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c5c57c3eb4cda10dbbfad4375db413e1fa0c2e2d | 6,121 | adb | Ada | testsuite/amf/TN-222/test_222.adb | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 24 | 2016-11-29T06:59:41.000Z | 2021-08-30T11:55:16.000Z | testsuite/amf/TN-222/test_222.adb | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 2 | 2019-01-16T05:15:20.000Z | 2019-02-03T10:03:32.000Z | testsuite/amf/TN-222/test_222.adb | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 4 | 2017-07-18T07:11:05.000Z | 2020-06-21T03:02:25.000Z | ------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- Ada Modeling Framework --
-- --
-- Testsuite Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2012, Vadim Godunko <vgodunko@gmail.com> --
-- All rights reserved. --
-- --
-- Redistribution and use in source and binary forms, with or without --
-- modification, are permitted provided that the following conditions --
-- are met: --
-- --
-- * Redistributions of source code must retain the above copyright --
-- notice, this list of conditions and the following disclaimer. --
-- --
-- * Redistributions in binary form must reproduce the above copyright --
-- notice, this list of conditions and the following disclaimer in the --
-- documentation and/or other materials provided with the distribution. --
-- --
-- * Neither the name of the Vadim Godunko, IE nor the names of its --
-- contributors may be used to endorse or promote products derived from --
-- this software without specific prior written permission. --
-- --
-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS --
-- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT --
-- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR --
-- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT --
-- HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, --
-- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED --
-- TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR --
-- PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF --
-- LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING --
-- NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS --
-- SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. --
-- --
------------------------------------------------------------------------------
-- $Revision$ $Date$
------------------------------------------------------------------------------
-- Check whether 'namespace' and 'owner' attributes of UML::Operation class
-- are computed properly.
------------------------------------------------------------------------------
with League.Strings;
with AMF.Facility;
with AMF.Factories.UML_Factories;
with AMF.UML.Classes;
with AMF.UML.Elements;
with AMF.UML.Namespaces;
with AMF.UML.Packageable_Elements.Collections;
with AMF.UML.Packages;
with AMF.UML.Operations.Collections;
with AMF.URI_Stores;
with AMF.Internals.Modules.UML_Module;
pragma Unreferenced (AMF.Internals.Modules.UML_Module);
procedure Test_222 is
use type AMF.UML.Elements.UML_Element_Access;
use type AMF.UML.Namespaces.UML_Namespace_Access;
function "+"
(Item : Wide_Wide_String) return League.Strings.Universal_String
renames League.Strings.To_Universal_String;
UML_URI : constant League.Strings.Universal_String
:= +"http://www.omg.org/spec/UML/20100901";
Store : AMF.URI_Stores.URI_Store_Access;
UML_Factory : AMF.Factories.UML_Factories.UML_Factory_Access;
The_Package : AMF.UML.Packages.UML_Package_Access;
The_Class : AMF.UML.Classes.UML_Class_Access;
The_Operation : AMF.UML.Operations.UML_Operation_Access;
The_Namespace : AMF.UML.Namespaces.UML_Namespace_Access;
Packaged_Element :
AMF.UML.Packageable_Elements.Collections.Set_Of_UML_Packageable_Element;
Owned_Operation :
AMF.UML.Operations.Collections.Ordered_Set_Of_UML_Operation;
The_Element : AMF.UML.Elements.UML_Element_Access;
begin
-- Initialize facility.
AMF.Facility.Initialize;
-- Create URI store.
Store := AMF.Facility.Create_URI_Store (+"local:///test");
-- Lookup for factory.
UML_Factory :=
AMF.Factories.UML_Factories.UML_Factory_Access
(Store.Get_Factory (UML_URI));
-- Create elements.
The_Package := UML_Factory.Create_Package;
The_Class := UML_Factory.Create_Class;
The_Operation := UML_Factory.Create_Operation;
-- Link elements.
Packaged_Element := The_Package.Get_Packaged_Element;
Packaged_Element.Add (The_Class);
Owned_Operation := The_Class.Get_Owned_Operation;
Owned_Operation.Add (The_Operation);
-- Check value of 'namespace' attribute.
The_Namespace := The_Operation.Get_Namespace;
if The_Namespace = null then
raise Program_Error;
end if;
if The_Namespace /= AMF.UML.Namespaces.UML_Namespace_Access (The_Class) then
raise Program_Error;
end if;
-- Check value of 'owner' attribute.
The_Element := The_Operation.Get_Owner;
if The_Element = null then
raise Program_Error;
end if;
if The_Element /= AMF.UML.Elements.UML_Element_Access (The_Class) then
raise Program_Error;
end if;
end Test_222;
| 44.035971 | 79 | 0.53586 |
4acae35ca5826e4357dbf7002a1b75c832ff22eb | 2,167 | adb | Ada | Ada/DataStructures/List/generic_list.adb | egustafson/sandbox | 9804e966347b33558b0497a04edb1a591d2d7773 | [
"Apache-2.0"
] | 2 | 2019-09-27T21:25:26.000Z | 2019-12-29T11:26:54.000Z | Ada/DataStructures/List/generic_list.adb | egustafson/sandbox | 9804e966347b33558b0497a04edb1a591d2d7773 | [
"Apache-2.0"
] | 7 | 2020-08-11T17:32:14.000Z | 2020-08-11T17:32:39.000Z | Ada/DataStructures/List/generic_list.adb | egustafson/sandbox | 9804e966347b33558b0497a04edb1a591d2d7773 | [
"Apache-2.0"
] | 2 | 2016-07-18T10:55:50.000Z | 2020-08-19T01:46:08.000Z | -- generic_list.adb -*- Ada -*-
--
-- This package defines a generic list and list iterator.
--
-- Author: Eric Gustafson
-- Date: 25 August 1998
--
-- ------------------------------------------------------------
--
-- $Revision$
--
-- $Log$
-- ------------------------------------------------------------
package body Generic_List is
-- ----- List_Type Methods ---------------------------------
procedure List_Add( List : in out List_Type;
Element : in Element_Type ) is
begin
if List.Num_Elements = List.List'Last then
declare
New_List : Element_Array_Access
:= new Element_Array(1..List.List'Last+3);
begin
New_List(List.List'Range) := List.List.all;
-- Deallocate list.list access
List.List := New_List;
end;
end if;
List.Num_Elements := List.Num_Elements + 1;
List.List(List.Num_Elements) := Element;
end List_Add;
-- ---------------------------------------------------------
function List_New_Iterator( List : in List_Type )
return List_Iterator_Type is
List_Iterator : List_Iterator_Type;
begin
List_Iterator.List := List.List;
List_Iterator.Num_Elements := List.Num_Elements;
return List_Iterator;
end List_New_Iterator;
-- ----- List_Iterator_Type Methods ------------------------
function Is_Next( List_Iterator : in List_Iterator_Type )
return Boolean is
begin
if List_Iterator.Index <= List_Iterator.Num_Elements then
return True;
else
return False;
end if;
end Is_Next;
-- ---------------------------------------------------------
procedure Get_Next( List_Iterator : in out List_Iterator_Type;
Next_Element : out Element_Type ) is
begin
if not Is_Next( List_Iterator ) then
raise Iterator_Bound_Error;
end if;
Next_Element := List_Iterator.List(List_Iterator.Index);
List_Iterator.Index := List_Iterator.Index + 1;
end Get_Next;
end Generic_List;
| 23.813187 | 67 | 0.515459 |
4a3b54b387d8c0080d29c3585b9ba5ecb0574951 | 3,904 | adb | Ada | source/web/servlet/http/servlet-http_responses.adb | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | null | null | null | source/web/servlet/http/servlet-http_responses.adb | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 2 | 2019-01-16T05:15:20.000Z | 2019-02-03T10:03:32.000Z | source/web/servlet/http/servlet-http_responses.adb | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- Web Framework --
-- --
-- Runtime Library Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2015, Vadim Godunko <vgodunko@gmail.com> --
-- All rights reserved. --
-- --
-- Redistribution and use in source and binary forms, with or without --
-- modification, are permitted provided that the following conditions --
-- are met: --
-- --
-- * Redistributions of source code must retain the above copyright --
-- notice, this list of conditions and the following disclaimer. --
-- --
-- * Redistributions in binary form must reproduce the above copyright --
-- notice, this list of conditions and the following disclaimer in the --
-- documentation and/or other materials provided with the distribution. --
-- --
-- * Neither the name of the Vadim Godunko, IE nor the names of its --
-- contributors may be used to endorse or promote products derived from --
-- this software without specific prior written permission. --
-- --
-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS --
-- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT --
-- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR --
-- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT --
-- HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, --
-- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED --
-- TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR --
-- PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF --
-- LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING --
-- NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS --
-- SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. --
-- --
------------------------------------------------------------------------------
-- $Revision$ $Date$
------------------------------------------------------------------------------
package body Servlet.HTTP_Responses is
----------------
-- Get_Header --
----------------
function Get_Header
(Self : in out HTTP_Servlet_Response'Class;
Name : League.Strings.Universal_String)
return League.Strings.Universal_String
is
Aux : constant League.String_Vectors.Universal_String_Vector
:= Self.Get_Headers (Name);
begin
if Aux.Is_Empty then
return League.Strings.Empty_Universal_String;
else
return Aux (1);
end if;
end Get_Header;
end Servlet.HTTP_Responses;
| 56.57971 | 78 | 0.421619 |
cb36031987e82162d2930c68a37a0d1fbaf33af0 | 256,401 | adb | Ada | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/g-alveop.adb | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/g-alveop.adb | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/g-alveop.adb | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- G N A T . A L T I V E C . V E C T O R _ O P E R A T I O N S --
-- --
-- B o d y --
-- --
-- Copyright (C) 2004-2019, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with GNAT.Altivec.Low_Level_Interface; use GNAT.Altivec.Low_Level_Interface;
package body GNAT.Altivec.Vector_Operations is
--------------------------------------------------------
-- Bodies for generic and specific Altivec operations --
--------------------------------------------------------
-------------
-- vec_abs --
-------------
function vec_abs
(A : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (abs_v16qi (A));
end vec_abs;
function vec_abs
(A : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (abs_v8hi (A));
end vec_abs;
function vec_abs
(A : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (abs_v4si (A));
end vec_abs;
function vec_abs
(A : vector_float) return vector_float
is
begin
return To_LL_VF (abs_v4sf (A));
end vec_abs;
--------------
-- vec_abss --
--------------
function vec_abss
(A : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (abss_v16qi (A));
end vec_abss;
function vec_abss
(A : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (abss_v8hi (A));
end vec_abss;
function vec_abss
(A : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (abss_v4si (A));
end vec_abss;
-------------
-- vec_add --
-------------
function vec_add
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_add;
function vec_add
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_add;
function vec_add
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_add;
function vec_add
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_add;
function vec_add
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_add;
function vec_add
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_add;
function vec_add
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_add;
function vec_add
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_add;
function vec_add
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_add;
function vec_add
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_add;
function vec_add
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_add;
function vec_add
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_add;
function vec_add
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_add;
function vec_add
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_add;
function vec_add
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_add;
function vec_add
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_add;
function vec_add
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_add;
function vec_add
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_add;
function vec_add
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vaddfp (To_LL_VF (A), To_LL_VF (B)));
end vec_add;
----------------
-- vec_vaddfp --
----------------
function vec_vaddfp
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vaddfp (To_LL_VF (A), To_LL_VF (B)));
end vec_vaddfp;
-----------------
-- vec_vadduwm --
-----------------
function vec_vadduwm
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vadduwm;
function vec_vadduwm
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vadduwm;
function vec_vadduwm
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vadduwm;
function vec_vadduwm
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vadduwm;
function vec_vadduwm
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vadduwm;
function vec_vadduwm
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vadduwm;
-----------------
-- vec_vadduhm --
-----------------
function vec_vadduhm
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vadduhm;
function vec_vadduhm
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vadduhm;
function vec_vadduhm
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vadduhm;
function vec_vadduhm
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vadduhm;
function vec_vadduhm
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vadduhm;
function vec_vadduhm
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vadduhm;
-----------------
-- vec_vaddubm --
-----------------
function vec_vaddubm
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddubm;
function vec_vaddubm
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddubm;
function vec_vaddubm
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddubm;
function vec_vaddubm
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddubm;
function vec_vaddubm
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddubm;
function vec_vaddubm
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddubm;
--------------
-- vec_addc --
--------------
function vec_addc
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vaddcuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_addc;
--------------
-- vec_adds --
--------------
function vec_adds
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_adds;
function vec_adds
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_adds;
function vec_adds
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_adds;
function vec_adds
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_adds;
function vec_adds
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_adds;
function vec_adds
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_adds;
function vec_adds
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_adds;
function vec_adds
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_adds;
function vec_adds
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_adds;
function vec_adds
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vaddshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_adds;
function vec_adds
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vaddshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_adds;
function vec_adds
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vaddshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_adds;
function vec_adds
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_adds;
function vec_adds
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_adds;
function vec_adds
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_adds;
function vec_adds
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vaddsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_adds;
function vec_adds
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vaddsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_adds;
function vec_adds
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vaddsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_adds;
-----------------
-- vec_vaddsws --
-----------------
function vec_vaddsws
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vaddsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vaddsws;
function vec_vaddsws
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vaddsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vaddsws;
function vec_vaddsws
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vaddsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vaddsws;
-----------------
-- vec_vadduws --
-----------------
function vec_vadduws
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vadduws;
function vec_vadduws
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vadduws;
function vec_vadduws
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vadduws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vadduws;
-----------------
-- vec_vaddshs --
-----------------
function vec_vaddshs
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vaddshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vaddshs;
function vec_vaddshs
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vaddshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vaddshs;
function vec_vaddshs
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vaddshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vaddshs;
-----------------
-- vec_vadduhs --
-----------------
function vec_vadduhs
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vadduhs;
function vec_vadduhs
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vadduhs;
function vec_vadduhs
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vadduhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vadduhs;
-----------------
-- vec_vaddsbs --
-----------------
function vec_vaddsbs
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddsbs;
function vec_vaddsbs
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddsbs;
function vec_vaddsbs
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vaddsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddsbs;
-----------------
-- vec_vaddubs --
-----------------
function vec_vaddubs
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddubs;
function vec_vaddubs
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddubs;
function vec_vaddubs
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vaddubs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vaddubs;
-------------
-- vec_and --
-------------
function vec_and
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_float;
B : vector_bool_int) return vector_float
is
begin
return To_LL_VF (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_bool_int;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_bool_int;
B : vector_bool_int) return vector_bool_int
is
begin
return To_LL_VBI (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_bool_short;
B : vector_bool_short) return vector_bool_short
is
begin
return To_LL_VBS (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_bool_char;
B : vector_bool_char) return vector_bool_char
is
begin
return To_LL_VBC (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
function vec_and
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vand (To_LL_VSI (A), To_LL_VSI (B)));
end vec_and;
--------------
-- vec_andc --
--------------
function vec_andc
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_float;
B : vector_bool_int) return vector_float
is
begin
return To_LL_VF (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_bool_int;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_bool_int;
B : vector_bool_int) return vector_bool_int
is
begin
return To_LL_VBI (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_bool_short;
B : vector_bool_short) return vector_bool_short
is
begin
return To_LL_VBS (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_bool_char;
B : vector_bool_char) return vector_bool_char
is
begin
return To_LL_VBC (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
function vec_andc
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vandc (To_LL_VSI (A), To_LL_VSI (B)));
end vec_andc;
-------------
-- vec_avg --
-------------
function vec_avg
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vavgub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_avg;
function vec_avg
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vavgsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_avg;
function vec_avg
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vavguh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_avg;
function vec_avg
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vavgsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_avg;
function vec_avg
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vavguw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_avg;
function vec_avg
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vavgsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_avg;
----------------
-- vec_vavgsw --
----------------
function vec_vavgsw
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vavgsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vavgsw;
----------------
-- vec_vavguw --
----------------
function vec_vavguw
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vavguw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vavguw;
----------------
-- vec_vavgsh --
----------------
function vec_vavgsh
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vavgsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vavgsh;
----------------
-- vec_vavguh --
----------------
function vec_vavguh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vavguh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vavguh;
----------------
-- vec_vavgsb --
----------------
function vec_vavgsb
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vavgsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vavgsb;
----------------
-- vec_vavgub --
----------------
function vec_vavgub
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vavgub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vavgub;
--------------
-- vec_ceil --
--------------
function vec_ceil
(A : vector_float) return vector_float
is
begin
return To_LL_VF (vrfip (To_LL_VF (A)));
end vec_ceil;
--------------
-- vec_cmpb --
--------------
function vec_cmpb
(A : vector_float;
B : vector_float) return vector_signed_int
is
begin
return To_LL_VSI (vcmpbfp (To_LL_VF (A), To_LL_VF (B)));
end vec_cmpb;
---------------
-- vec_cmpeq --
---------------
function vec_cmpeq
(A : vector_signed_char;
B : vector_signed_char) return vector_bool_char
is
begin
return To_LL_VBC (vcmpequb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_cmpeq;
function vec_cmpeq
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_bool_char
is
begin
return To_LL_VBC (vcmpequb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_cmpeq;
function vec_cmpeq
(A : vector_signed_short;
B : vector_signed_short) return vector_bool_short
is
begin
return To_LL_VBS (vcmpequh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_cmpeq;
function vec_cmpeq
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_bool_short
is
begin
return To_LL_VBS (vcmpequh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_cmpeq;
function vec_cmpeq
(A : vector_signed_int;
B : vector_signed_int) return vector_bool_int
is
begin
return To_LL_VBI (vcmpequw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_cmpeq;
function vec_cmpeq
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_bool_int
is
begin
return To_LL_VBI (vcmpequw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_cmpeq;
function vec_cmpeq
(A : vector_float;
B : vector_float) return vector_bool_int
is
begin
return To_LL_VBI (vcmpeqfp (To_LL_VF (A), To_LL_VF (B)));
end vec_cmpeq;
------------------
-- vec_vcmpeqfp --
------------------
function vec_vcmpeqfp
(A : vector_float;
B : vector_float) return vector_bool_int
is
begin
return To_LL_VBI (vcmpeqfp (To_LL_VF (A), To_LL_VF (B)));
end vec_vcmpeqfp;
------------------
-- vec_vcmpequw --
------------------
function vec_vcmpequw
(A : vector_signed_int;
B : vector_signed_int) return vector_bool_int
is
begin
return To_LL_VBI (vcmpequw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vcmpequw;
function vec_vcmpequw
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_bool_int
is
begin
return To_LL_VBI (vcmpequw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vcmpequw;
------------------
-- vec_vcmpequh --
------------------
function vec_vcmpequh
(A : vector_signed_short;
B : vector_signed_short) return vector_bool_short
is
begin
return To_LL_VBS (vcmpequh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vcmpequh;
function vec_vcmpequh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_bool_short
is
begin
return To_LL_VBS (vcmpequh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vcmpequh;
------------------
-- vec_vcmpequb --
------------------
function vec_vcmpequb
(A : vector_signed_char;
B : vector_signed_char) return vector_bool_char
is
begin
return To_LL_VBC (vcmpequb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vcmpequb;
function vec_vcmpequb
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_bool_char
is
begin
return To_LL_VBC (vcmpequb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vcmpequb;
---------------
-- vec_cmpge --
---------------
function vec_cmpge
(A : vector_float;
B : vector_float) return vector_bool_int
is
begin
return To_LL_VBI (vcmpgefp (To_LL_VF (A), To_LL_VF (B)));
end vec_cmpge;
---------------
-- vec_cmpgt --
---------------
function vec_cmpgt
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_bool_char
is
begin
return To_LL_VBC (vcmpgtub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_cmpgt;
function vec_cmpgt
(A : vector_signed_char;
B : vector_signed_char) return vector_bool_char
is
begin
return To_LL_VBC (vcmpgtsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_cmpgt;
function vec_cmpgt
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_bool_short
is
begin
return To_LL_VBS (vcmpgtuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_cmpgt;
function vec_cmpgt
(A : vector_signed_short;
B : vector_signed_short) return vector_bool_short
is
begin
return To_LL_VBS (vcmpgtsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_cmpgt;
function vec_cmpgt
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_bool_int
is
begin
return To_LL_VBI (vcmpgtuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_cmpgt;
function vec_cmpgt
(A : vector_signed_int;
B : vector_signed_int) return vector_bool_int
is
begin
return To_LL_VBI (vcmpgtsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_cmpgt;
function vec_cmpgt
(A : vector_float;
B : vector_float) return vector_bool_int
is
begin
return To_LL_VBI (vcmpgtfp (To_LL_VF (A), To_LL_VF (B)));
end vec_cmpgt;
------------------
-- vec_vcmpgtfp --
------------------
function vec_vcmpgtfp
(A : vector_float;
B : vector_float) return vector_bool_int
is
begin
return To_LL_VBI (vcmpgtfp (To_LL_VF (A), To_LL_VF (B)));
end vec_vcmpgtfp;
------------------
-- vec_vcmpgtsw --
------------------
function vec_vcmpgtsw
(A : vector_signed_int;
B : vector_signed_int) return vector_bool_int
is
begin
return To_LL_VBI (vcmpgtsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vcmpgtsw;
------------------
-- vec_vcmpgtuw --
------------------
function vec_vcmpgtuw
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_bool_int
is
begin
return To_LL_VBI (vcmpgtuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vcmpgtuw;
------------------
-- vec_vcmpgtsh --
------------------
function vec_vcmpgtsh
(A : vector_signed_short;
B : vector_signed_short) return vector_bool_short
is
begin
return To_LL_VBS (vcmpgtsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vcmpgtsh;
------------------
-- vec_vcmpgtuh --
------------------
function vec_vcmpgtuh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_bool_short
is
begin
return To_LL_VBS (vcmpgtuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vcmpgtuh;
------------------
-- vec_vcmpgtsb --
------------------
function vec_vcmpgtsb
(A : vector_signed_char;
B : vector_signed_char) return vector_bool_char
is
begin
return To_LL_VBC (vcmpgtsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vcmpgtsb;
------------------
-- vec_vcmpgtub --
------------------
function vec_vcmpgtub
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_bool_char
is
begin
return To_LL_VBC (vcmpgtub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vcmpgtub;
---------------
-- vec_cmple --
---------------
function vec_cmple
(A : vector_float;
B : vector_float) return vector_bool_int
is
begin
return To_LL_VBI (vcmpgefp (To_LL_VF (B), To_LL_VF (A)));
end vec_cmple;
---------------
-- vec_cmplt --
---------------
function vec_cmplt
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_bool_char
is
begin
return To_LL_VBC (vcmpgtub (To_LL_VSC (B), To_LL_VSC (A)));
end vec_cmplt;
function vec_cmplt
(A : vector_signed_char;
B : vector_signed_char) return vector_bool_char
is
begin
return To_LL_VBC (vcmpgtsb (To_LL_VSC (B), To_LL_VSC (A)));
end vec_cmplt;
function vec_cmplt
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_bool_short
is
begin
return To_LL_VBS (vcmpgtuh (To_LL_VSS (B), To_LL_VSS (A)));
end vec_cmplt;
function vec_cmplt
(A : vector_signed_short;
B : vector_signed_short) return vector_bool_short
is
begin
return To_LL_VBS (vcmpgtsh (To_LL_VSS (B), To_LL_VSS (A)));
end vec_cmplt;
function vec_cmplt
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_bool_int
is
begin
return To_LL_VBI (vcmpgtuw (To_LL_VSI (B), To_LL_VSI (A)));
end vec_cmplt;
function vec_cmplt
(A : vector_signed_int;
B : vector_signed_int) return vector_bool_int
is
begin
return To_LL_VBI (vcmpgtsw (To_LL_VSI (B), To_LL_VSI (A)));
end vec_cmplt;
function vec_cmplt
(A : vector_float;
B : vector_float) return vector_bool_int
is
begin
return To_LL_VBI (vcmpgtfp (To_LL_VF (B), To_LL_VF (A)));
end vec_cmplt;
---------------
-- vec_expte --
---------------
function vec_expte
(A : vector_float) return vector_float
is
begin
return To_LL_VF (vexptefp (To_LL_VF (A)));
end vec_expte;
---------------
-- vec_floor --
---------------
function vec_floor
(A : vector_float) return vector_float
is
begin
return To_LL_VF (vrfim (To_LL_VF (A)));
end vec_floor;
------------
-- vec_ld --
------------
function vec_ld
(A : c_long;
B : const_vector_float_ptr) return vector_float
is
begin
return To_LL_VF (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_float_ptr) return vector_float
is
begin
return To_LL_VF (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_vector_bool_int_ptr) return vector_bool_int
is
begin
return To_LL_VBI (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_vector_signed_int_ptr) return vector_signed_int
is
begin
return To_LL_VSI (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_int_ptr) return vector_signed_int
is
begin
return To_LL_VSI (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_long_ptr) return vector_signed_int
is
begin
return To_LL_VSI (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_vector_unsigned_int_ptr) return vector_unsigned_int
is
begin
return To_LL_VUI (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_unsigned_int_ptr) return vector_unsigned_int
is
begin
return To_LL_VUI (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_unsigned_long_ptr) return vector_unsigned_int
is
begin
return To_LL_VUI (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_vector_bool_short_ptr) return vector_bool_short
is
begin
return To_LL_VBS (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_vector_pixel_ptr) return vector_pixel
is
begin
return To_LL_VP (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_vector_signed_short_ptr) return vector_signed_short
is
begin
return To_LL_VSS (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_short_ptr) return vector_signed_short
is
begin
return To_LL_VSS (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_vector_unsigned_short_ptr) return vector_unsigned_short
is
begin
return To_LL_VUS (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_unsigned_short_ptr) return vector_unsigned_short
is
begin
return To_LL_VUS (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_vector_bool_char_ptr) return vector_bool_char
is
begin
return To_LL_VBC (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_vector_signed_char_ptr) return vector_signed_char
is
begin
return To_LL_VSC (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_signed_char_ptr) return vector_signed_char
is
begin
return To_LL_VSC (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_vector_unsigned_char_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvx (A, To_PTR (B)));
end vec_ld;
function vec_ld
(A : c_long;
B : const_unsigned_char_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvx (A, To_PTR (B)));
end vec_ld;
-------------
-- vec_lde --
-------------
function vec_lde
(A : c_long;
B : const_signed_char_ptr) return vector_signed_char
is
begin
return To_LL_VSC (lvebx (A, To_PTR (B)));
end vec_lde;
function vec_lde
(A : c_long;
B : const_unsigned_char_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvebx (A, To_PTR (B)));
end vec_lde;
function vec_lde
(A : c_long;
B : const_short_ptr) return vector_signed_short
is
begin
return To_LL_VSS (lvehx (A, To_PTR (B)));
end vec_lde;
function vec_lde
(A : c_long;
B : const_unsigned_short_ptr) return vector_unsigned_short
is
begin
return To_LL_VUS (lvehx (A, To_PTR (B)));
end vec_lde;
function vec_lde
(A : c_long;
B : const_float_ptr) return vector_float
is
begin
return To_LL_VF (lvewx (A, To_PTR (B)));
end vec_lde;
function vec_lde
(A : c_long;
B : const_int_ptr) return vector_signed_int
is
begin
return To_LL_VSI (lvewx (A, To_PTR (B)));
end vec_lde;
function vec_lde
(A : c_long;
B : const_unsigned_int_ptr) return vector_unsigned_int
is
begin
return To_LL_VUI (lvewx (A, To_PTR (B)));
end vec_lde;
function vec_lde
(A : c_long;
B : const_long_ptr) return vector_signed_int
is
begin
return To_LL_VSI (lvewx (A, To_PTR (B)));
end vec_lde;
function vec_lde
(A : c_long;
B : const_unsigned_long_ptr) return vector_unsigned_int
is
begin
return To_LL_VUI (lvewx (A, To_PTR (B)));
end vec_lde;
---------------
-- vec_lvewx --
---------------
function vec_lvewx
(A : c_long;
B : float_ptr) return vector_float
is
begin
return To_LL_VF (lvewx (A, To_PTR (B)));
end vec_lvewx;
function vec_lvewx
(A : c_long;
B : int_ptr) return vector_signed_int
is
begin
return To_LL_VSI (lvewx (A, To_PTR (B)));
end vec_lvewx;
function vec_lvewx
(A : c_long;
B : unsigned_int_ptr) return vector_unsigned_int
is
begin
return To_LL_VUI (lvewx (A, To_PTR (B)));
end vec_lvewx;
function vec_lvewx
(A : c_long;
B : long_ptr) return vector_signed_int
is
begin
return To_LL_VSI (lvewx (A, To_PTR (B)));
end vec_lvewx;
function vec_lvewx
(A : c_long;
B : unsigned_long_ptr) return vector_unsigned_int
is
begin
return To_LL_VUI (lvewx (A, To_PTR (B)));
end vec_lvewx;
---------------
-- vec_lvehx --
---------------
function vec_lvehx
(A : c_long;
B : short_ptr) return vector_signed_short
is
begin
return To_LL_VSS (lvehx (A, To_PTR (B)));
end vec_lvehx;
function vec_lvehx
(A : c_long;
B : unsigned_short_ptr) return vector_unsigned_short
is
begin
return To_LL_VUS (lvehx (A, To_PTR (B)));
end vec_lvehx;
---------------
-- vec_lvebx --
---------------
function vec_lvebx
(A : c_long;
B : signed_char_ptr) return vector_signed_char
is
begin
return To_LL_VSC (lvebx (A, To_PTR (B)));
end vec_lvebx;
function vec_lvebx
(A : c_long;
B : unsigned_char_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvebx (A, To_PTR (B)));
end vec_lvebx;
-------------
-- vec_ldl --
-------------
function vec_ldl
(A : c_long;
B : const_vector_float_ptr) return vector_float
is
begin
return To_LL_VF (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_float_ptr) return vector_float
is
begin
return To_LL_VF (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_vector_bool_int_ptr) return vector_bool_int
is
begin
return To_LL_VBI (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_vector_signed_int_ptr) return vector_signed_int
is
begin
return To_LL_VSI (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_int_ptr) return vector_signed_int
is
begin
return To_LL_VSI (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_long_ptr) return vector_signed_int
is
begin
return To_LL_VSI (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_vector_unsigned_int_ptr) return vector_unsigned_int
is
begin
return To_LL_VUI (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_unsigned_int_ptr) return vector_unsigned_int
is
begin
return To_LL_VUI (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_unsigned_long_ptr) return vector_unsigned_int
is
begin
return To_LL_VUI (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_vector_bool_short_ptr) return vector_bool_short
is
begin
return To_LL_VBS (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_vector_pixel_ptr) return vector_pixel
is
begin
return To_LL_VP (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_vector_signed_short_ptr) return vector_signed_short
is
begin
return To_LL_VSS (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_short_ptr) return vector_signed_short
is
begin
return To_LL_VSS (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_vector_unsigned_short_ptr) return vector_unsigned_short
is
begin
return To_LL_VUS (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_unsigned_short_ptr) return vector_unsigned_short
is
begin
return To_LL_VUS (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_vector_bool_char_ptr) return vector_bool_char
is
begin
return To_LL_VBC (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_vector_signed_char_ptr) return vector_signed_char
is
begin
return To_LL_VSC (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_signed_char_ptr) return vector_signed_char
is
begin
return To_LL_VSC (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_vector_unsigned_char_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvxl (A, To_PTR (B)));
end vec_ldl;
function vec_ldl
(A : c_long;
B : const_unsigned_char_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvxl (A, To_PTR (B)));
end vec_ldl;
--------------
-- vec_loge --
--------------
function vec_loge
(A : vector_float) return vector_float
is
begin
return To_LL_VF (vlogefp (To_LL_VF (A)));
end vec_loge;
--------------
-- vec_lvsl --
--------------
function vec_lvsl
(A : c_long;
B : constv_unsigned_char_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsl (A, To_PTR (B)));
end vec_lvsl;
function vec_lvsl
(A : c_long;
B : constv_signed_char_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsl (A, To_PTR (B)));
end vec_lvsl;
function vec_lvsl
(A : c_long;
B : constv_unsigned_short_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsl (A, To_PTR (B)));
end vec_lvsl;
function vec_lvsl
(A : c_long;
B : constv_short_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsl (A, To_PTR (B)));
end vec_lvsl;
function vec_lvsl
(A : c_long;
B : constv_unsigned_int_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsl (A, To_PTR (B)));
end vec_lvsl;
function vec_lvsl
(A : c_long;
B : constv_int_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsl (A, To_PTR (B)));
end vec_lvsl;
function vec_lvsl
(A : c_long;
B : constv_unsigned_long_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsl (A, To_PTR (B)));
end vec_lvsl;
function vec_lvsl
(A : c_long;
B : constv_long_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsl (A, To_PTR (B)));
end vec_lvsl;
function vec_lvsl
(A : c_long;
B : constv_float_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsl (A, To_PTR (B)));
end vec_lvsl;
--------------
-- vec_lvsr --
--------------
function vec_lvsr
(A : c_long;
B : constv_unsigned_char_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsr (A, To_PTR (B)));
end vec_lvsr;
function vec_lvsr
(A : c_long;
B : constv_signed_char_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsr (A, To_PTR (B)));
end vec_lvsr;
function vec_lvsr
(A : c_long;
B : constv_unsigned_short_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsr (A, To_PTR (B)));
end vec_lvsr;
function vec_lvsr
(A : c_long;
B : constv_short_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsr (A, To_PTR (B)));
end vec_lvsr;
function vec_lvsr
(A : c_long;
B : constv_unsigned_int_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsr (A, To_PTR (B)));
end vec_lvsr;
function vec_lvsr
(A : c_long;
B : constv_int_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsr (A, To_PTR (B)));
end vec_lvsr;
function vec_lvsr
(A : c_long;
B : constv_unsigned_long_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsr (A, To_PTR (B)));
end vec_lvsr;
function vec_lvsr
(A : c_long;
B : constv_long_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsr (A, To_PTR (B)));
end vec_lvsr;
function vec_lvsr
(A : c_long;
B : constv_float_ptr) return vector_unsigned_char
is
begin
return To_LL_VUC (lvsr (A, To_PTR (B)));
end vec_lvsr;
--------------
-- vec_madd --
--------------
function vec_madd
(A : vector_float;
B : vector_float;
C : vector_float) return vector_float
is
begin
return vmaddfp (A, B, C);
end vec_madd;
---------------
-- vec_madds --
---------------
function vec_madds
(A : vector_signed_short;
B : vector_signed_short;
C : vector_signed_short) return vector_signed_short
is
begin
return vmhaddshs (A, B, C);
end vec_madds;
-------------
-- vec_max --
-------------
function vec_max
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vmaxub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_max;
function vec_max
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vmaxub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_max;
function vec_max
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vmaxub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_max;
function vec_max
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vmaxsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_max;
function vec_max
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vmaxsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_max;
function vec_max
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vmaxsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_max;
function vec_max
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vmaxuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_max;
function vec_max
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vmaxuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_max;
function vec_max
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vmaxuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_max;
function vec_max
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vmaxsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_max;
function vec_max
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vmaxsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_max;
function vec_max
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vmaxsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_max;
function vec_max
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vmaxuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_max;
function vec_max
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vmaxuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_max;
function vec_max
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vmaxuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_max;
function vec_max
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vmaxsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_max;
function vec_max
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vmaxsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_max;
function vec_max
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vmaxsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_max;
function vec_max
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vmaxfp (To_LL_VF (A), To_LL_VF (B)));
end vec_max;
----------------
-- vec_vmaxfp --
----------------
function vec_vmaxfp
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vmaxfp (To_LL_VF (A), To_LL_VF (B)));
end vec_vmaxfp;
----------------
-- vec_vmaxsw --
----------------
function vec_vmaxsw
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vmaxsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmaxsw;
function vec_vmaxsw
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vmaxsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmaxsw;
function vec_vmaxsw
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vmaxsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmaxsw;
----------------
-- vec_vmaxuw --
----------------
function vec_vmaxuw
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vmaxuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmaxuw;
function vec_vmaxuw
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vmaxuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmaxuw;
function vec_vmaxuw
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vmaxuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmaxuw;
----------------
-- vec_vmaxsh --
----------------
function vec_vmaxsh
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vmaxsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmaxsh;
function vec_vmaxsh
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vmaxsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmaxsh;
function vec_vmaxsh
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vmaxsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmaxsh;
----------------
-- vec_vmaxuh --
----------------
function vec_vmaxuh
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vmaxuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmaxuh;
function vec_vmaxuh
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vmaxuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmaxuh;
function vec_vmaxuh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vmaxuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmaxuh;
----------------
-- vec_vmaxsb --
----------------
function vec_vmaxsb
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vmaxsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmaxsb;
function vec_vmaxsb
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vmaxsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmaxsb;
function vec_vmaxsb
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vmaxsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmaxsb;
----------------
-- vec_vmaxub --
----------------
function vec_vmaxub
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vmaxub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmaxub;
function vec_vmaxub
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vmaxub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmaxub;
function vec_vmaxub
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vmaxub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmaxub;
----------------
-- vec_mergeh --
----------------
function vec_mergeh
(A : vector_bool_char;
B : vector_bool_char) return vector_bool_char
is
begin
return To_LL_VBC (vmrghb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_mergeh;
function vec_mergeh
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vmrghb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_mergeh;
function vec_mergeh
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vmrghb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_mergeh;
function vec_mergeh
(A : vector_bool_short;
B : vector_bool_short) return vector_bool_short
is
begin
return To_LL_VBS (vmrghh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mergeh;
function vec_mergeh
(A : vector_pixel;
B : vector_pixel) return vector_pixel
is
begin
return To_LL_VP (vmrghh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mergeh;
function vec_mergeh
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vmrghh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mergeh;
function vec_mergeh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vmrghh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mergeh;
function vec_mergeh
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vmrghw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_mergeh;
function vec_mergeh
(A : vector_bool_int;
B : vector_bool_int) return vector_bool_int
is
begin
return To_LL_VBI (vmrghw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_mergeh;
function vec_mergeh
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vmrghw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_mergeh;
function vec_mergeh
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vmrghw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_mergeh;
----------------
-- vec_vmrghw --
----------------
function vec_vmrghw
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vmrghw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmrghw;
function vec_vmrghw
(A : vector_bool_int;
B : vector_bool_int) return vector_bool_int
is
begin
return To_LL_VBI (vmrghw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmrghw;
function vec_vmrghw
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vmrghw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmrghw;
function vec_vmrghw
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vmrghw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmrghw;
----------------
-- vec_vmrghh --
----------------
function vec_vmrghh
(A : vector_bool_short;
B : vector_bool_short) return vector_bool_short
is
begin
return To_LL_VBS (vmrghh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmrghh;
function vec_vmrghh
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vmrghh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmrghh;
function vec_vmrghh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vmrghh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmrghh;
function vec_vmrghh
(A : vector_pixel;
B : vector_pixel) return vector_pixel
is
begin
return To_LL_VP (vmrghh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmrghh;
----------------
-- vec_vmrghb --
----------------
function vec_vmrghb
(A : vector_bool_char;
B : vector_bool_char) return vector_bool_char
is
begin
return To_LL_VBC (vmrghb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmrghb;
function vec_vmrghb
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vmrghb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmrghb;
function vec_vmrghb
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vmrghb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmrghb;
----------------
-- vec_mergel --
----------------
function vec_mergel
(A : vector_bool_char;
B : vector_bool_char) return vector_bool_char
is
begin
return To_LL_VBC (vmrglb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_mergel;
function vec_mergel
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vmrglb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_mergel;
function vec_mergel
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vmrglb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_mergel;
function vec_mergel
(A : vector_bool_short;
B : vector_bool_short) return vector_bool_short
is
begin
return To_LL_VBS (vmrglh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mergel;
function vec_mergel
(A : vector_pixel;
B : vector_pixel) return vector_pixel
is
begin
return To_LL_VP (vmrglh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mergel;
function vec_mergel
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vmrglh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mergel;
function vec_mergel
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vmrglh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mergel;
function vec_mergel
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vmrglw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_mergel;
function vec_mergel
(A : vector_bool_int;
B : vector_bool_int) return vector_bool_int
is
begin
return To_LL_VBI (vmrglw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_mergel;
function vec_mergel
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vmrglw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_mergel;
function vec_mergel
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vmrglw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_mergel;
----------------
-- vec_vmrglw --
----------------
function vec_vmrglw
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vmrglw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmrglw;
function vec_vmrglw
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vmrglw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmrglw;
function vec_vmrglw
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vmrglw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmrglw;
function vec_vmrglw
(A : vector_bool_int;
B : vector_bool_int) return vector_bool_int
is
begin
return To_LL_VBI (vmrglw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vmrglw;
----------------
-- vec_vmrglh --
----------------
function vec_vmrglh
(A : vector_bool_short;
B : vector_bool_short) return vector_bool_short
is
begin
return To_LL_VBS (vmrglh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmrglh;
function vec_vmrglh
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vmrglh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmrglh;
function vec_vmrglh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vmrglh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmrglh;
function vec_vmrglh
(A : vector_pixel;
B : vector_pixel) return vector_pixel
is
begin
return To_LL_VP (vmrglh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmrglh;
----------------
-- vec_vmrglb --
----------------
function vec_vmrglb
(A : vector_bool_char;
B : vector_bool_char) return vector_bool_char
is
begin
return To_LL_VBC (vmrglb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmrglb;
function vec_vmrglb
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vmrglb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmrglb;
function vec_vmrglb
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vmrglb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmrglb;
----------------
-- vec_mfvscr --
----------------
function vec_mfvscr return vector_unsigned_short
is
begin
return To_LL_VUS (mfvscr);
end vec_mfvscr;
-------------
-- vec_min --
-------------
function vec_min
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vminub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_min;
function vec_min
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vminub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_min;
function vec_min
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vminub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_min;
function vec_min
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vminsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_min;
function vec_min
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vminsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_min;
function vec_min
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vminsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_min;
function vec_min
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vminuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_min;
function vec_min
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vminuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_min;
function vec_min
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vminuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_min;
function vec_min
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vminsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_min;
function vec_min
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vminsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_min;
function vec_min
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vminsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_min;
function vec_min
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vminuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_min;
function vec_min
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vminuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_min;
function vec_min
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vminuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_min;
function vec_min
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vminsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_min;
function vec_min
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vminsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_min;
function vec_min
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vminsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_min;
function vec_min
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vminfp (To_LL_VF (A), To_LL_VF (B)));
end vec_min;
-- vec_vminfp --
function vec_vminfp
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vminfp (To_LL_VF (A), To_LL_VF (B)));
end vec_vminfp;
-- vec_vminsw --
function vec_vminsw
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vminsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vminsw;
function vec_vminsw
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vminsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vminsw;
function vec_vminsw
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vminsw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vminsw;
-- vec_vminuw --
function vec_vminuw
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vminuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vminuw;
function vec_vminuw
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vminuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vminuw;
function vec_vminuw
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vminuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vminuw;
-- vec_vminsh --
function vec_vminsh
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vminsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vminsh;
function vec_vminsh
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vminsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vminsh;
function vec_vminsh
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vminsh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vminsh;
----------------
-- vec_vminuh --
----------------
function vec_vminuh
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vminuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vminuh;
function vec_vminuh
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vminuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vminuh;
function vec_vminuh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vminuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vminuh;
----------------
-- vec_vminsb --
----------------
function vec_vminsb
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vminsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vminsb;
function vec_vminsb
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vminsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vminsb;
function vec_vminsb
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vminsb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vminsb;
----------------
-- vec_vminub --
----------------
function vec_vminub
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vminub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vminub;
function vec_vminub
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vminub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vminub;
function vec_vminub
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vminub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vminub;
---------------
-- vec_mladd --
---------------
function vec_mladd
(A : vector_signed_short;
B : vector_signed_short;
C : vector_signed_short) return vector_signed_short
is
begin
return vmladduhm (A, B, C);
end vec_mladd;
function vec_mladd
(A : vector_signed_short;
B : vector_unsigned_short;
C : vector_unsigned_short) return vector_signed_short
is
begin
return vmladduhm (A, To_LL_VSS (B), To_LL_VSS (C));
end vec_mladd;
function vec_mladd
(A : vector_unsigned_short;
B : vector_signed_short;
C : vector_signed_short) return vector_signed_short
is
begin
return vmladduhm (To_LL_VSS (A), B, C);
end vec_mladd;
function vec_mladd
(A : vector_unsigned_short;
B : vector_unsigned_short;
C : vector_unsigned_short) return vector_unsigned_short
is
begin
return
To_LL_VUS (vmladduhm (To_LL_VSS (A), To_LL_VSS (B), To_LL_VSS (C)));
end vec_mladd;
----------------
-- vec_mradds --
----------------
function vec_mradds
(A : vector_signed_short;
B : vector_signed_short;
C : vector_signed_short) return vector_signed_short
is
begin
return vmhraddshs (A, B, C);
end vec_mradds;
--------------
-- vec_msum --
--------------
function vec_msum
(A : vector_unsigned_char;
B : vector_unsigned_char;
C : vector_unsigned_int) return vector_unsigned_int
is
begin
return
To_LL_VUI (vmsumubm (To_LL_VSC (A), To_LL_VSC (B), To_LL_VSI (C)));
end vec_msum;
function vec_msum
(A : vector_signed_char;
B : vector_unsigned_char;
C : vector_signed_int) return vector_signed_int
is
begin
return
To_LL_VSI (vmsummbm (To_LL_VSC (A), To_LL_VSC (B), To_LL_VSI (C)));
end vec_msum;
function vec_msum
(A : vector_unsigned_short;
B : vector_unsigned_short;
C : vector_unsigned_int) return vector_unsigned_int
is
begin
return
To_LL_VUI (vmsumuhm (To_LL_VSS (A), To_LL_VSS (B), To_LL_VSI (C)));
end vec_msum;
function vec_msum
(A : vector_signed_short;
B : vector_signed_short;
C : vector_signed_int) return vector_signed_int
is
begin
return
To_LL_VSI (vmsumshm (To_LL_VSS (A), To_LL_VSS (B), To_LL_VSI (C)));
end vec_msum;
------------------
-- vec_vmsumshm --
------------------
function vec_vmsumshm
(A : vector_signed_short;
B : vector_signed_short;
C : vector_signed_int) return vector_signed_int
is
begin
return
To_LL_VSI (vmsumshm (To_LL_VSS (A), To_LL_VSS (B), To_LL_VSI (C)));
end vec_vmsumshm;
------------------
-- vec_vmsumuhm --
------------------
function vec_vmsumuhm
(A : vector_unsigned_short;
B : vector_unsigned_short;
C : vector_unsigned_int) return vector_unsigned_int
is
begin
return
To_LL_VUI (vmsumuhm (To_LL_VSS (A), To_LL_VSS (B), To_LL_VSI (C)));
end vec_vmsumuhm;
------------------
-- vec_vmsummbm --
------------------
function vec_vmsummbm
(A : vector_signed_char;
B : vector_unsigned_char;
C : vector_signed_int) return vector_signed_int
is
begin
return
To_LL_VSI (vmsummbm (To_LL_VSC (A), To_LL_VSC (B), To_LL_VSI (C)));
end vec_vmsummbm;
------------------
-- vec_vmsumubm --
------------------
function vec_vmsumubm
(A : vector_unsigned_char;
B : vector_unsigned_char;
C : vector_unsigned_int) return vector_unsigned_int
is
begin
return
To_LL_VUI (vmsumubm (To_LL_VSC (A), To_LL_VSC (B), To_LL_VSI (C)));
end vec_vmsumubm;
---------------
-- vec_msums --
---------------
function vec_msums
(A : vector_unsigned_short;
B : vector_unsigned_short;
C : vector_unsigned_int) return vector_unsigned_int
is
begin
return
To_LL_VUI (vmsumuhs (To_LL_VSS (A), To_LL_VSS (B), To_LL_VSI (C)));
end vec_msums;
function vec_msums
(A : vector_signed_short;
B : vector_signed_short;
C : vector_signed_int) return vector_signed_int
is
begin
return
To_LL_VSI (vmsumshs (To_LL_VSS (A), To_LL_VSS (B), To_LL_VSI (C)));
end vec_msums;
------------------
-- vec_vmsumshs --
------------------
function vec_vmsumshs
(A : vector_signed_short;
B : vector_signed_short;
C : vector_signed_int) return vector_signed_int
is
begin
return
To_LL_VSI (vmsumshs (To_LL_VSS (A), To_LL_VSS (B), To_LL_VSI (C)));
end vec_vmsumshs;
------------------
-- vec_vmsumuhs --
------------------
function vec_vmsumuhs
(A : vector_unsigned_short;
B : vector_unsigned_short;
C : vector_unsigned_int) return vector_unsigned_int
is
begin
return
To_LL_VUI (vmsumuhs (To_LL_VSS (A), To_LL_VSS (B), To_LL_VSI (C)));
end vec_vmsumuhs;
----------------
-- vec_mtvscr --
----------------
procedure vec_mtvscr
(A : vector_signed_int)
is
begin
mtvscr (To_LL_VSI (A));
end vec_mtvscr;
procedure vec_mtvscr
(A : vector_unsigned_int)
is
begin
mtvscr (To_LL_VSI (A));
end vec_mtvscr;
procedure vec_mtvscr
(A : vector_bool_int)
is
begin
mtvscr (To_LL_VSI (A));
end vec_mtvscr;
procedure vec_mtvscr
(A : vector_signed_short)
is
begin
mtvscr (To_LL_VSI (A));
end vec_mtvscr;
procedure vec_mtvscr
(A : vector_unsigned_short)
is
begin
mtvscr (To_LL_VSI (A));
end vec_mtvscr;
procedure vec_mtvscr
(A : vector_bool_short)
is
begin
mtvscr (To_LL_VSI (A));
end vec_mtvscr;
procedure vec_mtvscr
(A : vector_pixel)
is
begin
mtvscr (To_LL_VSI (A));
end vec_mtvscr;
procedure vec_mtvscr
(A : vector_signed_char)
is
begin
mtvscr (To_LL_VSI (A));
end vec_mtvscr;
procedure vec_mtvscr
(A : vector_unsigned_char)
is
begin
mtvscr (To_LL_VSI (A));
end vec_mtvscr;
procedure vec_mtvscr
(A : vector_bool_char)
is
begin
mtvscr (To_LL_VSI (A));
end vec_mtvscr;
--------------
-- vec_mule --
--------------
function vec_mule
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_short
is
begin
return To_LL_VUS (vmuleub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_mule;
function vec_mule
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_short
is
begin
return To_LL_VSS (vmulesb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_mule;
function vec_mule
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_int
is
begin
return To_LL_VUI (vmuleuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mule;
function vec_mule
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_int
is
begin
return To_LL_VSI (vmulesh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mule;
-----------------
-- vec_vmulesh --
-----------------
function vec_vmulesh
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_int
is
begin
return To_LL_VSI (vmulesh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmulesh;
-----------------
-- vec_vmuleuh --
-----------------
function vec_vmuleuh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_int
is
begin
return To_LL_VUI (vmuleuh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmuleuh;
-----------------
-- vec_vmulesb --
-----------------
function vec_vmulesb
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_short
is
begin
return To_LL_VSS (vmuleub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmulesb;
-----------------
-- vec_vmuleub --
-----------------
function vec_vmuleub
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_short
is
begin
return To_LL_VUS (vmuleub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmuleub;
--------------
-- vec_mulo --
--------------
function vec_mulo
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_short
is
begin
return To_LL_VUS (vmuloub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_mulo;
function vec_mulo
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_short
is
begin
return To_LL_VSS (vmulosb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_mulo;
function vec_mulo
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_int
is
begin
return To_LL_VUI (vmulouh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mulo;
function vec_mulo
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_int
is
begin
return To_LL_VSI (vmulosh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_mulo;
-----------------
-- vec_vmulosh --
-----------------
function vec_vmulosh
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_int
is
begin
return To_LL_VSI (vmulosh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmulosh;
-----------------
-- vec_vmulouh --
-----------------
function vec_vmulouh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_int
is
begin
return To_LL_VUI (vmulouh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vmulouh;
-----------------
-- vec_vmulosb --
-----------------
function vec_vmulosb
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_short
is
begin
return To_LL_VSS (vmulosb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmulosb;
-----------------
-- vec_vmuloub --
-----------------
function vec_vmuloub
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_short
is
begin
return To_LL_VUS (vmuloub (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vmuloub;
---------------
-- vec_nmsub --
---------------
function vec_nmsub
(A : vector_float;
B : vector_float;
C : vector_float) return vector_float
is
begin
return To_LL_VF (vnmsubfp (To_LL_VF (A), To_LL_VF (B), To_LL_VF (C)));
end vec_nmsub;
-------------
-- vec_nor --
-------------
function vec_nor
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vnor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_nor;
function vec_nor
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vnor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_nor;
function vec_nor
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vnor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_nor;
function vec_nor
(A : vector_bool_int;
B : vector_bool_int) return vector_bool_int
is
begin
return To_LL_VBI (vnor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_nor;
function vec_nor
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vnor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_nor;
function vec_nor
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vnor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_nor;
function vec_nor
(A : vector_bool_short;
B : vector_bool_short) return vector_bool_short
is
begin
return To_LL_VBS (vnor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_nor;
function vec_nor
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vnor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_nor;
function vec_nor
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vnor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_nor;
function vec_nor
(A : vector_bool_char;
B : vector_bool_char) return vector_bool_char
is
begin
return To_LL_VBC (vnor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_nor;
------------
-- vec_or --
------------
function vec_or
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_float;
B : vector_bool_int) return vector_float
is
begin
return To_LL_VF (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_bool_int;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_bool_int;
B : vector_bool_int) return vector_bool_int
is
begin
return To_LL_VBI (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_bool_short;
B : vector_bool_short) return vector_bool_short
is
begin
return To_LL_VBS (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_bool_char;
B : vector_bool_char) return vector_bool_char
is
begin
return To_LL_VBC (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
function vec_or
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_or;
--------------
-- vec_pack --
--------------
function vec_pack
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_char
is
begin
return To_LL_VSC (vpkuhum (To_LL_VSS (A), To_LL_VSS (B)));
end vec_pack;
function vec_pack
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_char
is
begin
return To_LL_VUC (vpkuhum (To_LL_VSS (A), To_LL_VSS (B)));
end vec_pack;
function vec_pack
(A : vector_bool_short;
B : vector_bool_short) return vector_bool_char
is
begin
return To_LL_VBC (vpkuhum (To_LL_VSS (A), To_LL_VSS (B)));
end vec_pack;
function vec_pack
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_short
is
begin
return To_LL_VSS (vpkuwum (To_LL_VSI (A), To_LL_VSI (B)));
end vec_pack;
function vec_pack
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vpkuwum (To_LL_VSI (A), To_LL_VSI (B)));
end vec_pack;
function vec_pack
(A : vector_bool_int;
B : vector_bool_int) return vector_bool_short
is
begin
return To_LL_VBS (vpkuwum (To_LL_VSI (A), To_LL_VSI (B)));
end vec_pack;
-----------------
-- vec_vpkuwum --
-----------------
function vec_vpkuwum
(A : vector_bool_int;
B : vector_bool_int) return vector_bool_short
is
begin
return To_LL_VBS (vpkuwum (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vpkuwum;
function vec_vpkuwum
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_short
is
begin
return To_LL_VSS (vpkuwum (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vpkuwum;
function vec_vpkuwum
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vpkuwum (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vpkuwum;
-----------------
-- vec_vpkuhum --
-----------------
function vec_vpkuhum
(A : vector_bool_short;
B : vector_bool_short) return vector_bool_char
is
begin
return To_LL_VBC (vpkuhum (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vpkuhum;
function vec_vpkuhum
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_char
is
begin
return To_LL_VSC (vpkuhum (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vpkuhum;
function vec_vpkuhum
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_char
is
begin
return To_LL_VUC (vpkuhum (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vpkuhum;
----------------
-- vec_packpx --
----------------
function vec_packpx
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_pixel
is
begin
return To_LL_VP (vpkpx (To_LL_VSI (A), To_LL_VSI (B)));
end vec_packpx;
---------------
-- vec_packs --
---------------
function vec_packs
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_char
is
begin
return To_LL_VUC (vpkuhus (To_LL_VSS (A), To_LL_VSS (B)));
end vec_packs;
function vec_packs
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_char
is
begin
return To_LL_VSC (vpkshss (To_LL_VSS (A), To_LL_VSS (B)));
end vec_packs;
function vec_packs
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vpkuwus (To_LL_VSI (A), To_LL_VSI (B)));
end vec_packs;
function vec_packs
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_short
is
begin
return To_LL_VSS (vpkswss (To_LL_VSI (A), To_LL_VSI (B)));
end vec_packs;
-----------------
-- vec_vpkswss --
-----------------
function vec_vpkswss
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_short
is
begin
return To_LL_VSS (vpkswss (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vpkswss;
-----------------
-- vec_vpkuwus --
-----------------
function vec_vpkuwus
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vpkuwus (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vpkuwus;
-----------------
-- vec_vpkshss --
-----------------
function vec_vpkshss
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_char
is
begin
return To_LL_VSC (vpkshss (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vpkshss;
-----------------
-- vec_vpkuhus --
-----------------
function vec_vpkuhus
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_char
is
begin
return To_LL_VUC (vpkuhus (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vpkuhus;
----------------
-- vec_packsu --
----------------
function vec_packsu
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_char
is
begin
return To_LL_VUC (vpkuhus (To_LL_VSS (A), To_LL_VSS (B)));
end vec_packsu;
function vec_packsu
(A : vector_signed_short;
B : vector_signed_short) return vector_unsigned_char
is
begin
return To_LL_VUC (vpkshus (To_LL_VSS (A), To_LL_VSS (B)));
end vec_packsu;
function vec_packsu
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vpkuwus (To_LL_VSI (A), To_LL_VSI (B)));
end vec_packsu;
function vec_packsu
(A : vector_signed_int;
B : vector_signed_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vpkswus (To_LL_VSI (A), To_LL_VSI (B)));
end vec_packsu;
-----------------
-- vec_vpkswus --
-----------------
function vec_vpkswus
(A : vector_signed_int;
B : vector_signed_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vpkswus (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vpkswus;
-----------------
-- vec_vpkshus --
-----------------
function vec_vpkshus
(A : vector_signed_short;
B : vector_signed_short) return vector_unsigned_char
is
begin
return To_LL_VUC (vpkshus (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vpkshus;
--------------
-- vec_perm --
--------------
function vec_perm
(A : vector_float;
B : vector_float;
C : vector_unsigned_char) return vector_float
is
begin
return
To_LL_VF (vperm_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSC (C)));
end vec_perm;
function vec_perm
(A : vector_signed_int;
B : vector_signed_int;
C : vector_unsigned_char) return vector_signed_int
is
begin
return
To_LL_VSI (vperm_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSC (C)));
end vec_perm;
function vec_perm
(A : vector_unsigned_int;
B : vector_unsigned_int;
C : vector_unsigned_char) return vector_unsigned_int
is
begin
return
To_LL_VUI (vperm_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSC (C)));
end vec_perm;
function vec_perm
(A : vector_bool_int;
B : vector_bool_int;
C : vector_unsigned_char) return vector_bool_int
is
begin
return
To_LL_VBI (vperm_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSC (C)));
end vec_perm;
function vec_perm
(A : vector_signed_short;
B : vector_signed_short;
C : vector_unsigned_char) return vector_signed_short
is
begin
return
To_LL_VSS (vperm_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSC (C)));
end vec_perm;
function vec_perm
(A : vector_unsigned_short;
B : vector_unsigned_short;
C : vector_unsigned_char) return vector_unsigned_short
is
begin
return
To_LL_VUS (vperm_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSC (C)));
end vec_perm;
function vec_perm
(A : vector_bool_short;
B : vector_bool_short;
C : vector_unsigned_char) return vector_bool_short
is
begin
return
To_LL_VBS (vperm_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSC (C)));
end vec_perm;
function vec_perm
(A : vector_pixel;
B : vector_pixel;
C : vector_unsigned_char) return vector_pixel
is
begin
return To_LL_VP
(vperm_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSC (C)));
end vec_perm;
function vec_perm
(A : vector_signed_char;
B : vector_signed_char;
C : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC
(vperm_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSC (C)));
end vec_perm;
function vec_perm
(A : vector_unsigned_char;
B : vector_unsigned_char;
C : vector_unsigned_char) return vector_unsigned_char
is
begin
return
To_LL_VUC (vperm_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSC (C)));
end vec_perm;
function vec_perm
(A : vector_bool_char;
B : vector_bool_char;
C : vector_unsigned_char) return vector_bool_char
is
begin
return
To_LL_VBC (vperm_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSC (C)));
end vec_perm;
------------
-- vec_re --
------------
function vec_re
(A : vector_float) return vector_float
is
begin
return To_LL_VF (vrefp (To_LL_VF (A)));
end vec_re;
------------
-- vec_rl --
------------
function vec_rl
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vrlb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_rl;
function vec_rl
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vrlb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_rl;
function vec_rl
(A : vector_signed_short;
B : vector_unsigned_short) return vector_signed_short
is
begin
return To_LL_VSS (vrlh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_rl;
function vec_rl
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vrlh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_rl;
function vec_rl
(A : vector_signed_int;
B : vector_unsigned_int) return vector_signed_int
is
begin
return To_LL_VSI (vrlw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_rl;
function vec_rl
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vrlw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_rl;
--------------
-- vec_vrlw --
--------------
function vec_vrlw
(A : vector_signed_int;
B : vector_unsigned_int) return vector_signed_int
is
begin
return To_LL_VSI (vrlw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vrlw;
function vec_vrlw
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vrlw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vrlw;
--------------
-- vec_vrlh --
--------------
function vec_vrlh
(A : vector_signed_short;
B : vector_unsigned_short) return vector_signed_short
is
begin
return To_LL_VSS (vrlh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vrlh;
function vec_vrlh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vrlh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vrlh;
--------------
-- vec_vrlb --
--------------
function vec_vrlb
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vrlb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vrlb;
function vec_vrlb
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vrlb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vrlb;
---------------
-- vec_round --
---------------
function vec_round
(A : vector_float) return vector_float
is
begin
return To_LL_VF (vrfin (To_LL_VF (A)));
end vec_round;
----------------
-- vec_rsqrte --
----------------
function vec_rsqrte
(A : vector_float) return vector_float
is
begin
return To_LL_VF (vrsqrtefp (To_LL_VF (A)));
end vec_rsqrte;
-------------
-- vec_sel --
-------------
function vec_sel
(A : vector_float;
B : vector_float;
C : vector_bool_int) return vector_float
is
begin
return To_LL_VF (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_float;
B : vector_float;
C : vector_unsigned_int) return vector_float
is
begin
return To_LL_VF (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_signed_int;
B : vector_signed_int;
C : vector_bool_int) return vector_signed_int
is
begin
return
To_LL_VSI (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_signed_int;
B : vector_signed_int;
C : vector_unsigned_int) return vector_signed_int
is
begin
return
To_LL_VSI (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_unsigned_int;
B : vector_unsigned_int;
C : vector_bool_int) return vector_unsigned_int
is
begin
return
To_LL_VUI (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_unsigned_int;
B : vector_unsigned_int;
C : vector_unsigned_int) return vector_unsigned_int
is
begin
return
To_LL_VUI (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_bool_int;
B : vector_bool_int;
C : vector_bool_int) return vector_bool_int
is
begin
return
To_LL_VBI (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_bool_int;
B : vector_bool_int;
C : vector_unsigned_int) return vector_bool_int
is
begin
return
To_LL_VBI (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_signed_short;
B : vector_signed_short;
C : vector_bool_short) return vector_signed_short
is
begin
return
To_LL_VSS (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_signed_short;
B : vector_signed_short;
C : vector_unsigned_short) return vector_signed_short
is
begin
return
To_LL_VSS (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_unsigned_short;
B : vector_unsigned_short;
C : vector_bool_short) return vector_unsigned_short
is
begin
return
To_LL_VUS (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_unsigned_short;
B : vector_unsigned_short;
C : vector_unsigned_short) return vector_unsigned_short
is
begin
return
To_LL_VUS (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_bool_short;
B : vector_bool_short;
C : vector_bool_short) return vector_bool_short
is
begin
return
To_LL_VBS (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_bool_short;
B : vector_bool_short;
C : vector_unsigned_short) return vector_bool_short
is
begin
return
To_LL_VBS (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_signed_char;
B : vector_signed_char;
C : vector_bool_char) return vector_signed_char
is
begin
return
To_LL_VSC (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_signed_char;
B : vector_signed_char;
C : vector_unsigned_char) return vector_signed_char
is
begin
return
To_LL_VSC (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_unsigned_char;
B : vector_unsigned_char;
C : vector_bool_char) return vector_unsigned_char
is
begin
return
To_LL_VUC (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_unsigned_char;
B : vector_unsigned_char;
C : vector_unsigned_char) return vector_unsigned_char
is
begin
return
To_LL_VUC (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_bool_char;
B : vector_bool_char;
C : vector_bool_char) return vector_bool_char
is
begin
return
To_LL_VBC (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
function vec_sel
(A : vector_bool_char;
B : vector_bool_char;
C : vector_unsigned_char) return vector_bool_char
is
begin
return
To_LL_VBC (vsel_4si (To_LL_VSI (A), To_LL_VSI (B), To_LL_VSI (C)));
end vec_sel;
------------
-- vec_sl --
------------
function vec_sl
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vslb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sl;
function vec_sl
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vslb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sl;
function vec_sl
(A : vector_signed_short;
B : vector_unsigned_short) return vector_signed_short
is
begin
return To_LL_VSS (vslh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sl;
function vec_sl
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vslh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sl;
function vec_sl
(A : vector_signed_int;
B : vector_unsigned_int) return vector_signed_int
is
begin
return To_LL_VSI (vslw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sl;
function vec_sl
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vslw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sl;
--------------
-- vec_vslw --
--------------
function vec_vslw
(A : vector_signed_int;
B : vector_unsigned_int) return vector_signed_int
is
begin
return To_LL_VSI (vslw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vslw;
function vec_vslw
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vslw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vslw;
--------------
-- vec_vslh --
--------------
function vec_vslh
(A : vector_signed_short;
B : vector_unsigned_short) return vector_signed_short
is
begin
return To_LL_VSS (vslh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vslh;
function vec_vslh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vslh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vslh;
--------------
-- vec_vslb --
--------------
function vec_vslb
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vslb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vslb;
function vec_vslb
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vslb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vslb;
-------------
-- vec_sll --
-------------
function vec_sll
(A : vector_signed_int;
B : vector_unsigned_int) return vector_signed_int
is
begin
return To_LL_VSI (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_signed_int;
B : vector_unsigned_short) return vector_signed_int
is
begin
return To_LL_VSI (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_signed_int;
B : vector_unsigned_char) return vector_signed_int
is
begin
return To_LL_VSI (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_unsigned_int;
B : vector_unsigned_short) return vector_unsigned_int
is
begin
return To_LL_VUI (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_unsigned_int;
B : vector_unsigned_char) return vector_unsigned_int
is
begin
return To_LL_VUI (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_bool_int;
B : vector_unsigned_int) return vector_bool_int
is
begin
return To_LL_VBI (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_bool_int;
B : vector_unsigned_short) return vector_bool_int
is
begin
return To_LL_VBI (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_bool_int;
B : vector_unsigned_char) return vector_bool_int
is
begin
return To_LL_VBI (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_signed_short;
B : vector_unsigned_int) return vector_signed_short
is
begin
return To_LL_VSS (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_signed_short;
B : vector_unsigned_short) return vector_signed_short
is
begin
return To_LL_VSS (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_signed_short;
B : vector_unsigned_char) return vector_signed_short
is
begin
return To_LL_VSS (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_unsigned_short;
B : vector_unsigned_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_unsigned_short;
B : vector_unsigned_char) return vector_unsigned_short
is
begin
return To_LL_VUS (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_bool_short;
B : vector_unsigned_int) return vector_bool_short
is
begin
return To_LL_VBS (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_bool_short;
B : vector_unsigned_short) return vector_bool_short
is
begin
return To_LL_VBS (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_bool_short;
B : vector_unsigned_char) return vector_bool_short
is
begin
return To_LL_VBS (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_pixel;
B : vector_unsigned_int) return vector_pixel
is
begin
return To_LL_VP (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_pixel;
B : vector_unsigned_short) return vector_pixel
is
begin
return To_LL_VP (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_pixel;
B : vector_unsigned_char) return vector_pixel
is
begin
return To_LL_VP (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_signed_char;
B : vector_unsigned_int) return vector_signed_char
is
begin
return To_LL_VSC (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_signed_char;
B : vector_unsigned_short) return vector_signed_char
is
begin
return To_LL_VSC (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_unsigned_char;
B : vector_unsigned_int) return vector_unsigned_char
is
begin
return To_LL_VUC (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_unsigned_char;
B : vector_unsigned_short) return vector_unsigned_char
is
begin
return To_LL_VUC (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_bool_char;
B : vector_unsigned_int) return vector_bool_char
is
begin
return To_LL_VBC (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_bool_char;
B : vector_unsigned_short) return vector_bool_char
is
begin
return To_LL_VBC (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
function vec_sll
(A : vector_bool_char;
B : vector_unsigned_char) return vector_bool_char
is
begin
return To_LL_VBC (vsl (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sll;
-------------
-- vec_slo --
-------------
function vec_slo
(A : vector_float;
B : vector_signed_char) return vector_float
is
begin
return To_LL_VF (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_float;
B : vector_unsigned_char) return vector_float
is
begin
return To_LL_VF (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_signed_int;
B : vector_signed_char) return vector_signed_int
is
begin
return To_LL_VSI (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_signed_int;
B : vector_unsigned_char) return vector_signed_int
is
begin
return To_LL_VSI (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_unsigned_int;
B : vector_signed_char) return vector_unsigned_int
is
begin
return To_LL_VUI (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_unsigned_int;
B : vector_unsigned_char) return vector_unsigned_int
is
begin
return To_LL_VUI (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_signed_short;
B : vector_signed_char) return vector_signed_short
is
begin
return To_LL_VSS (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_signed_short;
B : vector_unsigned_char) return vector_signed_short
is
begin
return To_LL_VSS (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_unsigned_short;
B : vector_signed_char) return vector_unsigned_short
is
begin
return To_LL_VUS (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_unsigned_short;
B : vector_unsigned_char) return vector_unsigned_short
is
begin
return To_LL_VUS (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_pixel;
B : vector_signed_char) return vector_pixel
is
begin
return To_LL_VP (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_pixel;
B : vector_unsigned_char) return vector_pixel
is
begin
return To_LL_VP (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_unsigned_char;
B : vector_signed_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
function vec_slo
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vslo (To_LL_VSI (A), To_LL_VSI (B)));
end vec_slo;
------------
-- vec_sr --
------------
function vec_sr
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vsrb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sr;
function vec_sr
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsrb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sr;
function vec_sr
(A : vector_signed_short;
B : vector_unsigned_short) return vector_signed_short
is
begin
return To_LL_VSS (vsrh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sr;
function vec_sr
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsrh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sr;
function vec_sr
(A : vector_signed_int;
B : vector_unsigned_int) return vector_signed_int
is
begin
return To_LL_VSI (vsrw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sr;
function vec_sr
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsrw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sr;
--------------
-- vec_vsrw --
--------------
function vec_vsrw
(A : vector_signed_int;
B : vector_unsigned_int) return vector_signed_int
is
begin
return To_LL_VSI (vsrw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsrw;
function vec_vsrw
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsrw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsrw;
--------------
-- vec_vsrh --
--------------
function vec_vsrh
(A : vector_signed_short;
B : vector_unsigned_short) return vector_signed_short
is
begin
return To_LL_VSS (vsrh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsrh;
function vec_vsrh
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsrh (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsrh;
--------------
-- vec_vsrb --
--------------
function vec_vsrb
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vsrb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsrb;
function vec_vsrb
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsrb (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsrb;
-------------
-- vec_sra --
-------------
function vec_sra
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vsrab (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sra;
function vec_sra
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsrab (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sra;
function vec_sra
(A : vector_signed_short;
B : vector_unsigned_short) return vector_signed_short
is
begin
return To_LL_VSS (vsrah (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sra;
function vec_sra
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsrah (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sra;
function vec_sra
(A : vector_signed_int;
B : vector_unsigned_int) return vector_signed_int
is
begin
return To_LL_VSI (vsraw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sra;
function vec_sra
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsraw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sra;
---------------
-- vec_vsraw --
---------------
function vec_vsraw
(A : vector_signed_int;
B : vector_unsigned_int) return vector_signed_int
is
begin
return To_LL_VSI (vsraw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsraw;
function vec_vsraw
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsraw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsraw;
---------------
-- vec_vsrah --
---------------
function vec_vsrah
(A : vector_signed_short;
B : vector_unsigned_short) return vector_signed_short
is
begin
return To_LL_VSS (vsrah (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsrah;
function vec_vsrah
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsrah (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsrah;
---------------
-- vec_vsrab --
---------------
function vec_vsrab
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vsrab (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsrab;
function vec_vsrab
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsrab (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsrab;
-------------
-- vec_srl --
-------------
function vec_srl
(A : vector_signed_int;
B : vector_unsigned_int) return vector_signed_int
is
begin
return To_LL_VSI (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_signed_int;
B : vector_unsigned_short) return vector_signed_int
is
begin
return To_LL_VSI (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_signed_int;
B : vector_unsigned_char) return vector_signed_int
is
begin
return To_LL_VSI (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_unsigned_int;
B : vector_unsigned_short) return vector_unsigned_int
is
begin
return To_LL_VUI (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_unsigned_int;
B : vector_unsigned_char) return vector_unsigned_int
is
begin
return To_LL_VUI (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_bool_int;
B : vector_unsigned_int) return vector_bool_int
is
begin
return To_LL_VBI (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_bool_int;
B : vector_unsigned_short) return vector_bool_int
is
begin
return To_LL_VBI (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_bool_int;
B : vector_unsigned_char) return vector_bool_int
is
begin
return To_LL_VBI (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_signed_short;
B : vector_unsigned_int) return vector_signed_short
is
begin
return To_LL_VSS (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_signed_short;
B : vector_unsigned_short) return vector_signed_short
is
begin
return To_LL_VSS (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_signed_short;
B : vector_unsigned_char) return vector_signed_short
is
begin
return To_LL_VSS (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_unsigned_short;
B : vector_unsigned_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_unsigned_short;
B : vector_unsigned_char) return vector_unsigned_short
is
begin
return To_LL_VUS (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_bool_short;
B : vector_unsigned_int) return vector_bool_short
is
begin
return To_LL_VBS (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_bool_short;
B : vector_unsigned_short) return vector_bool_short
is
begin
return To_LL_VBS (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_bool_short;
B : vector_unsigned_char) return vector_bool_short
is
begin
return To_LL_VBS (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_pixel;
B : vector_unsigned_int) return vector_pixel
is
begin
return To_LL_VP (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_pixel;
B : vector_unsigned_short) return vector_pixel
is
begin
return To_LL_VP (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_pixel;
B : vector_unsigned_char) return vector_pixel
is
begin
return To_LL_VP (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_signed_char;
B : vector_unsigned_int) return vector_signed_char
is
begin
return To_LL_VSC (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_signed_char;
B : vector_unsigned_short) return vector_signed_char
is
begin
return To_LL_VSC (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_unsigned_char;
B : vector_unsigned_int) return vector_unsigned_char
is
begin
return To_LL_VUC (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_unsigned_char;
B : vector_unsigned_short) return vector_unsigned_char
is
begin
return To_LL_VUC (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_bool_char;
B : vector_unsigned_int) return vector_bool_char
is
begin
return To_LL_VBC (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_bool_char;
B : vector_unsigned_short) return vector_bool_char
is
begin
return To_LL_VBC (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
function vec_srl
(A : vector_bool_char;
B : vector_unsigned_char) return vector_bool_char
is
begin
return To_LL_VBC (vsr (To_LL_VSI (A), To_LL_VSI (B)));
end vec_srl;
-------------
-- vec_sro --
-------------
function vec_sro
(A : vector_float;
B : vector_signed_char) return vector_float
is
begin
return To_LL_VF (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_float;
B : vector_unsigned_char) return vector_float
is
begin
return To_LL_VF (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_signed_int;
B : vector_signed_char) return vector_signed_int
is
begin
return To_LL_VSI (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_signed_int;
B : vector_unsigned_char) return vector_signed_int
is
begin
return To_LL_VSI (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_unsigned_int;
B : vector_signed_char) return vector_unsigned_int
is
begin
return To_LL_VUI (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_unsigned_int;
B : vector_unsigned_char) return vector_unsigned_int
is
begin
return To_LL_VUI (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_signed_short;
B : vector_signed_char) return vector_signed_short
is
begin
return To_LL_VSS (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_signed_short;
B : vector_unsigned_char) return vector_signed_short
is
begin
return To_LL_VSS (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_unsigned_short;
B : vector_signed_char) return vector_unsigned_short
is
begin
return To_LL_VUS (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_unsigned_short;
B : vector_unsigned_char) return vector_unsigned_short
is
begin
return To_LL_VUS (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_pixel;
B : vector_signed_char) return vector_pixel
is
begin
return To_LL_VP (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_pixel;
B : vector_unsigned_char) return vector_pixel
is
begin
return To_LL_VP (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_signed_char;
B : vector_unsigned_char) return vector_signed_char
is
begin
return To_LL_VSC (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_unsigned_char;
B : vector_signed_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
function vec_sro
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsro (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sro;
------------
-- vec_st --
------------
procedure vec_st
(A : vector_float;
B : c_int;
C : vector_float_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_float;
B : c_int;
C : float_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_signed_int;
B : c_int;
C : vector_signed_int_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_signed_int;
B : c_int;
C : int_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_unsigned_int;
B : c_int;
C : vector_unsigned_int_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_unsigned_int;
B : c_int;
C : unsigned_int_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_bool_int;
B : c_int;
C : vector_bool_int_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_bool_int;
B : c_int;
C : unsigned_int_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_bool_int;
B : c_int;
C : int_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_signed_short;
B : c_int;
C : vector_signed_short_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_signed_short;
B : c_int;
C : short_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_unsigned_short;
B : c_int;
C : vector_unsigned_short_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_unsigned_short;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_bool_short;
B : c_int;
C : vector_bool_short_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_bool_short;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_pixel;
B : c_int;
C : vector_pixel_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_pixel;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_pixel;
B : c_int;
C : short_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_bool_short;
B : c_int;
C : short_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_signed_char;
B : c_int;
C : vector_signed_char_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_signed_char;
B : c_int;
C : signed_char_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_unsigned_char;
B : c_int;
C : vector_unsigned_char_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_unsigned_char;
B : c_int;
C : unsigned_char_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_bool_char;
B : c_int;
C : vector_bool_char_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_bool_char;
B : c_int;
C : unsigned_char_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
procedure vec_st
(A : vector_bool_char;
B : c_int;
C : signed_char_ptr)
is
begin
stvx (To_LL_VSI (A), B, To_PTR (C));
end vec_st;
-------------
-- vec_ste --
-------------
procedure vec_ste
(A : vector_signed_char;
B : c_int;
C : signed_char_ptr)
is
begin
stvebx (To_LL_VSC (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_unsigned_char;
B : c_int;
C : unsigned_char_ptr)
is
begin
stvebx (To_LL_VSC (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_bool_char;
B : c_int;
C : signed_char_ptr)
is
begin
stvebx (To_LL_VSC (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_bool_char;
B : c_int;
C : unsigned_char_ptr)
is
begin
stvebx (To_LL_VSC (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_signed_short;
B : c_int;
C : short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_unsigned_short;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_bool_short;
B : c_int;
C : short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_bool_short;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_pixel;
B : c_int;
C : short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_pixel;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_float;
B : c_int;
C : float_ptr)
is
begin
stvewx (To_LL_VSI (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_signed_int;
B : c_int;
C : int_ptr)
is
begin
stvewx (To_LL_VSI (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_unsigned_int;
B : c_int;
C : unsigned_int_ptr)
is
begin
stvewx (To_LL_VSI (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_bool_int;
B : c_int;
C : int_ptr)
is
begin
stvewx (To_LL_VSI (A), B, To_PTR (C));
end vec_ste;
procedure vec_ste
(A : vector_bool_int;
B : c_int;
C : unsigned_int_ptr)
is
begin
stvewx (To_LL_VSI (A), B, To_PTR (C));
end vec_ste;
----------------
-- vec_stvewx --
----------------
procedure vec_stvewx
(A : vector_float;
B : c_int;
C : float_ptr)
is
begin
stvewx (To_LL_VSI (A), B, To_PTR (C));
end vec_stvewx;
procedure vec_stvewx
(A : vector_signed_int;
B : c_int;
C : int_ptr)
is
begin
stvewx (To_LL_VSI (A), B, To_PTR (C));
end vec_stvewx;
procedure vec_stvewx
(A : vector_unsigned_int;
B : c_int;
C : unsigned_int_ptr)
is
begin
stvewx (To_LL_VSI (A), B, To_PTR (C));
end vec_stvewx;
procedure vec_stvewx
(A : vector_bool_int;
B : c_int;
C : int_ptr)
is
begin
stvewx (To_LL_VSI (A), B, To_PTR (C));
end vec_stvewx;
procedure vec_stvewx
(A : vector_bool_int;
B : c_int;
C : unsigned_int_ptr)
is
begin
stvewx (To_LL_VSI (A), B, To_PTR (C));
end vec_stvewx;
----------------
-- vec_stvehx --
----------------
procedure vec_stvehx
(A : vector_signed_short;
B : c_int;
C : short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_stvehx;
procedure vec_stvehx
(A : vector_unsigned_short;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_stvehx;
procedure vec_stvehx
(A : vector_bool_short;
B : c_int;
C : short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_stvehx;
procedure vec_stvehx
(A : vector_bool_short;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_stvehx;
procedure vec_stvehx
(A : vector_pixel;
B : c_int;
C : short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_stvehx;
procedure vec_stvehx
(A : vector_pixel;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvehx (To_LL_VSS (A), B, To_PTR (C));
end vec_stvehx;
----------------
-- vec_stvebx --
----------------
procedure vec_stvebx
(A : vector_signed_char;
B : c_int;
C : signed_char_ptr)
is
begin
stvebx (To_LL_VSC (A), B, To_PTR (C));
end vec_stvebx;
procedure vec_stvebx
(A : vector_unsigned_char;
B : c_int;
C : unsigned_char_ptr)
is
begin
stvebx (To_LL_VSC (A), B, To_PTR (C));
end vec_stvebx;
procedure vec_stvebx
(A : vector_bool_char;
B : c_int;
C : signed_char_ptr)
is
begin
stvebx (To_LL_VSC (A), B, To_PTR (C));
end vec_stvebx;
procedure vec_stvebx
(A : vector_bool_char;
B : c_int;
C : unsigned_char_ptr)
is
begin
stvebx (To_LL_VSC (A), B, To_PTR (C));
end vec_stvebx;
-------------
-- vec_stl --
-------------
procedure vec_stl
(A : vector_float;
B : c_int;
C : vector_float_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_float;
B : c_int;
C : float_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_signed_int;
B : c_int;
C : vector_signed_int_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_signed_int;
B : c_int;
C : int_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_unsigned_int;
B : c_int;
C : vector_unsigned_int_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_unsigned_int;
B : c_int;
C : unsigned_int_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_bool_int;
B : c_int;
C : vector_bool_int_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_bool_int;
B : c_int;
C : unsigned_int_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_bool_int;
B : c_int;
C : int_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_signed_short;
B : c_int;
C : vector_signed_short_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_signed_short;
B : c_int;
C : short_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_unsigned_short;
B : c_int;
C : vector_unsigned_short_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_unsigned_short;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_bool_short;
B : c_int;
C : vector_bool_short_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_bool_short;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_bool_short;
B : c_int;
C : short_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_pixel;
B : c_int;
C : vector_pixel_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_pixel;
B : c_int;
C : unsigned_short_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_pixel;
B : c_int;
C : short_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_signed_char;
B : c_int;
C : vector_signed_char_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_signed_char;
B : c_int;
C : signed_char_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_unsigned_char;
B : c_int;
C : vector_unsigned_char_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_unsigned_char;
B : c_int;
C : unsigned_char_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_bool_char;
B : c_int;
C : vector_bool_char_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_bool_char;
B : c_int;
C : unsigned_char_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
procedure vec_stl
(A : vector_bool_char;
B : c_int;
C : signed_char_ptr)
is
begin
stvxl (To_LL_VSI (A), B, To_PTR (C));
end vec_stl;
-------------
-- vec_sub --
-------------
function vec_sub
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sub;
function vec_sub
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sub;
function vec_sub
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sub;
function vec_sub
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sub;
function vec_sub
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sub;
function vec_sub
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_sub;
function vec_sub
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sub;
function vec_sub
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sub;
function vec_sub
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sub;
function vec_sub
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sub;
function vec_sub
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sub;
function vec_sub
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_sub;
function vec_sub
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sub;
function vec_sub
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sub;
function vec_sub
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sub;
function vec_sub
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sub;
function vec_sub
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sub;
function vec_sub
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sub;
function vec_sub
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vsubfp (To_LL_VF (A), To_LL_VF (B)));
end vec_sub;
----------------
-- vec_vsubfp --
----------------
function vec_vsubfp
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vsubfp (To_LL_VF (A), To_LL_VF (B)));
end vec_vsubfp;
-----------------
-- vec_vsubuwm --
-----------------
function vec_vsubuwm
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubuwm;
function vec_vsubuwm
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubuwm;
function vec_vsubuwm
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubuwm;
function vec_vsubuwm
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubuwm;
function vec_vsubuwm
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubuwm;
function vec_vsubuwm
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuwm (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubuwm;
-----------------
-- vec_vsubuhm --
-----------------
function vec_vsubuhm
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubuhm;
function vec_vsubuhm
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubuhm;
function vec_vsubuhm
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubuhm;
function vec_vsubuhm
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubuhm;
function vec_vsubuhm
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubuhm;
function vec_vsubuhm
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhm (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubuhm;
-----------------
-- vec_vsububm --
-----------------
function vec_vsububm
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsububm;
function vec_vsububm
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsububm;
function vec_vsububm
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsububm;
function vec_vsububm
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsububm;
function vec_vsububm
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsububm;
function vec_vsububm
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububm (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsububm;
--------------
-- vec_subc --
--------------
function vec_subc
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubcuw (To_LL_VSI (A), To_LL_VSI (B)));
end vec_subc;
--------------
-- vec_subs --
--------------
function vec_subs
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_subs;
function vec_subs
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_subs;
function vec_subs
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_subs;
function vec_subs
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vsubsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_subs;
function vec_subs
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vsubsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_subs;
function vec_subs
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vsubsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_subs;
function vec_subs
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_subs;
function vec_subs
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_subs;
function vec_subs
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_subs;
function vec_subs
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_subs;
function vec_subs
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_subs;
function vec_subs
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_subs;
function vec_subs
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_subs;
function vec_subs
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_subs;
function vec_subs
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_subs;
function vec_subs
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_subs;
function vec_subs
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_subs;
function vec_subs
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_subs;
-----------------
-- vec_vsubsws --
-----------------
function vec_vsubsws
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubsws;
function vec_vsubsws
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubsws;
function vec_vsubsws
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsubsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubsws;
-----------------
-- vec_vsubuws --
-----------------
function vec_vsubuws
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubuws;
function vec_vsubuws
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubuws;
function vec_vsubuws
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsubuws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_vsubuws;
-----------------
-- vec_vsubshs --
-----------------
function vec_vsubshs
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubshs;
function vec_vsubshs
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubshs;
function vec_vsubshs
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vsubshs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubshs;
-----------------
-- vec_vsubuhs --
-----------------
function vec_vsubuhs
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubuhs;
function vec_vsubuhs
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubuhs;
function vec_vsubuhs
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vsubuhs (To_LL_VSS (A), To_LL_VSS (B)));
end vec_vsubuhs;
-----------------
-- vec_vsubsbs --
-----------------
function vec_vsubsbs
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vsubsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsubsbs;
function vec_vsubsbs
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vsubsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsubsbs;
function vec_vsubsbs
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vsubsbs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsubsbs;
-----------------
-- vec_vsububs --
-----------------
function vec_vsububs
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsububs;
function vec_vsububs
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsububs;
function vec_vsububs
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vsububs (To_LL_VSC (A), To_LL_VSC (B)));
end vec_vsububs;
---------------
-- vec_sum4s --
---------------
function vec_sum4s
(A : vector_unsigned_char;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsum4ubs (To_LL_VSC (A), To_LL_VSI (B)));
end vec_sum4s;
function vec_sum4s
(A : vector_signed_char;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsum4sbs (To_LL_VSC (A), To_LL_VSI (B)));
end vec_sum4s;
function vec_sum4s
(A : vector_signed_short;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsum4shs (To_LL_VSS (A), To_LL_VSI (B)));
end vec_sum4s;
------------------
-- vec_vsum4shs --
------------------
function vec_vsum4shs
(A : vector_signed_short;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsum4shs (To_LL_VSS (A), To_LL_VSI (B)));
end vec_vsum4shs;
------------------
-- vec_vsum4sbs --
------------------
function vec_vsum4sbs
(A : vector_signed_char;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsum4sbs (To_LL_VSC (A), To_LL_VSI (B)));
end vec_vsum4sbs;
------------------
-- vec_vsum4ubs --
------------------
function vec_vsum4ubs
(A : vector_unsigned_char;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsum4ubs (To_LL_VSC (A), To_LL_VSI (B)));
end vec_vsum4ubs;
---------------
-- vec_sum2s --
---------------
function vec_sum2s
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsum2sws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sum2s;
--------------
-- vec_sums --
--------------
function vec_sums
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vsumsws (To_LL_VSI (A), To_LL_VSI (B)));
end vec_sums;
---------------
-- vec_trunc --
---------------
function vec_trunc
(A : vector_float) return vector_float
is
begin
return To_LL_VF (vrfiz (To_LL_VF (A)));
end vec_trunc;
-----------------
-- vec_unpackh --
-----------------
function vec_unpackh
(A : vector_signed_char) return vector_signed_short
is
begin
return To_LL_VSS (vupkhsb (To_LL_VSC (A)));
end vec_unpackh;
function vec_unpackh
(A : vector_bool_char) return vector_bool_short
is
begin
return To_LL_VBS (vupkhsb (To_LL_VSC (A)));
end vec_unpackh;
function vec_unpackh
(A : vector_signed_short) return vector_signed_int
is
begin
return To_LL_VSI (vupkhsh (To_LL_VSS (A)));
end vec_unpackh;
function vec_unpackh
(A : vector_bool_short) return vector_bool_int
is
begin
return To_LL_VBI (vupkhsh (To_LL_VSS (A)));
end vec_unpackh;
function vec_unpackh
(A : vector_pixel) return vector_unsigned_int
is
begin
return To_LL_VUI (vupkhpx (To_LL_VSS (A)));
end vec_unpackh;
-----------------
-- vec_vupkhsh --
-----------------
function vec_vupkhsh
(A : vector_bool_short) return vector_bool_int
is
begin
return To_LL_VBI (vupkhsh (To_LL_VSS (A)));
end vec_vupkhsh;
function vec_vupkhsh
(A : vector_signed_short) return vector_signed_int
is
begin
return To_LL_VSI (vupkhsh (To_LL_VSS (A)));
end vec_vupkhsh;
-----------------
-- vec_vupkhpx --
-----------------
function vec_vupkhpx
(A : vector_pixel) return vector_unsigned_int
is
begin
return To_LL_VUI (vupkhpx (To_LL_VSS (A)));
end vec_vupkhpx;
-----------------
-- vec_vupkhsb --
-----------------
function vec_vupkhsb
(A : vector_bool_char) return vector_bool_short
is
begin
return To_LL_VBS (vupkhsb (To_LL_VSC (A)));
end vec_vupkhsb;
function vec_vupkhsb
(A : vector_signed_char) return vector_signed_short
is
begin
return To_LL_VSS (vupkhsb (To_LL_VSC (A)));
end vec_vupkhsb;
-----------------
-- vec_unpackl --
-----------------
function vec_unpackl
(A : vector_signed_char) return vector_signed_short
is
begin
return To_LL_VSS (vupklsb (To_LL_VSC (A)));
end vec_unpackl;
function vec_unpackl
(A : vector_bool_char) return vector_bool_short
is
begin
return To_LL_VBS (vupklsb (To_LL_VSC (A)));
end vec_unpackl;
function vec_unpackl
(A : vector_pixel) return vector_unsigned_int
is
begin
return To_LL_VUI (vupklpx (To_LL_VSS (A)));
end vec_unpackl;
function vec_unpackl
(A : vector_signed_short) return vector_signed_int
is
begin
return To_LL_VSI (vupklsh (To_LL_VSS (A)));
end vec_unpackl;
function vec_unpackl
(A : vector_bool_short) return vector_bool_int
is
begin
return To_LL_VBI (vupklsh (To_LL_VSS (A)));
end vec_unpackl;
-----------------
-- vec_vupklpx --
-----------------
function vec_vupklpx
(A : vector_pixel) return vector_unsigned_int
is
begin
return To_LL_VUI (vupklpx (To_LL_VSS (A)));
end vec_vupklpx;
-----------------
-- vec_vupklsh --
-----------------
function vec_vupklsh
(A : vector_bool_short) return vector_bool_int
is
begin
return To_LL_VBI (vupklsh (To_LL_VSS (A)));
end vec_vupklsh;
function vec_vupklsh
(A : vector_signed_short) return vector_signed_int
is
begin
return To_LL_VSI (vupklsh (To_LL_VSS (A)));
end vec_vupklsh;
-----------------
-- vec_vupklsb --
-----------------
function vec_vupklsb
(A : vector_bool_char) return vector_bool_short
is
begin
return To_LL_VBS (vupklsb (To_LL_VSC (A)));
end vec_vupklsb;
function vec_vupklsb
(A : vector_signed_char) return vector_signed_short
is
begin
return To_LL_VSS (vupklsb (To_LL_VSC (A)));
end vec_vupklsb;
-------------
-- vec_xor --
-------------
function vec_xor
(A : vector_float;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_float;
B : vector_bool_int) return vector_float
is
begin
return To_LL_VF (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_bool_int;
B : vector_float) return vector_float
is
begin
return To_LL_VF (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_bool_int;
B : vector_bool_int) return vector_bool_int
is
begin
return To_LL_VBI (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_bool_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_signed_int;
B : vector_bool_int) return vector_signed_int
is
begin
return To_LL_VSI (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_signed_int;
B : vector_signed_int) return vector_signed_int
is
begin
return To_LL_VSI (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_bool_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_unsigned_int;
B : vector_bool_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_unsigned_int;
B : vector_unsigned_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_bool_short;
B : vector_bool_short) return vector_bool_short
is
begin
return To_LL_VBS (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_bool_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_signed_short;
B : vector_bool_short) return vector_signed_short
is
begin
return To_LL_VSS (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_signed_short;
B : vector_signed_short) return vector_signed_short
is
begin
return To_LL_VSS (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_bool_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_unsigned_short;
B : vector_bool_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_unsigned_short;
B : vector_unsigned_short) return vector_unsigned_short
is
begin
return To_LL_VUS (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_bool_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_bool_char;
B : vector_bool_char) return vector_bool_char
is
begin
return To_LL_VBC (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_signed_char;
B : vector_bool_char) return vector_signed_char
is
begin
return To_LL_VSC (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_signed_char;
B : vector_signed_char) return vector_signed_char
is
begin
return To_LL_VSC (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_bool_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_unsigned_char;
B : vector_bool_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
function vec_xor
(A : vector_unsigned_char;
B : vector_unsigned_char) return vector_unsigned_char
is
begin
return To_LL_VUC (vxor (To_LL_VSI (A), To_LL_VSI (B)));
end vec_xor;
-------------
-- vec_dst --
-------------
procedure vec_dst
(A : const_vector_unsigned_char_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_vector_signed_char_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_vector_bool_char_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_vector_unsigned_short_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_vector_signed_short_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_vector_bool_short_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_vector_pixel_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_vector_unsigned_int_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_vector_signed_int_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_vector_bool_int_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_vector_float_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_unsigned_char_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_signed_char_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_unsigned_short_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_short_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_unsigned_int_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_int_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_unsigned_long_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_long_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
procedure vec_dst
(A : const_float_ptr;
B : c_int;
C : c_int)
is
begin
dst (To_PTR (A), B, C);
end vec_dst;
--------------
-- vec_dstt --
--------------
procedure vec_dstt
(A : const_vector_unsigned_char_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_vector_signed_char_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_vector_bool_char_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_vector_unsigned_short_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_vector_signed_short_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_vector_bool_short_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_vector_pixel_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_vector_unsigned_int_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_vector_signed_int_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_vector_bool_int_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_vector_float_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_unsigned_char_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_signed_char_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_unsigned_short_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_short_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_unsigned_int_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_int_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_unsigned_long_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_long_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
procedure vec_dstt
(A : const_float_ptr;
B : c_int;
C : c_int)
is
begin
dstt (To_PTR (A), B, C);
end vec_dstt;
---------------
-- vec_dstst --
---------------
procedure vec_dstst
(A : const_vector_unsigned_char_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_vector_signed_char_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_vector_bool_char_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_vector_unsigned_short_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_vector_signed_short_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_vector_bool_short_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_vector_pixel_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_vector_unsigned_int_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_vector_signed_int_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_vector_bool_int_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_vector_float_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_unsigned_char_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_signed_char_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_unsigned_short_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_short_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_unsigned_int_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_int_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_unsigned_long_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_long_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
procedure vec_dstst
(A : const_float_ptr;
B : c_int;
C : c_int)
is
begin
dstst (To_PTR (A), B, C);
end vec_dstst;
----------------
-- vec_dststt --
----------------
procedure vec_dststt
(A : const_vector_unsigned_char_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_vector_signed_char_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_vector_bool_char_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_vector_unsigned_short_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_vector_signed_short_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_vector_bool_short_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_vector_pixel_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_vector_unsigned_int_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_vector_signed_int_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_vector_bool_int_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_vector_float_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_unsigned_char_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_signed_char_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_unsigned_short_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_short_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_unsigned_int_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_int_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_unsigned_long_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_long_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
procedure vec_dststt
(A : const_float_ptr;
B : c_int;
C : c_int)
is
begin
dststt (To_PTR (A), B, C);
end vec_dststt;
----------------
-- vec_vspltw --
----------------
function vec_vspltw
(A : vector_float;
B : c_int) return vector_float
is
begin
return To_LL_VF (vspltw (To_LL_VSI (A), B));
end vec_vspltw;
function vec_vspltw
(A : vector_unsigned_int;
B : c_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vspltw (To_LL_VSI (A), B));
end vec_vspltw;
function vec_vspltw
(A : vector_bool_int;
B : c_int) return vector_bool_int
is
begin
return To_LL_VBI (vspltw (To_LL_VSI (A), B));
end vec_vspltw;
----------------
-- vec_vsplth --
----------------
function vec_vsplth
(A : vector_bool_short;
B : c_int) return vector_bool_short
is
begin
return To_LL_VBS (vsplth (To_LL_VSS (A), B));
end vec_vsplth;
function vec_vsplth
(A : vector_unsigned_short;
B : c_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vsplth (To_LL_VSS (A), B));
end vec_vsplth;
function vec_vsplth
(A : vector_pixel;
B : c_int) return vector_pixel
is
begin
return To_LL_VP (vsplth (To_LL_VSS (A), B));
end vec_vsplth;
----------------
-- vec_vspltb --
----------------
function vec_vspltb
(A : vector_unsigned_char;
B : c_int) return vector_unsigned_char
is
begin
return To_LL_VUC (vspltb (To_LL_VSC (A), B));
end vec_vspltb;
function vec_vspltb
(A : vector_bool_char;
B : c_int) return vector_bool_char
is
begin
return To_LL_VBC (vspltb (To_LL_VSC (A), B));
end vec_vspltb;
------------------
-- vec_splat_u8 --
------------------
function vec_splat_u8
(A : c_int) return vector_unsigned_char
is
begin
return To_LL_VUC (vspltisb (A));
end vec_splat_u8;
-------------------
-- vec_splat_u16 --
-------------------
function vec_splat_u16
(A : c_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vspltish (A));
end vec_splat_u16;
-------------------
-- vec_splat_u32 --
-------------------
function vec_splat_u32
(A : c_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vspltisw (A));
end vec_splat_u32;
-------------
-- vec_sld --
-------------
function vec_sld
(A : vector_unsigned_int;
B : vector_unsigned_int;
C : c_int) return vector_unsigned_int
is
begin
return To_LL_VUI (vsldoi_4si (To_LL_VSI (A), To_LL_VSI (B), C));
end vec_sld;
function vec_sld
(A : vector_bool_int;
B : vector_bool_int;
C : c_int) return vector_bool_int
is
begin
return To_LL_VBI (vsldoi_4si (To_LL_VSI (A), To_LL_VSI (B), C));
end vec_sld;
function vec_sld
(A : vector_unsigned_short;
B : vector_unsigned_short;
C : c_int) return vector_unsigned_short
is
begin
return To_LL_VUS (vsldoi_8hi (To_LL_VSS (A), To_LL_VSS (B), C));
end vec_sld;
function vec_sld
(A : vector_bool_short;
B : vector_bool_short;
C : c_int) return vector_bool_short
is
begin
return To_LL_VBS (vsldoi_8hi (To_LL_VSS (A), To_LL_VSS (B), C));
end vec_sld;
function vec_sld
(A : vector_pixel;
B : vector_pixel;
C : c_int) return vector_pixel
is
begin
return To_LL_VP (vsldoi_8hi (To_LL_VSS (A), To_LL_VSS (B), C));
end vec_sld;
function vec_sld
(A : vector_unsigned_char;
B : vector_unsigned_char;
C : c_int) return vector_unsigned_char
is
begin
return To_LL_VUC (vsldoi_16qi (To_LL_VSC (A), To_LL_VSC (B), C));
end vec_sld;
function vec_sld
(A : vector_bool_char;
B : vector_bool_char;
C : c_int) return vector_bool_char
is
begin
return To_LL_VBC (vsldoi_16qi (To_LL_VSC (A), To_LL_VSC (B), C));
end vec_sld;
----------------
-- vec_all_eq --
----------------
function vec_all_eq
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_eq;
function vec_all_eq
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpequb_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_eq;
function vec_all_eq
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_eq;
function vec_all_eq
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpequb_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_eq;
function vec_all_eq
(A : vector_bool_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_eq;
function vec_all_eq
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpequb_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_eq;
function vec_all_eq
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpequb_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_eq;
function vec_all_eq
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_eq;
function vec_all_eq
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpequh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_eq;
function vec_all_eq
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_eq;
function vec_all_eq
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpequh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_eq;
function vec_all_eq
(A : vector_bool_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_eq;
function vec_all_eq
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpequh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_eq;
function vec_all_eq
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpequh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_eq;
function vec_all_eq
(A : vector_pixel;
B : vector_pixel) return c_int
is
begin
return vcmpequh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_eq;
function vec_all_eq
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_eq;
function vec_all_eq
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpequw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_eq;
function vec_all_eq
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_eq;
function vec_all_eq
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpequw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_eq;
function vec_all_eq
(A : vector_bool_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_eq;
function vec_all_eq
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpequw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_eq;
function vec_all_eq
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpequw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_eq;
function vec_all_eq
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpeqfp_p (CR6_LT, To_LL_VF (A), To_LL_VF (B));
end vec_all_eq;
----------------
-- vec_all_ge --
----------------
function vec_all_ge
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_ge;
function vec_all_ge
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_ge;
function vec_all_ge
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_ge;
function vec_all_ge
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_ge;
function vec_all_ge
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_ge;
function vec_all_ge
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_ge;
function vec_all_ge
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_ge;
function vec_all_ge
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_ge;
function vec_all_ge
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_ge;
function vec_all_ge
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_ge;
function vec_all_ge
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_ge;
function vec_all_ge
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_ge;
function vec_all_ge
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_ge;
function vec_all_ge
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_ge;
function vec_all_ge
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_ge;
function vec_all_ge
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_ge;
function vec_all_ge
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_ge;
function vec_all_ge
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_ge;
function vec_all_ge
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgefp_p (CR6_LT, To_LL_VF (A), To_LL_VF (B));
end vec_all_ge;
----------------
-- vec_all_gt --
----------------
function vec_all_gt
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_gt;
function vec_all_gt
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_gt;
function vec_all_gt
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_gt;
function vec_all_gt
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_gt;
function vec_all_gt
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtsb_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_gt;
function vec_all_gt
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_LT, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_gt;
function vec_all_gt
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_gt;
function vec_all_gt
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_gt;
function vec_all_gt
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_gt;
function vec_all_gt
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_gt;
function vec_all_gt
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtsh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_gt;
function vec_all_gt
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_LT, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_gt;
function vec_all_gt
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_gt;
function vec_all_gt
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_gt;
function vec_all_gt
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_gt;
function vec_all_gt
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_gt;
function vec_all_gt
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtsw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_gt;
function vec_all_gt
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_LT, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_gt;
function vec_all_gt
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgtfp_p (CR6_LT, To_LL_VF (A), To_LL_VF (B));
end vec_all_gt;
----------------
-- vec_all_in --
----------------
function vec_all_in
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpbfp_p (CR6_EQ, To_LL_VF (A), To_LL_VF (B));
end vec_all_in;
----------------
-- vec_all_le --
----------------
function vec_all_le
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_le;
function vec_all_le
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_le;
function vec_all_le
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_le;
function vec_all_le
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_le;
function vec_all_le
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_le;
function vec_all_le
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_le;
function vec_all_le
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_le;
function vec_all_le
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_le;
function vec_all_le
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_le;
function vec_all_le
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_le;
function vec_all_le
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_le;
function vec_all_le
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_le;
function vec_all_le
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_le;
function vec_all_le
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_le;
function vec_all_le
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_le;
function vec_all_le
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_le;
function vec_all_le
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_le;
function vec_all_le
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_le;
function vec_all_le
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgefp_p (CR6_LT, To_LL_VF (B), To_LL_VF (A));
end vec_all_le;
----------------
-- vec_all_lt --
----------------
function vec_all_lt
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_lt;
function vec_all_lt
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_lt;
function vec_all_lt
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_lt;
function vec_all_lt
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_LT, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_lt;
function vec_all_lt
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtsb_p (CR6_LT, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_lt;
function vec_all_lt
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_LT, To_LL_VSC (B), To_LL_VSC (A));
end vec_all_lt;
function vec_all_lt
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_lt;
function vec_all_lt
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_lt;
function vec_all_lt
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_lt;
function vec_all_lt
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_LT, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_lt;
function vec_all_lt
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtsh_p (CR6_LT, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_lt;
function vec_all_lt
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_LT, To_LL_VSS (B), To_LL_VSS (A));
end vec_all_lt;
function vec_all_lt
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_lt;
function vec_all_lt
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_lt;
function vec_all_lt
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_lt;
function vec_all_lt
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_LT, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_lt;
function vec_all_lt
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtsw_p (CR6_LT, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_lt;
function vec_all_lt
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_LT, To_LL_VSI (B), To_LL_VSI (A));
end vec_all_lt;
function vec_all_lt
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgtfp_p (CR6_LT, To_LL_VF (B), To_LL_VF (A));
end vec_all_lt;
-----------------
-- vec_all_nan --
-----------------
function vec_all_nan
(A : vector_float) return c_int
is
begin
return vcmpeqfp_p (CR6_EQ, To_LL_VF (A), To_LL_VF (A));
end vec_all_nan;
----------------
-- vec_all_ne --
----------------
function vec_all_ne
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_ne;
function vec_all_ne
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_ne;
function vec_all_ne
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_ne;
function vec_all_ne
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_ne;
function vec_all_ne
(A : vector_bool_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_ne;
function vec_all_ne
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_ne;
function vec_all_ne
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ, To_LL_VSC (A), To_LL_VSC (B));
end vec_all_ne;
function vec_all_ne
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_ne;
function vec_all_ne
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_ne;
function vec_all_ne
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_ne;
function vec_all_ne
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_ne;
function vec_all_ne
(A : vector_bool_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_ne;
function vec_all_ne
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_ne;
function vec_all_ne
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_ne;
function vec_all_ne
(A : vector_pixel;
B : vector_pixel) return c_int
is
begin
return vcmpequh_p (CR6_EQ, To_LL_VSS (A), To_LL_VSS (B));
end vec_all_ne;
function vec_all_ne
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_ne;
function vec_all_ne
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_ne;
function vec_all_ne
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_ne;
function vec_all_ne
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_ne;
function vec_all_ne
(A : vector_bool_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_ne;
function vec_all_ne
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_ne;
function vec_all_ne
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ, To_LL_VSI (A), To_LL_VSI (B));
end vec_all_ne;
function vec_all_ne
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpeqfp_p (CR6_EQ, To_LL_VF (A), To_LL_VF (B));
end vec_all_ne;
-----------------
-- vec_all_nge --
-----------------
function vec_all_nge
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgefp_p (CR6_EQ, To_LL_VF (A), To_LL_VF (B));
end vec_all_nge;
-----------------
-- vec_all_ngt --
-----------------
function vec_all_ngt
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgtfp_p (CR6_EQ, To_LL_VF (A), To_LL_VF (B));
end vec_all_ngt;
-----------------
-- vec_all_nle --
-----------------
function vec_all_nle
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgefp_p (CR6_EQ, To_LL_VF (B), To_LL_VF (A));
end vec_all_nle;
-----------------
-- vec_all_nlt --
-----------------
function vec_all_nlt
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgtfp_p (CR6_EQ, To_LL_VF (B), To_LL_VF (A));
end vec_all_nlt;
---------------------
-- vec_all_numeric --
---------------------
function vec_all_numeric
(A : vector_float) return c_int
is
begin
return vcmpeqfp_p (CR6_LT, To_LL_VF (A), To_LL_VF (A));
end vec_all_numeric;
----------------
-- vec_any_eq --
----------------
function vec_any_eq
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_eq;
function vec_any_eq
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_eq;
function vec_any_eq
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_eq;
function vec_any_eq
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_eq;
function vec_any_eq
(A : vector_bool_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_eq;
function vec_any_eq
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_eq;
function vec_any_eq
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpequb_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_eq;
function vec_any_eq
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_eq;
function vec_any_eq
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_eq;
function vec_any_eq
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_eq;
function vec_any_eq
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_eq;
function vec_any_eq
(A : vector_bool_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_eq;
function vec_any_eq
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_eq;
function vec_any_eq
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpequh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_eq;
function vec_any_eq
(A : vector_pixel;
B : vector_pixel) return c_int
is
begin
return vcmpequh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_eq;
function vec_any_eq
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_eq;
function vec_any_eq
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_eq;
function vec_any_eq
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_eq;
function vec_any_eq
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_eq;
function vec_any_eq
(A : vector_bool_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_eq;
function vec_any_eq
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_eq;
function vec_any_eq
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpequw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_eq;
function vec_any_eq
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpeqfp_p (CR6_EQ_REV, To_LL_VF (A), To_LL_VF (B));
end vec_any_eq;
----------------
-- vec_any_ge --
----------------
function vec_any_ge
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_ge;
function vec_any_ge
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_ge;
function vec_any_ge
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_ge;
function vec_any_ge
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_LT_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_ge;
function vec_any_ge
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_ge;
function vec_any_ge
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_ge;
function vec_any_ge
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_ge;
function vec_any_ge
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_ge;
function vec_any_ge
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_LT_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_ge;
function vec_any_ge
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtsh_p (CR6_LT_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_ge;
function vec_any_ge
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_ge;
function vec_any_ge
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_ge;
function vec_any_ge
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_ge;
function vec_any_ge
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_ge;
function vec_any_ge
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_ge;
function vec_any_ge
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_LT_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_ge;
function vec_any_ge
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_ge;
function vec_any_ge
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_ge;
function vec_any_ge
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgefp_p (CR6_EQ_REV, To_LL_VF (A), To_LL_VF (B));
end vec_any_ge;
----------------
-- vec_any_gt --
----------------
function vec_any_gt
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_gt;
function vec_any_gt
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_gt;
function vec_any_gt
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_gt;
function vec_any_gt
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_gt;
function vec_any_gt
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_gt;
function vec_any_gt
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_gt;
function vec_any_gt
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_gt;
function vec_any_gt
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_gt;
function vec_any_gt
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_gt;
function vec_any_gt
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_gt;
function vec_any_gt
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_gt;
function vec_any_gt
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_gt;
function vec_any_gt
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_gt;
function vec_any_gt
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_gt;
function vec_any_gt
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_gt;
function vec_any_gt
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_gt;
function vec_any_gt
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_gt;
function vec_any_gt
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_gt;
function vec_any_gt
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgtfp_p (CR6_EQ_REV, To_LL_VF (A), To_LL_VF (B));
end vec_any_gt;
----------------
-- vec_any_le --
----------------
function vec_any_le
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_le;
function vec_any_le
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_le;
function vec_any_le
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_le;
function vec_any_le
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_le;
function vec_any_le
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtsb_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_le;
function vec_any_le
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_le;
function vec_any_le
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_le;
function vec_any_le
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_le;
function vec_any_le
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_le;
function vec_any_le
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_le;
function vec_any_le
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtsh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_le;
function vec_any_le
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_le;
function vec_any_le
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_le;
function vec_any_le
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_le;
function vec_any_le
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_le;
function vec_any_le
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_le;
function vec_any_le
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtsw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_le;
function vec_any_le
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_le;
function vec_any_le
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgefp_p (CR6_EQ_REV, To_LL_VF (B), To_LL_VF (A));
end vec_any_le;
----------------
-- vec_any_lt --
----------------
function vec_any_lt
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_lt;
function vec_any_lt
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_lt;
function vec_any_lt
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpgtub_p (CR6_EQ_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_lt;
function vec_any_lt
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_lt;
function vec_any_lt
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_lt;
function vec_any_lt
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpgtsb_p (CR6_EQ_REV, To_LL_VSC (B), To_LL_VSC (A));
end vec_any_lt;
function vec_any_lt
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_lt;
function vec_any_lt
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_lt;
function vec_any_lt
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpgtuh_p (CR6_EQ_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_lt;
function vec_any_lt
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_lt;
function vec_any_lt
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_lt;
function vec_any_lt
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpgtsh_p (CR6_EQ_REV, To_LL_VSS (B), To_LL_VSS (A));
end vec_any_lt;
function vec_any_lt
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_lt;
function vec_any_lt
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_lt;
function vec_any_lt
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpgtuw_p (CR6_EQ_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_lt;
function vec_any_lt
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_lt;
function vec_any_lt
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_lt;
function vec_any_lt
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpgtsw_p (CR6_EQ_REV, To_LL_VSI (B), To_LL_VSI (A));
end vec_any_lt;
function vec_any_lt
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgtfp_p (CR6_EQ_REV, To_LL_VF (B), To_LL_VF (A));
end vec_any_lt;
-----------------
-- vec_any_nan --
-----------------
function vec_any_nan
(A : vector_float) return c_int
is
begin
return vcmpeqfp_p (CR6_LT_REV, To_LL_VF (A), To_LL_VF (A));
end vec_any_nan;
----------------
-- vec_any_ne --
----------------
function vec_any_ne
(A : vector_signed_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_ne;
function vec_any_ne
(A : vector_signed_char;
B : vector_signed_char) return c_int
is
begin
return vcmpequb_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_ne;
function vec_any_ne
(A : vector_unsigned_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_ne;
function vec_any_ne
(A : vector_unsigned_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpequb_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_ne;
function vec_any_ne
(A : vector_bool_char;
B : vector_bool_char) return c_int
is
begin
return vcmpequb_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_ne;
function vec_any_ne
(A : vector_bool_char;
B : vector_unsigned_char) return c_int
is
begin
return vcmpequb_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_ne;
function vec_any_ne
(A : vector_bool_char;
B : vector_signed_char) return c_int
is
begin
return vcmpequb_p (CR6_LT_REV, To_LL_VSC (A), To_LL_VSC (B));
end vec_any_ne;
function vec_any_ne
(A : vector_signed_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_ne;
function vec_any_ne
(A : vector_signed_short;
B : vector_signed_short) return c_int
is
begin
return vcmpequh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_ne;
function vec_any_ne
(A : vector_unsigned_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_ne;
function vec_any_ne
(A : vector_unsigned_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpequh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_ne;
function vec_any_ne
(A : vector_bool_short;
B : vector_bool_short) return c_int
is
begin
return vcmpequh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_ne;
function vec_any_ne
(A : vector_bool_short;
B : vector_unsigned_short) return c_int
is
begin
return vcmpequh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_ne;
function vec_any_ne
(A : vector_bool_short;
B : vector_signed_short) return c_int
is
begin
return vcmpequh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_ne;
function vec_any_ne
(A : vector_pixel;
B : vector_pixel) return c_int
is
begin
return vcmpequh_p (CR6_LT_REV, To_LL_VSS (A), To_LL_VSS (B));
end vec_any_ne;
function vec_any_ne
(A : vector_signed_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_ne;
function vec_any_ne
(A : vector_signed_int;
B : vector_signed_int) return c_int
is
begin
return vcmpequw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_ne;
function vec_any_ne
(A : vector_unsigned_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_ne;
function vec_any_ne
(A : vector_unsigned_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpequw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_ne;
function vec_any_ne
(A : vector_bool_int;
B : vector_bool_int) return c_int
is
begin
return vcmpequw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_ne;
function vec_any_ne
(A : vector_bool_int;
B : vector_unsigned_int) return c_int
is
begin
return vcmpequw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_ne;
function vec_any_ne
(A : vector_bool_int;
B : vector_signed_int) return c_int
is
begin
return vcmpequw_p (CR6_LT_REV, To_LL_VSI (A), To_LL_VSI (B));
end vec_any_ne;
function vec_any_ne
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpeqfp_p (CR6_LT_REV, To_LL_VF (A), To_LL_VF (B));
end vec_any_ne;
-----------------
-- vec_any_nge --
-----------------
function vec_any_nge
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgefp_p (CR6_LT_REV, To_LL_VF (A), To_LL_VF (B));
end vec_any_nge;
-----------------
-- vec_any_ngt --
-----------------
function vec_any_ngt
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgtfp_p (CR6_LT_REV, To_LL_VF (A), To_LL_VF (B));
end vec_any_ngt;
-----------------
-- vec_any_nle --
-----------------
function vec_any_nle
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgefp_p (CR6_LT_REV, To_LL_VF (B), To_LL_VF (A));
end vec_any_nle;
-----------------
-- vec_any_nlt --
-----------------
function vec_any_nlt
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpgtfp_p (CR6_LT_REV, To_LL_VF (B), To_LL_VF (A));
end vec_any_nlt;
---------------------
-- vec_any_numeric --
---------------------
function vec_any_numeric
(A : vector_float) return c_int
is
begin
return vcmpeqfp_p (CR6_EQ_REV, To_LL_VF (A), To_LL_VF (A));
end vec_any_numeric;
-----------------
-- vec_any_out --
-----------------
function vec_any_out
(A : vector_float;
B : vector_float) return c_int
is
begin
return vcmpbfp_p (CR6_EQ_REV, To_LL_VF (A), To_LL_VF (B));
end vec_any_out;
--------------
-- vec_step --
--------------
function vec_step
(V : vector_unsigned_char) return Integer
is
pragma Unreferenced (V);
begin
return 16;
end vec_step;
function vec_step
(V : vector_signed_char) return Integer
is
pragma Unreferenced (V);
begin
return 16;
end vec_step;
function vec_step
(V : vector_bool_char) return Integer
is
pragma Unreferenced (V);
begin
return 16;
end vec_step;
function vec_step
(V : vector_unsigned_short) return Integer
is
pragma Unreferenced (V);
begin
return 8;
end vec_step;
function vec_step
(V : vector_signed_short) return Integer
is
pragma Unreferenced (V);
begin
return 8;
end vec_step;
function vec_step
(V : vector_bool_short) return Integer
is
pragma Unreferenced (V);
begin
return 8;
end vec_step;
function vec_step
(V : vector_unsigned_int) return Integer
is
pragma Unreferenced (V);
begin
return 4;
end vec_step;
function vec_step
(V : vector_signed_int) return Integer
is
pragma Unreferenced (V);
begin
return 4;
end vec_step;
function vec_step
(V : vector_bool_int) return Integer
is
pragma Unreferenced (V);
begin
return 4;
end vec_step;
function vec_step
(V : vector_float) return Integer
is
pragma Unreferenced (V);
begin
return 4;
end vec_step;
function vec_step
(V : vector_pixel) return Integer
is
pragma Unreferenced (V);
begin
return 4;
end vec_step;
end GNAT.Altivec.Vector_Operations;
| 23.290126 | 79 | 0.62632 |
cb6137cbc29e2bb5e571d48fcf4adb94292097f0 | 9,386 | ads | Ada | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/a-ngelfu.ads | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/a-ngelfu.ads | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/a-ngelfu.ads | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- ADA.NUMERICS.GENERIC_ELEMENTARY_FUNCTIONS --
-- --
-- S p e c --
-- --
-- Copyright (C) 2012-2019, Free Software Foundation, Inc. --
-- --
-- This specification is derived from the Ada Reference Manual for use with --
-- GNAT. The copyright notice above, and the license provisions that follow --
-- apply solely to the Post aspects that have been added to the spec. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
generic
type Float_Type is digits <>;
package Ada.Numerics.Generic_Elementary_Functions with
SPARK_Mode => On
is
pragma Pure;
-- Preconditions in this unit are meant for analysis only, not for run-time
-- checking, so that the expected exceptions are raised when calling
-- Assert. This is enforced by setting the corresponding assertion policy
-- to Ignore. This is done in the generic spec so that it applies to all
-- instances.
