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-------------------------------------------------------------------------------------
--
-- EXCEL_OUT - A low level package for writing Microsoft Excel (*) files
--
-- Pure Ada 95 code, 100% portable: OS-, CPU- and compiler- independent.
--
-- Version / date / download info: see the version, reference, web strings
-- defined at the end of the public part of this package.
-- Legal licensing note:
-- Copyright (c) 2009 .. 2018 Gautier de Montmollin
-- 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.
-- NB: this is the MIT License, as found 12-Sep-2007 on the site
-- http://www.opensource.org/licenses/mit-license.php
-- Derived from ExcelOut by Frank Schoonjans in Modula-2 - thanks!
-- (*) All Trademarks mentioned are properties of their respective owners.
-------------------------------------------------------------------------------------
--
-- Follow these steps to create an Excel spreadsheet stream:
--
-- 1. Create
--
-- 2. Optional settings, before any data output:
-- | Write_default_column_width
-- | Write_column_width for specific columns
-- | Write_default_row_height
-- | Write_row_height for specific rows
-- | Define_font, then Define_format
--
-- 3. | Write(xl, row, column, data): row by row, column by column
-- | Put(xl, data) : same, but column is auto-incremented
-- | New_Line(xl),... : other "Text_IO"-like (full list below)
-- | Use_format, influences the format of data written next
--
-- 4. Close
--
-- 5. (Excel_Out_String only) function Contents returns the full .xls
--------------------------------------------------------------------------
with Ada.Calendar; use Ada.Calendar;
with Ada.Streams.Stream_IO;
with Ada.Strings.Unbounded; use Ada.Strings.Unbounded;
with Ada.Text_IO;
package Excel_Out is
-----------------------------------------------------------------
-- The abstract Excel output stream root type. --
-- From this package, you can use the following derived types: --
-- * Excel_Out_File : output in a file --
-- * Excel_Out_String : output in a string --
-- Of course you can define your own derived types. --
-----------------------------------------------------------------
type Excel_Out_Stream is abstract tagged private;
----------------------------------
-- (2) Before any cell content: --
----------------------------------
-- * Page layout for printing
procedure Header(xl : Excel_Out_Stream; page_header_string: String);
procedure Footer(xl : Excel_Out_Stream; page_footer_string: String);
--
procedure Left_Margin(xl : Excel_Out_Stream; inches: Long_Float);
procedure Right_Margin(xl : Excel_Out_Stream; inches: Long_Float);
procedure Top_Margin(xl : Excel_Out_Stream; inches: Long_Float);
procedure Bottom_Margin(xl : Excel_Out_Stream; inches: Long_Float);
procedure Margins(xl : Excel_Out_Stream; left, right, top, bottom: Long_Float);
--
procedure Print_Row_Column_Headers(xl : Excel_Out_Stream);
procedure Print_Gridlines(xl : Excel_Out_Stream);
--
type Orientation_choice is (landscape, portrait);
type Scale_or_fit_choice is (scale, fit);
procedure Page_Setup(
xl : Excel_Out_Stream;
scaling_percents : Positive:= 100;
fit_width_with_n_pages : Natural:= 1; -- 0: as many as possible
fit_height_with_n_pages: Natural:= 1; -- 0: as many as possible
orientation : Orientation_choice:= portrait;
scale_or_fit : Scale_or_fit_choice:= scale
);
-- * The column width unit is as it appears in Excel when you resize a column.
-- It is the width of a '0' in a standard font.
procedure Write_default_column_width(xl : in out Excel_Out_Stream; width : Positive);
procedure Write_column_width(xl : in out Excel_Out_Stream; column: Positive; width: Natural);
procedure Write_column_width(
xl : in out Excel_Out_Stream;
first_column,
last_column : Positive;
width : Natural
);
-- * The row height unit is in font points, as appearing when you
-- resize a row in Excel. A zero height means the row is hidden.
procedure Write_default_row_height(xl: Excel_Out_Stream; height: Positive);
procedure Write_row_height(xl : Excel_Out_Stream; row: Positive; height : Natural);
----------------------
-- Formatting cells --
----------------------
-- A cell format is, as you can see in the format dialog
-- in Excel, a combination of:
-- - a number format
-- - a set of alignements
-- - a font
-- - and other optional things to come here...
-- Formats are user-defined except one which is predefined: Default_format
type Format_type is private;
function Default_format(xl: Excel_Out_Stream) return Format_type;
-- What you get when creating a new sheet in Excel: Default_font,...
-- * Number format
type Number_format_type is private;
-- Built-in number formats
general : constant Number_format_type;
decimal_0 : constant Number_format_type;
decimal_2 : constant Number_format_type;
decimal_0_thousands_separator: constant Number_format_type; -- 1'234'000
decimal_2_thousands_separator: constant Number_format_type; -- 1'234'000.00
percent_0 : constant Number_format_type; -- 3%, 0%, -4%
percent_2 : constant Number_format_type;
percent_0_plus : constant Number_format_type; -- +3%, 0%, -4%
percent_2_plus : constant Number_format_type;
scientific : constant Number_format_type;
dd_mm_yyyy : constant Number_format_type;
dd_mm_yyyy_hh_mm : constant Number_format_type;
hh_mm : constant Number_format_type;
hh_mm_ss : constant Number_format_type;
procedure Define_number_format(
xl : in out Excel_Out_Stream;
format : out Number_format_type;
format_string: in String
);
-- * Fonts are user-defined, one is predefined: Default_font
type Font_type is private;
function Default_font(xl: Excel_Out_Stream) return Font_type;
-- Arial 10, regular, "automatic" color
type Color_type is
(automatic,
black, white, red, green, blue, yellow, magenta, cyan,
dark_red, dark_green, dark_blue, olive, purple, teal, silver, grey);
type Font_style is private;
-- For combining font styles (e.g.: bold & underlined):
function "&"(a,b: Font_style) return Font_style;
regular : constant Font_style;
italic : constant Font_style;
bold : constant Font_style;
bold_italic : constant Font_style;
underlined : constant Font_style;
struck_out : constant Font_style;
shadowed : constant Font_style;
condensed : constant Font_style;
extended : constant Font_style;
procedure Define_font(
xl : in out Excel_Out_Stream;
font_name : String;
height : Positive;
font : out Font_type;
-- optional:
style : Font_style:= regular;
color : Color_type:= automatic
);
type Horizontal_alignment is (
general_alignment, to_left, centred, to_right, filled,
justified, centred_across_selection, -- (BIFF4-BIFF8)
distributed -- (BIFF8, Excel 10.0 ("XP") and later only)
);
type Vertical_alignment is (
top_alignment, centred, bottom_alignment,
justified, -- (BIFF5-BIFF8)
distributed -- (BIFF8, Excel 10.0 ("XP") and later only)
);
type Text_orientation is (
normal,
stacked, -- vertical, top to bottom
rotated_90, -- vertical, rotated 90 degrees counterclockwise
rotated_270 -- vertical, rotated 90 degrees clockwise
);
type Cell_border is private;
-- Operator for combining borders (e.g.: left & top):
function "&"(a,b: Cell_border) return Cell_border;
no_border : constant Cell_border;
left : constant Cell_border;
right : constant Cell_border;
top : constant Cell_border;
bottom : constant Cell_border;
box : constant Cell_border;
procedure Define_format(
xl : in out Excel_Out_Stream;
font : in Font_type; -- Default_font(xl), or given by Define_font
number_format : in Number_format_type; -- built-in, or given by Define_number_format
cell_format : out Format_type;
-- Optional parameters --
horizontal_align : in Horizontal_alignment:= general_alignment;
border : in Cell_border:= no_border;
shaded : in Boolean:= False; -- Add a dotted background pattern
background_color : in Color_type:= automatic;
wrap_text : in Boolean:= False;
vertical_align : in Vertical_alignment:= bottom_alignment;
text_orient : in Text_orientation:= normal
);
------------------------
-- (3) Cell contents: --
------------------------
-- NB: you need to write with ascending row index and with ascending
-- column index within a row; otherwise Excel issues a protest
procedure Write(xl: in out Excel_Out_Stream; r,c : Positive; num : Long_Float);
procedure Write(xl: in out Excel_Out_Stream; r,c : Positive; num : Integer);
procedure Write(xl: in out Excel_Out_Stream; r,c : Positive; str : String);
procedure Write(xl: in out Excel_Out_Stream; r,c : Positive; str : Unbounded_String);
procedure Write(xl: in out Excel_Out_Stream; r,c : Positive; date: Time);
-- "Ada.Text_IO" - like output.
-- No need to specify row & column each time.
-- Write 'Put(x, content)' where x is an Excel_Out_Stream just
-- as if x was a File_Type, and vice-versa.
--
procedure Put(xl: in out Excel_Out_Stream; num : Long_Float);
procedure Put(xl : in out Excel_Out_Stream;
num : in Integer;
width : in Ada.Text_IO.Field := 0; -- ignored
base : in Ada.Text_IO.Number_Base := 10
);
procedure Put(xl: in out Excel_Out_Stream; str : String);
procedure Put(xl: in out Excel_Out_Stream; str : Unbounded_String);
procedure Put(xl: in out Excel_Out_Stream; date: Time);
--
procedure Put_Line(xl: in out Excel_Out_Stream; num : Long_Float);
procedure Put_Line(xl: in out Excel_Out_Stream; num : Integer);
procedure Put_Line(xl: in out Excel_Out_Stream; str : String);
procedure Put_Line(xl: in out Excel_Out_Stream; str : Unbounded_String);
procedure Put_Line(xl: in out Excel_Out_Stream; date: Time);
--
procedure New_Line(xl: in out Excel_Out_Stream; Spacing : Positive := 1);
-- Get current column and row. The next Put will put contents in that cell.
--
function Col(xl: in Excel_Out_Stream) return Positive; -- Text_IO naming
function Column(xl: in Excel_Out_Stream) return Positive; -- Excel naming
function Line(xl: in Excel_Out_Stream) return Positive; -- Text_IO naming
function Row(xl: in Excel_Out_Stream) return Positive; -- Excel naming
-- Relative / absolute jumps
procedure Jump(xl: in out Excel_Out_Stream; rows, columns: Natural);
procedure Jump_to(xl: in out Excel_Out_Stream; row, column: Positive);
procedure Next(xl: in out Excel_Out_Stream; columns: Natural:= 1); -- Jump 0 or more cells right
procedure Next_Row(xl: in out Excel_Out_Stream; rows: Natural:= 1); -- Jump 0 or more cells down
--
-- Merge a certain amount of cells with the last one,
-- right to that cell, on the same row.
procedure Merge(xl: in out Excel_Out_Stream; cells: Positive);
procedure Write_cell_comment(xl: Excel_Out_Stream; row, column: Positive; text: String);
procedure Write_cell_comment_at_cursor(xl: Excel_Out_Stream; text: String);
-- Cells written after Use_format will be using the given format,
-- defined by Define_format.
procedure Use_format(
xl : in out Excel_Out_Stream;
format : in Format_type
);
procedure Use_default_format(xl: in out Excel_Out_Stream);
-- The Freeze Pane methods can be called anytime before Close
procedure Freeze_Panes(xl: in out Excel_Out_Stream; row, column: Positive);
procedure Freeze_Panes_at_cursor(xl: in out Excel_Out_Stream);
procedure Freeze_Top_Row(xl: in out Excel_Out_Stream);
procedure Freeze_First_Column(xl: in out Excel_Out_Stream);
-- Zoom level. Example: for 85%, call with parameters 85, 100.
procedure Zoom_level(xl: in out Excel_Out_Stream; numerator, denominator: Positive);
-- Set_Index and Index are not directly useful for Excel_Out users.
-- They are private indeed, but they must be visible (RM 3.9.3(10)).
-- Set the index on the stream
procedure Set_Index (xl: in out Excel_Out_Stream;
to: Ada.Streams.Stream_IO.Positive_Count)
is abstract;
-- Return the index of the stream
function Index (xl: Excel_Out_Stream) return Ada.Streams.Stream_IO.Count
is abstract;
Excel_stream_not_created,
Excel_stream_not_closed,
Decreasing_row_index,
Decreasing_column_index,
Row_out_of_range,
Column_out_of_range : exception;
type Excel_type is (
BIFF2, -- Excel 2.1, 2,2
BIFF3, -- Excel 3.0
BIFF4 -- Excel 4.0
-- BIFF5, -- Excel 5.0 to 7.0
-- BIFF8 -- Excel 8.0 (97) to 11.0 (2003) - UTF-16 support
);
Default_Excel_type: constant Excel_type:= BIFF4;
-- Assumed encoding for types Character and String (8-bit):
type Encoding_type is (
Windows_CP_874, -- Thai
Windows_CP_932, -- Japanese Shift-JIS
Windows_CP_936, -- Chinese Simplified GBK
Windows_CP_949, -- Korean (Wansung)
Windows_CP_950, -- Chinese Traditional BIG5
Windows_CP_1250, -- Latin II (Central European)
Windows_CP_1251, -- Cyrillic
Windows_CP_1252, -- Latin I, superset of ISO 8859-1
Windows_CP_1253, -- Greek
Windows_CP_1254, -- Turkish
Windows_CP_1255, -- Hebrew
Windows_CP_1256, -- Arabic
Windows_CP_1257, -- Baltic
Windows_CP_1258, -- Vietnamese
Windows_CP_1361, -- Korean (Johab)
Apple_Roman
);
Default_encoding: constant Encoding_type:= Windows_CP_1252;
-----------------------------------------------------------------
-- Here, the derived stream types pre-defined in this package. --
-----------------------------------------------------------------
-- * Output to a file:
type Excel_Out_File is new Excel_Out_Stream with private;
procedure Create(
xl : in out Excel_Out_File;
file_name : String;
excel_format : Excel_type := Default_Excel_type;
encoding : Encoding_type := Default_encoding
);
procedure Close(xl : in out Excel_Out_File);
function Is_Open(xl : in Excel_Out_File) return Boolean;
-- * Output to a string (to be compressed, packaged, transmitted, ... ):
type Excel_Out_String is new Excel_Out_Stream with private;
procedure Create(
xl : in out Excel_Out_String;
excel_format : Excel_type := Default_Excel_type;
encoding : Encoding_type := Default_encoding
);
procedure Close(xl : in out Excel_Out_String);
function Contents(xl: Excel_Out_String) return String;
----------------------------------------------------------------
-- Information about this package - e.g. for an "about" box --
----------------------------------------------------------------
version : constant String:= "17";
reference : constant String:= "18-Oct-2018";
web : constant String:= "http://excel-writer.sf.net/";
-- hopefully the latest version is at that URL... -----^
private
----------------------------------------
-- Raw Streams, with 'Read and 'Write --
----------------------------------------
type XL_Raw_Stream_Class is access all Ada.Streams.Root_Stream_Type'Class;
type Font_type is new Natural;
type Number_format_type is new Natural;
type Format_type is new Natural;
subtype XF_Range is Integer range 0..62; -- after 62 we'd need to use an IXFE (5.62)
max_font : constant:= 62;
max_format: constant:= 62;
-- Theoretically, we would not need to memorize the XF informations
-- and just give the XF identifier given with Format_type, but some
-- versions of Excel with some locales mix up the font and numerical format
-- when giving 0 for the cell attributes (see Cell_attributes, 2.5.13)
-- Added Mar-2011.
type XF_Info is record
font: Font_type;
numb: Number_format_type;
end record;
type XF_Definition is array(XF_Range) of XF_Info;
-- Built-in number formats
general : constant Number_format_type:= 0;
decimal_0 : constant Number_format_type:= 1;
decimal_2 : constant Number_format_type:= 2;
decimal_0_thousands_separator: constant Number_format_type:= 3; -- 1'234'000
decimal_2_thousands_separator: constant Number_format_type:= 4; -- 1'234'000.00
no_currency_0 : constant Number_format_type:= 5;
no_currency_red_0 : constant Number_format_type:= 6;
no_currency_2 : constant Number_format_type:= 7;
no_currency_red_2 : constant Number_format_type:= 8;
currency_0 : constant Number_format_type:= 9; -- 5 in BIFF2, BIFF3 (sob!)
currency_red_0 : constant Number_format_type:= 10; -- 6 in BIFF2, BIFF3...
currency_2 : constant Number_format_type:= 11;
currency_red_2 : constant Number_format_type:= 12;
percent_0 : constant Number_format_type:= 13; -- 3%, 0%, -4%
percent_2 : constant Number_format_type:= 14;
scientific : constant Number_format_type:= 15;
fraction_1 : constant Number_format_type:= 16;
fraction_2 : constant Number_format_type:= 17;
dd_mm_yyyy : constant Number_format_type:= 18; -- 14 in BIFF3, 12 in BIFF2 (re-sob!)
dd_mmm_yy : constant Number_format_type:= 19; -- 15 in BIFF3, 13 in BIFF2...
dd_mmm : constant Number_format_type:= 20;
mmm_yy : constant Number_format_type:= 21;
h_mm_AM_PM : constant Number_format_type:= 22;
h_mm_ss_AM_PM : constant Number_format_type:= 23;
hh_mm : constant Number_format_type:= 24;
hh_mm_ss : constant Number_format_type:= 25;
dd_mm_yyyy_hh_mm : constant Number_format_type:= 26;
-- End of Excel built-in formats
last_built_in : constant Number_format_type:= dd_mm_yyyy_hh_mm;
percent_0_plus : constant Number_format_type:= 27; -- +3%, 0%, -4%
percent_2_plus : constant Number_format_type:= 28;
date_iso : constant Number_format_type:= 29; -- ISO 8601 format: 2014-03-16
date_h_m_iso : constant Number_format_type:= 30; -- date, hour, minutes
date_h_m_s_iso : constant Number_format_type:= 31; -- date, hour, minutes, seconds
-- End of our custom formats
last_custom : constant Number_format_type:= date_h_m_s_iso;
type Col_width_set is array(1..256) of Boolean;
-- We have a concrete type as hidden ancestor of the Excel_Out_Stream root
-- type. A variable of that type is initialized with default values and
-- can help re-initialize a Excel_Out_Stream when re-used several times.
