,
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N_Protected_Body => True,
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N_Protected_Type_Declaration => True,
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N_Single_Protected_Declaration => True,
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N_Single_Task_Declaration => True,
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N_Subprogram_Body => True,
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N_Subprogram_Declaration => True,
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N_Subprogram_Renaming_Declaration => True,
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N_Subtype_Declaration => True,
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N_Task_Body => True,
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N_Task_Type_Declaration => True,
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others => False);
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function Permits_Aspect_Specifications (N : Node_Id) return Boolean is
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begin
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return Has_Aspect_Specifications_Flag (Nkind (N));
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end Permits_Aspect_Specifications;
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-----------------
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-- Same_Aspect --
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-----------------
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-- Table used for Same_Aspect, maps aspect to canonical aspect
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Canonical_Aspect : constant array (Aspect_Id) of Aspect_Id :=
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(No_Aspect => No_Aspect,
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Aspect_Ada_2005 => Aspect_Ada_2005,
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Aspect_Ada_2012 => Aspect_Ada_2005,
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Aspect_Address => Aspect_Address,
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Aspect_Alignment => Aspect_Alignment,
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Aspect_Asynchronous => Aspect_Asynchronous,
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Aspect_Atomic => Aspect_Atomic,
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Aspect_Atomic_Components => Aspect_Atomic_Components,
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Aspect_Attach_Handler => Aspect_Attach_Handler,
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Aspect_Bit_Order => Aspect_Bit_Order,
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Aspect_Component_Size => Aspect_Component_Size,
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Aspect_Constant_Indexing => Aspect_Constant_Indexing,
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Aspect_CPU => Aspect_CPU,
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Aspect_Default_Component_Value => Aspect_Default_Component_Value,
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Aspect_Default_Iterator => Aspect_Default_Iterator,
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Aspect_Default_Value => Aspect_Default_Value,
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Aspect_Dimension => Aspect_Dimension,
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Aspect_Dimension_System => Aspect_Dimension_System,
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Aspect_Discard_Names => Aspect_Discard_Names,
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Aspect_Dispatching_Domain => Aspect_Dispatching_Domain,
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Aspect_Dynamic_Predicate => Aspect_Predicate,
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Aspect_External_Tag => Aspect_External_Tag,
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Aspect_Favor_Top_Level => Aspect_Favor_Top_Level,
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Aspect_Implicit_Dereference => Aspect_Implicit_Dereference,
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Aspect_Independent => Aspect_Independent,
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Aspect_Independent_Components => Aspect_Independent_Components,
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Aspect_Inline => Aspect_Inline,
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Aspect_Inline_Always => Aspect_Inline,
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Aspect_Interrupt_Handler => Aspect_Interrupt_Handler,
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Aspect_Interrupt_Priority => Aspect_Interrupt_Priority,
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Aspect_Iterator_Element => Aspect_Iterator_Element,
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Aspect_All_Calls_Remote => Aspect_All_Calls_Remote,
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Aspect_Compiler_Unit => Aspect_Compiler_Unit,
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Aspect_Elaborate_Body => Aspect_Elaborate_Body,
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Aspect_Preelaborate => Aspect_Preelaborate,
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Aspect_Preelaborate_05 => Aspect_Preelaborate_05,
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Aspect_Pure => Aspect_Pure,
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Aspect_Pure_05 => Aspect_Pure_05,
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Aspect_Pure_12 => Aspect_Pure_12,
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Aspect_Remote_Call_Interface => Aspect_Remote_Call_Interface,
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Aspect_Remote_Types => Aspect_Remote_Types,
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Aspect_Shared_Passive => Aspect_Shared_Passive,
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Aspect_Universal_Data => Aspect_Universal_Data,
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Aspect_Input => Aspect_Input,
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Aspect_Invariant => Aspect_Invariant,
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Aspect_Machine_Radix => Aspect_Machine_Radix,
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Aspect_No_Return => Aspect_No_Return,
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Aspect_Object_Size => Aspect_Object_Size,
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Aspect_Output => Aspect_Output,
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Aspect_Pack => Aspect_Pack,