pragma Assertion_Policy (Pre => Ignore);
function Sqrt (X : Float_Type'Base) return Float_Type'Base with
Pre => X >= 0.0,
Post => Sqrt'Result >= 0.0
and then (if X = 0.0 then Sqrt'Result = 0.0)
and then (if X = 1.0 then Sqrt'Result = 1.0)
-- Finally if X is positive, the result of Sqrt is positive (because
-- the sqrt of numbers greater than 1 is greater than or equal to 1,
-- and the sqrt of numbers less than 1 is greater than the argument).
-- This property is useful in particular for static analysis. The
-- property that X is positive is not expressed as (X > 0.0), as
-- the value X may be held in registers that have larger range and
-- precision on some architecture (for example, on x86 using x387
-- FPU, as opposed to SSE2). So, it might be possible for X to be
-- 2.0**(-5000) or so, which could cause the number to compare as
-- greater than 0, but Sqrt would still return a zero result.
-- Note: we use the comparison with Succ (0.0) here because this is
-- more amenable to CodePeer analysis than the use of 'Machine.
and then (if X >= Float_Type'Succ (0.0) then Sqrt'Result > 0.0);
function Log (X : Float_Type'Base) return Float_Type'Base with
Pre => X > 0.0,
Post => (if X = 1.0 then Log'Result = 0.0);
function Log (X, Base : Float_Type'Base) return Float_Type'Base with
Pre => X > 0.0 and Base > 0.0 and Base /= 1.0,
Post => (if X = 1.0 then Log'Result = 0.0);
function Exp (X : Float_Type'Base) return Float_Type'Base with
Post => (if X = 0.0 then Exp'Result = 1.0);
function "**" (Left, Right : Float_Type'Base) return Float_Type'Base with
Pre => (if Left = 0.0 then Right > 0.0) and Left >= 0.0,
Post => "**"'Result >= 0.0
and then (if Right = 0.0 then "**"'Result = 1.0)
and then (if Right = 1.0 then "**"'Result = Left)
and then (if Left = 1.0 then "**"'Result = 1.0)
and then (if Left = 0.0 then "**"'Result = 0.0);
function Sin (X : Float_Type'Base) return Float_Type'Base with
Post => Sin'Result in -1.0 .. 1.0
and then (if X = 0.0 then Sin'Result = 0.0);
function Sin (X, Cycle : Float_Type'Base) return Float_Type'Base with
Pre => Cycle > 0.0,
Post => Sin'Result in -1.0 .. 1.0
and then (if X = 0.0 then Sin'Result = 0.0);
function Cos (X : Float_Type'Base) return Float_Type'Base with
Post => Cos'Result in -1.0 .. 1.0
and then (if X = 0.0 then Cos'Result = 1.0);
function Cos (X, Cycle : Float_Type'Base) return Float_Type'Base with
Pre => Cycle > 0.0,
Post => Cos'Result in -1.0 .. 1.0
and then (if X = 0.0 then Cos'Result = 1.0);
function Tan (X : Float_Type'Base) return Float_Type'Base with
Post => (if X = 0.0 then Tan'Result = 0.0);
function Tan (X, Cycle : Float_Type'Base) return Float_Type'Base with
Pre => Cycle > 0.0
and then abs Float_Type'Base'Remainder (X, Cycle) /= 0.25 * Cycle,
Post => (if X = 0.0 then Tan'Result = 0.0);
function Cot (X : Float_Type'Base) return Float_Type'Base with
Pre => X /= 0.0;
function Cot (X, Cycle : Float_Type'Base) return Float_Type'Base with
Pre => Cycle > 0.0
and then X /= 0.0
and then Float_Type'Base'Remainder (X, Cycle) /= 0.0
and then abs Float_Type'Base'Remainder (X, Cycle) = 0.5 * Cycle;
function Arcsin (X : Float_Type'Base) return Float_Type'Base with
Pre => abs X <= 1.0,
Post => (if X = 0.0 then Arcsin'Result = 0.0);
function Arcsin (X, Cycle : Float_Type'Base) return Float_Type'Base with
Pre => Cycle > 0.0 and abs X <= 1.0,
Post => (if X = 0.0 then Arcsin'Result = 0.0);
function Arccos (X : Float_Type'Base) return Float_Type'Base with
Pre => abs X <= 1.0,
Post => (if X = 1.0 then Arccos'Result = 0.0);
function Arccos (X, Cycle : Float_Type'Base) return Float_Type'Base with
Pre => Cycle > 0.0 and abs X <= 1.0,
Post => (if X = 1.0 then Arccos'Result = 0.0);
function Arctan
(Y : Float_Type'Base;
X : Float_Type'Base := 1.0) return Float_Type'Base
with
Pre => X /= 0.0 or Y /= 0.0,
Post => (if X > 0.0 and then Y = 0.0 then Arctan'Result = 0.0);
function Arctan
(Y : Float_Type'Base;
X : Float_Type'Base := 1.0;
Cycle : Float_Type'Base) return Float_Type'Base
with
Pre => Cycle > 0.0 and (X /= 0.0 or Y /= 0.0),
Post => (if X > 0.0 and then Y = 0.0 then Arctan'Result = 0.0);
function Arccot
(X : Float_Type'Base;
Y : Float_Type'Base := 1.0) return Float_Type'Base
with
Pre => X /= 0.0 or Y /= 0.0,
Post => (if X > 0.0 and then Y = 0.0 then Arccot'Result = 0.0);
function Arccot
(X : Float_Type'Base;
Y : Float_Type'Base := 1.0;
Cycle : Float_Type'Base) return Float_Type'Base
with
Pre => Cycle > 0.0 and (X /= 0.0 or Y /= 0.0),
Post => (if X > 0.0 and then Y = 0.0 then Arccot'Result = 0.0);
function Sinh (X : Float_Type'Base) return Float_Type'Base with
Post => (if X = 0.0 then Sinh'Result = 0.0);
function Cosh (X : Float_Type'Base) return Float_Type'Base with
Post => Cosh'Result >= 1.0
and then (if X = 0.0 then Cosh'Result = 1.0);
function Tanh (X : Float_Type'Base) return Float_Type'Base with
Post => Tanh'Result in -1.0 .. 1.0
and then (if X = 0.0 then Tanh'Result = 0.0);
function Coth (X : Float_Type'Base) return Float_Type'Base with
Pre => X /= 0.0,
Post => abs Coth'Result >= 1.0;
function Arcsinh (X : Float_Type'Base) return Float_Type'Base with
Post => (if X = 0.0 then Arcsinh'Result = 0.0);
function Arccosh (X : Float_Type'Base) return Float_Type'Base with
Pre => X >= 1.0,
Post => Arccosh'Result >= 0.0
and then (if X = 1.0 then Arccosh'Result = 0.0);
function Arctanh (X : Float_Type'Base) return Float_Type'Base with
Pre => abs X < 1.0,
Post => (if X = 0.0 then Arctanh'Result = 0.0);
function Arccoth (X : Float_Type'Base) return Float_Type'Base with
Pre => abs X > 1.0;
end Ada.Numerics.Generic_Elementary_Functions;
| 45.563107 | 79 | 0.548476 |
d02b96e0e795bf8018baecc88a0b8bfeb10e9667 | 6,076 | ads | Ada | gcc-gcc-7_3_0-release/gcc/ada/s-linux-android.ads | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 7 | 2020-05-02T17:34:05.000Z | 2021-10-17T10:15:18.000Z | gcc-gcc-7_3_0-release/gcc/ada/s-linux-android.ads | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | null | null | null | gcc-gcc-7_3_0-release/gcc/ada/s-linux-android.ads | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 2 | 2020-07-27T00:22:36.000Z | 2021-04-01T09:41:02.000Z | ------------------------------------------------------------------------------
-- --
-- GNU ADA RUN-TIME LIBRARY (GNARL) COMPONENTS --
-- --
-- S Y S T E M . L I N U X --
-- --
-- S p e c --
-- --
-- Copyright (C) 2014, Free Software Foundation, Inc. --
-- --
-- GNARL is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- In particular, you can freely distribute your programs built with the --
-- GNAT Pro compiler, including any required library run-time units, using --
-- any licensing terms of your choosing. See the AdaCore Software License --
-- for full details. --
-- --
-- --
------------------------------------------------------------------------------
-- This is the Android version of this package
-- This package encapsulates cpu specific differences between implementations
-- of GNU/Linux, in order to share s-osinte-linux.ads.
-- PLEASE DO NOT add any with-clauses to this package or remove the pragma
-- Preelaborate. This package is designed to be a bottom-level (leaf) package
with Interfaces.C;
package System.Linux is
pragma Preelaborate;
----------
-- Time --
----------
subtype long is Interfaces.C.long;
subtype suseconds_t is Interfaces.C.long;
subtype time_t is Interfaces.C.long;
subtype clockid_t is Interfaces.C.int;
type timespec is record
tv_sec : time_t;
tv_nsec : long;
end record;
pragma Convention (C, timespec);
type timeval is record
tv_sec : time_t;
tv_usec : suseconds_t;
end record;
pragma Convention (C, timeval);
-----------
-- Errno --
-----------
EAGAIN : constant := 11;
EINTR : constant := 4;
EINVAL : constant := 22;
ENOMEM : constant := 12;
EPERM : constant := 1;
ETIMEDOUT : constant := 110;
-------------
-- Signals --
-------------
SIGHUP : constant := 1; -- hangup
SIGINT : constant := 2; -- interrupt (rubout)
SIGQUIT : constant := 3; -- quit (ASCD FS)
SIGILL : constant := 4; -- illegal instruction (not reset)
SIGTRAP : constant := 5; -- trace trap (not reset)
SIGIOT : constant := 6; -- IOT instruction
SIGABRT : constant := 6; -- used by abort, replace SIGIOT in the future
SIGFPE : constant := 8; -- floating point exception
SIGKILL : constant := 9; -- kill (cannot be caught or ignored)
SIGBUS : constant := 7; -- bus error
SIGSEGV : constant := 11; -- segmentation violation
SIGPIPE : constant := 13; -- write on a pipe with no one to read it
SIGALRM : constant := 14; -- alarm clock
SIGTERM : constant := 15; -- software termination signal from kill
SIGUSR1 : constant := 10; -- user defined signal 1
SIGUSR2 : constant := 12; -- user defined signal 2
SIGCLD : constant := 17; -- alias for SIGCHLD
SIGCHLD : constant := 17; -- child status change
SIGPWR : constant := 30; -- power-fail restart
SIGWINCH : constant := 28; -- window size change
SIGURG : constant := 23; -- urgent condition on IO channel
SIGPOLL : constant := 29; -- pollable event occurred
SIGIO : constant := 29; -- I/O now possible (4.2 BSD)
SIGLOST : constant := 29; -- File lock lost
SIGSTOP : constant := 19; -- stop (cannot be caught or ignored)
SIGTSTP : constant := 20; -- user stop requested from tty
SIGCONT : constant := 18; -- stopped process has been continued
SIGTTIN : constant := 21; -- background tty read attempted
SIGTTOU : constant := 22; -- background tty write attempted
SIGVTALRM : constant := 26; -- virtual timer expired
SIGPROF : constant := 27; -- profiling timer expired
SIGXCPU : constant := 24; -- CPU time limit exceeded
SIGXFSZ : constant := 25; -- filesize limit exceeded
SIGUNUSED : constant := 31; -- unused signal (GNU/Linux)
SIGSTKFLT : constant := 16; -- coprocessor stack fault (Linux)
SIGLTHRRES : constant := 32; -- GNU/LinuxThreads restart signal
SIGLTHRCAN : constant := 33; -- GNU/LinuxThreads cancel signal
SIGLTHRDBG : constant := 34; -- GNU/LinuxThreads debugger signal
-- struct_sigaction offsets
sa_handler_pos : constant := 0;
sa_mask_pos : constant := Standard'Address_Size / 8;
sa_flags_pos : constant := 4 + sa_mask_pos;
SA_SIGINFO : constant := 16#00000004#;
SA_ONSTACK : constant := 16#08000000#;
SA_RESTART : constant := 16#10000000#;
SA_NODEFER : constant := 16#40000000#;
end System.Linux;
| 46.738462 | 79 | 0.517775 |
d04f734db6a721516e67a68ca0d500598ef5a892 | 4,225 | adb | Ada | src/verhoeff.adb | damaki/Verhoeff | e68d8dbebea75ef0b505776ac6125a3cd2449c30 | [
"MIT"
] | null | null | null | src/verhoeff.adb | damaki/Verhoeff | e68d8dbebea75ef0b505776ac6125a3cd2449c30 | [
"MIT"
] | null | null | null | src/verhoeff.adb | damaki/Verhoeff | e68d8dbebea75ef0b505776ac6125a3cd2449c30 | [
"MIT"
] | null | null | null | -------------------------------------------------------------------------------
-- Copyright (c) 2016 Daniel King
--
-- Permission is hereby granted, free of charge, to any person obtaining a copy
-- of this software and associated documentation files (the "Software"), to
-- deal in the Software without restriction, including without limitation the
-- rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
-- sell copies of the Software, and to permit persons to whom the Software is
-- furnished to do so, subject to the following conditions:
--
-- The above copyright notice and this permission notice shall be included in
-- all copies or substantial portions of the Software.
--
-- THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
-- IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
-- FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
-- AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
-- LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
-- FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
-- IN THE SOFTWARE.
-------------------------------------------------------------------------------
package body Verhoeff
with SPARK_Mode => On
is
type Digit_Number is new Natural range 0 .. 9;
D : constant array(Digit_Number, Digit_Number) of Digit_Number :=
((0, 1, 2, 3, 4, 5, 6, 7, 8, 9),
(1, 2, 3, 4, 0, 6, 7, 8, 9, 5),
(2, 3, 4, 0, 1, 7, 8, 9, 5, 6),
(3, 4, 0, 1, 2, 8, 9, 5, 6, 7),
(4, 0, 1, 2, 3, 9, 5, 6, 7, 8),
(5, 9, 8, 7, 6, 0, 4, 3, 2, 1),
(6, 5, 9, 8, 7, 1, 0, 4, 3, 2),
(7, 6, 5, 9, 8, 2, 1, 0, 4, 3),
(8, 7, 6, 5, 9, 3, 2, 1, 0, 4),
(9, 8, 7, 6, 5, 4, 3, 2, 1, 0));
Inv : constant array(Digit_Number) of Digit_Number :=
(0, 4, 3, 2, 1, 5, 6, 7, 8, 9);
P : constant array(Digit_Number range 0 .. 7, Digit_Number) of Digit_Number :=
((0, 1, 2, 3, 4, 5, 6, 7, 8, 9),
(1, 5, 7, 6, 2, 8, 3, 0, 9, 4),
(5, 8, 0, 3, 7, 9, 6, 1, 4, 2),
(8, 9, 1, 6, 0, 4, 3, 5, 2, 7),
(9, 4, 5, 3, 1, 2, 6, 8, 7, 0),
(4, 2, 8, 6, 5, 7, 3, 9, 0, 1),
(2, 7, 9, 3, 8, 0, 6, 4, 1, 5),
(7, 0, 4, 6, 9, 1, 3, 2, 5, 8));
-- Check that Inv(Inv(j)) == j
pragma Assert(for all J in Digit_Number => Inv(Inv(J)) = J);
-- Check that D(j, Inv(j)) = 0
pragma Assert(for all J in Digit_Number => D(J, Inv(J)) = 0);
-- Check that P(i+j, n) = P(i, P(j, n))
pragma Assert(for all I in Digit_Number =>
(for all J in Digit_Number =>
(for all N in Digit_Number =>
P((I+J) mod 8, N) = P(I mod 8, P(J mod 8, N))
)
)
);
function To_Digit_Number(Value : in Digit_Character) return Digit_Number
is (Digit_Number(Digit_Character'Pos(Value) - Digit_Character'Pos('0')))
with Inline;
function To_Digit_Character(Value : in Digit_Number) return Digit_Character
is (Digit_Character'Val(Digit_Character'Pos('0') + Integer(Value)))
with Inline;
function Compute_Verhoeff(Seq : in String;
Initial : in Digit_Character) return Digit_Number
with Pre => (for all I in Seq'Range => (Seq(I) in Digit_Character))
is
C : Digit_Number := To_Digit_Number(Initial);
I : Natural := 0;
X : Natural := Seq'Length;
begin
while X > 0 loop
pragma Loop_Variant(Decreases => X);
pragma Loop_Invariant((I+X) = Seq'Length);
I := I + 1;
X := X - 1;
C := D(C, P(Digit_Number(I mod 8), To_Digit_Number(Seq(Seq'First + X))));
end loop;
return C;
end Compute_Verhoeff;
function Check_Digit(Seq : in String) return Digit_Character
is
begin
return To_Digit_Character(Inv(Compute_Verhoeff(Seq, '0')));
end Check_Digit;
function Is_Valid(Seq : in String) return Boolean
is
begin
return 0 = Compute_Verhoeff(Seq(Seq'First .. Seq'Last - 1), Seq(Seq'Last));
end Is_Valid;
end Verhoeff;
| 37.389381 | 82 | 0.552899 |
d0122ef5d00e0cc74da47349857b6d59ca84fe8d | 57,520 | adb | Ada | src/model/search-models.adb | stcarrez/ada-search | 286dda8fbdd7fb0cd5e447347f92a77e34615089 | [
"Apache-2.0"
] | 9 | 2020-06-28T11:00:30.000Z | 2021-11-30T21:38:58.000Z | src/model/search-models.adb | stcarrez/ada-search | 286dda8fbdd7fb0cd5e447347f92a77e34615089 | [
"Apache-2.0"
] | null | null | null | src/model/search-models.adb | stcarrez/ada-search | 286dda8fbdd7fb0cd5e447347f92a77e34615089 | [
"Apache-2.0"
] | null | null | null | -----------------------------------------------------------------------
-- Search.Models -- Search.Models
-----------------------------------------------------------------------
-- File generated by ada-gen DO NOT MODIFY
-- Template used: templates/model/package-body.xhtml
-- Ada Generator: https://ada-gen.googlecode.com/svn/trunk Revision 1095
-----------------------------------------------------------------------
-- Copyright (C) 2020 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with Ada.Unchecked_Deallocation;
package body Search.Models is
use type ADO.Objects.Object_Record_Access;
use type ADO.Objects.Object_Ref;
pragma Warnings (Off, "formal parameter * is not referenced");
function Index_Key (Id : in ADO.Identifier) return ADO.Objects.Object_Key is
Result : ADO.Objects.Object_Key (Of_Type => ADO.Objects.KEY_INTEGER,
Of_Class => INDEX_DEF'Access);
begin
ADO.Objects.Set_Value (Result, Id);
return Result;
end Index_Key;
function Index_Key (Id : in String) return ADO.Objects.Object_Key is
Result : ADO.Objects.Object_Key (Of_Type => ADO.Objects.KEY_INTEGER,
Of_Class => INDEX_DEF'Access);
begin
ADO.Objects.Set_Value (Result, Id);
return Result;
end Index_Key;
function "=" (Left, Right : Index_Ref'Class) return Boolean is
begin
return ADO.Objects.Object_Ref'Class (Left) = ADO.Objects.Object_Ref'Class (Right);
end "=";
procedure Set_Field (Object : in out Index_Ref'Class;
Impl : out Index_Access) is
Result : ADO.Objects.Object_Record_Access;
begin
Object.Prepare_Modify (Result);
Impl := Index_Impl (Result.all)'Access;
end Set_Field;
-- Internal method to allocate the Object_Record instance
procedure Allocate (Object : in out Index_Ref) is
Impl : Index_Access;
begin
Impl := new Index_Impl;
ADO.Objects.Set_Object (Object, Impl.all'Access);
end Allocate;
-- ----------------------------------------
-- Data object: Index
-- ----------------------------------------
procedure Set_Id (Object : in out Index_Ref;
Value : in ADO.Identifier) is
Impl : Index_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Key_Value (Impl.all, 1, Value);
end Set_Id;
function Get_Id (Object : in Index_Ref)
return ADO.Identifier is
Impl : constant Index_Access
:= Index_Impl (Object.Get_Object.all)'Access;
begin
return Impl.Get_Key_Value;
end Get_Id;
-- Copy of the object.
procedure Copy (Object : in Index_Ref;
Into : in out Index_Ref) is
Result : Index_Ref;
begin
if not Object.Is_Null then
declare
Impl : constant Index_Access
:= Index_Impl (Object.Get_Load_Object.all)'Access;
Copy : constant Index_Access
:= new Index_Impl;
begin
ADO.Objects.Set_Object (Result, Copy.all'Access);
Copy.Copy (Impl.all);
end;
end if;
Into := Result;
end Copy;
procedure Find (Object : in out Index_Ref;
Session : in out ADO.Sessions.Session'Class;
Query : in ADO.SQL.Query'Class;
Found : out Boolean) is
Impl : constant Index_Access := new Index_Impl;
begin
Impl.Find (Session, Query, Found);
if Found then
ADO.Objects.Set_Object (Object, Impl.all'Access);
else
ADO.Objects.Set_Object (Object, null);
Destroy (Impl);
end if;
end Find;
procedure Load (Object : in out Index_Ref;
Session : in out ADO.Sessions.Session'Class;
Id : in ADO.Identifier) is
Impl : constant Index_Access := new Index_Impl;
Found : Boolean;
Query : ADO.SQL.Query;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Impl.Find (Session, Query, Found);
if not Found then
Destroy (Impl);
raise ADO.Objects.NOT_FOUND;
end if;
ADO.Objects.Set_Object (Object, Impl.all'Access);
end Load;
procedure Load (Object : in out Index_Ref;
Session : in out ADO.Sessions.Session'Class;
Id : in ADO.Identifier;
Found : out Boolean) is
Impl : constant Index_Access := new Index_Impl;
Query : ADO.SQL.Query;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Impl.Find (Session, Query, Found);
if not Found then
Destroy (Impl);
else
ADO.Objects.Set_Object (Object, Impl.all'Access);
end if;
end Load;
procedure Save (Object : in out Index_Ref;
Session : in out ADO.Sessions.Master_Session'Class) is
Impl : ADO.Objects.Object_Record_Access := Object.Get_Object;
begin
if Impl = null then
Impl := new Index_Impl;
ADO.Objects.Set_Object (Object, Impl);
end if;
if not ADO.Objects.Is_Created (Impl.all) then
Impl.Create (Session);
else
Impl.Save (Session);
end if;
end Save;
procedure Delete (Object : in out Index_Ref;
Session : in out ADO.Sessions.Master_Session'Class) is
Impl : constant ADO.Objects.Object_Record_Access := Object.Get_Object;
begin
if Impl /= null then
Impl.Delete (Session);
end if;
end Delete;
-- --------------------
-- Free the object
-- --------------------
procedure Destroy (Object : access Index_Impl) is
type Index_Impl_Ptr is access all Index_Impl;
procedure Unchecked_Free is new Ada.Unchecked_Deallocation
(Index_Impl, Index_Impl_Ptr);
pragma Warnings (Off, "*redundant conversion*");
Ptr : Index_Impl_Ptr := Index_Impl (Object.all)'Access;
pragma Warnings (On, "*redundant conversion*");
begin
Unchecked_Free (Ptr);
end Destroy;
procedure Find (Object : in out Index_Impl;
Session : in out ADO.Sessions.Session'Class;
Query : in ADO.SQL.Query'Class;
Found : out Boolean) is
Stmt : ADO.Statements.Query_Statement
:= Session.Create_Statement (Query, INDEX_DEF'Access);
begin
Stmt.Execute;
if Stmt.Has_Elements then
Object.Load (Stmt, Session);
Stmt.Next;
Found := not Stmt.Has_Elements;
else
Found := False;
end if;
end Find;
overriding
procedure Load (Object : in out Index_Impl;
Session : in out ADO.Sessions.Session'Class) is
Found : Boolean;
Query : ADO.SQL.Query;
Id : constant ADO.Identifier := Object.Get_Key_Value;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Object.Find (Session, Query, Found);
if not Found then
raise ADO.Objects.NOT_FOUND;
end if;
end Load;
procedure Save (Object : in out Index_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Stmt : ADO.Statements.Update_Statement
:= Session.Create_Statement (INDEX_DEF'Access);
begin
if Object.Is_Modified (1) then
Stmt.Save_Field (Name => COL_0_1_NAME, -- id
Value => Object.Get_Key);
Object.Clear_Modified (1);
end if;
if Stmt.Has_Save_Fields then
Stmt.Set_Filter (Filter => "id = ?");
Stmt.Add_Param (Value => Object.Get_Key);
declare
Result : Integer;
begin
Stmt.Execute (Result);
if Result /= 1 then
if Result /= 0 then
raise ADO.Objects.UPDATE_ERROR;
end if;
end if;
end;
end if;
end Save;
procedure Create (Object : in out Index_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Query : ADO.Statements.Insert_Statement
:= Session.Create_Statement (INDEX_DEF'Access);
Result : Integer;
begin
Session.Allocate (Id => Object);
Query.Save_Field (Name => COL_0_1_NAME, -- id
Value => Object.Get_Key);
Query.Execute (Result);
if Result /= 1 then
raise ADO.Objects.INSERT_ERROR;
end if;
ADO.Objects.Set_Created (Object);
end Create;
procedure Delete (Object : in out Index_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Stmt : ADO.Statements.Delete_Statement
:= Session.Create_Statement (INDEX_DEF'Access);
begin
Stmt.Set_Filter (Filter => "id = ?");
Stmt.Add_Param (Value => Object.Get_Key);
Stmt.Execute;
end Delete;
-- ------------------------------
-- Get the bean attribute identified by the name.
-- ------------------------------
overriding
function Get_Value (From : in Index_Ref;
Name : in String) return Util.Beans.Objects.Object is
Obj : ADO.Objects.Object_Record_Access;
Impl : access Index_Impl;
begin
if From.Is_Null then
return Util.Beans.Objects.Null_Object;
end if;
Obj := From.Get_Load_Object;
Impl := Index_Impl (Obj.all)'Access;
if Name = "id" then
return ADO.Objects.To_Object (Impl.Get_Key);
end if;
return Util.Beans.Objects.Null_Object;
end Get_Value;
-- ------------------------------
-- Load the object from current iterator position
-- ------------------------------
procedure Load (Object : in out Index_Impl;
Stmt : in out ADO.Statements.Query_Statement'Class;
Session : in out ADO.Sessions.Session'Class) is
pragma Unreferenced (Session);
begin
Object.Set_Key_Value (Stmt.Get_Identifier (0));
ADO.Objects.Set_Created (Object);
end Load;
function Document_Key (Id : in ADO.Identifier) return ADO.Objects.Object_Key is
Result : ADO.Objects.Object_Key (Of_Type => ADO.Objects.KEY_INTEGER,
Of_Class => DOCUMENT_DEF'Access);
begin
ADO.Objects.Set_Value (Result, Id);
return Result;
end Document_Key;
function Document_Key (Id : in String) return ADO.Objects.Object_Key is
Result : ADO.Objects.Object_Key (Of_Type => ADO.Objects.KEY_INTEGER,
Of_Class => DOCUMENT_DEF'Access);
begin
ADO.Objects.Set_Value (Result, Id);
return Result;
end Document_Key;
function "=" (Left, Right : Document_Ref'Class) return Boolean is
begin
return ADO.Objects.Object_Ref'Class (Left) = ADO.Objects.Object_Ref'Class (Right);
end "=";
procedure Set_Field (Object : in out Document_Ref'Class;
Impl : out Document_Access) is
Result : ADO.Objects.Object_Record_Access;
begin
Object.Prepare_Modify (Result);
Impl := Document_Impl (Result.all)'Access;
end Set_Field;
-- Internal method to allocate the Object_Record instance
procedure Allocate (Object : in out Document_Ref) is
Impl : Document_Access;
begin
Impl := new Document_Impl;
ADO.Objects.Set_Object (Object, Impl.all'Access);
end Allocate;
-- ----------------------------------------
-- Data object: Document
-- ----------------------------------------
procedure Set_Id (Object : in out Document_Ref;
Value : in ADO.Identifier) is
Impl : Document_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Key_Value (Impl.all, 1, Value);
end Set_Id;
function Get_Id (Object : in Document_Ref)
return ADO.Identifier is
Impl : constant Document_Access
:= Document_Impl (Object.Get_Object.all)'Access;
begin
return Impl.Get_Key_Value;
end Get_Id;
procedure Set_Index (Object : in out Document_Ref;
Value : in Search.Models.Index_Ref'Class) is
Impl : Document_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Object (Impl.all, 2, Impl.Index, Value);
end Set_Index;
function Get_Index (Object : in Document_Ref)
return Search.Models.Index_Ref'Class is
Impl : constant Document_Access
:= Document_Impl (Object.Get_Load_Object.all)'Access;
begin
return Impl.Index;
end Get_Index;
-- Copy of the object.
procedure Copy (Object : in Document_Ref;
Into : in out Document_Ref) is
Result : Document_Ref;
begin
if not Object.Is_Null then
declare
Impl : constant Document_Access
:= Document_Impl (Object.Get_Load_Object.all)'Access;
Copy : constant Document_Access
:= new Document_Impl;
begin
ADO.Objects.Set_Object (Result, Copy.all'Access);
Copy.Copy (Impl.all);
Copy.Index := Impl.Index;
end;
end if;
Into := Result;
end Copy;
procedure Find (Object : in out Document_Ref;
Session : in out ADO.Sessions.Session'Class;
Query : in ADO.SQL.Query'Class;
Found : out Boolean) is
Impl : constant Document_Access := new Document_Impl;
begin
Impl.Find (Session, Query, Found);
if Found then
ADO.Objects.Set_Object (Object, Impl.all'Access);
else
ADO.Objects.Set_Object (Object, null);
Destroy (Impl);
end if;
end Find;
procedure Load (Object : in out Document_Ref;
Session : in out ADO.Sessions.Session'Class;
Id : in ADO.Identifier) is
Impl : constant Document_Access := new Document_Impl;
Found : Boolean;
Query : ADO.SQL.Query;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Impl.Find (Session, Query, Found);
if not Found then
Destroy (Impl);
raise ADO.Objects.NOT_FOUND;
end if;
ADO.Objects.Set_Object (Object, Impl.all'Access);
end Load;
procedure Load (Object : in out Document_Ref;
Session : in out ADO.Sessions.Session'Class;
Id : in ADO.Identifier;
Found : out Boolean) is
Impl : constant Document_Access := new Document_Impl;
Query : ADO.SQL.Query;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Impl.Find (Session, Query, Found);
if not Found then
Destroy (Impl);
else
ADO.Objects.Set_Object (Object, Impl.all'Access);
end if;
end Load;
procedure Save (Object : in out Document_Ref;
Session : in out ADO.Sessions.Master_Session'Class) is
Impl : ADO.Objects.Object_Record_Access := Object.Get_Object;
begin
if Impl = null then
Impl := new Document_Impl;
ADO.Objects.Set_Object (Object, Impl);
end if;
if not ADO.Objects.Is_Created (Impl.all) then
Impl.Create (Session);
else
Impl.Save (Session);
end if;
end Save;
procedure Delete (Object : in out Document_Ref;
Session : in out ADO.Sessions.Master_Session'Class) is
Impl : constant ADO.Objects.Object_Record_Access := Object.Get_Object;
begin
if Impl /= null then
Impl.Delete (Session);
end if;
end Delete;
-- --------------------
-- Free the object
-- --------------------
procedure Destroy (Object : access Document_Impl) is
type Document_Impl_Ptr is access all Document_Impl;
procedure Unchecked_Free is new Ada.Unchecked_Deallocation
(Document_Impl, Document_Impl_Ptr);
pragma Warnings (Off, "*redundant conversion*");
Ptr : Document_Impl_Ptr := Document_Impl (Object.all)'Access;
pragma Warnings (On, "*redundant conversion*");
begin
Unchecked_Free (Ptr);
end Destroy;
procedure Find (Object : in out Document_Impl;
Session : in out ADO.Sessions.Session'Class;
Query : in ADO.SQL.Query'Class;
Found : out Boolean) is
Stmt : ADO.Statements.Query_Statement
:= Session.Create_Statement (Query, DOCUMENT_DEF'Access);
begin
Stmt.Execute;
if Stmt.Has_Elements then
Object.Load (Stmt, Session);
Stmt.Next;
Found := not Stmt.Has_Elements;
else
Found := False;
end if;
end Find;
overriding
procedure Load (Object : in out Document_Impl;
Session : in out ADO.Sessions.Session'Class) is
Found : Boolean;
Query : ADO.SQL.Query;
Id : constant ADO.Identifier := Object.Get_Key_Value;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Object.Find (Session, Query, Found);
if not Found then
raise ADO.Objects.NOT_FOUND;
end if;
end Load;
procedure Save (Object : in out Document_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Stmt : ADO.Statements.Update_Statement
:= Session.Create_Statement (DOCUMENT_DEF'Access);
begin
if Object.Is_Modified (1) then
Stmt.Save_Field (Name => COL_0_2_NAME, -- id
Value => Object.Get_Key);
Object.Clear_Modified (1);
end if;
if Object.Is_Modified (2) then
Stmt.Save_Field (Name => COL_1_2_NAME, -- index_id
Value => Object.Index);
Object.Clear_Modified (2);
end if;
if Stmt.Has_Save_Fields then
Stmt.Set_Filter (Filter => "id = ?");
Stmt.Add_Param (Value => Object.Get_Key);
declare
Result : Integer;
begin
Stmt.Execute (Result);
if Result /= 1 then
if Result /= 0 then
raise ADO.Objects.UPDATE_ERROR;
end if;
end if;
end;
end if;
end Save;
procedure Create (Object : in out Document_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Query : ADO.Statements.Insert_Statement
:= Session.Create_Statement (DOCUMENT_DEF'Access);
Result : Integer;
begin
Session.Allocate (Id => Object);
Query.Save_Field (Name => COL_0_2_NAME, -- id
Value => Object.Get_Key);
Query.Save_Field (Name => COL_1_2_NAME, -- index_id
Value => Object.Index);
Query.Execute (Result);
if Result /= 1 then
raise ADO.Objects.INSERT_ERROR;
end if;
ADO.Objects.Set_Created (Object);
end Create;
procedure Delete (Object : in out Document_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Stmt : ADO.Statements.Delete_Statement
:= Session.Create_Statement (DOCUMENT_DEF'Access);
begin
Stmt.Set_Filter (Filter => "id = ?");
Stmt.Add_Param (Value => Object.Get_Key);
Stmt.Execute;
end Delete;
-- ------------------------------
-- Get the bean attribute identified by the name.
-- ------------------------------
overriding
function Get_Value (From : in Document_Ref;
Name : in String) return Util.Beans.Objects.Object is
Obj : ADO.Objects.Object_Record_Access;
Impl : access Document_Impl;
begin
if From.Is_Null then
return Util.Beans.Objects.Null_Object;
end if;
Obj := From.Get_Load_Object;
Impl := Document_Impl (Obj.all)'Access;
if Name = "id" then
return ADO.Objects.To_Object (Impl.Get_Key);
end if;
return Util.Beans.Objects.Null_Object;
end Get_Value;
-- ------------------------------
-- Load the object from current iterator position
-- ------------------------------
procedure Load (Object : in out Document_Impl;
Stmt : in out ADO.Statements.Query_Statement'Class;
Session : in out ADO.Sessions.Session'Class) is
begin
Object.Set_Key_Value (Stmt.Get_Identifier (0));
if not Stmt.Is_Null (1) then
Object.Index.Set_Key_Value (Stmt.Get_Identifier (1), Session);
end if;
ADO.Objects.Set_Created (Object);
end Load;
function Field_Key (Id : in ADO.Identifier) return ADO.Objects.Object_Key is
Result : ADO.Objects.Object_Key (Of_Type => ADO.Objects.KEY_INTEGER,
Of_Class => FIELD_DEF'Access);
begin
ADO.Objects.Set_Value (Result, Id);
return Result;
end Field_Key;
function Field_Key (Id : in String) return ADO.Objects.Object_Key is
Result : ADO.Objects.Object_Key (Of_Type => ADO.Objects.KEY_INTEGER,
Of_Class => FIELD_DEF'Access);
begin
ADO.Objects.Set_Value (Result, Id);
return Result;
end Field_Key;
function "=" (Left, Right : Field_Ref'Class) return Boolean is
begin
return ADO.Objects.Object_Ref'Class (Left) = ADO.Objects.Object_Ref'Class (Right);
end "=";
procedure Set_Field (Object : in out Field_Ref'Class;
Impl : out Field_Access) is
Result : ADO.Objects.Object_Record_Access;
begin
Object.Prepare_Modify (Result);
Impl := Field_Impl (Result.all)'Access;
end Set_Field;
-- Internal method to allocate the Object_Record instance
procedure Allocate (Object : in out Field_Ref) is
Impl : Field_Access;
begin
Impl := new Field_Impl;
ADO.Objects.Set_Object (Object, Impl.all'Access);
end Allocate;
-- ----------------------------------------
-- Data object: Field
-- ----------------------------------------
procedure Set_Id (Object : in out Field_Ref;
Value : in ADO.Identifier) is
Impl : Field_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Key_Value (Impl.all, 1, Value);
end Set_Id;
function Get_Id (Object : in Field_Ref)
return ADO.Identifier is
Impl : constant Field_Access
:= Field_Impl (Object.Get_Object.all)'Access;
begin
return Impl.Get_Key_Value;
end Get_Id;
procedure Set_Name (Object : in out Field_Ref;
Value : in String) is
Impl : Field_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_String (Impl.all, 2, Impl.Name, Value);
end Set_Name;
procedure Set_Name (Object : in out Field_Ref;
Value : in Ada.Strings.Unbounded.Unbounded_String) is
Impl : Field_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Unbounded_String (Impl.all, 2, Impl.Name, Value);
end Set_Name;
function Get_Name (Object : in Field_Ref)
return String is
begin
return Ada.Strings.Unbounded.To_String (Object.Get_Name);
end Get_Name;
function Get_Name (Object : in Field_Ref)
return Ada.Strings.Unbounded.Unbounded_String is
Impl : constant Field_Access
:= Field_Impl (Object.Get_Load_Object.all)'Access;
begin
return Impl.Name;
end Get_Name;
procedure Set_Value (Object : in out Field_Ref;
Value : in String) is
Impl : Field_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_String (Impl.all, 3, Impl.Value, Value);
end Set_Value;
procedure Set_Value (Object : in out Field_Ref;
Value : in Ada.Strings.Unbounded.Unbounded_String) is
Impl : Field_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Unbounded_String (Impl.all, 3, Impl.Value, Value);
end Set_Value;
function Get_Value (Object : in Field_Ref)
return String is
begin
return Ada.Strings.Unbounded.To_String (Object.Get_Value);
end Get_Value;
function Get_Value (Object : in Field_Ref)
return Ada.Strings.Unbounded.Unbounded_String is
Impl : constant Field_Access
:= Field_Impl (Object.Get_Load_Object.all)'Access;
begin
return Impl.Value;
end Get_Value;
procedure Set_Document (Object : in out Field_Ref;
Value : in Search.Models.Document_Ref'Class) is
Impl : Field_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Object (Impl.all, 4, Impl.Document, Value);
end Set_Document;
function Get_Document (Object : in Field_Ref)
return Search.Models.Document_Ref'Class is
Impl : constant Field_Access
:= Field_Impl (Object.Get_Load_Object.all)'Access;
begin
return Impl.Document;
end Get_Document;
-- Copy of the object.
procedure Copy (Object : in Field_Ref;
Into : in out Field_Ref) is
Result : Field_Ref;
begin
if not Object.Is_Null then
declare
Impl : constant Field_Access
:= Field_Impl (Object.Get_Load_Object.all)'Access;
Copy : constant Field_Access
:= new Field_Impl;
begin
ADO.Objects.Set_Object (Result, Copy.all'Access);
Copy.Copy (Impl.all);
Copy.Name := Impl.Name;
Copy.Value := Impl.Value;
Copy.Document := Impl.Document;
end;
end if;
Into := Result;
end Copy;
procedure Find (Object : in out Field_Ref;
Session : in out ADO.Sessions.Session'Class;
Query : in ADO.SQL.Query'Class;
Found : out Boolean) is
Impl : constant Field_Access := new Field_Impl;
begin
Impl.Find (Session, Query, Found);
if Found then
ADO.Objects.Set_Object (Object, Impl.all'Access);
else
ADO.Objects.Set_Object (Object, null);
Destroy (Impl);
end if;
end Find;
procedure Load (Object : in out Field_Ref;
Session : in out ADO.Sessions.Session'Class;
Id : in ADO.Identifier) is
Impl : constant Field_Access := new Field_Impl;
Found : Boolean;
Query : ADO.SQL.Query;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Impl.Find (Session, Query, Found);
if not Found then
Destroy (Impl);
raise ADO.Objects.NOT_FOUND;
end if;
ADO.Objects.Set_Object (Object, Impl.all'Access);
end Load;
procedure Load (Object : in out Field_Ref;
Session : in out ADO.Sessions.Session'Class;
Id : in ADO.Identifier;
Found : out Boolean) is
Impl : constant Field_Access := new Field_Impl;
Query : ADO.SQL.Query;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Impl.Find (Session, Query, Found);
if not Found then
Destroy (Impl);
else
ADO.Objects.Set_Object (Object, Impl.all'Access);
end if;
end Load;
procedure Save (Object : in out Field_Ref;
Session : in out ADO.Sessions.Master_Session'Class) is
Impl : ADO.Objects.Object_Record_Access := Object.Get_Object;
begin
if Impl = null then
Impl := new Field_Impl;
ADO.Objects.Set_Object (Object, Impl);
end if;
if not ADO.Objects.Is_Created (Impl.all) then
Impl.Create (Session);
else
Impl.Save (Session);
end if;
end Save;
procedure Delete (Object : in out Field_Ref;
Session : in out ADO.Sessions.Master_Session'Class) is
Impl : constant ADO.Objects.Object_Record_Access := Object.Get_Object;
begin
if Impl /= null then
Impl.Delete (Session);
end if;
end Delete;
-- --------------------
-- Free the object
-- --------------------
procedure Destroy (Object : access Field_Impl) is
type Field_Impl_Ptr is access all Field_Impl;
procedure Unchecked_Free is new Ada.Unchecked_Deallocation
(Field_Impl, Field_Impl_Ptr);
pragma Warnings (Off, "*redundant conversion*");
Ptr : Field_Impl_Ptr := Field_Impl (Object.all)'Access;
pragma Warnings (On, "*redundant conversion*");
begin
Unchecked_Free (Ptr);
end Destroy;
procedure Find (Object : in out Field_Impl;
Session : in out ADO.Sessions.Session'Class;
Query : in ADO.SQL.Query'Class;
Found : out Boolean) is
Stmt : ADO.Statements.Query_Statement
:= Session.Create_Statement (Query, FIELD_DEF'Access);
begin
Stmt.Execute;
if Stmt.Has_Elements then
Object.Load (Stmt, Session);
Stmt.Next;
Found := not Stmt.Has_Elements;
else
Found := False;
end if;
end Find;
overriding
procedure Load (Object : in out Field_Impl;
Session : in out ADO.Sessions.Session'Class) is
Found : Boolean;
Query : ADO.SQL.Query;
Id : constant ADO.Identifier := Object.Get_Key_Value;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Object.Find (Session, Query, Found);
if not Found then
raise ADO.Objects.NOT_FOUND;
end if;
end Load;
procedure Save (Object : in out Field_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Stmt : ADO.Statements.Update_Statement
:= Session.Create_Statement (FIELD_DEF'Access);
begin
if Object.Is_Modified (1) then
Stmt.Save_Field (Name => COL_0_3_NAME, -- id
Value => Object.Get_Key);
Object.Clear_Modified (1);
end if;
if Object.Is_Modified (4) then
Stmt.Save_Field (Name => COL_3_3_NAME, -- document_id
Value => Object.Document);
Object.Clear_Modified (4);
end if;
if Stmt.Has_Save_Fields then
Stmt.Set_Filter (Filter => "id = ?");
Stmt.Add_Param (Value => Object.Get_Key);
declare
Result : Integer;
begin
Stmt.Execute (Result);
if Result /= 1 then
if Result /= 0 then
raise ADO.Objects.UPDATE_ERROR;
end if;
end if;
end;
end if;
end Save;
procedure Create (Object : in out Field_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Query : ADO.Statements.Insert_Statement
:= Session.Create_Statement (FIELD_DEF'Access);
Result : Integer;
begin
Session.Allocate (Id => Object);
Query.Save_Field (Name => COL_0_3_NAME, -- id
Value => Object.Get_Key);
Query.Save_Field (Name => COL_1_3_NAME, -- name
Value => Object.Name);
Query.Save_Field (Name => COL_2_3_NAME, -- value
Value => Object.Value);
Query.Save_Field (Name => COL_3_3_NAME, -- document_id
Value => Object.Document);
Query.Execute (Result);
if Result /= 1 then
raise ADO.Objects.INSERT_ERROR;
end if;
ADO.Objects.Set_Created (Object);
end Create;
procedure Delete (Object : in out Field_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Stmt : ADO.Statements.Delete_Statement
:= Session.Create_Statement (FIELD_DEF'Access);
begin
Stmt.Set_Filter (Filter => "id = ?");
Stmt.Add_Param (Value => Object.Get_Key);
Stmt.Execute;
end Delete;
-- ------------------------------
-- Get the bean attribute identified by the name.
-- ------------------------------
overriding
function Get_Value (From : in Field_Ref;
Name : in String) return Util.Beans.Objects.Object is
Obj : ADO.Objects.Object_Record_Access;
Impl : access Field_Impl;
begin
if From.Is_Null then
return Util.Beans.Objects.Null_Object;
end if;
Obj := From.Get_Load_Object;
Impl := Field_Impl (Obj.all)'Access;
if Name = "id" then
return ADO.Objects.To_Object (Impl.Get_Key);
elsif Name = "name" then
return Util.Beans.Objects.To_Object (Impl.Name);
elsif Name = "value" then
return Util.Beans.Objects.To_Object (Impl.Value);
end if;
return Util.Beans.Objects.Null_Object;
end Get_Value;
-- ------------------------------
-- Load the object from current iterator position
-- ------------------------------
procedure Load (Object : in out Field_Impl;
Stmt : in out ADO.Statements.Query_Statement'Class;
Session : in out ADO.Sessions.Session'Class) is
begin
Object.Set_Key_Value (Stmt.Get_Identifier (0));
Object.Name := Stmt.Get_Unbounded_String (1);
Object.Value := Stmt.Get_Unbounded_String (2);
if not Stmt.Is_Null (3) then
Object.Document.Set_Key_Value (Stmt.Get_Identifier (3), Session);
end if;
ADO.Objects.Set_Created (Object);
end Load;
function Sequence_Key (Id : in ADO.Identifier) return ADO.Objects.Object_Key is
Result : ADO.Objects.Object_Key (Of_Type => ADO.Objects.KEY_INTEGER,
Of_Class => SEQUENCE_DEF'Access);
begin
ADO.Objects.Set_Value (Result, Id);
return Result;
end Sequence_Key;
function Sequence_Key (Id : in String) return ADO.Objects.Object_Key is
Result : ADO.Objects.Object_Key (Of_Type => ADO.Objects.KEY_INTEGER,
Of_Class => SEQUENCE_DEF'Access);
begin
ADO.Objects.Set_Value (Result, Id);
return Result;
end Sequence_Key;
function "=" (Left, Right : Sequence_Ref'Class) return Boolean is
begin
return ADO.Objects.Object_Ref'Class (Left) = ADO.Objects.Object_Ref'Class (Right);
end "=";
procedure Set_Field (Object : in out Sequence_Ref'Class;
Impl : out Sequence_Access) is
Result : ADO.Objects.Object_Record_Access;
begin
Object.Prepare_Modify (Result);
Impl := Sequence_Impl (Result.all)'Access;
end Set_Field;
-- Internal method to allocate the Object_Record instance
procedure Allocate (Object : in out Sequence_Ref) is
Impl : Sequence_Access;
begin
Impl := new Sequence_Impl;
Impl.Token := ADO.NO_IDENTIFIER;
ADO.Objects.Set_Object (Object, Impl.all'Access);
end Allocate;
-- ----------------------------------------
-- Data object: Sequence
-- ----------------------------------------
procedure Set_Positions (Object : in out Sequence_Ref;
Value : in ADO.Blob_Ref) is
Impl : Sequence_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Blob (Impl.all, 1, Impl.Positions, Value);
end Set_Positions;
function Get_Positions (Object : in Sequence_Ref)
return ADO.Blob_Ref is
Impl : constant Sequence_Access
:= Sequence_Impl (Object.Get_Load_Object.all)'Access;
begin
return Impl.Positions;
end Get_Positions;
procedure Set_Token (Object : in out Sequence_Ref;
Value : in ADO.Identifier) is
Impl : Sequence_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Identifier (Impl.all, 2, Impl.Token, Value);
end Set_Token;
function Get_Token (Object : in Sequence_Ref)
return ADO.Identifier is
Impl : constant Sequence_Access
:= Sequence_Impl (Object.Get_Load_Object.all)'Access;
begin
return Impl.Token;
end Get_Token;
procedure Set_Field (Object : in out Sequence_Ref;
Value : in ADO.Identifier) is
Impl : Sequence_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Key_Value (Impl.all, 3, Value);
end Set_Field;
function Get_Field (Object : in Sequence_Ref)
return ADO.Identifier is
Impl : constant Sequence_Access
:= Sequence_Impl (Object.Get_Object.all)'Access;
begin
return Impl.Get_Key_Value;
end Get_Field;
-- Copy of the object.
procedure Copy (Object : in Sequence_Ref;
Into : in out Sequence_Ref) is
Result : Sequence_Ref;
begin
if not Object.Is_Null then
declare
Impl : constant Sequence_Access
:= Sequence_Impl (Object.Get_Load_Object.all)'Access;
Copy : constant Sequence_Access
:= new Sequence_Impl;
begin
ADO.Objects.Set_Object (Result, Copy.all'Access);
Copy.Copy (Impl.all);
Copy.Positions := Impl.Positions;
Copy.Token := Impl.Token;
end;
end if;
Into := Result;
end Copy;
procedure Find (Object : in out Sequence_Ref;
Session : in out ADO.Sessions.Session'Class;
Query : in ADO.SQL.Query'Class;
Found : out Boolean) is
Impl : constant Sequence_Access := new Sequence_Impl;
begin
Impl.Find (Session, Query, Found);
if Found then
ADO.Objects.Set_Object (Object, Impl.all'Access);
else
ADO.Objects.Set_Object (Object, null);
Destroy (Impl);
end if;
end Find;
procedure Load (Object : in out Sequence_Ref;
Session : in out ADO.Sessions.Session'Class;
Id : in ADO.Identifier) is
Impl : constant Sequence_Access := new Sequence_Impl;
Found : Boolean;
Query : ADO.SQL.Query;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("field = ?");
Impl.Find (Session, Query, Found);
if not Found then
Destroy (Impl);
raise ADO.Objects.NOT_FOUND;
end if;
ADO.Objects.Set_Object (Object, Impl.all'Access);
end Load;
procedure Load (Object : in out Sequence_Ref;
Session : in out ADO.Sessions.Session'Class;
Id : in ADO.Identifier;
Found : out Boolean) is
Impl : constant Sequence_Access := new Sequence_Impl;
Query : ADO.SQL.Query;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("field = ?");
Impl.Find (Session, Query, Found);
if not Found then
Destroy (Impl);
else
ADO.Objects.Set_Object (Object, Impl.all'Access);
end if;
end Load;
procedure Save (Object : in out Sequence_Ref;
Session : in out ADO.Sessions.Master_Session'Class) is
Impl : ADO.Objects.Object_Record_Access := Object.Get_Object;
begin
if Impl = null then
Impl := new Sequence_Impl;
ADO.Objects.Set_Object (Object, Impl);
end if;
if not ADO.Objects.Is_Created (Impl.all) then
Impl.Create (Session);
else
Impl.Save (Session);
end if;
end Save;
procedure Delete (Object : in out Sequence_Ref;
Session : in out ADO.Sessions.Master_Session'Class) is
Impl : constant ADO.Objects.Object_Record_Access := Object.Get_Object;
begin
if Impl /= null then
Impl.Delete (Session);
end if;
end Delete;
-- --------------------
-- Free the object
-- --------------------
procedure Destroy (Object : access Sequence_Impl) is
type Sequence_Impl_Ptr is access all Sequence_Impl;
procedure Unchecked_Free is new Ada.Unchecked_Deallocation
(Sequence_Impl, Sequence_Impl_Ptr);
pragma Warnings (Off, "*redundant conversion*");
Ptr : Sequence_Impl_Ptr := Sequence_Impl (Object.all)'Access;
pragma Warnings (On, "*redundant conversion*");
begin
Unchecked_Free (Ptr);
end Destroy;
procedure Find (Object : in out Sequence_Impl;
Session : in out ADO.Sessions.Session'Class;
Query : in ADO.SQL.Query'Class;
Found : out Boolean) is
Stmt : ADO.Statements.Query_Statement
:= Session.Create_Statement (Query, SEQUENCE_DEF'Access);
begin
Stmt.Execute;
if Stmt.Has_Elements then
Object.Load (Stmt, Session);
Stmt.Next;
Found := not Stmt.Has_Elements;
else
Found := False;
end if;
end Find;
overriding
procedure Load (Object : in out Sequence_Impl;
Session : in out ADO.Sessions.Session'Class) is
Found : Boolean;
Query : ADO.SQL.Query;
Id : constant ADO.Identifier := Object.Get_Key_Value;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("field = ?");
Object.Find (Session, Query, Found);
if not Found then
raise ADO.Objects.NOT_FOUND;
end if;
end Load;
procedure Save (Object : in out Sequence_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Stmt : ADO.Statements.Update_Statement
:= Session.Create_Statement (SEQUENCE_DEF'Access);
begin
if Object.Is_Modified (1) then
Stmt.Save_Field (Name => COL_0_4_NAME, -- positions
Value => Object.Positions);
Object.Clear_Modified (1);
end if;
if Object.Is_Modified (2) then
Stmt.Save_Field (Name => COL_1_4_NAME, -- token
Value => Object.Token);
Object.Clear_Modified (2);
end if;
if Object.Is_Modified (3) then
Stmt.Save_Field (Name => COL_2_4_NAME, -- field
Value => Object.Get_Key);
Object.Clear_Modified (3);
end if;
if Stmt.Has_Save_Fields then
Stmt.Set_Filter (Filter => "field = ? AND token = ?");
Stmt.Add_Param (Value => Object.Get_Key);
Stmt.Add_Param (Value => Object.Token);
declare
Result : Integer;
begin
Stmt.Execute (Result);
if Result /= 1 then
if Result /= 0 then
raise ADO.Objects.UPDATE_ERROR;
end if;
end if;
end;
end if;
end Save;
procedure Create (Object : in out Sequence_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Query : ADO.Statements.Insert_Statement
:= Session.Create_Statement (SEQUENCE_DEF'Access);
Result : Integer;
begin
Query.Save_Field (Name => COL_0_4_NAME, -- positions
Value => Object.Positions);
Query.Save_Field (Name => COL_1_4_NAME, -- token
Value => Object.Token);
Query.Save_Field (Name => COL_2_4_NAME, -- field
Value => Object.Get_Key);
Query.Execute (Result);
if Result /= 1 then
raise ADO.Objects.INSERT_ERROR;
end if;
ADO.Objects.Set_Created (Object);
end Create;
procedure Delete (Object : in out Sequence_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Stmt : ADO.Statements.Delete_Statement
:= Session.Create_Statement (SEQUENCE_DEF'Access);
begin
Stmt.Set_Filter (Filter => "field = ?");
Stmt.Add_Param (Value => Object.Get_Key);
Stmt.Execute;
end Delete;
-- ------------------------------
-- Get the bean attribute identified by the name.
-- ------------------------------
overriding
function Get_Value (From : in Sequence_Ref;
Name : in String) return Util.Beans.Objects.Object is
Obj : ADO.Objects.Object_Record_Access;
Impl : access Sequence_Impl;
begin
if From.Is_Null then
return Util.Beans.Objects.Null_Object;
end if;
Obj := From.Get_Load_Object;
Impl := Sequence_Impl (Obj.all)'Access;
if Name = "token" then
return Util.Beans.Objects.To_Object (Long_Long_Integer (Impl.Token));
elsif Name = "field" then
return ADO.Objects.To_Object (Impl.Get_Key);
end if;
return Util.Beans.Objects.Null_Object;
end Get_Value;
-- ------------------------------
-- Load the object from current iterator position
-- ------------------------------
procedure Load (Object : in out Sequence_Impl;
Stmt : in out ADO.Statements.Query_Statement'Class;
Session : in out ADO.Sessions.Session'Class) is
begin
Object.Positions := Stmt.Get_Blob (0);
Object.Token := Stmt.Get_Identifier (1);
Object.Set_Key_Value (Stmt.Get_Identifier (2));
ADO.Objects.Set_Created (Object);
end Load;
function Token_Key (Id : in ADO.Identifier) return ADO.Objects.Object_Key is
Result : ADO.Objects.Object_Key (Of_Type => ADO.Objects.KEY_INTEGER,
Of_Class => TOKEN_DEF'Access);
begin
ADO.Objects.Set_Value (Result, Id);
return Result;
end Token_Key;
function Token_Key (Id : in String) return ADO.Objects.Object_Key is
Result : ADO.Objects.Object_Key (Of_Type => ADO.Objects.KEY_INTEGER,
Of_Class => TOKEN_DEF'Access);
begin
ADO.Objects.Set_Value (Result, Id);
return Result;
end Token_Key;
function "=" (Left, Right : Token_Ref'Class) return Boolean is
begin
return ADO.Objects.Object_Ref'Class (Left) = ADO.Objects.Object_Ref'Class (Right);
end "=";
procedure Set_Field (Object : in out Token_Ref'Class;
Impl : out Token_Access) is
Result : ADO.Objects.Object_Record_Access;
begin
Object.Prepare_Modify (Result);
Impl := Token_Impl (Result.all)'Access;
end Set_Field;
-- Internal method to allocate the Object_Record instance
procedure Allocate (Object : in out Token_Ref) is
Impl : Token_Access;
begin
Impl := new Token_Impl;
ADO.Objects.Set_Object (Object, Impl.all'Access);
end Allocate;
-- ----------------------------------------
-- Data object: Token
-- ----------------------------------------
procedure Set_Id (Object : in out Token_Ref;
Value : in ADO.Identifier) is
Impl : Token_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Key_Value (Impl.all, 1, Value);
end Set_Id;
function Get_Id (Object : in Token_Ref)
return ADO.Identifier is
Impl : constant Token_Access
:= Token_Impl (Object.Get_Object.all)'Access;
begin
return Impl.Get_Key_Value;
end Get_Id;
procedure Set_Name (Object : in out Token_Ref;
Value : in String) is
Impl : Token_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_String (Impl.all, 2, Impl.Name, Value);
end Set_Name;
procedure Set_Name (Object : in out Token_Ref;
Value : in Ada.Strings.Unbounded.Unbounded_String) is
Impl : Token_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Unbounded_String (Impl.all, 2, Impl.Name, Value);
end Set_Name;
function Get_Name (Object : in Token_Ref)
return String is
begin
return Ada.Strings.Unbounded.To_String (Object.Get_Name);
end Get_Name;
function Get_Name (Object : in Token_Ref)
return Ada.Strings.Unbounded.Unbounded_String is
Impl : constant Token_Access
:= Token_Impl (Object.Get_Load_Object.all)'Access;
begin
return Impl.Name;
end Get_Name;
procedure Set_Index (Object : in out Token_Ref;
Value : in Search.Models.Index_Ref'Class) is
Impl : Token_Access;
begin
Set_Field (Object, Impl);
ADO.Objects.Set_Field_Object (Impl.all, 3, Impl.Index, Value);
end Set_Index;
function Get_Index (Object : in Token_Ref)
return Search.Models.Index_Ref'Class is
Impl : constant Token_Access
:= Token_Impl (Object.Get_Load_Object.all)'Access;
begin
return Impl.Index;
end Get_Index;
-- Copy of the object.
procedure Copy (Object : in Token_Ref;
Into : in out Token_Ref) is
Result : Token_Ref;
begin
if not Object.Is_Null then
declare
Impl : constant Token_Access
:= Token_Impl (Object.Get_Load_Object.all)'Access;
Copy : constant Token_Access
:= new Token_Impl;
begin
ADO.Objects.Set_Object (Result, Copy.all'Access);
Copy.Copy (Impl.all);
Copy.Name := Impl.Name;
Copy.Index := Impl.Index;
end;
end if;
Into := Result;
end Copy;
procedure Find (Object : in out Token_Ref;
Session : in out ADO.Sessions.Session'Class;
Query : in ADO.SQL.Query'Class;
Found : out Boolean) is
Impl : constant Token_Access := new Token_Impl;
begin
Impl.Find (Session, Query, Found);
if Found then
ADO.Objects.Set_Object (Object, Impl.all'Access);
else
ADO.Objects.Set_Object (Object, null);
Destroy (Impl);
end if;
end Find;
procedure Load (Object : in out Token_Ref;
Session : in out ADO.Sessions.Session'Class;
Id : in ADO.Identifier) is
Impl : constant Token_Access := new Token_Impl;
Found : Boolean;
Query : ADO.SQL.Query;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Impl.Find (Session, Query, Found);
if not Found then
Destroy (Impl);
raise ADO.Objects.NOT_FOUND;
end if;
ADO.Objects.Set_Object (Object, Impl.all'Access);
end Load;
procedure Load (Object : in out Token_Ref;
Session : in out ADO.Sessions.Session'Class;
Id : in ADO.Identifier;
Found : out Boolean) is
Impl : constant Token_Access := new Token_Impl;
Query : ADO.SQL.Query;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Impl.Find (Session, Query, Found);
if not Found then
Destroy (Impl);
else
ADO.Objects.Set_Object (Object, Impl.all'Access);
end if;
end Load;
procedure Save (Object : in out Token_Ref;
Session : in out ADO.Sessions.Master_Session'Class) is
Impl : ADO.Objects.Object_Record_Access := Object.Get_Object;
begin
if Impl = null then
Impl := new Token_Impl;
ADO.Objects.Set_Object (Object, Impl);
end if;
if not ADO.Objects.Is_Created (Impl.all) then
Impl.Create (Session);
else
Impl.Save (Session);
end if;
end Save;
procedure Delete (Object : in out Token_Ref;
Session : in out ADO.Sessions.Master_Session'Class) is
Impl : constant ADO.Objects.Object_Record_Access := Object.Get_Object;
begin
if Impl /= null then
Impl.Delete (Session);
end if;
end Delete;
-- --------------------
-- Free the object
-- --------------------
procedure Destroy (Object : access Token_Impl) is
type Token_Impl_Ptr is access all Token_Impl;
procedure Unchecked_Free is new Ada.Unchecked_Deallocation
(Token_Impl, Token_Impl_Ptr);
pragma Warnings (Off, "*redundant conversion*");
Ptr : Token_Impl_Ptr := Token_Impl (Object.all)'Access;
pragma Warnings (On, "*redundant conversion*");
begin
Unchecked_Free (Ptr);
end Destroy;
procedure Find (Object : in out Token_Impl;
Session : in out ADO.Sessions.Session'Class;
Query : in ADO.SQL.Query'Class;
Found : out Boolean) is
Stmt : ADO.Statements.Query_Statement
:= Session.Create_Statement (Query, TOKEN_DEF'Access);
begin
Stmt.Execute;
if Stmt.Has_Elements then
Object.Load (Stmt, Session);
Stmt.Next;
Found := not Stmt.Has_Elements;
else
Found := False;
end if;
end Find;
overriding
procedure Load (Object : in out Token_Impl;
Session : in out ADO.Sessions.Session'Class) is
Found : Boolean;
Query : ADO.SQL.Query;
Id : constant ADO.Identifier := Object.Get_Key_Value;
begin
Query.Bind_Param (Position => 1, Value => Id);
Query.Set_Filter ("id = ?");
Object.Find (Session, Query, Found);
if not Found then
raise ADO.Objects.NOT_FOUND;
end if;
end Load;
procedure Save (Object : in out Token_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Stmt : ADO.Statements.Update_Statement
:= Session.Create_Statement (TOKEN_DEF'Access);
begin
if Object.Is_Modified (1) then
Stmt.Save_Field (Name => COL_0_5_NAME, -- id
Value => Object.Get_Key);
Object.Clear_Modified (1);
end if;
if Object.Is_Modified (3) then
Stmt.Save_Field (Name => COL_2_5_NAME, -- index_id
Value => Object.Index);
Object.Clear_Modified (3);
end if;
if Stmt.Has_Save_Fields then
Stmt.Set_Filter (Filter => "id = ?");
Stmt.Add_Param (Value => Object.Get_Key);
declare
Result : Integer;
begin
Stmt.Execute (Result);
if Result /= 1 then
if Result /= 0 then
raise ADO.Objects.UPDATE_ERROR;
end if;
end if;
end;
end if;
end Save;
procedure Create (Object : in out Token_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Query : ADO.Statements.Insert_Statement
:= Session.Create_Statement (TOKEN_DEF'Access);
Result : Integer;
begin
Session.Allocate (Id => Object);
Query.Save_Field (Name => COL_0_5_NAME, -- id
Value => Object.Get_Key);
Query.Save_Field (Name => COL_1_5_NAME, -- name
Value => Object.Name);
Query.Save_Field (Name => COL_2_5_NAME, -- index_id
Value => Object.Index);
Query.Execute (Result);
if Result /= 1 then
raise ADO.Objects.INSERT_ERROR;
end if;
ADO.Objects.Set_Created (Object);
end Create;
procedure Delete (Object : in out Token_Impl;
Session : in out ADO.Sessions.Master_Session'Class) is
Stmt : ADO.Statements.Delete_Statement
:= Session.Create_Statement (TOKEN_DEF'Access);
begin
Stmt.Set_Filter (Filter => "id = ?");
Stmt.Add_Param (Value => Object.Get_Key);
Stmt.Execute;
end Delete;
-- ------------------------------
-- Get the bean attribute identified by the name.