-- See the Reset procedure in body.
-- The abstract Excel_Out_Stream could have default values, but using a
-- variable of this type to reset values is not Ada compliant (LRM:3.9.3(8))
--
type Excel_Out_Pre_Root_Type is tagged record
xl_stream : XL_Raw_Stream_Class;
format : Excel_type := Default_Excel_type;
encoding : Encoding_type := Default_encoding;
dimrecpos : Ada.Streams.Stream_IO.Positive_Count;
maxcolumn : Positive:= 1;
maxrow : Positive:= 1;
fonts : Integer:= -1; -- [-1..max_font]
xfs : Integer:= -1; -- [-1..XF_Range'Last]
xf_in_use : XF_Range:= 0;
xf_def : XF_Definition;
number_fmt : Number_format_type:= last_custom;
def_font : Font_type;
def_fmt : Format_type; -- Default format; used for "Normal" style
cma_fmt : Format_type; -- Format used for defining "Comma" style
ccy_fmt : Format_type; -- Format used for defining "Currency" style
pct_fmt : Format_type; -- Format used for defining "Percent" style
is_created : Boolean:= False;
is_closed : Boolean:= False;
curr_row : Positive:= 1;
curr_col : Positive:= 1;
frz_panes : Boolean:= False;
freeze_row : Positive;
freeze_col : Positive;
zoom_num : Positive:= 100;
zoom_den : Positive:= 100;
defcolwdth : Natural:= 0; -- 0 = not set; 1/256 of the width of the zero character
std_col_width: Col_width_set:= (others => True);
end record;
type Excel_Out_Stream is abstract new Excel_Out_Pre_Root_Type with null record;
type Font_style_single is
(bold_single,
italic_single,
underlined_single,
struck_out_single,
outlined_single,
shadowed_single,
condensed_single,
extended_single);
type Font_style is array(Font_style_single) of Boolean;
regular : constant Font_style:= (others => False);
italic : constant Font_style:= (italic_single => True, others => False);
bold : constant Font_style:= (bold_single => True, others => False);
bold_italic : constant Font_style:= bold or italic;
underlined : constant Font_style:= (underlined_single => True, others => False);
struck_out : constant Font_style:= (struck_out_single => True, others => False);
shadowed : constant Font_style:= (shadowed_single => True, others => False);
condensed : constant Font_style:= (condensed_single => True, others => False);
extended : constant Font_style:= (extended_single => True, others => False);
type Cell_border_single is
(left_single,
right_single,
top_single,
bottom_single);
type Cell_border is array(Cell_border_single) of Boolean;
no_border : constant Cell_border:= (others => False);
left : constant Cell_border:= (left_single => True, others => False);
right : constant Cell_border:= (right_single => True, others => False);
top : constant Cell_border:= (top_single => True, others => False);
bottom : constant Cell_border:= (bottom_single => True, others => False);
box : constant Cell_border:= (others => True);
----------------------
-- Output to a file --
----------------------
type XL_file_acc is
access Ada.Streams.Stream_IO.File_Type;
type Excel_Out_File is new Excel_Out_Stream with record
xl_file : XL_file_acc:= null; -- access to the "physical" Excel file
end record;
-- Set the index on the file
procedure Set_Index (xl: in out Excel_Out_File;
To: Ada.Streams.Stream_IO.Positive_Count);
-- Return the index of the file
function Index (xl: Excel_Out_File) return Ada.Streams.Stream_IO.Count;
------------------------
-- Output to a string --
------------------------
-- Code reused from Zip_Streams
--- *** We define here a complete in-memory stream:
type Unbounded_Stream is new Ada.Streams.Root_Stream_Type with
record
Unb : Ada.Strings.Unbounded.Unbounded_String;
Loc : Integer := 1;
end record;
-- Read data from the stream.
procedure Read
(Stream : in out Unbounded_Stream;
Item : out Ada.Streams.Stream_Element_Array;
Last : out Ada.Streams.Stream_Element_Offset);
-- write data to the stream, starting from the current index.
-- Data will be overwritten from index is already available.
procedure Write
(Stream : in out Unbounded_Stream;
Item : Ada.Streams.Stream_Element_Array);
-- Set the index on the stream
procedure Set_Index (S : access Unbounded_Stream; To : Positive);
-- returns the index of the stream
function Index (S: access Unbounded_Stream) return Integer;
--- ***
type Unbounded_Stream_Acc is access Unbounded_Stream;
type Excel_Out_String is new Excel_Out_Stream with record
xl_memory: Unbounded_Stream_Acc;
end record;
-- Set the index on the Excel string stream
procedure Set_Index (xl: in out Excel_Out_String;
To: Ada.Streams.Stream_IO.Positive_Count);
-- Return the index of the Excel string stream
function Index (xl: Excel_Out_String) return Ada.Streams.Stream_IO.Count;
end Excel_Out;
|
with Ada.Containers.Indefinite_Vectors;
package Protypo.Api.Engine_Values.Engine_Value_Vectors is
new Ada.Containers.Indefinite_Vectors (Index_Type => Positive,
Element_Type => Engine_Value);
-- package Engine_Value_Vectors is
-- subtype Engine_Value_Array is Engine_Value_Vectors.Vector;
--
-- No_Value : constant Engine_Value_Array := Engine_Value_Vectors.Empty_Vector;
--
-- end Protypo.Api.Engine_Values.Value_Arrays;
|
with Ada.IO_Exceptions;
with AWS.Config.Set;
with Swagger.Servers.AWS;
with Swagger.Servers.Applications;
with Util.Log.Loggers;
with Util.Properties;
with .Servers;
procedure .Server is
procedure Configure (Config : in out AWS.Config.Object);
CONFIG_PATH : constant String := ".properties";
procedure Configure (Config : in out AWS.Config.Object) is
begin
AWS.Config.Set.Server_Port (Config, 8080);
AWS.Config.Set.Max_Connection (Config, 8);
AWS.Config.Set.Accept_Queue_Size (Config, 512);
end Configure;
App : aliased Swagger.Servers.Applications.Application_Type;
WS : Swagger.Servers.AWS.AWS_Container;
Log : constant Util.Log.Loggers.Logger := Util.Log.Loggers.Create (".Server");
Props : Util.Properties.Manager;
begin
Props.Load_Properties (CONFIG_PATH);
Util.Log.Loggers.Initialize (Props);
App.Configure (Props);
.Servers.Server_Impl.Register (App);
WS.Configure (Configure'Access);
WS.Register_Application ("", App'Unchecked_Access);
App.Dump_Routes (Util.Log.INFO_LEVEL);
Log.Info ("Connect you browser to: http://localhost:8080/ui/index.html");
WS.Start;
delay 6000.0;
exception
when Ada.IO_Exceptions.Name_Error =>
Log.Error ("Cannot read application configuration file {0}", CONFIG_PATH);
end .Server;
|
with
ada.Strings.Hash;
package body any_Math.any_Geometry.any_d3.any_Modeller
is
use ada.Containers;
function Hash (Site : in my_Vertex) return ada.Containers.Hash_type
is
use ada.Strings;
begin
return Hash ( Site (1)'Image
& Site (2)'Image
& Site (3)'Image);
end Hash;
function demand_Index (Self : in out Item;
for_Vertex : in my_Vertex) return Natural
--
-- If the vertex exists in the map, return the associated index.
-- Otherwise add the new vertex and return it's index.
--
is
use Vertex_Maps_of_Index;
Cursor : constant Vertex_Maps_of_Index.Cursor := Self.Index_Map.find (for_Vertex);
begin
if has_Element (Cursor)
then
return Element (Cursor);
end if;
Self.Vertices.append (Vertex (for_Vertex));
declare
new_Index : constant Natural := Natural (Self.Vertices.Length);
begin
Self.Index_Map.insert (for_Vertex, new_Index);
return new_Index;
end;
end demand_Index;
function "<" (Left, Right : in Index_Triangle) return Boolean
is
begin
if Left (1) < Right (1) then return True; end if;
if Left (1) > Right (1) then return False; end if;
if Left (2) < Right (2) then return True; end if;
if Left (2) > Right (2) then return False; end if;
if Left (3) < Right (3) then return True; end if;
return False;
end "<";
procedure add_Triangle (Self : in out Item; Vertex_1, Vertex_2, Vertex_3 : in Site)
is
vertex_1_Index : constant Natural := demand_Index (Self, my_Vertex (Vertex_1));
vertex_2_Index : constant Natural := demand_Index (Self, my_Vertex (Vertex_2));
vertex_3_Index : constant Natural := demand_Index (Self, my_Vertex (Vertex_3));
new_Triangle : constant index_Triangle := (vertex_1_Index, vertex_2_Index, vertex_3_Index);
new_Triangle_rotated_1 : constant index_Triangle := (vertex_3_Index, vertex_1_Index, vertex_2_Index);
new_Triangle_rotated_2 : constant index_Triangle := (vertex_2_Index, vertex_3_Index, vertex_1_Index);
begin
if new_Triangle (1) = new_Triangle (2)
or else new_Triangle (1) = new_Triangle (3)
or else new_Triangle (2) = new_Triangle (3)
then
null; -- Discard collapsed triangle.
else
if Self.Triangles.contains (new_triangle)
or else Self.Triangles.contains (new_triangle_rotated_1)
or else Self.Triangles.contains (new_triangle_rotated_2)
then
null; -- Triangle is already present.
else
Self.Triangles.include (new_Triangle);
end if;
end if;
end add_Triangle;
procedure clear (Self : in out Item)
is
begin
Self.Triangles.clear;
Self.Vertices .clear;
Self.Index_Map.clear;
end clear;
function Triangle_Count (Self : in Item) return Natural
is
begin
return Natural (Self.Triangles.Length);
end triangle_Count;
function Model (Self : in Item) return a_Model
is
Result : a_Model := (Site_Count => Integer (Self.Vertices.Length),
Tri_Count => Integer (Self.Triangles.Length),
Sites => <>,
Triangles => <>);
begin
for i in 1 .. Index (Result.site_Count)
loop
Result.Sites (i) := Self.Vertices.Element (i);
end loop;
declare
use Index_Triangle_Sets;
Cursor : Index_Triangle_Sets.Cursor := Self.Triangles.First;
begin
for i in 1 .. Result.Tri_Count
loop
Result.Triangles (i) := Element (Cursor);
next (Cursor);
end loop;
end;
return Result;
end Model;
function bounding_Sphere_Radius (Self : in out Item) return Real
is
use Functions;
begin
if Self.bounding_Sphere_Radius = Real'First
then
for Each of Self.Vertices
loop
Self.bounding_sphere_Radius := Real'Max (Self.bounding_sphere_Radius,
SqRt ( Each (1) * Each (1)
+ Each (2) * Each (2)
+ Each (3) * Each (3)));
end loop;
end if;
return Self.bounding_sphere_Radius;
end bounding_sphere_Radius;
end any_Math.any_Geometry.any_d3.any_Modeller;
|
-- SPDX-License-Identifier: MIT
--
-- Copyright (c) 2000 - 2018 Gautier de Montmollin
-- SWITZERLAND
--
-- 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.
-- Zip.Headers
-- -----------
--
-- This package provides:
--
-- * Definition of PKZIP information structures (cf appnote.txt)
-- * Reading a header from a data stream (Read_and_check)
-- * Copying a header from a buffer (Copy_and_check)
-- * Writing a header to a data stream (Write)
--
-- Some quick explanations about the Zip file structure - GdM 2001, 2012
--
-- The zip archive containing N entries can be roughly seen as
-- a data stream with the following structure:
--
-- 1) {local header, then compressed data} - that, N times
-- 2) central directory, with a summary of each of the N entries
-- 3) end-of-central-directory, with a summary of the central directory
--
-- Since N is not necessarily known before or during the phase 1,
-- the central directory's size is also potentially unknown.
-- Then obvious place for the central directory is *after* the data,
-- it is why it appears on phase 2.
--
-- An advantage of that structure is that the .ZIP archive can be later
-- appended to an .exe, for self-extracting purposes, or to other
-- kind of files.
--
-- So, the most general infos are at the end, and we crawl back
-- for more precise infos:
--
-- 1) end-of-central-directory
-- 2) central directory
-- 3) zipped data entries
with DCF.Streams;
use DCF.Streams;
package DCF.Zip.Headers is
pragma Preelaborate;
------------------------------------------------------------------------
-- PKZIP data descriptor, put after streamed compressed data - PK78 --
------------------------------------------------------------------------
type Data_Descriptor is record
-- PK78 -- 1.. 4
Crc_32 : Unsigned_32; -- 5.. 8
Compressed_Size : Unsigned_32;
Uncompressed_Size : Unsigned_32;
end record;
Data_Descriptor_Length : constant := 16;
-- This header needs to be read in continuation of
-- the compressed data -> access to a buffer
procedure Copy_And_Check
(Buffer : in Ada.Streams.Stream_Element_Array;
Descriptor : out Data_Descriptor);
procedure Read_And_Check
(Stream : in out Root_Zipstream_Type'Class;
Descriptor : out Data_Descriptor);
Bad_Data_Descriptor : exception;
procedure Write
(Stream : in out Root_Zipstream_Type'Class;
Descriptor : in Data_Descriptor);
-----------------------------------------------------------------------
-- PKZIP local file header, in front of every file in archive - PK34 --
-----------------------------------------------------------------------
-- Appnote: 4.4.4 general purpose bit flag: (2 bytes)
--
-- Bit 0: If set, indicates that the file is encrypted.
Encryption_Flag_Bit : constant := 2**0;
-- Bit 3: If set, indicates data is followed by a data descriptor
-- See 4.3.9 of appnote
Descriptor_Flag_Bit : constant := 2**3;
-- Bit 11: Language encoding flag (EFS). If this bit is set, the filename and
-- comment fields for this file MUST be encoded using UTF-8.