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Aspect_Persistent_BSS => Aspect_Persistent_BSS,
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Aspect_Post => Aspect_Post,
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Aspect_Postcondition => Aspect_Post,
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Aspect_Pre => Aspect_Pre,
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Aspect_Precondition => Aspect_Pre,
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Aspect_Predicate => Aspect_Predicate,
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Aspect_Preelaborable_Initialization => Aspect_Preelaborable_Initialization,
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Aspect_Priority => Aspect_Priority,
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Aspect_Pure_Function => Aspect_Pure_Function,
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Aspect_Remote_Access_Type => Aspect_Remote_Access_Type,
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Aspect_Read => Aspect_Read,
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Aspect_Shared => Aspect_Atomic,
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Aspect_Simple_Storage_Pool => Aspect_Simple_Storage_Pool,
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Aspect_Simple_Storage_Pool_Type => Aspect_Simple_Storage_Pool_Type,
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Aspect_Size => Aspect_Size,
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Aspect_Small => Aspect_Small,
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Aspect_Static_Predicate => Aspect_Predicate,
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Aspect_Storage_Pool => Aspect_Storage_Pool,
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Aspect_Storage_Size => Aspect_Storage_Size,
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Aspect_Stream_Size => Aspect_Stream_Size,
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Aspect_Suppress => Aspect_Suppress,
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Aspect_Suppress_Debug_Info => Aspect_Suppress_Debug_Info,
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Aspect_Synchronization => Aspect_Synchronization,
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Aspect_Test_Case => Aspect_Test_Case,
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Aspect_Type_Invariant => Aspect_Invariant,
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Aspect_Unchecked_Union => Aspect_Unchecked_Union,
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Aspect_Universal_Aliasing => Aspect_Universal_Aliasing,
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Aspect_Unmodified => Aspect_Unmodified,
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Aspect_Unreferenced => Aspect_Unreferenced,
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Aspect_Unreferenced_Objects => Aspect_Unreferenced_Objects,
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Aspect_Unsuppress => Aspect_Unsuppress,
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Aspect_Variable_Indexing => Aspect_Variable_Indexing,
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Aspect_Value_Size => Aspect_Value_Size,
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Aspect_Volatile => Aspect_Volatile,
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Aspect_Volatile_Components => Aspect_Volatile_Components,
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Aspect_Warnings => Aspect_Warnings,
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Aspect_Write => Aspect_Write);
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function Same_Aspect (A1 : Aspect_Id; A2 : Aspect_Id) return Boolean is
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begin
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return Canonical_Aspect (A1) = Canonical_Aspect (A2);
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end Same_Aspect;
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-------------------------------
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-- Set_Aspect_Specifications --
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-------------------------------
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procedure Set_Aspect_Specifications (N : Node_Id; L : List_Id) is
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begin
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pragma Assert (Permits_Aspect_Specifications (N));
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|
|
pragma Assert (not Has_Aspects (N));
|
341 |
|
|
pragma Assert (L /= No_List);
|
342 |
|
|
|
343 |
|
|
Set_Has_Aspects (N);
|
344 |
|
|
Set_Parent (L, N);
|
345 |
|
|
Aspect_Specifications_Hash_Table.Set (N, L);
|
346 |
|
|
end Set_Aspect_Specifications;
|
347 |
|
|
|
348 |
|
|
----------------------------------------
|
349 |
|
|
-- Set_Aspect_Specifications_No_Check --
|
350 |
|
|
----------------------------------------
|
351 |
|
|
|
352 |
|
|
procedure Set_Aspect_Specifications_No_Check (N : Node_Id; L : List_Id) is
|
353 |
|
|
begin
|
354 |
|
|
pragma Assert (Permits_Aspect_Specifications (N));
|
355 |
|
|
pragma Assert (L /= No_List);
|
356 |
|
|
|
357 |
|
|
Set_Has_Aspects (N);
|
358 |
|
|
Set_Parent (L, N);
|
359 |
|
|
Aspect_Specifications_Hash_Table.Set (N, L);
|
360 |
|
|
end Set_Aspect_Specifications_No_Check;
|
361 |
|
|
|
362 |
|
|
---------------
|
363 |
|
|
-- Tree_Read --
|
364 |
|
|
---------------
|
365 |
|
|
|
366 |
|
|
procedure Tree_Read is
|
367 |
|
|
Node : Node_Id;
|
368 |
|
|
List : List_Id;
|
369 |
|
|
begin
|
370 |
|
|
loop
|
371 |
|
|
Tree_Read_Int (Int (Node));
|
372 |
|
|
Tree_Read_Int (Int (List));
|
373 |
|
|
exit when List = No_List;
|
374 |
|
|
Set_Aspect_Specifications_No_Check (Node, List);
|
375 |
|
|
end loop;
|
376 |
|
|
end Tree_Read;
|
377 |
|
|
|
378 |
|
|
----------------
|
379 |
|
|
-- Tree_Write --
|
380 |
|
|
----------------
|
381 |
|
|
|
382 |
|
|
procedure Tree_Write is
|
383 |
|
|
Node : Node_Id := Empty;
|
384 |
|
|
List : List_Id;
|
385 |
|
|
begin
|
386 |
|
|
Aspect_Specifications_Hash_Table.Get_First (Node, List);
|
387 |
|
|
loop
|
388 |
|
|
Tree_Write_Int (Int (Node));
|
389 |
|
|
Tree_Write_Int (Int (List));
|
390 |
|
|
exit when List = No_List;
|
391 |
|
|
Aspect_Specifications_Hash_Table.Get_Next (Node, List);
|
392 |
|
|
end loop;
|
393 |
|
|
end Tree_Write;
|
394 |
|
|
|
395 |
|
|
-- Package initialization sets up Aspect Id hash table
|
396 |
|
|
|
397 |
|
|
begin
|
398 |
|
|
for J in Aspect_Id loop
|
399 |
|
|
Aspect_Id_Hash_Table.Set (Aspect_Names (J), J);
|
400 |
|
|
end loop;
|
401 |
|
|
end Aspects;
|