-- ------------------------------
overriding
function Get_Value (From : in Token_Ref;
Name : in String) return Util.Beans.Objects.Object is
Obj : ADO.Objects.Object_Record_Access;
Impl : access Token_Impl;
begin
if From.Is_Null then
return Util.Beans.Objects.Null_Object;
end if;
Obj := From.Get_Load_Object;
Impl := Token_Impl (Obj.all)'Access;
if Name = "id" then
return ADO.Objects.To_Object (Impl.Get_Key);
elsif Name = "name" then
return Util.Beans.Objects.To_Object (Impl.Name);
end if;
return Util.Beans.Objects.Null_Object;
end Get_Value;
-- ------------------------------
-- Load the object from current iterator position
-- ------------------------------
procedure Load (Object : in out Token_Impl;
Stmt : in out ADO.Statements.Query_Statement'Class;
Session : in out ADO.Sessions.Session'Class) is
begin
Object.Set_Key_Value (Stmt.Get_Identifier (0));
Object.Name := Stmt.Get_Unbounded_String (1);
if not Stmt.Is_Null (2) then
Object.Index.Set_Key_Value (Stmt.Get_Identifier (2), Session);
end if;
ADO.Objects.Set_Created (Object);
end Load;
end Search.Models;
| 34.299344 | 88 | 0.583171 |
d0ca185a85f138982848ac8bfe46160a4d3d842b | 626 | ads | Ada | software/modules/buildinfo.ads | TUM-EI-RCS/StratoX | 5fdd04e01a25efef6052376f43ce85b5bc973392 | [
"BSD-3-Clause"
] | 12 | 2017-06-08T14:19:57.000Z | 2022-03-09T02:48:59.000Z | software/modules/buildinfo.ads | TUM-EI-RCS/StratoX | 5fdd04e01a25efef6052376f43ce85b5bc973392 | [
"BSD-3-Clause"
] | 6 | 2017-06-08T13:13:50.000Z | 2020-05-15T09:32:43.000Z | software/modules/buildinfo.ads | TUM-EI-RCS/StratoX | 5fdd04e01a25efef6052376f43ce85b5bc973392 | [
"BSD-3-Clause"
] | 3 | 2017-06-30T14:05:06.000Z | 2022-02-17T12:20:45.000Z | package Buildinfo with SPARK_Mode is
function Compilation_ISO_Date return String -- implementation-defined (GNAT)
with Import, Convention => Intrinsic,
Global => null,
Post => Compilation_ISO_Date'Result'Length = 10;
-- returns "YYYY-MM-DD"
function Compilation_Time return String -- implementation-defined (GNAT)
with Import, Convention => Intrinsic,
Global => null,
Post => Compilation_Time'Result'Length in 7 .. 8;
-- returns "HH:MM:SS"
function Short_Datetime return String
with Post => Short_Datetime'Result'Length = 11;
-- returns "YYMMDD_HHMM"
end Buildinfo;
| 31.3 | 79 | 0.699681 |
c59e8ce19beb67c78540895fbb9bdbb97cf29cda | 1,127 | ads | Ada | src/arch/socs/stm32f439/soc.ads | PThierry/ewok-kernel | e9c23cb3fd0afd8378bc27418778e1117d5e16cc | [
"Apache-2.0"
] | 65 | 2018-09-26T09:10:11.000Z | 2022-01-30T21:17:37.000Z | src/arch/socs/stm32f439/soc.ads | PThierry/ewok-kernel | e9c23cb3fd0afd8378bc27418778e1117d5e16cc | [
"Apache-2.0"
] | 22 | 2019-04-07T15:15:54.000Z | 2020-10-15T12:45:54.000Z | src/arch/socs/stm32f439/soc.ads | PThierry/ewok-kernel | e9c23cb3fd0afd8378bc27418778e1117d5e16cc | [
"Apache-2.0"
] | 10 | 2018-09-27T09:43:08.000Z | 2021-01-29T22:50:17.000Z | --
-- Copyright 2018 The wookey project team <wookey@ssi.gouv.fr>
-- - Ryad Benadjila
-- - Arnauld Michelizza
-- - Mathieu Renard
-- - Philippe Thierry
-- - Philippe Trebuchet
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
--
--
pragma Restrictions (No_Elaboration_Code);
pragma warnings (Off, "use clause for package");
-- distribute interfaces and types to child packages
with interfaces; use interfaces;
pragma unreferenced (interfaces);
with types; use types;
pragma unreferenced (types);
pragma warnings (On, "use clause for package");
package soc is
end soc;
| 28.897436 | 79 | 0.712511 |
4add86a10ab3364e4b7fe2df523bee1d2accb42f | 2,525 | ads | Ada | source/oasis/program-elements-procedure_access_types.ads | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | null | null | null | source/oasis/program-elements-procedure_access_types.ads | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | null | null | null | source/oasis/program-elements-procedure_access_types.ads | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | 1 | 2019-10-16T09:05:27.000Z | 2019-10-16T09:05:27.000Z | -- SPDX-FileCopyrightText: 2019 Max Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-------------------------------------------------------------
with Program.Elements.Access_Types;
with Program.Lexical_Elements;
with Program.Elements.Parameter_Specifications;
package Program.Elements.Procedure_Access_Types is
pragma Pure (Program.Elements.Procedure_Access_Types);
type Procedure_Access_Type is
limited interface and Program.Elements.Access_Types.Access_Type;
type Procedure_Access_Type_Access is access all Procedure_Access_Type'Class
with Storage_Size => 0;
not overriding function Parameters
(Self : Procedure_Access_Type)
return Program.Elements.Parameter_Specifications
.Parameter_Specification_Vector_Access is abstract;
not overriding function Has_Not_Null
(Self : Procedure_Access_Type)
return Boolean is abstract;
not overriding function Has_Protected
(Self : Procedure_Access_Type)
return Boolean is abstract;
type Procedure_Access_Type_Text is limited interface;
type Procedure_Access_Type_Text_Access is
access all Procedure_Access_Type_Text'Class with Storage_Size => 0;
not overriding function To_Procedure_Access_Type_Text
(Self : in out Procedure_Access_Type)
return Procedure_Access_Type_Text_Access is abstract;
not overriding function Not_Token
(Self : Procedure_Access_Type_Text)
return Program.Lexical_Elements.Lexical_Element_Access is abstract;
not overriding function Null_Token
(Self : Procedure_Access_Type_Text)
return Program.Lexical_Elements.Lexical_Element_Access is abstract;
not overriding function Access_Token
(Self : Procedure_Access_Type_Text)
return not null Program.Lexical_Elements.Lexical_Element_Access
is abstract;
not overriding function Protected_Token
(Self : Procedure_Access_Type_Text)
return Program.Lexical_Elements.Lexical_Element_Access is abstract;
not overriding function Procedure_Token
(Self : Procedure_Access_Type_Text)
return not null Program.Lexical_Elements.Lexical_Element_Access
is abstract;
not overriding function Left_Bracket_Token
(Self : Procedure_Access_Type_Text)
return Program.Lexical_Elements.Lexical_Element_Access is abstract;
not overriding function Right_Bracket_Token
(Self : Procedure_Access_Type_Text)
return Program.Lexical_Elements.Lexical_Element_Access is abstract;
end Program.Elements.Procedure_Access_Types;
| 34.589041 | 78 | 0.775446 |
c5f0c0ebd59c5c9f68b6922218d575cdda3a8703 | 1,480 | ads | Ada | src/vision.ads | faelys/vision-test | e2410e322422f171e278cd5643a7613527dbbd8e | [
"0BSD"
] | 1 | 2019-07-08T11:14:08.000Z | 2019-07-08T11:14:08.000Z | src/vision.ads | faelys/vision-test | e2410e322422f171e278cd5643a7613527dbbd8e | [
"0BSD"
] | null | null | null | src/vision.ads | faelys/vision-test | e2410e322422f171e278cd5643a7613527dbbd8e | [
"0BSD"
] | null | null | null | ------------------------------------------------------------------------------
-- Copyright (c) 2016, Natacha Porté --
-- --
-- Permission to use, copy, modify, and distribute this software for any --
-- purpose with or without fee is hereby granted, provided that the above --
-- copyright notice and this permission notice appear in all copies. --
-- --
-- THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES --
-- WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF --
-- MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR --
-- ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES --
-- WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN --
-- ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF --
-- OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. --
------------------------------------------------------------------------------
package Vision is
package Directions is
type Extended is (Unknown, North, South, East, West);
subtype Enum is Extended range North .. West;
end Directions;
type Detail_Size is range 1 .. 15_000;
Minimum_Size : Detail_Size;
Maximum_Size : Detail_Size;
end Vision;
| 49.333333 | 78 | 0.538514 |
4a3008ba02b2bcdf8d9a15bf37515c36267a27a5 | 818 | adb | Ada | gcc-gcc-7_3_0-release/gcc/testsuite/gnat.dg/stack_check2.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 7 | 2020-05-02T17:34:05.000Z | 2021-10-17T10:15:18.000Z | gcc-gcc-7_3_0-release/gcc/testsuite/gnat.dg/stack_check2.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | null | null | null | gcc-gcc-7_3_0-release/gcc/testsuite/gnat.dg/stack_check2.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 2 | 2020-07-27T00:22:36.000Z | 2021-04-01T09:41:02.000Z | -- { dg-do run }
-- { dg-options "-fstack-check" }
-- This test requires architecture- and OS-specific support code for unwinding
-- through signal frames (typically located in *-unwind.h) to pass. Feel free
-- to disable it if this code hasn't been implemented yet.
procedure Stack_Check2 is
function UB return Integer is
begin
return 2048;
end;
type A is Array (Positive range <>) of Integer;
procedure Consume_Stack (N : Integer) is
My_A : A (1..UB); -- 8 KB dynamic
begin
My_A (1) := 0;
if N <= 0 then
return;
end if;
Consume_Stack (N-1);
end;
Task T;
Task body T is
begin
begin
Consume_Stack (Integer'Last);
raise Program_Error;
exception
when Storage_Error => null;
end;
Consume_Stack (128);
end;
begin
null;
end;
| 18.590909 | 78 | 0.639364 |
4aab0d13a2f5a159463d1e0126eb08b13f156a34 | 4,847 | adb | Ada | test/load_surface.adb | Fabien-Chouteau/sdlada | f08d72e3f5dcec228d68fb5b6681ea831f81ef47 | [
"Zlib"
] | 1 | 2021-10-30T14:41:56.000Z | 2021-10-30T14:41:56.000Z | test/load_surface.adb | Fabien-Chouteau/sdlada | f08d72e3f5dcec228d68fb5b6681ea831f81ef47 | [
"Zlib"
] | null | null | null | test/load_surface.adb | Fabien-Chouteau/sdlada | f08d72e3f5dcec228d68fb5b6681ea831f81ef47 | [
"Zlib"
] | null | null | null | with Ada.Calendar;
with Ada.Directories;
with Ada.Text_IO.Text_Streams;
with Ada.Unchecked_Conversion;
with Interfaces.C.Pointers;
with SDL;
with SDL.Error;
with SDL.Events.Events;
with SDL.Events.Keyboards;
with SDL.Images.IO;
with SDL.Log;
-- with SDL.Video.Palettes;
with SDL.Video.Pixel_Formats;
-- with SDL.Video.Pixels;
with SDL.Video.Rectangles;
-- with SDL.Video.Renderers.Makers;
-- with SDL.Video.Textures.Makers;
with SDL.Video.Surfaces;
with SDL.Video.Windows.Makers;
with SDL.Versions;
with System;
with System.Address_To_Access_Conversions;
procedure Load_Surface is
use type Interfaces.C.int;
W : SDL.Video.Windows.Window;
Window_Size : constant SDL.Positive_Sizes := (Width => 800, Height => 640);
begin
SDL.Log.Set (Category => SDL.Log.Application, Priority => SDL.Log.Debug);
if SDL.Initialise (Flags => SDL.Enable_Screen) = True and SDL.Images.Initialise then
SDL.Video.Windows.Makers.Create (Win => W,
Title => "Surface (Esc to exit)",
Position => SDL.Natural_Coordinates'(X => 100, Y => 100),
Size => Window_Size,
Flags => SDL.Video.Windows.Resizable);
-- Main loop.
declare
Event : SDL.Events.Events.Events;
Window_Surface : SDL.Video.Surfaces.Surface;
Image_Surface : SDL.Video.Surfaces.Surface;
Image_Area : SDL.Video.Rectangles.Rectangle := (X => 0, Y => 0, Width => 400, Height => 300);
Image_Dest_Area : SDL.Video.Rectangles.Rectangle := (X => Window_Size.Width / 2 - Image_Area.Width / 2,
Y => Window_Size.Height / 2 - Image_Area.Height / 2,
Width => 400,
Height => 300);
Scaled_Dest_Area : SDL.Video.Rectangles.Rectangle := (X => 10,
Y => 10,
Width => Image_Area.Width / 4,
Height => Image_Area.Height / 4);
Scaled_Dest_Area_2 : SDL.Video.Rectangles.Rectangle := (X => 10,
Y => 100,
Width => Image_Area.Width / 4,
Height => Image_Area.Height / 4);
Finished : Boolean := False;
use type SDL.Events.Event_Types;
use type SDL.Events.Keyboards.Key_Codes;
use type SDL.Events.Keyboards.Scan_Codes;
begin
Window_Surface := W.Get_Surface;
SDL.Images.IO.Create (Image_Surface, "../../test/assets/sdl_logo_400_300.png");
Window_Surface.Blit (Self_Area => Image_Dest_Area,
Source => Image_Surface,
Source_Area => Image_Area);
Window_Surface.Blit_Scaled (Self_Area => Scaled_Dest_Area,
Source => Image_Surface,
Source_Area => SDL.Video.Rectangles.Null_Rectangle);
Window_Surface.Blit_Scaled (Self_Area => Scaled_Dest_Area_2,
Source => Image_Surface,
Source_Area => SDL.Video.Rectangles.Rectangle'(X => 0,
Y => 0,
Width => Image_Area.Width / 2,
Height => Image_Area.Height /2));
W.Update_Surface;
SDL.Images.IO.Write_PNG (Window_Surface, "load_surface.png");
loop
while SDL.Events.Events.Poll (Event) loop
case Event.Common.Event_Type is
when SDL.Events.Quit =>
Finished := True;
when SDL.Events.Keyboards.Key_Down =>
if Event.Keyboard.Key_Sym.Key_Code = SDL.Events.Keyboards.Code_Escape then
Finished := True;
end if;
when others =>
null;
end case;
end loop;
exit when Finished;
end loop;
end;
SDL.Log.Put_Debug ("");
W.Finalize;
SDL.Images.Finalise;
SDL.Finalise;
end if;
end Load_Surface;
| 42.893805 | 122 | 0.465855 |
dc2c073520fb3ae7f6faf1b4d3e09701bcdb2e9f | 63,527 | ads | Ada | arch/ARM/STM32/svd/stm32l4x6/stm32_svd-rcc.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | 2 | 2018-05-16T03:56:39.000Z | 2019-07-31T13:53:56.000Z | arch/ARM/STM32/svd/stm32l4x6/stm32_svd-rcc.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | null | null | null | arch/ARM/STM32/svd/stm32l4x6/stm32_svd-rcc.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | null | null | null | -- This spec has been automatically generated from STM32L4x6.svd
pragma Restrictions (No_Elaboration_Code);
pragma Ada_2012;
pragma Style_Checks (Off);
with HAL;
with System;
package STM32_SVD.RCC is
pragma Preelaborate;
---------------
-- Registers --
---------------
subtype CR_MSIRANGE_Field is HAL.UInt4;
-- Clock control register
type CR_Register is record
-- MSI clock enable
MSION : Boolean := True;
-- Read-only. MSI clock ready flag
MSIRDY : Boolean := True;
-- MSI clock PLL enable
MSIPLLEN : Boolean := False;
-- Write-only. MSI clock range selection
MSIRGSEL : Boolean := False;
-- MSI clock ranges
MSIRANGE : CR_MSIRANGE_Field := 16#6#;
-- HSI clock enable
HSION : Boolean := False;
-- HSI always enable for peripheral kernels
HSIKERON : Boolean := False;
-- Read-only. HSI clock ready flag
HSIRDY : Boolean := False;
-- HSI automatic start from Stop
HSIASFS : Boolean := False;
-- unspecified
Reserved_12_15 : HAL.UInt4 := 16#0#;
-- HSE clock enable
HSEON : Boolean := False;
-- Read-only. HSE clock ready flag
HSERDY : Boolean := False;
-- HSE crystal oscillator bypass
HSEBYP : Boolean := False;
-- Write-only. Clock security system enable
CSSON : Boolean := False;
-- unspecified
Reserved_20_23 : HAL.UInt4 := 16#0#;
-- Main PLL enable
PLLON : Boolean := False;
-- Read-only. Main PLL clock ready flag
PLLRDY : Boolean := False;
-- SAI1 PLL enable
PLLSAI1ON : Boolean := False;
-- Read-only. SAI1 PLL clock ready flag
PLLSAI1RDY : Boolean := False;
-- SAI2 PLL enable
PLLSAI2ON : Boolean := False;
-- Read-only. SAI2 PLL clock ready flag
PLLSAI2RDY : Boolean := False;
-- unspecified
Reserved_30_31 : HAL.UInt2 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CR_Register use record
MSION at 0 range 0 .. 0;
MSIRDY at 0 range 1 .. 1;
MSIPLLEN at 0 range 2 .. 2;
MSIRGSEL at 0 range 3 .. 3;
MSIRANGE at 0 range 4 .. 7;
HSION at 0 range 8 .. 8;
HSIKERON at 0 range 9 .. 9;
HSIRDY at 0 range 10 .. 10;
HSIASFS at 0 range 11 .. 11;
Reserved_12_15 at 0 range 12 .. 15;
HSEON at 0 range 16 .. 16;
HSERDY at 0 range 17 .. 17;
HSEBYP at 0 range 18 .. 18;
CSSON at 0 range 19 .. 19;
Reserved_20_23 at 0 range 20 .. 23;
PLLON at 0 range 24 .. 24;
PLLRDY at 0 range 25 .. 25;
PLLSAI1ON at 0 range 26 .. 26;
PLLSAI1RDY at 0 range 27 .. 27;
PLLSAI2ON at 0 range 28 .. 28;
PLLSAI2RDY at 0 range 29 .. 29;
Reserved_30_31 at 0 range 30 .. 31;
end record;
subtype ICSCR_MSICAL_Field is HAL.UInt8;
subtype ICSCR_MSITRIM_Field is HAL.UInt8;
subtype ICSCR_HSICAL_Field is HAL.UInt8;
subtype ICSCR_HSITRIM_Field is HAL.UInt7;
-- Internal clock sources calibration register
type ICSCR_Register is record
-- Read-only. MSI clock calibration
MSICAL : ICSCR_MSICAL_Field := 16#0#;
-- MSI clock trimming
MSITRIM : ICSCR_MSITRIM_Field := 16#0#;
-- Read-only. HSI clock calibration
HSICAL : ICSCR_HSICAL_Field := 16#0#;
-- HSI clock trimming
HSITRIM : ICSCR_HSITRIM_Field := 16#10#;
-- unspecified
Reserved_31_31 : HAL.Bit := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for ICSCR_Register use record
MSICAL at 0 range 0 .. 7;
MSITRIM at 0 range 8 .. 15;
HSICAL at 0 range 16 .. 23;
HSITRIM at 0 range 24 .. 30;
Reserved_31_31 at 0 range 31 .. 31;
end record;
subtype CFGR_SW_Field is HAL.UInt2;
subtype CFGR_SWS_Field is HAL.UInt2;
subtype CFGR_HPRE_Field is HAL.UInt4;
-- CFGR_PPRE array element
subtype CFGR_PPRE_Element is HAL.UInt3;
-- CFGR_PPRE array
type CFGR_PPRE_Field_Array is array (1 .. 2) of CFGR_PPRE_Element
with Component_Size => 3, Size => 6;
-- Type definition for CFGR_PPRE
type CFGR_PPRE_Field
(As_Array : Boolean := False)
is record
case As_Array is
when False =>
-- PPRE as a value
Val : HAL.UInt6;
when True =>
-- PPRE as an array
Arr : CFGR_PPRE_Field_Array;
end case;
end record
with Unchecked_Union, Size => 6;
for CFGR_PPRE_Field use record
Val at 0 range 0 .. 5;
Arr at 0 range 0 .. 5;
end record;
subtype CFGR_MCOSEL_Field is HAL.UInt3;
subtype CFGR_MCOPRE_Field is HAL.UInt3;
-- Clock configuration register
type CFGR_Register is record
-- System clock switch
SW : CFGR_SW_Field := 16#0#;
-- Read-only. System clock switch status
SWS : CFGR_SWS_Field := 16#0#;
-- AHB prescaler
HPRE : CFGR_HPRE_Field := 16#0#;
-- PB low-speed prescaler (APB1)
PPRE : CFGR_PPRE_Field := (As_Array => False, Val => 16#0#);
-- unspecified
Reserved_14_14 : HAL.Bit := 16#0#;
-- Wakeup from Stop and CSS backup clock selection
STOPWUCK : Boolean := False;
-- unspecified
Reserved_16_23 : HAL.UInt8 := 16#0#;
-- Microcontroller clock output
MCOSEL : CFGR_MCOSEL_Field := 16#0#;
-- unspecified
Reserved_27_27 : HAL.Bit := 16#0#;
-- Read-only. Microcontroller clock output prescaler
MCOPRE : CFGR_MCOPRE_Field := 16#0#;
-- unspecified
Reserved_31_31 : HAL.Bit := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CFGR_Register use record
SW at 0 range 0 .. 1;
SWS at 0 range 2 .. 3;
HPRE at 0 range 4 .. 7;
PPRE at 0 range 8 .. 13;
Reserved_14_14 at 0 range 14 .. 14;
STOPWUCK at 0 range 15 .. 15;
Reserved_16_23 at 0 range 16 .. 23;
MCOSEL at 0 range 24 .. 26;
Reserved_27_27 at 0 range 27 .. 27;
MCOPRE at 0 range 28 .. 30;
Reserved_31_31 at 0 range 31 .. 31;
end record;
subtype PLLCFGR_PLLSRC_Field is HAL.UInt2;
subtype PLLCFGR_PLLM_Field is HAL.UInt3;
subtype PLLCFGR_PLLN_Field is HAL.UInt7;
subtype PLLCFGR_PLLQ_Field is HAL.UInt2;
subtype PLLCFGR_PLLR_Field is HAL.UInt2;
subtype PLLCFGR_PLLPDIV_Field is HAL.UInt5;
-- PLL configuration register
type PLLCFGR_Register is record
-- Main PLL, PLLSAI1 and PLLSAI2 entry clock source
PLLSRC : PLLCFGR_PLLSRC_Field := 16#0#;
-- unspecified
Reserved_2_3 : HAL.UInt2 := 16#0#;
-- Division factor for the main PLL and audio PLL (PLLSAI1 and PLLSAI2)
-- input clock
PLLM : PLLCFGR_PLLM_Field := 16#0#;
-- unspecified
Reserved_7_7 : HAL.Bit := 16#0#;
-- Main PLL multiplication factor for VCO
PLLN : PLLCFGR_PLLN_Field := 16#10#;
-- unspecified
Reserved_15_15 : HAL.Bit := 16#0#;
-- Main PLL PLLSAI3CLK output enable
PLLPEN : Boolean := False;
-- Main PLL division factor for PLLSAI3CLK (SAI1 and SAI2 clock)
PLLP : Boolean := False;
-- unspecified
Reserved_18_19 : HAL.UInt2 := 16#0#;
-- Main PLL PLLUSB1CLK output enable
PLLQEN : Boolean := False;
-- Main PLL division factor for PLLUSB1CLK(48 MHz clock)
PLLQ : PLLCFGR_PLLQ_Field := 16#0#;
-- unspecified
Reserved_23_23 : HAL.Bit := 16#0#;
-- Main PLL PLLCLK output enable
PLLREN : Boolean := False;
-- Main PLL division factor for PLLCLK (system clock)
PLLR : PLLCFGR_PLLR_Field := 16#0#;
-- Main PLL division factor for PLLSAI2CLK
PLLPDIV : PLLCFGR_PLLPDIV_Field := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for PLLCFGR_Register use record
PLLSRC at 0 range 0 .. 1;
Reserved_2_3 at 0 range 2 .. 3;
PLLM at 0 range 4 .. 6;
Reserved_7_7 at 0 range 7 .. 7;
PLLN at 0 range 8 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
PLLPEN at 0 range 16 .. 16;
PLLP at 0 range 17 .. 17;
Reserved_18_19 at 0 range 18 .. 19;
PLLQEN at 0 range 20 .. 20;
PLLQ at 0 range 21 .. 22;
Reserved_23_23 at 0 range 23 .. 23;
PLLREN at 0 range 24 .. 24;
PLLR at 0 range 25 .. 26;
PLLPDIV at 0 range 27 .. 31;
end record;
subtype PLLSAI1CFGR_PLLSAI1N_Field is HAL.UInt7;
subtype PLLSAI1CFGR_PLLSAI1Q_Field is HAL.UInt2;
subtype PLLSAI1CFGR_PLLSAI1R_Field is HAL.UInt2;
subtype PLLSAI1CFGR_PLLSAI1PDIV_Field is HAL.UInt5;
-- PLLSAI1 configuration register
type PLLSAI1CFGR_Register is record
-- unspecified
Reserved_0_7 : HAL.UInt8 := 16#0#;
-- SAI1PLL multiplication factor for VCO
PLLSAI1N : PLLSAI1CFGR_PLLSAI1N_Field := 16#10#;
-- unspecified
Reserved_15_15 : HAL.Bit := 16#0#;
-- SAI1PLL PLLSAI1CLK output enable
PLLSAI1PEN : Boolean := False;
-- SAI1PLL division factor for PLLSAI1CLK (SAI1 or SAI2 clock)
PLLSAI1P : Boolean := False;
-- unspecified
Reserved_18_19 : HAL.UInt2 := 16#0#;
-- SAI1PLL PLLUSB2CLK output enable
PLLSAI1QEN : Boolean := False;
-- SAI1PLL division factor for PLLUSB2CLK (48 MHz clock)
PLLSAI1Q : PLLSAI1CFGR_PLLSAI1Q_Field := 16#0#;
-- unspecified
Reserved_23_23 : HAL.Bit := 16#0#;
-- PLLSAI1 PLLADC1CLK output enable
PLLSAI1REN : Boolean := False;
-- PLLSAI1 division factor for PLLADC1CLK (ADC clock)
PLLSAI1R : PLLSAI1CFGR_PLLSAI1R_Field := 16#0#;
-- PLLSAI1 division factor for PLLSAI1CLK
PLLSAI1PDIV : PLLSAI1CFGR_PLLSAI1PDIV_Field := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for PLLSAI1CFGR_Register use record
Reserved_0_7 at 0 range 0 .. 7;
PLLSAI1N at 0 range 8 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
PLLSAI1PEN at 0 range 16 .. 16;
PLLSAI1P at 0 range 17 .. 17;
Reserved_18_19 at 0 range 18 .. 19;
PLLSAI1QEN at 0 range 20 .. 20;
PLLSAI1Q at 0 range 21 .. 22;
Reserved_23_23 at 0 range 23 .. 23;
PLLSAI1REN at 0 range 24 .. 24;
PLLSAI1R at 0 range 25 .. 26;
PLLSAI1PDIV at 0 range 27 .. 31;
end record;
subtype PLLSAI2CFGR_PLLSAI2N_Field is HAL.UInt7;
subtype PLLSAI2CFGR_PLLSAI2R_Field is HAL.UInt2;
subtype PLLSAI2CFGR_PLLSAI2PDIV_Field is HAL.UInt5;
-- PLLSAI2 configuration register
type PLLSAI2CFGR_Register is record
-- unspecified
Reserved_0_7 : HAL.UInt8 := 16#0#;
-- SAI2PLL multiplication factor for VCO
PLLSAI2N : PLLSAI2CFGR_PLLSAI2N_Field := 16#10#;
-- unspecified
Reserved_15_15 : HAL.Bit := 16#0#;
-- SAI2PLL PLLSAI2CLK output enable
PLLSAI2PEN : Boolean := False;
-- SAI1PLL division factor for PLLSAI2CLK (SAI1 or SAI2 clock)
PLLSAI2P : Boolean := False;
-- unspecified
Reserved_18_23 : HAL.UInt6 := 16#0#;
-- PLLSAI2 PLLADC2CLK output enable
PLLSAI2REN : Boolean := False;
-- PLLSAI2 division factor for PLLADC2CLK (ADC clock)
PLLSAI2R : PLLSAI2CFGR_PLLSAI2R_Field := 16#0#;
-- PLLSAI2 division factor for PLLSAI2CLK
PLLSAI2PDIV : PLLSAI2CFGR_PLLSAI2PDIV_Field := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for PLLSAI2CFGR_Register use record
Reserved_0_7 at 0 range 0 .. 7;
PLLSAI2N at 0 range 8 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
PLLSAI2PEN at 0 range 16 .. 16;
PLLSAI2P at 0 range 17 .. 17;
Reserved_18_23 at 0 range 18 .. 23;
PLLSAI2REN at 0 range 24 .. 24;
PLLSAI2R at 0 range 25 .. 26;
PLLSAI2PDIV at 0 range 27 .. 31;
end record;
-- Clock interrupt enable register
type CIER_Register is record
-- LSI ready interrupt enable
LSIRDYIE : Boolean := False;
-- LSE ready interrupt enable
LSERDYIE : Boolean := False;
-- MSI ready interrupt enable
MSIRDYIE : Boolean := False;
-- HSI ready interrupt enable
HSIRDYIE : Boolean := False;
-- HSE ready interrupt enable
HSERDYIE : Boolean := False;
-- PLL ready interrupt enable
PLLRDYIE : Boolean := False;
-- PLLSAI1 ready interrupt enable
PLLSAI1RDYIE : Boolean := False;
-- PLLSAI2 ready interrupt enable
PLLSAI2RDYIE : Boolean := False;
-- unspecified
Reserved_8_8 : HAL.Bit := 16#0#;
-- LSE clock security system interrupt enable
LSECSSIE : Boolean := False;
-- HSI48 ready interrupt enable
HSI48RDYIE : Boolean := False;
-- unspecified
Reserved_11_31 : HAL.UInt21 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CIER_Register use record
LSIRDYIE at 0 range 0 .. 0;
LSERDYIE at 0 range 1 .. 1;
MSIRDYIE at 0 range 2 .. 2;
HSIRDYIE at 0 range 3 .. 3;
HSERDYIE at 0 range 4 .. 4;
PLLRDYIE at 0 range 5 .. 5;
PLLSAI1RDYIE at 0 range 6 .. 6;
PLLSAI2RDYIE at 0 range 7 .. 7;
Reserved_8_8 at 0 range 8 .. 8;
LSECSSIE at 0 range 9 .. 9;
HSI48RDYIE at 0 range 10 .. 10;
Reserved_11_31 at 0 range 11 .. 31;
end record;
-- Clock interrupt flag register
type CIFR_Register is record
-- Read-only. LSI ready interrupt flag
LSIRDYF : Boolean;
-- Read-only. LSE ready interrupt flag
LSERDYF : Boolean;
-- Read-only. MSI ready interrupt flag
MSIRDYF : Boolean;
-- Read-only. HSI ready interrupt flag
HSIRDYF : Boolean;
-- Read-only. HSE ready interrupt flag
HSERDYF : Boolean;
-- Read-only. PLL ready interrupt flag
PLLRDYF : Boolean;
-- Read-only. PLLSAI1 ready interrupt flag
PLLSAI1RDYF : Boolean;
-- Read-only. PLLSAI2 ready interrupt flag
PLLSAI2RDYF : Boolean;
-- Read-only. Clock security system interrupt flag
CSSF : Boolean;
-- Read-only. LSE Clock security system interrupt flag
LSECSSF : Boolean;
-- Read-only. HSI48 ready interrupt flag
HSI48RDYF : Boolean;
-- unspecified
Reserved_11_31 : HAL.UInt21;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CIFR_Register use record
LSIRDYF at 0 range 0 .. 0;
LSERDYF at 0 range 1 .. 1;
MSIRDYF at 0 range 2 .. 2;
HSIRDYF at 0 range 3 .. 3;
HSERDYF at 0 range 4 .. 4;
PLLRDYF at 0 range 5 .. 5;
PLLSAI1RDYF at 0 range 6 .. 6;
PLLSAI2RDYF at 0 range 7 .. 7;
CSSF at 0 range 8 .. 8;
LSECSSF at 0 range 9 .. 9;
HSI48RDYF at 0 range 10 .. 10;
Reserved_11_31 at 0 range 11 .. 31;
end record;
-- Clock interrupt clear register
type CICR_Register is record
-- Write-only. LSI ready interrupt clear
LSIRDYC : Boolean := False;
-- Write-only. LSE ready interrupt clear
LSERDYC : Boolean := False;
-- Write-only. MSI ready interrupt clear
MSIRDYC : Boolean := False;
-- Write-only. HSI ready interrupt clear
HSIRDYC : Boolean := False;
-- Write-only. HSE ready interrupt clear
HSERDYC : Boolean := False;
-- Write-only. PLL ready interrupt clear
PLLRDYC : Boolean := False;
-- Write-only. PLLSAI1 ready interrupt clear
PLLSAI1RDYC : Boolean := False;
-- Write-only. PLLSAI2 ready interrupt clear
PLLSAI2RDYC : Boolean := False;
-- Write-only. Clock security system interrupt clear
CSSC : Boolean := False;
-- Write-only. LSE Clock security system interrupt clear
LSECSSC : Boolean := False;
-- Write-only. HSI48 oscillator ready interrupt clear
HSI48RDYC : Boolean := False;
-- unspecified
Reserved_11_31 : HAL.UInt21 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CICR_Register use record
LSIRDYC at 0 range 0 .. 0;
LSERDYC at 0 range 1 .. 1;
MSIRDYC at 0 range 2 .. 2;
HSIRDYC at 0 range 3 .. 3;
HSERDYC at 0 range 4 .. 4;
PLLRDYC at 0 range 5 .. 5;
PLLSAI1RDYC at 0 range 6 .. 6;
PLLSAI2RDYC at 0 range 7 .. 7;
CSSC at 0 range 8 .. 8;
LSECSSC at 0 range 9 .. 9;
HSI48RDYC at 0 range 10 .. 10;
Reserved_11_31 at 0 range 11 .. 31;
end record;
-- AHB1 peripheral reset register
type AHB1RSTR_Register is record
-- DMA1 reset
DMA1RST : Boolean := False;
-- DMA2 reset
DMA2RST : Boolean := False;
-- unspecified
Reserved_2_7 : HAL.UInt6 := 16#0#;
-- Flash memory interface reset
FLASHRST : Boolean := False;
-- unspecified
Reserved_9_11 : HAL.UInt3 := 16#0#;
-- CRC reset
CRCRST : Boolean := False;
-- unspecified
Reserved_13_15 : HAL.UInt3 := 16#0#;
-- Touch Sensing Controller reset
TSCRST : Boolean := False;
-- DMA2D reset
DMA2DRST : Boolean := False;
-- unspecified
Reserved_18_31 : HAL.UInt14 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for AHB1RSTR_Register use record
DMA1RST at 0 range 0 .. 0;
DMA2RST at 0 range 1 .. 1;
Reserved_2_7 at 0 range 2 .. 7;
FLASHRST at 0 range 8 .. 8;
Reserved_9_11 at 0 range 9 .. 11;
CRCRST at 0 range 12 .. 12;
Reserved_13_15 at 0 range 13 .. 15;
TSCRST at 0 range 16 .. 16;
DMA2DRST at 0 range 17 .. 17;
Reserved_18_31 at 0 range 18 .. 31;
end record;
-- AHB2 peripheral reset register
type AHB2RSTR_Register is record
-- IO port A reset
GPIOARST : Boolean := False;
-- IO port B reset
GPIOBRST : Boolean := False;
-- IO port C reset
GPIOCRST : Boolean := False;
-- IO port D reset
GPIODRST : Boolean := False;
-- IO port E reset
GPIOERST : Boolean := False;
-- IO port F reset
GPIOFRST : Boolean := False;
-- IO port G reset
GPIOGRST : Boolean := False;
-- IO port H reset
GPIOHRST : Boolean := False;
-- IO port I reset
GPIOIRST : Boolean := False;
-- unspecified
Reserved_9_11 : HAL.UInt3 := 16#0#;
-- USB OTG FS reset
OTGFSRST : Boolean := False;
-- ADC reset
ADCRST : Boolean := False;
-- Digital Camera Interface reset
DCMIRST : Boolean := False;
-- unspecified
Reserved_15_15 : HAL.Bit := 16#0#;
-- AES hardware accelerator reset
AESRST : Boolean := False;
-- Hash reset
HASH1RST : Boolean := False;
-- Random number generator reset
RNGRST : Boolean := False;
-- unspecified
Reserved_19_31 : HAL.UInt13 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for AHB2RSTR_Register use record
GPIOARST at 0 range 0 .. 0;
GPIOBRST at 0 range 1 .. 1;
GPIOCRST at 0 range 2 .. 2;
GPIODRST at 0 range 3 .. 3;
GPIOERST at 0 range 4 .. 4;
GPIOFRST at 0 range 5 .. 5;
GPIOGRST at 0 range 6 .. 6;
GPIOHRST at 0 range 7 .. 7;
GPIOIRST at 0 range 8 .. 8;
Reserved_9_11 at 0 range 9 .. 11;
OTGFSRST at 0 range 12 .. 12;
ADCRST at 0 range 13 .. 13;
DCMIRST at 0 range 14 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
AESRST at 0 range 16 .. 16;
HASH1RST at 0 range 17 .. 17;
RNGRST at 0 range 18 .. 18;
Reserved_19_31 at 0 range 19 .. 31;
end record;
-- AHB3 peripheral reset register
type AHB3RSTR_Register is record
-- Flexible memory controller reset
FMCRST : Boolean := False;
-- unspecified
Reserved_1_7 : HAL.UInt7 := 16#0#;
-- Quad SPI memory interface reset
QSPIRST : Boolean := False;
-- unspecified
Reserved_9_31 : HAL.UInt23 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for AHB3RSTR_Register use record
FMCRST at 0 range 0 .. 0;
Reserved_1_7 at 0 range 1 .. 7;
QSPIRST at 0 range 8 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
-- APB1 peripheral reset register 1
type APB1RSTR1_Register is record
-- TIM2 timer reset
TIM2RST : Boolean := False;
-- TIM3 timer reset
TIM3RST : Boolean := False;
-- TIM3 timer reset
TIM4RST : Boolean := False;
-- TIM5 timer reset
TIM5RST : Boolean := False;
-- TIM6 timer reset
TIM6RST : Boolean := False;
-- TIM7 timer reset
TIM7RST : Boolean := False;
-- unspecified
Reserved_6_8 : HAL.UInt3 := 16#0#;
-- LCD interface reset
LCDRST : Boolean := False;
-- unspecified
Reserved_10_13 : HAL.UInt4 := 16#0#;
-- SPI2 reset
SPI2RST : Boolean := False;
-- SPI3 reset
SPI3RST : Boolean := False;
-- unspecified
Reserved_16_16 : HAL.Bit := 16#0#;
-- USART2 reset
USART2RST : Boolean := False;
-- USART3 reset
USART3RST : Boolean := False;
-- UART4 reset
UART4RST : Boolean := False;
-- UART5 reset
UART5RST : Boolean := False;
-- I2C1 reset
I2C1RST : Boolean := False;
-- I2C2 reset
I2C2RST : Boolean := False;
-- I2C3 reset
I2C3RST : Boolean := False;
-- CRS reset
CRSRST : Boolean := False;
-- CAN1 reset
CAN1RST : Boolean := False;
-- CAN2 reset
CAN2RST : Boolean := False;
-- unspecified
Reserved_27_27 : HAL.Bit := 16#0#;
-- Power interface reset
PWRRST : Boolean := False;
-- DAC1 interface reset
DAC1RST : Boolean := False;
-- OPAMP interface reset
OPAMPRST : Boolean := False;
-- Low Power Timer 1 reset
LPTIM1RST : Boolean := False;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for APB1RSTR1_Register use record
TIM2RST at 0 range 0 .. 0;
TIM3RST at 0 range 1 .. 1;
TIM4RST at 0 range 2 .. 2;
TIM5RST at 0 range 3 .. 3;
TIM6RST at 0 range 4 .. 4;
TIM7RST at 0 range 5 .. 5;
Reserved_6_8 at 0 range 6 .. 8;
LCDRST at 0 range 9 .. 9;
Reserved_10_13 at 0 range 10 .. 13;
SPI2RST at 0 range 14 .. 14;
SPI3RST at 0 range 15 .. 15;
Reserved_16_16 at 0 range 16 .. 16;
USART2RST at 0 range 17 .. 17;
USART3RST at 0 range 18 .. 18;
UART4RST at 0 range 19 .. 19;
UART5RST at 0 range 20 .. 20;
I2C1RST at 0 range 21 .. 21;
I2C2RST at 0 range 22 .. 22;
I2C3RST at 0 range 23 .. 23;
CRSRST at 0 range 24 .. 24;
CAN1RST at 0 range 25 .. 25;
CAN2RST at 0 range 26 .. 26;
Reserved_27_27 at 0 range 27 .. 27;
PWRRST at 0 range 28 .. 28;
DAC1RST at 0 range 29 .. 29;
OPAMPRST at 0 range 30 .. 30;
LPTIM1RST at 0 range 31 .. 31;
end record;
-- APB1 peripheral reset register 2
type APB1RSTR2_Register is record
-- Low-power UART 1 reset
LPUART1RST : Boolean := False;
-- I2C4 reset
I2C4RST : Boolean := False;
-- Single wire protocol reset
SWPMI1RST : Boolean := False;
-- unspecified
Reserved_3_4 : HAL.UInt2 := 16#0#;
-- Low-power timer 2 reset
LPTIM2RST : Boolean := False;
-- unspecified
Reserved_6_31 : HAL.UInt26 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for APB1RSTR2_Register use record
LPUART1RST at 0 range 0 .. 0;
I2C4RST at 0 range 1 .. 1;
SWPMI1RST at 0 range 2 .. 2;
Reserved_3_4 at 0 range 3 .. 4;
LPTIM2RST at 0 range 5 .. 5;
Reserved_6_31 at 0 range 6 .. 31;
end record;
-- APB2 peripheral reset register
type APB2RSTR_Register is record
-- System configuration (SYSCFG) reset
SYSCFGRST : Boolean := False;
-- unspecified
Reserved_1_9 : HAL.UInt9 := 16#0#;
-- SDMMC reset
SDMMCRST : Boolean := False;
-- TIM1 timer reset
TIM1RST : Boolean := False;
-- SPI1 reset
SPI1RST : Boolean := False;
-- TIM8 timer reset
TIM8RST : Boolean := False;
-- USART1 reset
USART1RST : Boolean := False;
-- unspecified
Reserved_15_15 : HAL.Bit := 16#0#;
-- TIM15 timer reset
TIM15RST : Boolean := False;
-- TIM16 timer reset
TIM16RST : Boolean := False;
-- TIM17 timer reset
TIM17RST : Boolean := False;
-- unspecified
Reserved_19_20 : HAL.UInt2 := 16#0#;
-- Serial audio interface 1 (SAI1) reset
SAI1RST : Boolean := False;
-- Serial audio interface 2 (SAI2) reset
SAI2RST : Boolean := False;
-- unspecified
Reserved_23_23 : HAL.Bit := 16#0#;
-- Digital filters for sigma-delata modulators (DFSDM) reset
DFSDMRST : Boolean := False;
-- unspecified
Reserved_25_31 : HAL.UInt7 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for APB2RSTR_Register use record
SYSCFGRST at 0 range 0 .. 0;
Reserved_1_9 at 0 range 1 .. 9;
SDMMCRST at 0 range 10 .. 10;
TIM1RST at 0 range 11 .. 11;
SPI1RST at 0 range 12 .. 12;
TIM8RST at 0 range 13 .. 13;
USART1RST at 0 range 14 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
TIM15RST at 0 range 16 .. 16;
TIM16RST at 0 range 17 .. 17;
TIM17RST at 0 range 18 .. 18;
Reserved_19_20 at 0 range 19 .. 20;
SAI1RST at 0 range 21 .. 21;
SAI2RST at 0 range 22 .. 22;
Reserved_23_23 at 0 range 23 .. 23;
DFSDMRST at 0 range 24 .. 24;
Reserved_25_31 at 0 range 25 .. 31;
end record;
-- AHB1 peripheral clock enable register
type AHB1ENR_Register is record
-- DMA1 clock enable
DMA1EN : Boolean := False;
-- DMA2 clock enable
DMA2EN : Boolean := False;
-- unspecified
Reserved_2_7 : HAL.UInt6 := 16#0#;
-- Flash memory interface clock enable
FLASHEN : Boolean := True;
-- unspecified
Reserved_9_11 : HAL.UInt3 := 16#0#;
-- CRC clock enable
CRCEN : Boolean := False;
-- unspecified
Reserved_13_15 : HAL.UInt3 := 16#0#;
-- Touch Sensing Controller clock enable
TSCEN : Boolean := False;
-- DMA2D clock enable
DMA2DEN : Boolean := False;
-- unspecified
Reserved_18_31 : HAL.UInt14 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for AHB1ENR_Register use record
DMA1EN at 0 range 0 .. 0;
DMA2EN at 0 range 1 .. 1;
Reserved_2_7 at 0 range 2 .. 7;
FLASHEN at 0 range 8 .. 8;
Reserved_9_11 at 0 range 9 .. 11;
CRCEN at 0 range 12 .. 12;
Reserved_13_15 at 0 range 13 .. 15;
TSCEN at 0 range 16 .. 16;
DMA2DEN at 0 range 17 .. 17;
Reserved_18_31 at 0 range 18 .. 31;
end record;
-- AHB2 peripheral clock enable register
type AHB2ENR_Register is record
-- IO port A clock enable
GPIOAEN : Boolean := False;
-- IO port B clock enable
GPIOBEN : Boolean := False;
-- IO port C clock enable
GPIOCEN : Boolean := False;
-- IO port D clock enable
GPIODEN : Boolean := False;
-- IO port E clock enable
GPIOEEN : Boolean := False;
-- IO port F clock enable
GPIOFEN : Boolean := False;
-- IO port G clock enable
GPIOGEN : Boolean := False;
-- IO port H clock enable
GPIOHEN : Boolean := False;
-- IO port I clock enable
GPIOIEN : Boolean := False;
-- unspecified
Reserved_9_11 : HAL.UInt3 := 16#0#;
-- OTG full speed clock enable
OTGFSEN : Boolean := False;
-- ADC clock enable
ADCEN : Boolean := False;
-- DCMI clock enable
DCMIEN : Boolean := False;
-- unspecified
Reserved_15_15 : HAL.Bit := 16#0#;
-- AES accelerator clock enable
AESEN : Boolean := False;
-- HASH clock enable
HASH1EN : Boolean := False;
-- Random Number Generator clock enable
RNGEN : Boolean := False;
-- unspecified
Reserved_19_31 : HAL.UInt13 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for AHB2ENR_Register use record
GPIOAEN at 0 range 0 .. 0;
GPIOBEN at 0 range 1 .. 1;
GPIOCEN at 0 range 2 .. 2;
GPIODEN at 0 range 3 .. 3;
GPIOEEN at 0 range 4 .. 4;
GPIOFEN at 0 range 5 .. 5;
GPIOGEN at 0 range 6 .. 6;
GPIOHEN at 0 range 7 .. 7;
GPIOIEN at 0 range 8 .. 8;
Reserved_9_11 at 0 range 9 .. 11;
OTGFSEN at 0 range 12 .. 12;
ADCEN at 0 range 13 .. 13;
DCMIEN at 0 range 14 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
AESEN at 0 range 16 .. 16;
HASH1EN at 0 range 17 .. 17;
RNGEN at 0 range 18 .. 18;
Reserved_19_31 at 0 range 19 .. 31;
end record;
-- AHB3 peripheral clock enable register
type AHB3ENR_Register is record
-- Flexible memory controller clock enable
FMCEN : Boolean := False;
-- unspecified
Reserved_1_7 : HAL.UInt7 := 16#0#;
-- QSPIEN
QSPIEN : Boolean := False;
-- unspecified
Reserved_9_31 : HAL.UInt23 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for AHB3ENR_Register use record
FMCEN at 0 range 0 .. 0;
Reserved_1_7 at 0 range 1 .. 7;
QSPIEN at 0 range 8 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
-- APB1ENR1
type APB1ENR1_Register is record
-- TIM2 timer clock enable
TIM2EN : Boolean := False;
-- TIM3 timer clock enable
TIM3EN : Boolean := False;
-- TIM4 timer clock enable
TIM4EN : Boolean := False;
-- TIM5 timer clock enable
TIM5EN : Boolean := False;
-- TIM6 timer clock enable
TIM6EN : Boolean := False;
-- TIM7 timer clock enable
TIM7EN : Boolean := False;
-- unspecified
Reserved_6_8 : HAL.UInt3 := 16#0#;
-- LCD clock enable
LCDEN : Boolean := False;
-- RTC APB clock enable
RTCAPBEN : Boolean := False;
-- Window watchdog clock enable
WWDGEN : Boolean := False;
-- unspecified
Reserved_12_13 : HAL.UInt2 := 16#0#;
-- SPI2 clock enable
SPI2EN : Boolean := False;
-- SPI3 clock enable
SPI3EN : Boolean := False;
-- unspecified
Reserved_16_16 : HAL.Bit := 16#0#;
-- USART2 clock enable
USART2EN : Boolean := False;
-- USART3 clock enable
USART3EN : Boolean := False;
-- UART4 clock enable
UART4EN : Boolean := False;
-- UART5 clock enable
UART5EN : Boolean := False;
-- I2C1 clock enable
I2C1EN : Boolean := False;
-- I2C2 clock enable
I2C2EN : Boolean := False;
-- I2C3 clock enable
I2C3EN : Boolean := False;
-- Clock Recovery System clock enable
CRSEN : Boolean := False;
-- CAN1 clock enable
CAN1EN : Boolean := False;
-- CAN2 clock enable
CAN2EN : Boolean := False;
-- unspecified
Reserved_27_27 : HAL.Bit := 16#0#;
-- Power interface clock enable
PWREN : Boolean := False;
-- DAC1 interface clock enable
DAC1EN : Boolean := False;
-- OPAMP interface clock enable
OPAMPEN : Boolean := False;
-- Low power timer 1 clock enable
LPTIM1EN : Boolean := False;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for APB1ENR1_Register use record
TIM2EN at 0 range 0 .. 0;
TIM3EN at 0 range 1 .. 1;
TIM4EN at 0 range 2 .. 2;
TIM5EN at 0 range 3 .. 3;
TIM6EN at 0 range 4 .. 4;
TIM7EN at 0 range 5 .. 5;
Reserved_6_8 at 0 range 6 .. 8;
LCDEN at 0 range 9 .. 9;
RTCAPBEN at 0 range 10 .. 10;
WWDGEN at 0 range 11 .. 11;
Reserved_12_13 at 0 range 12 .. 13;
SPI2EN at 0 range 14 .. 14;
SPI3EN at 0 range 15 .. 15;
Reserved_16_16 at 0 range 16 .. 16;
USART2EN at 0 range 17 .. 17;
USART3EN at 0 range 18 .. 18;
UART4EN at 0 range 19 .. 19;
UART5EN at 0 range 20 .. 20;
I2C1EN at 0 range 21 .. 21;
I2C2EN at 0 range 22 .. 22;
I2C3EN at 0 range 23 .. 23;
CRSEN at 0 range 24 .. 24;
CAN1EN at 0 range 25 .. 25;
CAN2EN at 0 range 26 .. 26;
Reserved_27_27 at 0 range 27 .. 27;
PWREN at 0 range 28 .. 28;
DAC1EN at 0 range 29 .. 29;
OPAMPEN at 0 range 30 .. 30;
LPTIM1EN at 0 range 31 .. 31;
end record;
-- APB1 peripheral clock enable register 2
type APB1ENR2_Register is record
-- Low power UART 1 clock enable
LPUART1EN : Boolean := False;
-- I2C4 clock enable
I2C4EN : Boolean := False;
-- Single wire protocol clock enable
SWPMI1EN : Boolean := False;
-- unspecified
Reserved_3_4 : HAL.UInt2 := 16#0#;
-- LPTIM2EN
LPTIM2EN : Boolean := False;
-- unspecified
Reserved_6_31 : HAL.UInt26 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for APB1ENR2_Register use record
LPUART1EN at 0 range 0 .. 0;
I2C4EN at 0 range 1 .. 1;
SWPMI1EN at 0 range 2 .. 2;
Reserved_3_4 at 0 range 3 .. 4;
LPTIM2EN at 0 range 5 .. 5;
Reserved_6_31 at 0 range 6 .. 31;
end record;
-- APB2ENR
type APB2ENR_Register is record
-- SYSCFG clock enable
SYSCFGEN : Boolean := False;
-- unspecified
Reserved_1_6 : HAL.UInt6 := 16#0#;
-- Firewall clock enable
FIREWALLEN : Boolean := False;
-- unspecified
Reserved_8_9 : HAL.UInt2 := 16#0#;
-- SDMMC clock enable
SDMMCEN : Boolean := False;
-- TIM1 timer clock enable
TIM1EN : Boolean := False;
-- SPI1 clock enable
SPI1EN : Boolean := False;
-- TIM8 timer clock enable
TIM8EN : Boolean := False;
-- USART1clock enable
USART1EN : Boolean := False;
-- unspecified
Reserved_15_15 : HAL.Bit := 16#0#;
-- TIM15 timer clock enable
TIM15EN : Boolean := False;
-- TIM16 timer clock enable
TIM16EN : Boolean := False;
-- TIM17 timer clock enable
TIM17EN : Boolean := False;
-- unspecified
Reserved_19_20 : HAL.UInt2 := 16#0#;
-- SAI1 clock enable
SAI1EN : Boolean := False;
-- SAI2 clock enable
SAI2EN : Boolean := False;
-- unspecified
Reserved_23_23 : HAL.Bit := 16#0#;
-- DFSDM timer clock enable
DFSDMEN : Boolean := False;
-- unspecified
Reserved_25_31 : HAL.UInt7 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for APB2ENR_Register use record
SYSCFGEN at 0 range 0 .. 0;
Reserved_1_6 at 0 range 1 .. 6;
FIREWALLEN at 0 range 7 .. 7;
Reserved_8_9 at 0 range 8 .. 9;
SDMMCEN at 0 range 10 .. 10;
TIM1EN at 0 range 11 .. 11;
SPI1EN at 0 range 12 .. 12;
TIM8EN at 0 range 13 .. 13;
USART1EN at 0 range 14 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
TIM15EN at 0 range 16 .. 16;
TIM16EN at 0 range 17 .. 17;
TIM17EN at 0 range 18 .. 18;
Reserved_19_20 at 0 range 19 .. 20;
SAI1EN at 0 range 21 .. 21;
SAI2EN at 0 range 22 .. 22;
Reserved_23_23 at 0 range 23 .. 23;
DFSDMEN at 0 range 24 .. 24;
Reserved_25_31 at 0 range 25 .. 31;
end record;
-- AHB1 peripheral clocks enable in Sleep and Stop modes register
type AHB1SMENR_Register is record
-- DMA1 clocks enable during Sleep and Stop modes
DMA1SMEN : Boolean := True;
-- DMA2 clocks enable during Sleep and Stop modes
DMA2SMEN : Boolean := True;
-- unspecified
Reserved_2_7 : HAL.UInt6 := 16#0#;
-- Flash memory interface clocks enable during Sleep and Stop modes
FLASHSMEN : Boolean := True;
-- SRAM1 interface clocks enable during Sleep and Stop modes
SRAM1SMEN : Boolean := True;
-- unspecified
Reserved_10_11 : HAL.UInt2 := 16#0#;
-- CRCSMEN
CRCSMEN : Boolean := True;
-- unspecified
Reserved_13_15 : HAL.UInt3 := 16#0#;
-- Touch Sensing Controller clocks enable during Sleep and Stop modes
TSCSMEN : Boolean := True;
-- DMA2D clock enable during Sleep and Stop modes
DMA2DSMEN : Boolean := False;
-- unspecified
Reserved_18_31 : HAL.UInt14 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for AHB1SMENR_Register use record
DMA1SMEN at 0 range 0 .. 0;
DMA2SMEN at 0 range 1 .. 1;
Reserved_2_7 at 0 range 2 .. 7;
FLASHSMEN at 0 range 8 .. 8;
SRAM1SMEN at 0 range 9 .. 9;
Reserved_10_11 at 0 range 10 .. 11;
CRCSMEN at 0 range 12 .. 12;
Reserved_13_15 at 0 range 13 .. 15;
TSCSMEN at 0 range 16 .. 16;
DMA2DSMEN at 0 range 17 .. 17;
Reserved_18_31 at 0 range 18 .. 31;
end record;
-- AHB2 peripheral clocks enable in Sleep and Stop modes register
type AHB2SMENR_Register is record
-- IO port A clocks enable during Sleep and Stop modes
GPIOASMEN : Boolean := True;
-- IO port B clocks enable during Sleep and Stop modes
GPIOBSMEN : Boolean := True;
-- IO port C clocks enable during Sleep and Stop modes
GPIOCSMEN : Boolean := True;
-- IO port D clocks enable during Sleep and Stop modes
GPIODSMEN : Boolean := True;
-- IO port E clocks enable during Sleep and Stop modes
GPIOESMEN : Boolean := True;
-- IO port F clocks enable during Sleep and Stop modes
GPIOFSMEN : Boolean := True;
-- IO port G clocks enable during Sleep and Stop modes
GPIOGSMEN : Boolean := True;
-- IO port H clocks enable during Sleep and Stop modes
GPIOHSMEN : Boolean := True;
-- IO port I clocks enable during Sleep and Stop modes
GPIOISMEN : Boolean := False;
-- SRAM2 interface clocks enable during Sleep and Stop modes
SRAM2SMEN : Boolean := True;
-- unspecified
Reserved_10_11 : HAL.UInt2 := 16#0#;
-- OTG full speed clocks enable during Sleep and Stop modes
OTGFSSMEN : Boolean := True;
-- ADC clocks enable during Sleep and Stop modes
ADCFSSMEN : Boolean := True;
-- DCMI clock enable during Sleep and Stop modes
DCMISMEN : Boolean := False;
-- unspecified
Reserved_15_15 : HAL.Bit := 16#0#;
-- AES accelerator clocks enable during Sleep and Stop modes
AESSMEN : Boolean := True;
-- HASH clock enable during Sleep and Stop modes
HASH1SMEN : Boolean := False;
-- Random Number Generator clocks enable during Sleep and Stop modes
RNGSMEN : Boolean := True;
-- unspecified
Reserved_19_31 : HAL.UInt13 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for AHB2SMENR_Register use record
GPIOASMEN at 0 range 0 .. 0;
GPIOBSMEN at 0 range 1 .. 1;
GPIOCSMEN at 0 range 2 .. 2;
GPIODSMEN at 0 range 3 .. 3;
GPIOESMEN at 0 range 4 .. 4;
GPIOFSMEN at 0 range 5 .. 5;
GPIOGSMEN at 0 range 6 .. 6;
GPIOHSMEN at 0 range 7 .. 7;
GPIOISMEN at 0 range 8 .. 8;
SRAM2SMEN at 0 range 9 .. 9;
Reserved_10_11 at 0 range 10 .. 11;
OTGFSSMEN at 0 range 12 .. 12;
ADCFSSMEN at 0 range 13 .. 13;
DCMISMEN at 0 range 14 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
AESSMEN at 0 range 16 .. 16;
HASH1SMEN at 0 range 17 .. 17;
RNGSMEN at 0 range 18 .. 18;
Reserved_19_31 at 0 range 19 .. 31;
end record;
-- AHB3 peripheral clocks enable in Sleep and Stop modes register
type AHB3SMENR_Register is record
-- Flexible memory controller clocks enable during Sleep and Stop modes
FMCSMEN : Boolean := True;
-- unspecified
Reserved_1_7 : HAL.UInt7 := 16#0#;
-- QSPISMEN
QSPISMEN : Boolean := True;
-- unspecified
Reserved_9_31 : HAL.UInt23 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for AHB3SMENR_Register use record
FMCSMEN at 0 range 0 .. 0;
Reserved_1_7 at 0 range 1 .. 7;
QSPISMEN at 0 range 8 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
-- APB1SMENR1
type APB1SMENR1_Register is record
-- TIM2 timer clocks enable during Sleep and Stop modes
TIM2SMEN : Boolean := True;
-- TIM3 timer clocks enable during Sleep and Stop modes
TIM3SMEN : Boolean := True;
-- TIM4 timer clocks enable during Sleep and Stop modes
TIM4SMEN : Boolean := True;
-- TIM5 timer clocks enable during Sleep and Stop modes
TIM5SMEN : Boolean := True;
-- TIM6 timer clocks enable during Sleep and Stop modes
TIM6SMEN : Boolean := True;
-- TIM7 timer clocks enable during Sleep and Stop modes
TIM7SMEN : Boolean := True;
-- unspecified
Reserved_6_8 : HAL.UInt3 := 16#0#;
-- LCD clocks enable during Sleep and Stop modes
LCDSMEN : Boolean := True;
-- RTC APB clock enable during Sleep and Stop modes
RTCAPBSMEN : Boolean := False;
-- Window watchdog clocks enable during Sleep and Stop modes
WWDGSMEN : Boolean := True;
-- unspecified
Reserved_12_13 : HAL.UInt2 := 16#0#;
-- SPI2 clocks enable during Sleep and Stop modes
SPI2SMEN : Boolean := True;
-- SPI3 clocks enable during Sleep and Stop modes
SPI3SMEN : Boolean := True;
-- unspecified
Reserved_16_16 : HAL.Bit := 16#0#;
-- USART2 clocks enable during Sleep and Stop modes
USART2SMEN : Boolean := True;
-- USART3 clocks enable during Sleep and Stop modes
USART3SMEN : Boolean := True;
-- UART4 clocks enable during Sleep and Stop modes
UART4SMEN : Boolean := True;
-- UART5 clocks enable during Sleep and Stop modes
UART5SMEN : Boolean := True;
-- I2C1 clocks enable during Sleep and Stop modes
I2C1SMEN : Boolean := True;
-- I2C2 clocks enable during Sleep and Stop modes
I2C2SMEN : Boolean := True;
-- I2C3 clocks enable during Sleep and Stop modes
I2C3SMEN : Boolean := True;
-- unspecified
Reserved_24_24 : HAL.Bit := 16#0#;
-- CAN1 clocks enable during Sleep and Stop modes
CAN1SMEN : Boolean := True;
-- CAN2 clocks enable during Sleep and Stop modes
CAN2SMEN : Boolean := False;
-- unspecified
Reserved_27_27 : HAL.Bit := 16#0#;
-- Power interface clocks enable during Sleep and Stop modes
PWRSMEN : Boolean := True;
-- DAC1 interface clocks enable during Sleep and Stop modes
DAC1SMEN : Boolean := True;
-- OPAMP interface clocks enable during Sleep and Stop modes
OPAMPSMEN : Boolean := True;
-- Low power timer 1 clocks enable during Sleep and Stop modes
LPTIM1SMEN : Boolean := True;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for APB1SMENR1_Register use record
TIM2SMEN at 0 range 0 .. 0;
TIM3SMEN at 0 range 1 .. 1;
TIM4SMEN at 0 range 2 .. 2;
TIM5SMEN at 0 range 3 .. 3;
TIM6SMEN at 0 range 4 .. 4;
TIM7SMEN at 0 range 5 .. 5;
Reserved_6_8 at 0 range 6 .. 8;
LCDSMEN at 0 range 9 .. 9;
RTCAPBSMEN at 0 range 10 .. 10;
WWDGSMEN at 0 range 11 .. 11;
Reserved_12_13 at 0 range 12 .. 13;
SPI2SMEN at 0 range 14 .. 14;
SPI3SMEN at 0 range 15 .. 15;
Reserved_16_16 at 0 range 16 .. 16;
USART2SMEN at 0 range 17 .. 17;
USART3SMEN at 0 range 18 .. 18;
UART4SMEN at 0 range 19 .. 19;
UART5SMEN at 0 range 20 .. 20;
I2C1SMEN at 0 range 21 .. 21;
I2C2SMEN at 0 range 22 .. 22;
I2C3SMEN at 0 range 23 .. 23;
Reserved_24_24 at 0 range 24 .. 24;
CAN1SMEN at 0 range 25 .. 25;
CAN2SMEN at 0 range 26 .. 26;
Reserved_27_27 at 0 range 27 .. 27;
PWRSMEN at 0 range 28 .. 28;
DAC1SMEN at 0 range 29 .. 29;
OPAMPSMEN at 0 range 30 .. 30;
LPTIM1SMEN at 0 range 31 .. 31;
end record;
-- APB1 peripheral clocks enable in Sleep and Stop modes register 2
type APB1SMENR2_Register is record
-- Low power UART 1 clocks enable during Sleep and Stop modes
LPUART1SMEN : Boolean := True;
-- I2C4 clocks enable during Sleep and Stop modes
I2C4SMEN : Boolean := False;
-- Single wire protocol clocks enable during Sleep and Stop modes
SWPMI1SMEN : Boolean := True;
-- unspecified
Reserved_3_4 : HAL.UInt2 := 16#0#;
-- LPTIM2SMEN
LPTIM2SMEN : Boolean := True;
-- unspecified
Reserved_6_31 : HAL.UInt26 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for APB1SMENR2_Register use record
LPUART1SMEN at 0 range 0 .. 0;
I2C4SMEN at 0 range 1 .. 1;
SWPMI1SMEN at 0 range 2 .. 2;
Reserved_3_4 at 0 range 3 .. 4;
LPTIM2SMEN at 0 range 5 .. 5;
Reserved_6_31 at 0 range 6 .. 31;
end record;
-- APB2SMENR
type APB2SMENR_Register is record
-- SYSCFG clocks enable during Sleep and Stop modes
SYSCFGSMEN : Boolean := True;
-- unspecified
Reserved_1_9 : HAL.UInt9 := 16#0#;
-- SDMMC clocks enable during Sleep and Stop modes
SDMMCSMEN : Boolean := True;
-- TIM1 timer clocks enable during Sleep and Stop modes
TIM1SMEN : Boolean := True;
-- SPI1 clocks enable during Sleep and Stop modes
SPI1SMEN : Boolean := True;
-- TIM8 timer clocks enable during Sleep and Stop modes
TIM8SMEN : Boolean := True;
-- USART1clocks enable during Sleep and Stop modes
USART1SMEN : Boolean := True;
-- unspecified
Reserved_15_15 : HAL.Bit := 16#0#;
-- TIM15 timer clocks enable during Sleep and Stop modes
TIM15SMEN : Boolean := True;
-- TIM16 timer clocks enable during Sleep and Stop modes
TIM16SMEN : Boolean := True;
-- TIM17 timer clocks enable during Sleep and Stop modes
TIM17SMEN : Boolean := True;
-- unspecified
Reserved_19_20 : HAL.UInt2 := 16#0#;
-- SAI1 clocks enable during Sleep and Stop modes
SAI1SMEN : Boolean := True;
-- SAI2 clocks enable during Sleep and Stop modes
SAI2SMEN : Boolean := True;
-- unspecified
Reserved_23_23 : HAL.Bit := 16#0#;
-- DFSDM timer clocks enable during Sleep and Stop modes
DFSDMSMEN : Boolean := True;
-- unspecified
Reserved_25_31 : HAL.UInt7 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for APB2SMENR_Register use record
SYSCFGSMEN at 0 range 0 .. 0;
Reserved_1_9 at 0 range 1 .. 9;
SDMMCSMEN at 0 range 10 .. 10;
TIM1SMEN at 0 range 11 .. 11;
SPI1SMEN at 0 range 12 .. 12;
TIM8SMEN at 0 range 13 .. 13;
USART1SMEN at 0 range 14 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
TIM15SMEN at 0 range 16 .. 16;
TIM16SMEN at 0 range 17 .. 17;
TIM17SMEN at 0 range 18 .. 18;
Reserved_19_20 at 0 range 19 .. 20;
SAI1SMEN at 0 range 21 .. 21;
SAI2SMEN at 0 range 22 .. 22;
Reserved_23_23 at 0 range 23 .. 23;
DFSDMSMEN at 0 range 24 .. 24;
Reserved_25_31 at 0 range 25 .. 31;
end record;
subtype CCIPR_USART1SEL_Field is HAL.UInt2;
subtype CCIPR_USART2SEL_Field is HAL.UInt2;
subtype CCIPR_USART3SEL_Field is HAL.UInt2;
subtype CCIPR_UART4SEL_Field is HAL.UInt2;
subtype CCIPR_UART5SEL_Field is HAL.UInt2;
subtype CCIPR_LPUART1SEL_Field is HAL.UInt2;
subtype CCIPR_I2C1SEL_Field is HAL.UInt2;
subtype CCIPR_I2C2SEL_Field is HAL.UInt2;
subtype CCIPR_I2C3SEL_Field is HAL.UInt2;
subtype CCIPR_LPTIM1SEL_Field is HAL.UInt2;
subtype CCIPR_LPTIM2SEL_Field is HAL.UInt2;
subtype CCIPR_SAI1SEL_Field is HAL.UInt2;
subtype CCIPR_SAI2SEL_Field is HAL.UInt2;
subtype CCIPR_CLK48SEL_Field is HAL.UInt2;
subtype CCIPR_ADCSEL_Field is HAL.UInt2;
-- CCIPR
type CCIPR_Register is record
-- USART1 clock source selection
USART1SEL : CCIPR_USART1SEL_Field := 16#0#;
-- USART2 clock source selection
USART2SEL : CCIPR_USART2SEL_Field := 16#0#;
-- USART3 clock source selection
USART3SEL : CCIPR_USART3SEL_Field := 16#0#;
-- UART4 clock source selection
UART4SEL : CCIPR_UART4SEL_Field := 16#0#;
-- UART5 clock source selection
UART5SEL : CCIPR_UART5SEL_Field := 16#0#;
-- LPUART1 clock source selection
LPUART1SEL : CCIPR_LPUART1SEL_Field := 16#0#;
-- I2C1 clock source selection
I2C1SEL : CCIPR_I2C1SEL_Field := 16#0#;
-- I2C2 clock source selection
I2C2SEL : CCIPR_I2C2SEL_Field := 16#0#;
-- I2C3 clock source selection
I2C3SEL : CCIPR_I2C3SEL_Field := 16#0#;
-- Low power timer 1 clock source selection
LPTIM1SEL : CCIPR_LPTIM1SEL_Field := 16#0#;
-- Low power timer 2 clock source selection
LPTIM2SEL : CCIPR_LPTIM2SEL_Field := 16#0#;
-- SAI1 clock source selection
SAI1SEL : CCIPR_SAI1SEL_Field := 16#0#;
-- SAI2 clock source selection
SAI2SEL : CCIPR_SAI2SEL_Field := 16#0#;
-- 48 MHz clock source selection
CLK48SEL : CCIPR_CLK48SEL_Field := 16#0#;
-- ADCs clock source selection
ADCSEL : CCIPR_ADCSEL_Field := 16#0#;
-- SWPMI1 clock source selection
SWPMI1SEL : Boolean := False;
-- DFSDM clock source selection
DFSDMSEL : Boolean := False;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CCIPR_Register use record
USART1SEL at 0 range 0 .. 1;
USART2SEL at 0 range 2 .. 3;
USART3SEL at 0 range 4 .. 5;
UART4SEL at 0 range 6 .. 7;
UART5SEL at 0 range 8 .. 9;
LPUART1SEL at 0 range 10 .. 11;
I2C1SEL at 0 range 12 .. 13;
I2C2SEL at 0 range 14 .. 15;
I2C3SEL at 0 range 16 .. 17;
LPTIM1SEL at 0 range 18 .. 19;
LPTIM2SEL at 0 range 20 .. 21;
SAI1SEL at 0 range 22 .. 23;
SAI2SEL at 0 range 24 .. 25;
CLK48SEL at 0 range 26 .. 27;
ADCSEL at 0 range 28 .. 29;
SWPMI1SEL at 0 range 30 .. 30;
DFSDMSEL at 0 range 31 .. 31;
end record;
subtype BDCR_LSEDRV_Field is HAL.UInt2;
subtype BDCR_RTCSEL_Field is HAL.UInt2;
-- BDCR
type BDCR_Register is record
-- LSE oscillator enable
LSEON : Boolean := False;
-- Read-only. LSE oscillator ready
LSERDY : Boolean := False;
-- LSE oscillator bypass
LSEBYP : Boolean := False;
-- SE oscillator drive capability
LSEDRV : BDCR_LSEDRV_Field := 16#0#;
-- LSECSSON
LSECSSON : Boolean := False;
-- Read-only. LSECSSD
LSECSSD : Boolean := False;
-- unspecified
Reserved_7_7 : HAL.Bit := 16#0#;
-- RTC clock source selection
RTCSEL : BDCR_RTCSEL_Field := 16#0#;
-- unspecified
Reserved_10_14 : HAL.UInt5 := 16#0#;
-- RTC clock enable
RTCEN : Boolean := False;
-- Backup domain software reset
BDRST : Boolean := False;
-- unspecified
Reserved_17_23 : HAL.UInt7 := 16#0#;
-- Low speed clock output enable
LSCOEN : Boolean := False;
-- Low speed clock output selection
LSCOSEL : Boolean := False;
-- unspecified
Reserved_26_31 : HAL.UInt6 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for BDCR_Register use record
LSEON at 0 range 0 .. 0;
LSERDY at 0 range 1 .. 1;
LSEBYP at 0 range 2 .. 2;
LSEDRV at 0 range 3 .. 4;
LSECSSON at 0 range 5 .. 5;
LSECSSD at 0 range 6 .. 6;
Reserved_7_7 at 0 range 7 .. 7;
RTCSEL at 0 range 8 .. 9;
Reserved_10_14 at 0 range 10 .. 14;
RTCEN at 0 range 15 .. 15;
BDRST at 0 range 16 .. 16;
Reserved_17_23 at 0 range 17 .. 23;
LSCOEN at 0 range 24 .. 24;
LSCOSEL at 0 range 25 .. 25;
Reserved_26_31 at 0 range 26 .. 31;
end record;
subtype CSR_MSISRANGE_Field is HAL.UInt4;
-- CSR
type CSR_Register is record
-- LSI oscillator enable
LSION : Boolean := False;
-- Read-only. LSI oscillator ready
LSIRDY : Boolean := False;
-- unspecified
Reserved_2_7 : HAL.UInt6 := 16#0#;
-- SI range after Standby mode
MSISRANGE : CSR_MSISRANGE_Field := 16#6#;
-- unspecified
Reserved_12_22 : HAL.UInt11 := 16#0#;
-- Remove reset flag
RMVF : Boolean := False;
-- Read-only. Firewall reset flag
FIREWALLRSTF : Boolean := False;
-- Read-only. Option byte loader reset flag
OBLRSTF : Boolean := False;
-- Read-only. Pin reset flag
PINRSTF : Boolean := True;
-- Read-only. BOR flag
BORRSTF : Boolean := True;
-- Read-only. Software reset flag
SFTRSTF : Boolean := False;
-- Read-only. Independent window watchdog reset flag
IWDGRSTF : Boolean := False;
-- Read-only. Window watchdog reset flag
WWDGRSTF : Boolean := False;
-- Read-only. Low-power reset flag
LPWRSTF : Boolean := False;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CSR_Register use record
LSION at 0 range 0 .. 0;
LSIRDY at 0 range 1 .. 1;
Reserved_2_7 at 0 range 2 .. 7;
MSISRANGE at 0 range 8 .. 11;
Reserved_12_22 at 0 range 12 .. 22;
RMVF at 0 range 23 .. 23;
FIREWALLRSTF at 0 range 24 .. 24;
OBLRSTF at 0 range 25 .. 25;
PINRSTF at 0 range 26 .. 26;
BORRSTF at 0 range 27 .. 27;
SFTRSTF at 0 range 28 .. 28;
IWDGRSTF at 0 range 29 .. 29;
WWDGRSTF at 0 range 30 .. 30;
LPWRSTF at 0 range 31 .. 31;
end record;
-----------------
-- Peripherals --
-----------------
-- Reset and clock control
type RCC_Peripheral is record
-- Clock control register
CR : aliased CR_Register;
-- Internal clock sources calibration register
ICSCR : aliased ICSCR_Register;
-- Clock configuration register
CFGR : aliased CFGR_Register;
-- PLL configuration register
PLLCFGR : aliased PLLCFGR_Register;
-- PLLSAI1 configuration register
PLLSAI1CFGR : aliased PLLSAI1CFGR_Register;
-- PLLSAI2 configuration register
PLLSAI2CFGR : aliased PLLSAI2CFGR_Register;
-- Clock interrupt enable register
CIER : aliased CIER_Register;
-- Clock interrupt flag register
CIFR : aliased CIFR_Register;
-- Clock interrupt clear register
CICR : aliased CICR_Register;
-- AHB1 peripheral reset register
AHB1RSTR : aliased AHB1RSTR_Register;
-- AHB2 peripheral reset register
AHB2RSTR : aliased AHB2RSTR_Register;
-- AHB3 peripheral reset register
AHB3RSTR : aliased AHB3RSTR_Register;
-- APB1 peripheral reset register 1
APB1RSTR1 : aliased APB1RSTR1_Register;
-- APB1 peripheral reset register 2
APB1RSTR2 : aliased APB1RSTR2_Register;
-- APB2 peripheral reset register
APB2RSTR : aliased APB2RSTR_Register;
-- AHB1 peripheral clock enable register
AHB1ENR : aliased AHB1ENR_Register;
-- AHB2 peripheral clock enable register
AHB2ENR : aliased AHB2ENR_Register;
-- AHB3 peripheral clock enable register
AHB3ENR : aliased AHB3ENR_Register;
-- APB1ENR1
APB1ENR1 : aliased APB1ENR1_Register;
-- APB1 peripheral clock enable register 2
APB1ENR2 : aliased APB1ENR2_Register;
-- APB2ENR
APB2ENR : aliased APB2ENR_Register;
-- AHB1 peripheral clocks enable in Sleep and Stop modes register
AHB1SMENR : aliased AHB1SMENR_Register;
-- AHB2 peripheral clocks enable in Sleep and Stop modes register
AHB2SMENR : aliased AHB2SMENR_Register;
-- AHB3 peripheral clocks enable in Sleep and Stop modes register
AHB3SMENR : aliased AHB3SMENR_Register;
-- APB1SMENR1
APB1SMENR1 : aliased APB1SMENR1_Register;
-- APB1 peripheral clocks enable in Sleep and Stop modes register 2
APB1SMENR2 : aliased APB1SMENR2_Register;
-- APB2SMENR
APB2SMENR : aliased APB2SMENR_Register;
-- CCIPR
CCIPR : aliased CCIPR_Register;
-- BDCR
BDCR : aliased BDCR_Register;
-- CSR
CSR : aliased CSR_Register;
end record
with Volatile;
for RCC_Peripheral use record
CR at 16#0# range 0 .. 31;
ICSCR at 16#4# range 0 .. 31;
CFGR at 16#8# range 0 .. 31;
PLLCFGR at 16#C# range 0 .. 31;
PLLSAI1CFGR at 16#10# range 0 .. 31;
PLLSAI2CFGR at 16#14# range 0 .. 31;
CIER at 16#18# range 0 .. 31;
CIFR at 16#1C# range 0 .. 31;
CICR at 16#20# range 0 .. 31;
AHB1RSTR at 16#28# range 0 .. 31;
AHB2RSTR at 16#2C# range 0 .. 31;
AHB3RSTR at 16#30# range 0 .. 31;
APB1RSTR1 at 16#38# range 0 .. 31;
APB1RSTR2 at 16#3C# range 0 .. 31;
APB2RSTR at 16#40# range 0 .. 31;
AHB1ENR at 16#48# range 0 .. 31;
AHB2ENR at 16#4C# range 0 .. 31;
AHB3ENR at 16#50# range 0 .. 31;
APB1ENR1 at 16#58# range 0 .. 31;
APB1ENR2 at 16#5C# range 0 .. 31;
APB2ENR at 16#60# range 0 .. 31;
AHB1SMENR at 16#68# range 0 .. 31;
AHB2SMENR at 16#6C# range 0 .. 31;
AHB3SMENR at 16#70# range 0 .. 31;
APB1SMENR1 at 16#78# range 0 .. 31;
APB1SMENR2 at 16#7C# range 0 .. 31;
APB2SMENR at 16#80# range 0 .. 31;
CCIPR at 16#88# range 0 .. 31;
BDCR at 16#90# range 0 .. 31;
CSR at 16#94# range 0 .. 31;
end record;
-- Reset and clock control
RCC_Periph : aliased RCC_Peripheral
with Import, Address => System'To_Address (16#40021000#);
end STM32_SVD.RCC;
| 37.324912 | 78 | 0.565602 |
c537ac4d3d9a8153fd425c50ace62379f64c5c18 | 1,118 | adb | Ada | hybrid/ada/test.adb | octonion/examples | 5d142697b9f781e37c61f32217fdb6d661902d42 | [
"MIT"
] | 4 | 2017-12-14T04:00:10.000Z | 2018-03-31T07:12:13.000Z | hybrid/ada/test.adb | octonion/examples | 5d142697b9f781e37c61f32217fdb6d661902d42 | [
"MIT"
] | null | null | null | hybrid/ada/test.adb | octonion/examples | 5d142697b9f781e37c61f32217fdb6d661902d42 | [
"MIT"
] | null | null | null | with Ada.Command_Line;
with Ada.Text_IO;
procedure Test is
Iterations : Positive := Positive'Value
(Ada.Command_Line.Argument (1));
protected Buffer is
entry Put (X : in Boolean);
entry Get (X : out Boolean);
private
Value : Boolean;
Full : Boolean := False;
end Buffer;
protected body Buffer is
entry Put (X : in Boolean) when not Full is
begin
Value := X;
Full := True;
end Put;
entry Get (X : out Boolean) when Full is
begin
X := Value;
Full := False;
end Get;
end Buffer;
task Producer;
task body Producer is
begin
for I in 1 .. Iterations - 1 loop
Buffer.Put (False);
end loop;
Buffer.Put (True);
end Producer;
task Consumer;
task body Consumer is
X : Boolean;
Count : Natural := 0;
begin
loop
Buffer.Get (X);
Count := Count + 1;
exit when X;
end loop;
Ada.Text_IO.Put_Line
("Executed " & Natural'Image (Count) & " iterations");
end Consumer;
begin
null;
end Test;
| 19.964286 | 62 | 0.555456 |
4ac71476f6afd8b5a4a53bee69871e1a41fc275d | 2,010 | ads | Ada | Validation/pyFrame3DD-master/gcc-master/gcc/ada/makeusg.ads | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | Validation/pyFrame3DD-master/gcc-master/gcc/ada/makeusg.ads | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | Validation/pyFrame3DD-master/gcc-master/gcc/ada/makeusg.ads | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- M A K E U S G --
-- --
-- S p e c --
-- --
-- Copyright (C) 1992-2020, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT 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 GNAT; see file COPYING3. If not, go to --
-- http://www.gnu.org/licenses for a complete copy of the license. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
-- Procedure to output usage information for gnatmake
procedure Makeusg;
-- Output gnatmake usage information
| 67 | 78 | 0.389055 |
4a58e278522da31551072759980c17524455e148 | 250 | adb | Ada | tests/api/unset/main.adb | pmderodat/ada-toml | 1bc843e35520ca1d1861d52cfb9121d51ec9075b | [
"BSD-3-Clause"
] | 19 | 2019-03-25T15:32:12.000Z | 2022-03-22T13:15:57.000Z | tests/api/unset/main.adb | pmderodat/ada-toml | 1bc843e35520ca1d1861d52cfb9121d51ec9075b | [
"BSD-3-Clause"
] | 8 | 2019-04-14T10:09:23.000Z | 2021-09-10T11:03:38.000Z | tests/api/unset/main.adb | pmderodat/ada-toml | 1bc843e35520ca1d1861d52cfb9121d51ec9075b | [
"BSD-3-Clause"
] | 3 | 2019-04-12T08:42:24.000Z | 2021-06-24T12:59:46.000Z | with Ada.Text_IO;
with TOML;
with TOML.File_IO;
procedure Main is
Value : constant TOML.TOML_Value :=
TOML.File_IO.Load_File ("example.toml").Value;
begin
Value.Unset ("array");
Ada.Text_IO.Put_Line (Value.Dump_As_String);
end Main;
| 19.230769 | 52 | 0.716 |
4a6ad9b5ce684d17fd8e2c31f8c068729e246818 | 299,356 | adb | Ada | honeybee_proj/HBH/.autopilot/db/pointOnSegment.sched.adb | AnthonyKenny98/HoneyBee | 5b1859fe8c50cb5bd709f53780c4e5ce7160b987 | [
"MIT"
] | null | null | null | honeybee_proj/HBH/.autopilot/db/pointOnSegment.sched.adb | AnthonyKenny98/HoneyBee | 5b1859fe8c50cb5bd709f53780c4e5ce7160b987 | [
"MIT"
] | null | null | null | honeybee_proj/HBH/.autopilot/db/pointOnSegment.sched.adb | AnthonyKenny98/HoneyBee | 5b1859fe8c50cb5bd709f53780c4e5ce7160b987 | [
"MIT"
] | null | null | null | <?xml version="1.0" encoding="UTF-8" standalone="yes" ?>
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<first>10</first>
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<first>0</first>
<second>0</second>
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</item>
<item>
<first>11</first>
<second>
<first>0</first>
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</item>
<item>
<first>12</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>13</first>
<second>
<first>0</first>
<second>0</second>
</second>
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<item>
<first>14</first>
<second>
<first>0</first>
<second>0</second>
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</item>
<item>
<first>15</first>
<second>
<first>0</first>
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</second>
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<item>
<first>16</first>
<second>
<first>0</first>
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</second>
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<item>
<first>17</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>18</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>19</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>20</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>21</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>22</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>23</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>24</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>25</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>26</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>27</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>28</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>29</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>30</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>31</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>32</first>
<second>
<first>0</first>
<second>1</second>
</second>
</item>
<item>
<first>33</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>34</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>35</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>36</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>37</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>38</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>39</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>40</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>41</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>42</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>43</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>44</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>45</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>46</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>47</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>48</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>49</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>50</first>
<second>
<first>0</first>
<second>1</second>
</second>
</item>
<item>
<first>51</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>52</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>53</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>54</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>55</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>56</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>57</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>58</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>59</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>60</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>61</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>62</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>63</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>64</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>65</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>66</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>67</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>68</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>69</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>70</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>71</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>72</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>73</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>74</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>75</first>
<second>
<first>0</first>
<second>1</second>
</second>
</item>
<item>
<first>76</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>77</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>78</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>79</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>80</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>81</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>82</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>83</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>84</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>85</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>86</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>87</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>88</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>89</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>90</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>91</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>92</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>93</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>94</first>
<second>
<first>0</first>
<second>1</second>
</second>
</item>
<item>
<first>95</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>96</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>97</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>98</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>99</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>100</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>101</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>102</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>103</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>104</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>105</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>106</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>107</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>108</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>109</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>110</first>
<second>
<first>0</first>
<second>1</second>
</second>
</item>
<item>
<first>111</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>112</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>113</first>
<second>
<first>0</first>
<second>1</second>
</second>
</item>
<item>
<first>114</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>115</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>116</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>117</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>118</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>119</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>120</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>121</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>122</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>123</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>124</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>125</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>126</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>127</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>128</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>129</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>130</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>131</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>132</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>133</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>134</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>135</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>136</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>137</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>138</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>139</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>140</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>141</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>142</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>143</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>144</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>145</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>146</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>147</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>148</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>149</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>150</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>151</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>152</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>153</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>154</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>155</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>156</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>157</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>158</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
</node_label_latency>
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<count>0</count>
<item_version>0</item_version>
</dp_fu_nodes_expression>
<dp_fu_nodes_module>
<count>0</count>
<item_version>0</item_version>
</dp_fu_nodes_module>
<dp_fu_nodes_io>
<count>0</count>
<item_version>0</item_version>
</dp_fu_nodes_io>
<return_ports>
<count>0</count>
<item_version>0</item_version>
</return_ports>
<dp_mem_port_nodes class_id="36" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</dp_mem_port_nodes>
<dp_reg_nodes>
<count>0</count>
<item_version>0</item_version>
</dp_reg_nodes>
<dp_regname_nodes>
<count>0</count>
<item_version>0</item_version>
</dp_regname_nodes>
<dp_reg_phi>
<count>0</count>
<item_version>0</item_version>
</dp_reg_phi>
<dp_regname_phi>
<count>0</count>
<item_version>0</item_version>
</dp_regname_phi>
<dp_port_io_nodes class_id="37" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</dp_port_io_nodes>
<port2core class_id="38" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</port2core>
<node2core>
<count>0</count>
<item_version>0</item_version>
</node2core>
</syndb>
</boost_serialization>
| 27.241423 | 71 | 0.598511 |
dc09032fd777b43d03263fc813db3efcb0671b38 | 1,820 | adb | Ada | source/nodes/program-relative_access_types.adb | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | null | null | null | source/nodes/program-relative_access_types.adb | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | null | null | null | source/nodes/program-relative_access_types.adb | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | 1 | 2019-10-16T09:05:27.000Z | 2019-10-16T09:05:27.000Z | -- SPDX-FileCopyrightText: 2019 Max Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-------------------------------------------------------------
with System.Storage_Elements;
with System.Address_To_Access_Conversions;
package body Program.Relative_Access_Types is
package Conversions is new System.Address_To_Access_Conversions (Object);
use System.Storage_Elements;
---------
-- "+" --
---------
function "+" (Value : Object_Access) return Relative_Access is
begin
return Result : Relative_Access do
if Value = null then
Result := Relative_Access'First;
else
declare
Value_Address : constant Integer_Address :=
To_Integer (Value.all'Address);
Result_Address : constant Integer_Address :=
To_Integer (Result'Address);
begin
if Value_Address > Result_Address then
Result := Relative_Access (Value_Address - Result_Address);
else
Result := -Relative_Access (Result_Address - Value_Address);
end if;
end;
end if;
end return;
end "+";
---------
-- "-" --
---------
function "-" (Value : Relative_Access) return Object_Access is
Self : constant Integer_Address := To_Integer (Value'Address);
begin
if Value = Relative_Access'First then
return null;
elsif Value > 0 then
return Object_Access
(Conversions.To_Pointer
(To_Address (Self + Integer_Address (Value))));
else
return Object_Access
(Conversions.To_Pointer
(To_Address (Self - Integer_Address (abs Value))));
end if;
end "-";
end Program.Relative_Access_Types;
| 29.354839 | 78 | 0.571978 |
cb3b5cb84a62eb77c87590611ff1507a93b1f258 | 4,533 | adb | Ada | runtime/ravenscar-sfp-stm32f427/common/s-memcop.adb | TUM-EI-RCS/StratoX | 5fdd04e01a25efef6052376f43ce85b5bc973392 | [
"BSD-3-Clause"
] | 12 | 2017-06-08T14:19:57.000Z | 2022-03-09T02:48:59.000Z | runtime/ravenscar-sfp-stm32f427/common/s-memcop.adb | TUM-EI-RCS/StratoX | 5fdd04e01a25efef6052376f43ce85b5bc973392 | [
"BSD-3-Clause"
] | 6 | 2017-06-08T13:13:50.000Z | 2020-05-15T09:32:43.000Z | runtime/ravenscar-sfp-stm32f427/common/s-memcop.adb | TUM-EI-RCS/StratoX | 5fdd04e01a25efef6052376f43ce85b5bc973392 | [
"BSD-3-Clause"
] | 3 | 2017-06-30T14:05:06.000Z | 2022-02-17T12:20:45.000Z | ------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- S Y S T E M . M E M O R Y _ C O P Y --
-- --
-- B o d y --
-- --
-- Copyright (C) 2006-2014, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- --
-- --
-- --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with Ada.Unchecked_Conversion;
with Interfaces.C; use Interfaces.C;
package body System.Memory_Copy is
type IA is mod System.Memory_Size;
-- The type used to provide the actual desired operations
function To_IA is new Ada.Unchecked_Conversion (Address, IA);
-- The operations are implemented by unchecked conversion to type IA,
-- followed by doing the intrinsic operation on the IA values, followed
-- by converting the result back to type Address.
type Byte is mod 2 ** 8;
for Byte'Size use 8;
-- Byte is the storage unit
type Byte_Ptr is access Byte;
-- Access to a byte
function To_Byte_Ptr is new Ada.Unchecked_Conversion (IA, Byte_Ptr);
-- Conversion between an integer address and access to byte
Byte_Size : constant := 1;
-- Number of storage unit in a byte
type Word is mod 2 ** System.Word_Size;
for Word'Size use System.Word_Size;
-- Word is efficiently loaded and stored by the processor, but has
-- alignment constraints.
type Word_Ptr is access Word;
-- Access to a word.
function To_Word_Ptr is new Ada.Unchecked_Conversion (IA, Word_Ptr);
-- Conversion from an integer adddress to word access
Word_Size : constant := Word'Size / Storage_Unit;
-- Number of storage unit per word
------------
-- memcpy --
------------
function memcpy
(Dest : Address; Src : Address; N : size_t) return Address
is
D : IA := To_IA (Dest);
S : IA := To_IA (Src);
C : size_t := N;
begin
-- Try to copy per word, if alignment constraints are respected
if ((D or S) and (Word'Alignment - 1)) = 0 then
while C >= Word_Size loop
To_Word_Ptr (D).all := To_Word_Ptr (S).all;
D := D + Word_Size;
S := S + Word_Size;
C := C - Word_Size;
end loop;
end if;
-- Copy the remaining byte per byte
while C > 0 loop
To_Byte_Ptr (D).all := To_Byte_Ptr (S).all;
D := D + Byte_Size;
S := S + Byte_Size;
C := C - Byte_Size;
end loop;
return Dest;
end memcpy;
end System.Memory_Copy;
| 41.972222 | 78 | 0.451577 |
c5a0b626df04e24e58372453c0dd44bca89dfd7d | 6,881 | ads | Ada | source/web/tools/wsdl2ada/wsdl-ast-operations.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 24 | 2016-11-29T06:59:41.000Z | 2021-08-30T11:55:16.000Z | source/web/tools/wsdl2ada/wsdl-ast-operations.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 2 | 2019-01-16T05:15:20.000Z | 2019-02-03T10:03:32.000Z | source/web/tools/wsdl2ada/wsdl-ast-operations.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 4 | 2017-07-18T07:11:05.000Z | 2020-06-21T03:02:25.000Z | ------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- Web Framework --
-- --
-- Tools Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2012-2013, Vadim Godunko <vgodunko@gmail.com> --
-- All rights reserved. --
-- --
-- Redistribution and use in source and binary forms, with or without --
-- modification, are permitted provided that the following conditions --
-- are met: --
-- --
-- * Redistributions of source code must retain the above copyright --
-- notice, this list of conditions and the following disclaimer. --
-- --
-- * Redistributions in binary form must reproduce the above copyright --
-- notice, this list of conditions and the following disclaimer in the --
-- documentation and/or other materials provided with the distribution. --
-- --
-- * Neither the name of the Vadim Godunko, IE nor the names of its --
-- contributors may be used to endorse or promote products derived from --
-- this software without specific prior written permission. --
-- --
-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS --
-- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT --
-- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR --
-- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT --
-- HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, --
-- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED --
-- TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR --
-- PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF --
-- LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING --
-- NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS --
-- SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. --
-- --
------------------------------------------------------------------------------
-- $Revision$ $Date$
------------------------------------------------------------------------------
with Ada.Containers.Vectors;
with League.String_Vectors;
with WSDL.MEPs;
package WSDL.AST.Operations is
pragma Preelaborate;
package Interface_Message_Vectors is
new Ada.Containers.Vectors
(Positive,
WSDL.AST.Interface_Message_Access,
WSDL.AST."=");
package Interface_Fault_Vectors is
new Ada.Containers.Vectors
(Positive,
WSDL.AST.Interface_Fault_Reference_Access,
WSDL.AST."=");
-------------------------
-- Interface Operation --
-------------------------
type Interface_Operation_Node is new Abstract_Node with record
Local_Name : League.Strings.Universal_String;
-- Local name part of the name of the operation.
Parent : WSDL.AST.Interface_Access;
-- Value of {parent} property.
Message_Exchange_Pattern : WSDL.MEPs.MEP_Access;
-- Value of {message exchange pattern} property.
Style :
League.String_Vectors.Universal_String_Vector;
-- Value of {style} property.
Interface_Message_References : Interface_Message_Vectors.Vector;
-- Value of {interface message references} property.
Interface_Fault_References : Interface_Fault_Vectors.Vector;
-- Value of {interface fault references} property.
end record;
overriding procedure Enter
(Self : not null access Interface_Operation_Node;
Visitor : in out WSDL.Visitors.WSDL_Visitor'Class;
Control : in out WSDL.Iterators.Traverse_Control);
overriding procedure Leave
(Self : not null access Interface_Operation_Node;
Visitor : in out WSDL.Visitors.WSDL_Visitor'Class;
Control : in out WSDL.Iterators.Traverse_Control);
overriding procedure Visit
(Self : not null access Interface_Operation_Node;
Iterator : in out WSDL.Iterators.WSDL_Iterator'Class;
Visitor : in out WSDL.Visitors.WSDL_Visitor'Class;
Control : in out WSDL.Iterators.Traverse_Control);
-----------------------
-- Binding Operation --
-----------------------
type SOAP_Binding_Operation_Extension is record
MEP : League.Strings.Universal_String;
-- Value of {soap mep} property.
Action : League.Strings.Universal_String;
-- Value of {soap action} property.
end record;
type Binding_Operation_Node is new Abstract_Node with record
Ref : Qualified_Name;
-- Name of the related interface operation.
Parent : WSDL.AST.Binding_Access;
-- Value of {parent} property.
Interface_Operation : WSDL.AST.Interface_Operation_Access;
-- Value of {interface operation} property.