Language_Encoding_Flag_Bit : constant := 2**11;
type Local_File_Header is record
-- PK34 -- 1.. 4
Needed_Extract_Version : Unsigned_16; -- 5.. 6
Bit_Flag : Unsigned_16; -- Appnote: 4.4.4 general purpose bit flag
Zip_Type : Unsigned_16;
File_Timedate : Time;
Dd : Data_Descriptor;
Filename_Length : Unsigned_16;
Extra_Field_Length : Unsigned_16;
end record;
Local_Header_Length : constant := 30;
procedure Read_And_Check
(Stream : in out Root_Zipstream_Type'Class;
Header : out Local_File_Header);
Bad_Local_Header : exception;
procedure Write
(Stream : in out Root_Zipstream_Type'Class;
Header : in Local_File_Header);
-------------------------------------------------------
-- PKZIP file header, as in central directory - PK12 --
-------------------------------------------------------
-- NB: a central header contains a local header in the middle
type Central_File_Header is record
-- PK12 -- 1 .. 4
Made_By_Version : Unsigned_16; -- 5 .. 6
Short_Info : Local_File_Header; -- 7 .. 32
Comment_Length : Unsigned_16; -- 33 .. 34
Disk_Number_Start : Unsigned_16;
Internal_Attributes : Unsigned_16; -- Internal properties of data
External_Attributes : Unsigned_32; -- First byte if MS-DOS: see below
Local_Header_Offset : Unsigned_32;
end record;
-- MS-DOS external attributes:
--
-- Bit 0 Read-Only
-- Bit 1 Hidden
-- Bit 2 System
-- Bit 3 Volume Label
-- Bit 4 Directory
-- Bit 5 Archive
Central_Header_Length : constant := 46;
procedure Read_And_Check
(Stream : in out Root_Zipstream_Type'Class;
Header : out Central_File_Header);
function Valid_Version (Header : Local_File_Header) return Boolean is
(Header.Needed_Extract_Version <= 45);
function Valid_Bitflag (Header : Local_File_Header) return Boolean is
((Header.Bit_Flag and 2#1111_0111_1111_0001#) = 0);
Bad_Central_Header : exception;
procedure Write (Stream : in out Root_Zipstream_Type'Class; Header : in Central_File_Header);
---------------------------------------------
-- PKZIP end-of-central-directory - PK56 --
---------------------------------------------
type End_Of_Central_Dir is record
-- PK56 -- 1 .. 4
Disknum : Unsigned_16; -- 5 .. 6
Disknum_With_Start : Unsigned_16;
Disk_Total_Entries : Unsigned_16;
Total_Entries : Unsigned_16;
Central_Dir_Size : Unsigned_32;
Central_Dir_Offset : Unsigned_32;
Main_Comment_Length : Unsigned_16;
-- The Zip archive may be appended to another file (for instance an
-- executable for self-extracting purposes) of size N.
-- Then, all offsets need to be shifted by N.
-- N=0 if the Zip archive is on its own.
-- The real offset of the end-of-central-dir
-- will be N + central_dir_size + central_dir_offset.
-- This way, we have an unique chance to determine N when reading the
-- end-of-central-dir. N is stored in the field hereafter:
Offset_Shifting : Zs_Size_Type; -- NB: type is at least 32 bits.
end record;
End_Of_Central_Dir_Length : constant := 22;
-- The End-of-Central-Dir header is followed by a comment of
-- unkown size and hence needs to be searched in special ways (see Load).
-- Copy_and_check and Read_and_check assume a buffer or a stream
-- pointing to the End-of-Central-Dir signature
procedure Copy_And_Check
(Buffer : in Ada.Streams.Stream_Element_Array;
The_End : out End_Of_Central_Dir);
procedure Read_And_Check
(Stream : in out Root_Zipstream_Type'Class;
The_End : out End_Of_Central_Dir);
Bad_End : exception;
-- A bit more elaborated variant: find the End-of-Central-Dir and load it
procedure Load
(Stream : in out Root_Zipstream_Type'Class;
The_End : out End_Of_Central_Dir);
procedure Write
(Stream : in out Root_Zipstream_Type'Class;
The_End : in End_Of_Central_Dir);
end DCF.Zip.Headers;
|
--------------------------------------------------------------------------------------------------------------------
-- Copyright (c) 2013-2018 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.
--------------------------------------------------------------------------------------------------------------------
-- SDL.Images.Versions
--
-- Library version information.
--------------------------------------------------------------------------------------------------------------------
with SDL.Versions;
package SDL.Images.Versions is
-- These allow the user to determine which version of SDLAda_Image they compiled with.
Compiled_Major : constant SDL.Versions.Version_Level with
Import => True,
Convention => C,
External_Name => "SDL_Ada_Image_Major_Version";
Compiled_Minor : constant SDL.Versions.Version_Level with
Import => True,
Convention => C,
External_Name => "SDL_Ada_Image_Minor_Version";
Compiled_Patch : constant SDL.Versions.Version_Level with
Import => True,
Convention => C,
External_Name => "SDL_Ada_Image_Patch_Version";
Compiled : constant SDL.Versions.Version := (Major => Compiled_Major,
Minor => Compiled_Minor,
Patch => Compiled_Patch);
procedure Linked_With (Info : in out SDL.Versions.Version);
end SDL.Images.Versions;
|
with Ada.Numerics.Discrete_Random;
with Ada.Containers.Vectors;
use Ada.Containers;
with Applicative; use Applicative;
with Util; use Util;
-- Package containing functions for generating random numbers.
package Distribution is
-- Type to represent a random distribution.
type Distribution_Type is limited private;
type Distribution_Pointer is access all Distribution_Type;
-- Set the seed used for selecting random addresses.
procedure Set_Seed(dist : in out Distribution_Type;
seed : in Integer);
-- Insert an address to the pool.
-- This should be called the first time a trace is executed.
procedure Insert(dist : in out Distribution_Type;
address : in Address_Type;
size : in Positive);
-- Push an address limit on to the stack.
-- This is done when evaluating a part of a split or scratchpad.
-- Only addresses within this limit will be selected at random.
procedure Push_Limit(dist : in out Distribution_Type;
lower : in Address_Type;
upper : in Address_Type);
-- Pop an address limit off of the stack.
procedure Pop_Limit(dist : in out Distribution_Type);
-- Push an address transform on to the stack.
-- This is done when evaluating an address transform or split.
procedure Push_Transform(dist : in out Distribution_Type;
trans : in Applicative_Pointer);
-- Pop an address transform off of the stack.
procedure Pop_Transform(dist : in out Distribution_Type);
-- Select a random address from the distribution.
function Random_Address(dist : Distribution_Type;
alignment : Positive) return Address_Type;
-- Select a uniform random number.
function Random(dist : Distribution_Type) return Natural;
-- Display address ranges (for debugging).
procedure Print(dist : in Distribution_Type);
private
type Range_Type is record
start : Address_Type;
size : Positive;
end record;
type Limit_Type is record
trans : Applicative_Pointer := null;
lower : Address_Type := 0;
upper : Address_Type := 0;
end record;
package RNG is new Ada.Numerics.Discrete_Random(Natural);
package Range_Vectors is new Vectors(Positive, Range_Type);
package Limit_Vectors is new Vectors(Positive, Limit_Type);
type Distribution_Type is limited record
generator : RNG.Generator;
ranges : Range_Vectors.Vector;
limits : Limit_Vectors.Vector;
end record;
end Distribution;
|
----------------------------------------------------------------
-- ZLib for Ada thick binding. --
-- --
-- Copyright (C) 2002-2003 Dmitriy Anisimkov --
-- --
-- Open source license information is in the zlib.ads file. --
----------------------------------------------------------------
-- $Id: zlib-thin.adb,val 1.8 2003/12/14 18:27:31 vagul Exp $
package body ZLib.Thin is
ZLIB_VERSION : constant Chars_Ptr := zlibVersion;
Z_Stream_Size : constant Int := Z_Stream'Size / System.Storage_Unit;
--------------
-- Avail_In --
--------------
function Avail_In (Strm : in Z_Stream) return UInt is
begin
return Strm.Avail_In;
end Avail_In;
---------------
-- Avail_Out --
---------------
function Avail_Out (Strm : in Z_Stream) return UInt is
begin
return Strm.Avail_Out;
end Avail_Out;
------------------
-- Deflate_Init --
------------------
function Deflate_Init
(strm : Z_Streamp;
level : Int;
method : Int;
windowBits : Int;
memLevel : Int;
strategy : Int)
return Int is
begin
return deflateInit2
(strm,
level,
method,
windowBits,
memLevel,
strategy,
ZLIB_VERSION,
Z_Stream_Size);
end Deflate_Init;
------------------
-- Inflate_Init --
------------------
function Inflate_Init (strm : Z_Streamp; windowBits : Int) return Int is
begin
return inflateInit2 (strm, windowBits, ZLIB_VERSION, Z_Stream_Size);
end Inflate_Init;
------------------------
-- Last_Error_Message --
------------------------
function Last_Error_Message (Strm : in Z_Stream) return String is
use Interfaces.C.Strings;
begin
if Strm.msg = Null_Ptr then
return "";
else
return Value (Strm.msg);
end if;
end Last_Error_Message;
------------
-- Set_In --
------------
procedure Set_In
(Strm : in out Z_Stream;
Buffer : in Voidp;
Size : in UInt) is
begin
Strm.Next_In := Buffer;
Strm.Avail_In := Size;
end Set_In;
------------------
-- Set_Mem_Func --
------------------
procedure Set_Mem_Func
(Strm : in out Z_Stream;
Opaque : in Voidp;
Alloc : in alloc_func;
Free : in free_func) is
begin
Strm.opaque := Opaque;
Strm.zalloc := Alloc;
Strm.zfree := Free;
end Set_Mem_Func;
-------------
-- Set_Out --
-------------
procedure Set_Out
(Strm : in out Z_Stream;
Buffer : in Voidp;
Size : in UInt) is
begin
Strm.Next_Out := Buffer;
Strm.Avail_Out := Size;
end Set_Out;
--------------
-- Total_In --
--------------
function Total_In (Strm : in Z_Stream) return ULong is
begin
return Strm.Total_In;
end Total_In;
---------------
-- Total_Out --
---------------
function Total_Out (Strm : in Z_Stream) return ULong is
begin
return Strm.Total_Out;
end Total_Out;
end ZLib.Thin;
|
------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- S Y S T E M . E X C E P T I O N S _ D E B U G --
-- --
-- S p e c --
-- --
-- Copyright (C) 2006-2021, 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. --
-- --
------------------------------------------------------------------------------
-- This package contains internal routines used as debugger helpers.
-- It should be compiled without optimization to let debuggers inspect
-- parameter values reliably from breakpoints on the routines.
pragma Compiler_Unit_Warning;
with System.Standard_Library;
package System.Exceptions_Debug is
pragma Preelaborate;
-- To let Ada.Exceptions "with" us and let us "with" Standard_Library
package SSL renames System.Standard_Library;
-- To let some of the hooks below have formal parameters typed in
-- accordance with what GDB expects.
procedure Debug_Raise_Exception
(E : SSL.Exception_Data_Ptr; Message : String);
pragma Export
(Ada, Debug_Raise_Exception, "__gnat_debug_raise_exception");
-- Hook called at a "raise" point for an exception E, when it is
-- just about to be propagated.
procedure Debug_Unhandled_Exception (E : SSL.Exception_Data_Ptr);
pragma Export
(Ada, Debug_Unhandled_Exception, "__gnat_unhandled_exception");
-- Hook called during the propagation process of an exception E, as soon
-- as it is known to be unhandled.
procedure Debug_Raise_Assert_Failure;
pragma Export
(Ada, Debug_Raise_Assert_Failure, "__gnat_debug_raise_assert_failure");
-- Hook called when an assertion failed. This is used by the debugger to
-- intercept assertion failures, and treat them specially.