SOAP : SOAP_Binding_Operation_Extension;
-- SOAP Binding extension information;
end record;
overriding procedure Enter
(Self : not null access Binding_Operation_Node;
Visitor : in out WSDL.Visitors.WSDL_Visitor'Class;
Control : in out WSDL.Iterators.Traverse_Control);
overriding procedure Leave
(Self : not null access Binding_Operation_Node;
Visitor : in out WSDL.Visitors.WSDL_Visitor'Class;
Control : in out WSDL.Iterators.Traverse_Control);
overriding procedure Visit
(Self : not null access Binding_Operation_Node;
Iterator : in out WSDL.Iterators.WSDL_Iterator'Class;
Visitor : in out WSDL.Visitors.WSDL_Visitor'Class;
Control : in out WSDL.Iterators.Traverse_Control);
end WSDL.AST.Operations;
| 45.873333 | 78 | 0.527249 |
4aefcda25bce064294d6db26797a32dc4d8e8c83 | 34,207 | adb | Ada | llvm-gcc-4.2-2.9/gcc/ada/s-taprop-hpux-dce.adb | vidkidz/crossbridge | ba0bf94aee0ce6cf7eb5be882382e52bc57ba396 | [
"MIT"
] | 1 | 2016-04-09T02:58:13.000Z | 2016-04-09T02:58:13.000Z | llvm-gcc-4.2-2.9/gcc/ada/s-taprop-hpux-dce.adb | vidkidz/crossbridge | ba0bf94aee0ce6cf7eb5be882382e52bc57ba396 | [
"MIT"
] | null | null | null | llvm-gcc-4.2-2.9/gcc/ada/s-taprop-hpux-dce.adb | vidkidz/crossbridge | ba0bf94aee0ce6cf7eb5be882382e52bc57ba396 | [
"MIT"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME LIBRARY (GNARL) COMPONENTS --
-- --
-- S Y S T E M . T A S K _ P R I M I T I V E S . O P E R A T I O N S --
-- --
-- B o d y --
-- --
-- Copyright (C) 1992-2006, Free Software Foundation, Inc. --
-- --
-- GNARL is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 2, or (at your option) any later ver- --
-- sion. GNARL is distributed in the hope that it will be useful, but WITH- --
-- OUT 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 GNARL; see file COPYING. If not, write --
-- to the Free Software Foundation, 51 Franklin Street, Fifth Floor, --
-- Boston, MA 02110-1301, 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. --
-- --
-- GNARL was developed by the GNARL team at Florida State University. --
-- Extensive contributions were provided by Ada Core Technologies, Inc. --
-- --
------------------------------------------------------------------------------
-- This is a HP-UX DCE threads (HPUX 10) version of this package
-- This package contains all the GNULL primitives that interface directly
-- with the underlying OS.
pragma Polling (Off);
-- Turn off polling, we do not want ATC polling to take place during
-- tasking operations. It causes infinite loops and other problems.
with System.Tasking.Debug;
-- used for Known_Tasks
with System.Interrupt_Management;
-- used for Keep_Unmasked
-- Abort_Task_Interrupt
-- Interrupt_ID
pragma Warnings (Off);
with System.Interrupt_Management.Operations;
-- used for Set_Interrupt_Mask
-- All_Tasks_Mask
pragma Elaborate_All (System.Interrupt_Management.Operations);
pragma Warnings (On);
with System.OS_Primitives;
-- used for Delay_Modes
with Interfaces.C;
-- used for int
-- size_t
with System.Task_Primitives.Interrupt_Operations;
-- used for Get_Interrupt_ID
with System.Soft_Links;
-- used for Defer/Undefer_Abort
-- We use System.Soft_Links instead of System.Tasking.Initialization
-- because the later is a higher level package that we shouldn't depend on.
-- For example when using the restricted run time, it is replaced by
-- System.Tasking.Restricted.Stages.
with Unchecked_Conversion;
with Unchecked_Deallocation;
package body System.Task_Primitives.Operations is
package SSL renames System.Soft_Links;
use System.Tasking.Debug;
use System.Tasking;
use Interfaces.C;
use System.OS_Interface;
use System.Parameters;
use System.OS_Primitives;
package PIO renames System.Task_Primitives.Interrupt_Operations;
----------------
-- Local Data --
----------------
-- The followings are logically constants, but need to be initialized
-- at run time.
Single_RTS_Lock : aliased RTS_Lock;
-- This is a lock to allow only one thread of control in the RTS at
-- a time; it is used to execute in mutual exclusion from all other tasks.
-- Used mainly in Single_Lock mode, but also to protect All_Tasks_List
ATCB_Key : aliased pthread_key_t;
-- Key used to find the Ada Task_Id associated with a thread
Environment_Task_Id : Task_Id;
-- A variable to hold Task_Id for the environment task
Unblocked_Signal_Mask : aliased sigset_t;
-- The set of signals that should unblocked in all tasks
Time_Slice_Val : Integer;
pragma Import (C, Time_Slice_Val, "__gl_time_slice_val");
Dispatching_Policy : Character;
pragma Import (C, Dispatching_Policy, "__gl_task_dispatching_policy");
-- Note: the reason that Locking_Policy is not needed is that this
-- is not implemented for DCE threads. The HPUX 10 port is at this
-- stage considered dead, and no further work is planned on it.
Foreign_Task_Elaborated : aliased Boolean := True;
-- Used to identified fake tasks (i.e., non-Ada Threads)
--------------------
-- Local Packages --
--------------------
package Specific is
procedure Initialize (Environment_Task : Task_Id);
pragma Inline (Initialize);
-- Initialize various data needed by this package
function Is_Valid_Task return Boolean;
pragma Inline (Is_Valid_Task);
-- Does the executing thread have a TCB?
procedure Set (Self_Id : Task_Id);
pragma Inline (Set);
-- Set the self id for the current task
function Self return Task_Id;
pragma Inline (Self);
-- Return a pointer to the Ada Task Control Block of the calling task
end Specific;
package body Specific is separate;
-- The body of this package is target specific
---------------------------------
-- Support for foreign threads --
---------------------------------
function Register_Foreign_Thread (Thread : Thread_Id) return Task_Id;
-- Allocate and Initialize a new ATCB for the current Thread
function Register_Foreign_Thread
(Thread : Thread_Id) return Task_Id is separate;
-----------------------
-- Local Subprograms --
-----------------------
procedure Abort_Handler (Sig : Signal);
function To_Address is new Unchecked_Conversion (Task_Id, System.Address);
-------------------
-- Abort_Handler --
-------------------
procedure Abort_Handler (Sig : Signal) is
pragma Unreferenced (Sig);
Self_Id : constant Task_Id := Self;
Result : Interfaces.C.int;
Old_Set : aliased sigset_t;
begin
if Self_Id.Deferral_Level = 0
and then Self_Id.Pending_ATC_Level < Self_Id.ATC_Nesting_Level and then
not Self_Id.Aborting
then
Self_Id.Aborting := True;
-- Make sure signals used for RTS internal purpose are unmasked
Result := pthread_sigmask (SIG_UNBLOCK,
Unblocked_Signal_Mask'Unchecked_Access, Old_Set'Unchecked_Access);
pragma Assert (Result = 0);
raise Standard'Abort_Signal;
end if;
end Abort_Handler;
-----------------
-- Stack_Guard --
-----------------
-- The underlying thread system sets a guard page at the
-- bottom of a thread stack, so nothing is needed.
-- ??? Check the comment above
procedure Stack_Guard (T : ST.Task_Id; On : Boolean) is
pragma Unreferenced (T, On);
begin
null;
end Stack_Guard;
-------------------
-- Get_Thread_Id --
-------------------
function Get_Thread_Id (T : ST.Task_Id) return OSI.Thread_Id is
begin
return T.Common.LL.Thread;
end Get_Thread_Id;
----------
-- Self --
----------
function Self return Task_Id renames Specific.Self;
---------------------
-- Initialize_Lock --
---------------------
-- Note: mutexes and cond_variables needed per-task basis are
-- initialized in Initialize_TCB and the Storage_Error is
-- handled. Other mutexes (such as RTS_Lock, Memory_Lock...)
-- used in RTS is initialized before any status change of RTS.
-- Therefore rasing Storage_Error in the following routines
-- should be able to be handled safely.
procedure Initialize_Lock
(Prio : System.Any_Priority;
L : access Lock)
is
Attributes : aliased pthread_mutexattr_t;
Result : Interfaces.C.int;
begin
Result := pthread_mutexattr_init (Attributes'Access);
pragma Assert (Result = 0 or else Result = ENOMEM);
if Result = ENOMEM then
raise Storage_Error;
end if;
L.Priority := Prio;
Result := pthread_mutex_init (L.L'Access, Attributes'Access);
pragma Assert (Result = 0 or else Result = ENOMEM);
if Result = ENOMEM then
raise Storage_Error;
end if;
Result := pthread_mutexattr_destroy (Attributes'Access);
pragma Assert (Result = 0);
end Initialize_Lock;
procedure Initialize_Lock (L : access RTS_Lock; Level : Lock_Level) is
pragma Unreferenced (Level);
Attributes : aliased pthread_mutexattr_t;
Result : Interfaces.C.int;
begin
Result := pthread_mutexattr_init (Attributes'Access);
pragma Assert (Result = 0 or else Result = ENOMEM);
if Result = ENOMEM then
raise Storage_Error;
end if;
Result := pthread_mutex_init (L, Attributes'Access);
pragma Assert (Result = 0 or else Result = ENOMEM);
if Result = ENOMEM then
raise Storage_Error;
end if;
Result := pthread_mutexattr_destroy (Attributes'Access);
pragma Assert (Result = 0);
end Initialize_Lock;
-------------------
-- Finalize_Lock --
-------------------
procedure Finalize_Lock (L : access Lock) is
Result : Interfaces.C.int;
begin
Result := pthread_mutex_destroy (L.L'Access);
pragma Assert (Result = 0);
end Finalize_Lock;
procedure Finalize_Lock (L : access RTS_Lock) is
Result : Interfaces.C.int;
begin
Result := pthread_mutex_destroy (L);
pragma Assert (Result = 0);
end Finalize_Lock;
----------------
-- Write_Lock --
----------------
procedure Write_Lock (L : access Lock; Ceiling_Violation : out Boolean) is
Result : Interfaces.C.int;
begin
L.Owner_Priority := Get_Priority (Self);
if L.Priority < L.Owner_Priority then
Ceiling_Violation := True;
return;
end if;
Result := pthread_mutex_lock (L.L'Access);
pragma Assert (Result = 0);
Ceiling_Violation := False;
end Write_Lock;
procedure Write_Lock
(L : access RTS_Lock; Global_Lock : Boolean := False)
is
Result : Interfaces.C.int;
begin
if not Single_Lock or else Global_Lock then
Result := pthread_mutex_lock (L);
pragma Assert (Result = 0);
end if;
end Write_Lock;
procedure Write_Lock (T : Task_Id) is
Result : Interfaces.C.int;
begin
if not Single_Lock then
Result := pthread_mutex_lock (T.Common.LL.L'Access);
pragma Assert (Result = 0);
end if;
end Write_Lock;
---------------
-- Read_Lock --
---------------
procedure Read_Lock (L : access Lock; Ceiling_Violation : out Boolean) is
begin
Write_Lock (L, Ceiling_Violation);
end Read_Lock;
------------
-- Unlock --
------------
procedure Unlock (L : access Lock) is
Result : Interfaces.C.int;
begin
Result := pthread_mutex_unlock (L.L'Access);
pragma Assert (Result = 0);
end Unlock;
procedure Unlock (L : access RTS_Lock; Global_Lock : Boolean := False) is
Result : Interfaces.C.int;
begin
if not Single_Lock or else Global_Lock then
Result := pthread_mutex_unlock (L);
pragma Assert (Result = 0);
end if;
end Unlock;
procedure Unlock (T : Task_Id) is
Result : Interfaces.C.int;
begin
if not Single_Lock then
Result := pthread_mutex_unlock (T.Common.LL.L'Access);
pragma Assert (Result = 0);
end if;
end Unlock;
-----------
-- Sleep --
-----------
procedure Sleep
(Self_ID : Task_Id;
Reason : System.Tasking.Task_States)
is
pragma Unreferenced (Reason);
Result : Interfaces.C.int;
begin
if Single_Lock then
Result := pthread_cond_wait
(Self_ID.Common.LL.CV'Access, Single_RTS_Lock'Access);
else
Result := pthread_cond_wait
(Self_ID.Common.LL.CV'Access, Self_ID.Common.LL.L'Access);
end if;
-- EINTR is not considered a failure
pragma Assert (Result = 0 or else Result = EINTR);
end Sleep;
-----------------
-- Timed_Sleep --
-----------------
procedure Timed_Sleep
(Self_ID : Task_Id;
Time : Duration;
Mode : ST.Delay_Modes;
Reason : System.Tasking.Task_States;
Timedout : out Boolean;
Yielded : out Boolean)
is
pragma Unreferenced (Reason);
Check_Time : constant Duration := Monotonic_Clock;
Abs_Time : Duration;
Request : aliased timespec;
Result : Interfaces.C.int;
begin
Timedout := True;
Yielded := False;
if Mode = Relative then
Abs_Time := Duration'Min (Time, Max_Sensible_Delay) + Check_Time;
else
Abs_Time := Duration'Min (Check_Time + Max_Sensible_Delay, Time);
end if;
if Abs_Time > Check_Time then
Request := To_Timespec (Abs_Time);
loop
exit when Self_ID.Pending_ATC_Level < Self_ID.ATC_Nesting_Level
or else Self_ID.Pending_Priority_Change;
if Single_Lock then
Result := pthread_cond_timedwait
(Self_ID.Common.LL.CV'Access, Single_RTS_Lock'Access,
Request'Access);
else
Result := pthread_cond_timedwait
(Self_ID.Common.LL.CV'Access, Self_ID.Common.LL.L'Access,
Request'Access);
end if;
exit when Abs_Time <= Monotonic_Clock;
if Result = 0 or Result = EINTR then
-- Somebody may have called Wakeup for us
Timedout := False;
exit;
end if;
pragma Assert (Result = ETIMEDOUT);
end loop;
end if;
end Timed_Sleep;
-----------------
-- Timed_Delay --
-----------------
procedure Timed_Delay
(Self_ID : Task_Id;
Time : Duration;
Mode : ST.Delay_Modes)
is
Check_Time : constant Duration := Monotonic_Clock;
Abs_Time : Duration;
Request : aliased timespec;
Result : Interfaces.C.int;
begin
if Single_Lock then
Lock_RTS;
end if;
Write_Lock (Self_ID);
if Mode = Relative then
Abs_Time := Time + Check_Time;
else
Abs_Time := Duration'Min (Check_Time + Max_Sensible_Delay, Time);
end if;
if Abs_Time > Check_Time then
Request := To_Timespec (Abs_Time);
Self_ID.Common.State := Delay_Sleep;
loop
if Self_ID.Pending_Priority_Change then
Self_ID.Pending_Priority_Change := False;
Self_ID.Common.Base_Priority := Self_ID.New_Base_Priority;
Set_Priority (Self_ID, Self_ID.Common.Base_Priority);
end if;
exit when Self_ID.Pending_ATC_Level < Self_ID.ATC_Nesting_Level;
if Single_Lock then
Result := pthread_cond_timedwait (Self_ID.Common.LL.CV'Access,
Single_RTS_Lock'Access, Request'Access);
else
Result := pthread_cond_timedwait (Self_ID.Common.LL.CV'Access,
Self_ID.Common.LL.L'Access, Request'Access);
end if;
exit when Abs_Time <= Monotonic_Clock;
pragma Assert (Result = 0 or else
Result = ETIMEDOUT or else
Result = EINTR);
end loop;
Self_ID.Common.State := Runnable;
end if;
Unlock (Self_ID);
if Single_Lock then
Unlock_RTS;
end if;
Result := sched_yield;
end Timed_Delay;
---------------------
-- Monotonic_Clock --
---------------------
function Monotonic_Clock return Duration is
TS : aliased timespec;
Result : Interfaces.C.int;
begin
Result := Clock_Gettime (CLOCK_REALTIME, TS'Unchecked_Access);
pragma Assert (Result = 0);
return To_Duration (TS);
end Monotonic_Clock;
-------------------
-- RT_Resolution --
-------------------
function RT_Resolution return Duration is
begin
return 10#1.0#E-6;
end RT_Resolution;
------------
-- Wakeup --
------------
procedure Wakeup (T : Task_Id; Reason : System.Tasking.Task_States) is
pragma Unreferenced (Reason);
Result : Interfaces.C.int;
begin
Result := pthread_cond_signal (T.Common.LL.CV'Access);
pragma Assert (Result = 0);
end Wakeup;
-----------
-- Yield --
-----------
procedure Yield (Do_Yield : Boolean := True) is
Result : Interfaces.C.int;
pragma Unreferenced (Result);
begin
if Do_Yield then
Result := sched_yield;
end if;
end Yield;
------------------
-- Set_Priority --
------------------
type Prio_Array_Type is array (System.Any_Priority) of Integer;
pragma Atomic_Components (Prio_Array_Type);
Prio_Array : Prio_Array_Type;
-- Global array containing the id of the currently running task for
-- each priority.
--
-- Note: we assume that we are on a single processor with run-til-blocked
-- scheduling.
procedure Set_Priority
(T : Task_Id;
Prio : System.Any_Priority;
Loss_Of_Inheritance : Boolean := False)
is
Result : Interfaces.C.int;
Array_Item : Integer;
Param : aliased struct_sched_param;
begin
Param.sched_priority := Interfaces.C.int (Underlying_Priorities (Prio));
if Time_Slice_Val > 0 then
Result := pthread_setschedparam
(T.Common.LL.Thread, SCHED_RR, Param'Access);
elsif Dispatching_Policy = 'F' or else Time_Slice_Val = 0 then
Result := pthread_setschedparam
(T.Common.LL.Thread, SCHED_FIFO, Param'Access);
else
Result := pthread_setschedparam
(T.Common.LL.Thread, SCHED_OTHER, Param'Access);
end if;
pragma Assert (Result = 0);
if Dispatching_Policy = 'F' then
-- Annex D requirement [RM D.2.2 par. 9]:
-- If the task drops its priority due to the loss of inherited
-- priority, it is added at the head of the ready queue for its
-- new active priority.
if Loss_Of_Inheritance
and then Prio < T.Common.Current_Priority
then
Array_Item := Prio_Array (T.Common.Base_Priority) + 1;
Prio_Array (T.Common.Base_Priority) := Array_Item;
loop
-- Let some processes a chance to arrive
Yield;
-- Then wait for our turn to proceed
exit when Array_Item = Prio_Array (T.Common.Base_Priority)
or else Prio_Array (T.Common.Base_Priority) = 1;
end loop;
Prio_Array (T.Common.Base_Priority) :=
Prio_Array (T.Common.Base_Priority) - 1;
end if;
end if;
T.Common.Current_Priority := Prio;
end Set_Priority;
------------------
-- Get_Priority --
------------------
function Get_Priority (T : Task_Id) return System.Any_Priority is
begin
return T.Common.Current_Priority;
end Get_Priority;
----------------
-- Enter_Task --
----------------
procedure Enter_Task (Self_ID : Task_Id) is
begin
Self_ID.Common.LL.Thread := pthread_self;
Specific.Set (Self_ID);
Lock_RTS;
for J in Known_Tasks'Range loop
if Known_Tasks (J) = null then
Known_Tasks (J) := Self_ID;
Self_ID.Known_Tasks_Index := J;
exit;
end if;
end loop;
Unlock_RTS;
end Enter_Task;
--------------
-- New_ATCB --
--------------
function New_ATCB (Entry_Num : Task_Entry_Index) return Task_Id is
begin
return new Ada_Task_Control_Block (Entry_Num);
end New_ATCB;
-------------------
-- Is_Valid_Task --
-------------------
function Is_Valid_Task return Boolean renames Specific.Is_Valid_Task;
-----------------------------
-- Register_Foreign_Thread --
-----------------------------
function Register_Foreign_Thread return Task_Id is
begin
if Is_Valid_Task then
return Self;
else
return Register_Foreign_Thread (pthread_self);
end if;
end Register_Foreign_Thread;
--------------------
-- Initialize_TCB --
--------------------
procedure Initialize_TCB (Self_ID : Task_Id; Succeeded : out Boolean) is
Mutex_Attr : aliased pthread_mutexattr_t;
Result : Interfaces.C.int;
Cond_Attr : aliased pthread_condattr_t;
begin
if not Single_Lock then
Result := pthread_mutexattr_init (Mutex_Attr'Access);
pragma Assert (Result = 0 or else Result = ENOMEM);
if Result = 0 then
Result := pthread_mutex_init (Self_ID.Common.LL.L'Access,
Mutex_Attr'Access);
pragma Assert (Result = 0 or else Result = ENOMEM);
end if;
if Result /= 0 then
Succeeded := False;
return;
end if;
Result := pthread_mutexattr_destroy (Mutex_Attr'Access);
pragma Assert (Result = 0);
end if;
Result := pthread_condattr_init (Cond_Attr'Access);
pragma Assert (Result = 0 or else Result = ENOMEM);
if Result = 0 then
Result := pthread_cond_init (Self_ID.Common.LL.CV'Access,
Cond_Attr'Access);
pragma Assert (Result = 0 or else Result = ENOMEM);
end if;
if Result = 0 then
Succeeded := True;
else
if not Single_Lock then
Result := pthread_mutex_destroy (Self_ID.Common.LL.L'Access);
pragma Assert (Result = 0);
end if;
Succeeded := False;
end if;
Result := pthread_condattr_destroy (Cond_Attr'Access);
pragma Assert (Result = 0);
end Initialize_TCB;
-----------------
-- Create_Task --
-----------------
procedure Create_Task
(T : Task_Id;
Wrapper : System.Address;
Stack_Size : System.Parameters.Size_Type;
Priority : System.Any_Priority;
Succeeded : out Boolean)
is
Attributes : aliased pthread_attr_t;
Result : Interfaces.C.int;
function Thread_Body_Access is new
Unchecked_Conversion (System.Address, Thread_Body);
begin
Result := pthread_attr_init (Attributes'Access);
pragma Assert (Result = 0 or else Result = ENOMEM);
if Result /= 0 then
Succeeded := False;
return;
end if;
Result := pthread_attr_setstacksize
(Attributes'Access, Interfaces.C.size_t (Stack_Size));
pragma Assert (Result = 0);
-- Since the initial signal mask of a thread is inherited from the
-- creator, and the Environment task has all its signals masked, we
-- do not need to manipulate caller's signal mask at this point.
-- All tasks in RTS will have All_Tasks_Mask initially.
Result := pthread_create
(T.Common.LL.Thread'Access,
Attributes'Access,
Thread_Body_Access (Wrapper),
To_Address (T));
pragma Assert (Result = 0 or else Result = EAGAIN);
Succeeded := Result = 0;
pthread_detach (T.Common.LL.Thread'Access);
-- Detach the thread using pthread_detach, sinc DCE threads do not have
-- pthread_attr_set_detachstate.
Result := pthread_attr_destroy (Attributes'Access);
pragma Assert (Result = 0);
Set_Priority (T, Priority);
end Create_Task;
------------------
-- Finalize_TCB --
------------------
procedure Finalize_TCB (T : Task_Id) is
Result : Interfaces.C.int;
Tmp : Task_Id := T;
Is_Self : constant Boolean := T = Self;
procedure Free is new
Unchecked_Deallocation (Ada_Task_Control_Block, Task_Id);
begin
if not Single_Lock then
Result := pthread_mutex_destroy (T.Common.LL.L'Access);
pragma Assert (Result = 0);
end if;
Result := pthread_cond_destroy (T.Common.LL.CV'Access);
pragma Assert (Result = 0);
if T.Known_Tasks_Index /= -1 then
Known_Tasks (T.Known_Tasks_Index) := null;
end if;
Free (Tmp);
if Is_Self then
Specific.Set (null);
end if;
end Finalize_TCB;
---------------
-- Exit_Task --
---------------
procedure Exit_Task is
begin
Specific.Set (null);
end Exit_Task;
----------------
-- Abort_Task --
----------------
procedure Abort_Task (T : Task_Id) is
begin
--
-- Interrupt Server_Tasks may be waiting on an "event" flag (signal)
--
if T.Common.State = Interrupt_Server_Blocked_On_Event_Flag then
System.Interrupt_Management.Operations.Interrupt_Self_Process
(System.Interrupt_Management.Interrupt_ID
(PIO.Get_Interrupt_ID (T)));
end if;
end Abort_Task;
----------------
-- Initialize --
----------------
procedure Initialize (S : in out Suspension_Object) is
Mutex_Attr : aliased pthread_mutexattr_t;
Cond_Attr : aliased pthread_condattr_t;
Result : Interfaces.C.int;
begin
-- Initialize internal state. It is always initialized to False (ARM
-- D.10 par. 6).
S.State := False;
S.Waiting := False;
-- Initialize internal mutex
Result := pthread_mutex_init (S.L'Access, Mutex_Attr'Access);
pragma Assert (Result = 0 or else Result = ENOMEM);
if Result = ENOMEM then
raise Storage_Error;
end if;
-- Initialize internal condition variable
Result := pthread_cond_init (S.CV'Access, Cond_Attr'Access);
pragma Assert (Result = 0 or else Result = ENOMEM);
if Result /= 0 then
Result := pthread_mutex_destroy (S.L'Access);
pragma Assert (Result = 0);
if Result = ENOMEM then
raise Storage_Error;
end if;
end if;
end Initialize;
--------------
-- Finalize --
--------------
procedure Finalize (S : in out Suspension_Object) is
Result : Interfaces.C.int;
begin
-- Destroy internal mutex
Result := pthread_mutex_destroy (S.L'Access);
pragma Assert (Result = 0);
-- Destroy internal condition variable
Result := pthread_cond_destroy (S.CV'Access);
pragma Assert (Result = 0);
end Finalize;
-------------------
-- Current_State --
-------------------
function Current_State (S : Suspension_Object) return Boolean is
begin
-- We do not want to use lock on this read operation. State is marked
-- as Atomic so that we ensure that the value retrieved is correct.
return S.State;
end Current_State;
---------------
-- Set_False --
---------------
procedure Set_False (S : in out Suspension_Object) is
Result : Interfaces.C.int;
begin
SSL.Abort_Defer.all;
Result := pthread_mutex_lock (S.L'Access);
pragma Assert (Result = 0);
S.State := False;
Result := pthread_mutex_unlock (S.L'Access);
pragma Assert (Result = 0);
SSL.Abort_Undefer.all;
end Set_False;
--------------
-- Set_True --
--------------
procedure Set_True (S : in out Suspension_Object) is
Result : Interfaces.C.int;
begin
SSL.Abort_Defer.all;
Result := pthread_mutex_lock (S.L'Access);
pragma Assert (Result = 0);
-- If there is already a task waiting on this suspension object then
-- we resume it, leaving the state of the suspension object to False,
-- as it is specified in ARM D.10 par. 9. Otherwise, it just leaves
-- the state to True.
if S.Waiting then
S.Waiting := False;
S.State := False;
Result := pthread_cond_signal (S.CV'Access);
pragma Assert (Result = 0);
else
S.State := True;
end if;
Result := pthread_mutex_unlock (S.L'Access);
pragma Assert (Result = 0);
SSL.Abort_Undefer.all;
end Set_True;
------------------------
-- Suspend_Until_True --
------------------------
procedure Suspend_Until_True (S : in out Suspension_Object) is
Result : Interfaces.C.int;
begin
SSL.Abort_Defer.all;
Result := pthread_mutex_lock (S.L'Access);
pragma Assert (Result = 0);
if S.Waiting then
-- Program_Error must be raised upon calling Suspend_Until_True
-- if another task is already waiting on that suspension object
-- (ARM D.10 par. 10).
Result := pthread_mutex_unlock (S.L'Access);
pragma Assert (Result = 0);
SSL.Abort_Undefer.all;
raise Program_Error;
else
-- Suspend the task if the state is False. Otherwise, the task
-- continues its execution, and the state of the suspension object
-- is set to False (ARM D.10 par. 9).
if S.State then
S.State := False;
else
S.Waiting := True;
Result := pthread_cond_wait (S.CV'Access, S.L'Access);
end if;
Result := pthread_mutex_unlock (S.L'Access);
pragma Assert (Result = 0);
SSL.Abort_Undefer.all;
end if;
end Suspend_Until_True;
----------------
-- Check_Exit --
----------------
-- Dummy version
function Check_Exit (Self_ID : ST.Task_Id) return Boolean is
pragma Unreferenced (Self_ID);
begin
return True;
end Check_Exit;
--------------------
-- Check_No_Locks --
--------------------
function Check_No_Locks (Self_ID : ST.Task_Id) return Boolean is
pragma Unreferenced (Self_ID);
begin
return True;
end Check_No_Locks;
----------------------
-- Environment_Task --
----------------------
function Environment_Task return Task_Id is
begin
return Environment_Task_Id;
end Environment_Task;
--------------
-- Lock_RTS --
--------------
procedure Lock_RTS is
begin
Write_Lock (Single_RTS_Lock'Access, Global_Lock => True);
end Lock_RTS;
----------------
-- Unlock_RTS --
----------------
procedure Unlock_RTS is
begin
Unlock (Single_RTS_Lock'Access, Global_Lock => True);
end Unlock_RTS;
------------------
-- Suspend_Task --
------------------
function Suspend_Task
(T : ST.Task_Id;
Thread_Self : Thread_Id) return Boolean
is
pragma Unreferenced (T);
pragma Unreferenced (Thread_Self);
begin
return False;
end Suspend_Task;
-----------------
-- Resume_Task --
-----------------
function Resume_Task
(T : ST.Task_Id;
Thread_Self : Thread_Id) return Boolean
is
pragma Unreferenced (T);
pragma Unreferenced (Thread_Self);
begin
return False;
end Resume_Task;
----------------
-- Initialize --
----------------
procedure Initialize (Environment_Task : Task_Id) is
act : aliased struct_sigaction;
old_act : aliased struct_sigaction;
Tmp_Set : aliased sigset_t;
Result : Interfaces.C.int;
function State
(Int : System.Interrupt_Management.Interrupt_ID) return Character;
pragma Import (C, State, "__gnat_get_interrupt_state");
-- Get interrupt state. Defined in a-init.c. The input argument is
-- the interrupt number, and the result is one of the following:
Default : constant Character := 's';
-- 'n' this interrupt not set by any Interrupt_State pragma
-- 'u' Interrupt_State pragma set state to User
-- 'r' Interrupt_State pragma set state to Runtime
-- 's' Interrupt_State pragma set state to System (use "default"
-- system handler)
begin
Environment_Task_Id := Environment_Task;
Interrupt_Management.Initialize;
-- Initialize the lock used to synchronize chain of all ATCBs
Initialize_Lock (Single_RTS_Lock'Access, RTS_Lock_Level);
Specific.Initialize (Environment_Task);
Enter_Task (Environment_Task);
-- Install the abort-signal handler
if State (System.Interrupt_Management.Abort_Task_Interrupt)
/= Default
then
act.sa_flags := 0;
act.sa_handler := Abort_Handler'Address;
Result := sigemptyset (Tmp_Set'Access);
pragma Assert (Result = 0);
act.sa_mask := Tmp_Set;
Result :=
sigaction (
Signal (System.Interrupt_Management.Abort_Task_Interrupt),
act'Unchecked_Access,
old_act'Unchecked_Access);
pragma Assert (Result = 0);
end if;
end Initialize;
-- NOTE: Unlike other pthread implementations, we do *not* mask all
-- signals here since we handle signals using the process-wide primitive
-- signal, rather than using sigthreadmask and sigwait. The reason of
-- this difference is that sigwait doesn't work when some critical
-- signals (SIGABRT, SIGPIPE) are masked.
end System.Task_Primitives.Operations;
| 28.649079 | 79 | 0.581723 |
d0016706b8f760a0b2643e05bc54af5ca70b3883 | 1,064 | adb | Ada | Exemplos ADA/BuscaBinaria/BuscaBinaria.adb | wildeee/safADA | 6aebd2e9e8d3ba50063cd154317d446399d8f04a | [
"MIT"
] | null | null | null | Exemplos ADA/BuscaBinaria/BuscaBinaria.adb | wildeee/safADA | 6aebd2e9e8d3ba50063cd154317d446399d8f04a | [
"MIT"
] | null | null | null | Exemplos ADA/BuscaBinaria/BuscaBinaria.adb | wildeee/safADA | 6aebd2e9e8d3ba50063cd154317d446399d8f04a | [
"MIT"
] | null | null | null | With Ada.Text_IO; Use Ada.Text_IO;
Procedure BuscaBinaria is
numeros: array(1..15) of Integer;
target : Integer;
L : Integer;
R : Integer;
mid : Integer;
found: Integer;
-- Leitura String
function Get_String return String is
Line : String (1 .. 1_000);
Last : Natural;
begin
Get_Line (Line, Last);
return Line (1 .. Last);
end Get_String;
-- Leitura Integer
function Get_Integer return Integer is
S : constant String := Get_String;
begin
return Integer'Value (S);
end Get_Integer;
-- Lê 15 elementos do array
procedure Faz_Leitura is
begin
for I in Integer range 1 .. 15 loop
numeros(I) := Get_Integer;
end loop;
end Faz_Leitura;
function binSearch return Integer is
begin
mid := (L + R) / 2;
if numeros(mid) < target then
L := mid + 1;
return binSearch;
end if;
if numeros(mid) > target then
R := mid - 1;
return binSearch;
end if;
return mid;
end binSearch;
begin
Faz_Leitura;
target := Get_Integer;
L := 1;
R := 15;
found := binSearch;
Put_Line(Integer'Image(found));
end BuscaBinaria; | 19 | 39 | 0.675752 |
cbb09343f0a272ee97c4e954c495bc6e9a875cbf | 3,150 | ads | Ada | tools/scitools/conf/understand/ada/ada95/s-pooglo.ads | brucegua/moocos | 575c161cfa35e220f10d042e2e5ca18773691695 | [
"Apache-2.0"
] | 1 | 2020-01-20T21:26:46.000Z | 2020-01-20T21:26:46.000Z | tools/scitools/conf/understand/ada/ada95/s-pooglo.ads | brucegua/moocos | 575c161cfa35e220f10d042e2e5ca18773691695 | [
"Apache-2.0"
] | null | null | null | tools/scitools/conf/understand/ada/ada95/s-pooglo.ads | brucegua/moocos | 575c161cfa35e220f10d042e2e5ca18773691695 | [
"Apache-2.0"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- S Y S T E M . P O O L _ G L O B A L --
-- --
-- S p e c --
-- --
-- $Revision: 2 $ --
-- --
-- Copyright (c) 1992,1993,1994 NYU, All Rights Reserved --
-- --
-- The GNAT library is free software; you can redistribute it and/or modify --
-- it under terms of the GNU Library General Public License as published by --
-- the Free Software Foundation; either version 2, or (at your option) any --
-- later version. The GNAT library 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 --
-- Library General Public License for more details. You should have --
-- received a copy of the GNU Library General Public License along with --
-- the GNAT library; see the file COPYING.LIB. If not, write to the Free --
-- Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. --
-- --
------------------------------------------------------------------------------
with System;
with System.Storage_Pools;
with System.Storage_Elements;
package System.Pool_Global is
pragma Elaborate_Body;
-- Needed to ensure that library routines can execute allocators
-- Allocation strategy:
-- Call to malloc/free for each Allocate/Deallocate
-- no user specifiable size
-- no automatic reclaim
-- minimal overhead
-- Default pool in the compiler for access types globally declared
type Unbounded_No_Reclaim_Pool is new
System.Storage_Pools.Root_Storage_Pool with null record;
function Storage_Size
(Pool : Unbounded_No_Reclaim_Pool)
return System.Storage_Elements.Storage_Count;
procedure Allocate
(Pool : in out Unbounded_No_Reclaim_Pool;
Address : out System.Address;
Storage_Size : System.Storage_Elements.Storage_Count;
Alignment : System.Storage_Elements.Storage_Count);
procedure Deallocate
(Pool : in out Unbounded_No_Reclaim_Pool;
Address : System.Address;
Storage_Size : System.Storage_Elements.Storage_Count;
Alignment : System.Storage_Elements.Storage_Count);
-- Pool object for the compiler
Global_Pool_Object : Unbounded_No_Reclaim_Pool;
end System.Pool_Global;
| 46.323529 | 78 | 0.49873 |
c5c8d53afb41322a05cee5ab4be33d8f4713a2be | 495 | adb | Ada | tests/nonsmoke/functional/CompileTests/experimental_ada_tests/dot_asis_tests/test_units/task_with_abort.adb | passlab/rexompiler | 5494df3766ab606e230c5f1785b438a019c9e353 | [
"BSD-3-Clause"
] | null | null | null | tests/nonsmoke/functional/CompileTests/experimental_ada_tests/dot_asis_tests/test_units/task_with_abort.adb | passlab/rexompiler | 5494df3766ab606e230c5f1785b438a019c9e353 | [
"BSD-3-Clause"
] | 65 | 2020-10-16T17:58:15.000Z | 2022-03-23T17:59:44.000Z | tests/nonsmoke/functional/CompileTests/experimental_ada_tests/dot_asis_tests/test_units/task_with_abort.adb | passlab/rexompiler | 5494df3766ab606e230c5f1785b438a019c9e353 | [
"BSD-3-Clause"
] | null | null | null | -- Note: This test does not yet work due to problems with
-- declaring tasks. We can't abort without a task
--with Ada.Text_IO;
procedure Task_With_Abort is
task AbortMe is
entry Go;
end AbortMe;
task body AbortMe is
begin
accept Go;
loop
delay 1.0;
--Ada.Text_IO.Put_Line("I'm not dead yet!");
end loop;
end AbortMe;
begin
AbortMe.Go;
delay 10.0;
abort AbortMe;
--Ada.Text_IO.Put_Line("Aborted AbortMe");
delay 2.0;
end Task_With_Abort;
| 17.678571 | 57 | 0.664646 |
4a67445c3aa299e35b4bac92a22bee4e20742f64 | 3,721 | adb | Ada | src/keystore-logs.adb | thierr26/ada-keystore | 25099a9df3ce9b48a401148eb1b84442011759a0 | [
"Apache-2.0"
] | null | null | null | src/keystore-logs.adb | thierr26/ada-keystore | 25099a9df3ce9b48a401148eb1b84442011759a0 | [
"Apache-2.0"
] | null | null | null | src/keystore-logs.adb | thierr26/ada-keystore | 25099a9df3ce9b48a401148eb1b84442011759a0 | [
"Apache-2.0"
] | null | null | null | -----------------------------------------------------------------------
-- keystore-logs -- Log support for the keystore
-- Copyright (C) 2019 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with Util.Encoders.Base16;
with Keystore.Buffers;
package body Keystore.Logs is
procedure Dump (Log : in Util.Log.Loggers.Logger;
Content : in Ada.Streams.Stream_Element_Array) is
use type Ada.Streams.Stream_Element_Offset;
begin
if Log.Get_Level >= Util.Log.DEBUG_LEVEL then
declare
Encoder : Util.Encoders.Base16.Encoder;
Start : Ada.Streams.Stream_Element_Offset := Content'First;
Last : Ada.Streams.Stream_Element_Offset;
begin
while Start <= Content'Last loop
Last := Start + 31;
if Last > Content'Last then
Last := Content'Last;
end if;
Log.Debug (" {0}", Encoder.Transform (Content (Start .. Last)));
Start := Last + 1;
end loop;
end;
end if;
end Dump;
procedure Error (Log : in Util.Log.Loggers.Logger;
Message : in String;
Block : in IO.Storage_Block) is
begin
if Log.Get_Level >= Util.Log.ERROR_LEVEL then
Log.Error (Message, Buffers.To_String (Block));
end if;
end Error;
procedure Warn (Log : in Util.Log.Loggers.Logger;
Message : in String;
Block : in IO.Storage_Block) is
begin
if Log.Get_Level >= Util.Log.WARN_LEVEL then
Log.Warn (Message, Buffers.To_String (Block));
end if;
end Warn;
procedure Info (Log : in Util.Log.Loggers.Logger;
Message : in String;
Block : in IO.Storage_Block) is
begin
if Log.Get_Level >= Util.Log.INFO_LEVEL then
Log.Info (Message, Buffers.To_String (Block));
end if;
end Info;
procedure Debug (Log : in Util.Log.Loggers.Logger;
Message : in String;
Block : in IO.Storage_Block) is
begin
if Log.Get_Level >= Util.Log.DEBUG_LEVEL then
Log.Debug (Message, Buffers.To_String (Block));
end if;
end Debug;
procedure Debug (Log : in Util.Log.Loggers.Logger;
Message : in String;
Block1 : in IO.Storage_Block;
Block2 : in IO.Storage_Block) is
begin
if Log.Get_Level >= Util.Log.DEBUG_LEVEL then
Log.Debug (Message, Buffers.To_String (Block1), Buffers.To_String (Block2));
end if;
end Debug;
procedure Debug (Log : in Util.Log.Loggers.Logger;
Message : in String;
Block : in IO.Storage_Block;
Size : in IO.Block_Index) is
begin
if Log.Get_Level >= Util.Log.DEBUG_LEVEL then
Log.Debug (Message, Buffers.To_String (Block), IO.Block_Index'Image (Size));
end if;
end Debug;
end Keystore.Logs;
| 36.841584 | 85 | 0.572158 |
d023eca70b6a9b50d468e2c1c68c575a55c4440b | 776 | adb | Ada | example_2.1/src/bivectors.adb | rogermc2/GA_Ada | 0b55eb5691ac1c543c79c9a06ffdbe2e47e8f1be | [
"ISC"
] | 3 | 2019-04-12T01:09:55.000Z | 2021-02-24T18:17:32.000Z | example_2.1/src/bivectors.adb | rogermc2/GA_Ada | 0b55eb5691ac1c543c79c9a06ffdbe2e47e8f1be | [
"ISC"
] | 1 | 2020-08-12T10:10:25.000Z | 2020-08-12T10:10:25.000Z | example_2.1/src/bivectors.adb | rogermc2/GA_Ada | 0b55eb5691ac1c543c79c9a06ffdbe2e47e8f1be | [
"ISC"
] | 1 | 2019-04-12T01:14:15.000Z | 2019-04-12T01:14:15.000Z | -- Program Bivectors
-- Author Roger Mc Murtrie
-- Created 16 May 2017
with Ada.Exceptions; use Ada.Exceptions;
with Ada.Text_IO; use Ada.Text_IO;
with Glfw;
with Glfw.Windows;
with Initialize;
with Main_Loop;
procedure Bivectors is
Main_Window : Glfw.Windows.Window;
Window_Title : String := "GA for Computer Scientists Draw Bivectors Example 2.1";
begin
Glfw.Init;
Initialize (Main_Window, Window_Title);
Main_Loop (Main_Window);
Glfw.Shutdown;
exception
when anError : Constraint_Error =>
Put ("Bivectors returned constraint error: ");
Put_Line (Exception_Information (anError));
when anError : others =>
Put_Line ("An exception occurred in Bivectors.");
Put_Line (Exception_Information (anError));
end Bivectors;
| 23.515152 | 84 | 0.722938 |
c563828518e468debdd4494399e3e7a1a8403a7d | 6,332 | ads | Ada | unit_tests/pixel_format_test_cases.ads | Fabien-Chouteau/sdlada | f08d72e3f5dcec228d68fb5b6681ea831f81ef47 | [
"Zlib"
] | 89 | 2015-01-03T01:41:23.000Z | 2022-02-23T18:21:11.000Z | unit_tests/pixel_format_test_cases.ads | Fabien-Chouteau/sdlada | f08d72e3f5dcec228d68fb5b6681ea831f81ef47 | [
"Zlib"
] | 66 | 2015-05-01T00:54:03.000Z | 2022-01-20T04:09:59.000Z | unit_tests/pixel_format_test_cases.ads | Fabien-Chouteau/sdlada | f08d72e3f5dcec228d68fb5b6681ea831f81ef47 | [
"Zlib"
] | 33 | 2015-04-30T23:39:31.000Z | 2022-01-03T13:00:41.000Z | --------------------------------------------------------------------------------------------------------------------
-- Copyright (c) 2013-2020, Luke A. Guest
--
-- This software is provided 'as-is', without any express or implied
-- warranty. In no event will the authors be held liable for any damages
-- arising from the use of this software.
--
-- Permission is granted to anyone to use this software for any purpose,
-- including commercial applications, and to alter it and redistribute it
-- freely, subject to the following restrictions:
--
-- 1. The origin of this software must not be misrepresented; you must not
-- claim that you wrote the original software. If you use this software
-- in a product, an acknowledgment in the product documentation would be
-- appreciated but is not required.
--
-- 2. Altered source versions must be plainly marked as such, and must not be
-- misrepresented as being the original software.
--
-- 3. This notice may not be removed or altered from any source
-- distribution.
--------------------------------------------------------------------------------------------------------------------
-- Pixel_Format_Test_Cases
--
-- Tests to check whether the memory layout of the pixel formats is correct.
--------------------------------------------------------------------------------------------------------------------
with Interfaces.C;
with AUnit; use AUnit;
with AUnit.Simple_Test_Cases;
package Pixel_Format_Test_Cases is
type Pixel_Format_Test_Case is new AUnit.Simple_Test_Cases.Test_Case with null record;
overriding
function Name (Test : Pixel_Format_Test_Case) return Message_String;
overriding
procedure Run_Test (Test : in out Pixel_Format_Test_Case);
private
package C renames Interfaces.C;
C_Unknown : constant C.int with
Import => True,
Convention => C,
External_Name => "c_unknown";
C_Index_1_LSB : constant C.int with
Import => True,
Convention => C,
External_Name => "c_index1lsb";
C_Index_1_MSB : constant C.int with
Import => True,
Convention => C,
External_Name => "c_index1msb";
C_Index_4_LSB : constant C.int with
Import => True,
Convention => C,
External_Name => "c_index4lsb";
C_Index_4_MSB : constant C.int with
Import => True,
Convention => C,
External_Name => "c_index4msb";
C_Index_8 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_index8";
C_RGB_332 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_rgb332";
C_RGB_444 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_rgb444";
C_RGB_555 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_rgb555";
C_BGR_555 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_bgr555";
C_ARGB_4444 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_argb4444";
C_RGBA_4444 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_rgba4444";
C_ABGR_4444 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_abgr4444";
C_BGRA_4444 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_bgra4444";
C_ARGB_1555 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_argb1555";
C_RGBA_5551 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_rgba5551";
C_ABGR_1555 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_abgr1555";
C_BGRA_5551 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_bgra5551";
C_RGB_565 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_rgb565";
C_BGR_565 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_bgr565";
C_RGB_24 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_rgb24";
C_BGR_24 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_bgr24";
C_RGB_888 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_rgb888";
C_RGBX_8888 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_rgbx8888";
C_BGR_888 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_bgr888";
C_BGRX_8888 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_bgrx8888";
C_ARGB_8888 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_argb8888";
C_RGBA_8888 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_rgba8888";
C_ABGR_8888 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_abgr8888";
C_BGRA_8888 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_bgra8888";
C_ARGB_2101010 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_argb2101010";
C_YV_12 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_yv12";
C_IYUV : constant C.int with
Import => True,
Convention => C,
External_Name => "c_iyuv";
C_YUY_2 : constant C.int with
Import => True,
Convention => C,
External_Name => "c_yuy2";
C_UYVY : constant C.int with
Import => True,
Convention => C,
External_Name => "c_uyvy";
C_YVYU : constant C.int with
Import => True,
Convention => C,
External_Name => "c_yvyu";
end Pixel_Format_Test_Cases;
| 28.522523 | 116 | 0.567593 |
dc53046eab7f6cb9c389323a933b3326c01dd9e0 | 1,212 | ads | Ada | gcc-gcc-7_3_0-release/gcc/ada/a-iwteio.ads | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 7 | 2020-05-02T17:34:05.000Z | 2021-10-17T10:15:18.000Z | gcc-gcc-7_3_0-release/gcc/ada/a-iwteio.ads | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | null | null | null | gcc-gcc-7_3_0-release/gcc/ada/a-iwteio.ads | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 2 | 2020-07-27T00:22:36.000Z | 2021-04-01T09:41:02.000Z | ------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- A D A . I N T E G E R _ W I D E _ T E X T _ I O --
-- --
-- S p e c --
-- --
-- This specification is derived from the Ada Reference Manual for use with --
-- GNAT. In accordance with the copyright of that document, you can freely --
-- copy and modify this specification, provided that if you redistribute a --
-- modified version, any changes that you have made are clearly indicated. --
-- --
------------------------------------------------------------------------------
with Ada.Wide_Text_IO;
package Ada.Integer_Wide_Text_IO is
new Ada.Wide_Text_IO.Integer_IO (Integer);
| 60.6 | 78 | 0.306931 |
c5c2087a62f6d702cb0c92301ed1a7d2ab60bcc3 | 78 | ads | Ada | gcc-gcc-7_3_0-release/gcc/testsuite/gnat.dg/array15.ads | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 7 | 2020-05-02T17:34:05.000Z | 2021-10-17T10:15:18.000Z | gcc-gcc-7_3_0-release/gcc/testsuite/gnat.dg/array15.ads | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | null | null | null | gcc-gcc-7_3_0-release/gcc/testsuite/gnat.dg/array15.ads | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 2 | 2020-07-27T00:22:36.000Z | 2021-04-01T09:41:02.000Z | package Array15 is
function F (I : Integer) return Integer;
end Array15;
| 13 | 43 | 0.717949 |
dc50a2affc0ae815d18c9b8a95230414e4bdec7e | 4,003 | adb | Ada | examples/shared/serial_ports/src/serial_io.adb | RREE/Ada_Drivers_Library | 791616adf3c742de256e37717d3376393e6f407a | [
"BSD-3-Clause"
] | null | null | null | examples/shared/serial_ports/src/serial_io.adb | RREE/Ada_Drivers_Library | 791616adf3c742de256e37717d3376393e6f407a | [
"BSD-3-Clause"
] | null | null | null | examples/shared/serial_ports/src/serial_io.adb | RREE/Ada_Drivers_Library | 791616adf3c742de256e37717d3376393e6f407a | [
"BSD-3-Clause"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- Copyright (C) 2015-2022, AdaCore --
-- --
-- Redistribution and use in source and binary forms, with or without --
-- modification, are permitted provided that the following conditions are --
-- met: --
-- 1. Redistributions of source code must retain the above copyright --
-- notice, this list of conditions and the following disclaimer. --
-- 2. Redistributions in binary form must reproduce the above copyright --
-- notice, this list of conditions and the following disclaimer in --
-- the documentation and/or other materials provided with the --
-- distribution. --
-- 3. Neither the name of the copyright holder nor the names of its --
-- contributors may be used to endorse or promote products derived --
-- from this software without specific prior written permission. --
-- --
-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS --
-- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT --
-- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR --
-- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT --
-- HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, --
-- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT --
-- LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, --
-- DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY --
-- THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT --
-- (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE --
-- OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. --
-- --
------------------------------------------------------------------------------
with STM32.Device; use STM32.Device;
package body Serial_IO is
-------------------------
-- Initialize_Hardware --
-------------------------
procedure Initialize_Hardware (Device : access Peripheral_Descriptor) is
Configuration : GPIO_Port_Configuration;
Device_Pins : constant GPIO_Points := Device.Rx_Pin & Device.Tx_Pin;
begin
Enable_Clock (Device_Pins);
Enable_Clock (Device.Transceiver.all);
Configuration := (Mode => Mode_AF,
AF => Device.Transceiver_AF,
AF_Speed => Speed_50MHz,
AF_Output_Type => Push_Pull,
Resistors => Pull_Up);
Configure_IO (Device_Pins, Configuration);
end Initialize_Hardware;
---------------
-- Configure --
---------------
procedure Configure
(Device : access Peripheral_Descriptor;
Baud_Rate : Baud_Rates;
Parity : Parities := No_Parity;
Data_Bits : Word_Lengths := Word_Length_8;
End_Bits : Stop_Bits := Stopbits_1;
Control : Flow_Control := No_Flow_Control)
is
begin
Disable (Device.Transceiver.all);
Set_Baud_Rate (Device.Transceiver.all, Baud_Rate);
Set_Mode (Device.Transceiver.all, Tx_Rx_Mode);
Set_Stop_Bits (Device.Transceiver.all, End_Bits);
Set_Word_Length (Device.Transceiver.all, Data_Bits);
Set_Parity (Device.Transceiver.all, Parity);
Set_Flow_Control (Device.Transceiver.all, Control);
Enable (Device.Transceiver.all);
end Configure;
end Serial_IO;
| 48.817073 | 78 | 0.540844 |
d05d69b21b27596fe032ee0cfdfaf5f21bf7787d | 38 | adb | Ada | src/alarm.adb | fionahiklas/ada_unit_test_examples | 0cedd9a26e69568b579815c1b3768e2f27edc056 | [
"Apache-2.0"
] | null | null | null | src/alarm.adb | fionahiklas/ada_unit_test_examples | 0cedd9a26e69568b579815c1b3768e2f27edc056 | [
"Apache-2.0"
] | null | null | null | src/alarm.adb | fionahiklas/ada_unit_test_examples | 0cedd9a26e69568b579815c1b3768e2f27edc056 | [
"Apache-2.0"
] | null | null | null | package body Alarm is
end Alarm; | 7.6 | 21 | 0.684211 |
c5cbdee2cc5541167ab0c7215a52368f9df0475a | 241 | ads | Ada | msp430-gcc-tics/msp430-gcc-7.3.1.24-source-full/gcc/gcc/testsuite/gnat.dg/array23_pkg1.ads | TUDSSL/TICS | 575ed1b34403b435540bc946c2e6dc5b6bf13072 | [
"MIT"
] | 7 | 2020-05-02T17:34:05.000Z | 2021-10-17T10:15:18.000Z | msp430-gcc-tics/msp430-gcc-7.3.1.24-source-full/gcc/gcc/testsuite/gnat.dg/array23_pkg1.ads | TUDSSL/TICS | 575ed1b34403b435540bc946c2e6dc5b6bf13072 | [
"MIT"
] | null | null | null | msp430-gcc-tics/msp430-gcc-7.3.1.24-source-full/gcc/gcc/testsuite/gnat.dg/array23_pkg1.ads | TUDSSL/TICS | 575ed1b34403b435540bc946c2e6dc5b6bf13072 | [
"MIT"
] | 2 | 2020-07-27T00:22:36.000Z | 2021-04-01T09:41:02.000Z | with Array23_Pkg2;
package Array23_Pkg1 is
C2 : Natural := Array23_Pkg2.C1;
subtype Index is Natural range 0 .. C2;
type Inner is array (Index) of Natural;
type Arr is array (Array23_Pkg2.Index) of Inner;
end Array23_Pkg1;
| 17.214286 | 51 | 0.713693 |
d017ce3686e94e79838d8a9455c78e75c9a8958b | 26,485 | adb | Ada | gcc-gcc-7_3_0-release/gcc/ada/s-stposu.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 7 | 2020-05-02T17:34:05.000Z | 2021-10-17T10:15:18.000Z | gcc-gcc-7_3_0-release/gcc/ada/s-stposu.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | null | null | null | gcc-gcc-7_3_0-release/gcc/ada/s-stposu.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 2 | 2020-07-27T00:22:36.000Z | 2021-04-01T09:41:02.000Z | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- S Y S T E M . S T O R A G E _ P O O L S . S U B P O O L S --
-- --
-- B o d y --
-- --
-- Copyright (C) 2011-2016, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with Ada.Exceptions; use Ada.Exceptions;
with Ada.Unchecked_Conversion;
with System.Address_Image;
with System.Finalization_Masters; use System.Finalization_Masters;
with System.IO; use System.IO;
with System.Soft_Links; use System.Soft_Links;
with System.Storage_Elements; use System.Storage_Elements;
with System.Storage_Pools.Subpools.Finalization;
use System.Storage_Pools.Subpools.Finalization;
package body System.Storage_Pools.Subpools is
Finalize_Address_Table_In_Use : Boolean := False;
-- This flag should be set only when a successfull allocation on a subpool
-- has been performed and the associated Finalize_Address has been added to
-- the hash table in System.Finalization_Masters.
function Address_To_FM_Node_Ptr is
new Ada.Unchecked_Conversion (Address, FM_Node_Ptr);
procedure Attach (N : not null SP_Node_Ptr; L : not null SP_Node_Ptr);
-- Attach a subpool node to a pool
-----------------------------------
-- Adjust_Controlled_Dereference --
-----------------------------------
procedure Adjust_Controlled_Dereference
(Addr : in out System.Address;
Storage_Size : in out System.Storage_Elements.Storage_Count;
Alignment : System.Storage_Elements.Storage_Count)
is
Header_And_Padding : constant Storage_Offset :=
Header_Size_With_Padding (Alignment);
begin
-- Expose the two hidden pointers by shifting the address from the
-- start of the object to the FM_Node equivalent of the pointers.
Addr := Addr - Header_And_Padding;
-- Update the size of the object to include the two pointers
Storage_Size := Storage_Size + Header_And_Padding;
end Adjust_Controlled_Dereference;
--------------
-- Allocate --
--------------
overriding procedure Allocate
(Pool : in out Root_Storage_Pool_With_Subpools;
Storage_Address : out System.Address;
Size_In_Storage_Elements : System.Storage_Elements.Storage_Count;
Alignment : System.Storage_Elements.Storage_Count)
is
begin
-- Dispatch to the user-defined implementations of Allocate_From_Subpool
-- and Default_Subpool_For_Pool.
Allocate_From_Subpool
(Root_Storage_Pool_With_Subpools'Class (Pool),
Storage_Address,
Size_In_Storage_Elements,
Alignment,
Default_Subpool_For_Pool
(Root_Storage_Pool_With_Subpools'Class (Pool)));
end Allocate;
-----------------------------
-- Allocate_Any_Controlled --
-----------------------------
procedure Allocate_Any_Controlled
(Pool : in out Root_Storage_Pool'Class;
Context_Subpool : Subpool_Handle;
Context_Master : Finalization_Masters.Finalization_Master_Ptr;
Fin_Address : Finalization_Masters.Finalize_Address_Ptr;
Addr : out System.Address;
Storage_Size : System.Storage_Elements.Storage_Count;
Alignment : System.Storage_Elements.Storage_Count;
Is_Controlled : Boolean;
On_Subpool : Boolean)
is
Is_Subpool_Allocation : constant Boolean :=
Pool in Root_Storage_Pool_With_Subpools'Class;
Master : Finalization_Master_Ptr := null;
N_Addr : Address;
N_Ptr : FM_Node_Ptr;
N_Size : Storage_Count;
Subpool : Subpool_Handle := null;
Header_And_Padding : Storage_Offset;
-- This offset includes the size of a FM_Node plus any additional
-- padding due to a larger alignment.
begin
-- Step 1: Pool-related runtime checks
-- Allocation on a pool_with_subpools. In this scenario there is a
-- master for each subpool. The master of the access type is ignored.
if Is_Subpool_Allocation then
-- Case of an allocation without a Subpool_Handle. Dispatch to the
-- implementation of Default_Subpool_For_Pool.
if Context_Subpool = null then
Subpool :=
Default_Subpool_For_Pool
(Root_Storage_Pool_With_Subpools'Class (Pool));
-- Allocation with a Subpool_Handle
else
Subpool := Context_Subpool;
end if;
-- Ensure proper ownership and chaining of the subpool
if Subpool.Owner /=
Root_Storage_Pool_With_Subpools'Class (Pool)'Unchecked_Access
or else Subpool.Node = null
or else Subpool.Node.Prev = null
or else Subpool.Node.Next = null
then
raise Program_Error with "incorrect owner of subpool";
end if;
Master := Subpool.Master'Unchecked_Access;
-- Allocation on a simple pool. In this scenario there is a master for
-- each access-to-controlled type. No context subpool should be present.
else
-- If the master is missing, then the expansion of the access type
-- failed to create one. This is a compiler bug.
pragma Assert
(Context_Master /= null, "missing master in pool allocation");
-- If a subpool is present, then this is the result of erroneous
-- allocator expansion. This is not a serious error, but it should
-- still be detected.
if Context_Subpool /= null then
raise Program_Error
with "subpool not required in pool allocation";
end if;
-- If the allocation is intended to be on a subpool, but the access
-- type's pool does not support subpools, then this is the result of
-- incorrect end-user code.
if On_Subpool then
raise Program_Error
with "pool of access type does not support subpools";
end if;
Master := Context_Master;
end if;
-- Step 2: Master, Finalize_Address-related runtime checks and size
-- calculations.
-- Allocation of a descendant from [Limited_]Controlled, a class-wide
-- object or a record with controlled components.
if Is_Controlled then
-- Synchronization:
-- Read - allocation, finalization
-- Write - finalization
Lock_Task.all;
-- Do not allow the allocation of controlled objects while the
-- associated master is being finalized.
if Finalization_Started (Master.all) then
raise Program_Error with "allocation after finalization started";
end if;
-- Check whether primitive Finalize_Address is available. If it is
-- not, then either the expansion of the designated type failed or
-- the expansion of the allocator failed. This is a compiler bug.
pragma Assert
(Fin_Address /= null, "primitive Finalize_Address not available");
-- The size must account for the hidden header preceding the object.
-- Account for possible padding space before the header due to a
-- larger alignment.
Header_And_Padding := Header_Size_With_Padding (Alignment);
N_Size := Storage_Size + Header_And_Padding;
-- Non-controlled allocation
else
N_Size := Storage_Size;
end if;
-- Step 3: Allocation of object
-- For descendants of Root_Storage_Pool_With_Subpools, dispatch to the
-- implementation of Allocate_From_Subpool.
if Is_Subpool_Allocation then
Allocate_From_Subpool
(Root_Storage_Pool_With_Subpools'Class (Pool),
N_Addr, N_Size, Alignment, Subpool);
-- For descendants of Root_Storage_Pool, dispatch to the implementation
-- of Allocate.
else
Allocate (Pool, N_Addr, N_Size, Alignment);
end if;
-- Step 4: Attachment
if Is_Controlled then
-- Note that we already did "Lock_Task.all;" in Step 2 above
-- Map the allocated memory into a FM_Node record. This converts the
-- top of the allocated bits into a list header. If there is padding
-- due to larger alignment, the header is placed right next to the
-- object:
-- N_Addr N_Ptr
-- | |
-- V V
-- +-------+---------------+----------------------+
-- |Padding| Header | Object |
-- +-------+---------------+----------------------+
-- ^ ^ ^
-- | +- Header_Size -+
-- | |
-- +- Header_And_Padding --+
N_Ptr :=
Address_To_FM_Node_Ptr (N_Addr + Header_And_Padding - Header_Size);
-- Prepend the allocated object to the finalization master
-- Synchronization:
-- Write - allocation, deallocation, finalization
Attach_Unprotected (N_Ptr, Objects (Master.all));
-- Move the address from the hidden list header to the start of the
-- object. This operation effectively hides the list header.
Addr := N_Addr + Header_And_Padding;
-- Homogeneous masters service the following:
-- 1) Allocations on / Deallocations from regular pools
-- 2) Named access types
-- 3) Most cases of anonymous access types usage
-- Synchronization:
-- Read - allocation, finalization
-- Write - outside
if Master.Is_Homogeneous then
-- Synchronization:
-- Read - finalization
-- Write - allocation, outside
Set_Finalize_Address_Unprotected (Master.all, Fin_Address);
-- Heterogeneous masters service the following:
-- 1) Allocations on / Deallocations from subpools
-- 2) Certain cases of anonymous access types usage
else
-- Synchronization:
-- Read - finalization
-- Write - allocation, deallocation
Set_Heterogeneous_Finalize_Address_Unprotected (Addr, Fin_Address);
Finalize_Address_Table_In_Use := True;
end if;
Unlock_Task.all;
-- Non-controlled allocation
else
Addr := N_Addr;
end if;
exception
when others =>
-- Unlock the task in case the allocation step failed and reraise the
-- exception.
if Is_Controlled then
Unlock_Task.all;
end if;
raise;
end Allocate_Any_Controlled;
------------
-- Attach --
------------
procedure Attach (N : not null SP_Node_Ptr; L : not null SP_Node_Ptr) is
begin
-- Ensure that the node has not been attached already
pragma Assert (N.Prev = null and then N.Next = null);
Lock_Task.all;
L.Next.Prev := N;
N.Next := L.Next;
L.Next := N;
N.Prev := L;
Unlock_Task.all;
-- Note: No need to unlock in case of an exception because the above
-- code can never raise one.
end Attach;
-------------------------------
-- Deallocate_Any_Controlled --
-------------------------------
procedure Deallocate_Any_Controlled
(Pool : in out Root_Storage_Pool'Class;
Addr : System.Address;
Storage_Size : System.Storage_Elements.Storage_Count;
Alignment : System.Storage_Elements.Storage_Count;
Is_Controlled : Boolean)
is
N_Addr : Address;
N_Ptr : FM_Node_Ptr;
N_Size : Storage_Count;
Header_And_Padding : Storage_Offset;
-- This offset includes the size of a FM_Node plus any additional
-- padding due to a larger alignment.
begin
-- Step 1: Detachment
if Is_Controlled then
Lock_Task.all;
begin
-- Destroy the relation pair object - Finalize_Address since it is
-- no longer needed.
if Finalize_Address_Table_In_Use then
-- Synchronization:
-- Read - finalization
-- Write - allocation, deallocation
Delete_Finalize_Address_Unprotected (Addr);
end if;
-- Account for possible padding space before the header due to a
-- larger alignment.
Header_And_Padding := Header_Size_With_Padding (Alignment);
-- N_Addr N_Ptr Addr (from input)
-- | | |
-- V V V
-- +-------+---------------+----------------------+
-- |Padding| Header | Object |
-- +-------+---------------+----------------------+
-- ^ ^ ^
-- | +- Header_Size -+
-- | |
-- +- Header_And_Padding --+
-- Convert the bits preceding the object into a list header
N_Ptr := Address_To_FM_Node_Ptr (Addr - Header_Size);
-- Detach the object from the related finalization master. This
-- action does not need to know the prior context used during
-- allocation.
-- Synchronization:
-- Write - allocation, deallocation, finalization
Detach_Unprotected (N_Ptr);
-- Move the address from the object to the beginning of the list
-- header.
N_Addr := Addr - Header_And_Padding;
-- The size of the deallocated object must include the size of the
-- hidden list header.
N_Size := Storage_Size + Header_And_Padding;
Unlock_Task.all;
exception
when others =>
-- Unlock the task in case the computations performed above
-- fail for some reason.
Unlock_Task.all;
raise;
end;
else
N_Addr := Addr;
N_Size := Storage_Size;
end if;
-- Step 2: Deallocation
-- Dispatch to the proper implementation of Deallocate. This action
-- covers both Root_Storage_Pool and Root_Storage_Pool_With_Subpools
-- implementations.
Deallocate (Pool, N_Addr, N_Size, Alignment);
end Deallocate_Any_Controlled;
------------------------------
-- Default_Subpool_For_Pool --
------------------------------
function Default_Subpool_For_Pool
(Pool : in out Root_Storage_Pool_With_Subpools)
return not null Subpool_Handle
is
pragma Unreferenced (Pool);
begin
return raise Program_Error with
"default Default_Subpool_For_Pool called; must be overridden";
end Default_Subpool_For_Pool;
------------
-- Detach --
------------
procedure Detach (N : not null SP_Node_Ptr) is
begin
-- Ensure that the node is attached to some list
pragma Assert (N.Next /= null and then N.Prev /= null);
Lock_Task.all;
N.Prev.Next := N.Next;
N.Next.Prev := N.Prev;
N.Prev := null;
N.Next := null;
Unlock_Task.all;
-- Note: No need to unlock in case of an exception because the above
-- code can never raise one.
end Detach;
--------------
-- Finalize --
--------------
overriding procedure Finalize (Controller : in out Pool_Controller) is
begin
Finalize_Pool (Controller.Enclosing_Pool.all);
end Finalize;
-------------------
-- Finalize_Pool --
-------------------
procedure Finalize_Pool (Pool : in out Root_Storage_Pool_With_Subpools) is
Curr_Ptr : SP_Node_Ptr;
Ex_Occur : Exception_Occurrence;
Raised : Boolean := False;
function Is_Empty_List (L : not null SP_Node_Ptr) return Boolean;
-- Determine whether a list contains only one element, the dummy head
-------------------
-- Is_Empty_List --
-------------------
function Is_Empty_List (L : not null SP_Node_Ptr) return Boolean is
begin
return L.Next = L and then L.Prev = L;
end Is_Empty_List;
-- Start of processing for Finalize_Pool
begin
-- It is possible for multiple tasks to cause the finalization of a
-- common pool. Allow only one task to finalize the contents.
if Pool.Finalization_Started then
return;
end if;
-- Lock the pool to prevent the creation of additional subpools while
-- the available ones are finalized. The pool remains locked because
-- either it is about to be deallocated or the associated access type
-- is about to go out of scope.
Pool.Finalization_Started := True;
while not Is_Empty_List (Pool.Subpools'Unchecked_Access) loop
Curr_Ptr := Pool.Subpools.Next;
-- Perform the following actions:
-- 1) Finalize all objects chained on the subpool's master
-- 2) Remove the subpool from the owner's list of subpools
-- 3) Deallocate the doubly linked list node associated with the
-- subpool.
-- 4) Call Deallocate_Subpool
begin
Finalize_And_Deallocate (Curr_Ptr.Subpool);
exception
when Fin_Occur : others =>
if not Raised then
Raised := True;
Save_Occurrence (Ex_Occur, Fin_Occur);
end if;
end;
end loop;
-- If the finalization of a particular master failed, reraise the
-- exception now.
if Raised then
Reraise_Occurrence (Ex_Occur);
end if;
end Finalize_Pool;
------------------------------
-- Header_Size_With_Padding --
------------------------------
function Header_Size_With_Padding
(Alignment : System.Storage_Elements.Storage_Count)
return System.Storage_Elements.Storage_Count
is
Size : constant Storage_Count := Header_Size;
begin
if Size mod Alignment = 0 then
return Size;
-- Add enough padding to reach the nearest multiple of the alignment
-- rounding up.
else
return ((Size + Alignment - 1) / Alignment) * Alignment;
end if;
end Header_Size_With_Padding;
----------------
-- Initialize --
----------------
overriding procedure Initialize (Controller : in out Pool_Controller) is
begin
Initialize_Pool (Controller.Enclosing_Pool.all);
end Initialize;
---------------------
-- Initialize_Pool --
---------------------
procedure Initialize_Pool (Pool : in out Root_Storage_Pool_With_Subpools) is
begin
-- The dummy head must point to itself in both directions
Pool.Subpools.Next := Pool.Subpools'Unchecked_Access;
Pool.Subpools.Prev := Pool.Subpools'Unchecked_Access;
end Initialize_Pool;
---------------------
-- Pool_Of_Subpool --
---------------------
function Pool_Of_Subpool
(Subpool : not null Subpool_Handle)
return access Root_Storage_Pool_With_Subpools'Class
is
begin
return Subpool.Owner;
end Pool_Of_Subpool;
----------------
-- Print_Pool --
----------------
procedure Print_Pool (Pool : Root_Storage_Pool_With_Subpools) is
Head : constant SP_Node_Ptr := Pool.Subpools'Unrestricted_Access;
Head_Seen : Boolean := False;
SP_Ptr : SP_Node_Ptr;
begin
-- Output the contents of the pool
-- Pool : 0x123456789
-- Subpools : 0x123456789
-- Fin_Start : TRUE <or> FALSE
-- Controller: OK <or> NOK
Put ("Pool : ");
Put_Line (Address_Image (Pool'Address));
Put ("Subpools : ");
Put_Line (Address_Image (Pool.Subpools'Address));
Put ("Fin_Start : ");
Put_Line (Pool.Finalization_Started'Img);
Put ("Controlled: ");
if Pool.Controller.Enclosing_Pool = Pool'Unrestricted_Access then
Put_Line ("OK");
else
Put_Line ("NOK (ERROR)");
end if;
SP_Ptr := Head;
while SP_Ptr /= null loop -- Should never be null
Put_Line ("V");
-- We see the head initially; we want to exit when we see the head a
-- second time.
if SP_Ptr = Head then
exit when Head_Seen;
Head_Seen := True;
end if;
-- The current element is null. This should never happend since the
-- list is circular.
if SP_Ptr.Prev = null then
Put_Line ("null (ERROR)");
-- The current element points back to the correct element
elsif SP_Ptr.Prev.Next = SP_Ptr then
Put_Line ("^");
-- The current element points to an erroneous element
else
Put_Line ("? (ERROR)");
end if;
-- Output the contents of the node
Put ("|Header: ");
Put (Address_Image (SP_Ptr.all'Address));
if SP_Ptr = Head then
Put_Line (" (dummy head)");
else
Put_Line ("");
end if;
Put ("| Prev: ");
if SP_Ptr.Prev = null then
Put_Line ("null");
else
Put_Line (Address_Image (SP_Ptr.Prev.all'Address));
end if;
Put ("| Next: ");
if SP_Ptr.Next = null then
Put_Line ("null");
else
Put_Line (Address_Image (SP_Ptr.Next.all'Address));
end if;
Put ("| Subp: ");
if SP_Ptr.Subpool = null then
Put_Line ("null");
else
Put_Line (Address_Image (SP_Ptr.Subpool.all'Address));
end if;
SP_Ptr := SP_Ptr.Next;
end loop;
end Print_Pool;
-------------------
-- Print_Subpool --
-------------------
procedure Print_Subpool (Subpool : Subpool_Handle) is
begin
if Subpool = null then
Put_Line ("null");
return;
end if;
-- Output the contents of a subpool
-- Owner : 0x123456789
-- Master: 0x123456789
-- Node : 0x123456789
Put ("Owner : ");
if Subpool.Owner = null then
Put_Line ("null");
else
Put_Line (Address_Image (Subpool.Owner'Address));
end if;
Put ("Master: ");
Put_Line (Address_Image (Subpool.Master'Address));
Put ("Node : ");
if Subpool.Node = null then
Put ("null");
if Subpool.Owner = null then
Put_Line (" OK");
else
Put_Line (" (ERROR)");
end if;
else
Put_Line (Address_Image (Subpool.Node'Address));
end if;
Print_Master (Subpool.Master);
end Print_Subpool;
-------------------------
-- Set_Pool_Of_Subpool --
-------------------------
procedure Set_Pool_Of_Subpool
(Subpool : not null Subpool_Handle;
To : in out Root_Storage_Pool_With_Subpools'Class)
is
N_Ptr : SP_Node_Ptr;
begin
-- If the subpool is already owned, raise Program_Error. This is a
-- direct violation of the RM rules.
if Subpool.Owner /= null then
raise Program_Error with "subpool already belongs to a pool";
end if;
-- Prevent the creation of a new subpool while the owner is being
-- finalized. This is a serious error.
if To.Finalization_Started then
raise Program_Error
with "subpool creation after finalization started";
end if;
Subpool.Owner := To'Unchecked_Access;
-- Create a subpool node and decorate it. Since this node is not
-- allocated on the owner's pool, it must be explicitly destroyed by
-- Finalize_And_Detach.
N_Ptr := new SP_Node;
N_Ptr.Subpool := Subpool;
Subpool.Node := N_Ptr;
Attach (N_Ptr, To.Subpools'Unchecked_Access);
-- Mark the subpool's master as being a heterogeneous collection of
-- controlled objects.
Set_Is_Heterogeneous (Subpool.Master);
end Set_Pool_Of_Subpool;
end System.Storage_Pools.Subpools;
| 31.94813 | 79 | 0.560581 |
4a5641213ed640d09c1d175290ee67b1378fa3a8 | 3,755 | ads | Ada | Ada95/samples/sample-form_demo-handler.ads | mvaisakh/android_external_libncurses | d44c8a16d7f1ed276d0de0b3f6f1a5596c5f556f | [
"DOC",
"Unlicense"
] | 35 | 2015-03-07T13:26:22.000Z | 2021-11-06T16:18:59.000Z | Ada95/samples/sample-form_demo-handler.ads | mvaisakh/android_external_libncurses | d44c8a16d7f1ed276d0de0b3f6f1a5596c5f556f | [
"DOC",
"Unlicense"
] | 3 | 2017-04-07T21:02:48.000Z | 2017-04-08T17:59:35.000Z | Ada95/samples/sample-form_demo-handler.ads | mvaisakh/android_external_libncurses | d44c8a16d7f1ed276d0de0b3f6f1a5596c5f556f | [
"DOC",
"Unlicense"
] | 19 | 2015-06-16T06:13:44.000Z | 2021-07-24T02:37:45.000Z | ------------------------------------------------------------------------------
-- --
-- GNAT ncurses Binding Samples --
-- --
-- Sample.Form_Demo.Handler --
-- --
-- S P E C --
-- --
------------------------------------------------------------------------------
-- Copyright (c) 1998 Free Software Foundation, Inc. --
-- --
-- Permission is hereby granted, free of charge, to any person obtaining a --
-- copy of this software and associated documentation files (the --
-- "Software"), to deal in the Software without restriction, including --
-- without limitation the rights to use, copy, modify, merge, publish, --
-- distribute, distribute with modifications, sublicense, and/or sell --
-- copies of the Software, and to permit persons to whom the Software is --
-- furnished to do so, subject to the following conditions: --
-- --
-- The above copyright notice and this permission notice shall be included --
-- in all copies or substantial portions of the Software. --
-- --
-- THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS --
-- OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF --
-- MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. --
-- IN NO EVENT SHALL THE ABOVE COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, --
-- DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR --
-- OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR --
-- THE USE OR OTHER DEALINGS IN THE SOFTWARE. --
-- --
-- Except as contained in this notice, the name(s) of the above copyright --
-- holders shall not be used in advertising or otherwise to promote the --
-- sale, use or other dealings in this Software without prior written --
-- authorization. --
------------------------------------------------------------------------------
-- Author: Juergen Pfeifer, 1996
-- Version Control
-- $Revision: 1.9 $
-- Binding Version 01.00
------------------------------------------------------------------------------
with Terminal_Interface.Curses;
use Terminal_Interface.Curses;
with Terminal_Interface.Curses.Panels;
use Terminal_Interface.Curses.Panels;
with Terminal_Interface.Curses.Forms;
use Terminal_Interface.Curses.Forms;
generic
with function My_Driver (Frm : Form;
K : Key_Code;
Pan : Panel) return Boolean;
package Sample.Form_Demo.Handler is
procedure Drive_Me (F : in Form;
Lin : in Line_Position;
Col : in Column_Position;
Title : in String := "");
-- Position the menu at the given point and drive it.
procedure Drive_Me (F : in Form;
Title : in String := "");
-- Center menu and drive it.
end Sample.Form_Demo.Handler;
| 57.769231 | 78 | 0.443675 |
d05150073f912b5bae0088aafb62a57b9fee5a99 | 206,288 | adb | Ada | HLS/lab3/dct.prj/solution6/.autopilot/db/Loop_Xpose_Row_Outer.adb | lfVelez/ISPR | 840f41c2053a48642a7b287feecfea79c6f389b3 | [
"MIT"
] | 1 | 2021-03-03T16:53:52.000Z | 2021-03-03T16:53:52.000Z | HLS/lab3/dct.prj/solution6/.autopilot/db/Loop_Xpose_Row_Outer.adb | lfVelez/ISPR | 840f41c2053a48642a7b287feecfea79c6f389b3 | [
"MIT"
] | null | null | null | HLS/lab3/dct.prj/solution6/.autopilot/db/Loop_Xpose_Row_Outer.adb | lfVelez/ISPR | 840f41c2053a48642a7b287feecfea79c6f389b3 | [
"MIT"
] | null | null | null | <?xml version="1.0" encoding="UTF-8" standalone="yes" ?>
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<item class_id="30" tracking_level="1" version="0" object_id="_280">
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<condition class_id="31" tracking_level="0" version="0">
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<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_281">
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<condition>
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<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_282">
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<outState>2</outState>
<condition>
<id>112</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_283">
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<condition>
<id>110</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item class_id="34" tracking_level="0" version="0">
<first class_id="35" tracking_level="0" version="0">
<first>15</first>
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</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_284">
<inState>2</inState>
<outState>3</outState>
<condition>
<id>113</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>15</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
</transitions>
</fsm>
<res class_id="36" tracking_level="1" version="0" object_id="_285">
<dp_component_resource class_id="37" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
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<count>11</count>
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<item class_id="38" tracking_level="0" version="0">
<first>ap_block_state1 ( or ) </first>
<second class_id="39" tracking_level="0" version="0">
<count>4</count>
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<item class_id="40" tracking_level="0" version="0">
<first>(0P0)</first>
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<item>
<first>(1P1)</first>
<second>1</second>
</item>
<item>
<first>FF</first>
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</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>ap_enable_pp0 ( xor ) </first>
<second>
<count>4</count>
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<item>
<first>(0P0)</first>
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<item>
<first>(1P1)</first>
<second>2</second>
</item>
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<first>FF</first>
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</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>ap_enable_reg_pp0_iter1 ( xor ) </first>
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<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
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</item>
<item>
<first>(1P1)</first>
<second>2</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>exitcond_flatten_fu_221_p2 ( icmp ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>7</second>
</item>
<item>
<first>(1P1)</first>
<second>8</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>4</second>
</item>
</second>
</item>
<item>
<first>i_1_i_mid2_fu_245_p3 ( select ) </first>
<second>
<count>5</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>1</second>
</item>
<item>
<first>(1P1)</first>
<second>1</second>
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<first>(2P2)</first>
<second>4</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>4</second>
</item>
</second>
</item>
<item>
<first>i_fu_290_p2 ( + ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>4</second>
</item>
<item>
<first>(1P1)</first>
<second>1</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>13</second>
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</second>
</item>
<item>
<first>indvar_flatten_next_fu_227_p2 ( + ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>7</second>
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<item>
<first>(1P1)</first>
<second>1</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>j_fu_233_p2 ( + ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>1</second>
</item>
<item>
<first>(1P1)</first>
<second>4</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>13</second>
</item>
</second>
</item>
<item>
<first>tmp_3_mid2_v_fu_253_p3 ( select ) </first>
<second>
<count>5</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>1</second>
</item>
<item>
<first>(1P1)</first>
<second>4</second>
</item>
<item>
<first>(2P2)</first>
<second>4</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>4</second>
</item>
</second>
</item>
<item>
<first>tmp_9_fu_279_p2 ( + ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>8</second>
</item>
<item>
<first>(1P1)</first>
<second>8</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>tmp_s_fu_239_p2 ( icmp ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>4</second>
</item>
<item>
<first>(1P1)</first>
<second>5</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
</dp_expression_resource>
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<count>0</count>
<item_version>0</item_version>
</dp_fifo_resource>
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<count>0</count>
<item_version>0</item_version>
</dp_memory_resource>
<dp_multiplexer_resource>
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<item_version>0</item_version>
<item>
<first>ap_NS_fsm</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>4</second>
</item>
<item>
<first>(1Bits)</first>
<second>1</second>
</item>
<item>
<first>(2Count)</first>
<second>4</second>
</item>
<item>
<first>LUT</first>
<second>21</second>
</item>
</second>
</item>
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<first>ap_done</first>
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<count>4</count>
<item_version>0</item_version>
<item>
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<second>2</second>
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<first>(1Bits)</first>
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<first>(2Count)</first>
<second>2</second>
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<first>LUT</first>
<second>9</second>
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</item>
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<first>ap_enable_reg_pp0_iter1</first>
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<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
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<first>(1Bits)</first>
<second>1</second>
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<item>
<first>(2Count)</first>
<second>2</second>
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<item>
<first>LUT</first>
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</item>
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<first>ap_enable_reg_pp0_iter2</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
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<first>(2Count)</first>
<second>2</second>
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<first>LUT</first>
<second>9</second>
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<item>
<first>i_1_i_phi_fu_214_p4</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
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<first>(1Bits)</first>
<second>4</second>
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<item>
<first>(2Count)</first>
<second>8</second>
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<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
<item>
<first>i_1_i_reg_210</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
</item>
<item>
<first>(1Bits)</first>
<second>4</second>
</item>
<item>
<first>(2Count)</first>
<second>8</second>
</item>
<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
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<first>indvar_flatten_reg_188</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
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<first>(1Bits)</first>
<second>7</second>
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<item>
<first>(2Count)</first>
<second>14</second>
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<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
<item>
<first>j_0_i_phi_fu_203_p4</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
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<item>
<first>(1Bits)</first>
<second>4</second>
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<item>
<first>(2Count)</first>
<second>8</second>
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<item>
<first>LUT</first>
<second>9</second>
</item>
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</item>
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<first>j_0_i_reg_199</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
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<item>
<first>(1Bits)</first>
<second>4</second>
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<item>
<first>(2Count)</first>
<second>8</second>
</item>
<item>
<first>LUT</first>
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</item>
</second>
</item>
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<count>14</count>
<item_version>0</item_version>
<item>
<first>ap_CS_fsm</first>
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<count>3</count>
<item_version>0</item_version>
<item>
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<second>3</second>
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<first>(Consts)</first>
<second>0</second>
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<first>FF</first>
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<first>ap_done_reg</first>
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<count>3</count>
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<item>
<first>(Bits)</first>
<second>1</second>
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<first>(Consts)</first>
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<first>FF</first>
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<first>ap_enable_reg_pp0_iter0</first>
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<count>3</count>
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<item>
<first>(Bits)</first>
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<first>(Consts)</first>
<second>0</second>
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<first>FF</first>
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<item>
<first>ap_enable_reg_pp0_iter1</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
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<first>(Consts)</first>
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<first>FF</first>
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<item>
<first>ap_enable_reg_pp0_iter2</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
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<first>(Consts)</first>
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<first>FF</first>
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<item>
<first>ap_reg_pp0_iter1_tmp_3_mid2_v_reg_321</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>4</second>
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<item>
<first>(Consts)</first>
<second>0</second>
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<item>
<first>FF</first>
<second>4</second>
</item>
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</item>
<item>
<first>ap_reg_pp0_iter1_tmp_3_reg_328</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>3</second>
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<item>
<first>(Consts)</first>
<second>0</second>
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<item>
<first>FF</first>
<second>3</second>
</item>
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<item>
<first>exitcond_flatten_reg_306</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>1</second>
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<item>
<first>(Consts)</first>
<second>0</second>
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<item>
<first>FF</first>
<second>1</second>
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</item>
<item>
<first>i_1_i_mid2_reg_315</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>4</second>
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<item>
<first>(Consts)</first>
<second>0</second>
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<item>
<first>FF</first>
<second>4</second>
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</second>
</item>
<item>
<first>i_1_i_reg_210</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>4</second>
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<item>
<first>(Consts)</first>
<second>0</second>
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<item>
<first>FF</first>
<second>4</second>
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</item>
<item>
<first>indvar_flatten_reg_188</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>7</second>
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<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>7</second>
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</item>
<item>
<first>j_0_i_reg_199</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>4</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>4</second>
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</item>
<item>
<first>tmp_3_mid2_v_reg_321</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>4</second>
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<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>4</second>
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</item>
<item>
<first>tmp_3_reg_328</first>
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<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>3</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>3</second>
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<first>exitcond_flatten_fu_221_p2 ( icmp ) </first>
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<item>
<first>i_1_i_mid2_fu_245_p3 ( select ) </first>
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<first>i_fu_290_p2 ( + ) </first>
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<item>
<first>indvar_flatten_next_fu_227_p2 ( + ) </first>
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</item>
<item>
<first>j_fu_233_p2 ( + ) </first>
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<count>1</count>
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<item>
<first>tmp_3_mid2_v_fu_253_p3 ( select ) </first>
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<count>1</count>
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</item>
<item>
<first>tmp_9_fu_279_p2 ( + ) </first>
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</item>
<item>
<first>tmp_s_fu_239_p2 ( icmp ) </first>
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<count>1</count>
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<second class_id="45" tracking_level="0" version="0">
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<item>
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<first>1</first>
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<item>
<first>13</first>
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<first>1</first>
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<item>
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<second>
<first>1</first>
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<item>
<first>15</first>
<second>
<first>1</first>
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<item>
<first>16</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>17</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>19</first>
<second>
<first>1</first>
<second>0</second>
</second>
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<item>
<first>22</first>
<second>
<first>1</first>
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</item>
<item>
<first>23</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>24</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>25</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>26</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>30</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>31</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>32</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>33</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>34</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>35</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>36</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>37</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>39</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>40</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>41</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>43</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>44</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>45</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>47</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>48</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>49</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>51</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>52</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>53</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>55</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>56</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>57</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>59</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>60</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>61</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>63</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>64</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>65</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>67</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>68</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>69</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>72</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>73</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>75</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
</node_label_latency>
<bblk_ent_exit class_id="46" tracking_level="0" version="0">
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<item_version>0</item_version>
<item class_id="47" tracking_level="0" version="0">
<first>11</first>
<second class_id="48" tracking_level="0" version="0">
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>18</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>38</first>
<second>
<first>1</first>
<second>3</second>
</second>
</item>
<item>
<first>42</first>
<second>
<first>1</first>
<second>3</second>
</second>
</item>
<item>
<first>46</first>
<second>
<first>1</first>
<second>3</second>
</second>
</item>
<item>
<first>50</first>
<second>
<first>1</first>
<second>3</second>
</second>
</item>
<item>
<first>54</first>
<second>
<first>1</first>
<second>3</second>
</second>
</item>
<item>
<first>58</first>
<second>
<first>1</first>
<second>3</second>
</second>
</item>
<item>
<first>62</first>
<second>
<first>1</first>
<second>3</second>
</second>
</item>
<item>
<first>66</first>
<second>
<first>1</first>
<second>3</second>
</second>
</item>
<item>
<first>70</first>
<second>
<first>1</first>
<second>3</second>
</second>
</item>
<item>
<first>74</first>
<second>
<first>2</first>
<second>3</second>
</second>
</item>
<item>
<first>76</first>
<second>
<first>2</first>
<second>2</second>
</second>
</item>
</bblk_ent_exit>
<regions class_id="49" tracking_level="0" version="0">
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<item class_id="50" tracking_level="1" version="0" object_id="_286">
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<count>11</count>
<item_version>0</item_version>
<item>18</item>
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<item>42</item>
<item>46</item>
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<item>54</item>
<item>58</item>
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</basic_blocks>
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</nodes>
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</item>
</regions>
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<item class_id="52" tracking_level="0" version="0">
<first>72</first>
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</item>
<item>
<first>79</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>35</item>
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</second>
</item>
<item>
<first>84</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</second>
</item>
<item>
<first>91</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</item>
<item>
<first>97</first>
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<count>1</count>
<item_version>0</item_version>
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</second>
</item>
<item>
<first>104</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>44</item>
</second>
</item>
<item>
<first>110</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>47</item>
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</item>
<item>
<first>117</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>48</item>
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</item>
<item>
<first>123</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>51</item>
</second>
</item>
<item>
<first>130</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>52</item>
</second>
</item>
<item>
<first>136</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>55</item>
</second>
</item>
<item>
<first>143</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>56</item>
</second>
</item>
<item>
<first>149</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>59</item>
</second>
</item>
<item>
<first>156</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>60</item>
</second>
</item>
<item>
<first>162</first>
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<count>1</count>
<item_version>0</item_version>
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</item>
<item>
<first>169</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>64</item>
</second>
</item>
<item>
<first>175</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</second>
</item>
<item>
<first>182</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>68</item>
</second>
</item>
<item>
<first>192</first>
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<count>1</count>
<item_version>0</item_version>
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</second>
</item>
<item>
<first>203</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</second>
</item>
<item>
<first>214</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</second>
</item>
<item>
<first>221</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>15</item>
</second>
</item>
<item>
<first>227</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>16</item>
</second>
</item>
<item>
<first>233</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>19</item>
</second>
</item>
<item>
<first>239</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>22</item>
</second>
</item>
<item>
<first>245</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>23</item>
</second>
</item>
<item>
<first>253</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>24</item>
</second>
</item>
<item>
<first>261</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</second>
</item>
<item>
<first>265</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>26</item>
</second>
</item>
<item>
<first>268</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>30</item>
</second>
</item>
<item>
<first>275</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>31</item>
</second>
</item>
<item>
<first>279</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>32</item>
</second>
</item>
<item>
<first>285</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</second>
</item>
<item>
<first>290</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>72</item>
</second>
</item>
<item>
<first>295</first>
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</second>
</item>
</dp_fu_nodes>
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<first>col_inbuf_0_addr_gep_fu_162</first>
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</item>
<item>
<first>col_inbuf_1_addr_gep_fu_149</first>
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</item>
<item>
<first>col_inbuf_2_addr_gep_fu_136</first>
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</item>
<item>
<first>col_inbuf_3_addr_gep_fu_123</first>
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</item>
<item>
<first>col_inbuf_4_addr_gep_fu_110</first>
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<count>1</count>
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</item>
<item>
<first>col_inbuf_5_addr_gep_fu_97</first>
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</item>
<item>
<first>col_inbuf_6_addr_gep_fu_84</first>
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</item>
<item>
<first>col_inbuf_7_addr_gep_fu_175</first>
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<item>
<first>exitcond_flatten_fu_221</first>
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<item>
<first>i_1_i_mid2_fu_245</first>
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</item>
<item>
<first>i_1_i_phi_fu_214</first>
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<item>
<first>i_fu_290</first>
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<item>
<first>indvar_flatten_next_fu_227</first>
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<item>
<first>indvar_flatten_phi_fu_192</first>
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<item>
<first>j_0_i_phi_fu_203</first>
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<item>
<first>j_fu_233</first>
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<item>
<first>row_outbuf_i_addr_gep_fu_72</first>
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<item>
<first>tmp_3_fu_261</first>
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<item>
<first>tmp_3_mid2_cast_fu_265</first>
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<item>
<first>tmp_3_mid2_fu_295</first>
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<item>
<first>tmp_3_mid2_v_fu_253</first>
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<first>tmp_8_cast_fu_275</first>
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<first>tmp_9_cast_fu_285</first>
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<item>
<first>tmp_9_fu_279</first>
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<item>
<first>tmp_fu_268</first>
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<item>
<first>tmp_s_fu_239</first>
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</dp_fu_nodes_io>
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<first class_id="58" tracking_level="0" version="0">
<first>col_inbuf_0</first>
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<item>
<first>
<first>col_inbuf_1</first>
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<first>col_inbuf_3</first>
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<item>
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<first>col_inbuf_4</first>
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<item>
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<first>col_inbuf_5</first>
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<item>
<first>
<first>col_inbuf_6</first>
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<item>
<first>
<first>col_inbuf_7</first>
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<item>
<first>
<first>row_outbuf_i</first>
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</second>
</item>
<item>
<first>199</first>
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<count>1</count>
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</item>
<item>
<first>210</first>
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</item>
<item>
<first>306</first>
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<item>15</item>
</second>
</item>
<item>
<first>310</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>16</item>
</second>
</item>
<item>
<first>315</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>23</item>
</second>
</item>
<item>
<first>321</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>24</item>
</second>
</item>
<item>
<first>328</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>36</item>
</second>
</item>
<item>
<first>332</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>34</item>
</second>
</item>
<item>
<first>337</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>72</item>
</second>
</item>
</dp_reg_nodes>
<dp_regname_nodes>
<count>10</count>
<item_version>0</item_version>
<item>
<first>exitcond_flatten_reg_306</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>15</item>
</second>
</item>
<item>
<first>i_1_i_mid2_reg_315</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>23</item>
</second>
</item>
<item>
<first>i_1_i_reg_210</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</second>
</item>
<item>
<first>i_reg_337</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>72</item>
</second>
</item>
<item>
<first>indvar_flatten_next_reg_310</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>16</item>
</second>
</item>
<item>
<first>indvar_flatten_reg_188</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>12</item>
</second>
</item>
<item>
<first>j_0_i_reg_199</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>13</item>
</second>
</item>
<item>
<first>row_outbuf_i_addr_reg_332</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>34</item>
</second>
</item>
<item>
<first>tmp_3_mid2_v_reg_321</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>24</item>
</second>
</item>
<item>
<first>tmp_3_reg_328</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>36</item>
</second>
</item>
</dp_regname_nodes>
<dp_reg_phi>
<count>3</count>
<item_version>0</item_version>
<item>
<first>188</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>12</item>
</second>
</item>
<item>
<first>199</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>13</item>
</second>
</item>
<item>
<first>210</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</second>
</item>
</dp_reg_phi>
<dp_regname_phi>
<count>3</count>
<item_version>0</item_version>
<item>
<first>i_1_i_reg_210</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</second>
</item>
<item>
<first>indvar_flatten_reg_188</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>12</item>
</second>
</item>
<item>
<first>j_0_i_reg_199</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>13</item>
</second>
</item>
</dp_regname_phi>
<dp_port_io_nodes class_id="59" tracking_level="0" version="0">
<count>9</count>
<item_version>0</item_version>
<item class_id="60" tracking_level="0" version="0">
<first>col_inbuf_0(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>store</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>64</item>
</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_1(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>store</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>60</item>
</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_2(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>store</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>56</item>
</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_3(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>store</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>52</item>
</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_4(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>store</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>48</item>
</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_5(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>store</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>44</item>
</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_6(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>store</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>40</item>
</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_7(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>store</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>68</item>
</second>
</item>
</second>
</item>
<item>
<first>row_outbuf_i(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>load</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>35</item>
<item>35</item>
</second>
</item>
</second>
</item>
</dp_port_io_nodes>
<port2core class_id="61" tracking_level="0" version="0">
<count>9</count>
<item_version>0</item_version>
<item class_id="62" tracking_level="0" version="0">
<first>1</first>
<second>RAM</second>
</item>
<item>
<first>2</first>
<second>RAM</second>
</item>
<item>
<first>3</first>
<second>RAM</second>
</item>
<item>
<first>4</first>
<second>RAM</second>
</item>
<item>
<first>5</first>
<second>RAM</second>
</item>
<item>
<first>6</first>
<second>RAM</second>
</item>
<item>
<first>7</first>
<second>RAM</second>
</item>
<item>
<first>8</first>
<second>RAM</second>
</item>
<item>
<first>9</first>
<second>RAM</second>
</item>
</port2core>
<node2core>
<count>0</count>
<item_version>0</item_version>
</node2core>
</syndb>
</boost_serialization>
| 30.305274 | 86 | 0.428488 |
cb5650c80fcd4c7966f9ad56dc86c19560767266 | 6,539 | adb | Ada | gcc-gcc-7_3_0-release/gcc/ada/sinput-p.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 15 | 2015-01-18T23:04:19.000Z | 2022-03-01T20:27:08.000Z | gcc-gcc-7_3_0-release/gcc/ada/sinput-p.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 16 | 2018-06-10T07:09:30.000Z | 2022-03-26T18:28:40.000Z | gcc-gcc-7_3_0-release/gcc/ada/sinput-p.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 3 | 2015-11-11T18:00:14.000Z | 2022-01-30T23:08:45.000Z | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- S I N P U T . P --
-- --
-- B o d y --
-- --
-- Copyright (C) 1992-2012, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT 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 GNAT; see file COPYING3. If not, go to --
-- http://www.gnu.org/licenses for a complete copy of the license. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with Ada.Unchecked_Conversion;
with Ada.Unchecked_Deallocation;
with Prj.Err;
with Sinput.C;
with System;
package body Sinput.P is
First : Boolean := True;
-- Flag used when Load_Project_File is called the first time,
-- to set Main_Source_File.