procedure Local_Raise (Excep : System.Address);
pragma Export (Ada, Local_Raise);
-- This is a dummy routine, used only by the debugger for the purpose of
-- logging local raise statements that were transformed into a direct goto
-- to the handler code. The compiler in this case generates:
--
-- Local_Raise (exception_data'address);
-- goto Handler
--
-- The argument is the address of the exception data
end System.Exceptions_Debug;
|
<<Top>>
Put_Line("Hello, World");
goto Top;
|
-- Generated by Snowball 2.2.0 - https://snowballstem.org/
package body Stemmer.Irish is
pragma Style_Checks ("-mr");
pragma Warnings (Off, "*variable*is never read and never assigned*");
pragma Warnings (Off, "*mode could be*instead of*");
pragma Warnings (Off, "*formal parameter.*is not modified*");
pragma Warnings (Off, "*this line is too long*");
pragma Warnings (Off, "*is not referenced*");
procedure R_Verb_sfx (Z : in out Context_Type; Result : out Boolean);
procedure R_Deriv (Z : in out Context_Type; Result : out Boolean);
procedure R_Noun_sfx (Z : in out Context_Type; Result : out Boolean);
procedure R_Mark_regions (Z : in out Context_Type; Result : out Boolean);
procedure R_Initial_morph (Z : in out Context_Type; Result : out Boolean);
procedure R_RV (Z : in out Context_Type; Result : out Boolean);
procedure R_R2 (Z : in out Context_Type; Result : out Boolean);
procedure R_R1 (Z : in out Context_Type; Result : out Boolean);
G_V : constant Grouping_Array (0 .. 159) := (
True, False, False, False, True, False, False, False,
True, False, False, False, False, False, True, False,
False, False, False, False, True, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
False, False, False, False, False, False, False, False,
True, False, False, False, False, False, False, False,
True, False, False, False, True, False, False, False,
False, False, True, False, False, False, False, False,
False, True, False, False, False, False, False, False
);
Among_String : constant String := "b'" & "bh" & "bhf" & "bp" & "ch" & "d'"
& "d'fh" & "dh" & "dt" & "fh" & "gc" & "gh" & "h-" & "m'" & "mb" & "mh" & "n-"
& "nd" & "ng" & "ph" & "sh" & "t-" & "th" & "ts" & "íochta" & "aíochta" & "ire"
& "aire" & "abh" & "eabh" & "ibh" & "aibh" & "amh" & "eamh" & "imh" & "aimh"
& "íocht" & "aíocht" & "irí" & "airí" & "óideacha" & "patacha" & "achta"
& "arcachta" & "eachta" & "grafaíochta" & "paite" & "ach" & "each" & "óideach"
& "gineach" & "patach" & "grafaíoch" & "pataigh" & "óidigh" & "achtúil"
& "eachtúil" & "gineas" & "ginis" & "acht" & "arcacht" & "eacht" & "grafaíocht"
& "arcachtaí" & "grafaíochtaí" & "imid" & "aimid" & "ímid" & "aímid" & "adh"
& "eadh" & "faidh" & "fidh" & "áil" & "ain" & "tear" & "tar";
A_0 : constant Among_Array_Type (0 .. 23) := (
(1, 2, -1, 1, 0),
(3, 4, -1, 4, 0),
(5, 7, 1, 2, 0),
(8, 9, -1, 8, 0),
(10, 11, -1, 5, 0),
(12, 13, -1, 1, 0),
(14, 17, 5, 2, 0),
(18, 19, -1, 6, 0),
(20, 21, -1, 9, 0),
(22, 23, -1, 2, 0),
(24, 25, -1, 5, 0),
(26, 27, -1, 7, 0),
(28, 29, -1, 1, 0),
(30, 31, -1, 1, 0),
(32, 33, -1, 4, 0),
(34, 35, -1, 10, 0),
(36, 37, -1, 1, 0),
(38, 39, -1, 6, 0),
(40, 41, -1, 7, 0),
(42, 43, -1, 8, 0),
(44, 45, -1, 3, 0),
(46, 47, -1, 1, 0),
(48, 49, -1, 9, 0),
(50, 51, -1, 3, 0));
A_1 : constant Among_Array_Type (0 .. 15) := (
(52, 58, -1, 1, 0),
(59, 66, 0, 1, 0),
(67, 69, -1, 2, 0),
(70, 73, 2, 2, 0),
(74, 76, -1, 1, 0),
(77, 80, 4, 1, 0),
(81, 83, -1, 1, 0),
(84, 87, 6, 1, 0),
(88, 90, -1, 1, 0),
(91, 94, 8, 1, 0),
(95, 97, -1, 1, 0),
(98, 101, 10, 1, 0),
(102, 107, -1, 1, 0),
(108, 114, 12, 1, 0),
(115, 118, -1, 2, 0),
(119, 123, 14, 2, 0));
A_2 : constant Among_Array_Type (0 .. 24) := (
(124, 132, -1, 6, 0),
(133, 139, -1, 5, 0),
(140, 144, -1, 1, 0),
(145, 152, 2, 2, 0),
(153, 158, 2, 1, 0),
(159, 170, -1, 4, 0),
(171, 175, -1, 5, 0),
(176, 178, -1, 1, 0),
(179, 182, 7, 1, 0),
(183, 190, 8, 6, 0),
(191, 197, 8, 3, 0),
(198, 203, 7, 5, 0),
(204, 213, -1, 4, 0),
(214, 220, -1, 5, 0),
(221, 227, -1, 6, 0),
(228, 235, -1, 1, 0),
(236, 244, 15, 1, 0),
(245, 250, -1, 3, 0),
(251, 255, -1, 3, 0),
(256, 259, -1, 1, 0),
(260, 266, 19, 2, 0),
(267, 271, 19, 1, 0),
(272, 282, -1, 4, 0),
(283, 292, -1, 2, 0),
(293, 306, -1, 4, 0));
A_3 : constant Among_Array_Type (0 .. 11) := (
(307, 310, -1, 1, 0),
(311, 315, 0, 1, 0),
(316, 320, -1, 1, 0),
(321, 326, 2, 1, 0),
(327, 329, -1, 2, 0),
(330, 333, 4, 2, 0),
(334, 338, -1, 1, 0),
(339, 342, -1, 1, 0),
(343, 346, -1, 2, 0),
(347, 349, -1, 2, 0),
(350, 353, -1, 2, 0),
(354, 356, -1, 2, 0));
procedure R_Mark_regions (Z : in out Context_Type; Result : out Boolean) is
C : Result_Index;
A : Integer;
v_1 : Char_Index;
begin
-- (, line 28
Z.I_PV := Z.L;
Z.I_P1 := Z.L;
Z.I_P2 := Z.L;
-- do, line 34
v_1 := Z.C;
-- (, line 34
-- gopast, line 35
-- grouping v, line 35
Out_Grouping (Z, G_V, 97, 250, True, C);
if C < 0 then
goto lab0;
end if;
Z.C := Z.C + C;
-- setmark pV, line 35
Z.I_PV := Z.C;
-- gopast, line 36
-- non v, line 36
In_Grouping (Z, G_V, 97, 250, True, C);
if C < 0 then
goto lab0;
end if;
Z.C := Z.C + C;
-- setmark p1, line 36
Z.I_P1 := Z.C;
-- gopast, line 37
-- grouping v, line 37
Out_Grouping (Z, G_V, 97, 250, True, C);
if C < 0 then
goto lab0;
end if;
Z.C := Z.C + C;
-- gopast, line 37
-- non v, line 37
In_Grouping (Z, G_V, 97, 250, True, C);
if C < 0 then
goto lab0;
end if;
Z.C := Z.C + C;
-- setmark p2, line 37
Z.I_P2 := Z.C;
<<lab0>>
Z.C := v_1;
Result := True;
end R_Mark_regions;
procedure R_Initial_morph (Z : in out Context_Type; Result : out Boolean) is
C : Result_Index;
A : Integer;
begin
-- (, line 41
Z.Bra := Z.C; -- [, line 42
-- substring, line 42
Find_Among (Z, A_0, Among_String, null, A);
if A = 0 then
Result := False;
return;
end if;
Z.Ket := Z.C; -- ], line 42
-- among, line 42
case A is
when 1 =>
-- (, line 44
-- delete, line 44
Slice_Del (Z);
when 2 =>
-- (, line 50
-- <-, line 50
Slice_From (Z, "f");
when 3 =>
-- (, line 56
-- <-, line 56
Slice_From (Z, "s");
when 4 =>
-- (, line 59
-- <-, line 59
Slice_From (Z, "b");
when 5 =>
-- (, line 61
-- <-, line 61
Slice_From (Z, "c");
when 6 =>
-- (, line 63
-- <-, line 63
Slice_From (Z, "d");
when 7 =>
-- (, line 67
-- <-, line 67
Slice_From (Z, "g");
when 8 =>
-- (, line 69
-- <-, line 69
Slice_From (Z, "p");
when 9 =>
-- (, line 73
-- <-, line 73
Slice_From (Z, "t");
when 10 =>
-- (, line 87
-- <-, line 87
Slice_From (Z, "m");
when others =>
null;
end case;
Result := True;
end R_Initial_morph;
procedure R_RV (Z : in out Context_Type; Result : out Boolean) is
begin
Result := (Z.I_PV <= Z.C);
end R_RV;
procedure R_R1 (Z : in out Context_Type; Result : out Boolean) is
begin
Result := (Z.I_P1 <= Z.C);
end R_R1;
procedure R_R2 (Z : in out Context_Type; Result : out Boolean) is
begin
Result := (Z.I_P2 <= Z.C);
end R_R2;
procedure R_Noun_sfx (Z : in out Context_Type; Result : out Boolean) is
C : Result_Index;
A : Integer;
begin
-- (, line 101
Z.Ket := Z.C; -- [, line 102
-- substring, line 102
Find_Among_Backward (Z, A_1, Among_String, null, A);
if A = 0 then
Result := False;
return;
end if;
Z.Bra := Z.C; -- ], line 102
-- among, line 102
case A is
when 1 =>
-- (, line 106
-- call R1, line 106
R_R1 (Z, Result);
if not Result then
Result := False;
return;
end if;
-- delete, line 106
Slice_Del (Z);
when 2 =>
-- (, line 108
-- call R2, line 108
R_R2 (Z, Result);
if not Result then
Result := False;
return;
end if;
-- delete, line 108
Slice_Del (Z);
when others =>
null;
end case;
Result := True;
end R_Noun_sfx;
procedure R_Deriv (Z : in out Context_Type; Result : out Boolean) is
C : Result_Index;
A : Integer;
begin
-- (, line 111
Z.Ket := Z.C; -- [, line 112
-- substring, line 112
Find_Among_Backward (Z, A_2, Among_String, null, A);
if A = 0 then
Result := False;
return;
end if;
Z.Bra := Z.C; -- ], line 112
-- among, line 112
case A is
when 1 =>
-- (, line 114
-- call R2, line 114
R_R2 (Z, Result);
if not Result then
Result := False;
return;
end if;
-- delete, line 114
Slice_Del (Z);
when 2 =>
-- (, line 116
-- <-, line 116
Slice_From (Z, "arc");
when 3 =>
-- (, line 118
-- <-, line 118
Slice_From (Z, "gin");
when 4 =>
-- (, line 120
-- <-, line 120
Slice_From (Z, "graf");
when 5 =>
-- (, line 122
-- <-, line 122
Slice_From (Z, "paite");
when 6 =>
-- (, line 124
-- <-, line 124
Slice_From (Z, "óid");
when others =>
null;
end case;
Result := True;
end R_Deriv;
procedure R_Verb_sfx (Z : in out Context_Type; Result : out Boolean) is
C : Result_Index;
A : Integer;
begin
-- (, line 127
Z.Ket := Z.C; -- [, line 128
-- substring, line 128
if Z.C - 2 <= Z.Lb or else Check_Among (Z, Z.C - 1, 3, 16#45110#) then
Result := False;
return;
-- substring, line 128
end if;
Find_Among_Backward (Z, A_3, Among_String, null, A);
if A = 0 then
Result := False;
return;
end if;
Z.Bra := Z.C; -- ], line 128
-- among, line 128
case A is
when 1 =>
-- (, line 131
-- call RV, line 131
R_RV (Z, Result);
if not Result then
Result := False;
return;
end if;
-- delete, line 131
Slice_Del (Z);
when 2 =>
-- (, line 136
-- call R1, line 136
R_R1 (Z, Result);
if not Result then
Result := False;
return;
end if;
-- delete, line 136
Slice_Del (Z);
when others =>
null;
end case;
Result := True;
end R_Verb_sfx;
procedure Stem (Z : in out Context_Type; Result : out Boolean) is
C : Result_Index;
A : Integer;
v_1 : Char_Index;
v_3 : Char_Index;
v_4 : Char_Index;
v_5 : Char_Index;
begin
-- (, line 141
-- do, line 142
v_1 := Z.C;
-- call initial_morph, line 142
R_Initial_morph (Z, Result);
Z.C := v_1;
-- do, line 143
-- call mark_regions, line 143
R_Mark_regions (Z, Result);
Z.Lb := Z.C; Z.C := Z.L; -- backwards, line 144
-- (, line 144
-- do, line 145
v_3 := Z.L - Z.C;
-- call noun_sfx, line 145
R_Noun_sfx (Z, Result);
Z.C := Z.L - v_3;
-- do, line 146
v_4 := Z.L - Z.C;
-- call deriv, line 146
R_Deriv (Z, Result);
Z.C := Z.L - v_4;
-- do, line 147
v_5 := Z.L - Z.C;
-- call verb_sfx, line 147
R_Verb_sfx (Z, Result);
Z.C := Z.L - v_5;
Z.C := Z.Lb;
Result := True;
end Stem;
end Stemmer.Irish;
|
-- The MIT License (MIT)
-- Copyright (c) 2015 Pavel Zhukov <landgraf@fedoraproject.org>
-- 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.
with Nanomsg.Domains;
with Nanomsg.Survey;
with Aunit.Assertions;
with Nanomsg.Messages;
with Ada.Text_Io;
package body Nanomsg.Test_Survey is
procedure Run_Test (T : in out TC) is
use Aunit.Assertions;
Address : constant String := "tcp://127.0.0.1:5555";
Ping : constant String := "PING";
Pong : constant String := "PONG";
task Server is
entry Start;
end Server;
task body Server is
begin
T.Server.Init (Nanomsg.Domains.Af_Sp, Nanomsg.Survey.Nn_Surveyor);
T.Server.Bind ("tcp://*:5555");
delay 1.0;
accept Start;
declare
Msg : Nanomsg.Messages.Message_T;
begin
Msg.From_String (Ping);
T.Server.Send (Msg);
end;
for X in T.Clients'Range loop
declare
Msg : Nanomsg.Messages.Message_T;
begin
select
delay 2.0;
Assert (False, "Abort in server");
then abort
T.Server.Receive (Msg);
end select;
end;
end loop;
end Server;
begin
for Client of T.Clients loop
Client.Init (Nanomsg.Domains.Af_Sp, Nanomsg.Survey.Nn_Respondent);
Client.Connect (Address);
end loop;
Server.Start;
for Client of T.Clients loop
declare
Msg : Nanomsg.Messages.Message_T;
begin
select
delay 2.0;
Assert (False, "Recv aborted");
then abort
Client.Receive (Msg);
end select;
Assert (Msg.Text = Ping, "Ping request doesn't match");
end;
end loop;
for Client of T.Clients loop
declare
Msg : Nanomsg.Messages.Message_T;
begin
Msg.From_String (Pong);
Client.Send (Msg);
end;
end loop;
end Run_Test;
function Name (T : TC) return Message_String is
begin
return Aunit.Format ("Test case name : Survey test");
end Name;
procedure Tear_Down (T : in out Tc) is
begin
if T.Server.Get_Fd >= 0 then
T.Server.Close;
end if;
for Client of T.Clients loop
if Client.Get_Fd >= 0 then
Client.Close;
end if;
end loop;
end Tear_Down;
end Nanomsg.Test_Survey;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- A D A . S T R I N G S . S E A R C H --
-- --
-- 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 the search functions from Ada.Strings.Fixed. They
-- are separated out because they are shared by Ada.Strings.Bounded and
-- Ada.Strings.Unbounded, and we don't want to drag in other irrelevant stuff
-- from Ada.Strings.Fixed when using the other two packages. We make this a
-- private package, since user programs should access these subprograms via
-- one of the standard string packages.
with Ada.Strings.Maps;
private package Ada.Strings.Search is
pragma Preelaborate;
function Index
(Source : String;
Pattern : String;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping := Maps.Identity) return Natural;
function Index
(Source : String;
Pattern : String;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping_Function) return Natural;
function Index
(Source : String;
Set : Maps.Character_Set;
Test : Membership := Inside;
Going : Direction := Forward) return Natural;
function Index
(Source : String;
Pattern : String;
From : Positive;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping := Maps.Identity) return Natural;
function Index
(Source : String;
Pattern : String;
From : Positive;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping_Function) return Natural;
function Index
(Source : String;
Set : Maps.Character_Set;
From : Positive;
Test : Membership := Inside;
Going : Direction := Forward) return Natural;
function Index_Non_Blank
(Source : String;
Going : Direction := Forward) return Natural;
function Index_Non_Blank
(Source : String;
From : Positive;
Going : Direction := Forward) return Natural;
function Count
(Source : String;
Pattern : String;
Mapping : Maps.Character_Mapping := Maps.Identity) return Natural;
function Count
(Source : String;
Pattern : String;
Mapping : Maps.Character_Mapping_Function) return Natural;
function Count
(Source : String;
Set : Maps.Character_Set) return Natural;
procedure Find_Token
(Source : String;
Set : Maps.Character_Set;
From : Positive;
Test : Membership;
First : out Positive;
Last : out Natural);
procedure Find_Token
(Source : String;
Set : Maps.Character_Set;
Test : Membership;
First : out Positive;
Last : out Natural);
end Ada.Strings.Search;
|
package Game.Test_Data.Tests.Attributes_Container is
end Game.Test_Data.Tests.Attributes_Container;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- S Y S T E M --
-- --
-- S p e c --
-- (Solaris Sparcv9 Version) --
-- --
-- Copyright (C) 1992-2005, 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 contents of the part following the private keyword. --
-- --
-- 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. --
-- --
------------------------------------------------------------------------------
package System is
pragma Pure;
-- Note that we take advantage of the implementation permission to make
-- this unit Pure instead of Preelaborable; see RM 13.7.1(15). In Ada
-- 2005, this is Pure in any case (AI-362).
type Name is (SYSTEM_NAME_GNAT);
System_Name : constant Name := SYSTEM_NAME_GNAT;
-- System-Dependent Named Numbers
Min_Int : constant := Long_Long_Integer'First;
Max_Int : constant := Long_Long_Integer'Last;
Max_Binary_Modulus : constant := 2 ** Long_Long_Integer'Size;
Max_Nonbinary_Modulus : constant := Integer'Last;
Max_Base_Digits : constant := Long_Long_Float'Digits;
Max_Digits : constant := Long_Long_Float'Digits;
Max_Mantissa : constant := 63;
Fine_Delta : constant := 2.0 ** (-Max_Mantissa);
Tick : constant := 0.01;
-- Storage-related Declarations
type Address is private;
Null_Address : constant Address;
Storage_Unit : constant := 8;
Word_Size : constant := 64;
Memory_Size : constant := 2 ** 64;
-- Address comparison
function "<" (Left, Right : Address) return Boolean;
function "<=" (Left, Right : Address) return Boolean;
function ">" (Left, Right : Address) return Boolean;
function ">=" (Left, Right : Address) return Boolean;
function "=" (Left, Right : Address) return Boolean;
pragma Import (Intrinsic, "<");
pragma Import (Intrinsic, "<=");
pragma Import (Intrinsic, ">");
pragma Import (Intrinsic, ">=");
pragma Import (Intrinsic, "=");
-- Other System-Dependent Declarations
type Bit_Order is (High_Order_First, Low_Order_First);
Default_Bit_Order : constant Bit_Order := High_Order_First;
-- Priority-related Declarations (RM D.1)
Max_Priority : constant Positive := 30;
Max_Interrupt_Priority : constant Positive := 31;
subtype Any_Priority is Integer range 0 .. 31;
subtype Priority is Any_Priority range 0 .. 30;
subtype Interrupt_Priority is Any_Priority range 31 .. 31;
Default_Priority : constant Priority := 15;
private
type Address is mod Memory_Size;
Null_Address : constant Address := 0;
--------------------------------------
-- System Implementation Parameters --
--------------------------------------
-- These parameters provide information about the target that is used
-- by the compiler. They are in the private part of System, where they
-- can be accessed using the special circuitry in the Targparm unit
-- whose source should be consulted for more detailed descriptions
-- of the individual switch values.