-- The flag is reset to False at the first call to Load_Project_File.
-- Calling Reset_First sets it back to True.
procedure Free is new Ada.Unchecked_Deallocation
(Lines_Table_Type, Lines_Table_Ptr);
procedure Free is new Ada.Unchecked_Deallocation
(Logical_Lines_Table_Type, Logical_Lines_Table_Ptr);
-----------------------------
-- Clear_Source_File_Table --
-----------------------------
procedure Clear_Source_File_Table is
use System;
begin
for X in 1 .. Source_File.Last loop
declare
S : Source_File_Record renames Source_File.Table (X);
Lo : constant Source_Ptr := S.Source_First;
Hi : constant Source_Ptr := S.Source_Last;
subtype Actual_Source_Buffer is Source_Buffer (Lo .. Hi);
-- Physical buffer allocated
type Actual_Source_Ptr is access Actual_Source_Buffer;
-- This is the pointer type for the physical buffer allocated
procedure Free is new Ada.Unchecked_Deallocation
(Actual_Source_Buffer, Actual_Source_Ptr);
pragma Suppress (All_Checks);
pragma Warnings (Off);
-- The following unchecked conversion is aliased safe, since it
-- is not used to create improperly aliased pointer values.
function To_Actual_Source_Ptr is new
Ada.Unchecked_Conversion (Address, Actual_Source_Ptr);
pragma Warnings (On);
Actual_Ptr : Actual_Source_Ptr :=
To_Actual_Source_Ptr (S.Source_Text (Lo)'Address);
begin
Free (Actual_Ptr);
Free (S.Lines_Table);
Free (S.Logical_Lines_Table);
end;
end loop;
Source_File.Free;
Sinput.Initialize;
end Clear_Source_File_Table;
-----------------------
-- Load_Project_File --
-----------------------
function Load_Project_File (Path : String) return Source_File_Index is
X : Source_File_Index;
begin
X := Sinput.C.Load_File (Path);
if First then
Main_Source_File := X;
First := False;
end if;
return X;
end Load_Project_File;
-----------------
-- Reset_First --
-----------------
procedure Reset_First is
begin
First := True;
end Reset_First;
--------------------------------
-- Restore_Project_Scan_State --
--------------------------------
procedure Restore_Project_Scan_State
(Saved_State : Saved_Project_Scan_State)
is
begin
Restore_Scan_State (Saved_State.Scan_State);
Source := Saved_State.Source;
Current_Source_File := Saved_State.Current_Source_File;
end Restore_Project_Scan_State;
-----------------------------
-- Save_Project_Scan_State --
-----------------------------
procedure Save_Project_Scan_State
(Saved_State : out Saved_Project_Scan_State)
is
begin
Save_Scan_State (Saved_State.Scan_State);
Saved_State.Source := Source;
Saved_State.Current_Source_File := Current_Source_File;
end Save_Project_Scan_State;
----------------------------
-- Source_File_Is_Subunit --
----------------------------
function Source_File_Is_Subunit (X : Source_File_Index) return Boolean is
begin
-- Nothing to do if X is no source file, so simply return False
if X = No_Source_File then
return False;
end if;
Prj.Err.Scanner.Initialize_Scanner (X);
-- No error for special characters that are used for preprocessing
Prj.Err.Scanner.Set_Special_Character ('#');
Prj.Err.Scanner.Set_Special_Character ('$');
Check_For_BOM;
-- We scan past junk to the first interesting compilation unit token, to
-- see if it is SEPARATE. We ignore WITH keywords during this and also
-- PRIVATE. The reason for ignoring PRIVATE is that it handles some
-- error situations, and also to handle PRIVATE WITH in Ada 2005 mode.
while Token = Tok_With
or else Token = Tok_Private
or else (Token not in Token_Class_Cunit and then Token /= Tok_EOF)
loop
Prj.Err.Scanner.Scan;
end loop;
Prj.Err.Scanner.Reset_Special_Characters;
return Token = Tok_Separate;
end Source_File_Is_Subunit;
end Sinput.P;
| 34.967914 | 79 | 0.539532 |
4a1b538a0a328065a8bd970d628a9abfd612496f | 896 | ads | Ada | bssn/code/src/bssnbase-text_io.ads | leo-brewin/adm-bssn-numerical | 9e32c201272e9a41e7535475fe381e450b99b058 | [
"MIT"
] | 1 | 2022-01-25T11:36:06.000Z | 2022-01-25T11:36:06.000Z | bssn/code/src/bssnbase-text_io.ads | leo-brewin/adm-bssn-numerical | 9e32c201272e9a41e7535475fe381e450b99b058 | [
"MIT"
] | null | null | null | bssn/code/src/bssnbase-text_io.ads | leo-brewin/adm-bssn-numerical | 9e32c201272e9a41e7535475fe381e450b99b058 | [
"MIT"
] | null | null | null | package BSSNBase.Text_IO is
procedure write_results;
procedure write_history;
procedure write_summary;
procedure write_summary_header;
procedure write_summary_trailer;
procedure create_text_io_lists;
xy_index_list_ptr : GridIndexList_ptr := new GridIndexList (1..max_num_x*max_num_y);
xz_index_list_ptr : GridIndexList_ptr := new GridIndexList (1..max_num_x*max_num_z);
yz_index_list_ptr : GridIndexList_ptr := new GridIndexList (1..max_num_y*max_num_z);
xy_index_list : GridIndexList renames xy_index_list_ptr.all;
xz_index_list : GridIndexList renames xz_index_list_ptr.all;
yz_index_list : GridIndexList renames yz_index_list_ptr.all;
xy_index_num : Integer := 0;
xz_index_num : Integer := 0;
yz_index_num : Integer := 0;
sample_point : GridPoint; -- the grid point used by write_history
end BSSNBase.Text_IO;
| 33.185185 | 87 | 0.752232 |
cbd05818a7ad5ce92e4f98ff8cb3f1c858bb4900 | 3,707 | ads | Ada | arch/ARM/STM32/driversL4/stm32-syscfg.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | 2 | 2018-05-16T03:56:39.000Z | 2019-07-31T13:53:56.000Z | arch/ARM/STM32/driversL4/stm32-syscfg.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | null | null | null | arch/ARM/STM32/driversL4/stm32-syscfg.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- Copyright (C) 2015-2017, AdaCore --
-- --
-- Redistribution and use in source and binary forms, with or without --
-- modification, are permitted provided that the following conditions are --
-- met: --
-- 1. Redistributions of source code must retain the above copyright --
-- notice, this list of conditions and the following disclaimer. --
-- 2. Redistributions in binary form must reproduce the above copyright --
-- notice, this list of conditions and the following disclaimer in --
-- the documentation and/or other materials provided with the --
-- distribution. --
-- 3. Neither the name of STMicroelectronics nor the names of its --
-- contributors may be used to endorse or promote products derived --
-- from this software without specific prior written permission. --
-- --
-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS --
-- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT --
-- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR --
-- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT --
-- HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, --
-- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT --
-- LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, --
-- DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY --
-- THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT --
-- (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE --
-- OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. --
-- --
-- --
-- This file is based on: --
-- --
-- @file stm32f407xx.h et al. --
-- @author MCD Application Team --
-- @version V1.1.0 --
-- @date 19-June-2014 --
-- @brief CMSIS STM32F407xx Device Peripheral Access Layer Header File. --
-- --
-- COPYRIGHT(c) 2014 STMicroelectronics --
------------------------------------------------------------------------------
-- This file provides register definitions for the STM32L4 (ARM Cortex M4F)
-- microcontrollers from ST Microelectronics.
with STM32.GPIO; use STM32.GPIO;
package STM32.SYSCFG is
procedure Connect_External_Interrupt
(Port : GPIO_Port; Pin : GPIO_Pin) with Inline;
procedure Connect_External_Interrupt
(Point : GPIO_Point) with Inline;
procedure Connect_External_Interrupt
(Port : GPIO_Port; Pins : GPIO_Pins) with Inline;
procedure Clear_External_Interrupt (Pin : GPIO_Pin) with Inline;
end STM32.SYSCFG;
| 60.770492 | 78 | 0.480712 |
cbbe686ee2f8dab30b4323cac6a464fd8ff11ca0 | 21,661 | ads | Ada | arch/ARM/STM32/svd/stm32l4x5/stm32_svd-sai.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | 2 | 2018-05-16T03:56:39.000Z | 2019-07-31T13:53:56.000Z | arch/ARM/STM32/svd/stm32l4x5/stm32_svd-sai.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | null | null | null | arch/ARM/STM32/svd/stm32l4x5/stm32_svd-sai.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | null | null | null | -- This spec has been automatically generated from STM32L4x5.svd
pragma Restrictions (No_Elaboration_Code);
pragma Ada_2012;
pragma Style_Checks (Off);
with HAL;
with System;
package STM32_SVD.SAI is
pragma Preelaborate;
---------------
-- Registers --
---------------
subtype ACR1_MODE_Field is HAL.UInt2;
subtype ACR1_PRTCFG_Field is HAL.UInt2;
subtype ACR1_DS_Field is HAL.UInt3;
subtype ACR1_SYNCEN_Field is HAL.UInt2;
subtype ACR1_MCJDIV_Field is HAL.UInt4;
-- AConfiguration register 1
type ACR1_Register is record
-- Audio block mode
MODE : ACR1_MODE_Field := 16#0#;
-- Protocol configuration
PRTCFG : ACR1_PRTCFG_Field := 16#0#;
-- unspecified
Reserved_4_4 : HAL.Bit := 16#0#;
-- Data size
DS : ACR1_DS_Field := 16#2#;
-- Least significant bit first
LSBFIRST : Boolean := False;
-- Clock strobing edge
CKSTR : Boolean := False;
-- Synchronization enable
SYNCEN : ACR1_SYNCEN_Field := 16#0#;
-- Mono mode
MONO : Boolean := False;
-- Output drive
OutDri : Boolean := False;
-- unspecified
Reserved_14_15 : HAL.UInt2 := 16#0#;
-- Audio block A enable
SAIAEN : Boolean := False;
-- DMA enable
DMAEN : Boolean := False;
-- unspecified
Reserved_18_18 : HAL.Bit := 16#0#;
-- No divider
NODIV : Boolean := False;
-- Master clock divider
MCJDIV : ACR1_MCJDIV_Field := 16#0#;
-- unspecified
Reserved_24_31 : HAL.UInt8 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for ACR1_Register use record
MODE at 0 range 0 .. 1;
PRTCFG at 0 range 2 .. 3;
Reserved_4_4 at 0 range 4 .. 4;
DS at 0 range 5 .. 7;
LSBFIRST at 0 range 8 .. 8;
CKSTR at 0 range 9 .. 9;
SYNCEN at 0 range 10 .. 11;
MONO at 0 range 12 .. 12;
OutDri at 0 range 13 .. 13;
Reserved_14_15 at 0 range 14 .. 15;
SAIAEN at 0 range 16 .. 16;
DMAEN at 0 range 17 .. 17;
Reserved_18_18 at 0 range 18 .. 18;
NODIV at 0 range 19 .. 19;
MCJDIV at 0 range 20 .. 23;
Reserved_24_31 at 0 range 24 .. 31;
end record;
subtype ACR2_FTH_Field is HAL.UInt3;
subtype ACR2_MUTECN_Field is HAL.UInt6;
subtype ACR2_COMP_Field is HAL.UInt2;
-- AConfiguration register 2
type ACR2_Register is record
-- FIFO threshold
FTH : ACR2_FTH_Field := 16#0#;
-- FIFO flush
FFLUS : Boolean := False;
-- Tristate management on data line
TRIS : Boolean := False;
-- Mute
MUTE : Boolean := False;
-- Mute value
MUTEVAL : Boolean := False;
-- Mute counter
MUTECN : ACR2_MUTECN_Field := 16#0#;
-- Complement bit
CPL : Boolean := False;
-- Companding mode
COMP : ACR2_COMP_Field := 16#0#;
-- unspecified
Reserved_16_31 : HAL.UInt16 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for ACR2_Register use record
FTH at 0 range 0 .. 2;
FFLUS at 0 range 3 .. 3;
TRIS at 0 range 4 .. 4;
MUTE at 0 range 5 .. 5;
MUTEVAL at 0 range 6 .. 6;
MUTECN at 0 range 7 .. 12;
CPL at 0 range 13 .. 13;
COMP at 0 range 14 .. 15;
Reserved_16_31 at 0 range 16 .. 31;
end record;
subtype AFRCR_FRL_Field is HAL.UInt8;
subtype AFRCR_FSALL_Field is HAL.UInt7;
-- AFRCR
type AFRCR_Register is record
-- Frame length
FRL : AFRCR_FRL_Field := 16#7#;
-- Frame synchronization active level length
FSALL : AFRCR_FSALL_Field := 16#0#;
-- unspecified
Reserved_15_15 : HAL.Bit := 16#0#;
-- Frame synchronization definition
FSDEF : Boolean := False;
-- Frame synchronization polarity
FSPOL : Boolean := False;
-- Frame synchronization offset
FSOFF : Boolean := False;
-- unspecified
Reserved_19_31 : HAL.UInt13 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for AFRCR_Register use record
FRL at 0 range 0 .. 7;
FSALL at 0 range 8 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
FSDEF at 0 range 16 .. 16;
FSPOL at 0 range 17 .. 17;
FSOFF at 0 range 18 .. 18;
Reserved_19_31 at 0 range 19 .. 31;
end record;
subtype ASLOTR_FBOFF_Field is HAL.UInt5;
subtype ASLOTR_SLOTSZ_Field is HAL.UInt2;
subtype ASLOTR_NBSLOT_Field is HAL.UInt4;
subtype ASLOTR_SLOTEN_Field is HAL.UInt16;
-- ASlot register
type ASLOTR_Register is record
-- First bit offset
FBOFF : ASLOTR_FBOFF_Field := 16#0#;
-- unspecified
Reserved_5_5 : HAL.Bit := 16#0#;
-- Slot size
SLOTSZ : ASLOTR_SLOTSZ_Field := 16#0#;
-- Number of slots in an audio frame
NBSLOT : ASLOTR_NBSLOT_Field := 16#0#;
-- unspecified
Reserved_12_15 : HAL.UInt4 := 16#0#;
-- Slot enable
SLOTEN : ASLOTR_SLOTEN_Field := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for ASLOTR_Register use record
FBOFF at 0 range 0 .. 4;
Reserved_5_5 at 0 range 5 .. 5;
SLOTSZ at 0 range 6 .. 7;
NBSLOT at 0 range 8 .. 11;
Reserved_12_15 at 0 range 12 .. 15;
SLOTEN at 0 range 16 .. 31;
end record;
-- AInterrupt mask register2
type AIM_Register is record
-- Overrun/underrun interrupt enable
OVRUDRIE : Boolean := False;
-- Mute detection interrupt enable
MUTEDET : Boolean := False;
-- Wrong clock configuration interrupt enable
WCKCFG : Boolean := False;
-- FIFO request interrupt enable
FREQIE : Boolean := False;
-- Codec not ready interrupt enable
CNRDYIE : Boolean := False;
-- Anticipated frame synchronization detection interrupt enable
AFSDETIE : Boolean := False;
-- Late frame synchronization detection interrupt enable
LFSDET : Boolean := False;
-- unspecified
Reserved_7_31 : HAL.UInt25 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for AIM_Register use record
OVRUDRIE at 0 range 0 .. 0;
MUTEDET at 0 range 1 .. 1;
WCKCFG at 0 range 2 .. 2;
FREQIE at 0 range 3 .. 3;
CNRDYIE at 0 range 4 .. 4;
AFSDETIE at 0 range 5 .. 5;
LFSDET at 0 range 6 .. 6;
Reserved_7_31 at 0 range 7 .. 31;
end record;
subtype ASR_FLVL_Field is HAL.UInt3;
-- AStatus register
type ASR_Register is record
-- Overrun / underrun
OVRUDR : Boolean := False;
-- Mute detection
MUTEDET : Boolean := False;
-- Wrong clock configuration flag. This bit is read only
WCKCFG : Boolean := False;
-- FIFO request
FREQ : Boolean := False;
-- Codec not ready
CNRDY : Boolean := False;
-- Anticipated frame synchronization detection
AFSDET : Boolean := False;
-- Late frame synchronization detection
LFSDET : Boolean := False;
-- unspecified
Reserved_7_15 : HAL.UInt9 := 16#0#;
-- FIFO level threshold
FLVL : ASR_FLVL_Field := 16#0#;
-- unspecified
Reserved_19_31 : HAL.UInt13 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for ASR_Register use record
OVRUDR at 0 range 0 .. 0;
MUTEDET at 0 range 1 .. 1;
WCKCFG at 0 range 2 .. 2;
FREQ at 0 range 3 .. 3;
CNRDY at 0 range 4 .. 4;
AFSDET at 0 range 5 .. 5;
LFSDET at 0 range 6 .. 6;
Reserved_7_15 at 0 range 7 .. 15;
FLVL at 0 range 16 .. 18;
Reserved_19_31 at 0 range 19 .. 31;
end record;
-- AClear flag register
type ACLRFR_Register is record
-- Clear overrun / underrun
OVRUDR : Boolean := False;
-- Mute detection flag
MUTEDET : Boolean := False;
-- Clear wrong clock configuration flag
WCKCFG : Boolean := False;
-- unspecified
Reserved_3_3 : HAL.Bit := 16#0#;
-- Clear codec not ready flag
CNRDY : Boolean := False;
-- Clear anticipated frame synchronization detection flag
CAFSDET : Boolean := False;
-- Clear late frame synchronization detection flag
LFSDET : Boolean := False;
-- unspecified
Reserved_7_31 : HAL.UInt25 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for ACLRFR_Register use record
OVRUDR at 0 range 0 .. 0;
MUTEDET at 0 range 1 .. 1;
WCKCFG at 0 range 2 .. 2;
Reserved_3_3 at 0 range 3 .. 3;
CNRDY at 0 range 4 .. 4;
CAFSDET at 0 range 5 .. 5;
LFSDET at 0 range 6 .. 6;
Reserved_7_31 at 0 range 7 .. 31;
end record;
subtype BCR1_MODE_Field is HAL.UInt2;
subtype BCR1_PRTCFG_Field is HAL.UInt2;
subtype BCR1_DS_Field is HAL.UInt3;
subtype BCR1_SYNCEN_Field is HAL.UInt2;
subtype BCR1_MCJDIV_Field is HAL.UInt4;
-- BConfiguration register 1
type BCR1_Register is record
-- Audio block mode
MODE : BCR1_MODE_Field := 16#0#;
-- Protocol configuration
PRTCFG : BCR1_PRTCFG_Field := 16#0#;
-- unspecified
Reserved_4_4 : HAL.Bit := 16#0#;
-- Data size
DS : BCR1_DS_Field := 16#2#;
-- Least significant bit first
LSBFIRST : Boolean := False;
-- Clock strobing edge
CKSTR : Boolean := False;
-- Synchronization enable
SYNCEN : BCR1_SYNCEN_Field := 16#0#;
-- Mono mode
MONO : Boolean := False;
-- Output drive
OutDri : Boolean := False;
-- unspecified
Reserved_14_15 : HAL.UInt2 := 16#0#;
-- Audio block B enable
SAIBEN : Boolean := False;
-- DMA enable
DMAEN : Boolean := False;
-- unspecified
Reserved_18_18 : HAL.Bit := 16#0#;
-- No divider
NODIV : Boolean := False;
-- Master clock divider
MCJDIV : BCR1_MCJDIV_Field := 16#0#;
-- unspecified
Reserved_24_31 : HAL.UInt8 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for BCR1_Register use record
MODE at 0 range 0 .. 1;
PRTCFG at 0 range 2 .. 3;
Reserved_4_4 at 0 range 4 .. 4;
DS at 0 range 5 .. 7;
LSBFIRST at 0 range 8 .. 8;
CKSTR at 0 range 9 .. 9;
SYNCEN at 0 range 10 .. 11;
MONO at 0 range 12 .. 12;
OutDri at 0 range 13 .. 13;
Reserved_14_15 at 0 range 14 .. 15;
SAIBEN at 0 range 16 .. 16;
DMAEN at 0 range 17 .. 17;
Reserved_18_18 at 0 range 18 .. 18;
NODIV at 0 range 19 .. 19;
MCJDIV at 0 range 20 .. 23;
Reserved_24_31 at 0 range 24 .. 31;
end record;
subtype BCR2_FTH_Field is HAL.UInt3;
subtype BCR2_MUTECN_Field is HAL.UInt6;
subtype BCR2_COMP_Field is HAL.UInt2;
-- BConfiguration register 2
type BCR2_Register is record
-- FIFO threshold
FTH : BCR2_FTH_Field := 16#0#;
-- FIFO flush
FFLUS : Boolean := False;
-- Tristate management on data line
TRIS : Boolean := False;
-- Mute
MUTE : Boolean := False;
-- Mute value
MUTEVAL : Boolean := False;
-- Mute counter
MUTECN : BCR2_MUTECN_Field := 16#0#;
-- Complement bit
CPL : Boolean := False;
-- Companding mode
COMP : BCR2_COMP_Field := 16#0#;
-- unspecified
Reserved_16_31 : HAL.UInt16 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for BCR2_Register use record
FTH at 0 range 0 .. 2;
FFLUS at 0 range 3 .. 3;
TRIS at 0 range 4 .. 4;
MUTE at 0 range 5 .. 5;
MUTEVAL at 0 range 6 .. 6;
MUTECN at 0 range 7 .. 12;
CPL at 0 range 13 .. 13;
COMP at 0 range 14 .. 15;
Reserved_16_31 at 0 range 16 .. 31;
end record;
subtype BFRCR_FRL_Field is HAL.UInt8;
subtype BFRCR_FSALL_Field is HAL.UInt7;
-- BFRCR
type BFRCR_Register is record
-- Frame length
FRL : BFRCR_FRL_Field := 16#7#;
-- Frame synchronization active level length
FSALL : BFRCR_FSALL_Field := 16#0#;
-- unspecified
Reserved_15_15 : HAL.Bit := 16#0#;
-- Frame synchronization definition
FSDEF : Boolean := False;
-- Frame synchronization polarity
FSPOL : Boolean := False;
-- Frame synchronization offset
FSOFF : Boolean := False;
-- unspecified
Reserved_19_31 : HAL.UInt13 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for BFRCR_Register use record
FRL at 0 range 0 .. 7;
FSALL at 0 range 8 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
FSDEF at 0 range 16 .. 16;
FSPOL at 0 range 17 .. 17;
FSOFF at 0 range 18 .. 18;
Reserved_19_31 at 0 range 19 .. 31;
end record;
subtype BSLOTR_FBOFF_Field is HAL.UInt5;
subtype BSLOTR_SLOTSZ_Field is HAL.UInt2;
subtype BSLOTR_NBSLOT_Field is HAL.UInt4;
subtype BSLOTR_SLOTEN_Field is HAL.UInt16;
-- BSlot register
type BSLOTR_Register is record
-- First bit offset
FBOFF : BSLOTR_FBOFF_Field := 16#0#;
-- unspecified
Reserved_5_5 : HAL.Bit := 16#0#;
-- Slot size
SLOTSZ : BSLOTR_SLOTSZ_Field := 16#0#;
-- Number of slots in an audio frame
NBSLOT : BSLOTR_NBSLOT_Field := 16#0#;
-- unspecified
Reserved_12_15 : HAL.UInt4 := 16#0#;
-- Slot enable
SLOTEN : BSLOTR_SLOTEN_Field := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for BSLOTR_Register use record
FBOFF at 0 range 0 .. 4;
Reserved_5_5 at 0 range 5 .. 5;
SLOTSZ at 0 range 6 .. 7;
NBSLOT at 0 range 8 .. 11;
Reserved_12_15 at 0 range 12 .. 15;
SLOTEN at 0 range 16 .. 31;
end record;
-- BInterrupt mask register2
type BIM_Register is record
-- Overrun/underrun interrupt enable
OVRUDRIE : Boolean := False;
-- Mute detection interrupt enable
MUTEDET : Boolean := False;
-- Wrong clock configuration interrupt enable
WCKCFG : Boolean := False;
-- FIFO request interrupt enable
FREQIE : Boolean := False;
-- Codec not ready interrupt enable
CNRDYIE : Boolean := False;
-- Anticipated frame synchronization detection interrupt enable
AFSDETIE : Boolean := False;
-- Late frame synchronization detection interrupt enable
LFSDETIE : Boolean := False;
-- unspecified
Reserved_7_31 : HAL.UInt25 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for BIM_Register use record
OVRUDRIE at 0 range 0 .. 0;
MUTEDET at 0 range 1 .. 1;
WCKCFG at 0 range 2 .. 2;
FREQIE at 0 range 3 .. 3;
CNRDYIE at 0 range 4 .. 4;
AFSDETIE at 0 range 5 .. 5;
LFSDETIE at 0 range 6 .. 6;
Reserved_7_31 at 0 range 7 .. 31;
end record;
subtype BSR_FLVL_Field is HAL.UInt3;
-- BStatus register
type BSR_Register is record
-- Read-only. Overrun / underrun
OVRUDR : Boolean;
-- Read-only. Mute detection
MUTEDET : Boolean;
-- Read-only. Wrong clock configuration flag
WCKCFG : Boolean;
-- Read-only. FIFO request
FREQ : Boolean;
-- Read-only. Codec not ready
CNRDY : Boolean;
-- Read-only. Anticipated frame synchronization detection
AFSDET : Boolean;
-- Read-only. Late frame synchronization detection
LFSDET : Boolean;
-- unspecified
Reserved_7_15 : HAL.UInt9;
-- Read-only. FIFO level threshold
FLVL : BSR_FLVL_Field;
-- unspecified
Reserved_19_31 : HAL.UInt13;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for BSR_Register use record
OVRUDR at 0 range 0 .. 0;
MUTEDET at 0 range 1 .. 1;
WCKCFG at 0 range 2 .. 2;
FREQ at 0 range 3 .. 3;
CNRDY at 0 range 4 .. 4;
AFSDET at 0 range 5 .. 5;
LFSDET at 0 range 6 .. 6;
Reserved_7_15 at 0 range 7 .. 15;
FLVL at 0 range 16 .. 18;
Reserved_19_31 at 0 range 19 .. 31;
end record;
-- BClear flag register
type BCLRFR_Register is record
-- Write-only. Clear overrun / underrun
OVRUDR : Boolean := False;
-- Write-only. Mute detection flag
MUTEDET : Boolean := False;
-- Write-only. Clear wrong clock configuration flag
WCKCFG : Boolean := False;
-- unspecified
Reserved_3_3 : HAL.Bit := 16#0#;
-- Write-only. Clear codec not ready flag
CNRDY : Boolean := False;
-- Write-only. Clear anticipated frame synchronization detection flag
CAFSDET : Boolean := False;
-- Write-only. Clear late frame synchronization detection flag
LFSDET : Boolean := False;
-- unspecified
Reserved_7_31 : HAL.UInt25 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for BCLRFR_Register use record
OVRUDR at 0 range 0 .. 0;
MUTEDET at 0 range 1 .. 1;
WCKCFG at 0 range 2 .. 2;
Reserved_3_3 at 0 range 3 .. 3;
CNRDY at 0 range 4 .. 4;
CAFSDET at 0 range 5 .. 5;
LFSDET at 0 range 6 .. 6;
Reserved_7_31 at 0 range 7 .. 31;
end record;
-----------------
-- Peripherals --
-----------------
-- Serial audio interface
type SAI_Peripheral is record
-- AConfiguration register 1
ACR1 : aliased ACR1_Register;
-- AConfiguration register 2
ACR2 : aliased ACR2_Register;
-- AFRCR
AFRCR : aliased AFRCR_Register;
-- ASlot register
ASLOTR : aliased ASLOTR_Register;
-- AInterrupt mask register2
AIM : aliased AIM_Register;
-- AStatus register
ASR : aliased ASR_Register;
-- AClear flag register
ACLRFR : aliased ACLRFR_Register;
-- AData register
ADR : aliased HAL.UInt32;
-- BConfiguration register 1
BCR1 : aliased BCR1_Register;
-- BConfiguration register 2
BCR2 : aliased BCR2_Register;
-- BFRCR
BFRCR : aliased BFRCR_Register;
-- BSlot register
BSLOTR : aliased BSLOTR_Register;
-- BInterrupt mask register2
BIM : aliased BIM_Register;
-- BStatus register
BSR : aliased BSR_Register;
-- BClear flag register
BCLRFR : aliased BCLRFR_Register;
-- BData register
BDR : aliased HAL.UInt32;
end record
with Volatile;
for SAI_Peripheral use record
ACR1 at 16#4# range 0 .. 31;
ACR2 at 16#8# range 0 .. 31;
AFRCR at 16#C# range 0 .. 31;
ASLOTR at 16#10# range 0 .. 31;
AIM at 16#14# range 0 .. 31;
ASR at 16#18# range 0 .. 31;
ACLRFR at 16#1C# range 0 .. 31;
ADR at 16#20# range 0 .. 31;
BCR1 at 16#24# range 0 .. 31;
BCR2 at 16#28# range 0 .. 31;
BFRCR at 16#2C# range 0 .. 31;
BSLOTR at 16#30# range 0 .. 31;
BIM at 16#34# range 0 .. 31;
BSR at 16#38# range 0 .. 31;
BCLRFR at 16#3C# range 0 .. 31;
BDR at 16#40# range 0 .. 31;
end record;
-- Serial audio interface
SAI1_Periph : aliased SAI_Peripheral
with Import, Address => System'To_Address (16#40015400#);
-- Serial audio interface
SAI2_Periph : aliased SAI_Peripheral
with Import, Address => System'To_Address (16#40015800#);
end STM32_SVD.SAI;
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<second>conv_2d_large_cl&lt;ap_fixed&lt;14, 2, 0, 0, 0&gt;, ap_fixed&lt;14, 2, 0, 0, 0&gt;, config7&gt;</second>
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<item>
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<first>grp_im2col_2d_cl_fu_142 (im2col_2d_cl)</first>
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</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>data_col_V_we0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
</item>
<item>
<first>(1Bits)</first>
<second>1</second>
</item>
<item>
<first>(2Count)</first>
<second>2</second>
</item>
<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
<item>
<first>i_reg_85</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
</item>
<item>
<first>(1Bits)</first>
<second>4</second>
</item>
<item>
<first>(2Count)</first>
<second>8</second>
</item>
<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
<item>
<first>j_reg_109</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
</item>
<item>
<first>(1Bits)</first>
<second>4</second>
</item>
<item>
<first>(2Count)</first>
<second>8</second>
</item>
<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
<item>
<first>k_reg_121</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
</item>
<item>
<first>(1Bits)</first>
<second>5</second>
</item>
<item>
<first>(2Count)</first>
<second>10</second>
</item>
<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
<item>
<first>phi_mul_reg_97</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
</item>
<item>
<first>(1Bits)</first>
<second>12</second>
</item>
<item>
<first>(2Count)</first>
<second>24</second>
</item>
<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
<item>
<first>res_V_assign_address0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>4</second>
</item>
<item>
<first>(2Count)</first>
<second>12</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>res_V_assign_ce0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>1</second>
</item>
<item>
<first>(2Count)</first>
<second>3</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>res_V_assign_we0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
</item>
<item>
<first>(1Bits)</first>
<second>1</second>
</item>
<item>
<first>(2Count)</first>
<second>2</second>
</item>
<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
</dp_multiplexer_resource>
<dp_register_resource>
<count>15</count>
<item_version>0</item_version>
<item>
<first>ap_CS_fsm</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>9</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>9</second>
</item>
</second>
</item>
<item>
<first>ap_done_reg</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>1</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>1</second>
</item>
</second>
</item>
<item>
<first>grp_dense_large_rf_gt_ni_fu_132_ap_start_reg</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>1</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>1</second>
</item>
</second>
</item>
<item>
<first>grp_im2col_2d_cl_fu_142_ap_start_reg</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>1</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>1</second>
</item>
</second>
</item>
<item>
<first>i_8_reg_243</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>4</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>4</second>
</item>
</second>
</item>
<item>
<first>i_reg_85</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>4</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>4</second>
</item>
</second>
</item>
<item>
<first>j_1_reg_251</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>4</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>4</second>
</item>
</second>
</item>
<item>
<first>j_reg_109</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>4</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>4</second>
</item>
</second>
</item>
<item>
<first>k_1_reg_264</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>5</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>5</second>
</item>
</second>
</item>
<item>
<first>k_reg_121</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>5</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>5</second>
</item>
</second>
</item>
<item>
<first>next_mul_reg_235</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>12</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>12</second>
</item>
</second>
</item>
<item>
<first>phi_mul_reg_97</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>12</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>12</second>
</item>
</second>
</item>
<item>
<first>res_V_assign_load_reg_279</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>14</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>14</second>
</item>
</second>
</item>
<item>
<first>tmp_128_cast_cast_reg_256</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>9</second>
</item>
<item>
<first>(Consts)</first>
<second>5</second>
</item>
<item>
<first>FF</first>
<second>4</second>
</item>
</second>
</item>
<item>
<first>tmp_84_reg_269</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>12</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>12</second>
</item>
</second>
</item>
</dp_register_resource>
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<count>2</count>
<item_version>0</item_version>
<item>
<first>grp_dense_large_rf_gt_ni_fu_132</first>
<second>
<count>0</count>
<item_version>0</item_version>
</second>
</item>
<item>
<first>grp_im2col_2d_cl_fu_142</first>
<second>
<count>0</count>
<item_version>0</item_version>
</second>
</item>
</dp_dsp_resource>
<dp_component_map class_id="41" tracking_level="0" version="0">
<count>2</count>
<item_version>0</item_version>
<item class_id="42" tracking_level="0" version="0">
<first>grp_dense_large_rf_gt_ni_fu_132 (dense_large_rf_gt_ni)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>30</item>
</second>
</item>
<item>
<first>grp_im2col_2d_cl_fu_142 (im2col_2d_cl)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>29</item>
</second>
</item>
</dp_component_map>
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<count>9</count>
<item_version>0</item_version>
<item>
<first>i_8_fu_165_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</second>
</item>
<item>
<first>j_1_fu_177_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>24</item>
</second>
</item>
<item>
<first>k_1_fu_205_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>next_mul_fu_153_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>11</item>
</second>
</item>
<item>
<first>tmp1_fu_211_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>43</item>
</second>
</item>
<item>
<first>tmp_83_fu_199_p2 ( icmp ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>37</item>
</second>
</item>
<item>
<first>tmp_84_fu_220_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>45</item>
</second>
</item>
<item>
<first>tmp_fu_159_p2 ( icmp ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>12</item>
</second>
</item>
<item>
<first>tmp_s_fu_171_p2 ( icmp ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>22</item>
</second>
</item>
</dp_expression_map>
<dp_fifo_map>
<count>0</count>
<item_version>0</item_version>
</dp_fifo_map>
<dp_memory_map>
<count>2</count>
<item_version>0</item_version>
<item>
<first>data_col_V_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>95</item>
</second>
</item>
<item>
<first>res_V_assign_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>105</item>
</second>
</item>
</dp_memory_map>
</res>
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<count>37</count>
<item_version>0</item_version>
<item class_id="44" tracking_level="0" version="0">
<first>5</first>
<second class_id="45" tracking_level="0" version="0">
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>6</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>7</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>9</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>10</first>
<second>
<first>1</first>
<second>0</second>
</second>
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<item>
<first>11</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>12</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>14</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>15</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>19</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>21</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>22</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>24</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>25</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>29</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>30</first>
<second>
<first>4</first>
<second>1</second>
</second>
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<item>
<first>31</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>32</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>33</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>35</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>36</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>37</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>39</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>40</first>
<second>
<first>6</first>
<second>0</second>
</second>
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<item>
<first>43</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>44</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>45</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>46</first>
<second>
<first>8</first>
<second>0</second>
</second>
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<item>
<first>47</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>48</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>49</first>
<second>
<first>6</first>
<second>1</second>
</second>
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<item>
<first>50</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>51</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>52</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>55</first>
<second>
<first>6</first>
<second>0</second>
</second>
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<first>58</first>
<second>
<first>2</first>
<second>0</second>
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<first>60</first>
<second>
<first>1</first>
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<first>1</first>
<second>1</second>
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<item>
<first>20</first>
<second>
<first>1</first>
<second>1</second>
</second>
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<item>
<first>26</first>
<second>
<first>2</first>
<second>2</second>
</second>
</item>
<item>
<first>34</first>
<second>
<first>2</first>
<second>5</second>
</second>
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<item>
<first>41</first>
<second>
<first>6</first>
<second>6</second>
</second>
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<first>53</first>
<second>
<first>6</first>
<second>8</second>
</second>
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<first>56</first>
<second>
<first>6</first>
<second>6</second>
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<first>59</first>
<second>
<first>2</first>
<second>2</second>
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<first>61</first>
<second>
<first>1</first>
<second>1</second>
</second>
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<second>
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<second>
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<second>
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<item>51</item>
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<second>
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<item>30</item>
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<item>29</item>
<item>29</item>
</second>
</item>
<item>
<first>153</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>11</item>
</second>
</item>
<item>
<first>159</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>12</item>
</second>
</item>
<item>
<first>165</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</second>
</item>
<item>
<first>171</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>22</item>
</second>
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<item>
<first>177</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>24</item>
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<item>
<first>183</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>31</item>
</second>
</item>
<item>
<first>191</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>32</item>
</second>
</item>
<item>
<first>195</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>36</item>
</second>
</item>
<item>
<first>199</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>37</item>
</second>
</item>
<item>
<first>205</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>211</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>43</item>
</second>
</item>
<item>
<first>216</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>44</item>
</second>
</item>
<item>
<first>220</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>45</item>
</second>
</item>
<item>
<first>226</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>47</item>
</second>
</item>
<item>
<first>231</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>46</item>
</second>
</item>
</dp_fu_nodes>
<dp_fu_nodes_expression class_id="53" tracking_level="0" version="0">
<count>23</count>
<item_version>0</item_version>
<item class_id="54" tracking_level="0" version="0">
<first>data_col_V_alloca_fu_52</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>5</item>
</second>
</item>
<item>
<first>i_8_fu_165</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</second>
</item>
<item>
<first>i_phi_fu_89</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>9</item>
</second>
</item>
<item>
<first>j_1_fu_177</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>24</item>
</second>
</item>
<item>
<first>j_phi_fu_113</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>21</item>
</second>
</item>
<item>
<first>k_1_fu_205</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>k_cast4_cast_fu_195</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>36</item>
</second>
</item>
<item>
<first>k_phi_fu_125</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>35</item>
</second>
</item>
<item>
<first>next_mul_fu_153</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>11</item>
</second>
</item>
<item>
<first>phi_mul_phi_fu_101</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>10</item>
</second>
</item>
<item>
<first>res_V_addr_gep_fu_72</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>50</item>
</second>
</item>
<item>
<first>res_V_assign_addr_gep_fu_60</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>48</item>
</second>
</item>
<item>
<first>res_V_assign_alloca_fu_56</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>6</item>
</second>
</item>
<item>
<first>tmp1_cast_fu_216</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>44</item>
</second>
</item>
<item>
<first>tmp1_fu_211</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>43</item>
</second>
</item>
<item>
<first>tmp_128_cast_cast_fu_191</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>32</item>
</second>
</item>
<item>
<first>tmp_82_fu_183</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>31</item>
</second>
</item>
<item>
<first>tmp_83_fu_199</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>37</item>
</second>
</item>
<item>
<first>tmp_84_fu_220</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>45</item>
</second>
</item>
<item>
<first>tmp_85_fu_231</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>46</item>
</second>
</item>
<item>
<first>tmp_86_fu_226</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>47</item>
</second>
</item>
<item>
<first>tmp_fu_159</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>12</item>
</second>
</item>
<item>
<first>tmp_s_fu_171</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>22</item>
</second>
</item>
</dp_fu_nodes_expression>
<dp_fu_nodes_module>
<count>2</count>
<item_version>0</item_version>
<item>
<first>grp_dense_large_rf_gt_ni_fu_132</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>30</item>
<item>30</item>
</second>
</item>
<item>
<first>grp_im2col_2d_cl_fu_142</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>29</item>
<item>29</item>
</second>
</item>
</dp_fu_nodes_module>
<dp_fu_nodes_io>
<count>0</count>
<item_version>0</item_version>
</dp_fu_nodes_io>
<return_ports>
<count>0</count>
<item_version>0</item_version>
</return_ports>
<dp_mem_port_nodes class_id="55" tracking_level="0" version="0">
<count>5</count>
<item_version>0</item_version>
<item class_id="56" tracking_level="0" version="0">
<first class_id="57" tracking_level="0" version="0">
<first>outidx6</first>
<second>100</second>
</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>30</item>
</second>
</item>
<item>
<first>
<first>res_V</first>
<second>0</second>
</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>51</item>
</second>
</item>
<item>
<first>
<first>res_V_assign</first>
<second>0</second>
</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>49</item>
<item>49</item>
</second>
</item>
<item>
<first>
<first>res_V_assign</first>
<second>100</second>
</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>30</item>
</second>
</item>
<item>
<first>
<first>w7_V</first>
<second>100</second>
</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>30</item>
</second>
</item>
</dp_mem_port_nodes>
<dp_reg_nodes>
<count>12</count>
<item_version>0</item_version>
<item>
<first>85</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>9</item>
</second>
</item>
<item>
<first>97</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>10</item>
</second>
</item>
<item>
<first>109</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>21</item>
</second>
</item>
<item>
<first>121</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>35</item>
</second>
</item>
<item>
<first>235</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>11</item>
</second>
</item>
<item>
<first>243</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</second>
</item>
<item>
<first>251</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>24</item>
</second>
</item>
<item>
<first>256</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>32</item>
</second>
</item>
<item>
<first>264</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>269</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>45</item>
</second>
</item>
<item>
<first>274</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>48</item>
</second>
</item>
<item>
<first>279</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>49</item>
</second>
</item>
</dp_reg_nodes>
<dp_regname_nodes>
<count>12</count>
<item_version>0</item_version>
<item>
<first>i_8_reg_243</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</second>
</item>
<item>
<first>i_reg_85</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>9</item>
</second>
</item>
<item>
<first>j_1_reg_251</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>24</item>
</second>
</item>
<item>
<first>j_reg_109</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>21</item>
</second>
</item>
<item>
<first>k_1_reg_264</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>k_reg_121</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>35</item>
</second>
</item>
<item>
<first>next_mul_reg_235</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>11</item>
</second>
</item>
<item>
<first>phi_mul_reg_97</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>10</item>
</second>
</item>
<item>
<first>res_V_assign_addr_reg_274</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>48</item>
</second>
</item>
<item>
<first>res_V_assign_load_reg_279</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>49</item>
</second>
</item>
<item>
<first>tmp_128_cast_cast_reg_256</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>32</item>
</second>
</item>
<item>
<first>tmp_84_reg_269</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>45</item>
</second>
</item>
</dp_regname_nodes>
<dp_reg_phi>
<count>4</count>
<item_version>0</item_version>
<item>
<first>85</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>9</item>
</second>
</item>
<item>
<first>97</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>10</item>
</second>
</item>
<item>
<first>109</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>21</item>
</second>
</item>
<item>
<first>121</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>35</item>
</second>
</item>
</dp_reg_phi>
<dp_regname_phi>
<count>4</count>
<item_version>0</item_version>
<item>
<first>i_reg_85</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>9</item>
</second>
</item>
<item>
<first>j_reg_109</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>21</item>
</second>
</item>
<item>
<first>k_reg_121</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>35</item>
</second>
</item>
<item>
<first>phi_mul_reg_97</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>10</item>
</second>
</item>
</dp_regname_phi>
<dp_port_io_nodes class_id="58" tracking_level="0" version="0">
<count>1</count>
<item_version>0</item_version>
<item class_id="59" tracking_level="0" version="0">
<first>res_V(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>store</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>51</item>
</second>
</item>
</second>
</item>
</dp_port_io_nodes>
<port2core class_id="60" tracking_level="0" version="0">
<count>2</count>
<item_version>0</item_version>
<item class_id="61" tracking_level="0" version="0">
<first>1</first>
<second>RAM</second>
</item>
<item>
<first>2</first>
<second>RAM</second>
</item>
</port2core>
<node2core>
<count>2</count>
<item_version>0</item_version>
<item>
<first>5</first>
<second>RAM</second>
</item>
<item>
<first>6</first>
<second>RAM</second>
</item>
</node2core>
</syndb>
</boost_serialization>
| 32.236406 | 168 | 0.465079 |
d088f826c4ab8ca67e8fd375c01f59d4cbbeaa74 | 570 | adb | Ada | src/cupcake-backends.adb | skordal/cupcake | 42d8549c64966fc4077db89c2e62fa2f5733512c | [
"MIT"
] | 2 | 2017-10-07T05:41:44.000Z | 2018-06-12T14:05:12.000Z | src/cupcake-backends.adb | skordal/cupcake | 42d8549c64966fc4077db89c2e62fa2f5733512c | [
"MIT"
] | null | null | null | src/cupcake-backends.adb | skordal/cupcake | 42d8549c64966fc4077db89c2e62fa2f5733512c | [
"MIT"
] | null | null | null | -- The Cupcake GUI Toolkit
-- (c) Kristian Klomsten Skordal 2012 <kristian.skordal@gmail.com>
-- Report bugs and issues on <http://github.com/skordal/cupcake/issues>
-- vim:ts=3:sw=3:et:si:sta
package body Cupcake.Backends is
-- Gets the backend class to be used:
function Get_Backend return Backend_Access is
begin
return Active_Backend;
end Get_Backend;
-- Sets the backend to be used:
procedure Set_Backend (Use_Backend : in Backend_Access) is
begin
Active_Backend := Use_Backend;
end Set_Backend;
end Cupcake.Backends;
| 25.909091 | 72 | 0.717544 |
d00a6a4dea0e9cbf74a6ccc8e2a8c373db7a3c13 | 2,511 | adb | Ada | examples/cr_test_proc.adb | reznikmm/coroutines | 52dd5d483f09d69cdc133910e49d13664cf05d80 | [
"MIT"
] | 3 | 2019-11-11T06:35:21.000Z | 2019-11-13T13:34:56.000Z | examples/cr_test_proc.adb | reznikmm/coroutines | 52dd5d483f09d69cdc133910e49d13664cf05d80 | [
"MIT"
] | null | null | null | examples/cr_test_proc.adb | reznikmm/coroutines | 52dd5d483f09d69cdc133910e49d13664cf05d80 | [
"MIT"
] | null | null | null | -- Copyright (c) 2019 Maxim Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-- License-Filename: LICENSE
-------------------------------------------------------------
with Ada.Characters.Latin_1;
with Ada.Streams;
with Ada.Strings.Fixed;
with Ada.Text_IO;
with GNAT.Sockets;
with Coroutines.Polling;
procedure CR_Test_Proc is
function Get (URL : String) return Ada.Streams.Stream_Element_Array;
-- Make HTTP GET request
function Get (URL : String) return Ada.Streams.Stream_Element_Array is
use type Ada.Streams.Stream_Element_Offset;
Socket : GNAT.Sockets.Socket_Type;
Slash : constant Natural := Ada.Strings.Fixed.Index
(Source => URL,
Pattern => "/",
From => URL'First + 7);
Host : constant String := URL (URL'First + 7 .. Slash - 1);
Request : String := "GET " & URL (Slash .. URL'Last) & " HTTP/1.1"
& Ada.Characters.Latin_1.CR
& Ada.Characters.Latin_1.LF
& "Host: " & Host
& Ada.Characters.Latin_1.CR
& Ada.Characters.Latin_1.LF
& Ada.Characters.Latin_1.CR
& Ada.Characters.Latin_1.LF;
Data : Ada.Streams.Stream_Element_Array (1 .. Request'Length)
with Import, Convention => Ada, Address => Request'Address;
Last : Ada.Streams.Stream_Element_Offset;
Address : GNAT.Sockets.Sock_Addr_Type;
begin
Address.Addr := GNAT.Sockets.Addresses
(GNAT.Sockets.Get_Host_By_Name (Host), 1);
Address.Port := 80;
GNAT.Sockets.Create_Socket (Socket);
GNAT.Sockets.Connect_Socket (Socket, Address);
GNAT.Sockets.Send_Socket (Socket, Data, Last);
pragma Assert (Last = Data'Last);
-- Suspend current coroutine unti the socket has input.
Coroutines.Yield
(Coroutines.Polling.Watch
(File => Coroutines.Polling.FD (GNAT.Sockets.To_C (Socket)),
Events => (Coroutines.Polling.Input => True, others => False)));
declare
Output : Ada.Streams.Stream_Element_Array (1 .. 4096);
begin
GNAT.Sockets.Receive_Socket (Socket, Output, Last);
-- Code := 200;
Ada.Text_IO.Put_Line ("Last=" & (Last'Img));
return Output (1 .. Last);
end;
end Get;
Response : Ada.Streams.Stream_Element_Array :=
Get ("http://www.google.com/");
Text : String (1 .. Response'Length)
with Import, Convention => Ada, Address => Response'Address;
begin
Ada.Text_IO.Put_Line (Text);
end CR_Test_Proc;
| 33.48 | 76 | 0.62047 |
dc5a69c41c82110ed02b6af27aeb2b42aa3268de | 1,126 | ads | Ada | mat/regtests/mat-expressions-tests.ads | stcarrez/mat | fb242feb5662b8130680cd06e50da7ef40b95bd7 | [
"Apache-2.0"
] | 7 | 2015-01-18T23:04:30.000Z | 2021-04-06T14:07:56.000Z | mat/regtests/mat-expressions-tests.ads | stcarrez/mat | fb242feb5662b8130680cd06e50da7ef40b95bd7 | [
"Apache-2.0"
] | null | null | null | mat/regtests/mat-expressions-tests.ads | stcarrez/mat | fb242feb5662b8130680cd06e50da7ef40b95bd7 | [
"Apache-2.0"
] | null | null | null | -----------------------------------------------------------------------
-- mat-expressions-tests -- Unit tests for MAT expressions
-- Copyright (C) 2014 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with Util.Tests;
package MAT.Expressions.Tests is
procedure Add_Tests (Suite : in Util.Tests.Access_Test_Suite);
type Test is new Util.Tests.Test with null record;
procedure Test_Parse_Expression (T : in out Test);
end MAT.Expressions.Tests;
| 37.533333 | 76 | 0.646536 |
4a466d171bf71eff3d07246fb97ab01232892665 | 5,480 | adb | Ada | sources/ada/processes.adb | reznikmm/jupyter | 159f8ae87a3da8bf66e059db07b23de826d81293 | [
"MIT"
] | 4 | 2020-06-17T16:45:16.000Z | 2022-01-19T22:55:48.000Z | sources/ada/processes.adb | reznikmm/jupyter | 159f8ae87a3da8bf66e059db07b23de826d81293 | [
"MIT"
] | null | null | null | sources/ada/processes.adb | reznikmm/jupyter | 159f8ae87a3da8bf66e059db07b23de826d81293 | [
"MIT"
] | null | null | null | -- SPDX-FileCopyrightText: 2020 Max Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
----------------------------------------------------------------
with Ada.Streams;
with Ada.Exceptions;
with League.Stream_Element_Vectors;
with League.Text_Codecs;
with Spawn.Environments;
with Spawn.Processes.Monitor_Loop;
with Spawn.Processes;
with Spawn.String_Vectors;
package body Processes is
function "+" (Text : Wide_Wide_String)
return League.Strings.Universal_String
renames League.Strings.To_Universal_String;
---------
-- Run --
---------
procedure Run
(Program : League.Strings.Universal_String;
Arguments : League.String_Vectors.Universal_String_Vector;
Directory : League.Strings.Universal_String;
Env : Environment := No_Env;
Output : out League.Strings.Universal_String;
Errors : out League.Strings.Universal_String;
Status : out Integer)
is
type Listener is new Spawn.Processes.Process_Listener with record
Output : League.Stream_Element_Vectors.Stream_Element_Vector;
Errors : League.Stream_Element_Vectors.Stream_Element_Vector;
Status : Integer := 0;
Done : Boolean := False;
Write : Boolean := True;
end record;
procedure Standard_Output_Available (Self : in out Listener);
procedure Standard_Error_Available (Self : in out Listener);
procedure Finished
(Self : in out Listener;
Exit_Status : Spawn.Processes.Process_Exit_Status;
Exit_Code : Spawn.Processes.Process_Exit_Code);
procedure Error_Occurred
(Self : in out Listener;
Process_Error : Integer);
procedure Exception_Occurred
(Self : in out Listener;
Occurrence : Ada.Exceptions.Exception_Occurrence);
Process : Spawn.Processes.Process;
Codec : constant League.Text_Codecs.Text_Codec :=
League.Text_Codecs.Codec_For_Application_Locale;
-------------------------------
-- Standard_Output_Available --
-------------------------------
procedure Standard_Output_Available (Self : in out Listener) is
use type Ada.Streams.Stream_Element_Count;
Data : Ada.Streams.Stream_Element_Array (1 .. 512);
Last : Ada.Streams.Stream_Element_Count;
begin
loop
Process.Read_Standard_Output (Data, Last);
exit when Last < Data'First;
Self.Output.Append (Data (1 .. Last));
end loop;
end Standard_Output_Available;
------------------------------
-- Standard_Error_Available --
------------------------------
procedure Standard_Error_Available (Self : in out Listener) is
use type Ada.Streams.Stream_Element_Count;
Data : Ada.Streams.Stream_Element_Array (1 .. 512);
Last : Ada.Streams.Stream_Element_Count;
begin
loop
Process.Read_Standard_Error (Data, Last);
exit when Last < Data'First;
Self.Errors.Append (Data (1 .. Last));
end loop;
end Standard_Error_Available;
--------------
-- Finished --
--------------
procedure Finished
(Self : in out Listener;
Exit_Status : Spawn.Processes.Process_Exit_Status;
Exit_Code : Spawn.Processes.Process_Exit_Code) is
pragma Unreferenced (Exit_Status);
begin
Self.Status := Integer (Exit_Code);
Self.Done := True;
end Finished;
--------------------
-- Error_Occurred --
--------------------
procedure Error_Occurred
(Self : in out Listener;
Process_Error : Integer) is
pragma Unreferenced (Self);
begin
Errors.Append (+"Error_Occurred");
Self.Status := Process_Error;
Self.Done := True;
end Error_Occurred;
procedure Exception_Occurred
(Self : in out Listener;
Occurrence : Ada.Exceptions.Exception_Occurrence) is
begin
Errors.Append
(League.Strings.From_UTF_8_String
(Ada.Exceptions.Exception_Information (Occurrence)));
Self.Status := -1;
Self.Done := True;
end Exception_Occurred;
Args : Spawn.String_Vectors.UTF_8_String_Vector;
Feedback : aliased Listener;
begin
Process.Set_Program (Program.To_UTF_8_String);
for J in 1 .. Arguments.Length loop
Args.Append (Arguments (J).To_UTF_8_String);
end loop;
if Env /= No_Env then
declare
Environment : Spawn.Environments.Process_Environment :=
Process.Environment;
begin
for J in 1 .. Env.Names.Length loop
Environment.Insert
(Env.Names (J).To_UTF_8_String,
Env.Values (J).To_UTF_8_String);
end loop;
Process.Set_Environment (Environment);
end;
end if;
Process.Set_Arguments (Args);
Process.Set_Working_Directory (Directory.To_UTF_8_String);
Process.Set_Listener (Feedback'Unchecked_Access);
Process.Start;
while not Feedback.Done loop
Spawn.Processes.Monitor_Loop (Timeout => 50);
end loop;
Output := Codec.Decode (Feedback.Output);
Errors.Append (Codec.Decode (Feedback.Errors));
Status := Feedback.Status;
end Run;
end Processes;
| 31.136364 | 71 | 0.598175 |
4ad9ec1958a14aebb15d0f340a9a11712d5aef7e | 799 | ads | Ada | gdb/testsuite/gdb.ada/arraydim/pck.ads | greyblue9/binutils-gdb | 05377632b124fe7600eea7f4ee0e9a35d1b0cbdc | [
"BSD-3-Clause"
] | 1 | 2020-10-14T03:24:35.000Z | 2020-10-14T03:24:35.000Z | gdb/testsuite/gdb.ada/arraydim/pck.ads | greyblue9/binutils-gdb | 05377632b124fe7600eea7f4ee0e9a35d1b0cbdc | [
"BSD-3-Clause"
] | null | null | null | gdb/testsuite/gdb.ada/arraydim/pck.ads | greyblue9/binutils-gdb | 05377632b124fe7600eea7f4ee0e9a35d1b0cbdc | [
"BSD-3-Clause"
] | null | null | null | -- Copyright 2013-2021 Free Software Foundation, Inc.
--
-- This program is free software; you can redistribute it and/or modify
-- it under the terms of the GNU General Public License as published by
-- the Free Software Foundation; either version 3 of the License, or
-- (at your option) any later version.
--
-- This program 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
-- along with this program. If not, see <http://www.gnu.org/licenses/>.
with System;
package Pck is
procedure Do_Nothing (A : System.Address);
end Pck;
| 38.047619 | 73 | 0.737171 |
cb29431235128e8fa15ad7ecc4cfd8a298736cc8 | 731 | ads | Ada | Lab1/src/data.ads | KHYehor/Parallel-Programming | 180ed9780b391ea7033df6c04aff3a47c457402a | [
"MIT"
] | null | null | null | Lab1/src/data.ads | KHYehor/Parallel-Programming | 180ed9780b391ea7033df6c04aff3a47c457402a | [
"MIT"
] | null | null | null | Lab1/src/data.ads | KHYehor/Parallel-Programming | 180ed9780b391ea7033df6c04aff3a47c457402a | [
"MIT"
] | null | null | null | generic
n: Integer;
package Data is
---Declaration of private types
type Vector is private;
type Matrix is private;
--Calculation function 1
function Func1 (A, B, C: in Vector; MA, ME : in Matrix) return Integer;
--Calculation function 2
function Func2 (MF, MG, MH, ML: in Matrix) return Integer;
--Calculation function 3
function Func3 (A, B, C: in Vector; MB, MM : in Matrix) return Integer;
--Filling matrix with ones
procedure Matrix_Filling_Ones(A: out Matrix);
--Filling vector with ones
procedure Vector_Filling_Ones (A: out vector);
--Determination private types
private
type Vector is array (1..n) of Integer;
type Matrix is array (1..n) of Vector;
end Data;
| 23.580645 | 74 | 0.688098 |
4ab97fe0fb31ec87ec73a9332282d2de35f50313 | 690 | ads | Ada | src/interface/yaml-dom-dumping.ads | robdaemon/AdaYaml | 2cb52c5e7eee3a2d9951945d5ddb4eeddc088f6e | [
"MIT"
] | 32 | 2017-08-02T16:45:34.000Z | 2021-08-18T20:12:57.000Z | src/interface/yaml-dom-dumping.ads | robdaemon/AdaYaml | 2cb52c5e7eee3a2d9951945d5ddb4eeddc088f6e | [
"MIT"
] | 15 | 2017-09-13T09:43:38.000Z | 2022-01-20T23:21:47.000Z | src/interface/yaml-dom-dumping.ads | robdaemon/AdaYaml | 2cb52c5e7eee3a2d9951945d5ddb4eeddc088f6e | [
"MIT"
] | 5 | 2017-09-19T16:54:22.000Z | 2020-04-09T07:17:02.000Z | -- part of AdaYaml, (c) 2017 Felix Krause
-- released under the terms of the MIT license, see the file "copying.txt"
with Yaml.Dom.Vectors;
with Yaml.Events.Queue;
with Yaml.Destination;
package Yaml.Dom.Dumping is
function To_Event_Queue (Document : Document_Reference)
return Events.Queue.Reference;
function To_Event_Queue (Documents : Vectors.Vector)
return Events.Queue.Reference;
procedure Dump (Document : Document_Reference;
Output : not null Destination.Pointer);
procedure Dump (Documents : Vectors.Vector;
Output : not null Destination.Pointer);
end Yaml.Dom.Dumping;
| 36.315789 | 75 | 0.668116 |
dc5d85c603d1796c7a0963c66c88fbf61e40684a | 7,477 | adb | Ada | src/ada/AeonFlux/Parser/Punctuation.adb | marcello-s/AeonFlux | b7481183e1493df29362e549d69ccbab71bece2a | [
"MIT"
] | null | null | null | src/ada/AeonFlux/Parser/Punctuation.adb | marcello-s/AeonFlux | b7481183e1493df29362e549d69ccbab71bece2a | [
"MIT"
] | null | null | null | src/ada/AeonFlux/Parser/Punctuation.adb | marcello-s/AeonFlux | b7481183e1493df29362e549d69ccbab71bece2a | [
"MIT"
] | null | null | null | -- Copyright (c) 2015-2019 Marcel Schneider
-- for details see License.txt
with Ada.Strings.Unbounded; use Ada.Strings.Unbounded;
with Ada.Containers.Hashed_Maps; use Ada.Containers;
with Tokens; use Tokens;
package body Punctuation is
procedure Initialize (O : in out Object) is
begin
-- Punctuators
O.Punctuators.Insert(To_Unbounded_String ("("), Tokens.LeftBracket);
O.Punctuators.Insert(To_Unbounded_String (")"), Tokens.RightBracket);
O.Punctuators.Insert(To_Unbounded_String ("{"), Tokens.LeftBrace);
O.Punctuators.Insert(To_Unbounded_String ("}"), Tokens.RightBrace);
O.Punctuators.Insert(To_Unbounded_String ("["), Tokens.LeftSquareBracket);
O.Punctuators.Insert(To_Unbounded_String ("]"), Tokens.RightSquareBracket);
O.Punctuators.Insert(To_Unbounded_String (";"), Tokens.Semicolon);
O.Punctuators.Insert(To_Unbounded_String (","), Tokens.Comma);
O.Punctuators.Insert(To_Unbounded_String ("."), Tokens.Point);
-- Operators
O.Operators.Insert(To_Unbounded_String ("?"), Tokens.Question);
O.Operators.Insert(To_Unbounded_String (":"), Tokens.Colon);
O.Operators.Insert(To_Unbounded_String ("~"), Tokens.Tilde);
O.Operators.Insert(To_Unbounded_String ("*"), Tokens.Asterisk);
O.Operators.Insert(To_Unbounded_String ("*="), Tokens.AsteriskEqual);
O.Operators.Insert(To_Unbounded_String ("%"), Tokens.Percent);
O.Operators.Insert(To_Unbounded_String ("%="), Tokens.PercentEqual);
O.Operators.Insert(To_Unbounded_String ("^"), Tokens.Carot);
O.Operators.Insert(To_Unbounded_String ("^="), Tokens.CarotEqual);
O.Operators.Insert(To_Unbounded_String ("/"), Tokens.Slash);
O.Operators.Insert(To_Unbounded_String ("/="), Tokens.SlashEqual);
O.Operators.Insert(To_Unbounded_String ("&"), Tokens.Ampersand);
O.Operators.Insert(To_Unbounded_String ("&&"), Tokens.Ampersand2);
O.Operators.Insert(To_Unbounded_String ("&&="), Tokens.AmpersandEqual);
O.Operators.Insert(To_Unbounded_String ("|"), Tokens.Pipe);
O.Operators.Insert(To_Unbounded_String ("||"), Tokens.Pipe2);
O.Operators.Insert(To_Unbounded_String ("|="), Tokens.PipeEqual);
O.Operators.Insert(To_Unbounded_String ("="), Tokens.Equal);
O.Operators.Insert(To_Unbounded_String ("=="), Tokens.Equal2);
O.Operators.Insert(To_Unbounded_String ("==="), Tokens.Equal3);
O.Operators.Insert(To_Unbounded_String ("!"), Tokens.Exclamation);
O.Operators.Insert(To_Unbounded_String ("!="), Tokens.ExclamationEqual);
O.Operators.Insert(To_Unbounded_String ("!=="), Tokens.ExclamationEqual2);
O.Operators.Insert(To_Unbounded_String ("+"), Tokens.Plus);
O.Operators.Insert(To_Unbounded_String ("++"), Tokens.Plus2);
O.Operators.Insert(To_Unbounded_String ("+="), Tokens.PlusEqual);
O.Operators.Insert(To_Unbounded_String ("-"), Tokens.Minus);
O.Operators.Insert(To_Unbounded_String ("--"), Tokens.Minus2);
O.Operators.Insert(To_Unbounded_String ("-="), Tokens.MinusEqual);
O.Operators.Insert(To_Unbounded_String ("<"), Tokens.LessThan);
O.Operators.Insert(To_Unbounded_String ("<<"), Tokens.LessThan2);
O.Operators.Insert(To_Unbounded_String ("<="), Tokens.LessThanEqual);
O.Operators.Insert(To_Unbounded_String ("<<="), Tokens.LessThan2Equal);
O.Operators.Insert(To_Unbounded_String (">"), Tokens.GreaterThan);
O.Operators.Insert(To_Unbounded_String (">>"), Tokens.GreaterThan2);
O.Operators.Insert(To_Unbounded_String (">="), Tokens.GreaterThanEqual);
O.Operators.Insert(To_Unbounded_String (">>="), Tokens.GreaterThan2Equal);
O.Operators.Insert(To_Unbounded_String (">>>"), Tokens.GreaterThan3);
O.Operators.Insert(To_Unbounded_String (">>>="), Tokens.GreaterThan3Equal);
-- reserved Keywords
O.Keywords.Insert(To_Unbounded_String ("break"), Tokens.Break);
O.Keywords.Insert(To_Unbounded_String ("case"), Tokens.Case_Tok);
O.Keywords.Insert(To_Unbounded_String ("catch"), Tokens.Catch);
O.Keywords.Insert(To_Unbounded_String ("continue"), Tokens.Continue);
O.Keywords.Insert(To_Unbounded_String ("debugger"), Tokens.Debugger);
O.Keywords.Insert(To_Unbounded_String ("default"), Tokens.Default);
O.Keywords.Insert(To_Unbounded_String ("delete"), Tokens.Delete);
O.Keywords.Insert(To_Unbounded_String ("do"), Tokens.Do_Tok);
O.Keywords.Insert(To_Unbounded_String ("else"), Tokens.Else_Tok);
O.Keywords.Insert(To_Unbounded_String ("finally"), Tokens.Finally);
O.Keywords.Insert(To_Unbounded_String ("for"), Tokens.For_Tok);
O.Keywords.Insert(To_Unbounded_String ("function"), Tokens.Function_Tok);
O.Keywords.Insert(To_Unbounded_String ("if"), Tokens.If_Tok);
O.Keywords.Insert(To_Unbounded_String ("in"), Tokens.In_Tok);
O.Keywords.Insert(To_Unbounded_String ("instanceof"), Tokens.Instanceof);
O.Keywords.Insert(To_Unbounded_String ("new"), Tokens.New_Tok);
O.Keywords.Insert(To_Unbounded_String ("return"), Tokens.Return_Tok);
O.Keywords.Insert(To_Unbounded_String ("switch"), Tokens.Switch);
O.Keywords.Insert(To_Unbounded_String ("this"), Tokens.This);
O.Keywords.Insert(To_Unbounded_String ("throw"), Tokens.Throw);
O.Keywords.Insert(To_Unbounded_String ("try"), Tokens.Try);
O.Keywords.Insert(To_Unbounded_String ("typeof"), Tokens.Typeof);
O.Keywords.Insert(To_Unbounded_String ("var"), Tokens.Var);
O.Keywords.Insert(To_Unbounded_String ("void"), Tokens.Void);
O.Keywords.Insert(To_Unbounded_String ("while"), Tokens.While_Tok);
O.Keywords.Insert(To_Unbounded_String ("with"), Tokens.With_Tok);
O.Keywords.Insert(To_Unbounded_String ("true"), Tokens.True);
O.Keywords.Insert(To_Unbounded_String ("false"), Tokens.False);
O.Keywords.Insert(To_Unbounded_String ("null"), Tokens.Null_Tok);
-- future reserved word
O.FutureReservedWords.Insert(To_Unbounded_String("class"), Tokens.Class);
O.FutureReservedWords.Insert(To_Unbounded_String("const"), Tokens.Const);
O.FutureReservedWords.Insert(To_Unbounded_String("enum"), Tokens.Enum);
O.FutureReservedWords.Insert(To_Unbounded_String("export"), Tokens.Export);
O.FutureReservedWords.Insert(To_Unbounded_String("extends"), Tokens.Extends);
O.FutureReservedWords.Insert(To_Unbounded_String("import"), Tokens.Import);
O.FutureReservedWords.Insert(To_Unbounded_String("super"), Tokens.Super);
O.FutureReservedWords.Insert(To_Unbounded_String("implements"), Tokens.Implements);
O.FutureReservedWords.Insert(To_Unbounded_String("interface"), Tokens.InterfaceType);
O.FutureReservedWords.Insert(To_Unbounded_String("let"), Tokens.Let);
O.FutureReservedWords.Insert(To_Unbounded_String("package"), Tokens.PackageType);
O.FutureReservedWords.Insert(To_Unbounded_String("private"), Tokens.PrivateScope);
O.FutureReservedWords.Insert(To_Unbounded_String("protected"), Tokens.ProtectedScope);
O.FutureReservedWords.Insert(To_Unbounded_String("public"), Tokens.Public);
O.FutureReservedWords.Insert(To_Unbounded_String("static"), Tokens.Static);
O.FutureReservedWords.Insert(To_Unbounded_String("yield"), Tokens.Yield);
end Initialize;
procedure Clear (O : in out Object) is
begin
O.Punctuators.Clear;
O.Operators.Clear;
O.Keywords.Clear;
end Clear;
end Punctuation;
| 60.788618 | 92 | 0.71847 |
cba5a562e80c18b4963572e43d4b6439d6393ad9 | 1,798 | ads | Ada | awa/src/awa-commands-stop.ads | My-Colaborations/ada-awa | cc2dee291a14e4df0dbc9c10285bf284a7f1caa8 | [
"Apache-2.0"
] | 81 | 2015-01-18T23:02:30.000Z | 2022-03-19T17:34:57.000Z | awa/src/awa-commands-stop.ads | My-Colaborations/ada-awa | cc2dee291a14e4df0dbc9c10285bf284a7f1caa8 | [
"Apache-2.0"
] | 20 | 2015-12-09T19:26:19.000Z | 2022-03-23T14:32:43.000Z | awa/src/awa-commands-stop.ads | My-Colaborations/ada-awa | cc2dee291a14e4df0dbc9c10285bf284a7f1caa8 | [
"Apache-2.0"
] | 16 | 2015-06-29T02:44:06.000Z | 2021-09-23T18:47:50.000Z | -----------------------------------------------------------------------
-- awa-commands-stop -- Command to stop the web server
-- Copyright (C) 2020 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with GNAT.Command_Line;
with AWA.Commands.Drivers;
generic
with package Command_Drivers is new AWA.Commands.Drivers (<>);
package AWA.Commands.Stop is
type Command_Type is new Command_Drivers.Command_Type with record
Management_Port : aliased Integer := 0;
end record;
-- Setup the command before parsing the arguments and executing it.
overriding
procedure Setup (Command : in out Command_Type;
Config : in out GNAT.Command_Line.Command_Line_Configuration;
Context : in out Context_Type);
-- Stop the server by sending a 'stop' command on the management socket.
overriding
procedure Execute (Command : in out Command_Type;
Name : in String;
Args : in Argument_List'Class;
Context : in out Context_Type);
Command : aliased Command_Type;
end AWA.Commands.Stop;
| 39.955556 | 82 | 0.631813 |
4a0af3b9548655aee2897072404c70e1411cdd16 | 257,619 | adb | Ada | hls_video_processor/solution1/.autopilot/db/video_scale.bind.adb | bopopescu/hdmi-led | 73b04e0b07a51840ffc014c9f7b1575493be80b4 | [
"MIT"
] | 1 | 2021-04-27T01:33:32.000Z | 2021-04-27T01:33:32.000Z | hls_video_processor/solution1/.autopilot/db/video_scale.bind.adb | bopopescu/hdmi-led | 73b04e0b07a51840ffc014c9f7b1575493be80b4 | [
"MIT"
] | null | null | null | hls_video_processor/solution1/.autopilot/db/video_scale.bind.adb | bopopescu/hdmi-led | 73b04e0b07a51840ffc014c9f7b1575493be80b4 | [
"MIT"
] | 2 | 2020-07-09T12:12:30.000Z | 2021-05-23T22:00:42.000Z | <?xml version="1.0" encoding="UTF-8" standalone="yes" ?>
<!DOCTYPE boost_serialization>
<boost_serialization signature="serialization::archive" version="15">
<syndb class_id="0" tracking_level="0" version="0">
<userIPLatency>-1</userIPLatency>
<userIPName></userIPName>
<cdfg class_id="1" tracking_level="1" version="0" object_id="_0">
<name>video_scale</name>
<ret_bitwidth>0</ret_bitwidth>
<ports class_id="2" tracking_level="0" version="0">
<count>6</count>
<item_version>0</item_version>
<item class_id="3" tracking_level="1" version="0" object_id="_1">
<Value class_id="4" tracking_level="0" version="0">
<Obj class_id="5" tracking_level="0" version="0">
<type>1</type>
<id>1</id>
<name>src_data_stream_0_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo class_id="6" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</inlineStackInfo>
<originalName>src.data_stream[0].V</originalName>
<rtlName></rtlName>
<coreName>FIFO</coreName>
</Obj>
<bitwidth>32</bitwidth>
</Value>
<direction>0</direction>
<if_type>3</if_type>
<array_size>0</array_size>
<bit_vecs class_id="7" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</bit_vecs>
</item>
<item class_id_reference="3" object_id="_2">
<Value>
<Obj>
<type>1</type>
<id>2</id>
<name>src_data_stream_1_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
<item_version>0</item_version>
</inlineStackInfo>
<originalName>src.data_stream[1].V</originalName>
<rtlName></rtlName>
<coreName>FIFO</coreName>
</Obj>
<bitwidth>32</bitwidth>
</Value>
<direction>0</direction>
<if_type>3</if_type>
<array_size>0</array_size>
<bit_vecs>
<count>0</count>
<item_version>0</item_version>
</bit_vecs>
</item>
<item class_id_reference="3" object_id="_3">
<Value>
<Obj>
<type>1</type>
<id>3</id>
<name>src_data_stream_2_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
<item_version>0</item_version>
</inlineStackInfo>
<originalName>src.data_stream[2].V</originalName>
<rtlName></rtlName>
<coreName>FIFO</coreName>
</Obj>
<bitwidth>32</bitwidth>
</Value>
<direction>0</direction>
<if_type>3</if_type>
<array_size>0</array_size>
<bit_vecs>
<count>0</count>
<item_version>0</item_version>
</bit_vecs>
</item>
<item class_id_reference="3" object_id="_4">
<Value>
<Obj>
<type>1</type>
<id>4</id>
<name>dst_data_stream_0_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
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<item class_id_reference="28" object_id="_396">
<id>63</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_397">
<id>90</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_398">
<id>91</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_399">
<id>92</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_400">
<id>93</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_401">
<id>94</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_402">
<id>95</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_403">
<id>96</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_404">
<id>97</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_405">
<id>98</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_406">
<id>99</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_407">
<id>100</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_408">
<id>101</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_409">
<id>104</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_410">
<id>105</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_411">
<id>106</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_412">
<id>107</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_413">
<id>108</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_414">
<id>109</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_415">
<id>110</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_416">
<id>112</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_417">
<id>116</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_418">
<id>8</id>
<operations>
<count>2</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_419">
<id>118</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_420">
<id>119</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
</states>
<transitions class_id="29" tracking_level="0" version="0">
<count>10</count>
<item_version>0</item_version>
<item class_id="30" tracking_level="1" version="0" object_id="_421">
<inState>1</inState>
<outState>2</outState>
<condition class_id="31" tracking_level="0" version="0">
<id>-1</id>
<sop class_id="32" tracking_level="0" version="0">
<count>1</count>
<item_version>0</item_version>
<item class_id="33" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_422">
<inState>2</inState>
<outState>2</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item class_id="34" tracking_level="0" version="0">
<first class_id="35" tracking_level="0" version="0">
<first>19</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_423">
<inState>2</inState>
<outState>3</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>19</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_424">
<inState>3</inState>
<outState>4</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>41</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_425">
<inState>8</inState>
<outState>3</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_426">
<inState>5</inState>
<outState>6</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_427">
<inState>6</inState>
<outState>7</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_428">
<inState>7</inState>
<outState>4</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_429">
<inState>4</inState>
<outState>8</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>53</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_430">
<inState>4</inState>
<outState>5</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>53</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
</transitions>
</fsm>
<res class_id="-1"></res>
<node_label_latency class_id="37" tracking_level="0" version="0">
<count>79</count>
<item_version>0</item_version>
<item class_id="38" tracking_level="0" version="0">
<first>13</first>
<second class_id="39" tracking_level="0" version="0">
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>14</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>15</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>16</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>18</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>19</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>21</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>22</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>25</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>26</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>27</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>28</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>29</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>30</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>31</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>32</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>34</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>35</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>36</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>37</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>39</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>40</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>41</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>43</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>44</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>48</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>49</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>51</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>52</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>53</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>55</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>56</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>58</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>59</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>60</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>64</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>65</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>66</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>67</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>68</first>
<second>
<first>3</first>
<second>1</second>
</second>
</item>
<item>
<first>69</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>70</first>
<second>
<first>3</first>
<second>1</second>
</second>
</item>
<item>
<first>71</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>72</first>
<second>
<first>3</first>
<second>1</second>
</second>
</item>
<item>
<first>73</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>74</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>75</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>78</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>79</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>80</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>82</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>83</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>84</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>85</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>86</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>88</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>90</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>91</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>92</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>93</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>94</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>95</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>98</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>99</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>100</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>102</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>104</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>105</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>106</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>107</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>108</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>109</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>110</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>113</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>114</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>115</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>116</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>119</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>121</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
</node_label_latency>
<bblk_ent_exit class_id="40" tracking_level="0" version="0">
<count>14</count>
<item_version>0</item_version>
<item class_id="41" tracking_level="0" version="0">
<first>17</first>
<second class_id="42" tracking_level="0" version="0">
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>23</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>33</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>38</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>45</first>
<second>
<first>2</first>
<second>2</second>
</second>
</item>
<item>
<first>50</first>
<second>
<first>2</first>
<second>2</second>
</second>
</item>
<item>
<first>57</first>
<second>
<first>3</first>
<second>3</second>
</second>
</item>
<item>
<first>87</first>
<second>
<first>3</first>
<second>6</second>
</second>
</item>
<item>
<first>89</first>
<second>
<first>5</first>
<second>5</second>
</second>
</item>
<item>
<first>103</first>
<second>
<first>5</first>
<second>6</second>
</second>
</item>
<item>
<first>111</first>
<second>
<first>6</first>
<second>6</second>
</second>
</item>
<item>
<first>117</first>
<second>
<first>5</first>
<second>6</second>
</second>
</item>
<item>
<first>120</first>
<second>
<first>4</first>
<second>4</second>
</second>
</item>
<item>
<first>122</first>
<second>
<first>2</first>
<second>2</second>
</second>
</item>
</bblk_ent_exit>
<regions class_id="43" tracking_level="0" version="0">
<count>3</count>
<item_version>0</item_version>
<item class_id="44" tracking_level="1" version="0" object_id="_431">
<region_name>loop_width</region_name>
<basic_blocks>
<count>6</count>
<item_version>0</item_version>
<item>57</item>
<item>87</item>
<item>89</item>
<item>103</item>
<item>111</item>
<item>117</item>
</basic_blocks>
<nodes>
<count>0</count>
<item_version>0</item_version>
</nodes>
<anchor_node>-1</anchor_node>
<region_type>8</region_type>
<interval>1</interval>
<pipe_depth>4</pipe_depth>
</item>
<item class_id_reference="44" object_id="_432">
<region_name>hls_label_4</region_name>
<basic_blocks>
<count>1</count>
<item_version>0</item_version>
<item>87</item>
</basic_blocks>
<nodes>
<count>6</count>
<item_version>0</item_version>
<item>76</item>
<item>77</item>
<item>78</item>
<item>79</item>
<item>80</item>
<item>81</item>
</nodes>
<anchor_node>76</anchor_node>
<region_type>1</region_type>
<interval>0</interval>
<pipe_depth>0</pipe_depth>
</item>
<item class_id_reference="44" object_id="_433">
<region_name>hls_label_2</region_name>
<basic_blocks>
<count>1</count>
<item_version>0</item_version>
<item>103</item>
</basic_blocks>
<nodes>
<count>6</count>
<item_version>0</item_version>
<item>96</item>
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<second>0</second>
</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>29</item>
<item>70</item>
<item>70</item>
</second>
</item>
<item>
<first>
<first>sums_val_1</first>
<second>1</second>
</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>108</item>
</second>
</item>
<item>
<first>
<first>sums_val_2</first>
<second>0</second>
</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>31</item>
<item>72</item>
<item>72</item>
</second>
</item>
<item>
<first>
<first>sums_val_2</first>
<second>1</second>
</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>109</item>
</second>
</item>
</dp_mem_port_nodes>
<dp_reg_nodes>
<count>29</count>
<item_version>0</item_version>
<item>
<first>229</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>18</item>
</second>
</item>
<item>
<first>240</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>251</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>51</item>
</second>
</item>
<item>
<first>262</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>104</item>
</second>
</item>
<item>
<first>274</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>105</item>
</second>
</item>
<item>
<first>286</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>106</item>
</second>
</item>
<item>
<first>486</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>21</item>
</second>
</item>
<item>
<first>491</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>34</item>
</second>
</item>
<item>
<first>497</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>35</item>
</second>
</item>
<item>
<first>503</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>36</item>
</second>
</item>
<item>
<first>509</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>41</item>
</second>
</item>
<item>
<first>513</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>43</item>
</second>
</item>
<item>
<first>518</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>48</item>
</second>
</item>
<item>
<first>522</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>53</item>
</second>
</item>
<item>
<first>526</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>55</item>
</second>
</item>
<item>
<first>531</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>65</item>
</second>
</item>
<item>
<first>538</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>67</item>
</second>
</item>
<item>
<first>544</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>69</item>
</second>
</item>
<item>
<first>550</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>71</item>
</second>
</item>
<item>
<first>556</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>85</item>
</second>
</item>
<item>
<first>560</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>68</item>
</second>
</item>
<item>
<first>565</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>70</item>
</second>
</item>
<item>
<first>570</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>72</item>
</second>
</item>
<item>
<first>575</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>78</item>
</second>
</item>
<item>
<first>580</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>79</item>
</second>
</item>
<item>
<first>585</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>80</item>
</second>
</item>
<item>
<first>590</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>82</item>
</second>
</item>
<item>
<first>596</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>83</item>
</second>
</item>
<item>
<first>602</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>84</item>
</second>
</item>
</dp_reg_nodes>
<dp_regname_nodes>
<count>29</count>
<item_version>0</item_version>
<item>
<first>c_V_1_reg_526</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>55</item>
</second>
</item>
<item>
<first>c_V_reg_486</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>21</item>
</second>
</item>
<item>
<first>current_sum_val_0_1_reg_590</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>82</item>
</second>
</item>
<item>
<first>current_sum_val_0_3_reg_503</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>36</item>
</second>
</item>
<item>
<first>current_sum_val_0_reg_560</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>68</item>
</second>
</item>
<item>
<first>current_sum_val_1_1_reg_596</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>83</item>
</second>
</item>
<item>
<first>current_sum_val_1_3_reg_497</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>35</item>
</second>
</item>
<item>
<first>current_sum_val_1_reg_565</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>70</item>
</second>
</item>
<item>
<first>current_sum_val_2_1_reg_602</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>84</item>
</second>
</item>
<item>
<first>current_sum_val_2_3_reg_491</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>34</item>
</second>
</item>
<item>
<first>current_sum_val_2_reg_570</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>72</item>
</second>
</item>
<item>
<first>exitcond1_reg_509</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>41</item>
</second>
</item>
<item>
<first>exitcond_reg_522</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>53</item>
</second>
</item>
<item>
<first>r_V_reg_513</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>43</item>
</second>
</item>
<item>
<first>storemerge1_reg_274</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>105</item>
</second>
</item>
<item>
<first>storemerge2_reg_262</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>104</item>
</second>
</item>
<item>
<first>storemerge_reg_286</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>106</item>
</second>
</item>
<item>
<first>sums_val_0_addr_1_reg_538</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>67</item>
</second>
</item>
<item>
<first>sums_val_1_addr_1_reg_544</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>69</item>
</second>
</item>
<item>
<first>sums_val_2_addr_1_reg_550</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>71</item>
</second>
</item>
<item>
<first>t_V_1_reg_240</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>t_V_2_reg_251</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>51</item>
</second>
</item>
<item>
<first>t_V_reg_229</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>18</item>
</second>
</item>
<item>
<first>tmp_19_reg_585</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>80</item>
</second>
</item>
<item>
<first>tmp_20_reg_575</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>78</item>
</second>
</item>
<item>
<first>tmp_21_reg_580</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>79</item>
</second>
</item>
<item>
<first>tmp_3_reg_556</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>85</item>
</second>
</item>
<item>
<first>tmp_6_reg_531</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>65</item>
</second>
</item>
<item>
<first>tmp_8_reg_518</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>48</item>
</second>
</item>
</dp_regname_nodes>
<dp_reg_phi>
<count>6</count>
<item_version>0</item_version>
<item>
<first>229</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>18</item>
</second>
</item>
<item>
<first>240</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>251</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>51</item>
</second>
</item>
<item>
<first>262</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>104</item>
</second>
</item>
<item>
<first>274</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>105</item>
</second>
</item>
<item>
<first>286</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>106</item>
</second>
</item>
</dp_reg_phi>
<dp_regname_phi>
<count>6</count>
<item_version>0</item_version>
<item>
<first>storemerge1_reg_274</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>105</item>
</second>
</item>
<item>
<first>storemerge2_reg_262</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>104</item>
</second>
</item>
<item>
<first>storemerge_reg_286</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>106</item>
</second>
</item>
<item>
<first>t_V_1_reg_240</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>t_V_2_reg_251</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>51</item>
</second>
</item>
<item>
<first>t_V_reg_229</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>18</item>
</second>
</item>
</dp_regname_phi>
<dp_port_io_nodes class_id="53" tracking_level="0" version="0">
<count>6</count>
<item_version>0</item_version>
<item class_id="54" tracking_level="0" version="0">
<first>dst_data_stream_0_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>write</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>98</item>
</second>
</item>
</second>
</item>
<item>
<first>dst_data_stream_1_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>write</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>99</item>
</second>
</item>
</second>
</item>
<item>
<first>dst_data_stream_2_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>write</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>100</item>
</second>
</item>
</second>
</item>
<item>
<first>src_data_stream_0_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>78</item>
</second>
</item>
</second>
</item>
<item>
<first>src_data_stream_1_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>79</item>
</second>
</item>
</second>
</item>
<item>
<first>src_data_stream_2_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>80</item>
</second>
</item>
</second>
</item>
</dp_port_io_nodes>
<port2core class_id="55" tracking_level="0" version="0">
<count>6</count>
<item_version>0</item_version>
<item class_id="56" tracking_level="0" version="0">
<first>1</first>
<second>FIFO</second>
</item>
<item>
<first>2</first>
<second>FIFO</second>
</item>
<item>
<first>3</first>
<second>FIFO</second>
</item>
<item>
<first>4</first>
<second>FIFO</second>
</item>
<item>
<first>5</first>
<second>FIFO</second>
</item>
<item>
<first>6</first>
<second>FIFO</second>
</item>
</port2core>
<node2core>
<count>3</count>
<item_version>0</item_version>
<item>
<first>13</first>
<second>RAM</second>
</item>
<item>
<first>14</first>
<second>RAM</second>
</item>
<item>
<first>15</first>
<second>RAM</second>
</item>
</node2core>
</syndb>
</boost_serialization>
| 27.052294 | 100 | 0.579196 |
dc47f92c15eb3a6612e6e9f025faf4b3628fc752 | 17,900 | ads | Ada | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/g-sothco.ads | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/g-sothco.ads | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/g-sothco.ads | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- G N A T . S O C K E T S . T H I N _ C O M M O N --
-- --
-- S p e c --
-- --
-- Copyright (C) 2008-2019, AdaCore --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
-- This is the target-independent part of the thin sockets mapping.
-- This package should not be directly with'ed by an applications program.
with Ada.Unchecked_Conversion;
with Interfaces.C.Strings;
package GNAT.Sockets.Thin_Common is
package C renames Interfaces.C;
package CS renames C.Strings;
Success : constant C.int := 0;
Failure : constant C.int := -1;
type time_t is
range -2 ** (8 * SOSC.SIZEOF_tv_sec - 1)
.. 2 ** (8 * SOSC.SIZEOF_tv_sec - 1) - 1;
for time_t'Size use 8 * SOSC.SIZEOF_tv_sec;
pragma Convention (C, time_t);
type suseconds_t is
range -2 ** (8 * SOSC.SIZEOF_tv_usec - 1)
.. 2 ** (8 * SOSC.SIZEOF_tv_usec - 1) - 1;
for suseconds_t'Size use 8 * SOSC.SIZEOF_tv_usec;
pragma Convention (C, suseconds_t);
type Timeval is record
Tv_Sec : time_t;
Tv_Usec : suseconds_t;
end record;
pragma Convention (C, Timeval);
type Timeval_Access is access all Timeval;
pragma Convention (C, Timeval_Access);
type socklen_t is mod 2 ** (8 * SOSC.SIZEOF_socklen_t);
for socklen_t'Size use (8 * SOSC.SIZEOF_socklen_t);
Immediat : constant Timeval := (0, 0);
-------------------------------------------
-- Mapping tables to low level constants --
-------------------------------------------
Families : constant array (Family_Type) of C.int :=
(Family_Unspec => SOSC.AF_UNSPEC,
Family_Inet => SOSC.AF_INET,
Family_Inet6 => SOSC.AF_INET6);
Lengths : constant array (Family_Type) of C.unsigned_char :=
(Family_Unspec => 0,
Family_Inet => SOSC.SIZEOF_sockaddr_in,
Family_Inet6 => SOSC.SIZEOF_sockaddr_in6);
----------------------------
-- Generic socket address --
----------------------------
-- Common header
-- All socket address types (struct sockaddr, struct sockaddr_storage,
-- and protocol specific address types) start with the same 2-byte header,
-- which is either a length and a family (one byte each) or just a two-byte
-- family. The following unchecked union describes the two possible layouts
-- and is meant to be constrained with SOSC.Have_Sockaddr_Len.
type Sockaddr_Length_And_Family
(Has_Sockaddr_Len : Boolean := False)
is record
case Has_Sockaddr_Len is
when True =>
Length : C.unsigned_char;
Char_Family : C.unsigned_char;
when False =>
Short_Family : C.unsigned_short;
end case;
end record;
pragma Unchecked_Union (Sockaddr_Length_And_Family);
pragma Convention (C, Sockaddr_Length_And_Family);
procedure Set_Family
(Length_And_Family : out Sockaddr_Length_And_Family;
Family : Family_Type);
-- Set the family component to the appropriate value for Family, and also
-- set Length accordingly if applicable on this platform.
----------------------------
-- AF_INET socket address --
----------------------------
type In_Addr is record
S_B1, S_B2, S_B3, S_B4 : C.unsigned_char;
end record;
for In_Addr'Alignment use C.int'Alignment;
pragma Convention (C, In_Addr);
-- IPv4 address, represented as a network-order C.int. Note that the
-- underlying operating system may assume that values of this type have
-- C.int alignment, so we need to provide a suitable alignment clause here.
function To_In_Addr is new Ada.Unchecked_Conversion (C.int, In_Addr);
function To_Int is new Ada.Unchecked_Conversion (In_Addr, C.int);
function To_In_Addr (Addr : Inet_Addr_Type) return In_Addr;
procedure To_Inet_Addr
(Addr : In_Addr;
Result : out Inet_Addr_Type);
-- Conversion functions
type In6_Addr is array (1 .. 16) of C.unsigned_char;
for In6_Addr'Alignment use C.int'Alignment;
pragma Convention (C, In6_Addr);
function To_In6_Addr (Addr : Inet_Addr_Type) return In6_Addr;
procedure To_Inet_Addr
(Addr : In6_Addr;
Result : out Inet_Addr_Type);
-- Conversion functions
type Sockaddr (Family : Family_Type := Family_Inet) is record
Sin_Family : Sockaddr_Length_And_Family;
-- Address family (and address length on some platforms)
Sin_Port : C.unsigned_short;
-- Port in network byte order
case Family is
when Family_Inet =>
Sin_Addr : In_Addr := (others => 0);
-- IPv4 address
Sin_Zero : C.char_array (1 .. 8) := (others => C.nul);
-- Padding
--
-- Note that some platforms require that all unused (reserved) bytes
-- in addresses be initialized to 0 (e.g. VxWorks).
when Family_Inet6 =>
Sin6_FlowInfo : Interfaces.Unsigned_32 := 0;
Sin6_Addr : In6_Addr := (others => 0);
Sin6_Scope_Id : Interfaces.Unsigned_32 := 0;
when Family_Unspec =>
null;
end case;
end record;
pragma Unchecked_Union (Sockaddr);
pragma Convention (C, Sockaddr);
-- Internet socket address
type Sockaddr_Access is access all Sockaddr;
pragma Convention (C, Sockaddr_Access);
-- Access to internet socket address
procedure Set_Address
(Sin : Sockaddr_Access;
Address : Sock_Addr_Type);
-- Initialise all necessary fields in Sin from Address.
-- Set appropriate Family, Port, and either Sin.Sin_Addr or Sin.Sin6_Addr
-- depend on family.
function Get_Address (Sin : Sockaddr) return Sock_Addr_Type;
-- Get Sock_Addr_Type from Sockaddr
------------------
-- Host entries --
------------------
type Hostent is new
System.Storage_Elements.Storage_Array (1 .. SOSC.SIZEOF_struct_hostent);
for Hostent'Alignment use 8;
-- Host entry. This is an opaque type used only via the following
-- accessor functions, because 'struct hostent' has different layouts on
-- different platforms.
type Hostent_Access is access all Hostent;
pragma Convention (C, Hostent_Access);
-- Access to host entry
function Hostent_H_Name
(E : Hostent_Access) return System.Address;
function Hostent_H_Alias
(E : Hostent_Access; I : C.int) return System.Address;
function Hostent_H_Addrtype
(E : Hostent_Access) return C.int;
function Hostent_H_Length
(E : Hostent_Access) return C.int;
function Hostent_H_Addr
(E : Hostent_Access; Index : C.int) return System.Address;
---------------------
-- Service entries --
---------------------
type Servent is new
System.Storage_Elements.Storage_Array (1 .. SOSC.SIZEOF_struct_servent);
for Servent'Alignment use 8;
-- Service entry. This is an opaque type used only via the following
-- accessor functions, because 'struct servent' has different layouts on
-- different platforms.
type Servent_Access is access all Servent;
pragma Convention (C, Servent_Access);
-- Access to service entry
function Servent_S_Name
(E : Servent_Access) return System.Address;
function Servent_S_Alias
(E : Servent_Access; Index : C.int) return System.Address;
function Servent_S_Port
(E : Servent_Access) return C.unsigned_short;
function Servent_S_Proto
(E : Servent_Access) return System.Address;
------------------
-- NetDB access --
------------------
-- There are three possible situations for the following NetDB access
-- functions:
-- - inherently thread safe (case of data returned in a thread specific
-- buffer);
-- - thread safe using user-provided buffer;
-- - thread unsafe.
--
-- In the first and third cases, the Buf and Buflen are ignored. In the
-- second case, the caller must provide a buffer large enough to
-- accommodate the returned data. In the third case, the caller must ensure
-- that these functions are called within a critical section.
function C_Gethostbyname
(Name : C.char_array;
Ret : not null access Hostent;
Buf : System.Address;
Buflen : C.int;
H_Errnop : not null access C.int) return C.int;
function C_Gethostbyaddr
(Addr : System.Address;
Addr_Len : C.int;
Addr_Type : C.int;
Ret : not null access Hostent;
Buf : System.Address;
Buflen : C.int;
H_Errnop : not null access C.int) return C.int;
function C_Getservbyname
(Name : C.char_array;
Proto : C.char_array;
Ret : not null access Servent;
Buf : System.Address;
Buflen : C.int) return C.int;
function C_Getservbyport
(Port : C.int;
Proto : C.char_array;
Ret : not null access Servent;
Buf : System.Address;
Buflen : C.int) return C.int;
Address_Size : constant := Standard'Address_Size;
type Addrinfo;
type Addrinfo_Access is access all Addrinfo;
type Addrinfo is record
ai_flags : C.int;
ai_family : C.int;
ai_socktype : C.int;
ai_protocol : C.int;
ai_addrlen : socklen_t;
ai_addr : Sockaddr_Access;
ai_canonname : CS.char_array_access;
ai_next : Addrinfo_Access;
end record with Convention => C;
for Addrinfo use record
ai_flags at SOSC.AI_FLAGS_OFFSET range 0 .. C.int'Size - 1;
ai_family at SOSC.AI_FAMILY_OFFSET range 0 .. C.int'Size - 1;
ai_socktype at SOSC.AI_SOCKTYPE_OFFSET range 0 .. C.int'Size - 1;
ai_protocol at SOSC.AI_PROTOCOL_OFFSET range 0 .. C.int'Size - 1;
ai_addrlen at SOSC.AI_ADDRLEN_OFFSET range 0 .. socklen_t'Size - 1;
ai_canonname at SOSC.AI_CANONNAME_OFFSET range 0 .. Address_Size - 1;
ai_addr at SOSC.AI_ADDR_OFFSET range 0 .. Address_Size - 1;
ai_next at SOSC.AI_NEXT_OFFSET range 0 .. Address_Size - 1;
end record;
function C_Getaddrinfo
(Node : CS.char_array_access;
Service : CS.char_array_access;
Hints : access constant Addrinfo;
Res : not null access Addrinfo_Access) return C.int;
procedure C_Freeaddrinfo (res : Addrinfo_Access);
function C_Getnameinfo
(sa : Sockaddr_Access;
salen : socklen_t;
host : CS.char_array_access;
hostlen : C.size_t;
serv : CS.char_array_access;
servlen : C.size_t;
flags : C.int) return C.int;
function C_GAI_Strerror (ecode : C.int) return CS.chars_ptr;
------------------------------------
-- Scatter/gather vector handling --
------------------------------------
type Msghdr is record
Msg_Name : System.Address;
Msg_Namelen : C.unsigned;
Msg_Iov : System.Address;
Msg_Iovlen : SOSC.Msg_Iovlen_T;
Msg_Control : System.Address;
Msg_Controllen : C.size_t;
Msg_Flags : C.int;
end record;
pragma Convention (C, Msghdr);
----------------------------
-- Socket sets management --
----------------------------
procedure Get_Socket_From_Set
(Set : access Fd_Set;
Last : access C.int;
Socket : access C.int);
-- Get last socket in Socket and remove it from the socket set. The
-- parameter Last is a maximum value of the largest socket. This hint is
-- used to avoid scanning very large socket sets. After a call to
-- Get_Socket_From_Set, Last is set back to the real largest socket in the
-- socket set.
procedure Insert_Socket_In_Set
(Set : access Fd_Set;
Socket : C.int);
-- Insert socket in the socket set
function Is_Socket_In_Set
(Set : access constant Fd_Set;
Socket : C.int) return C.int;
-- Check whether Socket is in the socket set, return a non-zero
-- value if it is, zero if it is not.
procedure Last_Socket_In_Set
(Set : access Fd_Set;
Last : access C.int);
-- Find the largest socket in the socket set. This is needed for select().
-- When Last_Socket_In_Set is called, parameter Last is a maximum value of
-- the largest socket. This hint is used to avoid scanning very large
-- socket sets. After the call, Last is set back to the real largest socket
-- in the socket set.
procedure Remove_Socket_From_Set (Set : access Fd_Set; Socket : C.int);
-- Remove socket from the socket set
procedure Reset_Socket_Set (Set : access Fd_Set);
-- Make Set empty
------------------------------------------
-- Pairs of signalling file descriptors --
------------------------------------------
type Two_Ints is array (0 .. 1) of C.int;
pragma Convention (C, Two_Ints);
-- Container for two int values
subtype Fd_Pair is Two_Ints;
-- Two_Ints as used for Create_Signalling_Fds: a pair of connected file
-- descriptors, one of which (the "read end" of the connection) being used
-- for reading, the other one (the "write end") being used for writing.
Read_End : constant := 0;
Write_End : constant := 1;
-- Indexes into an Fd_Pair value providing access to each of the connected
-- file descriptors.
function Inet_Pton
(Af : C.int;
Cp : System.Address;
Inp : System.Address) return C.int;
function Inet_Ntop
(Af : C.int;
Src : System.Address;
Dst : CS.char_array_access;
Size : socklen_t) return CS.char_array_access;
function C_Ioctl
(Fd : C.int;
Req : SOSC.IOCTL_Req_T;
Arg : access C.int) return C.int;
function Short_To_Network
(S : C.unsigned_short) return C.unsigned_short;
pragma Inline (Short_To_Network);
-- Convert a port number into a network port number
function Network_To_Short
(S : C.unsigned_short) return C.unsigned_short
renames Short_To_Network;
-- Symmetric operation
private
pragma Import (C, Get_Socket_From_Set, "__gnat_get_socket_from_set");
pragma Import (C, Is_Socket_In_Set, "__gnat_is_socket_in_set");
pragma Import (C, Last_Socket_In_Set, "__gnat_last_socket_in_set");
pragma Import (C, Insert_Socket_In_Set, "__gnat_insert_socket_in_set");
pragma Import (C, Remove_Socket_From_Set, "__gnat_remove_socket_from_set");
pragma Import (C, Reset_Socket_Set, "__gnat_reset_socket_set");
pragma Import (C, C_Ioctl, "__gnat_socket_ioctl");
pragma Import (C, Inet_Pton, SOSC.Inet_Pton_Linkname);
pragma Import (C, Inet_Ntop, SOSC.Inet_Ntop_Linkname);
pragma Import (C, C_Gethostbyname, "__gnat_gethostbyname");
pragma Import (C, C_Gethostbyaddr, "__gnat_gethostbyaddr");
pragma Import (C, C_Getservbyname, "__gnat_getservbyname");
pragma Import (C, C_Getservbyport, "__gnat_getservbyport");
pragma Import (C, C_Getaddrinfo, "__gnat_getaddrinfo");
pragma Import (C, C_Freeaddrinfo, "__gnat_freeaddrinfo");
pragma Import (C, C_Getnameinfo, "__gnat_getnameinfo");
pragma Import (C, C_GAI_Strerror, "__gnat_gai_strerror");
pragma Import (C, Servent_S_Name, "__gnat_servent_s_name");
pragma Import (C, Servent_S_Alias, "__gnat_servent_s_alias");
pragma Import (C, Servent_S_Port, "__gnat_servent_s_port");
pragma Import (C, Servent_S_Proto, "__gnat_servent_s_proto");
pragma Import (C, Hostent_H_Name, "__gnat_hostent_h_name");
pragma Import (C, Hostent_H_Alias, "__gnat_hostent_h_alias");
pragma Import (C, Hostent_H_Addrtype, "__gnat_hostent_h_addrtype");
pragma Import (C, Hostent_H_Length, "__gnat_hostent_h_length");
pragma Import (C, Hostent_H_Addr, "__gnat_hostent_h_addr");
end GNAT.Sockets.Thin_Common;
| 37.763713 | 79 | 0.608883 |
c59452360fed09456cad2a871849bcd5669c9cb6 | 3,837 | ads | Ada | source/league/matreshka-atomics-generic_test_and_set.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 24 | 2016-11-29T06:59:41.000Z | 2021-08-30T11:55:16.000Z | source/league/matreshka-atomics-generic_test_and_set.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 2 | 2019-01-16T05:15:20.000Z | 2019-02-03T10:03:32.000Z | source/league/matreshka-atomics-generic_test_and_set.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 4 | 2017-07-18T07:11:05.000Z | 2020-06-21T03:02:25.000Z | ------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- Localization, Internationalization, Globalization for Ada --
-- --
-- Runtime Library Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2009-2013, Vadim Godunko <vgodunko@gmail.com> --
-- All rights reserved. --
-- --
-- Redistribution and use in source and binary forms, with or without --
-- modification, are permitted provided that the following conditions --
-- are met: --
-- --
-- * Redistributions of source code must retain the above copyright --
-- notice, this list of conditions and the following disclaimer. --
-- --
-- * Redistributions in binary form must reproduce the above copyright --
-- notice, this list of conditions and the following disclaimer in the --
-- documentation and/or other materials provided with the distribution. --
-- --
-- * Neither the name of the Vadim Godunko, IE nor the names of its --
-- contributors may be used to endorse or promote products derived from --
-- this software without specific prior written permission. --
-- --
-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS --
-- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT --
-- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR --
-- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT --
-- HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, --
-- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED --
-- TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR --
-- PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF --
-- LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING --
-- NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS --
-- SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. --
-- --
------------------------------------------------------------------------------
-- $Revision$ $Date$
------------------------------------------------------------------------------
-- Atomic test-and-set operation on access type.
------------------------------------------------------------------------------
pragma Ada_2012;
generic
type T (<>) is limited private;
type T_Access is access T;
function Matreshka.Atomics.Generic_Test_And_Set
(Target : in out T_Access;
Expected_Value : T_Access;
New_Value : T_Access) return Boolean;
pragma Preelaborate (Matreshka.Atomics.Generic_Test_And_Set);
pragma Inline (Matreshka.Atomics.Generic_Test_And_Set);
| 66.155172 | 78 | 0.429242 |
dc366257ce1e42e96381331258b822ce967ecc5f | 3,944 | adb | Ada | source/nodes/program-nodes-explicit_dereferences.adb | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | null | null | null | source/nodes/program-nodes-explicit_dereferences.adb | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | null | null | null | source/nodes/program-nodes-explicit_dereferences.adb | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | 1 | 2019-10-16T09:05:27.000Z | 2019-10-16T09:05:27.000Z | -- SPDX-FileCopyrightText: 2019 Max Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-------------------------------------------------------------
package body Program.Nodes.Explicit_Dereferences is
function Create
(Prefix : not null Program.Elements.Expressions.Expression_Access;
Dot_Token : not null Program.Lexical_Elements.Lexical_Element_Access;
All_Token : not null Program.Lexical_Elements.Lexical_Element_Access)
return Explicit_Dereference is
begin
return Result : Explicit_Dereference :=
(Prefix => Prefix, Dot_Token => Dot_Token, All_Token => All_Token,
Enclosing_Element => null)
do
Initialize (Result);
end return;
end Create;
function Create
(Prefix : not null Program.Elements.Expressions
.Expression_Access;
Is_Part_Of_Implicit : Boolean := False;
Is_Part_Of_Inherited : Boolean := False;
Is_Part_Of_Instance : Boolean := False)
return Implicit_Explicit_Dereference is
begin
return Result : Implicit_Explicit_Dereference :=
(Prefix => Prefix, Is_Part_Of_Implicit => Is_Part_Of_Implicit,
Is_Part_Of_Inherited => Is_Part_Of_Inherited,
Is_Part_Of_Instance => Is_Part_Of_Instance, Enclosing_Element => null)
do
Initialize (Result);
end return;
end Create;
overriding function Prefix
(Self : Base_Explicit_Dereference)
return not null Program.Elements.Expressions.Expression_Access is
begin
return Self.Prefix;
end Prefix;
overriding function Dot_Token
(Self : Explicit_Dereference)
return not null Program.Lexical_Elements.Lexical_Element_Access is
begin
return Self.Dot_Token;
end Dot_Token;
overriding function All_Token
(Self : Explicit_Dereference)
return not null Program.Lexical_Elements.Lexical_Element_Access is
begin
return Self.All_Token;
end All_Token;
overriding function Is_Part_Of_Implicit
(Self : Implicit_Explicit_Dereference)
return Boolean is
begin
return Self.Is_Part_Of_Implicit;
end Is_Part_Of_Implicit;
overriding function Is_Part_Of_Inherited
(Self : Implicit_Explicit_Dereference)
return Boolean is
begin
return Self.Is_Part_Of_Inherited;
end Is_Part_Of_Inherited;
overriding function Is_Part_Of_Instance
(Self : Implicit_Explicit_Dereference)
return Boolean is
begin
return Self.Is_Part_Of_Instance;
end Is_Part_Of_Instance;
procedure Initialize (Self : in out Base_Explicit_Dereference'Class) is
begin
Set_Enclosing_Element (Self.Prefix, Self'Unchecked_Access);
null;
end Initialize;
overriding function Is_Explicit_Dereference
(Self : Base_Explicit_Dereference)
return Boolean is
pragma Unreferenced (Self);
begin
return True;
end Is_Explicit_Dereference;
overriding function Is_Expression
(Self : Base_Explicit_Dereference)
return Boolean is
pragma Unreferenced (Self);
begin
return True;
end Is_Expression;
overriding procedure Visit
(Self : not null access Base_Explicit_Dereference;
Visitor : in out Program.Element_Visitors.Element_Visitor'Class) is
begin
Visitor.Explicit_Dereference (Self);
end Visit;
overriding function To_Explicit_Dereference_Text
(Self : in out Explicit_Dereference)
return Program.Elements.Explicit_Dereferences
.Explicit_Dereference_Text_Access is
begin
return Self'Unchecked_Access;
end To_Explicit_Dereference_Text;
overriding function To_Explicit_Dereference_Text
(Self : in out Implicit_Explicit_Dereference)
return Program.Elements.Explicit_Dereferences
.Explicit_Dereference_Text_Access is
pragma Unreferenced (Self);
begin
return null;
end To_Explicit_Dereference_Text;
end Program.Nodes.Explicit_Dereferences;
| 30.8125 | 79 | 0.717039 |
cba253926b922ce1044d0b5c6de70fc9f8565fda | 83,250 | adb | Ada | apps/hls_examples/camera_ready_synthesis/app_files/big_apps_8_shifts/conv2d_b2b/conv2d_b2b/hls_target/.autopilot/db/call_Loop_LB2D_buf_p_1.bind.adb | dillonhuff/Halide-HLS | e9f4c3ac7915e5a52f211ce65004ae17890515a0 | [
"MIT"
] | 1 | 2020-06-18T16:51:39.000Z | 2020-06-18T16:51:39.000Z | apps/hls_examples/camera_ready_synthesis/app_files/big_apps_8_shifts/conv2d_b2b/conv2d_b2b/hls_target/.autopilot/db/call_Loop_LB2D_buf_p_1.bind.adb | dillonhuff/Halide-HLS | e9f4c3ac7915e5a52f211ce65004ae17890515a0 | [
"MIT"
] | null | null | null | apps/hls_examples/camera_ready_synthesis/app_files/big_apps_8_shifts/conv2d_b2b/conv2d_b2b/hls_target/.autopilot/db/call_Loop_LB2D_buf_p_1.bind.adb | dillonhuff/Halide-HLS | e9f4c3ac7915e5a52f211ce65004ae17890515a0 | [
"MIT"
] | 1 | 2020-03-18T00:43:22.000Z | 2020-03-18T00:43:22.000Z | <?xml version="1.0" encoding="UTF-8" standalone="yes" ?>
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<second>call</second>
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<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>26</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>30</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>31</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>33</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>34</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>35</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>36</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>37</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>39</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>40</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>42</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>45</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>47</first>
<second>
<first>1</first>
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</second>
</item>
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<count>9</count>
<item_version>0</item_version>
<item class_id="41" tracking_level="0" version="0">
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<first>0</first>
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<item>
<first>15</first>
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<first>1</first>
<second>1</second>
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</item>
<item>
<first>20</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>25</first>
<second>
<first>2</first>
<second>2</second>
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</item>
<item>
<first>32</first>
<second>
<first>2</first>
<second>4</second>
</second>
</item>
<item>
<first>38</first>
<second>
<first>2</first>
<second>4</second>
</second>
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<first>43</first>
<second>
<first>4</first>
<second>4</second>
</second>
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<item>
<first>46</first>
<second>
<first>3</first>
<second>3</second>
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<item>
<first>48</first>
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<first>1</first>
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</second>
</item>
</bblk_ent_exit>
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<item_version>0</item_version>
<item class_id="44" tracking_level="1" version="0" object_id="_162">
<region_name>LB2D_buf.1</region_name>
<basic_blocks>
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</basic_blocks>
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<first>60</first>
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<item>
<first>64</first>
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<count>1</count>
<item_version>0</item_version>
<item>30</item>
</second>
</item>
<item>
<first>70</first>
<second>
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</second>
</item>
<item>
<first>77</first>
<second>
<count>1</count>
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</second>
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<item>
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<item>34</item>
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</second>
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<item>
<first>88</first>
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<first>102</first>
<second>
<count>1</count>
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<first>113</first>
<second>
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<item>21</item>
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<first>126</first>
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<first>132</first>
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<first>138</first>
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<item>22</item>
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<item>
<first>144</first>
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<count>1</count>
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<item>
<first>150</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>26</item>
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</second>
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</dp_mem_port_nodes>
<dp_reg_nodes>
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<item>
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<first>200</first>
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<item>34</item>
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</dp_reg_nodes>
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<item>
<first>col_1_reg_179</first>
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<item>23</item>
</second>
</item>
<item>
<first>col_cast_reg_184</first>
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<item>26</item>
</second>
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<item>
<first>col_reg_109</first>
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<item>21</item>
</second>
</item>
<item>
<first>p_Val2_s_reg_200</first>
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<item_version>0</item_version>
<item>34</item>
</second>
</item>
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<first>row_1_reg_166</first>
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<item_version>0</item_version>
<item>13</item>
</second>
</item>
<item>
<first>row_reg_98</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>10</item>
</second>
</item>
<item>
<first>tmp_7_reg_175</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>22</item>
</second>
</item>
<item>
<first>tmp_reg_162</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>11</item>
</second>
</item>
<item>
<first>tmp_s_reg_171</first>
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<item_version>0</item_version>
<item>18</item>
</second>
</item>
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<first>tmp_value_V_3_reg_194</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>30</item>
</second>
</item>
</dp_regname_nodes>
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<item>
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</second>
</item>
<item>
<first>109</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>21</item>
</second>
</item>
</dp_reg_phi>
<dp_regname_phi>
<count>2</count>
<item_version>0</item_version>
<item>
<first>col_reg_109</first>
<second>
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<item_version>0</item_version>
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</second>
</item>
<item>
<first>row_reg_98</first>
<second>
<count>1</count>
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<item>10</item>
</second>
</item>
</dp_regname_phi>
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<first>read</first>
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</second>
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</second>
</item>
<item>
<first>slice_stream_V_value_V</first>
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<first>write</first>
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</item>
</port2core>
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<count>1</count>
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<first>7</first>
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</boost_serialization>
| 25.942661 | 139 | 0.594006 |
c504f0692d3eb8c1c2166c37fc6fef38bf93ca31 | 8,311 | ada | Ada | gcc-gcc-7_3_0-release/gcc/testsuite/ada/acats/tests/c9/c94011a.ada | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 7 | 2020-05-02T17:34:05.000Z | 2021-10-17T10:15:18.000Z | gcc-gcc-7_3_0-release/gcc/testsuite/ada/acats/tests/c9/c94011a.ada | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | null | null | null | gcc-gcc-7_3_0-release/gcc/testsuite/ada/acats/tests/c9/c94011a.ada | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 2 | 2020-07-27T00:22:36.000Z | 2021-04-01T09:41:02.000Z | -- C94011A.ADA
-- Grant of Unlimited Rights
--
-- Under contracts F33600-87-D-0337, F33600-84-D-0280, MDA903-79-C-0687,
-- F08630-91-C-0015, and DCA100-97-D-0025, the U.S. Government obtained
-- unlimited rights in the software and documentation contained herein.
-- Unlimited rights are defined in DFAR 252.227-7013(a)(19). By making
-- this public release, the Government intends to confer upon all
-- recipients unlimited rights equal to those held by the Government.
-- These rights include rights to use, duplicate, release or disclose the
-- released technical data and computer software in whole or in part, in
-- any manner and for any purpose whatsoever, and to have or permit others
-- to do so.
--
-- DISCLAIMER
--
-- ALL MATERIALS OR INFORMATION HEREIN RELEASED, MADE AVAILABLE OR
-- DISCLOSED ARE AS IS. THE GOVERNMENT MAKES NO EXPRESS OR IMPLIED
-- WARRANTY AS TO ANY MATTER WHATSOEVER, INCLUDING THE CONDITIONS OF THE
-- SOFTWARE, DOCUMENTATION OR OTHER INFORMATION RELEASED, MADE AVAILABLE
-- OR DISCLOSED, OR THE OWNERSHIP, MERCHANTABILITY, OR FITNESS FOR A
-- PARTICULAR PURPOSE OF SAID MATERIAL.
--*
-- CHECK THAT IF A FORMAL ACCESS TYPE OF A GENERIC UNIT DESIGNATES A
-- FORMAL LIMITED PRIVATE TYPE, THEN WHEN THE UNIT IS INSTANTIATED WITH
-- A TASK TYPE OR A TYPE HAVING A SUBCOMPONENT OF A TASK TYPE, THE
-- MASTER FOR ANY TASKS ALLOCATED WITHIN THE INSTANTIATED UNIT IS
-- DETERMINED BY THE ACTUAL PARAMETER.
-- TBN 9/22/86
WITH REPORT; USE REPORT;
PROCEDURE C94011A IS
GLOBAL_INT : INTEGER := 0;
MY_EXCEPTION : EXCEPTION;
PACKAGE P IS
TYPE LIM_PRI_TASK IS LIMITED PRIVATE;
PROCEDURE E (T : LIM_PRI_TASK);
PRIVATE
TASK TYPE LIM_PRI_TASK IS
ENTRY E;
END LIM_PRI_TASK;
END P;
USE P;
TASK TYPE TT IS
ENTRY E;
END TT;
TYPE REC IS
RECORD
A : INTEGER := 1;
B : TT;
END RECORD;
TYPE LIM_REC IS
RECORD
A : INTEGER := 1;
B : LIM_PRI_TASK;
END RECORD;
PACKAGE BODY P IS
TASK BODY LIM_PRI_TASK IS
BEGIN
ACCEPT E;
GLOBAL_INT := IDENT_INT (2);
END LIM_PRI_TASK;
PROCEDURE E (T : LIM_PRI_TASK) IS
BEGIN
T.E;
END E;
END P;
TASK BODY TT IS
BEGIN
ACCEPT E;
GLOBAL_INT := IDENT_INT (1);
END TT;
GENERIC
TYPE T IS LIMITED PRIVATE;
TYPE ACC_T IS ACCESS T;
PROCEDURE PROC (A : OUT ACC_T);
PROCEDURE PROC (A : OUT ACC_T) IS
BEGIN
A := NEW T;
END PROC;
GENERIC
TYPE T IS LIMITED PRIVATE;
TYPE ACC_T IS ACCESS T;
FUNCTION FUNC RETURN ACC_T;
FUNCTION FUNC RETURN ACC_T IS
BEGIN
RETURN NEW T;
END FUNC;
GENERIC
TYPE T IS LIMITED PRIVATE;
TYPE ACC_T IS ACCESS T;
PACKAGE PAC IS
PTR_T : ACC_T := NEW T;
END PAC;
BEGIN
TEST ("C94011A", "CHECK THAT IF A FORMAL ACCESS TYPE OF A " &
"GENERIC UNIT DESIGNATES A FORMAL LIMITED " &
"PRIVATE TYPE, THEN WHEN THE UNIT IS " &
"INSTANTIATED, THE MASTER FOR ANY TASKS " &
"ALLOCATED WITHIN THE INSTANTIATED UNIT IS " &
"DETERMINED BY THE ACTUAL PARAMETER");
-------------------------------------------------------------------
DECLARE
TYPE ACC_TT IS ACCESS TT;
ACC1 : ACC_TT;
PROCEDURE PROC1 IS NEW PROC (TT, ACC_TT);
BEGIN
PROC1 (ACC1);
ACC1.E;
EXCEPTION
WHEN OTHERS =>
FAILED ("TASK DEPENDENT ON WRONG MASTER - 1");
END;
IF GLOBAL_INT = IDENT_INT (0) THEN
FAILED ("TASK NOT DEPENDENT ON MASTER - 1");
END IF;
-------------------------------------------------------------------
BEGIN
GLOBAL_INT := IDENT_INT (0);
DECLARE
TYPE ACC_REC IS ACCESS REC;
A : ACC_REC;
FUNCTION FUNC1 IS NEW FUNC (REC, ACC_REC);
BEGIN
A := FUNC1;
A.B.E;
RAISE MY_EXCEPTION;
EXCEPTION
WHEN MY_EXCEPTION =>
RAISE MY_EXCEPTION;
WHEN OTHERS =>
FAILED ("TASK DEPENDENT ON WRONG MASTER - 2");
END;
FAILED ("MY_EXCEPTION NOT RAISED - 2");
EXCEPTION
WHEN MY_EXCEPTION =>
IF GLOBAL_INT = IDENT_INT (0) THEN
FAILED ("TASK NOT DEPENDENT ON MASTER - 2");
END IF;
WHEN OTHERS =>
FAILED ("UNEXPECTED EXCEPTION RAISED - 2");
END;
-------------------------------------------------------------------
GLOBAL_INT := IDENT_INT (0);
BEGIN
DECLARE
TYPE ACC_LIM_TT IS ACCESS LIM_PRI_TASK;
BEGIN
DECLARE
A : ACC_LIM_TT;
FUNCTION FUNC2 IS NEW FUNC (LIM_PRI_TASK,
ACC_LIM_TT);
BEGIN
A := FUNC2;
E (A.ALL);
END;
EXCEPTION
WHEN OTHERS =>
FAILED ("TASK DEPENDENT ON WRONG MASTER - 3");
END;
IF GLOBAL_INT = IDENT_INT (0) THEN
FAILED ("TASK NOT DEPENDENT ON MASTER - 3");
END IF;
END;
-------------------------------------------------------------------
GLOBAL_INT := IDENT_INT (0);
BEGIN
DECLARE
TYPE ACC_LIM_REC IS ACCESS LIM_REC;
BEGIN
DECLARE
ACC2 : ACC_LIM_REC;
PROCEDURE PROC2 IS NEW PROC (LIM_REC, ACC_LIM_REC);
BEGIN
PROC2 (ACC2);
E (ACC2.B);
END;
RAISE MY_EXCEPTION;
EXCEPTION
WHEN MY_EXCEPTION =>
RAISE MY_EXCEPTION;
WHEN OTHERS =>
FAILED ("TASK DEPENDENT ON WRONG MASTER - 4");
END;
FAILED ("MY_EXCEPTION NOT RAISED - 4");
EXCEPTION
WHEN MY_EXCEPTION =>
IF GLOBAL_INT = IDENT_INT (0) THEN
FAILED ("TASK NOT DEPENDENT ON MASTER - 4");
END IF;
WHEN OTHERS =>
FAILED ("UNEXPECTED EXCEPTION RAISED - 4");
END;
-------------------------------------------------------------------
BEGIN
GLOBAL_INT := IDENT_INT (0);
DECLARE
TYPE ACC_TT IS ACCESS TT;
PACKAGE PAC1 IS NEW PAC (TT, ACC_TT);
USE PAC1;
BEGIN
PTR_T.E;
RAISE MY_EXCEPTION;
EXCEPTION
WHEN MY_EXCEPTION =>
RAISE MY_EXCEPTION;
WHEN OTHERS =>
FAILED ("TASK DEPENDENT ON WRONG MASTER - 5");
END;
FAILED ("MY_EXCEPTION NOT RAISED - 5");
EXCEPTION
WHEN MY_EXCEPTION =>
IF GLOBAL_INT = IDENT_INT (0) THEN
FAILED ("TASK NOT DEPENDENT ON MASTER - 5");
END IF;
WHEN OTHERS =>
FAILED ("UNEXPECTED EXCEPTION RAISED - 5");
END;
-------------------------------------------------------------------
GLOBAL_INT := IDENT_INT (0);
DECLARE
TYPE ACC_LIM_REC IS ACCESS LIM_REC;
BEGIN
DECLARE
PACKAGE PAC2 IS NEW PAC (LIM_REC, ACC_LIM_REC);
USE PAC2;
BEGIN
E (PTR_T.B);
END;
EXCEPTION
WHEN OTHERS =>
FAILED ("TASK DEPENDENT ON WRONG MASTER - 6");
END;
IF GLOBAL_INT = IDENT_INT (0) THEN
FAILED ("TASK NOT DEPENDENT ON MASTER - 6");
END IF;
-------------------------------------------------------------------
RESULT;
END C94011A;
| 30.895911 | 79 | 0.479365 |
dc1d1386852e8e15ff563ce167a15eb8670e41ce | 31,651 | adb | Ada | Validation/pyFrame3DD-master/gcc-master/gcc/ada/exp_atag.adb | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | Validation/pyFrame3DD-master/gcc-master/gcc/ada/exp_atag.adb | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | Validation/pyFrame3DD-master/gcc-master/gcc/ada/exp_atag.adb | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- E X P _ A T A G --
-- --
-- S p e c --
-- --
-- Copyright (C) 2006-2020, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT 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 GNAT; see file COPYING3. If not, go to --
-- http://www.gnu.org/licenses for a complete copy of the license. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with Atree; use Atree;
with Einfo; use Einfo;
with Elists; use Elists;
with Exp_Disp; use Exp_Disp;
with Namet; use Namet;
with Nlists; use Nlists;
with Nmake; use Nmake;
with Opt; use Opt;
with Rtsfind; use Rtsfind;
with Sinfo; use Sinfo;
with Sem_Aux; use Sem_Aux;
with Sem_Disp; use Sem_Disp;
with Sem_Util; use Sem_Util;
with Stand; use Stand;
with Snames; use Snames;
with Tbuild; use Tbuild;
package body Exp_Atag is
-----------------------
-- Local Subprograms --
-----------------------
function Build_DT
(Loc : Source_Ptr;
Tag_Node : Node_Id) return Node_Id;
-- Build code that displaces the Tag to reference the base of the wrapper
-- record
--
-- Generates:
-- To_Dispatch_Table_Ptr
-- (To_Address (Tag_Node) - Tag_Node.Prims_Ptr'Position);
function Build_Range (Loc : Source_Ptr; Lo, Hi : Nat) return Node_Id;
-- Build an N_Range node for [Lo; Hi] with Standard.Natural type
function Build_TSD
(Loc : Source_Ptr;
Tag_Node_Addr : Node_Id) return Node_Id;
-- Build code that retrieves the address of the record containing the Type
-- Specific Data generated by GNAT.
--
-- Generate: To_Type_Specific_Data_Ptr
-- (To_Addr_Ptr (Tag_Node_Addr - Typeinfo_Offset).all);
function Build_Val (Loc : Source_Ptr; V : Uint) return Node_Id;
-- Build an N_Integer_Literal node for V with Standard.Natural type
------------------------------------------------
-- Build_Common_Dispatching_Select_Statements --
------------------------------------------------
procedure Build_Common_Dispatching_Select_Statements
(Typ : Entity_Id;
Stmts : List_Id)
is
Loc : constant Source_Ptr := Sloc (Typ);
Tag_Node : Node_Id;
begin
-- Generate:
-- C := get_prim_op_kind (tag! (<type>VP), S);
-- where C is the out parameter capturing the call kind and S is the
-- dispatch table slot number.
if Tagged_Type_Expansion then
Tag_Node :=
Unchecked_Convert_To (RTE (RE_Tag),
New_Occurrence_Of
(Node (First_Elmt (Access_Disp_Table (Typ))), Loc));
else
Tag_Node :=
Make_Attribute_Reference (Loc,
Prefix => New_Occurrence_Of (Typ, Loc),
Attribute_Name => Name_Tag);
end if;
Append_To (Stmts,
Make_Assignment_Statement (Loc,
Name => Make_Identifier (Loc, Name_uC),
Expression =>
Make_Function_Call (Loc,
Name =>
New_Occurrence_Of (RTE (RE_Get_Prim_Op_Kind), Loc),
Parameter_Associations => New_List (
Tag_Node,
Make_Identifier (Loc, Name_uS)))));
-- Generate:
-- if C = POK_Procedure
-- or else C = POK_Protected_Procedure
-- or else C = POK_Task_Procedure;
-- then
-- F := True;
-- return;
-- where F is the out parameter capturing the status of a potential
-- entry call.
Append_To (Stmts,
Make_If_Statement (Loc,
Condition =>
Make_Or_Else (Loc,
Left_Opnd =>
Make_Op_Eq (Loc,
Left_Opnd => Make_Identifier (Loc, Name_uC),
Right_Opnd =>
New_Occurrence_Of (RTE (RE_POK_Procedure), Loc)),
Right_Opnd =>
Make_Or_Else (Loc,
Left_Opnd =>
Make_Op_Eq (Loc,
Left_Opnd => Make_Identifier (Loc, Name_uC),
Right_Opnd =>
New_Occurrence_Of
(RTE (RE_POK_Protected_Procedure), Loc)),
Right_Opnd =>
Make_Op_Eq (Loc,
Left_Opnd => Make_Identifier (Loc, Name_uC),
Right_Opnd =>
New_Occurrence_Of
(RTE (RE_POK_Task_Procedure), Loc)))),
Then_Statements =>
New_List (
Make_Assignment_Statement (Loc,
Name => Make_Identifier (Loc, Name_uF),
Expression => New_Occurrence_Of (Standard_True, Loc)),
Make_Simple_Return_Statement (Loc))));
end Build_Common_Dispatching_Select_Statements;
--------------
-- Build_DT --
--------------
function Build_DT
(Loc : Source_Ptr;
Tag_Node : Node_Id) return Node_Id
is
begin
return
Make_Function_Call (Loc,
Name => New_Occurrence_Of (RTE (RE_DT), Loc),
Parameter_Associations => New_List (
Unchecked_Convert_To (RTE (RE_Tag), Tag_Node)));
end Build_DT;
----------------------------
-- Build_Get_Access_Level --
----------------------------
function Build_Get_Access_Level
(Loc : Source_Ptr;
Tag_Node : Node_Id) return Node_Id
is
begin
return
Make_Selected_Component (Loc,
Prefix =>
Make_Explicit_Dereference (Loc,
Build_TSD (Loc,
Unchecked_Convert_To (RTE (RE_Address), Tag_Node))),
Selector_Name =>
New_Occurrence_Of
(RTE_Record_Component (RE_Access_Level), Loc));
end Build_Get_Access_Level;
-------------------------
-- Build_Get_Alignment --
-------------------------
function Build_Get_Alignment
(Loc : Source_Ptr;
Tag_Node : Node_Id) return Node_Id
is
begin
return
Make_Selected_Component (Loc,
Prefix =>
Make_Explicit_Dereference (Loc,
Build_TSD (Loc,
Unchecked_Convert_To (RTE (RE_Address), Tag_Node))),
Selector_Name =>
New_Occurrence_Of (RTE_Record_Component (RE_Alignment), Loc));
end Build_Get_Alignment;
------------------------------------------
-- Build_Get_Predefined_Prim_Op_Address --
------------------------------------------
procedure Build_Get_Predefined_Prim_Op_Address
(Loc : Source_Ptr;
Position : Uint;
Tag_Node : in out Node_Id;
New_Node : out Node_Id)
is
Ctrl_Tag : Node_Id;
begin
Ctrl_Tag := Unchecked_Convert_To (RTE (RE_Address), Tag_Node);
-- Unchecked_Convert_To relocates the controlling tag node and therefore
-- we must update it.
Tag_Node := Expression (Ctrl_Tag);
-- Build code that retrieves the address of the dispatch table
-- containing the predefined Ada primitives:
--
-- Generate:
-- To_Predef_Prims_Table_Ptr
-- (To_Addr_Ptr (To_Address (Tag) - Predef_Prims_Offset).all);
New_Node :=
Make_Indexed_Component (Loc,
Prefix =>
Unchecked_Convert_To (RTE (RE_Predef_Prims_Table_Ptr),
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To (RTE (RE_Addr_Ptr),
Make_Function_Call (Loc,
Name =>
Make_Expanded_Name (Loc,
Chars => Name_Op_Subtract,
Prefix =>
New_Occurrence_Of
(RTU_Entity (System_Storage_Elements), Loc),
Selector_Name =>
Make_Identifier (Loc, Name_Op_Subtract)),
Parameter_Associations => New_List (
Ctrl_Tag,
New_Occurrence_Of
(RTE (RE_DT_Predef_Prims_Offset), Loc)))))),
Expressions =>
New_List (Build_Val (Loc, Position)));
end Build_Get_Predefined_Prim_Op_Address;
-----------------------------
-- Build_Inherit_CPP_Prims --
-----------------------------
function Build_Inherit_CPP_Prims (Typ : Entity_Id) return List_Id is
Loc : constant Source_Ptr := Sloc (Typ);
CPP_Nb_Prims : constant Nat := CPP_Num_Prims (Typ);
CPP_Table : array (1 .. CPP_Nb_Prims) of Boolean := (others => False);
CPP_Typ : constant Entity_Id := Enclosing_CPP_Parent (Typ);
Result : constant List_Id := New_List;
Parent_Typ : constant Entity_Id := Etype (Typ);
E : Entity_Id;
Elmt : Elmt_Id;
Parent_Tag : Entity_Id;
Prim : Entity_Id;
Prim_Pos : Nat;
Typ_Tag : Entity_Id;
begin
pragma Assert (not Is_CPP_Class (Typ));
-- No code needed if this type has no primitives inherited from C++
if CPP_Nb_Prims = 0 then
return Result;
end if;
-- Stage 1: Inherit and override C++ slots of the primary dispatch table
-- Generate:
-- Typ'Tag (Prim_Pos) := Prim'Unrestricted_Access;
Parent_Tag := Node (First_Elmt (Access_Disp_Table (Parent_Typ)));
Typ_Tag := Node (First_Elmt (Access_Disp_Table (Typ)));
Elmt := First_Elmt (Primitive_Operations (Typ));
while Present (Elmt) loop
Prim := Node (Elmt);
E := Ultimate_Alias (Prim);
Prim_Pos := UI_To_Int (DT_Position (E));
-- Skip predefined, abstract, and eliminated primitives. Skip also
-- primitives not located in the C++ part of the dispatch table.
if not Is_Predefined_Dispatching_Operation (Prim)
and then not Is_Predefined_Dispatching_Operation (E)
and then not Present (Interface_Alias (Prim))
and then not Is_Abstract_Subprogram (E)
and then not Is_Eliminated (E)
and then Prim_Pos <= CPP_Nb_Prims
and then Find_Dispatching_Type (E) = Typ
then
-- Remember that this slot is used
pragma Assert (CPP_Table (Prim_Pos) = False);
CPP_Table (Prim_Pos) := True;
Append_To (Result,
Make_Assignment_Statement (Loc,
Name =>
Make_Indexed_Component (Loc,
Prefix =>
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To
(Node (Last_Elmt (Access_Disp_Table (Typ))),
New_Occurrence_Of (Typ_Tag, Loc))),
Expressions =>
New_List (Build_Val (Loc, UI_From_Int (Prim_Pos)))),
Expression =>
Unchecked_Convert_To (RTE (RE_Prim_Ptr),
Make_Attribute_Reference (Loc,
Prefix => New_Occurrence_Of (E, Loc),
Attribute_Name => Name_Unrestricted_Access))));
end if;
Next_Elmt (Elmt);
end loop;
-- If all primitives have been overridden then there is no need to copy
-- from Typ's parent its dispatch table. Otherwise, if some primitive is
-- inherited from the parent we copy only the C++ part of the dispatch
-- table from the parent before the assignments that initialize the
-- overridden primitives.
-- Generate:
-- type CPP_TypG is array (1 .. CPP_Nb_Prims) ofd Prim_Ptr;
-- type CPP_TypH is access CPP_TypG;
-- CPP_TypG!(Typ_Tag).all := CPP_TypG!(Parent_Tag).all;
-- Note: There is no need to duplicate the declarations of CPP_TypG and
-- CPP_TypH because, for expansion of dispatching calls, these
-- entities are stored in the last elements of Access_Disp_Table.
for J in CPP_Table'Range loop
if not CPP_Table (J) then
Prepend_To (Result,
Make_Assignment_Statement (Loc,
Name =>
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To
(Node (Last_Elmt (Access_Disp_Table (CPP_Typ))),
New_Occurrence_Of (Typ_Tag, Loc))),
Expression =>
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To
(Node (Last_Elmt (Access_Disp_Table (CPP_Typ))),
New_Occurrence_Of (Parent_Tag, Loc)))));
exit;
end if;
end loop;
-- Stage 2: Inherit and override C++ slots of secondary dispatch tables
declare
Iface : Entity_Id;
Iface_Nb_Prims : Nat;
Parent_Ifaces_List : Elist_Id;
Parent_Ifaces_Comp_List : Elist_Id;
Parent_Ifaces_Tag_List : Elist_Id;
Parent_Iface_Tag_Elmt : Elmt_Id;
Typ_Ifaces_List : Elist_Id;
Typ_Ifaces_Comp_List : Elist_Id;
Typ_Ifaces_Tag_List : Elist_Id;
Typ_Iface_Tag_Elmt : Elmt_Id;
begin
Collect_Interfaces_Info
(T => Parent_Typ,
Ifaces_List => Parent_Ifaces_List,
Components_List => Parent_Ifaces_Comp_List,
Tags_List => Parent_Ifaces_Tag_List);
Collect_Interfaces_Info
(T => Typ,
Ifaces_List => Typ_Ifaces_List,
Components_List => Typ_Ifaces_Comp_List,
Tags_List => Typ_Ifaces_Tag_List);
Parent_Iface_Tag_Elmt := First_Elmt (Parent_Ifaces_Tag_List);
Typ_Iface_Tag_Elmt := First_Elmt (Typ_Ifaces_Tag_List);
while Present (Parent_Iface_Tag_Elmt) loop
Parent_Tag := Node (Parent_Iface_Tag_Elmt);
Typ_Tag := Node (Typ_Iface_Tag_Elmt);
pragma Assert
(Related_Type (Parent_Tag) = Related_Type (Typ_Tag));
Iface := Related_Type (Parent_Tag);
Iface_Nb_Prims :=
UI_To_Int (DT_Entry_Count (First_Tag_Component (Iface)));
if Iface_Nb_Prims > 0 then
-- Update slots of overridden primitives
declare
Last_Nod : constant Node_Id := Last (Result);
Nb_Prims : constant Nat := UI_To_Int
(DT_Entry_Count
(First_Tag_Component (Iface)));
Elmt : Elmt_Id;
Prim : Entity_Id;
E : Entity_Id;
Prim_Pos : Nat;
Prims_Table : array (1 .. Nb_Prims) of Boolean;
begin
Prims_Table := (others => False);
Elmt := First_Elmt (Primitive_Operations (Typ));
while Present (Elmt) loop
Prim := Node (Elmt);
E := Ultimate_Alias (Prim);
if not Is_Predefined_Dispatching_Operation (Prim)
and then Present (Interface_Alias (Prim))
and then Find_Dispatching_Type (Interface_Alias (Prim))
= Iface
and then not Is_Abstract_Subprogram (E)
and then not Is_Eliminated (E)
and then Find_Dispatching_Type (E) = Typ
then
Prim_Pos := UI_To_Int (DT_Position (Prim));
-- Remember that this slot is already initialized
pragma Assert (Prims_Table (Prim_Pos) = False);
Prims_Table (Prim_Pos) := True;
Append_To (Result,
Make_Assignment_Statement (Loc,
Name =>
Make_Indexed_Component (Loc,
Prefix =>
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To
(Node
(Last_Elmt
(Access_Disp_Table (Iface))),
New_Occurrence_Of (Typ_Tag, Loc))),
Expressions =>
New_List
(Build_Val (Loc, UI_From_Int (Prim_Pos)))),
Expression =>
Unchecked_Convert_To (RTE (RE_Prim_Ptr),
Make_Attribute_Reference (Loc,
Prefix => New_Occurrence_Of (E, Loc),
Attribute_Name =>
Name_Unrestricted_Access))));
end if;
Next_Elmt (Elmt);
end loop;
-- Check if all primitives from the parent have been
-- overridden (to avoid copying the whole secondary
-- table from the parent).
-- IfaceG!(Typ_Sec_Tag).all := IfaceG!(Parent_Sec_Tag).all;
for J in Prims_Table'Range loop
if not Prims_Table (J) then
Insert_After (Last_Nod,
Make_Assignment_Statement (Loc,
Name =>
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To
(Node (Last_Elmt (Access_Disp_Table (Iface))),
New_Occurrence_Of (Typ_Tag, Loc))),
Expression =>
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To
(Node (Last_Elmt (Access_Disp_Table (Iface))),
New_Occurrence_Of (Parent_Tag, Loc)))));
exit;
end if;
end loop;
end;
end if;
Next_Elmt (Typ_Iface_Tag_Elmt);
Next_Elmt (Parent_Iface_Tag_Elmt);
end loop;
end;
return Result;
end Build_Inherit_CPP_Prims;
-------------------------
-- Build_Inherit_Prims --
-------------------------
function Build_Inherit_Prims
(Loc : Source_Ptr;
Typ : Entity_Id;
Old_Tag_Node : Node_Id;
New_Tag_Node : Node_Id;
Num_Prims : Nat) return Node_Id
is
begin
if RTE_Available (RE_DT) then
return
Make_Assignment_Statement (Loc,
Name =>
Make_Slice (Loc,
Prefix =>
Make_Selected_Component (Loc,
Prefix =>
Make_Explicit_Dereference (Loc,
Build_DT (Loc, New_Tag_Node)),
Selector_Name =>
New_Occurrence_Of
(RTE_Record_Component (RE_Prims_Ptr), Loc)),
Discrete_Range =>
Build_Range (Loc, 1, Num_Prims)),
Expression =>
Make_Slice (Loc,
Prefix =>
Make_Selected_Component (Loc,
Prefix =>
Make_Explicit_Dereference (Loc,
Build_DT (Loc, Old_Tag_Node)),
Selector_Name =>
New_Occurrence_Of
(RTE_Record_Component (RE_Prims_Ptr), Loc)),
Discrete_Range =>
Build_Range (Loc, 1, Num_Prims)));
else
return
Make_Assignment_Statement (Loc,
Name =>
Make_Slice (Loc,
Prefix =>
Unchecked_Convert_To
(Node (Last_Elmt (Access_Disp_Table (Typ))),
New_Tag_Node),
Discrete_Range =>
Build_Range (Loc, 1, Num_Prims)),
Expression =>
Make_Slice (Loc,
Prefix =>
Unchecked_Convert_To
(Node (Last_Elmt (Access_Disp_Table (Typ))),
Old_Tag_Node),
Discrete_Range =>
Build_Range (Loc, 1, Num_Prims)));
end if;
end Build_Inherit_Prims;
-------------------------------
-- Build_Get_Prim_Op_Address --
-------------------------------
procedure Build_Get_Prim_Op_Address
(Loc : Source_Ptr;
Typ : Entity_Id;
Position : Uint;
Tag_Node : in out Node_Id;
New_Node : out Node_Id)
is
New_Prefix : Node_Id;
begin
pragma Assert
(Position <= DT_Entry_Count (First_Tag_Component (Typ)));
-- At the end of the Access_Disp_Table list we have the type
-- declaration required to convert the tag into a pointer to
-- the prims_ptr table (see Freeze_Record_Type).
New_Prefix :=
Unchecked_Convert_To
(Node (Last_Elmt (Access_Disp_Table (Typ))), Tag_Node);
-- Unchecked_Convert_To relocates the controlling tag node and therefore
-- we must update it.
Tag_Node := Expression (New_Prefix);
New_Node :=
Make_Indexed_Component (Loc,
Prefix => New_Prefix,
Expressions => New_List (Build_Val (Loc, Position)));
end Build_Get_Prim_Op_Address;
-----------------------------
-- Build_Get_Transportable --
-----------------------------
function Build_Get_Transportable
(Loc : Source_Ptr;
Tag_Node : Node_Id) return Node_Id
is
begin
return
Make_Selected_Component (Loc,
Prefix =>
Make_Explicit_Dereference (Loc,
Build_TSD (Loc,
Unchecked_Convert_To (RTE (RE_Address), Tag_Node))),
Selector_Name =>
New_Occurrence_Of
(RTE_Record_Component (RE_Transportable), Loc));
end Build_Get_Transportable;
------------------------------------
-- Build_Inherit_Predefined_Prims --
------------------------------------
function Build_Inherit_Predefined_Prims
(Loc : Source_Ptr;
Old_Tag_Node : Node_Id;
New_Tag_Node : Node_Id;
Num_Predef_Prims : Nat) return Node_Id
is
begin
return
Make_Assignment_Statement (Loc,
Name =>
Make_Slice (Loc,
Prefix =>
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To (RTE (RE_Predef_Prims_Table_Ptr),
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To (RTE (RE_Addr_Ptr),
New_Tag_Node)))),
Discrete_Range =>
Build_Range (Loc, 1, Num_Predef_Prims)),
Expression =>
Make_Slice (Loc,
Prefix =>
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To (RTE (RE_Predef_Prims_Table_Ptr),
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To (RTE (RE_Addr_Ptr),
Old_Tag_Node)))),
Discrete_Range =>
Build_Range (Loc, 1, Num_Predef_Prims)));
end Build_Inherit_Predefined_Prims;
-------------------------
-- Build_Offset_To_Top --
-------------------------
function Build_Offset_To_Top
(Loc : Source_Ptr;
This_Node : Node_Id) return Node_Id
is
Tag_Node : Node_Id;
begin
Tag_Node :=
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To (RTE (RE_Tag_Ptr), This_Node));
return
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To (RTE (RE_Offset_To_Top_Ptr),
Make_Function_Call (Loc,
Name =>
Make_Expanded_Name (Loc,
Chars => Name_Op_Subtract,
Prefix =>
New_Occurrence_Of
(RTU_Entity (System_Storage_Elements), Loc),
Selector_Name => Make_Identifier (Loc, Name_Op_Subtract)),
Parameter_Associations => New_List (
Unchecked_Convert_To (RTE (RE_Address), Tag_Node),
New_Occurrence_Of
(RTE (RE_DT_Offset_To_Top_Offset), Loc)))));
end Build_Offset_To_Top;
-----------------
-- Build_Range --
-----------------
function Build_Range (Loc : Source_Ptr; Lo, Hi : Nat) return Node_Id is
Result : Node_Id;
begin
Result :=
Make_Range (Loc,
Low_Bound => Build_Val (Loc, UI_From_Int (Lo)),
High_Bound => Build_Val (Loc, UI_From_Int (Hi)));
Set_Etype (Result, Standard_Natural);
Set_Analyzed (Result);
return Result;
end Build_Range;
------------------------------------------
-- Build_Set_Predefined_Prim_Op_Address --
------------------------------------------
function Build_Set_Predefined_Prim_Op_Address
(Loc : Source_Ptr;
Tag_Node : Node_Id;
Position : Uint;
Address_Node : Node_Id) return Node_Id
is
begin
return
Make_Assignment_Statement (Loc,
Name =>
Make_Indexed_Component (Loc,
Prefix =>
Unchecked_Convert_To (RTE (RE_Predef_Prims_Table_Ptr),
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To (RTE (RE_Addr_Ptr), Tag_Node))),
Expressions =>
New_List (Build_Val (Loc, Position))),
Expression => Address_Node);
end Build_Set_Predefined_Prim_Op_Address;
-------------------------------
-- Build_Set_Prim_Op_Address --
-------------------------------
function Build_Set_Prim_Op_Address
(Loc : Source_Ptr;
Typ : Entity_Id;
Tag_Node : Node_Id;
Position : Uint;
Address_Node : Node_Id) return Node_Id
is
Ctrl_Tag : Node_Id := Tag_Node;
New_Node : Node_Id;
begin
Build_Get_Prim_Op_Address (Loc, Typ, Position, Ctrl_Tag, New_Node);
return
Make_Assignment_Statement (Loc,
Name => New_Node,
Expression => Address_Node);
end Build_Set_Prim_Op_Address;
-----------------------------
-- Build_Set_Size_Function --
-----------------------------
function Build_Set_Size_Function
(Loc : Source_Ptr;
Tag_Node : Node_Id;
Size_Func : Entity_Id) return Node_Id is
begin
pragma Assert (Chars (Size_Func) = Name_uSize
and then RTE_Record_Component_Available (RE_Size_Func));
return
Make_Assignment_Statement (Loc,
Name =>
Make_Selected_Component (Loc,
Prefix =>
Make_Explicit_Dereference (Loc,
Build_TSD (Loc,
Unchecked_Convert_To (RTE (RE_Address), Tag_Node))),
Selector_Name =>
New_Occurrence_Of
(RTE_Record_Component (RE_Size_Func), Loc)),
Expression =>
Unchecked_Convert_To (RTE (RE_Size_Ptr),
Make_Attribute_Reference (Loc,
Prefix => New_Occurrence_Of (Size_Func, Loc),
Attribute_Name => Name_Unrestricted_Access)));
end Build_Set_Size_Function;
------------------------------------
-- Build_Set_Static_Offset_To_Top --
------------------------------------
function Build_Set_Static_Offset_To_Top
(Loc : Source_Ptr;
Iface_Tag : Node_Id;
Offset_Value : Node_Id) return Node_Id is
begin
return
Make_Assignment_Statement (Loc,
Make_Explicit_Dereference (Loc,
Unchecked_Convert_To (RTE (RE_Offset_To_Top_Ptr),
Make_Function_Call (Loc,
Name =>
Make_Expanded_Name (Loc,
Chars => Name_Op_Subtract,
Prefix =>
New_Occurrence_Of
(RTU_Entity (System_Storage_Elements), Loc),
Selector_Name => Make_Identifier (Loc, Name_Op_Subtract)),
Parameter_Associations => New_List (
Unchecked_Convert_To (RTE (RE_Address), Iface_Tag),
New_Occurrence_Of
(RTE (RE_DT_Offset_To_Top_Offset), Loc))))),
Offset_Value);
end Build_Set_Static_Offset_To_Top;
---------------
-- Build_TSD --
---------------
function Build_TSD
(Loc : Source_Ptr;
Tag_Node_Addr : Node_Id) return Node_Id is
begin
return
Unchecked_Convert_To (RTE (RE_Type_Specific_Data_Ptr),
Make_Explicit_Dereference (Loc,
Prefix => Unchecked_Convert_To (RTE (RE_Addr_Ptr),
Make_Function_Call (Loc,
Name =>
Make_Expanded_Name (Loc,
Chars => Name_Op_Subtract,
Prefix =>
New_Occurrence_Of
(RTU_Entity (System_Storage_Elements), Loc),
Selector_Name => Make_Identifier (Loc, Name_Op_Subtract)),
Parameter_Associations => New_List (
Tag_Node_Addr,
New_Occurrence_Of
(RTE (RE_DT_Typeinfo_Ptr_Size), Loc))))));
end Build_TSD;
---------------
-- Build_Val --
---------------
function Build_Val (Loc : Source_Ptr; V : Uint) return Node_Id is
Result : Node_Id;
begin
Result := Make_Integer_Literal (Loc, V);
Set_Etype (Result, Standard_Natural);
Set_Is_Static_Expression (Result);
Set_Analyzed (Result);
return Result;
end Build_Val;
end Exp_Atag;
| 36.38046 | 79 | 0.507914 |
4ade04b473e31700cb42b7e0b7f939a993db6528 | 7,528 | ads | Ada | SVD2ada/svd/stm32_svd-nvic.ads | JCGobbi/Nucleo-STM32G474RE | 8dc1c4948ffeb11841eed10f1c3708f00fa1d832 | [
"BSD-3-Clause"
] | null | null | null | SVD2ada/svd/stm32_svd-nvic.ads | JCGobbi/Nucleo-STM32G474RE | 8dc1c4948ffeb11841eed10f1c3708f00fa1d832 | [
"BSD-3-Clause"
] | null | null | null | SVD2ada/svd/stm32_svd-nvic.ads | JCGobbi/Nucleo-STM32G474RE | 8dc1c4948ffeb11841eed10f1c3708f00fa1d832 | [
"BSD-3-Clause"
] | null | null | null | pragma Style_Checks (Off);
-- This spec has been automatically generated from STM32G474xx.svd
pragma Restrictions (No_Elaboration_Code);
with HAL;
with System;
package STM32_SVD.NVIC is
pragma Preelaborate;
---------------
-- Registers --
---------------
-- IPR_IPR_N array element
subtype IPR_IPR_N_Element is HAL.UInt8;
-- IPR_IPR_N array
type IPR_IPR_N_Field_Array is array (0 .. 3) of IPR_IPR_N_Element
with Component_Size => 8, Size => 32;
-- Interrupt Priority Register
type IPR_Register
(As_Array : Boolean := False)
is record
case As_Array is
when False =>
-- IPR_N as a value
Val : HAL.UInt32;
when True =>
-- IPR_N as an array
Arr : IPR_IPR_N_Field_Array;
end case;
end record
with Unchecked_Union, Size => 32, Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for IPR_Register use record
Val at 0 range 0 .. 31;
Arr at 0 range 0 .. 31;
end record;
subtype STIR_INTID_Field is HAL.UInt9;
-- Software trigger interrupt register
type STIR_Register is record
-- Software generated interrupt ID
INTID : STIR_INTID_Field := 16#0#;
-- unspecified
Reserved_9_31 : HAL.UInt23 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for STIR_Register use record
INTID at 0 range 0 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
-----------------
-- Peripherals --
-----------------
-- Nested Vectored Interrupt Controller
type NVIC_Peripheral is record
-- Interrupt Set-Enable Register
ISER0 : aliased HAL.UInt32;
-- Interrupt Set-Enable Register
ISER1 : aliased HAL.UInt32;
-- Interrupt Set-Enable Register
ISER2 : aliased HAL.UInt32;
-- Interrupt Set-Enable Register
ISER3 : aliased HAL.UInt32;
-- Interrupt Clear-Enable Register
ICER0 : aliased HAL.UInt32;
-- Interrupt Clear-Enable Register
ICER1 : aliased HAL.UInt32;
-- Interrupt Clear-Enable Register
ICER2 : aliased HAL.UInt32;
-- Interrupt Clear-Enable Register
ICER3 : aliased HAL.UInt32;
-- Interrupt Set-Pending Register
ISPR0 : aliased HAL.UInt32;
-- Interrupt Set-Pending Register
ISPR1 : aliased HAL.UInt32;
-- Interrupt Set-Pending Register
ISPR2 : aliased HAL.UInt32;
-- Interrupt Set-Pending Register
ISPR3 : aliased HAL.UInt32;
-- Interrupt Clear-Pending Register
ICPR0 : aliased HAL.UInt32;
-- Interrupt Clear-Pending Register
ICPR1 : aliased HAL.UInt32;
-- Interrupt Clear-Pending Register
ICPR2 : aliased HAL.UInt32;
-- Interrupt Clear-Pending Register
ICPR3 : aliased HAL.UInt32;
-- Interrupt Active Bit Register
IABR0 : aliased HAL.UInt32;
-- Interrupt Active Bit Register
IABR1 : aliased HAL.UInt32;
-- Interrupt Active Bit Register
IABR2 : aliased HAL.UInt32;
-- Interrupt Active Bit Register
IABR3 : aliased HAL.UInt32;
-- Interrupt Priority Register
IPR0 : aliased IPR_Register;
-- Interrupt Priority Register
IPR1 : aliased IPR_Register;
-- Interrupt Priority Register
IPR2 : aliased IPR_Register;
-- Interrupt Priority Register
IPR3 : aliased IPR_Register;
-- Interrupt Priority Register
IPR4 : aliased IPR_Register;
-- Interrupt Priority Register
IPR5 : aliased IPR_Register;
-- Interrupt Priority Register
IPR6 : aliased IPR_Register;
-- Interrupt Priority Register
IPR7 : aliased IPR_Register;
-- Interrupt Priority Register
IPR8 : aliased IPR_Register;
-- Interrupt Priority Register
IPR9 : aliased IPR_Register;
-- Interrupt Priority Register
IPR10 : aliased IPR_Register;
-- Interrupt Priority Register
IPR11 : aliased IPR_Register;
-- Interrupt Priority Register
IPR12 : aliased IPR_Register;
-- Interrupt Priority Register
IPR13 : aliased IPR_Register;
-- Interrupt Priority Register
IPR14 : aliased IPR_Register;
-- Interrupt Priority Register
IPR15 : aliased IPR_Register;
-- Interrupt Priority Register
IPR16 : aliased IPR_Register;
-- Interrupt Priority Register
IPR17 : aliased IPR_Register;
-- Interrupt Priority Register
IPR18 : aliased IPR_Register;
-- Interrupt Priority Register
IPR19 : aliased IPR_Register;
-- Interrupt Priority Register
IPR20 : aliased IPR_Register;
-- Interrupt Priority Register
IPR21 : aliased HAL.UInt32;
-- Interrupt Priority Register
IPR22 : aliased HAL.UInt32;
-- Interrupt Priority Register
IPR23 : aliased HAL.UInt32;
-- Interrupt Priority Register
IPR24 : aliased HAL.UInt32;
-- Interrupt Priority Register
IPR25 : aliased HAL.UInt32;
end record
with Volatile;
for NVIC_Peripheral use record
ISER0 at 16#0# range 0 .. 31;
ISER1 at 16#4# range 0 .. 31;
ISER2 at 16#8# range 0 .. 31;
ISER3 at 16#C# range 0 .. 31;
ICER0 at 16#80# range 0 .. 31;
ICER1 at 16#84# range 0 .. 31;
ICER2 at 16#88# range 0 .. 31;
ICER3 at 16#8C# range 0 .. 31;
ISPR0 at 16#100# range 0 .. 31;
ISPR1 at 16#104# range 0 .. 31;
ISPR2 at 16#108# range 0 .. 31;
ISPR3 at 16#10C# range 0 .. 31;
ICPR0 at 16#180# range 0 .. 31;
ICPR1 at 16#184# range 0 .. 31;
ICPR2 at 16#188# range 0 .. 31;
ICPR3 at 16#18C# range 0 .. 31;
IABR0 at 16#200# range 0 .. 31;
IABR1 at 16#204# range 0 .. 31;
IABR2 at 16#208# range 0 .. 31;
IABR3 at 16#20C# range 0 .. 31;
IPR0 at 16#300# range 0 .. 31;
IPR1 at 16#304# range 0 .. 31;
IPR2 at 16#308# range 0 .. 31;
IPR3 at 16#30C# range 0 .. 31;
IPR4 at 16#310# range 0 .. 31;
IPR5 at 16#314# range 0 .. 31;
IPR6 at 16#318# range 0 .. 31;
IPR7 at 16#31C# range 0 .. 31;
IPR8 at 16#320# range 0 .. 31;
IPR9 at 16#324# range 0 .. 31;
IPR10 at 16#328# range 0 .. 31;
IPR11 at 16#32C# range 0 .. 31;
IPR12 at 16#330# range 0 .. 31;
IPR13 at 16#334# range 0 .. 31;
IPR14 at 16#338# range 0 .. 31;
IPR15 at 16#33C# range 0 .. 31;
IPR16 at 16#340# range 0 .. 31;
IPR17 at 16#344# range 0 .. 31;
IPR18 at 16#348# range 0 .. 31;
IPR19 at 16#34C# range 0 .. 31;
IPR20 at 16#350# range 0 .. 31;
IPR21 at 16#354# range 0 .. 31;
IPR22 at 16#358# range 0 .. 31;
IPR23 at 16#35C# range 0 .. 31;
IPR24 at 16#360# range 0 .. 31;
IPR25 at 16#364# range 0 .. 31;
end record;
-- Nested Vectored Interrupt Controller
NVIC_Periph : aliased NVIC_Peripheral
with Import, Address => NVIC_Base;
-- Nested vectored interrupt controller
type NVIC_STIR_Peripheral is record
-- Software trigger interrupt register
STIR : aliased STIR_Register;
end record
with Volatile;
for NVIC_STIR_Peripheral use record
STIR at 0 range 0 .. 31;
end record;
-- Nested vectored interrupt controller
NVIC_STIR_Periph : aliased NVIC_STIR_Peripheral
with Import, Address => NVIC_STIR_Base;
end STM32_SVD.NVIC;
| 32.448276 | 79 | 0.615436 |
c5b861970751fdccfe382f4462aba2255a369ff1 | 6,812 | ads | Ada | src/util-serialize-io.ads | Letractively/ada-util | e4c63b93635dc07c46e95f12ba02d18903b307b3 | [
"Apache-2.0"
] | null | null | null | src/util-serialize-io.ads | Letractively/ada-util | e4c63b93635dc07c46e95f12ba02d18903b307b3 | [
"Apache-2.0"
] | null | null | null | src/util-serialize-io.ads | Letractively/ada-util | e4c63b93635dc07c46e95f12ba02d18903b307b3 | [
"Apache-2.0"
] | null | null | null | -----------------------------------------------------------------------
-- util-serialize-io -- IO Drivers for serialization
-- Copyright (C) 2010, 2011 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with Ada.Containers;
with Ada.Strings.Unbounded;
with Util.Beans.Objects;
with Util.Streams;
with Util.Streams.Buffered;
with Util.Serialize.Contexts;
with Util.Serialize.Mappers;
with Util.Log.Loggers;
with Util.Stacks;
package Util.Serialize.IO is
Parse_Error : exception;
-- ------------------------------
-- Output stream for serialization
-- ------------------------------
-- The <b>Output_Stream</b> interface defines the abstract operations for
-- the serialization framework to write objects on the stream according to
-- a target format such as XML or JSON.
type Output_Stream is limited interface and Util.Streams.Output_Stream;
procedure Start_Entity (Stream : in out Output_Stream;
Name : in String) is null;
procedure End_Entity (Stream : in out Output_Stream;
Name : in String) is null;
procedure Write_Attribute (Stream : in out Output_Stream;
Name : in String;
Value : in Util.Beans.Objects.Object) is abstract;
procedure Write_Entity (Stream : in out Output_Stream;
Name : in String;
Value : in Util.Beans.Objects.Object) is abstract;
procedure Start_Array (Stream : in out Output_Stream;
Length : in Ada.Containers.Count_Type) is null;
procedure End_Array (Stream : in out Output_Stream) is null;
type Parser is abstract new Util.Serialize.Contexts.Context with private;
-- Parse the stream using the JSON parser.
procedure Parse (Handler : in out Parser;
Stream : in out Util.Streams.Buffered.Buffered_Stream'Class) is abstract;
-- Read the file and parse it using the parser.
procedure Parse (Handler : in out Parser;
File : in String);
-- Parse the content string.
procedure Parse_String (Handler : in out Parser;
Content : in String);
-- Returns true if the <b>Parse</b> operation detected at least one error.
function Has_Error (Handler : in Parser) return Boolean;
-- Set the error logger to report messages while parsing and reading the input file.
procedure Set_Logger (Handler : in out Parser;
Logger : in Util.Log.Loggers.Logger_Access);
-- Start a new object associated with the given name. This is called when
-- the '{' is reached. The reader must be updated so that the next
-- <b>Set_Member</b> procedure will associate the name/value pair on the
-- new object.
procedure Start_Object (Handler : in out Parser;
Name : in String);
-- Finish an object associated with the given name. The reader must be
-- updated to be associated with the previous object.
procedure Finish_Object (Handler : in out Parser;
Name : in String);
procedure Start_Array (Handler : in out Parser;
Name : in String);
procedure Finish_Array (Handler : in out Parser;
Name : in String);
-- Set the name/value pair on the current object. For each active mapping,
-- find whether a rule matches our name and execute it.
procedure Set_Member (Handler : in out Parser;
Name : in String;
Value : in Util.Beans.Objects.Object;
Attribute : in Boolean := False);
-- Get the current location (file and line) to report an error message.
function Get_Location (Handler : in Parser) return String;
-- Report an error while parsing the input stream. The error message will be reported
-- on the logger associated with the parser. The parser will be set as in error so that
-- the <b>Has_Error</b> function will return True after parsing the whole file.
procedure Error (Handler : in out Parser;
Message : in String);
procedure Add_Mapping (Handler : in out Parser;
Path : in String;
Mapper : in Util.Serialize.Mappers.Mapper_Access);
-- Dump the mapping tree on the logger using the INFO log level.
procedure Dump (Handler : in Parser'Class;
Logger : in Util.Log.Loggers.Logger'Class);
private
-- Implementation limitation: the max number of active mapping nodes
MAX_NODES : constant Positive := 10;
type Mapper_Access_Array is array (1 .. MAX_NODES) of Serialize.Mappers.Mapper_Access;
procedure Push (Handler : in out Parser);
-- Pop the context and restore the previous context when leaving an element
procedure Pop (Handler : in out Parser);
function Find_Mapper (Handler : in Parser;
Name : in String) return Util.Serialize.Mappers.Mapper_Access;
type Element_Context is record
-- The object mapper being process.
Object_Mapper : Util.Serialize.Mappers.Mapper_Access;
-- The active mapping nodes.
Active_Nodes : Mapper_Access_Array;
end record;
type Element_Context_Access is access all Element_Context;
package Context_Stack is new Util.Stacks (Element_Type => Element_Context,
Element_Type_Access => Element_Context_Access);
type Parser is abstract new Util.Serialize.Contexts.Context with record
Error_Flag : Boolean := False;
Stack : Context_Stack.Stack;
Mapping_Tree : aliased Mappers.Mapper;
Current_Mapper : Util.Serialize.Mappers.Mapper_Access;
-- The file name to use when reporting errors.
File : Ada.Strings.Unbounded.Unbounded_String;
-- The logger which is used to report error messages when parsing an input file.
Error_Logger : Util.Log.Loggers.Logger_Access := null;
end record;
end Util.Serialize.IO;
| 41.791411 | 94 | 0.633294 |
c506d6059b4bb0402d8142dcc1a18039430bf907 | 239 | ads | Ada | src/GBA.BIOS.Thumb.ads | 98devin/ada-gba-dev | 6ebca014b7537117144d878db8d13db49aa00cee | [
"Zlib"
] | 7 | 2021-04-08T02:32:54.000Z | 2022-02-14T01:21:43.000Z | src/GBA.BIOS.Thumb.ads | 98devin/ada-gba-dev | 6ebca014b7537117144d878db8d13db49aa00cee | [
"Zlib"
] | 15 | 2021-04-09T20:13:33.000Z | 2021-12-22T01:03:59.000Z | src/GBA.BIOS.Thumb.ads | 98devin/ada-gba-dev | 6ebca014b7537117144d878db8d13db49aa00cee | [
"Zlib"
] | 1 | 2021-06-12T07:48:05.000Z | 2021-06-12T07:48:05.000Z | -- Copyright (c) 2021 Devin Hill
-- zlib License -- see LICENSE for details.
with GBA.BIOS.Raw.Thumb;
with GBA.BIOS.Extended_Interface;
package GBA.BIOS.Thumb is
new GBA.BIOS.Extended_Interface (GBA.BIOS.Raw.Thumb.Generic_Interface);
| 23.9 | 73 | 0.76569 |
c51849205bc9bdfaafeb8c872ae3bb95937c9c6c | 6,714 | ads | Ada | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/s-valllu.ads | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/s-valllu.ads | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/s-valllu.ads | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- S Y S T E M . V A L _ L L U --
-- --
-- S p e c --
-- --
-- Copyright (C) 1992-2019, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
-- This package contains routines for scanning modular Long_Long_Unsigned
-- values for use in Text_IO.Modular_IO, and the Value attribute.
with System.Unsigned_Types;
package System.Val_LLU is
pragma Pure;
function Scan_Raw_Long_Long_Unsigned
(Str : String;
Ptr : not null access Integer;
Max : Integer) return System.Unsigned_Types.Long_Long_Unsigned;
-- This function scans the string starting at Str (Ptr.all) for a valid
-- integer according to the syntax described in (RM 3.5(43)). The substring
-- scanned extends no further than Str (Max). Note: this does not scan
-- leading or trailing blanks, nor leading sign.
--
-- There are three cases for the return:
--
-- If a valid integer is found, then Ptr.all is updated past the last
-- character of the integer.
--
-- If no valid integer is found, then Ptr.all points either to an initial
-- non-digit character, or to Max + 1 if the field is all spaces and the
-- exception Constraint_Error is raised.
--
-- If a syntactically valid integer is scanned, but the value is out of
-- range, or, in the based case, the base value is out of range or there
-- is an out of range digit, then Ptr.all points past the integer, and
-- Constraint_Error is raised.
--
-- Note: these rules correspond to the requirements for leaving the pointer
-- positioned in Text_IO.Get. Note that the rules as stated in the RM would
-- seem to imply that for a case like:
--
-- 8#12345670009#
--
-- the pointer should be left at the first # having scanned out the longest
-- valid integer literal (8), but in fact in this case the pointer points
-- past the final # and Constraint_Error is raised. This is the behavior
-- expected for Text_IO and enforced by the ACATS tests.
--
-- If a based literal is malformed in that a character other than a valid
-- hexadecimal digit is encountered during scanning out the digits after
-- the # (this includes the case of using the wrong terminator, : instead
-- of # or vice versa) there are two cases. If all the digits before the
-- non-digit are in range of the base, as in
--
-- 8#100x00#
-- 8#100:
--
-- then in this case, the "base" value before the initial # is returned as
-- the result, and the pointer points to the initial # character on return.
--
-- If an out of range digit has been detected before the invalid character,
-- as in:
--
-- 8#900x00#
-- 8#900:
--
-- then the pointer is also left at the initial # character, but constraint
-- error is raised reflecting the encounter of an out of range digit.
--
-- Finally if we have an unterminated fixed-point constant where the final
-- # or : character is missing, Constraint_Error is raised and the pointer
-- is left pointing past the last digit, as in:
--
-- 8#22
--
-- This string results in a Constraint_Error with the pointer pointing
-- past the second 2.
--
-- Note: if Str is empty, i.e. if Max is less than Ptr, then this is a
-- special case of an all-blank string, and Ptr is unchanged, and hence
-- is greater than Max as required in this case.
--
-- Note: this routine should not be called with Str'Last = Positive'Last.
-- If this occurs Program_Error is raised with a message noting that this
-- case is not supported. Most such cases are eliminated by the caller.
function Scan_Long_Long_Unsigned
(Str : String;
Ptr : not null access Integer;
Max : Integer) return System.Unsigned_Types.Long_Long_Unsigned;
-- Same as Scan_Raw_Long_Long_Unsigned, except scans optional leading
-- blanks, and an optional leading plus sign.
--
-- Note: if a minus sign is present, Constraint_Error will be raised.
-- Note: trailing blanks are not scanned.
function Value_Long_Long_Unsigned
(Str : String) return System.Unsigned_Types.Long_Long_Unsigned;
-- Used in computing X'Value (Str) where X is a modular integer type whose
-- modulus exceeds the range of System.Unsigned_Types.Unsigned. Str is the
-- string argument of the attribute. Constraint_Error is raised if the
-- string is malformed, or if the value is out of range.
end System.Val_LLU;
| 51.646154 | 79 | 0.574322 |
cba93c4629bc005d78d5a48f7c474f637931d42f | 6,877 | adb | Ada | Ada95/samples/ncurses2-overlap_test.adb | cpjreynolds/ncurses | 97e4d0cc333e12d1c191aa3c2a85381dd127997f | [
"X11"
] | null | null | null | Ada95/samples/ncurses2-overlap_test.adb | cpjreynolds/ncurses | 97e4d0cc333e12d1c191aa3c2a85381dd127997f | [
"X11"
] | null | null | null | Ada95/samples/ncurses2-overlap_test.adb | cpjreynolds/ncurses | 97e4d0cc333e12d1c191aa3c2a85381dd127997f | [
"X11"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT ncurses Binding Samples --
-- --
-- ncurses --
-- --
-- B O D Y --
-- --
------------------------------------------------------------------------------
-- Copyright (c) 2000-2011,2014 Free Software Foundation, Inc. --
-- --
-- Permission is hereby granted, free of charge, to any person obtaining a --
-- copy of this software and associated documentation files (the --
-- "Software"), to deal in the Software without restriction, including --
-- without limitation the rights to use, copy, modify, merge, publish, --
-- distribute, distribute with modifications, sublicense, and/or sell --
-- copies of the Software, and to permit persons to whom the Software is --
-- furnished to do so, subject to the following conditions: --
-- --
-- The above copyright notice and this permission notice shall be included --
-- in all copies or substantial portions of the Software. --
-- --
-- THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS --
-- OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF --
-- MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. --
-- IN NO EVENT SHALL THE ABOVE COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, --
-- DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR --
-- OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR --
-- THE USE OR OTHER DEALINGS IN THE SOFTWARE. --
-- --
-- Except as contained in this notice, the name(s) of the above copyright --
-- holders shall not be used in advertising or otherwise to promote the --
-- sale, use or other dealings in this Software without prior written --
-- authorization. --
------------------------------------------------------------------------------
-- Author: Eugene V. Melaragno <aldomel@ix.netcom.com> 2000
-- Version Control
-- $Revision: 1.6 $
-- $Date: 2014/09/13 19:10:18 $
-- Binding Version 01.00
------------------------------------------------------------------------------
with ncurses2.util; use ncurses2.util;
with Terminal_Interface.Curses; use Terminal_Interface.Curses;
-- test effects of overlapping windows
procedure ncurses2.overlap_test is
procedure fillwin (win : Window; ch : Character);
procedure crosswin (win : Window; ch : Character);
procedure fillwin (win : Window; ch : Character) is
y1 : Line_Position;
x1 : Column_Position;
begin
Get_Size (win, y1, x1);
for y in 0 .. y1 - 1 loop
Move_Cursor (win, y, 0);
for x in 0 .. x1 - 1 loop
Add (win, Ch => ch);
end loop;
end loop;
exception
when Curses_Exception => null;
-- write to lower right corner
end fillwin;
procedure crosswin (win : Window; ch : Character) is
y1 : Line_Position;
x1 : Column_Position;
begin
Get_Size (win, y1, x1);
for y in 0 .. y1 - 1 loop
for x in 0 .. x1 - 1 loop
if ((x > (x1 - 1) / 3) and (x <= (2 * (x1 - 1)) / 3)) or
(((y > (y1 - 1) / 3) and (y <= (2 * (y1 - 1)) / 3)))
then
Move_Cursor (win, y, x);
Add (win, Ch => ch);
end if;
end loop;
end loop;
end crosswin;
-- In a 24x80 screen like some xterms are, the instructions will
-- be overwritten.
ch : Character;
win1 : Window := New_Window (9, 20, 3, 3);
win2 : Window := New_Window (9, 20, 9, 16);
begin
Set_Raw_Mode (SwitchOn => True);
Refresh;
Move_Cursor (Line => 0, Column => 0);
Add (Str => "This test shows the behavior of wnoutrefresh() with " &
"respect to");
Add (Ch => newl);
Add (Str => "the shared region of two overlapping windows A and B. "&
"The cross");
Add (Ch => newl);
Add (Str => "pattern in each window does not overlap the other.");
Add (Ch => newl);
Move_Cursor (Line => 18, Column => 0);
Add (Str => "a = refresh A, then B, then doupdate. b = refresh B, " &
"then A, then doupdate");
Add (Ch => newl);
Add (Str => "c = fill window A with letter A. d = fill window B " &
"with letter B.");
Add (Ch => newl);
Add (Str => "e = cross pattern in window A. f = cross pattern " &
"in window B.");
Add (Ch => newl);
Add (Str => "g = clear window A. h = clear window B.");
Add (Ch => newl);
Add (Str => "i = overwrite A onto B. j = overwrite " &
"B onto A.");
Add (Ch => newl);
Add (Str => "^Q/ESC = terminate test.");
loop
ch := Code_To_Char (Getchar);
exit when ch = CTRL ('Q') or ch = CTRL ('['); -- QUIT or ESCAPE
case ch is
when 'a' => -- refresh window A first, then B
Refresh_Without_Update (win1);
Refresh_Without_Update (win2);
Update_Screen;
when 'b' => -- refresh window B first, then A
Refresh_Without_Update (win2);
Refresh_Without_Update (win1);
Update_Screen;
when 'c' => -- fill window A so it's visible
fillwin (win1, 'A');
when 'd' => -- fill window B so it's visible
fillwin (win2, 'B');
when 'e' => -- cross test pattern in window A
crosswin (win1, 'A');
when 'f' => -- cross test pattern in window B
crosswin (win2, 'B');
when 'g' => -- clear window A
Clear (win1);
Move_Cursor (win1, 0, 0);
when 'h' => -- clear window B
Clear (win2);
Move_Cursor (win2, 0, 0);
when 'i' => -- overwrite A onto B
Overwrite (win1, win2);
when 'j' => -- overwrite B onto A
Overwrite (win2, win1);
when others => null;
end case;
end loop;
Delete (win2);
Delete (win1);
Erase;
End_Windows;
end ncurses2.overlap_test;
| 43.251572 | 78 | 0.470554 |
c5d21a1a2d2c9d576aee7ceb740e9e6eb456fc7b | 5,384 | adb | Ada | gcc-gcc-7_3_0-release/gcc/ada/a-ztcoio.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 7 | 2020-05-02T17:34:05.000Z | 2021-10-17T10:15:18.000Z | gcc-gcc-7_3_0-release/gcc/ada/a-ztcoio.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | null | null | null | gcc-gcc-7_3_0-release/gcc/ada/a-ztcoio.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 2 | 2020-07-27T00:22:36.000Z | 2021-04-01T09:41:02.000Z | ------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- A D A . W I D E _ W I D E _ T E X T _ IO . C O M P L E X _ I O --
-- --
-- B o d y --
-- --
-- Copyright (C) 1992-2009, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with Ada.Wide_Wide_Text_IO.Complex_Aux;
with System.WCh_Con; use System.WCh_Con;
with System.WCh_WtS; use System.WCh_WtS;
with Ada.Unchecked_Conversion;
package body Ada.Wide_Wide_Text_IO.Complex_IO is
package Aux renames Ada.Wide_Wide_Text_IO.Complex_Aux;
subtype LLF is Long_Long_Float;
-- Type used for calls to routines in Aux
function TFT is new
Ada.Unchecked_Conversion (File_Type, Ada.Wide_Wide_Text_IO.File_Type);
-- This unchecked conversion is to get around a visibility bug in
-- GNAT version 2.04w. It should be possible to simply use the
-- subtype declared above and do normal checked conversions.
---------
-- Get --
---------
procedure Get
(File : File_Type;
Item : out Complex;
Width : Field := 0)
is
Real_Item : Real'Base;
Imag_Item : Real'Base;
begin
Aux.Get (TFT (File), LLF (Real_Item), LLF (Imag_Item), Width);
Item := (Real_Item, Imag_Item);
exception
when Constraint_Error => raise Data_Error;
end Get;
---------
-- Get --
---------
procedure Get
(Item : out Complex;
Width : Field := 0)
is
begin
Get (Current_Input, Item, Width);
end Get;
---------
-- Get --
---------
procedure Get
(From : Wide_Wide_String;
Item : out Complex;
Last : out Positive)
is
Real_Item : Real'Base;
Imag_Item : Real'Base;
S : constant String := Wide_Wide_String_To_String (From, WCEM_Upper);
-- String on which we do the actual conversion. Note that the method
-- used for wide character encoding is irrelevant, since if there is
-- a character outside the Standard.Character range then the call to
-- Aux.Gets will raise Data_Error in any case.
begin
Aux.Gets (S, LLF (Real_Item), LLF (Imag_Item), Last);
Item := (Real_Item, Imag_Item);
exception
when Data_Error => raise Constraint_Error;
end Get;
---------
-- Put --
---------
procedure Put
(File : File_Type;
Item : Complex;
Fore : Field := Default_Fore;
Aft : Field := Default_Aft;
Exp : Field := Default_Exp)
is
begin
Aux.Put (TFT (File), LLF (Re (Item)), LLF (Im (Item)), Fore, Aft, Exp);
end Put;
---------
-- Put --
---------
procedure Put
(Item : Complex;
Fore : Field := Default_Fore;
Aft : Field := Default_Aft;
Exp : Field := Default_Exp)
is
begin
Put (Current_Output, Item, Fore, Aft, Exp);
end Put;
---------
-- Put --
---------
procedure Put
(To : out Wide_Wide_String;
Item : Complex;
Aft : Field := Default_Aft;
Exp : Field := Default_Exp)
is
S : String (To'First .. To'Last);
begin
Aux.Puts (S, LLF (Re (Item)), LLF (Im (Item)), Aft, Exp);
for J in S'Range loop
To (J) := Wide_Wide_Character'Val (Character'Pos (S (J)));
end loop;
end Put;
end Ada.Wide_Wide_Text_IO.Complex_IO;
| 33.65 | 78 | 0.494056 |
d098cee34246c303e448f22a634e235b346f0a25 | 12,787 | ads | Ada | regtests/server/src/server/testapi-skeletons.ads | mgrojo/swagger-ada | ba592a8c9cd76304bef8f1d48738069b8c73b4a6 | [
"Apache-2.0"
] | null | null | null | regtests/server/src/server/testapi-skeletons.ads | mgrojo/swagger-ada | ba592a8c9cd76304bef8f1d48738069b8c73b4a6 | [
"Apache-2.0"
] | null | null | null | regtests/server/src/server/testapi-skeletons.ads | mgrojo/swagger-ada | ba592a8c9cd76304bef8f1d48738069b8c73b4a6 | [
"Apache-2.0"
] | null | null | null | -- REST API Validation
-- API to validate
--
-- The version of the OpenAPI document: 1.0.0
-- Contact: Stephane.Carrez@gmail.com
--
-- NOTE: This package is auto generated by OpenAPI-Generator 6.0.0-SNAPSHOT.
-- https://openapi-generator.tech
-- Do not edit the class manually.
pragma Warnings (Off, "*is not referenced");
pragma Warnings (Off, "*no entities of*are referenced");
with Swagger.Servers;
with TestAPI.Models;
with Security.Permissions;
package TestAPI.Skeletons is
pragma Style_Checks ("-mr");
pragma Warnings (Off, "*use clause for package*");
use TestAPI.Models;
type Server_Type is limited interface;
-- Update a ticket
package ACL_Write_Ticket is new Security.Permissions.Definition ("write:ticket");
-- Read a ticket
package ACL_Read_Ticket is new Security.Permissions.Definition ("read:ticket");
--
-- Query an orchestrated service instance
procedure Orch_Store
(Server : in out Server_Type;
Inline_Object_3Type : in InlineObject3_Type;
Context : in out Swagger.Servers.Context_Type) is abstract;
--
procedure Test_Text_Response
(Server : in out Server_Type;
Options : in Swagger.Nullable_UString;
Result : out Swagger.UString;
Context : in out Swagger.Servers.Context_Type) is abstract;
-- Create a ticket
procedure Do_Create_Ticket
(Server : in out Server_Type;
Title : in Swagger.UString;
Owner : in Swagger.Nullable_UString;
Status : in Swagger.Nullable_UString;
Description : in Swagger.Nullable_UString;
Context : in out Swagger.Servers.Context_Type) is abstract;
-- Delete a ticket
procedure Do_Delete_Ticket
(Server : in out Server_Type;
Tid : in Swagger.Long;
Context : in out Swagger.Servers.Context_Type) is abstract;
-- List the tickets
procedure Do_Head_Ticket
(Server : in out Server_Type
;
Context : in out Swagger.Servers.Context_Type) is abstract;
-- Patch a ticket
procedure Do_Patch_Ticket
(Server : in out Server_Type;
Tid : in Swagger.Long;
Owner : in Swagger.Nullable_UString;
Status : in Swagger.Nullable_UString;
Title : in Swagger.Nullable_UString;
Description : in Swagger.Nullable_UString;
Result : out TestAPI.Models.Ticket_Type;
Context : in out Swagger.Servers.Context_Type) is abstract;
-- Update a ticket
procedure Do_Update_Ticket
(Server : in out Server_Type;
Tid : in Swagger.Long;
Owner : in Swagger.Nullable_UString;
Status : in Swagger.Nullable_UString;
Title : in Swagger.Nullable_UString;
Description : in Swagger.Nullable_UString;
Result : out TestAPI.Models.Ticket_Type;
Context : in out Swagger.Servers.Context_Type) is abstract;
-- Get a ticket
-- Get a ticket
procedure Do_Get_Ticket
(Server : in out Server_Type;
Tid : in Swagger.Long;
Result : out TestAPI.Models.Ticket_Type;
Context : in out Swagger.Servers.Context_Type) is abstract;
-- List the tickets
-- List the tickets created for the project.
procedure Do_List_Tickets
(Server : in out Server_Type;
Status : in Swagger.Nullable_UString;
Owner : in Swagger.Nullable_UString;
Result : out TestAPI.Models.Ticket_Type_Vectors.Vector;
Context : in out Swagger.Servers.Context_Type) is abstract;
-- Get a ticket
-- Get a ticket
procedure Do_Options_Ticket
(Server : in out Server_Type;
Tid : in Swagger.Long;
Result : out TestAPI.Models.Ticket_Type;
Context : in out Swagger.Servers.Context_Type) is abstract;
generic
type Implementation_Type is limited new Server_Type with private;
URI_Prefix : String := "";
package Skeleton is
procedure Register (Server : in out Swagger.Servers.Application_Type'Class);
--
procedure Orch_Store
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
--
procedure Test_Text_Response
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Create a ticket
procedure Do_Create_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Delete a ticket
procedure Do_Delete_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- List the tickets
procedure Do_Head_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Patch a ticket
procedure Do_Patch_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Update a ticket
procedure Do_Update_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Get a ticket
procedure Do_Get_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- List the tickets
procedure Do_List_Tickets
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Get a ticket
procedure Do_Options_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
end Skeleton;
generic
type Implementation_Type is limited new Server_Type with private;
URI_Prefix : String := "";
package Shared_Instance is
procedure Register (Server : in out Swagger.Servers.Application_Type'Class);
--
procedure Orch_Store
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
--
procedure Test_Text_Response
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Create a ticket
procedure Do_Create_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Delete a ticket
procedure Do_Delete_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- List the tickets
procedure Do_Head_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Patch a ticket
procedure Do_Patch_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Update a ticket
procedure Do_Update_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Get a ticket
procedure Do_Get_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- List the tickets
procedure Do_List_Tickets
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
-- Get a ticket
procedure Do_Options_Ticket
(Req : in out Swagger.Servers.Request'Class;
Reply : in out Swagger.Servers.Response'Class;
Stream : in out Swagger.Servers.Output_Stream'Class;
Context : in out Swagger.Servers.Context_Type);
private
protected Server is
--
procedure Orch_Store
(Inline_Object_3Type : in InlineObject3_Type;
Context : in out Swagger.Servers.Context_Type);
--
procedure Test_Text_Response
(Options : in Swagger.Nullable_UString;
Result : out Swagger.UString;
Context : in out Swagger.Servers.Context_Type);
-- Create a ticket
procedure Do_Create_Ticket
(Title : in Swagger.UString;
Owner : in Swagger.Nullable_UString;
Status : in Swagger.Nullable_UString;
Description : in Swagger.Nullable_UString;
Context : in out Swagger.Servers.Context_Type);
-- Delete a ticket
procedure Do_Delete_Ticket
(Tid : in Swagger.Long;
Context : in out Swagger.Servers.Context_Type);
-- List the tickets
procedure Do_Head_Ticket (Context : in out Swagger.Servers.Context_Type);
-- Patch a ticket
procedure Do_Patch_Ticket
(Tid : in Swagger.Long;
Owner : in Swagger.Nullable_UString;
Status : in Swagger.Nullable_UString;
Title : in Swagger.Nullable_UString;
Description : in Swagger.Nullable_UString;
Result : out TestAPI.Models.Ticket_Type;
Context : in out Swagger.Servers.Context_Type);
-- Update a ticket
procedure Do_Update_Ticket
(Tid : in Swagger.Long;
Owner : in Swagger.Nullable_UString;
Status : in Swagger.Nullable_UString;
Title : in Swagger.Nullable_UString;
Description : in Swagger.Nullable_UString;
Result : out TestAPI.Models.Ticket_Type;
Context : in out Swagger.Servers.Context_Type);
-- Get a ticket
procedure Do_Get_Ticket
(Tid : in Swagger.Long;
Result : out TestAPI.Models.Ticket_Type;
Context : in out Swagger.Servers.Context_Type);
-- List the tickets
procedure Do_List_Tickets
(Status : in Swagger.Nullable_UString;
Owner : in Swagger.Nullable_UString;
Result : out TestAPI.Models.Ticket_Type_Vectors.Vector;
Context : in out Swagger.Servers.Context_Type);
-- Get a ticket
procedure Do_Options_Ticket
(Tid : in Swagger.Long;
Result : out TestAPI.Models.Ticket_Type;
Context : in out Swagger.Servers.Context_Type);
private
Impl : Implementation_Type;
end Server;
end Shared_Instance;
end TestAPI.Skeletons;
| 35.129121 | 84 | 0.640885 |
4a821d30ed21568c66ed5cab4fdfa5a8b8e7b451 | 13,192 | ads | Ada | arch/ARM/STM32/driversL5/stm32-dac.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | 2 | 2018-05-16T03:56:39.000Z | 2019-07-31T13:53:56.000Z | arch/ARM/STM32/driversL5/stm32-dac.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | null | null | null | arch/ARM/STM32/driversL5/stm32-dac.ads | morbos/Ada_Drivers_Library | a4ab26799be60997c38735f4056160c4af597ef7 | [
"BSD-3-Clause"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- Copyright (C) 2015, AdaCore --
-- --
-- Redistribution and use in source and binary forms, with or without --
-- modification, are permitted provided that the following conditions are --
-- met: --
-- 1. Redistributions of source code must retain the above copyright --
-- notice, this list of conditions and the following disclaimer. --
-- 2. Redistributions in binary form must reproduce the above copyright --
-- notice, this list of conditions and the following disclaimer in --
-- the documentation and/or other materials provided with the --
-- distribution. --
-- 3. Neither the name of STMicroelectronics nor the names of its --
-- contributors may be used to endorse or promote products derived --
-- from this software without specific prior written permission. --
-- --
-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS --
-- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT --
-- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR --
-- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT --
-- HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, --
-- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT --
-- LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, --
-- DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY --
-- THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT --
-- (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE --
-- OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. --
-- --
-- --
-- This file is based on: --
-- --
-- @file stm32f4xx_hal_dac.h and stm32f4xx_hal_dac_ex.h --
-- @author MCD Application Team --
-- @version V1.3.1 --
-- @date 25-March-2015 --
-- @brief Header file of DAC HAL module. --
-- --
-- COPYRIGHT(c) 2014 STMicroelectronics --
------------------------------------------------------------------------------
-- This file provides interfaces for the digital-to-analog converters on the
-- STM32F4 (ARM Cortex M4F) microcontrollers from ST Microelectronics.
with System; use System;
private with STM32_SVD.DAC;
package STM32.DAC is
type Digital_To_Analog_Converter is limited private;
type DAC_Channel is (Channel_1, Channel_2);
for DAC_Channel use
(Channel_1 => 1,
Channel_2 => 2);
-- Note that Channel 1 is tied to GPIO pin PA4, and Channel 2 to PA5
procedure Enable
(This : in out Digital_To_Analog_Converter;
Channel : DAC_Channel)
with
Inline,
Post => Enabled (This, Channel);
-- Powers up the channel. The channel is then enabled after a startup
-- time "Twakeup" specified in the datasheet.