AAMP : constant Boolean := False;
Backend_Divide_Checks : constant Boolean := False;
Backend_Overflow_Checks : constant Boolean := False;
Command_Line_Args : constant Boolean := True;
Compiler_System_Version : constant Boolean := False;
Configurable_Run_Time : constant Boolean := False;
Denorm : constant Boolean := True;
Duration_32_Bits : constant Boolean := False;
Exit_Status_Supported : constant Boolean := True;
Fractional_Fixed_Ops : constant Boolean := False;
Frontend_Layout : constant Boolean := False;
Functions_Return_By_DSP : constant Boolean := False;
Machine_Overflows : constant Boolean := False;
Machine_Rounds : constant Boolean := True;
OpenVMS : constant Boolean := False;
Preallocated_Stacks : constant Boolean := False;
Signed_Zeros : constant Boolean := True;
Stack_Check_Default : constant Boolean := False;
Stack_Check_Probes : constant Boolean := True;
Support_64_Bit_Divides : constant Boolean := True;
Support_Aggregates : constant Boolean := True;
Support_Composite_Assign : constant Boolean := True;
Support_Composite_Compare : constant Boolean := True;
Support_Long_Shifts : constant Boolean := True;
Suppress_Standard_Library : constant Boolean := False;
Use_Ada_Main_Program_Name : constant Boolean := False;
ZCX_By_Default : constant Boolean := True;
GCC_ZCX_Support : constant Boolean := True;
Front_End_ZCX_Support : constant Boolean := False;
-- Obsolete entries, to be removed eventually (bootstrap issues!)
High_Integrity_Mode : constant Boolean := False;
Long_Shifts_Inlined : constant Boolean := True;
end System;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- S Y S T E M _ I O --
-- --
-- S p e c --
-- --
-- $Revision$
-- --
-- Copyright (C) 1992-1998 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, 59 Temple Place - Suite 330, Boston, --
-- MA 02111-1307, USA. --
-- --
-- As a special exception, if other files instantiate generics from this --
-- unit, or you link this unit with other files to produce an executable, --
-- this unit does not by itself cause the resulting executable to be --
-- covered by the GNU General Public License. This exception does not --
-- however invalidate any other reasons why the executable file might be --
-- covered by the GNU Public License. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
-- A simple text I/O package, used for diagnostic output in the runtime,
-- This package is also preelaborated, unlike Text_Io, and can thus be
-- with'ed by preelaborated library units. It includes only Put routines
-- for character, integer, string and a new line function
package System.IO is
pragma Preelaborate (IO);
procedure Put (X : Integer);
procedure Put (C : Character);
procedure Put (S : String);
procedure Put_Line (S : String);
procedure New_Line (Spacing : Positive := 1);
end System.IO;
|
------------------------------------------------------------------------------
-- --
-- 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.Elements.Generic_Hash;
function AMF.Utp.Test_Log_Applications.Hash is
new AMF.Elements.Generic_Hash (Utp_Test_Log_Application, Utp_Test_Log_Application_Access);
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- S Y S T E M . P O O L _ S I Z E --
-- --
-- B o d y --
-- --
-- $Revision$
-- --
-- Copyright (C) 1992-2001 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, 59 Temple Place - Suite 330, Boston, --
-- MA 02111-1307, USA. --
-- --
-- As a special exception, if other files instantiate generics from this --
-- unit, or you link this unit with other files to produce an executable, --
-- this unit does not by itself cause the resulting executable to be --
-- covered by the GNU General Public License. This exception does not --
-- however invalidate any other reasons why the executable file might be --
-- covered by the GNU Public License. --
-- --
-- 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.Address_To_Access_Conversions;
package body System.Pool_Size is
package SSE renames System.Storage_Elements;
use type SSE.Storage_Offset;
package SC is new Address_To_Access_Conversions (SSE.Storage_Count);
SC_Size : constant
:= SSE.Storage_Count'Object_Size / System.Storage_Unit;
package Variable_Size_Management is
-- Embedded pool that manages allocation of variable-size data.
-- This pool is used as soon as the Elmt_sizS of the pool object is 0.
-- Allocation is done on the first chunk long enough for the request.
-- Deallocation just puts the freed chunk at the beginning of the list.
procedure Initialize (Pool : in out Stack_Bounded_Pool);
procedure Allocate
(Pool : in out Stack_Bounded_Pool;
Address : out System.Address;
Storage_Size : SSE.Storage_Count;
Alignment : SSE.Storage_Count);
procedure Deallocate
(Pool : in out Stack_Bounded_Pool;
Address : System.Address;
Storage_Size : SSE.Storage_Count;
Alignment : SSE.Storage_Count);
end Variable_Size_Management;
package Vsize renames Variable_Size_Management;
--------------
-- Allocate --
--------------
procedure Allocate
(Pool : in out Stack_Bounded_Pool;
Address : out System.Address;
Storage_Size : SSE.Storage_Count;
Alignment : SSE.Storage_Count)
is
begin
if Pool.Elmt_Size = 0 then
Vsize.Allocate (Pool, Address, Storage_Size, Alignment);
elsif Pool.First_Free /= 0 then
Address := Pool.The_Pool (Pool.First_Free)'Address;
Pool.First_Free := SC.To_Pointer (Address).all;
elsif
Pool.First_Empty <= (Pool.Pool_Size - Pool.Aligned_Elmt_Size + 1)
then
Address := Pool.The_Pool (Pool.First_Empty)'Address;
Pool.First_Empty := Pool.First_Empty + Pool.Aligned_Elmt_Size;
else
raise Storage_Error;
end if;
end Allocate;
----------------
-- Deallocate --
----------------
procedure Deallocate
(Pool : in out Stack_Bounded_Pool;
Address : System.Address;
Storage_Size : SSE.Storage_Count;
Alignment : SSE.Storage_Count)
is
begin
if Pool.Elmt_Size = 0 then
Vsize.Deallocate (Pool, Address, Storage_Size, Alignment);
else
SC.To_Pointer (Address).all := Pool.First_Free;
Pool.First_Free := Address - Pool.The_Pool'Address + 1;
end if;
end Deallocate;
----------------
-- Initialize --
----------------
procedure Initialize (Pool : in out Stack_Bounded_Pool) is
Align : constant SSE.Storage_Count :=
SSE.Storage_Count'Max (SSE.Storage_Count'Alignment, Pool.Alignment);
begin
if Pool.Elmt_Size = 0 then
Vsize.Initialize (Pool);
else
Pool.First_Free := 0;
Pool.First_Empty := 1;
-- Compute the size to allocate given the size of the element and
-- the possible Alignment clause
Pool.Aligned_Elmt_Size :=
SSE.Storage_Count'Max (SC_Size,
((Pool.Elmt_Size + Align - 1) / Align) * Align);
end if;
end Initialize;
------------------
-- Storage_Size --
------------------
function Storage_Size
(Pool : Stack_Bounded_Pool)
return SSE.Storage_Count
is
begin
return Pool.Pool_Size;
end Storage_Size;
------------------------------
-- Variable_Size_Management --
------------------------------
package body Variable_Size_Management is
Minimum_Size : constant := 2 * SC_Size;
procedure Set_Size
(Pool : Stack_Bounded_Pool;
Chunk, Size : SSE.Storage_Count);
-- Update the field 'size' of a chunk of available storage
procedure Set_Next
(Pool : Stack_Bounded_Pool;
Chunk, Next : SSE.Storage_Count);
-- Update the field 'next' of a chunk of available storage
function Size
(Pool : Stack_Bounded_Pool;
Chunk : SSE.Storage_Count)
return SSE.Storage_Count;
-- Fetch the field 'size' of a chunk of available storage
function Next
(Pool : Stack_Bounded_Pool;
Chunk : SSE.Storage_Count)
return SSE.Storage_Count;
-- Fetch the field 'next' of a chunk of available storage
function Chunk_Of
(Pool : Stack_Bounded_Pool;
Addr : System.Address)
return SSE.Storage_Count;
-- Give the chunk number in the pool from its Address
--------------
-- Allocate --
--------------
procedure Allocate
(Pool : in out Stack_Bounded_Pool;
Address : out System.Address;
Storage_Size : SSE.Storage_Count;
Alignment : SSE.Storage_Count)
is
Chunk : SSE.Storage_Count;
New_Chunk : SSE.Storage_Count;
Prev_Chunk : SSE.Storage_Count;
Our_Align : constant SSE.Storage_Count :=
SSE.Storage_Count'Max (SSE.Storage_Count'Alignment,
Alignment);
Align_Size : constant SSE.Storage_Count :=
SSE.Storage_Count'Max (
Minimum_Size,
((Storage_Size + Our_Align - 1) / Our_Align) *
Our_Align);
begin
-- Look for the first big enough chunk
Prev_Chunk := Pool.First_Free;
Chunk := Next (Pool, Prev_Chunk);
while Chunk /= 0 and then Size (Pool, Chunk) < Align_Size loop
Prev_Chunk := Chunk;
Chunk := Next (Pool, Chunk);
end loop;
-- Raise storage_error if no big enough chunk available
if Chunk = 0 then
raise Storage_Error;
end if;
-- When the chunk is bigger than what is needed, take appropraite
-- amount and build a new shrinked chunk with the remainder.
if Size (Pool, Chunk) - Align_Size > Minimum_Size then
New_Chunk := Chunk + Align_Size;
Set_Size (Pool, New_Chunk, Size (Pool, Chunk) - Align_Size);
Set_Next (Pool, New_Chunk, Next (Pool, Chunk));
Set_Next (Pool, Prev_Chunk, New_Chunk);
-- If the chunk is the right size, just delete it from the chain
else
Set_Next (Pool, Prev_Chunk, Next (Pool, Chunk));
end if;
Address := Pool.The_Pool (Chunk)'Address;
end Allocate;
--------------
-- Chunk_Of --
--------------
function Chunk_Of
(Pool : Stack_Bounded_Pool;
Addr : System.Address)
return SSE.Storage_Count
is
begin
return 1 + abs (Addr - Pool.The_Pool (1)'Address);
end Chunk_Of;
----------------
-- Deallocate --
----------------
procedure Deallocate
(Pool : in out Stack_Bounded_Pool;
Address : System.Address;
Storage_Size : SSE.Storage_Count;
Alignment : SSE.Storage_Count)
is
Align_Size : constant SSE.Storage_Count :=
((Storage_Size + Alignment - 1) / Alignment) *
Alignment;
Chunk : SSE.Storage_Count := Chunk_Of (Pool, Address);
begin
-- Attach the freed chunk to the chain
Set_Size (Pool, Chunk,
SSE.Storage_Count'Max (Align_Size, Minimum_Size));
Set_Next (Pool, Chunk, Next (Pool, Pool.First_Free));
Set_Next (Pool, Pool.First_Free, Chunk);
end Deallocate;
----------------
-- Initialize --
----------------
procedure Initialize (Pool : in out Stack_Bounded_Pool) is
begin
Pool.First_Free := 1;
if Pool.Pool_Size > Minimum_Size then
Set_Next (Pool, Pool.First_Free, Pool.First_Free + Minimum_Size);
Set_Size (Pool, Pool.First_Free, 0);
Set_Size (Pool, Pool.First_Free + Minimum_Size,
Pool.Pool_Size - Minimum_Size);
Set_Next (Pool, Pool.First_Free + Minimum_Size, 0);
end if;
end Initialize;
----------
-- Next --
----------
function Next
(Pool : Stack_Bounded_Pool;
Chunk : SSE.Storage_Count)
return SSE.Storage_Count
is
begin
return SC.To_Pointer (Pool.The_Pool (Chunk + SC_Size)'Address).all;
end Next;
--------------
-- Set_Next --
--------------
procedure Set_Next
(Pool : Stack_Bounded_Pool;
Chunk, Next : SSE.Storage_Count)
is
begin
SC.To_Pointer (Pool.The_Pool (Chunk + SC_Size)'Address).all := Next;
end Set_Next;
--------------
-- Set_Size --
--------------
procedure Set_Size
(Pool : Stack_Bounded_Pool;
Chunk, Size : SSE.Storage_Count)
is
begin
SC.To_Pointer (Pool.The_Pool (Chunk)'Address).all := Size;
end Set_Size;
----------
-- Size --
----------
function Size
(Pool : Stack_Bounded_Pool;
Chunk : SSE.Storage_Count)
return SSE.Storage_Count
is
begin
return SC.To_Pointer (Pool.The_Pool (Chunk)'Address).all;
end Size;
end Variable_Size_Management;
end System.Pool_Size;
|
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<syndb class_id="0" tracking_level="0" version="0">
<userIPLatency>-1</userIPLatency>
<userIPName></userIPName>
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<name>linebuffer</name>
<ret_bitwidth>0</ret_bitwidth>
<ports class_id="2" tracking_level="0" version="0">
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<Value class_id="4" tracking_level="0" version="0">
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<id>1</id>
<name>in_stream_V_value_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo class_id="6" tracking_level="0" version="0">
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</inlineStackInfo>
<originalName>in_stream.V.value.V</originalName>
<rtlName></rtlName>
<coreName></coreName>
</Obj>
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</bit_vecs>
</item>
<item class_id_reference="3" object_id="_2">
<Value>
<Obj>
<type>1</type>
<id>2</id>
<name>out_stream_V_value_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
<item_version>0</item_version>
</inlineStackInfo>
<originalName>out_stream.V.value.V</originalName>
<rtlName></rtlName>
<coreName></coreName>
</Obj>
<bitwidth>288</bitwidth>
</Value>
<direction>1</direction>
<if_type>3</if_type>
<array_size>0</array_size>
<bit_vecs>
<count>0</count>
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</bit_vecs>
</item>
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<nodes class_id="8" tracking_level="0" version="0">
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<item class_id="9" tracking_level="1" version="0" object_id="_3">
<Value>
<Obj>
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<fileDirectory>/home/dhuff/Halide-HLS/apps/hls_examples/camera_ready_synthesis/app_files/big_apps_32_shifts/conv2d</fileDirectory>
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<item class_id="12" tracking_level="0" version="0">
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<first>../../../lib_files/Linebuffer.h</first>
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</first>
<second>530</second>
</item>
<item>
<first>
<first>../../../lib_files/Linebuffer.h</first>
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<first>
<first>../../../lib_files/Linebuffer.h</first>
<second>linebuffer_4D&lt;1920, 1080, 1, 1, 1, 1, 1, 3, 3, 1, 1, unsigned int&gt;</second>
</first>
<second>505</second>
</item>
</second>
</item>
</inlineStackInfo>
<originalName></originalName>
<rtlName></rtlName>
<coreName></coreName>
</Obj>
<bitwidth>0</bitwidth>
</Value>
<oprand_edges>
<count>3</count>
<item_version>0</item_version>
<item>16</item>
<item>17</item>
<item>18</item>
</oprand_edges>
<opcode>call</opcode>
<m_Display>0</m_Display>
</item>
<item class_id_reference="9" object_id="_4">
<Value>
<Obj>
<type>0</type>
<id>13</id>
<name></name>
<fileName>../../../lib_files/Linebuffer.h</fileName>
<fileDirectory>/home/dhuff/Halide-HLS/apps/hls_examples/camera_ready_synthesis/app_files/big_apps_32_shifts/conv2d</fileDirectory>
<lineNumber>531</lineNumber>
<contextFuncName>linebuffer&lt;1920, 1080, 1, 1, 1, 1, 1, 1, 3, 3, 1, 1, unsigned int&gt;</contextFuncName>
<inlineStackInfo>
<count>1</count>
<item_version>0</item_version>
<item>
<first>/home/dhuff/Halide-HLS/apps/hls_examples/camera_ready_synthesis/app_files/big_apps_32_shifts/conv2d</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>../../../lib_files/Linebuffer.h</first>
<second>linebuffer&lt;1920, 1080, 1, 1, 1, 1, 1, 1, 3, 3, 1, 1, unsigned int&gt;</second>
</first>
<second>531</second>
</item>
</second>
</item>
</inlineStackInfo>
<originalName></originalName>
<rtlName></rtlName>
<coreName></coreName>
</Obj>
<bitwidth>0</bitwidth>
</Value>
<oprand_edges>
<count>0</count>
<item_version>0</item_version>
</oprand_edges>