--
-- NB: When no hardware trigger has been selected, the value in the
-- DAC_DHRx register is transfered automatically to the DOR register.
-- Therefore, in that case enabling the channel starts the output
-- conversion on that channel. See the RM, section 14.3.4 "DAC
-- conversion" second and third paragraphs.
procedure Disable
(This : in out Digital_To_Analog_Converter;
Channel : DAC_Channel)
with
Inline,
Post => not Enabled (This, Channel);
-- When the software trigger has been selected, disabling the channel stops
-- the output conversion on that channel.
function Enabled
(This : Digital_To_Analog_Converter;
Channel : DAC_Channel)
return Boolean;
type DAC_Resolution is (DAC_Resolution_12_Bits, DAC_Resolution_8_Bits);
Max_12bit_Resolution : constant := 16#0FFF#;
Max_8bit_Resolution : constant := 16#00FF#;
type Data_Alignment is (Left_Aligned, Right_Aligned);
procedure Set_Output
(This : in out Digital_To_Analog_Converter;
Channel : DAC_Channel;
Value : UInt32;
Resolution : DAC_Resolution;
Alignment : Data_Alignment);
-- For the specified channel, writes the output Value to the data holding
-- register within This corresponding to the Resolution and Alignment.
--
-- The output voltage = ((Value / Max_nbit_Counts) * VRef+), where VRef+ is
-- the reference input voltage and the 'n' of Max_nbit_Counts is either 12
-- or 8.
procedure Trigger_Conversion_By_Software
(This : in out Digital_To_Analog_Converter;
Channel : DAC_Channel)
with
Pre => Trigger_Selection (This, Channel) = Software_Trigger and
Trigger_Enabled (This, Channel);
-- Cause the conversion to occur and the output to appear, per 14.3.6 "DAC
-- trigger selection" in the RM. This routine is needed when the Software
-- Trigger has been selected and the trigger has been enabled, otherwise no
-- conversion occurs. If you don't enable the trigger any prior selection
-- has no effect, but note that when no *hardware* trigger is selected the
-- output happens automatically when the channel is enabled. See the RM,
-- section 14.3.4 "DAC conversion" second and third paragraphs.
procedure Trigger_Conversion_By_Software
(This : in out Digital_To_Analog_Converter);
function Converted_Output_Value
(This : Digital_To_Analog_Converter;
Channel : DAC_Channel)
return UInt32;
-- Returns the latest output value for the specified channel.
procedure Set_Dual_Output_Voltages
(This : in out Digital_To_Analog_Converter;
Channel_1_Value : UInt32;
Channel_2_Value : UInt32;
Resolution : DAC_Resolution;
Alignment : Data_Alignment);
type Dual_Channel_Output is record
Channel_1_Data : UInt16;
Channel_2_Data : UInt16;
end record;
function Converted_Dual_Output_Value (This : Digital_To_Analog_Converter)
return Dual_Channel_Output;
-- Returns the combination of the latest output values for both channels.
type External_Event_Trigger_Selection is
(Software_Trigger,
Dac_Chx_Trig1,
Dac_Chx_Trig2,
Dac_Chx_Trig3,
Dac_Chx_Trig4,
Dac_Chx_Trig5,
Dac_Chx_Trig6,
Dac_Chx_Trig7,
Dac_Chx_Trig8,
Dac_Chx_Trig9,
Dac_Chx_Trig10,
Dac_Chx_Trig11,
Dac_Chx_Trig12,
Dac_Chx_Trig13,
Dac_Chx_Trig14,
Dac_Chx_Trig15
) with Size => 4;
procedure Select_Trigger
(This : in out Digital_To_Analog_Converter;
Channel : DAC_Channel;
Trigger : External_Event_Trigger_Selection)
with
Pre => not Trigger_Enabled (This, Channel), -- per note in RM, pg 435
Post => Trigger_Selection (This, Channel) = Trigger and
not Trigger_Enabled (This, Channel);
-- If the software trigger is selected, output conversion starts once the
-- channel is enabled.
function Trigger_Selection
(This : Digital_To_Analog_Converter;
Channel : DAC_Channel)
return External_Event_Trigger_Selection;
procedure Enable_Trigger
(This : in out Digital_To_Analog_Converter;
Channel : DAC_Channel)
with Post => Trigger_Enabled (This, Channel);
procedure Disable_Trigger
(This : in out Digital_To_Analog_Converter;
Channel : DAC_Channel)
with Post => not Trigger_Enabled (This, Channel);
function Trigger_Enabled
(This : Digital_To_Analog_Converter;
Channel : DAC_Channel)
return Boolean;
procedure Enable_DMA
(This : in out Digital_To_Analog_Converter;
Channel : DAC_Channel)
with Post => DMA_Enabled (This, Channel);
procedure Disable_DMA
(This : in out Digital_To_Analog_Converter;
Channel : DAC_Channel)
with Post => not DMA_Enabled (This, Channel);
function DMA_Enabled
(This : Digital_To_Analog_Converter;
Channel : DAC_Channel)
return Boolean;
type DAC_Status_Flag is
(DMA_Underrun_Channel_1,
DMA_Underrun_Channel_2);
-- For the indicated channel, the currently selected trigger is driving the
-- channel conversion at a frequency higher than the DMA service capability
-- rate
function Status
(This : Digital_To_Analog_Converter;
Flag : DAC_Status_Flag)
return Boolean;
procedure Clear_Status
(This : in out Digital_To_Analog_Converter;
Flag : DAC_Status_Flag)
with
Inline,
Post => not Status (This, Flag);
type DAC_Interrupts is
(DMA_Underrun_Channel_1,
DMA_Underrun_Channel_2);
procedure Enable_Interrupts
(This : in out Digital_To_Analog_Converter;
Source : DAC_Interrupts)
with
Inline,
Post => Interrupt_Enabled (This, Source);
procedure Disable_Interrupts
(This : in out Digital_To_Analog_Converter;
Source : DAC_Interrupts)
with
Inline,
Post => not Interrupt_Enabled (This, Source);
function Interrupt_Enabled
(This : Digital_To_Analog_Converter;
Source : DAC_Interrupts)
return Boolean
with Inline;
function Interrupt_Source
(This : Digital_To_Analog_Converter)
return DAC_Interrupts
with Inline;
procedure Clear_Interrupt_Pending
(This : in out Digital_To_Analog_Converter;
Channel : DAC_Channel)
with Inline;
type Wave_Generation_Selection is
(No_Wave_Generation,
Noise_Wave,
Triangle_Wave);
type Noise_Wave_Mask_Selection is
(LFSR_Unmask_Bit0,
LFSR_Unmask_Bits1_0,
LFSR_Unmask_Bits2_0,
LFSR_Unmask_Bits3_0,
LFSR_Unmask_Bits4_0,
LFSR_Unmask_Bits5_0,
LFSR_Unmask_Bits6_0,
LFSR_Unmask_Bits7_0,
LFSR_Unmask_Bits8_0,
LFSR_Unmask_Bits9_0,
LFSR_Unmask_Bits10_0,
LFSR_Unmask_Bits11_0);
-- Unmask LFSR bits for noise wave generation
type Triangle_Wave_Amplitude_Selection is
(Triangle_Amplitude_1, -- Select max triangle amplitude of 1
Triangle_Amplitude_3, -- Select max triangle amplitude of 3
Triangle_Amplitude_7, -- Select max triangle amplitude of 7
Triangle_Amplitude_15, -- Select max triangle amplitude of 15
Triangle_Amplitude_31, -- Select max triangle amplitude of 31
Triangle_Amplitude_63, -- Select max triangle amplitude of 63
Triangle_Amplitude_127, -- Select max triangle amplitude of 127
Triangle_Amplitude_255, -- Select max triangle amplitude of 255
Triangle_Amplitude_511, -- Select max triangle amplitude of 511
Triangle_Amplitude_1023, -- Select max triangle amplitude of 1023
Triangle_Amplitude_2047, -- Select max triangle amplitude of 2047
Triangle_Amplitude_4095); -- Select max triangle amplitude of 4095
type Wave_Generation (Kind : Wave_Generation_Selection) is record
case Kind is
when No_Wave_Generation =>
null;
when Noise_Wave =>
Mask : Noise_Wave_Mask_Selection;
when Triangle_Wave =>
Amplitude : Triangle_Wave_Amplitude_Selection;
end case;
end record;
Wave_Generation_Disabled : constant Wave_Generation :=
(Kind => No_Wave_Generation);
procedure Select_Wave_Generation
(This : in out Digital_To_Analog_Converter;
Channel : DAC_Channel;
Selection : Wave_Generation)
with Post => Selected_Wave_Generation (This, Channel) = Selection;
function Selected_Wave_Generation
(This : Digital_To_Analog_Converter;
Channel : DAC_Channel)
return Wave_Generation;
function Data_Address
(This : Digital_To_Analog_Converter;
Channel : DAC_Channel;
Resolution : DAC_Resolution;
Alignment : Data_Alignment)
return Address;
-- Returns the address of the Data Holding register within This, for the
-- specified Channel, at the specified Resolution and Alignment.
--
-- This function is stricly for use with DMA, all others use the API above.
private
type Digital_To_Analog_Converter is new STM32_SVD.DAC.DAC_Peripheral;
end STM32.DAC;
| 38.686217 | 79 | 0.630988 |
c52f4e7538377c03cd87cce0d762a018ab719812 | 1,638 | adb | Ada | demo2/adademo2.adb | MatrixMike/AdaDemo1 | cbf2ad5a05dc06a8ee11d0780c19f5fd74c8990a | [
"MIT"
] | 1 | 2019-06-27T12:58:28.000Z | 2019-06-27T12:58:28.000Z | demo2/adademo2.adb | MatrixMike/AdaDemo1 | cbf2ad5a05dc06a8ee11d0780c19f5fd74c8990a | [
"MIT"
] | null | null | null | demo2/adademo2.adb | MatrixMike/AdaDemo1 | cbf2ad5a05dc06a8ee11d0780c19f5fd74c8990a | [
"MIT"
] | null | null | null | with Ada.Text_IO; use Ada.Text_IO;
procedure adademo2 is
type Day_type is range 1 .. 31;
type Month_type is range 1 .. 12;
type Year_type is range 1800 .. 2100;
type Hours is mod 24;
type Weekday is
(Monday, Tuesday, Wednesday, Thursday, Friday, Saturday, Sunday);
type Date is record
Day : Day_type;
Month : Month_type;
Year : Year_type;
end record;
subtype Working_Hours is
Hours range 0 .. 12; -- at most 12 Hours to work a day
subtype Working_Day is Weekday range Monday .. Friday; -- Days to work
--begin
--Work_Load: constant array(Working_Day) of Working_Hours -- implicit type declaration
-- := (Friday => 6, Monday => 4, others => 10); -- lookup table for working hours with initialization
-- while a is not equal to b, loop.
--while a /= b loop
-- Ada.Text_IO.Put_Line ("Waiting");
--end loop;
--make into a procedure or function
--if a > b then
-- Ada.Text_IO.Put_Line ("Condition met");
--else
-- Ada.Text_IO.Put_Line ("Condition not met");
--end if;
begin
--loop
-- a := a + 1; how to define a
-- exit when a = 10;
--end loop;
for aWeekday in Weekday'Range loop -- loop over an enumeration
Put_Line
(Weekday'Image
(aWeekday)); -- output string representation of an enumeration
if aWeekday in
Working_Day
then -- check of a subtype of an enumeration
Put_Line (" to work for "); --&
-- Working_Hours'Image (Work_Load(aWeekday)) ); -- access into a lookup table
end if;
end loop;
end adademo2;
| 29.781818 | 113 | 0.614164 |
c5c077f17990de7a07885b3d6cd5465c787c7d6c | 780 | ads | Ada | src/apsepp-test_event_class-generic_r_index_mixin.ads | thierr26/ada-apsepp | 6eb87079ea57707db4ee1e2215fa170af66b1913 | [
"MIT"
] | null | null | null | src/apsepp-test_event_class-generic_r_index_mixin.ads | thierr26/ada-apsepp | 6eb87079ea57707db4ee1e2215fa170af66b1913 | [
"MIT"
] | null | null | null | src/apsepp-test_event_class-generic_r_index_mixin.ads | thierr26/ada-apsepp | 6eb87079ea57707db4ee1e2215fa170af66b1913 | [
"MIT"
] | null | null | null | -- Copyright (C) 2019 Thierry Rascle <thierr26@free.fr>
-- MIT license. Please refer to the LICENSE file.
generic
type Parent is abstract new Test_Event_Base with private;
package Apsepp.Test_Event_Class.Generic_R_Index_Mixin is
type Child_W_R_Index is new Parent with private
with Type_Invariant'Class => Child_W_R_Index.Has_R_Index;
overriding
procedure Set (Obj : in out Child_W_R_Index; Data : Test_Event_Data);
overriding
function Has_R_Index (Obj : Child_W_R_Index) return Boolean
is (True);
overriding
function R_Index (Obj : Child_W_R_Index) return Test_Routine_Index;
private
type Child_W_R_Index is new Parent with record
R_Index : Test_Routine_Index;
end record;
end Apsepp.Test_Event_Class.Generic_R_Index_Mixin;
| 26.896552 | 72 | 0.769231 |
dc709c322d00e887d07ef6068396dee6ef714ba5 | 5,578 | ada | Ada | gcc-gcc-7_3_0-release/gcc/testsuite/ada/acats/tests/cc/cc3120a.ada | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 7 | 2020-05-02T17:34:05.000Z | 2021-10-17T10:15:18.000Z | gcc-gcc-7_3_0-release/gcc/testsuite/ada/acats/tests/cc/cc3120a.ada | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | null | null | null | gcc-gcc-7_3_0-release/gcc/testsuite/ada/acats/tests/cc/cc3120a.ada | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 2 | 2020-07-27T00:22:36.000Z | 2021-04-01T09:41:02.000Z | -- CC3120A.ADA
-- Grant of Unlimited Rights
--
-- Under contracts F33600-87-D-0337, F33600-84-D-0280, MDA903-79-C-0687,
-- F08630-91-C-0015, and DCA100-97-D-0025, the U.S. Government obtained
-- unlimited rights in the software and documentation contained herein.
-- Unlimited rights are defined in DFAR 252.227-7013(a)(19). By making
-- this public release, the Government intends to confer upon all
-- recipients unlimited rights equal to those held by the Government.
-- These rights include rights to use, duplicate, release or disclose the
-- released technical data and computer software in whole or in part, in
-- any manner and for any purpose whatsoever, and to have or permit others
-- to do so.
--
-- DISCLAIMER
--
-- ALL MATERIALS OR INFORMATION HEREIN RELEASED, MADE AVAILABLE OR
-- DISCLOSED ARE AS IS. THE GOVERNMENT MAKES NO EXPRESS OR IMPLIED
-- WARRANTY AS TO ANY MATTER WHATSOEVER, INCLUDING THE CONDITIONS OF THE
-- SOFTWARE, DOCUMENTATION OR OTHER INFORMATION RELEASED, MADE AVAILABLE
-- OR DISCLOSED, OR THE OWNERSHIP, MERCHANTABILITY, OR FITNESS FOR A
-- PARTICULAR PURPOSE OF SAID MATERIAL.
--*
-- CHECK THAT GENERIC IN PARAMETERS ARE ALWAYS COPIED, AND THAT
-- GENERIC IN OUT PARAMETERS ARE ALWAYS RENAMED.
-- DAT 8/10/81
-- SPS 10/21/82
WITH REPORT; USE REPORT;
PROCEDURE CC3120A IS
BEGIN
TEST ("CC3120A", "GENERIC IN PARMS ARE COPIED, GENERIC IN OUT"
& " PARMS ARE RENAMED");
DECLARE
S1, S2 : INTEGER;
A1, A2, A3 : STRING (1 .. IDENT_INT (3));
TYPE REC IS RECORD
C1, C2 : INTEGER := 1;
END RECORD;
R1, R2 : REC;
PACKAGE P IS
TYPE PRIV IS PRIVATE;
PROCEDURE SET_PRIV (P : IN OUT PRIV);
PRIVATE
TYPE PRIV IS NEW REC;
END P;
USE P;
P1, P2 : PRIV;
EX : EXCEPTION;
GENERIC
TYPE T IS PRIVATE;
P1 : IN OUT T;
P2 : IN T;
PROCEDURE GP;
B_ARR : ARRAY (1..10) OF BOOLEAN;
PACKAGE BODY P IS
PROCEDURE SET_PRIV (P : IN OUT PRIV) IS
BEGIN
P.C1 := 3;
END SET_PRIV;
END P;
PROCEDURE GP IS
BEGIN
IF P1 = P2 THEN
FAILED ("PARAMETER SCREW_UP SOMEWHERE");
END IF;
P1 := P2;
IF P1 /= P2 THEN
FAILED ("ASSIGNMENT SCREW_UP SOMEWHERE");
END IF;
RAISE EX;
FAILED ("RAISE STATEMENT DOESN'T WORK");
END GP;
BEGIN
S1 := 4;
S2 := 5;
A1 := "XYZ";
A2 := "ABC";
A3 := "DEF";
R1.C1 := 4;
R2.C1 := 5;
B_ARR := (1|3|5|7|9 => TRUE, 2|4|6|8|10 => FALSE);
SET_PRIV (P2);
IF S1 = S2
OR A1 = A3
OR R1 = R2
OR P1 = P2 THEN
FAILED ("WRONG ASSIGNMENT");
END IF;
BEGIN
DECLARE
PROCEDURE PR IS NEW GP (INTEGER, S1, S2);
BEGIN
S2 := S1;
PR; -- OLD S2 ASSIGNED TO S1, SO S1 /= S2 NOW
FAILED ("EX NOT RAISED 1");
EXCEPTION
WHEN EX => NULL;
END;
DECLARE
SUBTYPE STR_1_3 IS STRING (IDENT_INT (1)..3);
PROCEDURE PR IS NEW GP (STR_1_3, A1, A3);
BEGIN
A3 := A1;
PR;
FAILED ("EX NOT RAISED 2");
EXCEPTION
WHEN EX => NULL;
END;
DECLARE
PROCEDURE PR IS NEW GP (REC, R1, R2);
BEGIN
R2 := R1;
PR;
FAILED ("EX NOT RAISED 3");
EXCEPTION
WHEN EX => NULL;
END;
DECLARE
PROCEDURE PR IS NEW GP (PRIV, P1, P2);
BEGIN
P2 := P1;
PR;
FAILED ("EX NOT RAISED 4");
EXCEPTION
WHEN EX => NULL;
END;
DECLARE
PROCEDURE PR IS NEW GP (CHARACTER,
A3(IDENT_INT(2)),
A3(IDENT_INT(3)));
BEGIN
A3(3) := A3(2);
PR;
FAILED ("EX NOT RAISED 5");
EXCEPTION
WHEN EX => NULL;
END;
DECLARE
PROCEDURE PR IS NEW GP (BOOLEAN,
B_ARR(IDENT_INT(2)),
B_ARR(IDENT_INT(3)));
BEGIN
B_ARR(3) := B_ARR(2);
PR;
FAILED ("EX NOT RAISED 6");
EXCEPTION
WHEN EX => NULL;
END;
END;
IF S1 = S2
OR A1 = A2
OR R1 = R2
OR P1 = P2
OR A3(2) = A3(3)
OR B_ARR(2) = B_ARR(3) THEN
FAILED ("ASSIGNMENT FAILED 2");
END IF;
END;
RESULT;
END CC3120A;
| 30.81768 | 79 | 0.430979 |
cb9e1e1362402fb5b6c91692b756660c5f62681e | 9,459 | ads | Ada | tools/scitools/conf/understand/ada/ada05/s-tpobop.ads | brucegua/moocos | 575c161cfa35e220f10d042e2e5ca18773691695 | [
"Apache-2.0"
] | 1 | 2020-01-20T21:26:46.000Z | 2020-01-20T21:26:46.000Z | tools/scitools/conf/understand/ada/ada05/s-tpobop.ads | brucegua/moocos | 575c161cfa35e220f10d042e2e5ca18773691695 | [
"Apache-2.0"
] | null | null | null | tools/scitools/conf/understand/ada/ada05/s-tpobop.ads | brucegua/moocos | 575c161cfa35e220f10d042e2e5ca18773691695 | [
"Apache-2.0"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME LIBRARY (GNARL) COMPONENTS --
-- --
-- S Y S T E M . T A S K I N G . P R O T E C T E D _ O B J E C T S . --
-- O P E R A T I O N S --
-- --
-- S p e c --
-- --
-- Copyright (C) 1992-2005, Free Software Foundation, Inc. --
-- --
-- GNARL is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 2, or (at your option) any later ver- --
-- sion. GNARL is distributed in the hope that it will be useful, but WITH- --
-- OUT 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 GNARL; see file COPYING. If not, write --
-- to the Free Software Foundation, 51 Franklin Street, Fifth Floor, --
-- Boston, MA 02110-1301, USA. --
-- --
--
--
--
--
--
--
--
-- GNARL was developed by the GNARL team at Florida State University. --
-- Extensive contributions were provided by Ada Core Technologies, Inc. --
-- --
------------------------------------------------------------------------------
-- This package contains all the extended primitives related to protected
-- objects with entries.
-- The handling of protected objects with no entries is done in
-- System.Tasking.Protected_Objects, the simple routines for protected
-- objects with entries in System.Tasking.Protected_Objects.Entries. The
-- split between Entries and Operations is needed to break circular
-- dependencies inside the run time.
-- Note: the compiler generates direct calls to this interface, via Rtsfind.
-- Any changes to this interface may require corresponding compiler changes.
with Ada.Exceptions;
-- Used for Exception_Id
with System.Tasking.Protected_Objects.Entries;
package System.Tasking.Protected_Objects.Operations is
pragma Elaborate_Body;
type Communication_Block is private;
-- Objects of this type are passed between GNARL calls to allow RTS
-- information to be preserved.
procedure Protected_Entry_Call
(Object : Entries.Protection_Entries_Access;
E : Protected_Entry_Index;
Uninterpreted_Data : System.Address;
Mode : Call_Modes;
Block : out Communication_Block);
-- Make a protected entry call to the specified object.
-- Pend a protected entry call on the protected object represented
-- by Object. A pended call is not queued; it may be executed immediately
-- or queued, depending on the state of the entry barrier.
--
-- E
-- The index representing the entry to be called.
--
-- Uninterpreted_Data
-- This will be returned by Next_Entry_Call when this call is serviced.
-- It can be used by the compiler to pass information between the
-- caller and the server, in particular entry parameters.
--
-- Mode
-- The kind of call to be pended
--
-- Block
-- Information passed between runtime calls by the compiler
procedure Timed_Protected_Entry_Call
(Object : Entries.Protection_Entries_Access;
E : Protected_Entry_Index;
Uninterpreted_Data : System.Address;
Timeout : Duration;
Mode : Delay_Modes;
Entry_Call_Successful : out Boolean);
-- Same as the Protected_Entry_Call but with time-out specified.
-- This routines is used when we do not use ATC mechanism to implement
-- timed entry calls.
procedure Service_Entries (Object : Entries.Protection_Entries_Access);
pragma Inline (Service_Entries);
procedure PO_Service_Entries
(Self_ID : Task_Id;
Object : Entries.Protection_Entries_Access;
Unlock_Object : Boolean := True);
-- Service all entry queues of the specified object, executing the
-- corresponding bodies of any queued entry calls that are waiting
-- on True barriers. This is used when the state of a protected
-- object may have changed, in particular after the execution of
-- the statement sequence of a protected procedure.
--
-- Note that servicing an entry may change the value of one or more
-- barriers, so this routine keeps checking barriers until all of
-- them are closed.
--
-- This must be called with abort deferred and with the corresponding
-- object locked.
--
-- If Unlock_Object is set True, then Object is unlocked on return,
-- otherwise Object remains locked and the caller is responsible for
-- the required unlock.
procedure Complete_Entry_Body (Object : Entries.Protection_Entries_Access);
-- Called from within an entry body procedure, indicates that the
-- corresponding entry call has been serviced.
procedure Exceptional_Complete_Entry_Body
(Object : Entries.Protection_Entries_Access;
Ex : Ada.Exceptions.Exception_Id);
-- Perform all of the functions of Complete_Entry_Body. In addition,
-- report in Ex the exception whose propagation terminated the entry
-- body to the runtime system.
procedure Cancel_Protected_Entry_Call (Block : in out Communication_Block);
-- Attempt to cancel the most recent protected entry call. If the call is
-- not queued abortably, wait until it is or until it has completed.
-- If the call is actually cancelled, the called object will be
-- locked on return from this call. Get_Cancelled (Block) can be
-- used to determine if the cancellation took place; there
-- may be entries needing service in this case.
--
-- Block passes information between this and other runtime calls.
function Enqueued (Block : Communication_Block) return Boolean;
-- Returns True if the Protected_Entry_Call which returned the
-- specified Block object was queued; False otherwise.
function Cancelled (Block : Communication_Block) return Boolean;
-- Returns True if the Protected_Entry_Call which returned the
-- specified Block object was cancelled, False otherwise.
procedure Requeue_Protected_Entry
(Object : Entries.Protection_Entries_Access;
New_Object : Entries.Protection_Entries_Access;
E : Protected_Entry_Index;
With_Abort : Boolean);
-- If Object = New_Object, queue the protected entry call on Object
-- currently being serviced on the queue corresponding to the entry
-- represented by E.
--
-- If Object /= New_Object, transfer the call to New_Object.E,
-- executing or queuing it as appropriate.
--
-- With_Abort---True if the call is to be queued abortably, false
-- otherwise.
procedure Requeue_Task_To_Protected_Entry
(New_Object : Entries.Protection_Entries_Access;
E : Protected_Entry_Index;
With_Abort : Boolean);
-- Transfer task entry call currently being serviced to entry E
-- on New_Object.
--
-- With_Abort---True if the call is to be queued abortably, false
-- otherwise.
function Protected_Count
(Object : Entries.Protection_Entries'Class;
E : Protected_Entry_Index)
return Natural;
-- Return the number of entry calls to E on Object
function Protected_Entry_Caller
(Object : Entries.Protection_Entries'Class) return Task_Id;
-- Return value of E'Caller, where E is the protected entry currently
-- being handled. This will only work if called from within an entry
-- body, as required by the LRM (C.7.1(14)).
-- For internal use only
procedure PO_Do_Or_Queue
(Self_ID : Task_Id;
Object : Entries.Protection_Entries_Access;
Entry_Call : Entry_Call_Link;
With_Abort : Boolean);
-- This procedure either executes or queues an entry call, depending
-- on the status of the corresponding barrier. It assumes that abort
-- is deferred and that the specified object is locked.
private
type Communication_Block is record
Self : Task_Id;
Enqueued : Boolean := True;
Cancelled : Boolean := False;
end record;
pragma Volatile (Communication_Block);
-- ?????
-- The Communication_Block seems to be a relic. At the moment, the
-- compiler seems to be generating unnecessary conditional code based on
-- this block. See the code generated for async. select with task entry
-- call for another way of solving this.
end System.Tasking.Protected_Objects.Operations;
| 44.829384 | 79 | 0.62681 |
cb639f9eb286a45bf291d0c51313f131bd8d35dd | 3,681 | ads | Ada | llvm-gcc-4.2-2.9/gcc/ada/s-pack50.ads | vidkidz/crossbridge | ba0bf94aee0ce6cf7eb5be882382e52bc57ba396 | [
"MIT"
] | 1 | 2016-04-09T02:58:13.000Z | 2016-04-09T02:58:13.000Z | llvm-gcc-4.2-2.9/gcc/ada/s-pack50.ads | vidkidz/crossbridge | ba0bf94aee0ce6cf7eb5be882382e52bc57ba396 | [
"MIT"
] | null | null | null | llvm-gcc-4.2-2.9/gcc/ada/s-pack50.ads | vidkidz/crossbridge | ba0bf94aee0ce6cf7eb5be882382e52bc57ba396 | [
"MIT"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- S Y S T E M . P A C K _ 5 0 --
-- --
-- S p e c --
-- --
-- Copyright (C) 1992-2005, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 2, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT 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 GNAT; see file COPYING. If not, write --
-- to the Free Software Foundation, 51 Franklin Street, Fifth Floor, --
-- Boston, MA 02110-1301, 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. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
-- Handling of packed arrays with Component_Size = 50
package System.Pack_50 is
pragma Preelaborate;
Bits : constant := 50;
type Bits_50 is mod 2 ** Bits;
for Bits_50'Size use Bits;
function Get_50 (Arr : System.Address; N : Natural) return Bits_50;
-- Arr is the address of the packed array, N is the zero-based
-- subscript. This element is extracted and returned.
procedure Set_50 (Arr : System.Address; N : Natural; E : Bits_50);
-- Arr is the address of the packed array, N is the zero-based
-- subscript. This element is set to the given value.
function GetU_50 (Arr : System.Address; N : Natural) return Bits_50;
-- Arr is the address of the packed array, N is the zero-based
-- subscript. This element is extracted and returned. This version
-- is used when Arr may represent an unaligned address.
procedure SetU_50 (Arr : System.Address; N : Natural; E : Bits_50);
-- Arr is the address of the packed array, N is the zero-based
-- subscript. This element is set to the given value. This version
-- is used when Arr may represent an unaligned address
end System.Pack_50;
| 58.428571 | 78 | 0.499593 |
dc6aceaac1004fe6ad32960ab38498fc5d0f8d4c | 12,224 | adb | Ada | source/amf/dd/amf-internals-dg_lines.adb | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 24 | 2016-11-29T06:59:41.000Z | 2021-08-30T11:55:16.000Z | source/amf/dd/amf-internals-dg_lines.adb | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 2 | 2019-01-16T05:15:20.000Z | 2019-02-03T10:03:32.000Z | source/amf/dd/amf-internals-dg_lines.adb | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 4 | 2017-07-18T07:11:05.000Z | 2020-06-21T03:02:25.000Z | ------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- Ada Modeling Framework --
-- --
-- Runtime Library Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2012, Vadim Godunko <vgodunko@gmail.com> --
-- All rights reserved. --
-- --
-- Redistribution and use in source and binary forms, with or without --
-- modification, are permitted provided that the following conditions --
-- are met: --
-- --
-- * Redistributions of source code must retain the above copyright --
-- notice, this list of conditions and the following disclaimer. --
-- --
-- * Redistributions in binary form must reproduce the above copyright --
-- notice, this list of conditions and the following disclaimer in the --
-- documentation and/or other materials provided with the distribution. --
-- --
-- * Neither the name of the Vadim Godunko, IE nor the names of its --
-- contributors may be used to endorse or promote products derived from --
-- this software without specific prior written permission. --
-- --
-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS --
-- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT --
-- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR --
-- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT --
-- HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, --
-- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED --
-- TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR --
-- PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF --
-- LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING --
-- NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS --
-- SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. --
-- --
------------------------------------------------------------------------------
-- $Revision$ $Date$
------------------------------------------------------------------------------
-- This file is generated, don't edit it.
------------------------------------------------------------------------------
with AMF.DC;
with AMF.DG.Clip_Paths;
with AMF.DG.Groups;
with AMF.DG.Markers;
with AMF.DG.Styles.Collections;
with AMF.Elements;
with AMF.Internals.Element_Collections;
with AMF.Internals.Helpers;
with AMF.Internals.Tables.DD_Attributes;
with AMF.Visitors.DG_Iterators;
with AMF.Visitors.DG_Visitors;
package body AMF.Internals.DG_Lines is
---------------
-- Get_Start --
---------------
overriding function Get_Start
(Self : not null access constant DG_Line_Proxy)
return AMF.DC.DC_Point is
begin
return
AMF.Internals.Tables.DD_Attributes.Internal_Get_Start
(Self.Element);
end Get_Start;
---------------
-- Set_Start --
---------------
overriding procedure Set_Start
(Self : not null access DG_Line_Proxy;
To : AMF.DC.DC_Point) is
begin
AMF.Internals.Tables.DD_Attributes.Internal_Set_Start
(Self.Element, To);
end Set_Start;
-------------
-- Get_End --
-------------
overriding function Get_End
(Self : not null access constant DG_Line_Proxy)
return AMF.DC.DC_Point is
begin
return
AMF.Internals.Tables.DD_Attributes.Internal_Get_End
(Self.Element);
end Get_End;
-------------
-- Set_End --
-------------
overriding procedure Set_End
(Self : not null access DG_Line_Proxy;
To : AMF.DC.DC_Point) is
begin
AMF.Internals.Tables.DD_Attributes.Internal_Set_End
(Self.Element, To);
end Set_End;
----------------------
-- Get_Start_Marker --
----------------------
overriding function Get_Start_Marker
(Self : not null access constant DG_Line_Proxy)
return AMF.DG.Markers.DG_Marker_Access is
begin
return
AMF.DG.Markers.DG_Marker_Access
(AMF.Internals.Helpers.To_Element
(AMF.Internals.Tables.DD_Attributes.Internal_Get_Start_Marker
(Self.Element)));
end Get_Start_Marker;
----------------------
-- Set_Start_Marker --
----------------------
overriding procedure Set_Start_Marker
(Self : not null access DG_Line_Proxy;
To : AMF.DG.Markers.DG_Marker_Access) is
begin
AMF.Internals.Tables.DD_Attributes.Internal_Set_Start_Marker
(Self.Element,
AMF.Internals.Helpers.To_Element
(AMF.Elements.Element_Access (To)));
end Set_Start_Marker;
--------------------
-- Get_End_Marker --
--------------------
overriding function Get_End_Marker
(Self : not null access constant DG_Line_Proxy)
return AMF.DG.Markers.DG_Marker_Access is
begin
return
AMF.DG.Markers.DG_Marker_Access
(AMF.Internals.Helpers.To_Element
(AMF.Internals.Tables.DD_Attributes.Internal_Get_End_Marker
(Self.Element)));
end Get_End_Marker;
--------------------
-- Set_End_Marker --
--------------------
overriding procedure Set_End_Marker
(Self : not null access DG_Line_Proxy;
To : AMF.DG.Markers.DG_Marker_Access) is
begin
AMF.Internals.Tables.DD_Attributes.Internal_Set_End_Marker
(Self.Element,
AMF.Internals.Helpers.To_Element
(AMF.Elements.Element_Access (To)));
end Set_End_Marker;
--------------------
-- Get_Mid_Marker --
--------------------
overriding function Get_Mid_Marker
(Self : not null access constant DG_Line_Proxy)
return AMF.DG.Markers.DG_Marker_Access is
begin
return
AMF.DG.Markers.DG_Marker_Access
(AMF.Internals.Helpers.To_Element
(AMF.Internals.Tables.DD_Attributes.Internal_Get_Mid_Marker
(Self.Element)));
end Get_Mid_Marker;
--------------------
-- Set_Mid_Marker --
--------------------
overriding procedure Set_Mid_Marker
(Self : not null access DG_Line_Proxy;
To : AMF.DG.Markers.DG_Marker_Access) is
begin
AMF.Internals.Tables.DD_Attributes.Internal_Set_Mid_Marker
(Self.Element,
AMF.Internals.Helpers.To_Element
(AMF.Elements.Element_Access (To)));
end Set_Mid_Marker;
---------------
-- Get_Group --
---------------
overriding function Get_Group
(Self : not null access constant DG_Line_Proxy)
return AMF.DG.Groups.DG_Group_Access is
begin
return
AMF.DG.Groups.DG_Group_Access
(AMF.Internals.Helpers.To_Element
(AMF.Internals.Tables.DD_Attributes.Internal_Get_Group
(Self.Element)));
end Get_Group;
---------------
-- Set_Group --
---------------
overriding procedure Set_Group
(Self : not null access DG_Line_Proxy;
To : AMF.DG.Groups.DG_Group_Access) is
begin
AMF.Internals.Tables.DD_Attributes.Internal_Set_Group
(Self.Element,
AMF.Internals.Helpers.To_Element
(AMF.Elements.Element_Access (To)));
end Set_Group;
---------------------
-- Get_Local_Style --
---------------------
overriding function Get_Local_Style
(Self : not null access constant DG_Line_Proxy)
return AMF.DG.Styles.Collections.Ordered_Set_Of_DG_Style is
begin
return
AMF.DG.Styles.Collections.Wrap
(AMF.Internals.Element_Collections.Wrap
(AMF.Internals.Tables.DD_Attributes.Internal_Get_Local_Style
(Self.Element)));
end Get_Local_Style;
----------------------
-- Get_Shared_Style --
----------------------
overriding function Get_Shared_Style
(Self : not null access constant DG_Line_Proxy)
return AMF.DG.Styles.Collections.Ordered_Set_Of_DG_Style is
begin
return
AMF.DG.Styles.Collections.Wrap
(AMF.Internals.Element_Collections.Wrap
(AMF.Internals.Tables.DD_Attributes.Internal_Get_Shared_Style
(Self.Element)));
end Get_Shared_Style;
-------------------
-- Get_Transform --
-------------------
overriding function Get_Transform
(Self : not null access constant DG_Line_Proxy)
return AMF.DG.Sequence_Of_DG_Transform is
begin
return
AMF.Internals.Tables.DD_Attributes.Internal_Get_Transform
(Self.Element);
end Get_Transform;
-------------------
-- Get_Clip_Path --
-------------------
overriding function Get_Clip_Path
(Self : not null access constant DG_Line_Proxy)
return AMF.DG.Clip_Paths.DG_Clip_Path_Access is
begin
return
AMF.DG.Clip_Paths.DG_Clip_Path_Access
(AMF.Internals.Helpers.To_Element
(AMF.Internals.Tables.DD_Attributes.Internal_Get_Clip_Path
(Self.Element)));
end Get_Clip_Path;
-------------------
-- Set_Clip_Path --
-------------------
overriding procedure Set_Clip_Path
(Self : not null access DG_Line_Proxy;
To : AMF.DG.Clip_Paths.DG_Clip_Path_Access) is
begin
AMF.Internals.Tables.DD_Attributes.Internal_Set_Clip_Path
(Self.Element,
AMF.Internals.Helpers.To_Element
(AMF.Elements.Element_Access (To)));
end Set_Clip_Path;
-------------------
-- Enter_Element --
-------------------
overriding procedure Enter_Element
(Self : not null access constant DG_Line_Proxy;
Visitor : in out AMF.Visitors.Abstract_Visitor'Class;
Control : in out AMF.Visitors.Traverse_Control) is
begin
if Visitor in AMF.Visitors.DG_Visitors.DG_Visitor'Class then
AMF.Visitors.DG_Visitors.DG_Visitor'Class
(Visitor).Enter_Line
(AMF.DG.Lines.DG_Line_Access (Self),
Control);
end if;
end Enter_Element;
-------------------
-- Leave_Element --
-------------------
overriding procedure Leave_Element
(Self : not null access constant DG_Line_Proxy;
Visitor : in out AMF.Visitors.Abstract_Visitor'Class;
Control : in out AMF.Visitors.Traverse_Control) is
begin
if Visitor in AMF.Visitors.DG_Visitors.DG_Visitor'Class then
AMF.Visitors.DG_Visitors.DG_Visitor'Class
(Visitor).Leave_Line
(AMF.DG.Lines.DG_Line_Access (Self),
Control);
end if;
end Leave_Element;
-------------------
-- Visit_Element --
-------------------
overriding procedure Visit_Element
(Self : not null access constant DG_Line_Proxy;
Iterator : in out AMF.Visitors.Abstract_Iterator'Class;
Visitor : in out AMF.Visitors.Abstract_Visitor'Class;
Control : in out AMF.Visitors.Traverse_Control) is
begin
if Iterator in AMF.Visitors.DG_Iterators.DG_Iterator'Class then
AMF.Visitors.DG_Iterators.DG_Iterator'Class
(Iterator).Visit_Line
(Visitor,
AMF.DG.Lines.DG_Line_Access (Self),
Control);
end if;
end Visit_Element;
end AMF.Internals.DG_Lines;
| 34.727273 | 78 | 0.552192 |
4a1e036fb56a86b1464f46c7be41ce7cf72b04c7 | 4,997 | ads | Ada | source/amf/ocl/amf-ocl-message_exps-collections.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 24 | 2016-11-29T06:59:41.000Z | 2021-08-30T11:55:16.000Z | source/amf/ocl/amf-ocl-message_exps-collections.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 2 | 2019-01-16T05:15:20.000Z | 2019-02-03T10:03:32.000Z | source/amf/ocl/amf-ocl-message_exps-collections.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 4 | 2017-07-18T07:11:05.000Z | 2020-06-21T03:02:25.000Z | ------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- Ada Modeling Framework --
-- --
-- Runtime Library Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2012-2013, Vadim Godunko <vgodunko@gmail.com> --
-- All rights reserved. --
-- --
-- Redistribution and use in source and binary forms, with or without --
-- modification, are permitted provided that the following conditions --
-- are met: --
-- --
-- * Redistributions of source code must retain the above copyright --
-- notice, this list of conditions and the following disclaimer. --
-- --
-- * Redistributions in binary form must reproduce the above copyright --
-- notice, this list of conditions and the following disclaimer in the --
-- documentation and/or other materials provided with the distribution. --
-- --
-- * Neither the name of the Vadim Godunko, IE nor the names of its --
-- contributors may be used to endorse or promote products derived from --
-- this software without specific prior written permission. --
-- --
-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS --
-- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT --
-- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR --
-- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT --
-- HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, --
-- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED --
-- TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR --
-- PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF --
-- LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING --
-- NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS --
-- SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. --
-- --
------------------------------------------------------------------------------
-- $Revision$ $Date$
------------------------------------------------------------------------------
-- This file is generated, don't edit it.
------------------------------------------------------------------------------
with AMF.Generic_Collections;
package AMF.OCL.Message_Exps.Collections is
pragma Preelaborate;
package OCL_Message_Exp_Collections is
new AMF.Generic_Collections
(OCL_Message_Exp,
OCL_Message_Exp_Access);
type Set_Of_OCL_Message_Exp is
new OCL_Message_Exp_Collections.Set with null record;
Empty_Set_Of_OCL_Message_Exp : constant Set_Of_OCL_Message_Exp;
type Ordered_Set_Of_OCL_Message_Exp is
new OCL_Message_Exp_Collections.Ordered_Set with null record;
Empty_Ordered_Set_Of_OCL_Message_Exp : constant Ordered_Set_Of_OCL_Message_Exp;
type Bag_Of_OCL_Message_Exp is
new OCL_Message_Exp_Collections.Bag with null record;
Empty_Bag_Of_OCL_Message_Exp : constant Bag_Of_OCL_Message_Exp;
type Sequence_Of_OCL_Message_Exp is
new OCL_Message_Exp_Collections.Sequence with null record;
Empty_Sequence_Of_OCL_Message_Exp : constant Sequence_Of_OCL_Message_Exp;
private
Empty_Set_Of_OCL_Message_Exp : constant Set_Of_OCL_Message_Exp
:= (OCL_Message_Exp_Collections.Set with null record);
Empty_Ordered_Set_Of_OCL_Message_Exp : constant Ordered_Set_Of_OCL_Message_Exp
:= (OCL_Message_Exp_Collections.Ordered_Set with null record);
Empty_Bag_Of_OCL_Message_Exp : constant Bag_Of_OCL_Message_Exp
:= (OCL_Message_Exp_Collections.Bag with null record);
Empty_Sequence_Of_OCL_Message_Exp : constant Sequence_Of_OCL_Message_Exp
:= (OCL_Message_Exp_Collections.Sequence with null record);
end AMF.OCL.Message_Exps.Collections;
| 54.315217 | 82 | 0.51591 |
c52ccbc4f2347e786fd797f81bb3260f50dc0fe1 | 9,217 | adb | Ada | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/g-cgideb.adb | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/g-cgideb.adb | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | support/MinGW/lib/gcc/mingw32/9.2.0/adainclude/g-cgideb.adb | orb-zhuchen/Orb | 6da2404b949ac28bde786e08bf4debe4a27cd3a0 | [
"CNRI-Python-GPL-Compatible",
"MIT"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- G N A T . C G I . D E B U G --
-- --
-- B o d y --
-- --
-- Copyright (C) 2000-2019, AdaCore --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with Ada.Strings.Unbounded;
package body GNAT.CGI.Debug is
use Ada.Strings.Unbounded;
-- Define the abstract type which act as a template for all debug IO modes.
-- To create a new IO mode you must:
-- 1. create a new package spec
-- 2. create a new type derived from IO.Format
-- 3. implement all the abstract routines in IO
package IO is
type Format is abstract tagged null record;
function Output (Mode : Format'Class) return String;
function Variable
(Mode : Format;
Name : String;
Value : String) return String is abstract;
-- Returns variable Name and its associated value
function New_Line (Mode : Format) return String is abstract;
-- Returns a new line such as this concatenated between two strings
-- will display the strings on two lines.
function Title (Mode : Format; Str : String) return String is abstract;
-- Returns Str as a Title. A title must be alone and centered on a
-- line. Next output will be on the following line.
function Header
(Mode : Format;
Str : String) return String is abstract;
-- Returns Str as an Header. An header must be alone on its line. Next
-- output will be on the following line.
end IO;
----------------------
-- IO for HTML Mode --
----------------------
package HTML_IO is
-- See IO for comments about these routines
type Format is new IO.Format with null record;
function Variable
(IO : Format;
Name : String;
Value : String) return String;
function New_Line (IO : Format) return String;
function Title (IO : Format; Str : String) return String;
function Header (IO : Format; Str : String) return String;
end HTML_IO;
----------------------------
-- IO for Plain Text Mode --
----------------------------
package Text_IO is
-- See IO for comments about these routines
type Format is new IO.Format with null record;
function Variable
(IO : Format;
Name : String;
Value : String) return String;
function New_Line (IO : Format) return String;
function Title (IO : Format; Str : String) return String;
function Header (IO : Format; Str : String) return String;
end Text_IO;
--------------
-- Debug_IO --
--------------
package body IO is
------------
-- Output --
------------
function Output (Mode : Format'Class) return String is
Result : Unbounded_String;
begin
Result :=
To_Unbounded_String
(Title (Mode, "CGI complete runtime environment")
& Header (Mode, "CGI parameters:")
& New_Line (Mode));
for K in 1 .. Argument_Count loop
Result := Result
& Variable (Mode, Key (K), Value (K))
& New_Line (Mode);
end loop;
Result := Result
& New_Line (Mode)
& Header (Mode, "CGI environment variables (Metavariables):")
& New_Line (Mode);
for P in Metavariable_Name'Range loop
if Metavariable_Exists (P) then
Result := Result
& Variable (Mode,
Metavariable_Name'Image (P),
Metavariable (P))
& New_Line (Mode);
end if;
end loop;
return To_String (Result);
end Output;
end IO;
-------------
-- HTML_IO --
-------------
package body HTML_IO is
NL : constant String := (1 => ASCII.LF);
function Bold (S : String) return String;
-- Returns S as an HTML bold string
function Italic (S : String) return String;
-- Returns S as an HTML italic string
----------
-- Bold --
----------
function Bold (S : String) return String is
begin
return "<b>" & S & "</b>";
end Bold;
------------
-- Header --
------------
function Header (IO : Format; Str : String) return String is
pragma Unreferenced (IO);
begin
return "<h2>" & Str & "</h2>" & NL;
end Header;
------------
-- Italic --
------------
function Italic (S : String) return String is
begin
return "<i>" & S & "</i>";
end Italic;
--------------
-- New_Line --
--------------
function New_Line (IO : Format) return String is
pragma Unreferenced (IO);
begin
return "<br>" & NL;
end New_Line;
-----------
-- Title --
-----------
function Title (IO : Format; Str : String) return String is
pragma Unreferenced (IO);
begin
return "<p align=center><font size=+2>" & Str & "</font></p>" & NL;
end Title;
--------------
-- Variable --
--------------
function Variable
(IO : Format;
Name : String;
Value : String) return String
is
pragma Unreferenced (IO);
begin
return Bold (Name) & " = " & Italic (Value);
end Variable;
end HTML_IO;
-------------
-- Text_IO --
-------------
package body Text_IO is
------------
-- Header --
------------
function Header (IO : Format; Str : String) return String is
begin
return "*** " & Str & New_Line (IO);
end Header;
--------------
-- New_Line --
--------------
function New_Line (IO : Format) return String is
pragma Unreferenced (IO);
begin
return String'(1 => ASCII.LF);
end New_Line;
-----------
-- Title --
-----------
function Title (IO : Format; Str : String) return String is
Spaces : constant Natural := (80 - Str'Length) / 2;
Indent : constant String (1 .. Spaces) := (others => ' ');
begin
return Indent & Str & New_Line (IO);
end Title;
--------------
-- Variable --
--------------
function Variable
(IO : Format;
Name : String;
Value : String) return String
is
pragma Unreferenced (IO);
begin
return " " & Name & " = " & Value;
end Variable;
end Text_IO;
-----------------
-- HTML_Output --
-----------------
function HTML_Output return String is
HTML : HTML_IO.Format;
begin
return IO.Output (Mode => HTML);
end HTML_Output;
-----------------
-- Text_Output --
-----------------
function Text_Output return String is
Text : Text_IO.Format;
begin
return IO.Output (Mode => Text);
end Text_Output;
end GNAT.CGI.Debug;
| 29.260317 | 79 | 0.463491 |
c5dd37a4e9f573e5c43376ce101dcedea1350477 | 2,528 | ads | Ada | arch/RISC-V/SiFive/svd/FE310/fe310_svd-rtc.ads | shakram02/Ada_Drivers_Library | a407ca7ddbc2d9756647016c2f8fd8ef24a239ff | [
"BSD-3-Clause"
] | 192 | 2016-06-01T18:32:04.000Z | 2022-03-26T22:52:31.000Z | arch/RISC-V/SiFive/svd/FE310/fe310_svd-rtc.ads | shakram02/Ada_Drivers_Library | a407ca7ddbc2d9756647016c2f8fd8ef24a239ff | [
"BSD-3-Clause"
] | 239 | 2016-05-26T20:02:01.000Z | 2022-03-31T09:46:56.000Z | arch/RISC-V/SiFive/svd/FE310/fe310_svd-rtc.ads | shakram02/Ada_Drivers_Library | a407ca7ddbc2d9756647016c2f8fd8ef24a239ff | [
"BSD-3-Clause"
] | 142 | 2016-06-05T08:12:20.000Z | 2022-03-24T17:37:17.000Z | -- This spec has been automatically generated from FE310.svd
pragma Restrictions (No_Elaboration_Code);
pragma Ada_2012;
pragma Style_Checks (Off);
with HAL;
with System;
package FE310_SVD.RTC is
pragma Preelaborate;
---------------
-- Registers --
---------------
subtype CONFIG_SCALE_Field is HAL.UInt4;
-- RTC Configuration Register.
type CONFIG_Register is record
SCALE : CONFIG_SCALE_Field := 16#0#;
-- unspecified
Reserved_4_11 : HAL.UInt8 := 16#0#;
ENALWAYS : Boolean := False;
-- unspecified
Reserved_13_27 : HAL.UInt15 := 16#0#;
CMP_IP : Boolean := False;
-- unspecified
Reserved_29_31 : HAL.UInt3 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CONFIG_Register use record
SCALE at 0 range 0 .. 3;
Reserved_4_11 at 0 range 4 .. 11;
ENALWAYS at 0 range 12 .. 12;
Reserved_13_27 at 0 range 13 .. 27;
CMP_IP at 0 range 28 .. 28;
Reserved_29_31 at 0 range 29 .. 31;
end record;
subtype HI_CNT_Field is HAL.UInt16;
-- RTC Count Register High.
type HI_Register is record
CNT : HI_CNT_Field := 16#0#;
-- unspecified
Reserved_16_31 : HAL.UInt16 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for HI_Register use record
CNT at 0 range 0 .. 15;
Reserved_16_31 at 0 range 16 .. 31;
end record;
-----------------
-- Peripherals --
-----------------
-- Real-Time Clock.
type RTC_Peripheral is record
-- RTC Configuration Register.
CONFIG : aliased CONFIG_Register;
-- RTC Count Register Low.
LO : aliased HAL.UInt32;
-- RTC Count Register High.
HI : aliased HI_Register;
-- RTC Scaled Counter Register.
SCALE_COUNT : aliased HAL.UInt32;
-- RTC Compare Register.
COMPARE : aliased HAL.UInt32;
end record
with Volatile;
for RTC_Peripheral use record
CONFIG at 16#0# range 0 .. 31;
LO at 16#8# range 0 .. 31;
HI at 16#C# range 0 .. 31;
SCALE_COUNT at 16#10# range 0 .. 31;
COMPARE at 16#20# range 0 .. 31;
end record;
-- Real-Time Clock.
RTC_Periph : aliased RTC_Peripheral
with Import, Address => System'To_Address (16#10000040#);
end FE310_SVD.RTC;
| 27.78022 | 62 | 0.581883 |
d04d9e033c8773d6b9936a5892bfed02aa85cb00 | 450,082 | adb | Ada | bnn/src/network/output/hls-syn/lfcW1A1-pynqZ1-Z2/sol1/.autopilot/db/DoCompute.sched.adb | IceyFong/Lutification | 3e42d34d6840d5deb84407aad5c58216527a4b0a | [
"BSD-3-Clause"
] | null | null | null | bnn/src/network/output/hls-syn/lfcW1A1-pynqZ1-Z2/sol1/.autopilot/db/DoCompute.sched.adb | IceyFong/Lutification | 3e42d34d6840d5deb84407aad5c58216527a4b0a | [
"BSD-3-Clause"
] | null | null | null | bnn/src/network/output/hls-syn/lfcW1A1-pynqZ1-Z2/sol1/.autopilot/db/DoCompute.sched.adb | IceyFong/Lutification | 3e42d34d6840d5deb84407aad5c58216527a4b0a | [
"BSD-3-Clause"
] | null | null | null | <?xml version="1.0" encoding="UTF-8" standalone="yes" ?>
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| 29.135293 | 410 | 0.599489 |
dc088395e94930d6aaf2f458e3a36310baf4e8a5 | 2,217 | adb | Ada | examples/dump_tree/dump_tree.adb | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | null | null | null | examples/dump_tree/dump_tree.adb | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | null | null | null | examples/dump_tree/dump_tree.adb | reznikmm/gela | 20134f1d154fb763812e73860c6f4b04f353df79 | [
"MIT"
] | 1 | 2019-10-16T09:05:27.000Z | 2019-10-16T09:05:27.000Z | -- SPDX-FileCopyrightText: 2019-2020 Max Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-------------------------------------------------------------
with Ada.Characters.Conversions;
with Ada.Command_Line;
with Ada.Wide_Wide_Text_IO;
with Program.Compilation_Unit_Vectors;
with Program.Compilation_Units;
with Program.Plain_Contexts;
with Program.Storage_Pools.Instance;
pragma Unreferenced (Program.Storage_Pools.Instance);
with Dump_Elements;
with Errors;
procedure Dump_Tree is
procedure Process_Units
(List : Program.Compilation_Unit_Vectors.Compilation_Unit_Vector_Access);
procedure Process_Unit
(Unit : Program.Compilation_Units.Compilation_Unit_Access);
procedure Process_Unit
(Unit : Program.Compilation_Units.Compilation_Unit_Access) is
begin
Ada.Wide_Wide_Text_IO.Put_Line ("Unit: " & Unit.Full_Name);
Dump_Elements.Print (Unit.Unit_Declaration);
end Process_Unit;
procedure Process_Units
(List : Program.Compilation_Unit_Vectors.Compilation_Unit_Vector_Access)
is
begin
for Cursor in List.Each_Unit loop
Process_Unit (Cursor.Unit);
end loop;
end Process_Units;
Error : aliased Errors.Error_Listener;
Ctx : aliased Program.Plain_Contexts.Context;
begin
Ctx.Initialize (Error'Unchecked_Access);
for J in 1 .. Ada.Command_Line.Argument_Count loop
declare
Arg : constant Wide_Wide_String :=
Ada.Characters.Conversions.To_Wide_Wide_String
(Ada.Command_Line.Argument (J));
begin
if Arg'Length > 2 and then Arg (1 .. 2) = "-I" then
Ctx.Add_Search_Directory (Arg (3 .. Arg'Last));
else
Ctx.Parse_File (Arg);
end if;
end;
end loop;
Ctx.Complete_Analysis;
-- Ada.Wide_Wide_Text_IO.Put_Line ("Compilation: " & C.Text_Name);
-- Ada.Wide_Wide_Text_IO.Put_Line
-- ("Total lines:" & Natural'Wide_Wide_Image (C.Line_Count));
-- Ada.Wide_Wide_Text_IO.Put_Line
-- ("Total lexical elements:"
-- & Natural'Wide_Wide_Image (C.Lexical_Element_Count));
Process_Units (Ctx.Library_Unit_Declarations);
Process_Units (Ctx.Compilation_Unit_Bodies);
end Dump_Tree;
| 29.56 | 78 | 0.695535 |
4a4d633f0959a18bbde2c87575642192062b0eed | 6,133 | adb | Ada | source/s-finmas.adb | ytomino/drake | 4e4bdcd8b8e23a11a29b31d3a8861fdf60090ea2 | [
"MIT"
] | 33 | 2015-04-04T09:19:36.000Z | 2021-11-10T05:33:34.000Z | source/s-finmas.adb | ytomino/drake | 4e4bdcd8b8e23a11a29b31d3a8861fdf60090ea2 | [
"MIT"
] | 8 | 2017-11-14T13:05:07.000Z | 2018-08-09T15:28:49.000Z | source/s-finmas.adb | ytomino/drake | 4e4bdcd8b8e23a11a29b31d3a8861fdf60090ea2 | [
"MIT"
] | 9 | 2015-02-03T17:09:53.000Z | 2021-11-12T01:16:05.000Z | with Ada.Exceptions;
with Ada.Unchecked_Deallocation;
with System.Address_To_Named_Access_Conversions;
with System.Shared_Locking;
package body System.Finalization_Masters is
pragma Suppress (All_Checks);
use type Storage_Barriers.Flag;
procedure Free is new Ada.Unchecked_Deallocation (FM_List, FM_List_Access);
package FMN_Ptr_Conv is
new Address_To_Named_Access_Conversions (FM_Node, FM_Node_Ptr);
procedure Initialize_List (List : not null FM_List_Access);
procedure Initialize_List (List : not null FM_List_Access) is
begin
List.Objects.Next := List.Objects'Access;
List.Objects.Prev := List.Objects'Access;
end Initialize_List;
procedure Finalize_List (
List : not null FM_List_Access;
Raised : in out Boolean;
X : in out Ada.Exceptions.Exception_Occurrence);
procedure Finalize_List (
List : not null FM_List_Access;
Raised : in out Boolean;
X : in out Ada.Exceptions.Exception_Occurrence) is
begin
while List.Objects.Next /= List.Objects'Unchecked_Access loop
declare
Curr_Ptr : constant FM_Node_Ptr := List.Objects.Next;
Obj_Addr : constant Address :=
FMN_Ptr_Conv.To_Address (Curr_Ptr) + Header_Size;
begin
Detach_Unprotected (Curr_Ptr);
begin
List.Finalize_Address (Obj_Addr);
exception
when E : others =>
if not Raised then
Raised := True;
Ada.Exceptions.Save_Occurrence (X, E);
end if;
end;
end;
end loop;
end Finalize_List;
procedure Get_List_Unprotected (
Master : in out Finalization_Master'Class;
Fin_Addr_Ptr : Finalize_Address_Ptr;
List : out FM_List_Access);
procedure Get_List_Unprotected (
Master : in out Finalization_Master'Class;
Fin_Addr_Ptr : Finalize_Address_Ptr;
List : out FM_List_Access) is
begin
if Master.List.Finalize_Address = null then
Master.List.Finalize_Address := Fin_Addr_Ptr;
List := Master.List'Unchecked_Access;
else
declare
I : FM_List_Access := Master.List'Unchecked_Access;
begin
while I /= null loop
if I.Finalize_Address = Fin_Addr_Ptr then
List := I;
return; -- found
end if;
I := I.Next;
end loop;
end;
declare
New_List : constant FM_List_Access := new FM_List;
begin
Initialize_List (New_List);
New_List.Finalize_Address := Fin_Addr_Ptr;
New_List.Next := Master.List.Next;
Master.List.Next := New_List;
List := New_List;
end;
end if;
end Get_List_Unprotected;
-- implementation
procedure Attach_Unprotected (N, L : not null FM_Node_Ptr) is
begin
L.Next.Prev := N;
N.Next := L.Next;
L.Next := N;
N.Prev := L;
end Attach_Unprotected;
procedure Detach_Unprotected (N : not null FM_Node_Ptr) is
begin
if N.Prev /= null and then N.Next /= null then
N.Prev.Next := N.Next;
N.Next.Prev := N.Prev;
N.Prev := null;
N.Next := null;
end if;
end Detach_Unprotected;
function Objects_Unprotected (
Master : aliased in out Finalization_Master'Class;
Fin_Addr_Ptr : Finalize_Address_Ptr)
return FM_Node_Ptr
is
List : FM_List_Access;
begin
Get_List_Unprotected (Master, Fin_Addr_Ptr, List);
return List.Objects'Access;
end Objects_Unprotected;
function Finalization_Started (Master : Finalization_Master'Class)
return Boolean is
begin
return Storage_Barriers.atomic_load (
Master.Finalization_Started'Access) /= 0;
end Finalization_Started;
procedure Set_Finalize_Address_Unprotected (
Master : in out Finalization_Master'Class;
Fin_Addr_Ptr : Finalize_Address_Ptr)
is
Dummy : FM_List_Access;
begin
Get_List_Unprotected (Master, Fin_Addr_Ptr, Dummy);
end Set_Finalize_Address_Unprotected;
procedure Set_Finalize_Address (
Master : in out Finalization_Master'Class;
Fin_Addr_Ptr : Finalize_Address_Ptr) is
begin
Shared_Locking.Enter;
Set_Finalize_Address_Unprotected (Master, Fin_Addr_Ptr);
Shared_Locking.Leave;
end Set_Finalize_Address;
overriding procedure Initialize (Object : in out Finalization_Master) is
begin
Storage_Barriers.atomic_clear (Object.Finalization_Started'Access);
Initialize_List (Object.List'Unchecked_Access);
Object.List.Finalize_Address := null;
Object.List.Next := null;
end Initialize;
overriding procedure Finalize (Object : in out Finalization_Master) is
begin
if not Storage_Barriers.atomic_test_and_set (
Object.Finalization_Started'Access)
then
declare
Raised : Boolean := False;
X : Ada.Exceptions.Exception_Occurrence;
begin
Finalize_List (Object.List'Unchecked_Access, Raised, X);
declare
I : FM_List_Access := Object.List.Next;
begin
while I /= null loop
declare
Next : constant FM_List_Access := I.Next;
begin
Finalize_List (I, Raised, X);
Free (I);
I := Next;
end;
end loop;
end;
if Raised then
Ada.Exceptions.Reraise_Nonnull_Occurrence (X);
end if;
end;
end if;
end Finalize;
function Base_Pool (Master : Finalization_Master'Class)
return Any_Storage_Pool_Ptr is
begin
return Master.Base_Pool;
end Base_Pool;
procedure Set_Base_Pool (
Master : in out Finalization_Master'Class;
Pool_Ptr : Any_Storage_Pool_Ptr) is
begin
Master.Base_Pool := Pool_Ptr;
end Set_Base_Pool;
end System.Finalization_Masters;
| 31.13198 | 78 | 0.626773 |
cb8e3b2282416e68c6b997af565cf2ee53c4fd6f | 3,098 | ads | Ada | bb-runtimes/arm/stm32/stm32f7x/s-bbmcpa.ads | JCGobbi/Nucleo-STM32F334R8 | 2a0b1b4b2664c92773703ac5e95dcb71979d051c | [
"BSD-3-Clause"
] | null | null | null | bb-runtimes/arm/stm32/stm32f7x/s-bbmcpa.ads | JCGobbi/Nucleo-STM32F334R8 | 2a0b1b4b2664c92773703ac5e95dcb71979d051c | [
"BSD-3-Clause"
] | null | null | null | bb-runtimes/arm/stm32/stm32f7x/s-bbmcpa.ads | JCGobbi/Nucleo-STM32F334R8 | 2a0b1b4b2664c92773703ac5e95dcb71979d051c | [
"BSD-3-Clause"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME LIBRARY (GNARL) COMPONENTS --
-- --
-- S Y S T E M . B B . M C U _ P A R A M E T E R S --
-- --
-- S p e c --
-- --
-- Copyright (C) 2016, AdaCore --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
-- The port of GNARL to bare board targets was initially developed by the --
-- Real-Time Systems Group at the Technical University of Madrid. --
-- --
------------------------------------------------------------------------------
-- This package defines MCU parameters for the STM32F7x family
with Interfaces.STM32;
with Interfaces.STM32.PWR;
package System.BB.MCU_Parameters is
pragma No_Elaboration_Code_All;
pragma Preelaborate;
use type Interfaces.STM32.Bit;
Number_Of_Interrupts : constant := 99;
procedure PWR_Initialize;
procedure PWR_Overdrive_Enable;
function Is_PWR_Stabilized return Boolean
is (Interfaces.STM32.PWR.PWR_Periph.CSR1.VOSRDY = 1);
end System.BB.MCU_Parameters;
| 56.327273 | 78 | 0.437056 |
4af06d416de3cc981cfb10382a484c597253f29c | 1,710 | adb | Ada | src/ada-core/src/linted-stdio.adb | mstewartgallus/linted | 4d4cf9390353ea045b95671474ab278456793a35 | [
"Apache-2.0"
] | null | null | null | src/ada-core/src/linted-stdio.adb | mstewartgallus/linted | 4d4cf9390353ea045b95671474ab278456793a35 | [
"Apache-2.0"
] | null | null | null | src/ada-core/src/linted-stdio.adb | mstewartgallus/linted | 4d4cf9390353ea045b95671474ab278456793a35 | [
"Apache-2.0"
] | null | null | null | -- Copyright 2015,2016,2017 Steven Stewart-Gallus
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
-- implied. See the License for the specific language governing
-- permissions and limitations under the License.
with Ada.Characters.Latin_1;
with Ada.Unchecked_Conversion;
with Linted.Writer;
with Linted.Triggers;
package body Linted.Stdio is
package C renames Interfaces.C;
use Linted.Errors;
use Linted.KOs;
procedure Write_Line (Object : KO; Str : String) is
Dummy : Error;
begin
Write_String (Object, Str & Ada.Characters.Latin_1.LF, Dummy);
end Write_Line;
procedure Write_String (Object : KO; Str : String; Err : out Error) with
Spark_Mode => Off is
X : C.char_array := C.To_C (Str);
Bytes_Written : C.size_t;
begin
Write (Object, X (X'First)'Address, X'Length, Bytes_Written, Err);
end Write_String;
procedure Write
(Object : KO;
Buf : System.Address;
Count : C.size_t;
Bytes_Written : out C.size_t;
Err : out Error)
is
Future : Writer.Future;
Event : Writer.Event;
begin
Writer.Write (Object, Buf, Count, Triggers.Null_Signaller, Future);
Writer.Write_Wait (Future, Event);
Bytes_Written := Event.Bytes_Written;
Err := Event.Err;
end Write;
end Linted.Stdio;
| 30.535714 | 75 | 0.688304 |
4a767895c07813c969735677bc56582b91e60c21 | 9,420 | adb | Ada | src/implementation/yaml-dom.adb | robdaemon/AdaYaml | 2cb52c5e7eee3a2d9951945d5ddb4eeddc088f6e | [
"MIT"
] | null | null | null | src/implementation/yaml-dom.adb | robdaemon/AdaYaml | 2cb52c5e7eee3a2d9951945d5ddb4eeddc088f6e | [
"MIT"
] | null | null | null | src/implementation/yaml-dom.adb | robdaemon/AdaYaml | 2cb52c5e7eee3a2d9951945d5ddb4eeddc088f6e | [
"MIT"
] | null | null | null | -- part of AdaYaml, (c) 2017 Felix Krause
-- released under the terms of the MIT license, see the file "copying.txt"
with Ada.Unchecked_Deallocation;
with Yaml.Dom.Node;
with Yaml.Dom.Sequence_Data;
with Yaml.Dom.Mapping_Data;
with Yaml.Dom.Node_Memory;
package body Yaml.Dom is
use type Text.Reference;
use type Count_Type;
use type Node.Instance;
function For_Document (Document : not null access Document_Instance)
return Sequence_Data.Instance with Import,
Convention => Ada, Link_Name => "AdaYaml__Sequence_Data__For_Document";
function For_Document (Document : not null access Document_Instance)
return Mapping_Data.Instance with Import,
Convention => Ada, Link_Name => "AdaYaml__Mapping_Data__For_Document";
type Nullable_Node_Pointer is access all Node.Instance;
procedure Free is new Ada.Unchecked_Deallocation
(Node.Instance, Nullable_Node_Pointer);
procedure Decrease_Refcount (Object : not null access Document_Instance) is
begin
if Object.Refcount = 1 and then Object.Root_Node /= null then
declare
Memory : Node_Memory.Instance;
procedure Visit_Pair (Key, Value : not null access Node.Instance);
procedure Visit (Cur : not null access Node.Instance) is
Visited : Boolean;
begin
Memory.Visit (Cur, Visited);
if Visited then
return;
end if;
case Cur.Kind is
when Scalar => null;
when Sequence => Cur.Items.Iterate (Visit'Access);
when Mapping => Cur.Pairs.Iterate (Visit_Pair'Access);
end case;
end Visit;
procedure Visit_Pair (Key, Value : not null access Node.Instance) is
begin
Visit (Key);
Visit (Value);
end Visit_Pair;
begin
Visit (Object.Root_Node);
while not Memory.Is_Empty loop
declare
Ptr : Nullable_Node_Pointer :=
Nullable_Node_Pointer (Memory.Pop_First);
begin
Free (Ptr);
end;
end loop;
end;
end if;
Yaml.Decrease_Refcount (Object);
end Decrease_Refcount;
procedure Adjust (Object : in out Document_Reference) is
begin
Increase_Refcount (Object.Data);
end Adjust;
procedure Finalize (Object : in out Document_Reference) is
begin
Dom.Decrease_Refcount (Object.Data);
end Finalize;
procedure Adjust (Object : in out Node_Reference) is
begin
Increase_Refcount (Object.Document);
end Adjust;
procedure Finalize (Object : in out Node_Reference) is
begin
Dom.Decrease_Refcount (Object.Document);
end Finalize;
procedure Adjust (Object : in out Optional_Node_Reference) is
begin
if Object.Document /= null then
Increase_Refcount (Object.Document);
end if;
end Adjust;
procedure Finalize (Object : in out Optional_Node_Reference) is
begin
if Object.Document /= null then
Dom.Decrease_Refcount (Object.Document);
end if;
end Finalize;
function New_Sequence (Document : not null access Document_Instance;
Tag : Text.Reference;
Style : Collection_Style_Type)
return Node_Pointer is
(new Node.Instance'(Kind => Sequence, Tag => Tag, Sequence_Style => Style,
Items => For_Document (Document)));
function New_Mapping (Document : not null access Document_Instance;
Tag : Text.Reference;
Style : Collection_Style_Type)
return Node_Pointer is
(new Node.Instance'(Kind => Mapping, Tag => Tag, Mapping_Style => Style,
Pairs => For_Document (Document)));
function New_Document (Pool : Text.Pool.Reference :=
Text.Pool.With_Capacity (Text.Pool.Default_Size);
Implicit_Start, Implicit_End : Boolean := True)
return Document_Reference
is
begin
return (Ada.Finalization.Controlled with Data =>
new Document_Instance'(Refcount_Base with
Pool => Pool, Root_Node => null,
Implicit_Start => Implicit_Start,
Implicit_End => Implicit_End));
end New_Document;
function New_Scalar (Parent : Document_Reference'Class;
Content : String := "";
Tag : Text.Reference := Yaml.Tags.Question_Mark;
Style : Scalar_Style_Type := Any)
return Node_Reference is
begin
Increase_Refcount (Parent.Data);
return ((Ada.Finalization.Controlled with Document => Parent.Data, Data =>
new Node.Instance'(Tag => Tag, Kind => Scalar,
Scalar_Style => Style,
Content => Parent.Data.Pool.From_String (Content))));
end New_Scalar;
function New_Scalar (Parent : Document_Reference'Class;
Content : Text.Reference;
Tag : Text.Reference := Yaml.Tags.Question_Mark;
Style : Scalar_Style_Type := Any)
return Node_Reference is
begin
Increase_Refcount (Parent.Data);
return ((Ada.Finalization.Controlled with Document => Parent.Data, Data =>
new Node.Instance'(Tag => Tag, Kind => Scalar,
Scalar_Style => Style, Content => Content)));
end New_Scalar;
function New_Sequence (Parent : Document_Reference'Class;
Tag : Text.Reference := Yaml.Tags.Question_Mark;
Style : Collection_Style_Type := Any)
return Node_Reference is
begin
Increase_Refcount (Parent.Data);
return ((Ada.Finalization.Controlled with Document => Parent.Data, Data =>
New_Sequence (Parent.Data, Tag, Style)));
end New_Sequence;
function New_Mapping (Parent : Document_Reference'Class;
Tag : Text.Reference := Yaml.Tags.Question_Mark;
Style : Collection_Style_Type := Any)
return Node_Reference is
begin
Increase_Refcount (Parent.Data);
return ((Ada.Finalization.Controlled with Document => Parent.Data, Data =>
New_Mapping (Parent.Data, Tag, Style)));
end New_Mapping;
function Nodes_Equal (Left, Right : access Node.Instance) return Boolean is
(Left = Right or else (Left /= null and then Right /= null and then
Left.all = Right.all));
function "=" (Left, Right : Document_Reference) return Boolean is
(Nodes_Equal (Left.Data.Root_Node, Right.Data.Root_Node));
function "=" (Left, Right : Node_Reference) return Boolean is
(Same_Node (Left, Right) or else Left.Data.all = Right.Data.all);
-- checks whether the two references reference the same node
function Same_Node (Left, Right : Node_Reference) return Boolean is
(Left.Data = Right.Data);
function Is_Empty (Object : Document_Reference) return Boolean is
(Object.Data.Root_Node = null);
function Root (Object : Document_Reference'Class) return Node_Reference is
begin
Increase_Refcount (Object.Data);
return (Ada.Finalization.Controlled with Document => Object.Data,
Data => Node_Pointer (Object.Data.Root_Node));
end Root;
procedure Set_Root (Object : Document_Reference;
Value : Node_Reference'Class) is
begin
Object.Data.Root_Node := Value.Data;
end Set_Root;
procedure Set_Root (Object : Document_Reference;
Value : Optional_Node_Reference'Class) is
begin
Object.Data.Root_Node := Value.Data;
end Set_Root;
function Starts_Implicitly (Object : Document_Reference) return Boolean is
(Object.Data.Implicit_Start);
function Ends_Implicitly (Object : Document_Reference) return Boolean is
(Object.Data.Implicit_End);
procedure Set_Representation_Hints (Object : Document_Reference;
Implicit_Start, Implicit_End : Boolean)
is begin
Object.Data.Implicit_Start := Implicit_Start;
Object.Data.Implicit_End := Implicit_End;
end Set_Representation_Hints;
function Value (Object : Node_Reference) return Accessor is
((Data => Object.Data));
function Value (Object : Optional_Node_Reference) return Accessor is
((Data => Object.Data));
function Required (Object : Optional_Node_Reference'Class)
return Node_Reference is
begin
Increase_Refcount (Object.Document);
return (Ada.Finalization.Controlled with Document => Object.Document,
Data => Node_Pointer (Object.Data));
end Required;
function Optional (Object : Node_Reference'Class)
return Optional_Node_Reference is
begin
Increase_Refcount (Object.Document);
return (Ada.Finalization.Controlled with Document => Object.Document,
Data => Object.Data);
end Optional;
end Yaml.Dom;
| 38.137652 | 90 | 0.61189 |
cb273caa34e7509d7ebd3bc949aa58f5ebde06bb | 5,533 | ada | Ada | gcc-gcc-7_3_0-release/gcc/testsuite/ada/acats/tests/ce/ce3413b.ada | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 7 | 2020-05-02T17:34:05.000Z | 2021-10-17T10:15:18.000Z | gcc-gcc-7_3_0-release/gcc/testsuite/ada/acats/tests/ce/ce3413b.ada | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | null | null | null | gcc-gcc-7_3_0-release/gcc/testsuite/ada/acats/tests/ce/ce3413b.ada | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 2 | 2020-07-27T00:22:36.000Z | 2021-04-01T09:41:02.000Z | -- CE3413B.ADA
-- Grant of Unlimited Rights
--
-- Under contracts F33600-87-D-0337, F33600-84-D-0280, MDA903-79-C-0687,
-- F08630-91-C-0015, and DCA100-97-D-0025, the U.S. Government obtained
-- unlimited rights in the software and documentation contained herein.
-- Unlimited rights are defined in DFAR 252.227-7013(a)(19). By making
-- this public release, the Government intends to confer upon all
-- recipients unlimited rights equal to those held by the Government.
-- These rights include rights to use, duplicate, release or disclose the
-- released technical data and computer software in whole or in part, in
-- any manner and for any purpose whatsoever, and to have or permit others
-- to do so.
--
-- DISCLAIMER
--
-- ALL MATERIALS OR INFORMATION HEREIN RELEASED, MADE AVAILABLE OR
-- DISCLOSED ARE AS IS. THE GOVERNMENT MAKES NO EXPRESS OR IMPLIED
-- WARRANTY AS TO ANY MATTER WHATSOEVER, INCLUDING THE CONDITIONS OF THE
-- SOFTWARE, DOCUMENTATION OR OTHER INFORMATION RELEASED, MADE AVAILABLE
-- OR DISCLOSED, OR THE OWNERSHIP, MERCHANTABILITY, OR FITNESS FOR A
-- PARTICULAR PURPOSE OF SAID MATERIAL.
--*
-- OBJECTIVE:
-- CHECK THAT PAGE RAISES LAYOUT_ERROR WHEN THE VALUE OF THE
-- PAGE NUMBER EXCEEDS COUNT'LAST.
-- APPLICABILITY CRITERIA:
-- THIS TEST IS APPLICABLE ONLY TO IMPLEMENTATIONS WHICH SUPPORT
-- TEXT FILES.
-- *** NOTE: This test has been modified since ACVC version 1.11 to -- 9X
-- *** remove incompatibilities associated with the transition -- 9X
-- *** to Ada 9X. -- 9X
-- *** -- 9X
-- HISTORY:
-- JLH 07/27/88 CREATED ORIGINAL TEST.
-- MRM 03/30/93 REMOVED NUMERIC_ERROR FOR 9X COMPATIBILITY
WITH REPORT; USE REPORT;
WITH TEXT_IO; USE TEXT_IO;
PROCEDURE CE3413B IS
FILE : FILE_TYPE;
INCOMPLETE, INAPPLICABLE : EXCEPTION;
ITEM : STRING(1..3) := "ABC";
LST : NATURAL;
BEGIN
TEST ("CE3413B", "CHECK THAT PAGE RAISES LAYOUT_ERROR WHEN THE " &
"VALUE OF THE PAGE NUMBER EXCEEDS COUNT'LAST");
BEGIN
IF COUNT'LAST > 150000 THEN
RAISE INAPPLICABLE;
END IF;
BEGIN
CREATE (FILE, OUT_FILE, LEGAL_FILE_NAME);
EXCEPTION
WHEN USE_ERROR =>
NOT_APPLICABLE ("USE_ERROR RAISED ON TEXT CREATE " &
"WITH OUT_FILE MODE");
RAISE INCOMPLETE;
WHEN NAME_ERROR =>
NOT_APPLICABLE ("NAME_ERROR RAISED ON TEXT " &
"CREATE WITH OUT_FILE MODE");
RAISE INCOMPLETE;
WHEN OTHERS =>
FAILED ("UNEXPECTED EXCEPTION RAISED ON TEXT " &
"CREATE");
RAISE INCOMPLETE;
END;
FOR I IN 1 .. COUNT'LAST-1 LOOP
NEW_PAGE (FILE);
END LOOP;
PUT (FILE, ITEM);
NEW_PAGE (FILE);
PUT (FILE, "DEF");
BEGIN
IF PAGE(FILE) <= POSITIVE_COUNT(COUNT'LAST) THEN
FAILED ("PAGE NUMBER INCORRECT AFTER PAGE SET - 1");
END IF;
FAILED ("LAYOUT_ERROR NOT RAISED FOR PAGE - 1");
EXCEPTION
WHEN LAYOUT_ERROR =>
NULL;
WHEN CONSTRAINT_ERROR =>
FAILED ("CONSTRAINT_ERROR RAISED FOR PAGE - 1");
WHEN OTHERS =>
FAILED ("UNEXPECTED EXCEPTION RAISED FOR PAGE - 1");
END;
CLOSE (FILE);
BEGIN
OPEN (FILE, IN_FILE, LEGAL_FILE_NAME);
EXCEPTION
WHEN USE_ERROR =>
NOT_APPLICABLE ("USE_ERROR RAISED ON TEXT OPEN " &
"WITH IN_FILE MODE");
RAISE INCOMPLETE;
END;
FOR I IN 1 .. COUNT'LAST-1 LOOP
SKIP_PAGE (FILE);
END LOOP;
IF PAGE(FILE) /= COUNT'LAST THEN
FAILED ("INCORRECT PAGE NUMBER");
END IF;
GET_LINE (FILE, ITEM, LST);
IF ITEM /= "ABC" THEN
FAILED ("INCORRECT VALUE READ");
END IF;
SKIP_PAGE (FILE);
BEGIN
IF PAGE(FILE) <= POSITIVE_COUNT(COUNT'LAST) THEN
FAILED ("PAGE NUMBER INCORRECT AFTER PAGE SET - 2");
END IF;
FAILED ("LAYOUT_ERROR NOT RAISED FOR PAGE - 2");
EXCEPTION
WHEN LAYOUT_ERROR =>
NULL;
WHEN CONSTRAINT_ERROR =>
FAILED ("CONSTRAINT_ERROR RAISED FOR PAGE - 2");
WHEN OTHERS =>
FAILED ("UNEXPECTED EXCEPTION RAISED FOR PAGE - 2");
END;
BEGIN
DELETE (FILE);
EXCEPTION
WHEN USE_ERROR =>
NULL;
END;
EXCEPTION
WHEN INCOMPLETE =>
NULL;
WHEN INAPPLICABLE =>
NOT_APPLICABLE ("THE VALUE OF COUNT'LAST IS GREATER " &
"THAN 150000. THE CHECKING OF THIS " &
"OBJECTIVE IS IMPRACTICAL");
END;
RESULT;
END CE3413B;
| 33.737805 | 79 | 0.516718 |
cb6d4d18fa96d405772738fc18b9d6b26a5f8495 | 26,935 | adb | Ada | source/strings/a-sgbgfu.adb | ytomino/drake | 4e4bdcd8b8e23a11a29b31d3a8861fdf60090ea2 | [
"MIT"
] | 33 | 2015-04-04T09:19:36.000Z | 2021-11-10T05:33:34.000Z | source/strings/a-sgbgfu.adb | ytomino/drake | 4e4bdcd8b8e23a11a29b31d3a8861fdf60090ea2 | [
"MIT"
] | 8 | 2017-11-14T13:05:07.000Z | 2018-08-09T15:28:49.000Z | source/strings/a-sgbgfu.adb | ytomino/drake | 4e4bdcd8b8e23a11a29b31d3a8861fdf60090ea2 | [
"MIT"
] | 9 | 2015-02-03T17:09:53.000Z | 2021-11-12T01:16:05.000Z | package body Ada.Strings.Generic_Bounded.Generic_Functions is
package body Generic_Bounded_Length is
-- Copying
procedure Tail (
Source : Bounded.Bounded_String;
Count : Natural;
Pad : Character_Type := Fixed_Functions.Space;
Drop : Truncation := Error;
Target : out Bounded.Bounded_String);
procedure Tail (
Source : Bounded.Bounded_String;
Count : Natural;
Pad : Character_Type := Fixed_Functions.Space;
Drop : Truncation := Error;
Target : out Bounded.Bounded_String) is
begin
if Count > Bounded.Max then
declare
S : String_Type (1 .. Count);
S_Last : Natural;
begin
Fixed_Functions.Tail (
Source.Element (1 .. Source.Length),
Count,
Pad,
Target => S,
Target_Last => S_Last);
Bounded.Set_Bounded_String (Target, S (1 .. S_Last), Drop);
end;
else
Fixed_Functions.Tail (
Source.Element (1 .. Source.Length),
Count,
Pad,
Target => Target.Element,
Target_Last => Target.Length);
end if;
end Tail;
-- implementation
function Index (
Source : Bounded.Bounded_String;
Pattern : String_Type;
From : Positive;
Going : Direction := Forward)
return Natural is
begin
return Fixed_Functions.Index (
Source.Element (1 .. Source.Length),
Pattern,
From,
Going);
end Index;
function Index (
Source : Bounded.Bounded_String;
Pattern : String_Type;
Going : Direction := Forward)
return Natural is
begin
return Fixed_Functions.Index (
Source.Element (1 .. Source.Length),
Pattern,
Going);
end Index;
function Index_Non_Blank (
Source : Bounded.Bounded_String;
From : Positive;
Going : Direction := Forward)
return Natural is
begin
return Fixed_Functions.Index_Non_Blank (
Source.Element (1 .. Source.Length),
From,
Going);
end Index_Non_Blank;
function Index_Non_Blank (
Source : Bounded.Bounded_String;
Going : Direction := Forward)
return Natural is
begin
return Fixed_Functions.Index_Non_Blank (
Source.Element (1 .. Source.Length),
Going);
end Index_Non_Blank;
function Count (Source : Bounded.Bounded_String; Pattern : String_Type)
return Natural is
begin
return Fixed_Functions.Count (
Source.Element (1 .. Source.Length),
Pattern);
end Count;
function Replace_Slice (
Source : Bounded.Bounded_String;
Low : Positive;
High : Natural;
By : String_Type;
Drop : Truncation := Error)
return Bounded.Bounded_String
is
pragma Check (Pre,
Check =>
(Low <= Source.Length + 1 and then High <= Source.Length)
or else raise Index_Error);
begin
return Result : Bounded.Bounded_String do
declare
New_Length : constant Natural :=
Source.Length
+ By'Length
- Integer'Max (High - Low + 1, 0);
begin
if New_Length > Bounded.Max then
declare
S : String_Type (1 .. New_Length);
S_Last : Natural;
begin
Fixed_Functions.Replace_Slice (
Source.Element (1 .. Source.Length),
Low,
High,
By,
Target => S,
Target_Last => S_Last);
Bounded.Set_Bounded_String (
Result,
S (1 .. S_Last),
Drop);
end;
else
Fixed_Functions.Replace_Slice (
Source.Element (1 .. Source.Length),
Low,
High,
By,
Target => Result.Element,
Target_Last => Result.Length);
end if;
end;
end return;
end Replace_Slice;
procedure Replace_Slice (
Source : in out Bounded.Bounded_String;
Low : Positive;
High : Natural;
By : String_Type;
Drop : Truncation := Error)
is
pragma Check (Pre,
Check =>
(Low <= Source.Length + 1 and then High <= Source.Length)
or else raise Index_Error); -- CXA4019
New_Length : constant Natural :=
Source.Length + By'Length - Integer'Max (High - Low + 1, 0);
begin
if New_Length > Bounded.Max then
declare
S : String_Type (1 .. New_Length);
S_Last : Natural;
begin
Fixed_Functions.Replace_Slice (
Source.Element (1 .. Source.Length),
Low,
High,
By,
Target => S, -- copying
Target_Last => S_Last);
Bounded.Set_Bounded_String (Source, S (1 .. S_Last), Drop);
end;
else
Fixed_Functions.Replace_Slice (
Source.Element,
Source.Length,
Low,
High,
By);
end if;
end Replace_Slice;
function Insert (
Source : Bounded.Bounded_String;
Before : Positive;
New_Item : String_Type;
Drop : Truncation := Error)
return Bounded.Bounded_String
is
pragma Check (Pre,
Check => Before <= Source.Length + 1 or else raise Index_Error);
begin
return Result : Bounded.Bounded_String do
declare
New_Length : constant Natural :=
Source.Length + New_Item'Length;
begin
if New_Length > Bounded.Max then
declare
S : String_Type (1 .. New_Length);
S_Last : Natural;
begin
Fixed_Functions.Insert (
Source.Element (1 .. Source.Length),
Before,
New_Item,
Target => S,
Target_Last => S_Last);
Bounded.Set_Bounded_String (
Result,
S (1 .. S_Last),
Drop);
end;
else
Fixed_Functions.Insert (
Source.Element (1 .. Source.Length),
Before,
New_Item,
Target => Result.Element,
Target_Last => Result.Length);
end if;
end;
end return;
end Insert;
procedure Insert (
Source : in out Bounded.Bounded_String;
Before : Positive;
New_Item : String_Type;
Drop : Truncation := Error)
is
pragma Check (Pre,
Check => Before <= Source.Length + 1 or else raise Index_Error);
New_Length : constant Natural := Source.Length + New_Item'Length;
begin
if New_Length > Bounded.Max then
declare
S : String_Type (1 .. New_Length);
S_Last : Natural;
begin
Fixed_Functions.Insert (
Source.Element (1 .. Source.Length),
Before,
New_Item,
Target => S, -- copying
Target_Last => S_Last);
Bounded.Set_Bounded_String (Source, S (1 .. S_Last), Drop);
end;
else
Fixed_Functions.Insert (
Source.Element,
Source.Length,
Before,
New_Item);
end if;
end Insert;
function Overwrite (
Source : Bounded.Bounded_String;
Position : Positive;
New_Item : String_Type;
Drop : Truncation := Error)
return Bounded.Bounded_String is
begin
return Replace_Slice (
Source,
Position, -- checking Index_Error
Integer'Min (Position + New_Item'Length - 1, Source.Length),
New_Item,
Drop);
end Overwrite;
procedure Overwrite (
Source : in out Bounded.Bounded_String;
Position : Positive;
New_Item : String_Type;
Drop : Truncation := Error) is
begin
Replace_Slice (
Source,
Position, -- checking Index_Error
Integer'Min (Position + New_Item'Length - 1, Source.Length),
New_Item,
Drop);
end Overwrite;
function Delete (
Source : Bounded.Bounded_String;
From : Positive;
Through : Natural)
return Bounded.Bounded_String
is
pragma Check (Pre,
Check =>
(From <= Source.Length + 1 and then Through <= Source.Length)
or else raise Index_Error);
begin
return Result : Bounded.Bounded_String do
Fixed_Functions.Delete (
Source.Element (1 .. Source.Length),
From,
Through,
Target => Result.Element,
Target_Last => Result.Length);
end return;
end Delete;
procedure Delete (
Source : in out Bounded.Bounded_String;
From : Positive;
Through : Natural)
is
pragma Check (Pre,
Check =>
(From <= Source.Length + 1 and then Through <= Source.Length)
or else raise Index_Error);
begin
Fixed_Functions.Delete (Source.Element, Source.Length, From, Through);
end Delete;
function Trim (
Source : Bounded.Bounded_String;
Side : Trim_End;
Blank : Character_Type := Fixed_Functions.Space)
return Bounded.Bounded_String
is
First : Positive;
Last : Natural;
begin
Fixed_Functions.Trim (
Source.Element (1 .. Source.Length),
Side,
Blank,
First,
Last);
return Bounded.Bounded_Slice (Source, First, Last);
end Trim;
procedure Trim (
Source : in out Bounded.Bounded_String;
Side : Trim_End;
Blank : Character_Type := Fixed_Functions.Space)
is
First : Positive;
Last : Natural;
begin
Fixed_Functions.Trim (
Source.Element (1 .. Source.Length),
Side,
Blank,
First,
Last);
Bounded.Bounded_Slice (Source, Source, First, Last);
end Trim;
function Head (
Source : Bounded.Bounded_String;
Count : Natural;
Pad : Character_Type := Fixed_Functions.Space;
Drop : Truncation := Error)
return Bounded.Bounded_String is
begin
return Result : Bounded.Bounded_String do
if Count > Bounded.Max then
declare
S : String_Type (1 .. Count);
S_Last : Natural;
begin
Fixed_Functions.Head (
Source.Element (1 .. Source.Length),
Count,
Pad,
Target => S,
Target_Last => S_Last);
Bounded.Set_Bounded_String (Result, S (1 .. S_Last), Drop);
end;
else
Fixed_Functions.Head (
Source.Element (1 .. Source.Length),
Count,
Pad,
Target => Result.Element,
Target_Last => Result.Length);
end if;
end return;
end Head;
procedure Head (
Source : in out Bounded.Bounded_String;
Count : Natural;
Pad : Character_Type := Fixed_Functions.Space;
Drop : Truncation := Error) is
begin
if Count > Bounded.Max then
declare
S : String_Type (1 .. Count);
S_Last : Natural;
begin
Fixed_Functions.Head (
Source.Element (1 .. Source.Length),
Count,
Pad,
Target => S, -- copying
Target_Last => S_Last);
Bounded.Set_Bounded_String (Source, S (1 .. S_Last), Drop);
end;
else
Fixed_Functions.Head (Source.Element, Source.Length, Count, Pad);
end if;
end Head;
function Tail (
Source : Bounded.Bounded_String;
Count : Natural;
Pad : Character_Type := Fixed_Functions.Space;
Drop : Truncation := Error)
return Bounded.Bounded_String is
begin
return Result : Bounded.Bounded_String do
Tail (Source, Count, Pad, Drop, Target => Result);
end return;
end Tail;
procedure Tail (
Source : in out Bounded.Bounded_String;
Count : Natural;
Pad : Character_Type := Fixed_Functions.Space;
Drop : Truncation := Error) is
begin
if Count /= Source.Length then
Tail (Source, Count, Pad, Drop, Target => Source); -- copying
end if;
end Tail;
end Generic_Bounded_Length;
package body Generic_Maps is
package body Generic_Bounded_Length is
function Index (
Source : Bounded.Bounded_String;
Pattern : String_Type;
From : Positive;
Going : Direction := Forward;
Mapping : Fixed_Maps.Character_Mapping)
return Natural is
begin
return Fixed_Maps.Index (
Source.Element (1 .. Source.Length),
Pattern,
From,
Going,
Mapping);
end Index;
function Index (
Source : Bounded.Bounded_String;
Pattern : String_Type;
Going : Direction := Forward;
Mapping : Fixed_Maps.Character_Mapping)
return Natural is
begin
return Fixed_Maps.Index (
Source.Element (1 .. Source.Length),
Pattern,
Going,
Mapping);
end Index;
function Index (
Source : Bounded.Bounded_String;
Pattern : String_Type;
From : Positive;
Going : Direction := Forward;
Mapping : not null access function (From : Wide_Wide_Character)
return Wide_Wide_Character)
return Natural is
begin
return Fixed_Maps.Index (
Source.Element (1 .. Source.Length),
Pattern,
From,
Going,
Mapping);
end Index;
function Index (
Source : Bounded.Bounded_String;
Pattern : String_Type;
Going : Direction := Forward;
Mapping : not null access function (From : Wide_Wide_Character)
return Wide_Wide_Character)
return Natural is
begin
return Fixed_Maps.Index (
Source.Element (1 .. Source.Length),
Pattern,
Going,
Mapping);
end Index;
function Index_Element (
Source : Bounded.Bounded_String;
Pattern : String_Type;
From : Positive;
Going : Direction := Forward;
Mapping : not null access function (From : Character_Type)
return Character_Type)
return Natural is
begin
return Fixed_Maps.Index_Element (
Source.Element (1 .. Source.Length),
Pattern,
From,
Going,
Mapping);
end Index_Element;
function Index_Element (
Source : Bounded.Bounded_String;
Pattern : String_Type;
Going : Direction := Forward;
Mapping : not null access function (From : Character_Type)
return Character_Type)
return Natural is
begin
return Fixed_Maps.Index_Element (
Source.Element (1 .. Source.Length),
Pattern,
Going,
Mapping);
end Index_Element;
function Index (
Source : Bounded.Bounded_String;
Set : Fixed_Maps.Character_Set;
From : Positive;
Test : Membership := Inside;
Going : Direction := Forward)
return Natural is
begin
return Fixed_Maps.Index (
Source.Element (1 .. Source.Length),
Set,
From,
Test,
Going);
end Index;
function Index (
Source : Bounded.Bounded_String;
Set : Fixed_Maps.Character_Set;
Test : Membership := Inside;
Going : Direction := Forward)
return Natural is
begin
return Fixed_Maps.Index (
Source.Element (1 .. Source.Length),
Set,
Test,
Going);
end Index;
function Count (
Source : Bounded.Bounded_String;
Pattern : String_Type;
Mapping : Fixed_Maps.Character_Mapping)
return Natural is
begin
return Fixed_Maps.Count (
Source.Element (1 .. Source.Length),
Pattern,
Mapping);
end Count;
function Count (
Source : Bounded.Bounded_String;
Pattern : String_Type;
Mapping : not null access function (From : Wide_Wide_Character)
return Wide_Wide_Character)
return Natural is
begin
return Fixed_Maps.Count (
Source.Element (1 .. Source.Length),
Pattern,
Mapping);
end Count;
function Count_Element (
Source : Bounded.Bounded_String;
Pattern : String_Type;
Mapping : not null access function (From : Character_Type)
return Character_Type)
return Natural is
begin
return Fixed_Maps.Count_Element (
Source.Element (1 .. Source.Length),
Pattern,
Mapping);
end Count_Element;
function Count (
Source : Bounded.Bounded_String;
Set : Fixed_Maps.Character_Set)
return Natural is
begin
return Fixed_Maps.Count (Source.Element (1 .. Source.Length), Set);
end Count;
procedure Find_Token (
Source : Bounded.Bounded_String;
Set : Fixed_Maps.Character_Set;
From : Positive;
Test : Membership;
First : out Positive;
Last : out Natural) is
begin
Fixed_Maps.Find_Token (
Source.Element (1 .. Source.Length),
Set,
From,
Test,
First,
Last);
end Find_Token;
procedure Find_Token (
Source : Bounded.Bounded_String;
Set : Fixed_Maps.Character_Set;
Test : Membership;
First : out Positive;
Last : out Natural) is
begin
Fixed_Maps.Find_Token (
Source.Element (1 .. Source.Length),
Set,
Test,
First,
Last);
end Find_Token;
function Translate (
Source : Bounded.Bounded_String;
Mapping : Fixed_Maps.Character_Mapping;
Drop : Truncation := Error)
return Bounded.Bounded_String is
begin
return Result : Bounded.Bounded_String do
declare
Expanded_Length : constant Natural :=
Source.Length * Fixed_Maps.Expanding;
begin
if Expanded_Length > Bounded.Max then
declare
S : String_Type (1 .. Expanded_Length);
S_Last : Natural;
begin
Fixed_Maps.Translate (
Source.Element (1 .. Source.Length),
Mapping,
Target => S,
Target_Last => S_Last);
Bounded.Set_Bounded_String (
Result,
S (1 .. S_Last),
Drop);
end;
else
Fixed_Maps.Translate (
Source.Element (1 .. Source.Length),
Mapping,
Target => Result.Element,
Target_Last => Result.Length);
end if;
end;
end return;
end Translate;
procedure Translate (
Source : in out Bounded.Bounded_String;
Mapping : Fixed_Maps.Character_Mapping;
Drop : Truncation := Error)
is
-- Translate can not update destructively.
S : String_Type (1 .. Source.Length * Fixed_Maps.Expanding);
S_Last : Natural;
begin
Fixed_Maps.Translate (
Source.Element (1 .. Source.Length),
Mapping,
Target => S,
Target_Last => S_Last);
Bounded.Set_Bounded_String (Source, S (1 .. S_Last), Drop);
end Translate;
function Translate (
Source : Bounded.Bounded_String;
Mapping : not null access function (From : Wide_Wide_Character)
return Wide_Wide_Character;
Drop : Truncation := Error)
return Bounded.Bounded_String is
begin
return Result : Bounded.Bounded_String do
declare
Expanded_Length : constant Natural :=
Source.Length * Fixed_Maps.Expanding;
begin
if Expanded_Length > Bounded.Max then
declare
S : String_Type (1 .. Expanded_Length);
S_Last : Natural;
begin
Fixed_Maps.Translate (
Source.Element (1 .. Source.Length),
Mapping,
Target => S,
Target_Last => S_Last);
Bounded.Set_Bounded_String (
Result,
S (1 .. S_Last),
Drop);
end;
else
Fixed_Maps.Translate (
Source.Element (1 .. Source.Length),
Mapping,
Target => Result.Element,
Target_Last => Result.Length);
end if;
end;
end return;
end Translate;
procedure Translate (
Source : in out Bounded.Bounded_String;
Mapping : not null access function (From : Wide_Wide_Character)
return Wide_Wide_Character;
Drop : Truncation := Error)
is
-- Translate can not update destructively.
S : String_Type (1 .. Source.Length * Fixed_Maps.Expanding);
S_Last : Natural;
begin
Fixed_Maps.Translate (
Source.Element (1 .. Source.Length),
Mapping,
Target => S,
Target_Last => S_Last);
Bounded.Set_Bounded_String (Source, S (1 .. S_Last), Drop);
end Translate;
function Translate_Element (
Source : Bounded.Bounded_String;
Mapping : not null access function (From : Character_Type)
return Character_Type)
return Bounded.Bounded_String is
begin
return Result : Bounded.Bounded_String := (
Capacity => Bounded.Max,
Length => Source.Length,
Element => <>)
do
Fixed_Maps.Translate_Element (
Source.Element (1 .. Source.Length),
Mapping,
Target => Result.Element (1 .. Source.Length));
end return;
end Translate_Element;
procedure Translate_Element (
Source : in out Bounded.Bounded_String;
Mapping : not null access function (From : Character_Type)
return Character_Type) is
begin
Fixed_Maps.Translate_Element (
Source.Element (1 .. Source.Length),
Mapping);
end Translate_Element;
function Trim (
Source : Bounded.Bounded_String;
Left : Fixed_Maps.Character_Set;
Right : Fixed_Maps.Character_Set)
return Bounded.Bounded_String
is
First : Positive;
Last : Natural;
begin
Fixed_Maps.Trim (
Source.Element (1 .. Source.Length),
Left,
Right,
First,
Last);
return Bounded.Bounded_Slice (Source, First, Last);
end Trim;
procedure Trim (
Source : in out Bounded.Bounded_String;
Left : Fixed_Maps.Character_Set;
Right : Fixed_Maps.Character_Set)
is
First : Positive;
Last : Natural;
begin
Fixed_Maps.Trim (
Source.Element (1 .. Source.Length),
Left,
Right,
First,
Last);
Bounded.Bounded_Slice (Source, Source, First, Last);
end Trim;
end Generic_Bounded_Length;
end Generic_Maps;
end Ada.Strings.Generic_Bounded.Generic_Functions;
| 32.608959 | 79 | 0.481641 |
c52d1c022170badd07245e0dcae50240308f31e7 | 2,682 | adb | Ada | day12/day12.adb | thorstel/Advent-of-Code-2018 | d67cb7ffeac9e68560af34ca1bc29928bad1d3b9 | [
"BSD-3-Clause"
] | 2 | 2019-09-15T04:52:09.000Z | 2020-11-17T16:46:46.000Z | day12/day12.adb | thorstel/Advent-of-Code-2018 | d67cb7ffeac9e68560af34ca1bc29928bad1d3b9 | [
"BSD-3-Clause"
] | null | null | null | day12/day12.adb | thorstel/Advent-of-Code-2018 | d67cb7ffeac9e68560af34ca1bc29928bad1d3b9 | [
"BSD-3-Clause"
] | null | null | null | with Ada.Containers.Ordered_Maps; use Ada.Containers;
with Ada.Text_IO; use Ada.Text_IO;
with Ada.Strings.Unbounded; use Ada.Strings.Unbounded;
with Input12; use Input12;
procedure Day12 is
package String_Maps is new Ordered_Maps
(Key_Type => String_Pattern,
Element_Type => Character);
type Integer_64 is range -(2**63) .. +(2**63 - 1);
Lookup_Table : String_Maps.Map;
function Generation_Sum
(Initial_State : String;
Num_Gens : Integer_64) return Integer_64
is
Diff_Count : Natural := 0;
Old_Sum : Integer_64 := 0;
Old_Diff : Integer_64 := 0;
Zero_Index : Positive := Initial_State'First + 5;
Current_State : Unbounded_String :=
To_Unbounded_String ("....." & Initial_State & ".....");
begin
for Gen in 1 .. Num_Gens loop
declare
Old_State : constant String := To_String (Current_State);
New_State : String := Old_State;
Sum : Integer_64 := 0;
begin
for I in Old_State'First + 2 .. Old_State'Last - 2 loop
declare
Pattern : constant String := Old_State (I - 2 .. I + 2);
begin
New_State (I) := Lookup_Table.Element (Pattern);
if New_State (I) = '#' then
Sum := Sum + Integer_64 (I - Zero_Index);
end if;
end;
end loop;
if Old_Diff = (Sum - Old_Sum) then
Diff_Count := Diff_Count + 1;
else
Diff_Count := 0;
end if;
if Diff_Count > 10 then
return Sum + ((Num_Gens - Gen) * (Sum - Old_Sum));
end if;
Old_Diff := Sum - Old_Sum;
Old_Sum := Sum;
Current_State := To_Unbounded_String (New_State);
if New_State (1 .. 5) /= "....." then
Current_State := "....." & Current_State;
Zero_Index := Zero_Index + 5;
end if;
if New_State (New_State'Last - 4 .. New_State'Last) /= "....." then
Append (Current_State, ".....");
end if;
end;
end loop;
return Old_Sum;
end Generation_Sum;
begin
for I in Inputs'Range loop
Lookup_Table.Insert (Inputs (I).Pattern, Inputs (I).Plant);
end loop;
Put_Line
("Part 1 =" & Integer_64'Image (Generation_Sum (Initial_State, 20)));
Put_Line
("Part 2 =" &
Integer_64'Image (Generation_Sum (Initial_State, 50000000000)));
end Day12;
| 34.384615 | 79 | 0.516779 |
4a94c6563dfe0cdd3e68cb60d63dda25718c2b71 | 3,715 | ads | Ada | source/web/soap/web_services-soap-headers.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 24 | 2016-11-29T06:59:41.000Z | 2021-08-30T11:55:16.000Z | source/web/soap/web_services-soap-headers.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 2 | 2019-01-16T05:15:20.000Z | 2019-02-03T10:03:32.000Z | source/web/soap/web_services-soap-headers.ads | svn2github/matreshka | 9d222b3ad9da508855fb1f5adbe5e8a4fad4c530 | [
"BSD-3-Clause"
] | 4 | 2017-07-18T07:11:05.000Z | 2020-06-21T03:02:25.000Z | ------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- Web Framework --
-- --
-- Runtime Library Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2012, Vadim Godunko <vgodunko@gmail.com> --
-- All rights reserved. --
-- --
-- Redistribution and use in source and binary forms, with or without --
-- modification, are permitted provided that the following conditions --
-- are met: --
-- --
-- * Redistributions of source code must retain the above copyright --
-- notice, this list of conditions and the following disclaimer. --
-- --
-- * Redistributions in binary form must reproduce the above copyright --
-- notice, this list of conditions and the following disclaimer in the --
-- documentation and/or other materials provided with the distribution. --
-- --
-- * Neither the name of the Vadim Godunko, IE nor the names of its --
-- contributors may be used to endorse or promote products derived from --
-- this software without specific prior written permission. --
-- --
-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS --
-- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT --
-- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR --
-- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT --
-- HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, --
-- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED --
-- TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR --
-- PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF --
-- LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING --
-- NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS --
-- SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. --
-- --
------------------------------------------------------------------------------
-- $Revision$ $Date$
------------------------------------------------------------------------------
-- Base tagged type to represent information in SOAP Header.
------------------------------------------------------------------------------
package Web_Services.SOAP.Headers is
pragma Preelaborate;
type Abstract_SOAP_Header is abstract tagged limited null record;
type SOAP_Header_Access is access all Abstract_SOAP_Header'Class;
end Web_Services.SOAP.Headers;
| 67.545455 | 78 | 0.410767 |
4a30c7f807bcd54f0193b947e2df3b22fd6c33ba | 838 | adb | Ada | gdb/testsuite/gdb.ada/fin_fun_out/foo_o525_013.adb | greyblue9/binutils-gdb | 05377632b124fe7600eea7f4ee0e9a35d1b0cbdc | [
"BSD-3-Clause"
] | 1 | 2020-10-14T03:24:35.000Z | 2020-10-14T03:24:35.000Z | gdb/testsuite/gdb.ada/fin_fun_out/foo_o525_013.adb | greyblue9/binutils-gdb | 05377632b124fe7600eea7f4ee0e9a35d1b0cbdc | [
"BSD-3-Clause"
] | null | null | null | gdb/testsuite/gdb.ada/fin_fun_out/foo_o525_013.adb | greyblue9/binutils-gdb | 05377632b124fe7600eea7f4ee0e9a35d1b0cbdc | [
"BSD-3-Clause"
] | null | null | null | -- Copyright 2015-2021 Free Software Foundation, Inc.
--
-- This program is free software; you can redistribute it and/or modify
-- it under the terms of the GNU General Public License as published by
-- the Free Software Foundation; either version 3 of the License, or
-- (at your option) any later version.
--
-- This program 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
-- along with this program. If not, see <http://www.gnu.org/licenses/>.
with Bar; use Bar;
procedure Foo_O525_013 is
R : Rec_Type;
I : Enum_Type := F (R);
begin
null;
end Foo_O525_013;
| 34.916667 | 73 | 0.72673 |
cb813422d36c7278309ade0a8c546691200c092d | 1,587 | ads | Ada | regtests/css-printer-tests.ads | stcarrez/ada-css | f7c337306094993186c507540701d04a4753b724 | [
"Apache-2.0"
] | 3 | 2017-01-03T22:18:22.000Z | 2017-01-10T07:58:17.000Z | regtests/css-printer-tests.ads | stcarrez/ada-css | f7c337306094993186c507540701d04a4753b724 | [
"Apache-2.0"
] | null | null | null | regtests/css-printer-tests.ads | stcarrez/ada-css | f7c337306094993186c507540701d04a4753b724 | [
"Apache-2.0"
] | null | null | null | -----------------------------------------------------------------------
-- css-print-tests -- Unit tests for CSS printer
-- Copyright (C) 2017 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with Ada.Strings.Unbounded;
with Util.Tests;
package CSS.Printer.Tests is
procedure Add_Tests (Suite : in Util.Tests.Access_Test_Suite);
type Test is new Util.Tests.Test_Case with record
Name : Ada.Strings.Unbounded.Unbounded_String;
File : Ada.Strings.Unbounded.Unbounded_String;
Expect : Ada.Strings.Unbounded.Unbounded_String;
Result : Ada.Strings.Unbounded.Unbounded_String;
Compress : Boolean := False;
end record;
type Test_Case_Access is access all Test;
-- Test case name
overriding
function Name (T : Test) return Util.Tests.Message_String;
-- Perform the test.
overriding
procedure Run_Test (T : in out Test);
end CSS.Printer.Tests;
| 36.906977 | 76 | 0.653434 |
c55f80fad93b6dd2c5decae3cc73916a979e5893 | 3,582 | ads | Ada | include/setjmp_h.ads | docandrew/troodon | 9240611708f92ffb5491fa677bffb6ecac58a51e | [
"MIT"
] | 5 | 2021-11-03T04:34:16.000Z | 2021-11-10T23:06:30.000Z | include/setjmp_h.ads | docandrew/troodon | 9240611708f92ffb5491fa677bffb6ecac58a51e | [
"MIT"
] | null | null | null | include/setjmp_h.ads | docandrew/troodon | 9240611708f92ffb5491fa677bffb6ecac58a51e | [
"MIT"
] | null | null | null | pragma Ada_2012;
pragma Style_Checks (Off);
with Interfaces.C; use Interfaces.C;
with bits_types_struct_u_jmp_buf_tag_h;
package setjmp_h is
-- arg-macro: procedure setjmp (env)
-- _setjmp (env)
-- arg-macro: procedure sigsetjmp (env, savemask)
-- __sigsetjmp (env, savemask)
-- Copyright (C) 1991-2021 Free Software Foundation, Inc.
-- This file is part of the GNU C Library.
-- The GNU C Library is free software; you can redistribute it and/or
-- modify it under the terms of the GNU Lesser General Public
-- License as published by the Free Software Foundation; either
-- version 2.1 of the License, or (at your option) any later version.
-- The GNU C Library 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
-- Lesser General Public License for more details.
-- You should have received a copy of the GNU Lesser General Public
-- License along with the GNU C Library; if not, see
-- <https://www.gnu.org/licenses/>.
-- * ISO C99 Standard: 7.13 Nonlocal jumps <setjmp.h>
--
-- Get `__jmp_buf'.
type jmp_buf is array (0 .. 0) of aliased bits_types_struct_u_jmp_buf_tag_h.uu_jmp_buf_tag; -- /usr/include/setjmp.h:32
-- Store the calling environment in ENV, also saving the signal mask.
-- Return 0.
function setjmp (uu_env : access bits_types_struct_u_jmp_buf_tag_h.uu_jmp_buf_tag) return int -- /usr/include/setjmp.h:36
with Import => True,
Convention => C,
External_Name => "setjmp";
-- Store the calling environment in ENV, also saving the
-- signal mask if SAVEMASK is nonzero. Return 0.
-- This is the internal name for `sigsetjmp'.
-- skipped func __sigsetjmp
-- Store the calling environment in ENV, not saving the signal mask.
-- Return 0.
-- skipped func _setjmp
-- Do not save the signal mask. This is equivalent to the `_setjmp'
-- BSD function.
-- Jump to the environment saved in ENV, making the
-- `setjmp' call there return VAL, or 1 if VAL is 0.
procedure longjmp (uu_env : access bits_types_struct_u_jmp_buf_tag_h.uu_jmp_buf_tag; uu_val : int) -- /usr/include/setjmp.h:54
with Import => True,
Convention => C,
External_Name => "longjmp";
-- Same. Usually `_longjmp' is used with `_setjmp', which does not save
-- the signal mask. But it is how ENV was saved that determines whether
-- `longjmp' restores the mask; `_longjmp' is just an alias.
-- skipped func _longjmp
-- Use the same type for `jmp_buf' and `sigjmp_buf'.
-- The `__mask_was_saved' flag determines whether
-- or not `longjmp' will restore the signal mask.
type sigjmp_buf is array (0 .. 0) of aliased bits_types_struct_u_jmp_buf_tag_h.uu_jmp_buf_tag; -- /usr/include/setjmp.h:70
-- Store the calling environment in ENV, also saving the
-- signal mask if SAVEMASK is nonzero. Return 0.
-- Jump to the environment saved in ENV, making the
-- sigsetjmp call there return VAL, or 1 if VAL is 0.
-- Restore the signal mask if that sigsetjmp call saved it.
-- This is just an alias `longjmp'.
procedure siglongjmp (uu_env : access bits_types_struct_u_jmp_buf_tag_h.uu_jmp_buf_tag; uu_val : int) -- /usr/include/setjmp.h:80
with Import => True,
Convention => C,
External_Name => "siglongjmp";
-- Define helper functions to catch unsafe code.
end setjmp_h;
| 39.8 | 133 | 0.68593 |
cbaeaf2b2c95774d6abb1461bf2aa14ac96eaf5c | 4,077 | adb | Ada | Ada95/src/terminal_interface-curses-putwin.adb | neverware-mirrors/ncurses | 931939e0d2765af13962820e59cb6629df3ee638 | [
"X11"
] | 269 | 2015-03-01T21:34:42.000Z | 2022-03-30T23:07:18.000Z | Ada95/src/terminal_interface-curses-putwin.adb | neverware-mirrors/ncurses | 931939e0d2765af13962820e59cb6629df3ee638 | [
"X11"
] | 3 | 2020-10-09T15:00:37.000Z | 2020-10-09T15:05:19.000Z | Ada95/src/terminal_interface-curses-putwin.adb | neverware-mirrors/ncurses | 931939e0d2765af13962820e59cb6629df3ee638 | [
"X11"
] | 97 | 2016-04-25T06:22:54.000Z | 2022-03-30T23:07:19.000Z | ------------------------------------------------------------------------------
-- --
-- GNAT ncurses Binding --
-- --
-- Terminal_Interface.Curses.PutWin --
-- --
-- B O D Y --
-- --
------------------------------------------------------------------------------
-- Copyright 2020 Thomas E. Dickey --
-- Copyright 2000-2002,2003 Free Software Foundation, Inc. --
-- --
-- Permission is hereby granted, free of charge, to any person obtaining a --
-- copy of this software and associated documentation files (the --
-- "Software"), to deal in the Software without restriction, including --
-- without limitation the rights to use, copy, modify, merge, publish, --
-- distribute, distribute with modifications, sublicense, and/or sell --
-- copies of the Software, and to permit persons to whom the Software is --
-- furnished to do so, subject to the following conditions: --
-- --
-- The above copyright notice and this permission notice shall be included --
-- in all copies or substantial portions of the Software. --
-- --
-- THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS --
-- OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF --
-- MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. --
-- IN NO EVENT SHALL THE ABOVE COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, --
-- DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR --
-- OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR --
-- THE USE OR OTHER DEALINGS IN THE SOFTWARE. --
-- --
-- Except as contained in this notice, the name(s) of the above copyright --
-- holders shall not be used in advertising or otherwise to promote the --
-- sale, use or other dealings in this Software without prior written --
-- authorization. --
------------------------------------------------------------------------------
-- Author: Juergen Pfeifer, 1996
-- Version Control:
-- $Revision: 1.5 $
-- Binding Version 01.00
with Ada.Streams.Stream_IO.C_Streams;
with Interfaces.C_Streams;
with Terminal_Interface.Curses.Aux; use Terminal_Interface.Curses.Aux;
package body Terminal_Interface.Curses.PutWin is
package ICS renames Interfaces.C_Streams;
package ACS renames Ada.Streams.Stream_IO.C_Streams;
use type C_Int;
procedure Put_Window (Win : Window;
File : Ada.Streams.Stream_IO.File_Type) is
function putwin (Win : Window; f : ICS.FILEs) return C_Int;
pragma Import (C, putwin, "putwin");
R : constant C_Int := putwin (Win, ACS.C_Stream (File));
begin
if R /= Curses_Ok then
raise Curses_Exception;
end if;
end Put_Window;
function Get_Window (File : Ada.Streams.Stream_IO.File_Type)
return Window is
function getwin (f : ICS.FILEs) return Window;
pragma Import (C, getwin, "getwin");
W : constant Window := getwin (ACS.C_Stream (File));
begin
if W = Null_Window then
raise Curses_Exception;
else
return W;
end if;
end Get_Window;
end Terminal_Interface.Curses.PutWin;
| 51.607595 | 78 | 0.482217 |
cb70a01dbe13c30e38c0ffeb6c4a2066372afa6c | 6,516 | adb | Ada | llvm-gcc-4.2-2.9/gcc/ada/s-pack50.adb | vidkidz/crossbridge | ba0bf94aee0ce6cf7eb5be882382e52bc57ba396 | [
"MIT"
] | 1 | 2016-04-09T02:58:13.000Z | 2016-04-09T02:58:13.000Z | llvm-gcc-4.2-2.9/gcc/ada/s-pack50.adb | vidkidz/crossbridge | ba0bf94aee0ce6cf7eb5be882382e52bc57ba396 | [
"MIT"
] | null | null | null | llvm-gcc-4.2-2.9/gcc/ada/s-pack50.adb | vidkidz/crossbridge | ba0bf94aee0ce6cf7eb5be882382e52bc57ba396 | [
"MIT"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- S Y S T E M . P A C K _ 5 0 --
-- --
-- B o d y --
-- --
-- Copyright (C) 1992-2005, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 2, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT 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 GNAT; see file COPYING. If not, write --
-- to the Free Software Foundation, 51 Franklin Street, Fifth Floor, --
-- Boston, MA 02110-1301, 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. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with System.Storage_Elements;
with System.Unsigned_Types;
with Unchecked_Conversion;
package body System.Pack_50 is
subtype Ofs is System.Storage_Elements.Storage_Offset;
subtype Uns is System.Unsigned_Types.Unsigned;
subtype N07 is System.Unsigned_Types.Unsigned range 0 .. 7;
use type System.Storage_Elements.Storage_Offset;
use type System.Unsigned_Types.Unsigned;
type Cluster is record
E0, E1, E2, E3, E4, E5, E6, E7 : Bits_50;
end record;
for Cluster use record
E0 at 0 range 0 * Bits .. 0 * Bits + Bits - 1;
E1 at 0 range 1 * Bits .. 1 * Bits + Bits - 1;
E2 at 0 range 2 * Bits .. 2 * Bits + Bits - 1;
E3 at 0 range 3 * Bits .. 3 * Bits + Bits - 1;
E4 at 0 range 4 * Bits .. 4 * Bits + Bits - 1;
E5 at 0 range 5 * Bits .. 5 * Bits + Bits - 1;
E6 at 0 range 6 * Bits .. 6 * Bits + Bits - 1;
E7 at 0 range 7 * Bits .. 7 * Bits + Bits - 1;
end record;
for Cluster'Size use Bits * 8;
for Cluster'Alignment use Integer'Min (Standard'Maximum_Alignment,
1 +
1 * Boolean'Pos (Bits mod 2 = 0) +
2 * Boolean'Pos (Bits mod 4 = 0));
-- Use maximum possible alignment, given the bit field size, since this
-- will result in the most efficient code possible for the field.
type Cluster_Ref is access Cluster;
function To_Ref is new
Unchecked_Conversion (System.Address, Cluster_Ref);
-- The following declarations are for the case where the address
-- passed to GetU_50 or SetU_50 is not guaranteed to be aligned.
-- These routines are used when the packed array is itself a
-- component of a packed record, and therefore may not be aligned.
type ClusterU is new Cluster;
for ClusterU'Alignment use 1;
type ClusterU_Ref is access ClusterU;
function To_Ref is new
Unchecked_Conversion (System.Address, ClusterU_Ref);
------------
-- Get_50 --
------------
function Get_50 (Arr : System.Address; N : Natural) return Bits_50 is
C : constant Cluster_Ref := To_Ref (Arr + Bits * Ofs (Uns (N) / 8));
begin
case N07 (Uns (N) mod 8) is
when 0 => return C.E0;
when 1 => return C.E1;
when 2 => return C.E2;
when 3 => return C.E3;
when 4 => return C.E4;
when 5 => return C.E5;
when 6 => return C.E6;
when 7 => return C.E7;
end case;
end Get_50;
-------------
-- GetU_50 --
-------------
function GetU_50 (Arr : System.Address; N : Natural) return Bits_50 is
C : constant ClusterU_Ref := To_Ref (Arr + Bits * Ofs (Uns (N) / 8));
begin
case N07 (Uns (N) mod 8) is
when 0 => return C.E0;
when 1 => return C.E1;
when 2 => return C.E2;
when 3 => return C.E3;
when 4 => return C.E4;
when 5 => return C.E5;
when 6 => return C.E6;
when 7 => return C.E7;
end case;
end GetU_50;
------------
-- Set_50 --
------------
procedure Set_50 (Arr : System.Address; N : Natural; E : Bits_50) is
C : constant Cluster_Ref := To_Ref (Arr + Bits * Ofs (Uns (N) / 8));
begin
case N07 (Uns (N) mod 8) is
when 0 => C.E0 := E;
when 1 => C.E1 := E;
when 2 => C.E2 := E;
when 3 => C.E3 := E;
when 4 => C.E4 := E;
when 5 => C.E5 := E;
when 6 => C.E6 := E;
when 7 => C.E7 := E;
end case;
end Set_50;
-------------
-- SetU_50 --
-------------
procedure SetU_50 (Arr : System.Address; N : Natural; E : Bits_50) is
C : constant ClusterU_Ref := To_Ref (Arr + Bits * Ofs (Uns (N) / 8));
begin
case N07 (Uns (N) mod 8) is
when 0 => C.E0 := E;
when 1 => C.E1 := E;
when 2 => C.E2 := E;
when 3 => C.E3 := E;
when 4 => C.E4 := E;
when 5 => C.E5 := E;
when 6 => C.E6 := E;
when 7 => C.E7 := E;
end case;
end SetU_50;
end System.Pack_50;
| 39.253012 | 78 | 0.494629 |
c5ddff76955e056653858a94873bc9c95746740c | 16,740 | adb | Ada | gcc-gcc-7_3_0-release/gcc/ada/s-finmas.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 7 | 2020-05-02T17:34:05.000Z | 2021-10-17T10:15:18.000Z | gcc-gcc-7_3_0-release/gcc/ada/s-finmas.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | null | null | null | gcc-gcc-7_3_0-release/gcc/ada/s-finmas.adb | best08618/asylo | 5a520a9f5c461ede0f32acc284017b737a43898c | [
"Apache-2.0"
] | 2 | 2020-07-27T00:22:36.000Z | 2021-04-01T09:41:02.000Z | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- S Y S T E M . F I N A L I Z A T I O N _ M A S T E R S --
-- --
-- B o d y --
-- --
-- Copyright (C) 2015, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with Ada.Exceptions; use Ada.Exceptions;
with System.Address_Image;
with System.HTable; use System.HTable;
with System.IO; use System.IO;
with System.Soft_Links; use System.Soft_Links;
with System.Storage_Elements; use System.Storage_Elements;
package body System.Finalization_Masters is
-- Finalize_Address hash table types. In general, masters are homogeneous
-- collections of controlled objects. Rare cases such as allocations on a
-- subpool require heterogeneous masters. The following table provides a
-- relation between object address and its Finalize_Address routine.
type Header_Num is range 0 .. 127;
function Hash (Key : System.Address) return Header_Num;
-- Address --> Finalize_Address_Ptr
package Finalize_Address_Table is new Simple_HTable
(Header_Num => Header_Num,
Element => Finalize_Address_Ptr,
No_Element => null,
Key => System.Address,
Hash => Hash,
Equal => "=");
---------------------------
-- Add_Offset_To_Address --
---------------------------
function Add_Offset_To_Address
(Addr : System.Address;
Offset : System.Storage_Elements.Storage_Offset) return System.Address
is
begin
return System.Storage_Elements."+" (Addr, Offset);
end Add_Offset_To_Address;
------------
-- Attach --
------------
procedure Attach (N : not null FM_Node_Ptr; L : not null FM_Node_Ptr) is
begin
Lock_Task.all;
Attach_Unprotected (N, L);
Unlock_Task.all;
-- Note: No need to unlock in case of an exception because the above
-- code can never raise one.
end Attach;
------------------------
-- Attach_Unprotected --
------------------------
procedure Attach_Unprotected
(N : not null FM_Node_Ptr;
L : not null FM_Node_Ptr)
is
begin
L.Next.Prev := N;
N.Next := L.Next;
L.Next := N;
N.Prev := L;
end Attach_Unprotected;
---------------
-- Base_Pool --
---------------
function Base_Pool
(Master : Finalization_Master) return Any_Storage_Pool_Ptr
is
begin
return Master.Base_Pool;
end Base_Pool;
-----------------------------------------
-- Delete_Finalize_Address_Unprotected --
-----------------------------------------
procedure Delete_Finalize_Address_Unprotected (Obj : System.Address) is
begin
Finalize_Address_Table.Remove (Obj);
end Delete_Finalize_Address_Unprotected;
------------
-- Detach --
------------
procedure Detach (N : not null FM_Node_Ptr) is
begin
Lock_Task.all;
Detach_Unprotected (N);
Unlock_Task.all;
-- Note: No need to unlock in case of an exception because the above
-- code can never raise one.
end Detach;
------------------------
-- Detach_Unprotected --
------------------------
procedure Detach_Unprotected (N : not null FM_Node_Ptr) is
begin
if N.Prev /= null and then N.Next /= null then
N.Prev.Next := N.Next;
N.Next.Prev := N.Prev;
N.Prev := null;
N.Next := null;
end if;
end Detach_Unprotected;
--------------
-- Finalize --
--------------
overriding procedure Finalize (Master : in out Finalization_Master) is
Cleanup : Finalize_Address_Ptr;
Curr_Ptr : FM_Node_Ptr;
Ex_Occur : Exception_Occurrence;
Obj_Addr : Address;
Raised : Boolean := False;
function Is_Empty_List (L : not null FM_Node_Ptr) return Boolean;
-- Determine whether a list contains only one element, the dummy head
-------------------
-- Is_Empty_List --
-------------------
function Is_Empty_List (L : not null FM_Node_Ptr) return Boolean is
begin
return L.Next = L and then L.Prev = L;
end Is_Empty_List;
-- Start of processing for Finalize
begin
Lock_Task.all;
-- Synchronization:
-- Read - allocation, finalization
-- Write - finalization
if Master.Finalization_Started then
Unlock_Task.all;
-- Double finalization may occur during the handling of stand alone
-- libraries or the finalization of a pool with subpools. Due to the
-- potential aliasing of masters in these two cases, do not process
-- the same master twice.
return;
end if;
-- Lock the master to prevent any allocations while the objects are
-- being finalized. The master remains locked because either the master
-- is explicitly deallocated or the associated access type is about to
-- go out of scope.
-- Synchronization:
-- Read - allocation, finalization
-- Write - finalization
Master.Finalization_Started := True;
while not Is_Empty_List (Master.Objects'Unchecked_Access) loop
Curr_Ptr := Master.Objects.Next;
-- Synchronization:
-- Write - allocation, deallocation, finalization
Detach_Unprotected (Curr_Ptr);
-- Skip the list header in order to offer proper object layout for
-- finalization.
Obj_Addr := Curr_Ptr.all'Address + Header_Size;
-- Retrieve TSS primitive Finalize_Address depending on the master's
-- mode of operation.
-- Synchronization:
-- Read - allocation, finalization
-- Write - outside
if Master.Is_Homogeneous then
-- Synchronization:
-- Read - finalization
-- Write - allocation, outside
Cleanup := Master.Finalize_Address;
else
-- Synchronization:
-- Read - finalization
-- Write - allocation, deallocation
Cleanup := Finalize_Address_Unprotected (Obj_Addr);
end if;
begin
Cleanup (Obj_Addr);
exception
when Fin_Occur : others =>
if not Raised then
Raised := True;
Save_Occurrence (Ex_Occur, Fin_Occur);
end if;
end;
-- When the master is a heterogeneous collection, destroy the object
-- - Finalize_Address pair since it is no longer needed.
-- Synchronization:
-- Read - finalization
-- Write - outside
if not Master.Is_Homogeneous then
-- Synchronization:
-- Read - finalization
-- Write - allocation, deallocation, finalization
Delete_Finalize_Address_Unprotected (Obj_Addr);
end if;
end loop;
Unlock_Task.all;
-- If the finalization of a particular object failed or Finalize_Address
-- was not set, reraise the exception now.
if Raised then
Reraise_Occurrence (Ex_Occur);
end if;
end Finalize;
----------------------
-- Finalize_Address --
----------------------
function Finalize_Address
(Master : Finalization_Master) return Finalize_Address_Ptr
is
begin
return Master.Finalize_Address;
end Finalize_Address;
----------------------------------
-- Finalize_Address_Unprotected --
----------------------------------
function Finalize_Address_Unprotected
(Obj : System.Address) return Finalize_Address_Ptr
is
begin
return Finalize_Address_Table.Get (Obj);
end Finalize_Address_Unprotected;
--------------------------
-- Finalization_Started --
--------------------------
function Finalization_Started
(Master : Finalization_Master) return Boolean
is
begin
return Master.Finalization_Started;
end Finalization_Started;
----------
-- Hash --
----------
function Hash (Key : System.Address) return Header_Num is
begin
return
Header_Num
(To_Integer (Key) mod Integer_Address (Header_Num'Range_Length));
end Hash;
-----------------
-- Header_Size --
-----------------
function Header_Size return System.Storage_Elements.Storage_Count is
begin
return FM_Node'Size / Storage_Unit;
end Header_Size;
----------------
-- Initialize --
----------------
overriding procedure Initialize (Master : in out Finalization_Master) is
begin
-- The dummy head must point to itself in both directions
Master.Objects.Next := Master.Objects'Unchecked_Access;
Master.Objects.Prev := Master.Objects'Unchecked_Access;
end Initialize;
--------------------
-- Is_Homogeneous --
--------------------
function Is_Homogeneous (Master : Finalization_Master) return Boolean is
begin
return Master.Is_Homogeneous;
end Is_Homogeneous;
-------------
-- Objects --
-------------
function Objects (Master : Finalization_Master) return FM_Node_Ptr is
begin
return Master.Objects'Unrestricted_Access;
end Objects;
------------------
-- Print_Master --
------------------
procedure Print_Master (Master : Finalization_Master) is
Head : constant FM_Node_Ptr := Master.Objects'Unrestricted_Access;
Head_Seen : Boolean := False;
N_Ptr : FM_Node_Ptr;
begin
-- Output the basic contents of a master
-- Master : 0x123456789
-- Is_Hmgen : TURE <or> FALSE
-- Base_Pool: null <or> 0x123456789
-- Fin_Addr : null <or> 0x123456789
-- Fin_Start: TRUE <or> FALSE
Put ("Master : ");
Put_Line (Address_Image (Master'Address));
Put ("Is_Hmgen : ");
Put_Line (Master.Is_Homogeneous'Img);
Put ("Base_Pool: ");
if Master.Base_Pool = null then
Put_Line ("null");
else
Put_Line (Address_Image (Master.Base_Pool'Address));
end if;
Put ("Fin_Addr : ");
if Master.Finalize_Address = null then
Put_Line ("null");
else
Put_Line (Address_Image (Master.Finalize_Address'Address));
end if;
Put ("Fin_Start: ");
Put_Line (Master.Finalization_Started'Img);
-- Output all chained elements. The format is the following:
-- ^ <or> ? <or> null
-- |Header: 0x123456789 (dummy head)
-- | Prev: 0x123456789
-- | Next: 0x123456789
-- V
-- ^ - the current element points back to the correct element
-- ? - the current element points back to an erroneous element
-- n - the current element points back to null
-- Header - the address of the list header
-- Prev - the address of the list header which the current element
-- points back to
-- Next - the address of the list header which the current element
-- points to
-- (dummy head) - present if dummy head
N_Ptr := Head;
while N_Ptr /= null loop -- Should never be null
Put_Line ("V");
-- We see the head initially; we want to exit when we see the head a
-- second time.
if N_Ptr = Head then
exit when Head_Seen;
Head_Seen := True;
end if;
-- The current element is null. This should never happen since the
-- list is circular.
if N_Ptr.Prev = null then
Put_Line ("null (ERROR)");
-- The current element points back to the correct element
elsif N_Ptr.Prev.Next = N_Ptr then
Put_Line ("^");
-- The current element points to an erroneous element
else
Put_Line ("? (ERROR)");
end if;
-- Output the header and fields
Put ("|Header: ");
Put (Address_Image (N_Ptr.all'Address));
-- Detect the dummy head
if N_Ptr = Head then
Put_Line (" (dummy head)");
else
Put_Line ("");
end if;
Put ("| Prev: ");
if N_Ptr.Prev = null then
Put_Line ("null");
else
Put_Line (Address_Image (N_Ptr.Prev.all'Address));
end if;
Put ("| Next: ");
if N_Ptr.Next = null then
Put_Line ("null");
else
Put_Line (Address_Image (N_Ptr.Next.all'Address));
end if;
N_Ptr := N_Ptr.Next;
end loop;
end Print_Master;
-------------------
-- Set_Base_Pool --
-------------------
procedure Set_Base_Pool
(Master : in out Finalization_Master;
Pool_Ptr : Any_Storage_Pool_Ptr)
is
begin
Master.Base_Pool := Pool_Ptr;
end Set_Base_Pool;
--------------------------
-- Set_Finalize_Address --
--------------------------
procedure Set_Finalize_Address
(Master : in out Finalization_Master;
Fin_Addr_Ptr : Finalize_Address_Ptr)
is
begin
-- Synchronization:
-- Read - finalization
-- Write - allocation, outside
Lock_Task.all;
Set_Finalize_Address_Unprotected (Master, Fin_Addr_Ptr);
Unlock_Task.all;
end Set_Finalize_Address;
--------------------------------------
-- Set_Finalize_Address_Unprotected --
--------------------------------------
procedure Set_Finalize_Address_Unprotected
(Master : in out Finalization_Master;
Fin_Addr_Ptr : Finalize_Address_Ptr)
is
begin
if Master.Finalize_Address = null then
Master.Finalize_Address := Fin_Addr_Ptr;
end if;
end Set_Finalize_Address_Unprotected;
----------------------------------------------------
-- Set_Heterogeneous_Finalize_Address_Unprotected --
----------------------------------------------------
procedure Set_Heterogeneous_Finalize_Address_Unprotected
(Obj : System.Address;
Fin_Addr_Ptr : Finalize_Address_Ptr)
is
begin
Finalize_Address_Table.Set (Obj, Fin_Addr_Ptr);
end Set_Heterogeneous_Finalize_Address_Unprotected;
--------------------------
-- Set_Is_Heterogeneous --
--------------------------
procedure Set_Is_Heterogeneous (Master : in out Finalization_Master) is
begin
-- Synchronization:
-- Read - finalization
-- Write - outside
Lock_Task.all;
Master.Is_Homogeneous := False;
Unlock_Task.all;
end Set_Is_Heterogeneous;
end System.Finalization_Masters;
| 30.162162 | 79 | 0.541517 |
cb2d81f75333608a9fedabbbbc049fbbdaea6906 | 8,898 | adb | Ada | Validation/pyFrame3DD-master/gcc-master/gcc/ada/ada_get_targ.adb | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | Validation/pyFrame3DD-master/gcc-master/gcc/ada/ada_get_targ.adb | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | Validation/pyFrame3DD-master/gcc-master/gcc/ada/ada_get_targ.adb | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- G E T _ T A R G --
-- --
-- B o d y --
-- --
-- Copyright (C) 1992-2020, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT 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 GNAT; see file COPYING3. If not, go to --
-- http://www.gnu.org/licenses for a complete copy of the license. --
-- --
------------------------------------------------------------------------------
-- Version shared by various Ada based back-ends (e.g. gnat2scil, gnat2why)
with System.OS_Lib; use System.OS_Lib;
with GNAT.Directory_Operations; use GNAT.Directory_Operations;
package body Get_Targ is
-----------------------
-- Get_Bits_Per_Unit --
-----------------------
function Get_Bits_Per_Unit return Pos is
begin
return 8;
end Get_Bits_Per_Unit;
-----------------------
-- Get_Bits_Per_Word --
-----------------------
function Get_Bits_Per_Word return Pos is
begin
return 32;
end Get_Bits_Per_Word;
-------------------
-- Get_Char_Size --
-------------------
function Get_Char_Size return Pos is
begin
return 8;
end Get_Char_Size;
----------------------
-- Get_Wchar_T_Size --
----------------------
function Get_Wchar_T_Size return Pos is
begin
return 16;
end Get_Wchar_T_Size;
--------------------
-- Get_Short_Size --
--------------------
function Get_Short_Size return Pos is
begin
return 16;
end Get_Short_Size;
------------------
-- Get_Int_Size --
------------------
function Get_Int_Size return Pos is
begin
return 32;
end Get_Int_Size;
-------------------
-- Get_Long_Size --
-------------------
function Get_Long_Size return Pos is
begin
return 64;
end Get_Long_Size;
------------------------
-- Get_Long_Long_Size --
------------------------
function Get_Long_Long_Size return Pos is
begin
return 64;
end Get_Long_Long_Size;
----------------------
-- Get_Pointer_Size --
----------------------
function Get_Pointer_Size return Pos is
begin
return 64;
end Get_Pointer_Size;
---------------------------
-- Get_Maximum_Alignment --
---------------------------
function Get_Maximum_Alignment return Pos is
begin
return 4;
end Get_Maximum_Alignment;
------------------------------------
-- Get_System_Allocator_Alignment --
------------------------------------
function Get_System_Allocator_Alignment return Nat is
begin
return 1;
end Get_System_Allocator_Alignment;
------------------------
-- Get_Float_Words_BE --
------------------------
function Get_Float_Words_BE return Nat is
begin
return 1;
end Get_Float_Words_BE;
------------------
-- Get_Words_BE --
------------------
function Get_Words_BE return Nat is
begin
return 1;
end Get_Words_BE;
------------------
-- Get_Bytes_BE --
------------------
function Get_Bytes_BE return Nat is
begin
return 1;
end Get_Bytes_BE;
-----------------
-- Get_Bits_BE --
-----------------
function Get_Bits_BE return Nat is
begin
return 1;
end Get_Bits_BE;
---------------------
-- Get_Short_Enums --
---------------------
function Get_Short_Enums return Int is
begin
return 0;
end Get_Short_Enums;
--------------------------
-- Get_Strict_Alignment --
--------------------------
function Get_Strict_Alignment return Nat is
begin
return 1;
end Get_Strict_Alignment;
--------------------------------
-- Get_Double_Float_Alignment --
--------------------------------
function Get_Double_Float_Alignment return Nat is
begin
return 0;
end Get_Double_Float_Alignment;
---------------------------------
-- Get_Double_Scalar_Alignment --
---------------------------------
function Get_Double_Scalar_Alignment return Nat is
begin
return 0;
end Get_Double_Scalar_Alignment;
-----------------------------
-- Get_Max_Unaligned_Field --
-----------------------------
function Get_Max_Unaligned_Field return Pos is
begin
return 64; -- Can be different on some targets (e.g., AAMP)
end Get_Max_Unaligned_Field;
----------------------
-- Digits_From_Size --
----------------------
function Digits_From_Size (Size : Pos) return Pos is
begin
case Size is
when 32 => return 6;
when 48 => return 9;
when 64 => return 15;
when 96 => return 18;
when 128 => return 18;
when others => raise Program_Error;
end case;
end Digits_From_Size;
-----------------------------
-- Register_Back_End_Types --
-----------------------------
procedure Register_Back_End_Types (Call_Back : Register_Type_Proc) is
Float_Str : C_String := (others => ASCII.NUL);
Double_Str : C_String := (others => ASCII.NUL);
begin
Float_Str (Float_Str'First .. Float_Str'First + 4) := "float";
Call_Back
(C_Name => Float_Str, Digs => 6, Complex => False, Count => 0,
Float_Rep => IEEE_Binary,
Precision => 32, Size => 32, Alignment => 32);
Double_Str (Double_Str'First .. Double_Str'First + 5) := "double";
Call_Back
(C_Name => Double_Str,
Digs => 15,
Complex => False,
Count => 0,
Float_Rep => IEEE_Binary,
Precision => 64,
Size => 64,
Alignment => 64);
end Register_Back_End_Types;
---------------------
-- Width_From_Size --
---------------------
function Width_From_Size (Size : Pos) return Pos is
begin
case Size is
when 8 => return 4;
when 16 => return 6;
when 32 => return 11;
when 64 => return 21;
when others => raise Program_Error;
end case;
end Width_From_Size;
------------------------------
-- Get_Back_End_Config_File --
------------------------------
function Get_Back_End_Config_File return String_Ptr is
function Exec_Name return String;
-- Return name of the current executable (from argv[0])
function Get_Target_File (Dir : String) return String_Ptr;
-- Return Dir & "target.atp" if found, null otherwise
---------------
-- Exec_Name --
---------------
function Exec_Name return String is
type Arg_Array is array (Nat) of Big_String_Ptr;
type Arg_Array_Ptr is access all Arg_Array;
gnat_argv : Arg_Array_Ptr;
pragma Import (C, gnat_argv);
begin
for J in 1 .. Natural'Last loop
if gnat_argv (0) (J) = ASCII.NUL then
return gnat_argv (0) (1 .. J - 1);
end if;
end loop;
raise Program_Error;
end Exec_Name;
---------------------
-- Get_Target_File --
---------------------
function Get_Target_File (Dir : String) return String_Ptr is
F : constant String := Dir & "target.atp";
begin
if Is_Regular_File (F) then
return new String'(F);
else
return null;
end if;
end Get_Target_File;
Exec : constant String := Exec_Name;
-- Start of processing for Get_Back_End_Config_File
begin
if Is_Absolute_Path (Exec) then
return Get_Target_File (Dir_Name (Exec));
else
return Get_Target_File (Dir_Name (Locate_Exec_On_Path (Exec).all));
end if;
end Get_Back_End_Config_File;
end Get_Targ;
| 27.045593 | 78 | 0.478759 |
cb017059a1f29b76efcbdedb89d53f75419a03a5 | 234 | ads | Ada | source/environment/machine-pc-freebsd/s-envblo.ads | ytomino/drake | 4e4bdcd8b8e23a11a29b31d3a8861fdf60090ea2 | [
"MIT"
] | 33 | 2015-04-04T09:19:36.000Z | 2021-11-10T05:33:34.000Z | source/environment/machine-pc-freebsd/s-envblo.ads | ytomino/drake | 4e4bdcd8b8e23a11a29b31d3a8861fdf60090ea2 | [
"MIT"
] | 8 | 2017-11-14T13:05:07.000Z | 2018-08-09T15:28:49.000Z | source/environment/machine-pc-freebsd/s-envblo.ads | ytomino/drake | 4e4bdcd8b8e23a11a29b31d3a8861fdf60090ea2 | [
"MIT"
] | 9 | 2015-02-03T17:09:53.000Z | 2021-11-12T01:16:05.000Z | pragma License (Unrestricted);
-- implementation unit specialized for FreeBSD
with C;
function System.Environment_Block return C.char_ptr_ptr;
pragma Preelaborate (System.Environment_Block);
pragma Inline (System.Environment_Block);
| 33.428571 | 56 | 0.833333 |
c529fd6e669ec4974b7d23dcab7b2b93ba3f4a61 | 2,240 | adb | Ada | Validation/pyFrame3DD-master/gcc-master/gcc/ada/scos.adb | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | Validation/pyFrame3DD-master/gcc-master/gcc/ada/scos.adb | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | Validation/pyFrame3DD-master/gcc-master/gcc/ada/scos.adb | djamal2727/Main-Bearing-Analytical-Model | 2f00c2219c71be0175c6f4f8f1d4cca231d97096 | [
"Apache-2.0"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- S C O S --
-- --
-- B o d y --
-- --
-- Copyright (C) 2009-2020, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT 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 GNAT; see file COPYING3. If not, go to --
-- http://www.gnu.org/licenses for a complete copy of the license. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
package body SCOs is
----------------
-- Initialize --
----------------
procedure Initialize is
begin
SCO_Table.Init;
SCO_Unit_Table.Init;
SCO_Instance_Table.Init;
-- Set dummy zeroth entry for sort routine, real entries start at 1
SCO_Unit_Table.Increment_Last;
end Initialize;
end SCOs;
| 50.909091 | 78 | 0.399554 |
4ac0657aa4e81a1b4e4dfd0846837b0c98dc1b4d | 8,784 | ads | Ada | bb-runtimes/runtimes/ravenscar-sfp-stm32f3x4/gnarl/s-bbtime.ads | JCGobbi/Nucleo-STM32F334R8 | 2a0b1b4b2664c92773703ac5e95dcb71979d051c | [
"BSD-3-Clause"
] | null | null | null | bb-runtimes/runtimes/ravenscar-sfp-stm32f3x4/gnarl/s-bbtime.ads | JCGobbi/Nucleo-STM32F334R8 | 2a0b1b4b2664c92773703ac5e95dcb71979d051c | [
"BSD-3-Clause"
] | null | null | null | bb-runtimes/runtimes/ravenscar-sfp-stm32f3x4/gnarl/s-bbtime.ads | JCGobbi/Nucleo-STM32F334R8 | 2a0b1b4b2664c92773703ac5e95dcb71979d051c | [
"BSD-3-Clause"
] | null | null | null | ------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME LIBRARY (GNARL) COMPONENTS --
-- --
-- S Y S T E M . B B . T I M E --
-- --
-- S p e c --
-- --
-- Copyright (C) 1999-2002 Universidad Politecnica de Madrid --
-- Copyright (C) 2003-2004 The European Space Agency --
-- Copyright (C) 2003-2021, AdaCore --
-- --
-- GNARL is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNARL is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- --
-- --
-- --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNARL was developed by the GNARL team at Florida State University. --
-- Extensive contributions were provided by Ada Core Technologies, Inc. --
-- --
-- The port of GNARL to bare board targets was initially developed by the --
-- Real-Time Systems Group at the Technical University of Madrid. --
-- --
------------------------------------------------------------------------------
-- Package in charge of implementing clock and timer functionalities
pragma Restrictions (No_Elaboration_Code);
with System.Multiprocessors;
package System.BB.Time is
pragma Preelaborate;
type Time is mod 2 ** 64;
for Time'Size use 64;
------------------
-- Time keeping --
------------------
-- Time is represented at this level as a 64-bit unsigned number. We assume
-- that the Board_Support.Read_Clock function provides access to a hardware
-- clock with a resolution of 20 microseconds or better, counting from
-- 0 to Board_Support.Max_Timer_Interval over a period of at least 0.735
-- seconds, and returning a value of the 32-bit Timer_Interval type. The
-- clock resolution should be an integral number of nanoseconds between 1
-- and 20_000.
-- In addition, Board_Support provides an alarm facility, generating an
-- alarm interrupt at up to Max_Timer_Interval clock ticks in the future.
-- The clock frequency is the same as for Read_Clock, but it may or may not
-- use the same timer. See the next section for more information.
-- The Time package uses these facilities to keep a 64-bit clock that will
-- allow a program to keep track of up to 50 years in the future without
-- having the most significant bit set. This means it is always safe to
-- subtract two Clock readings to determine a Time_Span without overflow.
-- We need to support a clock running for 50 years, so this requires
-- a hardware clock period of at least 1_577_880_000 / 2**31 or 0.735
-- seconds. As comparison, a LEON2 at 80 MHz with 24-bit clock and the
-- minimum prescale factor of 4, has a period of 2**24 / (80E6 / 4) = 0.839
-- seconds, while a 200 MHz LEON3 has a period of 2**32 / (200E6 / 5) =
-- 107 seconds. For faster clocks or smaller clock width, higher prescaler
-- values may be needed to achieve 50 year run time. The prescale factor
-- should be chosen such that the period between clock ticks is an integral
-- number of nanoseconds between 1 and 20_000.
type Time_Span is range -2 ** 63 .. 2 ** 63 - 1;
for Time_Span'Size use 64;
-- Time_Span represents the length of time intervals, and it is defined as
-- a 64-bit signed integer.
------------
-- Alarms --
------------
-- Alarms are used for two purposes:
-- * Waking up tasks that sleep as result of Delay_Until
-- * Clock updates, to prevent undetected wrap-around of the
-- hardware clock
-- Alarms use the same time unit as the clock used for time keeping,
-- and need to be able to provide an alarm up to slightly less than
-- Max_Timer_Interval ticks in the future; there always will be a pending
-- alarm within this time frame because of required clock updates. A
-- requirement is that an alarm always can be handled within 1/8th of the
-- time it takes the hardware clock to wrap around. This gives an upper
-- bound to how early we have to set the alarm to ensure timely clock
-- updates. This will result in an interrupt rate 14% higher than
-- absolutely necessary. However, as long as sleep-related alarms are
-- sufficiently frequent, no extra clock-related interrupts are necessary.
--------------------
-- Execution time --
--------------------
-- System.BB.Execution_Time will set these hooks to enable execution time
-- computation only when needed.
Scheduling_Event_Hook : access procedure := null;
-- This hooks must be called when the charged account change: in case of
-- rescheduling and before and after the handling of interrupt.
--------------------
-- Initialization --
--------------------
procedure Initialize_Timers;
-- Initialize this package (clock and alarm handlers). Must be called
-- before any other functions.
----------------
-- Operations --
----------------
function Epoch return Time;
-- Get the reference startup time
function Clock return Time;
-- Get the number of ticks elapsed since startup
procedure Delay_Until (T : Time);
-- Suspend the calling thread until the absolute time specified by T
function Get_Next_Timeout (CPU_Id : System.Multiprocessors.CPU) return Time;
-- Get the date of the next alarm or timing event
procedure Update_Alarm (Alarm : Time);
-- Re-configure the timer if "Alarm" is earlier than the Pending_Alarm.
-- Update_Alarm is the only routine allowed to set an alarm.
-- Execution time
-- Ada allows reading the execution time of any task. To support that, we
-- need to have exclusive access to the time (which is costly as it is not
-- possible to atomically read that value without using a spin lock and
-- masking interrupts). To avoid that cost, let's split that type in two
-- parts (that can be read or written atomically by the processor). It
-- is not possible to read atomically the whole value, but it is possible
-- to read a coherent value: if the time has been changed from A to B
-- while being read, the value read is between A and B. Because of the
-- architecture of the runtime, the execution time is always written
-- atomically (written by the processor executing the task, within the
-- kernel).
-- The type Composite_Execution_Time is declared here so that s-bbthre
-- doesn't depend on s-bbtiev. But this type is used by s-bbtiev.
type Word is mod 2 ** 32;
type Composite_Execution_Time is record
High : Word;
pragma Atomic (High);
-- High part of execution time
Low : Word;
pragma Atomic (Low);
-- Low part of execution time
end record;
Initial_Composite_Execution_Time : constant Composite_Execution_Time :=
(0, 0);
-- The initial value for Composite_Execution_Time
private
pragma Inline (Clock);
pragma Inline (Epoch);
end System.BB.Time;
| 47.481081 | 79 | 0.563525 |
d033d07e67c2284451c9cdec5a3d9668a5039aeb | 34,961 | adb | Ada | oeml-sdk/ada/src/model/-models.adb | AllSafeCybercurity/coinapi-sdk | 013afdeba75f8ba849cbb8d25245535f483cba76 | [
"MIT"
] | 357 | 2017-05-29T15:09:19.000Z | 2022-03-30T15:34:10.000Z | oeml-sdk/ada/src/model/-models.adb | AllSafeCybercurity/coinapi-sdk | 013afdeba75f8ba849cbb8d25245535f483cba76 | [
"MIT"
] | 68 | 2017-12-15T15:39:14.000Z | 2022-02-11T11:28:17.000Z | oeml-sdk/ada/src/model/-models.adb | AllSafeCybercurity/coinapi-sdk | 013afdeba75f8ba849cbb8d25245535f483cba76 | [
"MIT"
] | 199 | 2017-06-01T07:51:14.000Z | 2022-03-25T11:52:28.000Z | -- OEML _ REST API
-- This section will provide necessary information about the `CoinAPI OEML REST API` protocol. <br/> This API is also available in the Postman application: <a href=\"https://postman.coinapi.io/\" target=\"_blank\">https://postman.coinapi.io/</a> <br/><br/> Implemented Standards: * [HTTP1.0](https://datatracker.ietf.org/doc/html/rfc1945) * [HTTP1.1](https://datatracker.ietf.org/doc/html/rfc2616) * [HTTP2.0](https://datatracker.ietf.org/doc/html/rfc7540)
--
-- The version of the OpenAPI document: v1
-- Contact: support@coinapi.io
--
-- NOTE: This package is auto generated by OpenAPI-Generator 5.2.1.
-- https://openapi-generator.tech
-- Do not edit the class manually.
package body .Models is
pragma Style_Checks ("-mr");
pragma Warnings (Off, "*use clause for package*");
use Swagger.Streams;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in RejectReason_Type) is
begin
Into.Start_Entity (Name);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in RejectReason_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out RejectReason_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out RejectReason_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : RejectReason_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in MessageReject_Type) is
begin
Into.Start_Entity (Name);
Into.Write_Entity ("type", Value.P_Type);
Serialize (Into, "reject_reason", Value.Reject_Reason);
Into.Write_Entity ("exchange_id", Value.Exchange_Id);
Into.Write_Entity ("message", Value.Message);
Into.Write_Entity ("rejected_message", Value.Rejected_Message);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in MessageReject_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out MessageReject_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "type", Value.P_Type);
Deserialize (Object, "reject_reason", Value.Reject_Reason);
Swagger.Streams.Deserialize (Object, "exchange_id", Value.Exchange_Id);
Swagger.Streams.Deserialize (Object, "message", Value.Message);
Swagger.Streams.Deserialize (Object, "rejected_message", Value.Rejected_Message);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out MessageReject_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : MessageReject_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in ValidationError_Type) is
begin
Into.Start_Entity (Name);
Into.Write_Entity ("type", Value.P_Type);
Into.Write_Entity ("title", Value.Title);
Serialize (Into, "status", Value.Status);
Into.Write_Entity ("traceId", Value.Trace_Id);
Into.Write_Entity ("errors", Value.Errors);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in ValidationError_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out ValidationError_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "type", Value.P_Type);
Swagger.Streams.Deserialize (Object, "title", Value.Title);
Swagger.Streams.Deserialize (Object, "status", Value.Status);
Swagger.Streams.Deserialize (Object, "traceId", Value.Trace_Id);
Swagger.Streams.Deserialize (Object, "errors", Value.Errors);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out ValidationError_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : ValidationError_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrdType_Type) is
begin
Into.Start_Entity (Name);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrdType_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrdType_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrdType_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : OrdType_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrdStatus_Type) is
begin
Into.Start_Entity (Name);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrdStatus_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrdStatus_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrdStatus_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : OrdStatus_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrderCancelAllRequest_Type) is
begin
Into.Start_Entity (Name);
Into.Write_Entity ("exchange_id", Value.Exchange_Id);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrderCancelAllRequest_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrderCancelAllRequest_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "exchange_id", Value.Exchange_Id);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrderCancelAllRequest_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : OrderCancelAllRequest_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrderCancelSingleRequest_Type) is
begin
Into.Start_Entity (Name);
Into.Write_Entity ("exchange_id", Value.Exchange_Id);
Into.Write_Entity ("exchange_order_id", Value.Exchange_Order_Id);
Into.Write_Entity ("client_order_id", Value.Client_Order_Id);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrderCancelSingleRequest_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrderCancelSingleRequest_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "exchange_id", Value.Exchange_Id);
Swagger.Streams.Deserialize (Object, "exchange_order_id", Value.Exchange_Order_Id);
Swagger.Streams.Deserialize (Object, "client_order_id", Value.Client_Order_Id);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrderCancelSingleRequest_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : OrderCancelSingleRequest_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrdSide_Type) is
begin
Into.Start_Entity (Name);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrdSide_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrdSide_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrdSide_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : OrdSide_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in TimeInForce_Type) is
begin
Into.Start_Entity (Name);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in TimeInForce_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out TimeInForce_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out TimeInForce_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : TimeInForce_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrderNewSingleRequest_Type) is
begin
Into.Start_Entity (Name);
Into.Write_Entity ("exchange_id", Value.Exchange_Id);
Into.Write_Entity ("client_order_id", Value.Client_Order_Id);
Into.Write_Entity ("symbol_id_exchange", Value.Symbol_Id_Exchange);
Into.Write_Entity ("symbol_id_coinapi", Value.Symbol_Id_Coinapi);
Serialize (Into, "amount_order", Value.Amount_Order);
Serialize (Into, "price", Value.Price);
Serialize (Into, "side", Value.Side);
Serialize (Into, "order_type", Value.Order_Type);
Serialize (Into, "time_in_force", Value.Time_In_Force);
Serialize (Into, "expire_time", Value.Expire_Time);
Serialize (Into, "exec_inst", Value.Exec_Inst);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrderNewSingleRequest_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrderNewSingleRequest_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "exchange_id", Value.Exchange_Id);
Swagger.Streams.Deserialize (Object, "client_order_id", Value.Client_Order_Id);
Swagger.Streams.Deserialize (Object, "symbol_id_exchange", Value.Symbol_Id_Exchange);
Swagger.Streams.Deserialize (Object, "symbol_id_coinapi", Value.Symbol_Id_Coinapi);
Swagger.Streams.Deserialize (Object, "amount_order", Value.Amount_Order);
Swagger.Streams.Deserialize (Object, "price", Value.Price);
Deserialize (Object, "side", Value.Side);
Deserialize (Object, "order_type", Value.Order_Type);
Deserialize (Object, "time_in_force", Value.Time_In_Force);
Swagger.Streams.Deserialize (Object, "expire_time", Value.Expire_Time);
Swagger.Streams.Deserialize (Object, "exec_inst", Value.Exec_Inst);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrderNewSingleRequest_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : OrderNewSingleRequest_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in Fills_Type) is
begin
Into.Start_Entity (Name);
Serialize (Into, "time", Value.Time);
Serialize (Into, "price", Value.Price);
Serialize (Into, "amount", Value.Amount);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in Fills_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out Fills_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "time", Value.Time);
Swagger.Streams.Deserialize (Object, "price", Value.Price);
Swagger.Streams.Deserialize (Object, "amount", Value.Amount);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out Fills_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : Fills_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrderExecutionReport_Type) is
begin
Into.Start_Entity (Name);
Into.Write_Entity ("exchange_id", Value.Exchange_Id);
Into.Write_Entity ("client_order_id", Value.Client_Order_Id);
Into.Write_Entity ("symbol_id_exchange", Value.Symbol_Id_Exchange);
Into.Write_Entity ("symbol_id_coinapi", Value.Symbol_Id_Coinapi);
Serialize (Into, "amount_order", Value.Amount_Order);
Serialize (Into, "price", Value.Price);
Serialize (Into, "side", Value.Side);
Serialize (Into, "order_type", Value.Order_Type);
Serialize (Into, "time_in_force", Value.Time_In_Force);
Serialize (Into, "expire_time", Value.Expire_Time);
Serialize (Into, "exec_inst", Value.Exec_Inst);
Into.Write_Entity ("client_order_id_format_exchange", Value.Client_Order_Id_Format_Exchange);
Into.Write_Entity ("exchange_order_id", Value.Exchange_Order_Id);
Serialize (Into, "amount_open", Value.Amount_Open);
Serialize (Into, "amount_filled", Value.Amount_Filled);
Serialize (Into, "avg_px", Value.Avg_Px);
Serialize (Into, "status", Value.Status);
Serialize (Into, "status_history", Value.Status_History);
Into.Write_Entity ("error_message", Value.Error_Message);
Serialize (Into, "fills", Value.Fills);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrderExecutionReport_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrderExecutionReport_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "exchange_id", Value.Exchange_Id);
Swagger.Streams.Deserialize (Object, "client_order_id", Value.Client_Order_Id);
Swagger.Streams.Deserialize (Object, "symbol_id_exchange", Value.Symbol_Id_Exchange);
Swagger.Streams.Deserialize (Object, "symbol_id_coinapi", Value.Symbol_Id_Coinapi);
Swagger.Streams.Deserialize (Object, "amount_order", Value.Amount_Order);
Swagger.Streams.Deserialize (Object, "price", Value.Price);
Deserialize (Object, "side", Value.Side);
Deserialize (Object, "order_type", Value.Order_Type);
Deserialize (Object, "time_in_force", Value.Time_In_Force);
Swagger.Streams.Deserialize (Object, "expire_time", Value.Expire_Time);
Swagger.Streams.Deserialize (Object, "exec_inst", Value.Exec_Inst);
Swagger.Streams.Deserialize (Object, "client_order_id_format_exchange", Value.Client_Order_Id_Format_Exchange);
Swagger.Streams.Deserialize (Object, "exchange_order_id", Value.Exchange_Order_Id);
Swagger.Streams.Deserialize (Object, "amount_open", Value.Amount_Open);
Swagger.Streams.Deserialize (Object, "amount_filled", Value.Amount_Filled);
Swagger.Streams.Deserialize (Object, "avg_px", Value.Avg_Px);
Deserialize (Object, "status", Value.Status);
Swagger.Streams.Deserialize (Object, "status_history", Value.Status_History);
Swagger.Streams.Deserialize (Object, "error_message", Value.Error_Message);
Deserialize (Object, "fills", Value.Fills);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrderExecutionReport_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : OrderExecutionReport_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrderExecutionReportAllOf_Type) is
begin
Into.Start_Entity (Name);
Into.Write_Entity ("client_order_id_format_exchange", Value.Client_Order_Id_Format_Exchange);
Into.Write_Entity ("exchange_order_id", Value.Exchange_Order_Id);
Serialize (Into, "amount_open", Value.Amount_Open);
Serialize (Into, "amount_filled", Value.Amount_Filled);
Serialize (Into, "avg_px", Value.Avg_Px);
Serialize (Into, "status", Value.Status);
Serialize (Into, "status_history", Value.Status_History);
Into.Write_Entity ("error_message", Value.Error_Message);
Serialize (Into, "fills", Value.Fills);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in OrderExecutionReportAllOf_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrderExecutionReportAllOf_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "client_order_id_format_exchange", Value.Client_Order_Id_Format_Exchange);
Swagger.Streams.Deserialize (Object, "exchange_order_id", Value.Exchange_Order_Id);
Swagger.Streams.Deserialize (Object, "amount_open", Value.Amount_Open);
Swagger.Streams.Deserialize (Object, "amount_filled", Value.Amount_Filled);
Swagger.Streams.Deserialize (Object, "avg_px", Value.Avg_Px);
Deserialize (Object, "status", Value.Status);
Swagger.Streams.Deserialize (Object, "status_history", Value.Status_History);
Swagger.Streams.Deserialize (Object, "error_message", Value.Error_Message);
Deserialize (Object, "fills", Value.Fills);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out OrderExecutionReportAllOf_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : OrderExecutionReportAllOf_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in BalanceData_Type) is
begin
Into.Start_Entity (Name);
Into.Write_Entity ("asset_id_exchange", Value.Asset_Id_Exchange);
Into.Write_Entity ("asset_id_coinapi", Value.Asset_Id_Coinapi);
Serialize (Into, "balance", Value.Balance);
Serialize (Into, "available", Value.Available);
Serialize (Into, "locked", Value.Locked);
Into.Write_Entity ("last_updated_by", Value.Last_Updated_By);
Serialize (Into, "rate_usd", Value.Rate_Usd);
Serialize (Into, "traded", Value.Traded);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in BalanceData_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out BalanceData_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "asset_id_exchange", Value.Asset_Id_Exchange);
Swagger.Streams.Deserialize (Object, "asset_id_coinapi", Value.Asset_Id_Coinapi);
Swagger.Streams.Deserialize (Object, "balance", Value.Balance);
Swagger.Streams.Deserialize (Object, "available", Value.Available);
Swagger.Streams.Deserialize (Object, "locked", Value.Locked);
Swagger.Streams.Deserialize (Object, "last_updated_by", Value.Last_Updated_By);
Swagger.Streams.Deserialize (Object, "rate_usd", Value.Rate_Usd);
Swagger.Streams.Deserialize (Object, "traded", Value.Traded);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out BalanceData_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : BalanceData_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in Balance_Type) is
begin
Into.Start_Entity (Name);
Into.Write_Entity ("exchange_id", Value.Exchange_Id);
Serialize (Into, "data", Value.Data);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in Balance_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out Balance_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "exchange_id", Value.Exchange_Id);
Deserialize (Object, "data", Value.Data);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out Balance_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : Balance_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in Position_Type) is
begin
Into.Start_Entity (Name);
Into.Write_Entity ("exchange_id", Value.Exchange_Id);
Serialize (Into, "data", Value.Data);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in Position_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out Position_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "exchange_id", Value.Exchange_Id);
Deserialize (Object, "data", Value.Data);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out Position_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : Position_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in PositionData_Type) is
begin
Into.Start_Entity (Name);
Into.Write_Entity ("symbol_id_exchange", Value.Symbol_Id_Exchange);
Into.Write_Entity ("symbol_id_coinapi", Value.Symbol_Id_Coinapi);
Serialize (Into, "avg_entry_price", Value.Avg_Entry_Price);
Serialize (Into, "quantity", Value.Quantity);
Serialize (Into, "side", Value.Side);
Serialize (Into, "unrealized_pnl", Value.Unrealized_Pnl);
Serialize (Into, "leverage", Value.Leverage);
Into.Write_Entity ("cross_margin", Value.Cross_Margin);
Serialize (Into, "liquidation_price", Value.Liquidation_Price);
Into.Write_Entity ("raw_data", Value.Raw_Data);
Into.End_Entity (Name);
end Serialize;
procedure Serialize (Into : in out Swagger.Streams.Output_Stream'Class;
Name : in String;
Value : in PositionData_Type_Vectors.Vector) is
begin
Into.Start_Array (Name);
for Item of Value loop
Serialize (Into, "", Item);
end loop;
Into.End_Array (Name);
end Serialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out PositionData_Type) is
Object : Swagger.Value_Type;
begin
Swagger.Streams.Deserialize (From, Name, Object);
Swagger.Streams.Deserialize (Object, "symbol_id_exchange", Value.Symbol_Id_Exchange);
Swagger.Streams.Deserialize (Object, "symbol_id_coinapi", Value.Symbol_Id_Coinapi);
Swagger.Streams.Deserialize (Object, "avg_entry_price", Value.Avg_Entry_Price);
Swagger.Streams.Deserialize (Object, "quantity", Value.Quantity);
Deserialize (Object, "side", Value.Side);
Swagger.Streams.Deserialize (Object, "unrealized_pnl", Value.Unrealized_Pnl);
Swagger.Streams.Deserialize (Object, "leverage", Value.Leverage);
Swagger.Streams.Deserialize (Object, "cross_margin", Value.Cross_Margin);
Swagger.Streams.Deserialize (Object, "liquidation_price", Value.Liquidation_Price);
Deserialize (Object, "raw_data", Value.Raw_Data);
end Deserialize;
procedure Deserialize (From : in Swagger.Value_Type;
Name : in String;
Value : out PositionData_Type_Vectors.Vector) is
List : Swagger.Value_Array_Type;
Item : PositionData_Type;
begin
Value.Clear;
Swagger.Streams.Deserialize (From, Name, List);
for Data of List loop
Deserialize (Data, "", Item);
Value.Append (Item);
end loop;
end Deserialize;
end .Models;
| 37.714132 | 468 | 0.622665 |
d05711adbf4394de96df2a0f2a112dff1e0567d0 | 344,433 | adb | Ada | modeComputer/solution1/.autopilot/db/toplevel.sched.adb | Q-Mart/QLight | 18c1d2b6dd8a2a262230596e9cf20cdc36e7052f | [
"MIT"
] | 1 | 2019-09-02T18:12:44.000Z | 2019-09-02T18:12:44.000Z | modeComputer/solution1/.autopilot/db/toplevel.sched.adb | Q-Mart/QLight | 18c1d2b6dd8a2a262230596e9cf20cdc36e7052f | [
"MIT"
] | null | null | null | modeComputer/solution1/.autopilot/db/toplevel.sched.adb | Q-Mart/QLight | 18c1d2b6dd8a2a262230596e9cf20cdc36e7052f | [
"MIT"
] | null | null | null | <?xml version="1.0" encoding="UTF-8" standalone="yes" ?>
<!DOCTYPE boost_serialization>
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<mMaxTripCount>-1</mMaxTripCount>
<mMinLatency>1</mMinLatency>
<mMaxLatency>1</mMaxLatency>
<mIsDfPipe>0</mIsDfPipe>
<mDfPipe class_id="-1"></mDfPipe>
</item>
</cdfg_regions>
<fsm class_id="-1"></fsm>
<res class_id="-1"></res>
<node_label_latency class_id="26" tracking_level="0" version="0">
<count>158</count>
<item_version>0</item_version>
<item class_id="27" tracking_level="0" version="0">
<first>11</first>
<second class_id="28" tracking_level="0" version="0">
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>12</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>13</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>14</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>31</first>
<second>
<first>0</first>
<second>1</second>
</second>
</item>
<item>
<first>32</first>
<second>
<first>0</first>
<second>1</second>
</second>
</item>
<item>
<first>33</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>34</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>35</first>
<second>
<first>2</first>
<second>2</second>
</second>
</item>
<item>
<first>36</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>37</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>38</first>
<second>
<first>5</first>
<second>6</second>
</second>
</item>
<item>
<first>39</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>41</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>42</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>44</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>45</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>50</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>51</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>52</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>53</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>55</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>57</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>58</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>59</first>
<second>
<first>17</first>
<second>0</second>
</second>
</item>
<item>
<first>60</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>61</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>62</first>
<second>
<first>15</first>
<second>2</second>
</second>
</item>
<item>
<first>63</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>64</first>
<second>
<first>17</first>
<second>0</second>
</second>
</item>
<item>
<first>66</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>67</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>68</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>70</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>71</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>72</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>77</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>78</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>79</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>80</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>81</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>83</first>
<second>
<first>18</first>
<second>0</second>
</second>
</item>
<item>
<first>87</first>
<second>
<first>19</first>
<second>0</second>
</second>
</item>
<item>
<first>88</first>
<second>
<first>19</first>
<second>0</second>
</second>
</item>
<item>
<first>89</first>
<second>
<first>20</first>
<second>0</second>
</second>
</item>
<item>
<first>90</first>
<second>
<first>20</first>
<second>0</second>
</second>
</item>
<item>
<first>91</first>
<second>
<first>20</first>
<second>0</second>
</second>
</item>
<item>
<first>92</first>
<second>
<first>20</first>
<second>0</second>
</second>
</item>
<item>
<first>93</first>
<second>
<first>20</first>
<second>1</second>
</second>
</item>
<item>
<first>94</first>
<second>
<first>21</first>
<second>0</second>
</second>
</item>
<item>
<first>95</first>
<second>
<first>21</first>
<second>0</second>
</second>
</item>
<item>
<first>96</first>
<second>
<first>21</first>
<second>0</second>
</second>
</item>
<item>
<first>97</first>
<second>
<first>21</first>
<second>0</second>
</second>
</item>
<item>
<first>98</first>
<second>
<first>21</first>
<second>1</second>
</second>
</item>
<item>
<first>99</first>
<second>
<first>21</first>
<second>0</second>
</second>
</item>
<item>
<first>100</first>
<second>
<first>21</first>
<second>0</second>
</second>
</item>
<item>
<first>101</first>
<second>
<first>21</first>
<second>0</second>
</second>
</item>
<item>
<first>102</first>
<second>
<first>21</first>
<second>1</second>
</second>
</item>
<item>
<first>103</first>
<second>
<first>22</first>
<second>0</second>
</second>
</item>
<item>
<first>104</first>
<second>
<first>22</first>
<second>0</second>
</second>
</item>
<item>
<first>106</first>
<second>
<first>23</first>
<second>0</second>
</second>
</item>
<item>
<first>107</first>
<second>
<first>23</first>
<second>0</second>
</second>
</item>
<item>
<first>108</first>
<second>
<first>23</first>
<second>0</second>
</second>
</item>
<item>
<first>109</first>
<second>
<first>23</first>
<second>0</second>
</second>
</item>
<item>
<first>111</first>
<second>
<first>23</first>
<second>0</second>
</second>
</item>
<item>
<first>116</first>
<second>
<first>23</first>
<second>0</second>
</second>
</item>
<item>
<first>117</first>
<second>
<first>23</first>
<second>0</second>
</second>
</item>
<item>
<first>118</first>
<second>
<first>23</first>
<second>0</second>
</second>
</item>
<item>
<first>119</first>
<second>
<first>23</first>
<second>0</second>
</second>
</item>
<item>
<first>120</first>
<second>
<first>23</first>
<second>0</second>
</second>
</item>
<item>
<first>121</first>
<second>
<first>23</first>
<second>1</second>
</second>
</item>
<item>
<first>122</first>
<second>
<first>24</first>
<second>0</second>
</second>
</item>
<item>
<first>123</first>
<second>
<first>24</first>
<second>0</second>
</second>
</item>
<item>
<first>124</first>
<second>
<first>24</first>
<second>0</second>
</second>
</item>
<item>
<first>125</first>
<second>
<first>24</first>
<second>1</second>
</second>
</item>
<item>
<first>126</first>
<second>
<first>24</first>
<second>0</second>
</second>
</item>
<item>
<first>127</first>
<second>
<first>24</first>
<second>0</second>
</second>
</item>
<item>
<first>128</first>
<second>
<first>24</first>
<second>0</second>
</second>
</item>
<item>
<first>129</first>
<second>
<first>24</first>
<second>1</second>
</second>
</item>
<item>
<first>130</first>
<second>
<first>24</first>
<second>0</second>
</second>
</item>
<item>
<first>131</first>
<second>
<first>25</first>
<second>0</second>
</second>
</item>
<item>
<first>132</first>
<second>
<first>25</first>
<second>0</second>
</second>
</item>
<item>
<first>133</first>
<second>
<first>25</first>
<second>0</second>
</second>
</item>
<item>
<first>134</first>
<second>
<first>25</first>
<second>0</second>
</second>
</item>
<item>
<first>135</first>
<second>
<first>26</first>
<second>0</second>
</second>
</item>
<item>
<first>138</first>
<second>
<first>26</first>
<second>0</second>
</second>
</item>
<item>
<first>140</first>
<second>
<first>27</first>
<second>0</second>
</second>
</item>
<item>
<first>142</first>
<second>
<first>28</first>
<second>0</second>
</second>
</item>
<item>
<first>143</first>
<second>
<first>28</first>
<second>0</second>
</second>
</item>
<item>
<first>144</first>
<second>
<first>28</first>
<second>0</second>
</second>
</item>
<item>
<first>145</first>
<second>
<first>28</first>
<second>0</second>
</second>
</item>
<item>
<first>146</first>
<second>
<first>28</first>
<second>0</second>
</second>
</item>
<item>
<first>147</first>
<second>
<first>28</first>
<second>0</second>
</second>
</item>
<item>
<first>148</first>
<second>
<first>28</first>
<second>0</second>
</second>
</item>
<item>
<first>149</first>
<second>
<first>28</first>
<second>0</second>
</second>
</item>
<item>
<first>150</first>
<second>
<first>29</first>
<second>0</second>
</second>
</item>
<item>
<first>151</first>
<second>
<first>29</first>
<second>0</second>
</second>
</item>
<item>
<first>152</first>
<second>
<first>29</first>
<second>0</second>
</second>
</item>
<item>
<first>153</first>
<second>
<first>29</first>
<second>0</second>
</second>
</item>
<item>
<first>154</first>
<second>
<first>29</first>
<second>0</second>
</second>
</item>
<item>
<first>155</first>
<second>
<first>29</first>
<second>0</second>
</second>
</item>
<item>
<first>156</first>
<second>
<first>29</first>
<second>0</second>
</second>
</item>
<item>
<first>157</first>
<second>
<first>29</first>
<second>0</second>
</second>
</item>
<item>
<first>158</first>
<second>
<first>29</first>
<second>0</second>
</second>
</item>
<item>
<first>159</first>
<second>
<first>28</first>
<second>0</second>
</second>
</item>
<item>
<first>160</first>
<second>
<first>28</first>
<second>0</second>
</second>
</item>
<item>
<first>161</first>
<second>
<first>29</first>
<second>0</second>
</second>
</item>
<item>
<first>163</first>
<second>
<first>30</first>
<second>0</second>
</second>
</item>
<item>
<first>164</first>
<second>
<first>30</first>
<second>0</second>
</second>
</item>
<item>
<first>165</first>
<second>
<first>38</first>
<second>0</second>
</second>
</item>
<item>
<first>166</first>
<second>
<first>37</first>
<second>0</second>
</second>
</item>
<item>
<first>167</first>
<second>
<first>30</first>
<second>0</second>
</second>
</item>
<item>
<first>169</first>
<second>
<first>30</first>
<second>0</second>
</second>
</item>
<item>
<first>170</first>
<second>
<first>30</first>
<second>0</second>
</second>
</item>
<item>
<first>171</first>
<second>
<first>30</first>
<second>0</second>
</second>
</item>
<item>
<first>176</first>
<second>
<first>30</first>
<second>0</second>
</second>
</item>
<item>
<first>177</first>
<second>
<first>30</first>
<second>0</second>
</second>
</item>
<item>
<first>179</first>
<second>
<first>30</first>
<second>0</second>
</second>
</item>
<item>
<first>180</first>
<second>
<first>30</first>
<second>0</second>
</second>
</item>
<item>
<first>184</first>
<second>
<first>31</first>
<second>2</second>
</second>
</item>
<item>
<first>185</first>
<second>
<first>34</first>
<second>0</second>
</second>
</item>
<item>
<first>186</first>
<second>
<first>34</first>
<second>0</second>
</second>
</item>
<item>
<first>187</first>
<second>
<first>34</first>
<second>0</second>
</second>
</item>
<item>
<first>188</first>
<second>
<first>34</first>
<second>0</second>
</second>
</item>
<item>
<first>189</first>
<second>
<first>34</first>
<second>0</second>
</second>
</item>
<item>
<first>190</first>
<second>
<first>35</first>
<second>0</second>
</second>
</item>
<item>
<first>191</first>
<second>
<first>35</first>
<second>0</second>
</second>
</item>
<item>
<first>192</first>
<second>
<first>35</first>
<second>1</second>
</second>
</item>
<item>
<first>193</first>
<second>
<first>35</first>
<second>0</second>
</second>
</item>
<item>
<first>194</first>
<second>
<first>35</first>
<second>0</second>
</second>
</item>
<item>
<first>195</first>
<second>
<first>35</first>
<second>0</second>
</second>
</item>
<item>
<first>196</first>
<second>
<first>35</first>
<second>0</second>
</second>
</item>
<item>
<first>197</first>
<second>
<first>35</first>
<second>1</second>
</second>
</item>
<item>
<first>198</first>
<second>
<first>36</first>
<second>0</second>
</second>
</item>
<item>
<first>199</first>
<second>
<first>36</first>
<second>0</second>
</second>
</item>
<item>
<first>200</first>
<second>
<first>36</first>
<second>0</second>
</second>
</item>
<item>
<first>201</first>
<second>
<first>36</first>
<second>1</second>
</second>
</item>
<item>
<first>202</first>
<second>
<first>36</first>
<second>0</second>
</second>
</item>
<item>
<first>203</first>
<second>
<first>36</first>
<second>0</second>
</second>
</item>
<item>
<first>204</first>
<second>
<first>37</first>
<second>0</second>
</second>
</item>
<item>
<first>205</first>
<second>
<first>38</first>
<second>0</second>
</second>
</item>
<item>
<first>206</first>
<second>
<first>38</first>
<second>0</second>
</second>
</item>
<item>
<first>207</first>
<second>
<first>37</first>
<second>0</second>
</second>
</item>
<item>
<first>208</first>
<second>
<first>38</first>
<second>0</second>
</second>
</item>
<item>
<first>209</first>
<second>
<first>38</first>
<second>0</second>
</second>
</item>
<item>
<first>211</first>
<second>
<first>31</first>
<second>0</second>
</second>
</item>
<item>
<first>212</first>
<second>
<first>38</first>
<second>0</second>
</second>
</item>
<item>
<first>214</first>
<second>
<first>39</first>
<second>0</second>
</second>
</item>
<item>
<first>215</first>
<second>
<first>39</first>
<second>0</second>
</second>
</item>
<item>
<first>216</first>
<second>
<first>39</first>
<second>0</second>
</second>
</item>
<item>
<first>218</first>
<second>
<first>39</first>
<second>1</second>
</second>
</item>
<item>
<first>219</first>
<second>
<first>39</first>
<second>1</second>
</second>
</item>
<item>
<first>220</first>
<second>
<first>39</first>
<second>1</second>
</second>
</item>
<item>
<first>221</first>
<second>
<first>39</first>
<second>0</second>
</second>
</item>
<item>
<first>222</first>
<second>
<first>40</first>
<second>0</second>
</second>
</item>
<item>
<first>225</first>
<second>
<first>40</first>
<second>0</second>
</second>
</item>
<item>
<first>226</first>
<second>
<first>40</first>
<second>0</second>
</second>
</item>
<item>
<first>228</first>
<second>
<first>18</first>
<second>1</second>
</second>
</item>
</node_label_latency>
<bblk_ent_exit class_id="29" tracking_level="0" version="0">
<count>17</count>
<item_version>0</item_version>
<item class_id="30" tracking_level="0" version="0">
<first>40</first>
<second class_id="31" tracking_level="0" version="0">
<first>0</first>
<second>11</second>
</second>
</item>
<item>
<first>46</first>
<second>
<first>12</first>
<second>12</second>
</second>
</item>
<item>
<first>56</first>
<second>
<first>13</first>
<second>14</second>
</second>
</item>
<item>
<first>65</first>
<second>
<first>13</first>
<second>15</second>
</second>
</item>
<item>
<first>73</first>
<second>
<first>16</first>
<second>16</second>
</second>
</item>
<item>
<first>105</first>
<second>
<first>16</first>
<second>20</second>
</second>
</item>
<item>
<first>110</first>
<second>
<first>21</first>
<second>21</second>
</second>
</item>
<item>
<first>136</first>
<second>
<first>21</first>
<second>24</second>
</second>
</item>
<item>
<first>139</first>
<second>
<first>24</first>
<second>24</second>
</second>
</item>
<item>
<first>141</first>
<second>
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<region_type>8</region_type>
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<pipe_depth>3</pipe_depth>
</item>
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<region_name>visitedLoop</region_name>
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</item>
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<region_name>freqXLoop_freqYLoop</region_name>
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</basic_blocks>
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| 26.858468 | 71 | 0.588373 |
cba15113a41e762eac00eebb4704a4792bbe7477 | 2,437 | ads | Ada | samples/upload_servlet.ads | My-Colaborations/ada-servlet | 4a82140ecf87418808ca8882f698384bb56b412e | [
"Apache-2.0"
] | null | null | null | samples/upload_servlet.ads | My-Colaborations/ada-servlet | 4a82140ecf87418808ca8882f698384bb56b412e | [
"Apache-2.0"
] | null | null | null | samples/upload_servlet.ads | My-Colaborations/ada-servlet | 4a82140ecf87418808ca8882f698384bb56b412e | [
"Apache-2.0"
] | null | null | null | -----------------------------------------------------------------------
-- upload_servlet -- Servlet example to upload files on the server
-- Copyright (C) 2012, 2018 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with Servlet.Core;
with Servlet.Requests;
with Servlet.Responses;
with servlet.Streams;
package Upload_Servlet is
use Servlet;
type File_Type is (IMAGE, PDF, TAR_GZ, TAR, ZIP, UNKNOWN);
-- Guess a file type depending on a content type or a file name.
function Get_File_Type (Content_Type : in String;
Name : in String) return File_Type;
-- Execute a command and write the result to the output stream.
procedure Execute (Command : in String;
Output : in out Streams.Print_Stream);
-- The <b>Servlet</b> represents the component that will handle
-- an HTTP request received by the server.
type Servlet is new Core.Servlet with null record;
-- Called by the servlet container when a GET request is received.
-- Display the upload form page.
procedure Do_Get (Server : in Servlet;
Request : in out Requests.Request'Class;
Response : in out Responses.Response'Class);
-- Called by the servlet container when a POST request is received.
-- Receives the uploaded files and identify them using some external command.
procedure Do_Post (Server : in Servlet;
Request : in out Requests.Request'Class;
Response : in out Responses.Response'Class);
private
-- Write the upload form page with an optional response message.
procedure Write (Response : in out Responses.Response'Class;
Message : in String);
end Upload_Servlet;
| 39.95082 | 81 | 0.642183 |
c5a998c3da1946c5c139229bbfd6cd2fdd2564ed | 674 | ads | Ada | test/unknown/test_unknown-write.ads | skill-lang/skillAdaTestSuite | 279ea0c0cd489c2e39d7532a3b68c564497101e2 | [
"BSD-3-Clause"
] | 1 | 2019-02-09T22:04:10.000Z | 2019-02-09T22:04:10.000Z | test/unknown/test_unknown-write.ads | skill-lang/skillAdaTestSuite | 279ea0c0cd489c2e39d7532a3b68c564497101e2 | [
"BSD-3-Clause"
] | null | null | null | test/unknown/test_unknown-write.ads | skill-lang/skillAdaTestSuite | 279ea0c0cd489c2e39d7532a3b68c564497101e2 | [
"BSD-3-Clause"
] | null | null | null | with Ada.Characters.Handling;
with Ada.Directories;
with Ada.Strings.Fixed;
with Ada.Tags;
with Ahven.Framework;
with Unknown.Api;
package Test_Unknown.Write is
package Skill renames Unknown.Api;
use Unknown;
use Unknown.Api;
type Test is new Ahven.Framework.Test_Case with null record;
procedure Initialize (T : in out Test);
procedure Set_Up (T : in out Test);
procedure Tear_Down (T : in out Test);
procedure Check_Types (T : in out Ahven.Framework.Test_Case'Class);
procedure Check_Fields_A (T : in out Ahven.Framework.Test_Case'Class);
procedure Check_Fields_C (T : in out Ahven.Framework.Test_Case'Class);
end Test_Unknown.Write;
| 24.962963 | 73 | 0.746291 |