<opcode>ret</opcode>
<m_Display>0</m_Display>
</item>
</nodes>
<consts class_id="15" tracking_level="0" version="0">
<count>1</count>
<item_version>0</item_version>
<item class_id="16" tracking_level="1" version="0" object_id="_5">
<Value>
<Obj>
<type>2</type>
<id>15</id>
<name>call</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
<item_version>0</item_version>
</inlineStackInfo>
<originalName></originalName>
<rtlName></rtlName>
<coreName></coreName>
</Obj>
<bitwidth>0</bitwidth>
</Value>
<const_type>6</const_type>
<content><constant:call></content>
</item>
</consts>
<blocks class_id="17" tracking_level="0" version="0">
<count>1</count>
<item_version>0</item_version>
<item class_id="18" tracking_level="1" version="0" object_id="_6">
<Obj>
<type>3</type>
<id>14</id>
<name>linebuffer</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
<item_version>0</item_version>
</inlineStackInfo>
<originalName></originalName>
<rtlName></rtlName>
<coreName></coreName>
</Obj>
<node_objs>
<count>2</count>
<item_version>0</item_version>
<item>12</item>
<item>13</item>
</node_objs>
</item>
</blocks>
<edges class_id="19" tracking_level="0" version="0">
<count>3</count>
<item_version>0</item_version>
<item class_id="20" tracking_level="1" version="0" object_id="_7">
<id>16</id>
<edge_type>1</edge_type>
<source_obj>15</source_obj>
<sink_obj>12</sink_obj>
</item>
<item class_id_reference="20" object_id="_8">
<id>17</id>
<edge_type>1</edge_type>
<source_obj>1</source_obj>
<sink_obj>12</sink_obj>
</item>
<item class_id_reference="20" object_id="_9">
<id>18</id>
<edge_type>1</edge_type>
<source_obj>2</source_obj>
<sink_obj>12</sink_obj>
</item>
</edges>
</cdfg>
<cdfg_regions class_id="21" tracking_level="0" version="0">
<count>1</count>
<item_version>0</item_version>
<item class_id="22" tracking_level="1" version="0" object_id="_10">
<mId>1</mId>
<mTag>linebuffer</mTag>
<mType>0</mType>
<sub_regions>
<count>0</count>
<item_version>0</item_version>
</sub_regions>
<basic_blocks>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</basic_blocks>
<mII>-1</mII>
<mDepth>-1</mDepth>
<mMinTripCount>-1</mMinTripCount>
<mMaxTripCount>-1</mMaxTripCount>
<mMinLatency>2077921</mMinLatency>
<mMaxLatency>-1</mMaxLatency>
<mIsDfPipe>1</mIsDfPipe>
<mDfPipe class_id="23" tracking_level="1" version="0" object_id="_11">
<port_list class_id="24" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</port_list>
<process_list class_id="25" tracking_level="0" version="0">
<count>1</count>
<item_version>0</item_version>
<item class_id="26" tracking_level="1" version="0" object_id="_12">
<type>0</type>
<name>call_U0</name>
<ssdmobj_id>12</ssdmobj_id>
<pins class_id="27" tracking_level="0" version="0">
<count>2</count>
<item_version>0</item_version>
<item class_id="28" tracking_level="1" version="0" object_id="_13">
<port class_id="29" tracking_level="1" version="0" object_id="_14">
<name>in_stream_V_value_V</name>
<dir>0</dir>
<type>0</type>
</port>
<inst class_id="30" tracking_level="1" version="0" object_id="_15">
<type>0</type>
<name>call_U0</name>
<ssdmobj_id>12</ssdmobj_id>
</inst>
</item>
<item class_id_reference="28" object_id="_16">
<port class_id_reference="29" object_id="_17">
<name>out_stream_V_value_V</name>
<dir>0</dir>
<type>1</type>
</port>
<inst class_id_reference="30" object_id_reference="_15"></inst>
</item>
</pins>
</item>
</process_list>
<channel_list class_id="31" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</channel_list>
<net_list class_id="32" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</net_list>
</mDfPipe>
</item>
</cdfg_regions>
<fsm class_id="-1"></fsm>
<res class_id="-1"></res>
<node_label_latency class_id="35" tracking_level="0" version="0">
<count>2</count>
<item_version>0</item_version>
<item class_id="36" tracking_level="0" version="0">
<first>12</first>
<second class_id="37" tracking_level="0" version="0">
<first>0</first>
<second>1</second>
</second>
</item>
<item>
<first>13</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
</node_label_latency>
<bblk_ent_exit class_id="38" tracking_level="0" version="0">
<count>1</count>
<item_version>0</item_version>
<item class_id="39" tracking_level="0" version="0">
<first>14</first>
<second class_id="40" tracking_level="0" version="0">
<first>0</first>
<second>1</second>
</second>
</item>
</bblk_ent_exit>
<regions class_id="41" tracking_level="0" version="0">
<count>1</count>
<item_version>0</item_version>
<item class_id="42" tracking_level="1" version="0" object_id="_18">
<region_name>linebuffer</region_name>
<basic_blocks>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</basic_blocks>
<nodes>
<count>11</count>
<item_version>0</item_version>
<item>3</item>
<item>4</item>
<item>5</item>
<item>6</item>
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<item>11</item>
<item>12</item>
<item>13</item>
</nodes>
<anchor_node>-1</anchor_node>
<region_type>16</region_type>
<interval>0</interval>
<pipe_depth>0</pipe_depth>
</item>
</regions>
<dp_fu_nodes class_id="43" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</dp_fu_nodes>
<dp_fu_nodes_expression class_id="44" tracking_level="0" version="0">
<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="45" 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="46" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</dp_port_io_nodes>
<port2core class_id="47" 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>
|
-- { dg-do run }
with GNAT.Time_Stamp;
use GNAT.Time_Stamp;
procedure test_time_stamp is
S : constant String := Current_Time;
function NN (S : String) return Boolean is
begin
for J in S'Range loop
if S (J) not in '0' .. '9' then
return True;
end if;
end loop;
return False;
end NN;
begin
if S'Length /= 22
or else S (5) /= '-'
or else S (8) /= '-'
or else S (11) /= ' '
or else S (14) /= ':'
or else S (17) /= ':'
or else S (20) /= '.'
or else NN (S (1 .. 4))
or else NN (S (6 .. 7))
or else NN (S (9 .. 10))
or else NN (S (12 .. 13))
or else NN (S (15 .. 16))
or else NN (S (18 .. 19))
or else NN (S (21 .. 22))
then
raise Program_Error;
end if;
end;
|
--------------------------------------------------------------------------------
-- Copyright (C) 2020 by Heisenbug Ltd. (gh+si_units@heisenbug.eu)
--
-- This work is free. You can redistribute it and/or modify it under the
-- terms of the Do What The Fuck You Want To Public License, Version 2,
-- as published by Sam Hocevar. See the LICENSE file for more details.
--------------------------------------------------------------------------------
pragma License (Unrestricted);
with Ada.Text_IO;
--------------------------------------------------------------------------------
-- Image subprograms for metric (SI) physical values.
--
-- Please note that the rather unusual prefixes centi, deci, Deka, and Hecto
-- are not supported by these subprograms. You can use the Scaling package to
-- convert between differently prefixed value and work from there, though.
--------------------------------------------------------------------------------
package SI_Units.Metric is
type Prefixes is (yocto, zepto, atto, femto, pico, nano, micro, milli,
None,
kilo, Mega, Giga, Tera, Peta, Exa, Zetta, Yotta);
-- Prefixes supported in instantiated Image subprograms.
Magnitude : constant := 1000.0;
-- Magnitude change when trying to find the best representation for a given
-- value.
--
-- Generic image function for different types.
--
-- Parameters:
--
-- Item - the type you want an Image function instantiated for.
-- Default_Aft - the default number of digits after the decimal point
-- (regardless of the prefix finally used).
-- Unit - The name of your unit, e.g. "Hz", "m" or such (also see
-- package SI_Units.Names).
--
generic
type Item is delta <>;
Default_Aft : in Ada.Text_IO.Field;
Unit : in Unit_Name;
function Fixed_Image
(Value : in Item;
Aft : in Ada.Text_IO.Field := Default_Aft) return String with
Global => null;
-- Image subroutine that can be instantiated for fixed types.
generic
type Item is digits <>;
Default_Aft : in Ada.Text_IO.Field;
Unit : in Unit_Name;
function Float_Image
(Value : in Item;
Aft : in Ada.Text_IO.Field := Default_Aft) return String with
Global => null;
-- Image subroutine that can be instantiated for floating point types.
generic
type Item is range <>;
Default_Aft : in Ada.Text_IO.Field;
Unit : in Unit_Name;
function Integer_Image
(Value : in Item;
Aft : in Ada.Text_IO.Field := Default_Aft) return String with
Global => null;
-- Image subroutine that can be instantiated for integer types.
generic
type Item is mod <>;
Default_Aft : in Ada.Text_IO.Field;
Unit : in Unit_Name;
function Mod_Image
(Value : in Item;
Aft : in Ada.Text_IO.Field := Default_Aft) return String with
Global => null;
-- Image subroutine that can be instantiated for modular types.
end SI_Units.Metric;
|
------------------------------------------------------------------------------
-- --
-- GNAT ncurses Binding Samples --
-- --
-- ncurses2.trace_set --
-- --
-- B O D Y --
-- --
------------------------------------------------------------------------------
-- Copyright (c) 2000-2006,2008 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: 1.3 $
-- $Date: 2008/07/26 18:46:18 $
-- Binding Version 01.00
------------------------------------------------------------------------------
with ncurses2.util; use ncurses2.util;
with Terminal_Interface.Curses; use Terminal_Interface.Curses;
with Terminal_Interface.Curses.Trace; use Terminal_Interface.Curses.Trace;
with Terminal_Interface.Curses.Menus; use Terminal_Interface.Curses.Menus;
with Ada.Strings.Bounded;
-- interactively set the trace level
procedure ncurses2.trace_set is
function menu_virtualize (c : Key_Code) return Menu_Request_Code;
function subset (super, sub : Trace_Attribute_Set) return Boolean;
function trace_or (a, b : Trace_Attribute_Set) return Trace_Attribute_Set;
function trace_num (tlevel : Trace_Attribute_Set) return String;
function tracetrace (tlevel : Trace_Attribute_Set) return String;
function run_trace_menu (m : Menu; count : Integer) return Boolean;
function menu_virtualize (c : Key_Code) return Menu_Request_Code is
begin
case c is
when Character'Pos (newl) | Key_Exit =>
return Menu_Request_Code'Last + 1; -- MAX_COMMAND? TODO
when Character'Pos ('u') =>
return M_ScrollUp_Line;
when Character'Pos ('d') =>
return M_ScrollDown_Line;
when Character'Pos ('b') | Key_Next_Page =>
return M_ScrollUp_Page;
when Character'Pos ('f') | Key_Previous_Page =>
return M_ScrollDown_Page;
when Character'Pos ('n') | Key_Cursor_Down =>
return M_Next_Item;
when Character'Pos ('p') | Key_Cursor_Up =>
return M_Previous_Item;
when Character'Pos (' ') =>
return M_Toggle_Item;
when Key_Mouse =>
return c;
when others =>
Beep;
return c;
end case;
end menu_virtualize;
type string_a is access String;
type tbl_entry is record
name : string_a;
mask : Trace_Attribute_Set;
end record;
t_tbl : constant array (Positive range <>) of tbl_entry :=
(
(new String'("Disable"),
Trace_Disable),
(new String'("Times"),
Trace_Attribute_Set'(Times => True, others => False)),
(new String'("Tputs"),
Trace_Attribute_Set'(Tputs => True, others => False)),
(new String'("Update"),
Trace_Attribute_Set'(Update => True, others => False)),
(new String'("Cursor_Move"),
Trace_Attribute_Set'(Cursor_Move => True, others => False)),
(new String'("Character_Output"),
Trace_Attribute_Set'(Character_Output => True, others => False)),
(new String'("Ordinary"),
Trace_Ordinary),
(new String'("Calls"),
Trace_Attribute_Set'(Calls => True, others => False)),
(new String'("Virtual_Puts"),
Trace_Attribute_Set'(Virtual_Puts => True, others => False)),
(new String'("Input_Events"),
Trace_Attribute_Set'(Input_Events => True, others => False)),
(new String'("TTY_State"),
Trace_Attribute_Set'(TTY_State => True, others => False)),
(new String'("Internal_Calls"),
Trace_Attribute_Set'(Internal_Calls => True, others => False)),
(new String'("Character_Calls"),
Trace_Attribute_Set'(Character_Calls => True, others => False)),
(new String'("Termcap_TermInfo"),
Trace_Attribute_Set'(Termcap_TermInfo => True, others => False)),
(new String'("Maximium"),
Trace_Maximum)
);
package BS is new Ada.Strings.Bounded.Generic_Bounded_Length (300);
function subset (super, sub : Trace_Attribute_Set) return Boolean is
begin
if
(super.Times or not sub.Times) and
(super.Tputs or not sub.Tputs) and
(super.Update or not sub.Update) and
(super.Cursor_Move or not sub.Cursor_Move) and
(super.Character_Output or not sub.Character_Output) and
(super.Calls or not sub.Calls) and
(super.Virtual_Puts or not sub.Virtual_Puts) and
(super.Input_Events or not sub.Input_Events) and
(super.TTY_State or not sub.TTY_State) and
(super.Internal_Calls or not sub.Internal_Calls) and
(super.Character_Calls or not sub.Character_Calls) and
(super.Termcap_TermInfo or not sub.Termcap_TermInfo) and
True then
return True;
else
return False;
end if;
end subset;
function trace_or (a, b : Trace_Attribute_Set) return Trace_Attribute_Set is
retval : Trace_Attribute_Set := Trace_Disable;
begin
retval.Times := (a.Times or b.Times);
retval.Tputs := (a.Tputs or b.Tputs);
retval.Update := (a.Update or b.Update);
retval.Cursor_Move := (a.Cursor_Move or b.Cursor_Move);
retval.Character_Output := (a.Character_Output or b.Character_Output);
retval.Calls := (a.Calls or b.Calls);
retval.Virtual_Puts := (a.Virtual_Puts or b.Virtual_Puts);
retval.Input_Events := (a.Input_Events or b.Input_Events);
retval.TTY_State := (a.TTY_State or b.TTY_State);
retval.Internal_Calls := (a.Internal_Calls or b.Internal_Calls);
retval.Character_Calls := (a.Character_Calls or b.Character_Calls);
retval.Termcap_TermInfo := (a.Termcap_TermInfo or b.Termcap_TermInfo);
return retval;
end trace_or;
-- Print the hexadecimal value of the mask so
-- users can set it from the command line.
function trace_num (tlevel : Trace_Attribute_Set) return String is
result : Integer := 0;
m : Integer := 1;
begin
if tlevel.Times then
result := result + m;
end if;
m := m * 2;
if tlevel.Tputs then
result := result + m;
end if;
m := m * 2;
if tlevel.Update then
result := result + m;
end if;
m := m * 2;
if tlevel.Cursor_Move then
result := result + m;
end if;
m := m * 2;
if tlevel.Character_Output then
result := result + m;
end if;
m := m * 2;
if tlevel.Calls then
result := result + m;
end if;
m := m * 2;
if tlevel.Virtual_Puts then
result := result + m;
end if;
m := m * 2;
if tlevel.Input_Events then
result := result + m;
end if;
m := m * 2;
if tlevel.TTY_State then
result := result + m;
end if;
m := m * 2;
if tlevel.Internal_Calls then
result := result + m;
end if;
m := m * 2;
if tlevel.Character_Calls then
result := result + m;
end if;
m := m * 2;
if tlevel.Termcap_TermInfo then
result := result + m;
end if;
m := m * 2;
return result'Img;
end trace_num;
function tracetrace (tlevel : Trace_Attribute_Set) return String is
use BS;
buf : Bounded_String := To_Bounded_String ("");
begin
-- The C version prints the hexadecimal value of the mask, we
-- won't do that here because this is Ada.
if tlevel = Trace_Disable then
Append (buf, "Trace_Disable");
else
if subset (tlevel,
Trace_Attribute_Set'(Times => True, others => False)) then
Append (buf, "Times");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Attribute_Set'(Tputs => True, others => False)) then
Append (buf, "Tputs");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Attribute_Set'(Update => True, others => False)) then
Append (buf, "Update");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Attribute_Set'(Cursor_Move => True,
others => False)) then
Append (buf, "Cursor_Move");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Attribute_Set'(Character_Output => True,
others => False)) then
Append (buf, "Character_Output");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Ordinary) then
Append (buf, "Ordinary");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Attribute_Set'(Calls => True, others => False)) then
Append (buf, "Calls");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Attribute_Set'(Virtual_Puts => True,
others => False)) then
Append (buf, "Virtual_Puts");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Attribute_Set'(Input_Events => True,
others => False)) then
Append (buf, "Input_Events");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Attribute_Set'(TTY_State => True,
others => False)) then
Append (buf, "TTY_State");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Attribute_Set'(Internal_Calls => True,
others => False)) then
Append (buf, "Internal_Calls");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Attribute_Set'(Character_Calls => True,
others => False)) then
Append (buf, "Character_Calls");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Attribute_Set'(Termcap_TermInfo => True,
others => False)) then
Append (buf, "Termcap_TermInfo");
Append (buf, ", ");
end if;
if subset (tlevel,
Trace_Maximum) then
Append (buf, "Maximium");
Append (buf, ", ");
end if;
end if;
if To_String (buf) (Length (buf) - 1) = ',' then
Delete (buf, Length (buf) - 1, Length (buf));
end if;
return To_String (buf);
end tracetrace;
function run_trace_menu (m : Menu; count : Integer) return Boolean is
i, p : Item;
changed : Boolean;
c, v : Key_Code;
begin
loop
changed := (count /= 0);
c := Getchar (Get_Window (m));
v := menu_virtualize (c);
case Driver (m, v) is
when Unknown_Request =>
return False;
when others =>
i := Current (m);
if i = Menus.Items (m, 1) then -- the first item
for n in t_tbl'First + 1 .. t_tbl'Last loop
if Value (i) then
Set_Value (i, False);
changed := True;
end if;
end loop;
else
for n in t_tbl'First + 1 .. t_tbl'Last loop
p := Menus.Items (m, n);
if Value (p) then
Set_Value (Menus.Items (m, 1), False);
changed := True;
exit;
end if;
end loop;
end if;
if not changed then
return True;
end if;
end case;
end loop;
end run_trace_menu;
nc_tracing, mask : Trace_Attribute_Set;
pragma Import (C, nc_tracing, "_nc_tracing");
items_a : constant Item_Array_Access :=
new Item_Array (t_tbl'First .. t_tbl'Last + 1);
mrows : Line_Count;
mcols : Column_Count;
menuwin : Window;
menu_y : constant Line_Position := 8;
menu_x : constant Column_Position := 8;
ip : Item;
m : Menu;
count : Integer;
newtrace : Trace_Attribute_Set;
begin
Add (Line => 0, Column => 0, Str => "Interactively set trace level:");
Add (Line => 2, Column => 0,
Str => " Press space bar to toggle a selection.");
Add (Line => 3, Column => 0,
Str => " Use up and down arrow to move the select bar.");
Add (Line => 4, Column => 0,
Str => " Press return to set the trace level.");
Add (Line => 6, Column => 0, Str => "(Current trace level is ");
Add (Str => tracetrace (nc_tracing) & " numerically: " &
trace_num (nc_tracing));
Add (Ch => ')');
Refresh;
for n in t_tbl'Range loop
items_a (n) := New_Item (t_tbl (n).name.all);
end loop;
items_a (t_tbl'Last + 1) := Null_Item;
m := New_Menu (items_a);
Set_Format (m, 16, 2);
Scale (m, mrows, mcols);
Switch_Options (m, (One_Valued => True, others => False), On => False);
menuwin := New_Window (mrows + 2, mcols + 2, menu_y, menu_x);
Set_Window (m, menuwin);
Set_KeyPad_Mode (menuwin, SwitchOn => True);
Box (menuwin);
Set_Sub_Window (m, Derived_Window (menuwin, mrows, mcols, 1, 1));
Post (m);
for n in t_tbl'Range loop
ip := Items (m, n);
mask := t_tbl (n).mask;
if mask = Trace_Disable then
Set_Value (ip, nc_tracing = Trace_Disable);
elsif subset (sub => mask, super => nc_tracing) then
Set_Value (ip, True);
end if;
end loop;
count := 1;
while run_trace_menu (m, count) loop
count := count + 1;
end loop;
newtrace := Trace_Disable;
for n in t_tbl'Range loop
ip := Items (m, n);
if Value (ip) then
mask := t_tbl (n).mask;
newtrace := trace_or (newtrace, mask);
end if;
end loop;
Trace_On (newtrace);
Trace_Put ("trace level interactively set to " &
tracetrace (nc_tracing));
Move_Cursor (Line => Lines - 4, Column => 0);
Add (Str => "Trace level is ");
Add (Str => tracetrace (nc_tracing));
Add (Ch => newl);
Pause; -- was just Add(); Getchar
Post (m, False);
-- menuwin has subwindows I think, which makes an error.
declare begin
Delete (menuwin);
exception when Curses_Exception => null; end;
-- free_menu(m);
-- free_item()
end ncurses2.trace_set;
|
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<id>27</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_443">
<id>28</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_444">
<id>2</id>
<operations>
<count>7</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_445">
<id>30</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_446">
<id>31</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_447">
<id>32</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_448">
<id>33</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_449">
<id>34</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_450">
<id>37</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_451">
<id>40</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_452">
<id>3</id>
<operations>
<count>3</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_453">
<id>36</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_454">
<id>37</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_455">
<id>38</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_456">
<id>4</id>
<operations>
<count>19</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_457">
<id>42</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_458">
<id>43</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_459">
<id>44</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_460">
<id>45</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_461">
<id>46</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_462">
<id>47</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_463">
<id>49</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_464">
<id>52</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_465">
<id>53</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_466">
<id>54</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_467">
<id>66</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_468">
<id>71</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_469">
<id>75</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_470">
<id>79</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_471">
<id>83</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_472">
<id>87</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_473">
<id>91</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_474">
<id>95</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_475">
<id>99</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_476">
<id>5</id>
<operations>
<count>9</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_477">
<id>56</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_478">
<id>60</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_479">
<id>61</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_480">
<id>62</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_481">
<id>63</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_482">
<id>64</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_483">
<id>65</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_484">
<id>67</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_485">
<id>102</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_486">
<id>6</id>
<operations>
<count>25</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_487">
<id>50</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_488">
<id>51</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_489">
<id>55</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_490">
<id>57</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_491">
<id>58</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_492">
<id>59</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_493">
<id>65</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_494">
<id>69</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_495">
<id>70</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_496">
<id>73</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_497">
<id>74</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_498">
<id>77</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_499">
<id>78</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_500">
<id>81</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_501">
<id>82</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_502">
<id>85</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_503">
<id>86</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_504">
<id>89</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_505">
<id>90</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_506">
<id>93</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_507">
<id>94</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_508">
<id>97</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_509">
<id>98</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_510">
<id>101</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_511">
<id>103</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_512">
<id>7</id>
<operations>
<count>1</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_513">
<id>105</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_514">
<id>8</id>
<operations>
<count>7</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_515">
<id>107</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_516">
<id>108</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_517">
<id>109</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_518">
<id>110</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_519">
<id>111</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_520">
<id>114</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_521">
<id>117</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_522">
<id>9</id>
<operations>
<count>3</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_523">
<id>113</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_524">
<id>114</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_525">
<id>115</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_526">
<id>10</id>
<operations>
<count>10</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_527">
<id>119</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_528">
<id>120</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_529">
<id>121</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_530">
<id>122</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_531">
<id>123</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_532">
<id>124</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_533">
<id>126</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_534">
<id>129</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_535">
<id>130</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_536">
<id>131</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_537">
<id>11</id>
<operations>
<count>8</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_538">
<id>132</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_539">
<id>142</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_540">
<id>143</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_541">
<id>144</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_542">
<id>145</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_543">
<id>146</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_544">
<id>147</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_545">
<id>150</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_546">
<id>12</id>
<operations>
<count>15</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_547">
<id>127</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_548">
<id>128</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_549">
<id>133</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_550">
<id>134</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_551">
<id>135</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_552">
<id>136</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_553">
<id>137</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_554">
<id>138</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_555">
<id>139</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_556">
<id>140</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_557">
<id>141</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_558">
<id>147</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_559">
<id>148</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_560">
<id>149</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_561">
<id>151</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_562">
<id>13</id>
<operations>
<count>1</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_563">
<id>153</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
</states>
<transitions class_id="29" tracking_level="0" version="0">
<count>16</count>
<item_version>0</item_version>
<item class_id="30" tracking_level="1" version="0" object_id="_564">
<inState>1</inState>
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<condition class_id="31" tracking_level="0" version="0">
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<sop class_id="32" tracking_level="0" version="0">
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<item_version>0</item_version>
<item class_id="33" 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="_565">
<inState>2</inState>
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<condition>
<id>119</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
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<item class_id="34" tracking_level="0" version="0">
<first class_id="35" tracking_level="0" version="0">
<first>31</first>
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</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_566">
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<condition>
<id>122</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
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</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_567">
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<condition>
<id>124</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>31</first>
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</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_568">
<inState>7</inState>
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<condition>
<id>150</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="_569">
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<condition>
<id>151</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>108</first>
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</first>
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</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_570">
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<condition>
<id>154</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="_571">
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<condition>
<id>156</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>108</first>
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</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_572">
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<condition>
<id>165</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="_573">
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<condition>
<id>166</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="_574">
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<condition>
<id>164</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>45</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_575">
<inState>4</inState>
<outState>5</outState>
<condition>
<id>167</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>45</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_576">
<inState>11</inState>
<outState>12</outState>
<condition>
<id>169</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="_577">
<inState>12</inState>
<outState>10</outState>
<condition>
<id>170</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="_578">
<inState>10</inState>
<outState>13</outState>
<condition>
<id>168</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>122</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_579">
<inState>10</inState>
<outState>11</outState>
<condition>
<id>171</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>122</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="_580">
<dp_component_resource class_id="37" tracking_level="0" version="0">
<count>1</count>
<item_version>0</item_version>
<item class_id="38" tracking_level="0" version="0">
<first>grp_dct_1d_fu_363 (dct_1d)</first>
<second class_id="39" tracking_level="0" version="0">
<count>4</count>
<item_version>0</item_version>
<item class_id="40" tracking_level="0" version="0">
<first>BRAM</first>
<second>0</second>
</item>
<item>
<first>DSP48E</first>
<second>8</second>
</item>
<item>
<first>FF</first>
<second>738</second>
</item>
<item>
<first>LUT</first>
<second>256</second>
</item>
</second>
</item>
</dp_component_resource>
<dp_expression_resource>
<count>26</count>
<item_version>0</item_version>
<item>
<first>ap_block_state1 ( or ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>1</second>
</item>
<item>
<first>(1P1)</first>
<second>1</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>ap_enable_pp0 ( xor ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>1</second>
</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>ap_enable_pp1 ( xor ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>1</second>
</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>ap_enable_reg_pp0_iter1 ( xor ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>1</second>
</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>ap_enable_reg_pp1_iter1 ( xor ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>1</second>
</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_flatten1_fu_515_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>exitcond_flatten_fu_418_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_mid2_fu_442_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>
</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>i_3_mid2_fu_539_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>
</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>i_4_fu_412_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>
</item>
</second>
</item>
<item>
<first>i_5_fu_509_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>
</item>
</second>
</item>
<item>
<first>i_6_fu_487_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>
</item>
</second>
</item>
<item>
<first>i_7_fu_580_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>
</item>
</second>
</item>
<item>
<first>indvar_flatten_next1_fu_521_p2 ( + ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>7</second>
</item>
<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>indvar_flatten_next_fu_424_p2 ( + ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>7</second>
</item>
<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_2_fu_430_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>j_3_fu_527_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>
</item>
</second>
</item>
<item>
<first>tmp_11_fu_569_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_1_fu_436_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>
<item>
<first>tmp_2_fu_476_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_3_mid2_v_fu_450_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_4_fu_503_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>
<item>
<first>tmp_5_fu_533_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>
<item>
<first>tmp_9_fu_599_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_9_mid2_v_fu_547_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_fu_406_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>
<dp_fifo_resource>
<count>0</count>
<item_version>0</item_version>
</dp_fifo_resource>
<dp_memory_resource>
<count>10</count>
<item_version>0</item_version>
<item>
<first>col_inbuf_0_U</first>
<second>
<count>7</count>
<item_version>0</item_version>
<item>
<first>(0Words)</first>
<second>8</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Banks)</first>
<second>1</second>
</item>
<item>
<first>(3W*Bits*Banks)</first>
<second>128</second>
</item>
<item>
<first>BRAM</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>32</second>
</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_1_U</first>
<second>
<count>7</count>
<item_version>0</item_version>
<item>
<first>(0Words)</first>
<second>8</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Banks)</first>
<second>1</second>
</item>
<item>
<first>(3W*Bits*Banks)</first>
<second>128</second>
</item>
<item>
<first>BRAM</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>32</second>
</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_2_U</first>
<second>
<count>7</count>
<item_version>0</item_version>
<item>
<first>(0Words)</first>
<second>8</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Banks)</first>
<second>1</second>
</item>
<item>
<first>(3W*Bits*Banks)</first>
<second>128</second>
</item>
<item>
<first>BRAM</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>32</second>
</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_3_U</first>
<second>
<count>7</count>
<item_version>0</item_version>
<item>
<first>(0Words)</first>
<second>8</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Banks)</first>
<second>1</second>
</item>
<item>
<first>(3W*Bits*Banks)</first>
<second>128</second>
</item>
<item>
<first>BRAM</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>32</second>
</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_4_U</first>
<second>
<count>7</count>
<item_version>0</item_version>
<item>
<first>(0Words)</first>
<second>8</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Banks)</first>
<second>1</second>
</item>
<item>
<first>(3W*Bits*Banks)</first>
<second>128</second>
</item>
<item>
<first>BRAM</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>32</second>
</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_5_U</first>
<second>
<count>7</count>
<item_version>0</item_version>
<item>
<first>(0Words)</first>
<second>8</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Banks)</first>
<second>1</second>
</item>
<item>
<first>(3W*Bits*Banks)</first>
<second>128</second>
</item>
<item>
<first>BRAM</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>32</second>
</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_6_U</first>
<second>
<count>7</count>
<item_version>0</item_version>
<item>
<first>(0Words)</first>
<second>8</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Banks)</first>
<second>1</second>
</item>
<item>
<first>(3W*Bits*Banks)</first>
<second>128</second>
</item>
<item>
<first>BRAM</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>32</second>
</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_7_U</first>
<second>
<count>7</count>
<item_version>0</item_version>
<item>
<first>(0Words)</first>
<second>8</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Banks)</first>
<second>1</second>
</item>
<item>
<first>(3W*Bits*Banks)</first>
<second>128</second>
</item>
<item>
<first>BRAM</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>32</second>
</item>
<item>
<first>LUT</first>
<second>2</second>
</item>
</second>
</item>
<item>
<first>col_outbuf_U</first>
<second>
<count>7</count>
<item_version>0</item_version>
<item>
<first>(0Words)</first>
<second>64</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Banks)</first>
<second>1</second>
</item>
<item>
<first>(3W*Bits*Banks)</first>
<second>1024</second>
</item>
<item>
<first>BRAM</first>
<second>1</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>0</second>
</item>
</second>
</item>
<item>
<first>row_outbuf_U</first>
<second>
<count>7</count>
<item_version>0</item_version>
<item>
<first>(0Words)</first>
<second>64</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Banks)</first>
<second>1</second>
</item>
<item>
<first>(3W*Bits*Banks)</first>
<second>1024</second>
</item>
<item>
<first>BRAM</first>
<second>1</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>0</second>
</item>
</second>
</item>
</dp_memory_resource>
<dp_multiplexer_resource>
<count>58</count>
<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>10</second>
</item>
<item>
<first>(1Bits)</first>
<second>1</second>
</item>
<item>
<first>(2Count)</first>
<second>10</second>
</item>
<item>
<first>LUT</first>
<second>47</second>
</item>
</second>
</item>
<item>
<first>ap_done</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>ap_enable_reg_pp0_iter1</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>ap_enable_reg_pp0_iter2</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>ap_enable_reg_pp1_iter1</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>ap_enable_reg_pp1_iter2</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>col_inbuf_0_address0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>3</second>
</item>
<item>
<first>(2Count)</first>
<second>9</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_0_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>col_inbuf_1_address0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>3</second>
</item>
<item>
<first>(2Count)</first>
<second>9</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_1_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>col_inbuf_2_address0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>3</second>
</item>
<item>
<first>(2Count)</first>
<second>9</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_2_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>col_inbuf_3_address0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>3</second>
</item>
<item>
<first>(2Count)</first>
<second>9</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_3_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>col_inbuf_4_address0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>3</second>
</item>
<item>
<first>(2Count)</first>
<second>9</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_4_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>col_inbuf_5_address0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>3</second>
</item>
<item>
<first>(2Count)</first>
<second>9</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_5_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>col_inbuf_6_address0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>3</second>
</item>
<item>
<first>(2Count)</first>
<second>9</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_6_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>col_inbuf_7_address0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>3</second>
</item>
<item>
<first>(2Count)</first>
<second>9</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>col_inbuf_7_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>col_outbuf_address0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>6</second>
</item>
<item>
<first>(2Count)</first>
<second>18</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>col_outbuf_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>col_outbuf_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>grp_dct_1d_fu_363_src1_q0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Count)</first>
<second>48</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>grp_dct_1d_fu_363_src2_q0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Count)</first>
<second>48</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>grp_dct_1d_fu_363_src3_q0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Count)</first>
<second>48</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>grp_dct_1d_fu_363_src4_q0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Count)</first>
<second>48</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>grp_dct_1d_fu_363_src5_q0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Count)</first>
<second>48</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>grp_dct_1d_fu_363_src6_q0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Count)</first>
<second>48</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>grp_dct_1d_fu_363_src7_q0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Count)</first>
<second>48</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>grp_dct_1d_fu_363_src_q0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>16</second>
</item>
<item>
<first>(2Count)</first>
<second>48</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>grp_dct_1d_fu_363_tmp_6</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>grp_dct_1d_fu_363_tmp_61</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>i_1_phi_fu_311_p4</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>i_1_reg_307</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>i_2_reg_318</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>i_3_phi_fu_356_p4</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>i_3_reg_352</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>i_reg_273</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>in_block_0_ce0</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>in_block_1_ce0</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>in_block_2_ce0</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>in_block_3_ce0</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>in_block_4_ce0</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>in_block_5_ce0</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>in_block_6_ce0</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>in_block_7_ce0</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>indvar_flatten1_reg_330</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
</item>
<item>
<first>(1Bits)</first>
<second>7</second>
</item>
<item>
<first>(2Count)</first>
<second>14</second>
</item>
<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
<item>
<first>indvar_flatten_reg_285</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
</item>
<item>
<first>(1Bits)</first>
<second>7</second>
</item>
<item>
<first>(2Count)</first>
<second>14</second>
</item>
<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
<item>
<first>j_1_phi_fu_345_p4</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_1_reg_341</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_phi_fu_300_p4</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_296</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>row_outbuf_address0</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>3</second>
</item>
<item>
<first>(1Bits)</first>
<second>6</second>
</item>
<item>
<first>(2Count)</first>
<second>18</second>
</item>
<item>
<first>LUT</first>
<second>15</second>
</item>
</second>
</item>
<item>
<first>row_outbuf_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>row_outbuf_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>31</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>ap_enable_reg_pp0_iter0</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>ap_enable_reg_pp0_iter1</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>ap_enable_reg_pp0_iter2</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>ap_enable_reg_pp1_iter0</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>ap_enable_reg_pp1_iter1</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>ap_enable_reg_pp1_iter2</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>ap_reg_grp_dct_1d_fu_363_ap_start</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>ap_reg_pp0_iter1_tmp_3_mid2_v_reg_634</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>ap_reg_pp0_iter1_tmp_3_reg_641</first>
<second>
<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>
</item>
</second>
</item>
<item>
<first>ap_reg_pp1_iter1_exitcond_flatten1_reg_664</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>ap_reg_pp1_iter1_i_3_mid2_reg_673</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>ap_reg_pp1_iter1_tmp_9_mid2_v_reg_680</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>exitcond_flatten1_reg_664</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>exitcond_flatten_reg_619</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_1_mid2_reg_628</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_1_reg_307</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_2_reg_318</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_3_mid2_reg_673</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_3_reg_352</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_4_reg_614</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_5_reg_659</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_273</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>indvar_flatten1_reg_330</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>7</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>7</second>
</item>
</second>
</item>
<item>
<first>indvar_flatten_reg_285</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>
<first>(Bits)</first>
<second>7</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>7</second>
</item>
</second>
</item>
<item>
<first>j_1_reg_341</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_296</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>tmp_3_mid2_v_reg_634</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>tmp_3_reg_641</first>
<second>
<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>
</item>
</second>
</item>
<item>
<first>tmp_9_mid2_v_reg_680</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>
</dp_register_resource>
<dp_component_map class_id="41" tracking_level="0" version="0">
<count>1</count>
<item_version>0</item_version>
<item class_id="42" tracking_level="0" version="0">
<first>grp_dct_1d_fu_363 (dct_1d)</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>37</item>
<item>114</item>
</second>
</item>
</dp_component_map>
<dp_expression_map>
<count>21</count>
<item_version>0</item_version>
<item>
<first>exitcond_flatten1_fu_515_p2 ( icmp ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>122</item>
</second>
</item>
<item>
<first>exitcond_flatten_fu_418_p2 ( icmp ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>45</item>
</second>
</item>
<item>
<first>i_1_mid2_fu_442_p3 ( select ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>53</item>
</second>
</item>
<item>
<first>i_3_mid2_fu_539_p3 ( select ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>130</item>
</second>
</item>
<item>
<first>i_4_fu_412_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>33</item>
</second>
</item>
<item>
<first>i_5_fu_509_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>110</item>
</second>
</item>
<item>
<first>i_6_fu_487_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>102</item>
</second>
</item>
<item>
<first>i_7_fu_580_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>150</item>
</second>
</item>
<item>
<first>indvar_flatten_next1_fu_521_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>123</item>
</second>
</item>
<item>
<first>indvar_flatten_next_fu_424_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>46</item>
</second>
</item>
<item>
<first>j_2_fu_430_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>49</item>
</second>
</item>
<item>
<first>j_3_fu_527_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>126</item>
</second>
</item>
<item>
<first>tmp_11_fu_569_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>144</item>
</second>
</item>
<item>
<first>tmp_1_fu_436_p2 ( icmp ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>52</item>
</second>
</item>
<item>
<first>tmp_2_fu_476_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>62</item>
</second>
</item>
<item>
<first>tmp_3_mid2_v_fu_450_p3 ( select ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>54</item>
</second>
</item>
<item>
<first>tmp_4_fu_503_p2 ( icmp ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>108</item>
</second>
</item>
<item>
<first>tmp_5_fu_533_p2 ( icmp ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>129</item>
</second>
</item>
<item>
<first>tmp_9_fu_599_p2 ( + ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>139</item>
</second>
</item>
<item>
<first>tmp_9_mid2_v_fu_547_p3 ( select ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>131</item>
</second>
</item>
<item>
<first>tmp_fu_406_p2 ( icmp ) </first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>31</item>
</second>
</item>
</dp_expression_map>
<dp_fifo_map>
<count>0</count>
<item_version>0</item_version>
</dp_fifo_map>
<dp_memory_map>
<count>10</count>
<item_version>0</item_version>
<item>
<first>col_inbuf_0_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</second>
</item>
<item>
<first>col_inbuf_1_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>264</item>
</second>
</item>
<item>
<first>col_inbuf_2_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>273</item>
</second>
</item>
<item>
<first>col_inbuf_3_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>282</item>
</second>
</item>
<item>
<first>col_inbuf_4_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>291</item>
</second>
</item>
<item>
<first>col_inbuf_5_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>300</item>
</second>
</item>
<item>
<first>col_inbuf_6_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>309</item>
</second>
</item>
<item>
<first>col_inbuf_7_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>318</item>
</second>
</item>
<item>
<first>col_outbuf_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>245</item>
</second>
</item>
<item>
<first>row_outbuf_U</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>236</item>
</second>
</item>
</dp_memory_map>
</res>
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<count>99</count>
<item_version>0</item_version>
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<second class_id="45" tracking_level="0" version="0">
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>19</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>20</first>
<second>
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<second>0</second>
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</item>
<item>
<first>21</first>
<second>
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<second>0</second>
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<item>
<first>22</first>
<second>
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<item>
<first>23</first>
<second>
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<second>0</second>
</second>
</item>
<item>
<first>24</first>
<second>
<first>0</first>
<second>0</second>
</second>
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<item>
<first>25</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>26</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>27</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>28</first>
<second>
<first>0</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>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>37</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>38</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>40</first>
<second>
<first>1</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>2</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>2</first>
<second>0</second>
</second>
</item>
<item>
<first>49</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>52</first>
<second>
<first>2</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>4</first>
<second>0</second>
</second>
</item>
<item>
<first>56</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>3</first>
<second>0</second>
</second>
</item>
<item>
<first>62</first>
<second>
<first>3</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>3</first>
<second>1</second>
</second>
</item>
<item>
<first>66</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>67</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>69</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>70</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>71</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>73</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>74</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>75</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>77</first>
<second>
<first>4</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>2</first>
<second>0</second>
</second>
</item>
<item>
<first>81</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>82</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>83</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>85</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>86</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>87</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>89</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>90</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>91</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>93</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>94</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>95</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>97</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>98</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>99</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>102</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>103</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>105</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>107</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>108</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>110</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>111</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>114</first>
<second>
<first>4</first>
<second>1</second>
</second>
</item>
<item>
<first>115</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>117</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>119</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>120</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>121</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>122</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>123</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>124</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>126</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>129</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>130</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>131</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>132</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>133</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>134</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>138</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>139</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>140</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>141</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>142</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>143</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>144</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>145</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>146</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>147</first>
<second>
<first>6</first>
<second>1</second>
</second>
</item>
<item>
<first>148</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>150</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>151</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>153</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
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<count>22</count>
<item_version>0</item_version>
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<first>29</first>
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<item>
<first>35</first>
<second>
<first>1</first>
<second>1</second>
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<item>
<first>39</first>
<second>
<first>1</first>
<second>2</second>
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<item>
<first>41</first>
<second>
<first>1</first>
<second>1</second>
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<item>
<first>48</first>
<second>
<first>2</first>
<second>2</second>
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<first>68</first>
<second>
<first>2</first>
<second>4</second>
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<item>
<first>72</first>
<second>
<first>2</first>
<second>4</second>
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<item>
<first>76</first>
<second>
<first>2</first>
<second>4</second>
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<item>
<first>80</first>
<second>
<first>2</first>
<second>4</second>
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<first>84</first>
<second>
<first>2</first>
<second>4</second>
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<item>
<first>88</first>
<second>
<first>2</first>
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<first>92</first>
<second>
<first>2</first>
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<item>
<first>96</first>
<second>
<first>2</first>
<second>4</second>
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<item>
<first>100</first>
<second>
<first>2</first>
<second>4</second>
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<item>
<first>104</first>
<second>
<first>3</first>
<second>4</second>
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<item>
<first>106</first>
<second>
<first>3</first>
<second>3</second>
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</item>
<item>
<first>112</first>
<second>
<first>4</first>
<second>4</second>
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<item>
<first>116</first>
<second>
<first>4</first>
<second>5</second>
</second>
</item>
<item>
<first>118</first>
<second>
<first>4</first>
<second>4</second>
</second>
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<item>
<first>125</first>
<second>
<first>5</first>
<second>5</second>
</second>
</item>
<item>
<first>152</first>
<second>
<first>5</first>
<second>7</second>
</second>
</item>
<item>
<first>154</first>
<second>
<first>6</first>
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<item>68</item>
<item>72</item>
<item>76</item>
<item>80</item>
<item>84</item>
<item>88</item>
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<item>19</item>
</second>
</item>
<item>
<first>110</first>
<second>
<count>1</count>
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</item>
<item>
<first>114</first>
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<count>1</count>
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</item>
<item>
<first>118</first>
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<item>22</item>
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</item>
<item>
<first>122</first>
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<count>1</count>
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<item>23</item>
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</item>
<item>
<first>126</first>
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<item>24</item>
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<item>
<first>130</first>
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<item>25</item>
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</item>
<item>
<first>134</first>
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<item>
<first>138</first>
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<item>27</item>
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<item>
<first>142</first>
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<item>64</item>
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<item>
<first>148</first>
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<count>2</count>
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<item>65</item>
<item>65</item>
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<item>
<first>153</first>
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<item>
<first>159</first>
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<item>70</item>
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<item>
<first>165</first>
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<item>
<first>171</first>
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<item>74</item>
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<item>
<first>177</first>
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<item>77</item>
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<item>
<first>183</first>
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<item>78</item>
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<item>
<first>189</first>
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<item>81</item>
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<item>
<first>195</first>
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<item>82</item>
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<item>
<first>201</first>
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<item>
<first>207</first>
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<item>
<first>213</first>
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<item>
<first>219</first>
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<item>
<first>225</first>
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<item>
<first>231</first>
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<item>94</item>
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<item>
<first>237</first>
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<item>97</item>
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</item>
<item>
<first>243</first>
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<item>98</item>
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<item>
<first>249</first>
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<count>1</count>
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<item>146</item>
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</item>
<item>
<first>255</first>
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<item>147</item>
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<item>
<first>260</first>
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<count>1</count>
<item_version>0</item_version>
<item>141</item>
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<item>
<first>267</first>
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<item_version>0</item_version>
<item>148</item>
</second>
</item>
<item>
<first>277</first>
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<count>1</count>
<item_version>0</item_version>
<item>30</item>
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</item>
<item>
<first>289</first>
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<count>1</count>
<item_version>0</item_version>
<item>42</item>
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</item>
<item>
<first>300</first>
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<count>1</count>
<item_version>0</item_version>
<item>43</item>
</second>
</item>
<item>
<first>311</first>
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<count>1</count>
<item_version>0</item_version>
<item>44</item>
</second>
</item>
<item>
<first>322</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>107</item>
</second>
</item>
<item>
<first>334</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>119</item>
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</item>
<item>
<first>345</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>120</item>
</second>
</item>
<item>
<first>356</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>121</item>
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</item>
<item>
<first>363</first>
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<count>4</count>
<item_version>0</item_version>
<item>37</item>
<item>37</item>
<item>114</item>
<item>114</item>
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</item>
<item>
<first>406</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>31</item>
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</item>
<item>
<first>412</first>
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<count>1</count>
<item_version>0</item_version>
<item>33</item>
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<item>
<first>418</first>
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<count>1</count>
<item_version>0</item_version>
<item>45</item>
</second>
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<item>
<first>424</first>
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<count>1</count>
<item_version>0</item_version>
<item>46</item>
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<item>
<first>430</first>
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<count>1</count>
<item_version>0</item_version>
<item>49</item>
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<item>
<first>436</first>
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<item>52</item>
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<item>
<first>442</first>
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<count>1</count>
<item_version>0</item_version>
<item>53</item>
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<item>
<first>450</first>
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<count>1</count>
<item_version>0</item_version>
<item>54</item>
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<item>
<first>458</first>
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<count>1</count>
<item_version>0</item_version>
<item>66</item>
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<item>
<first>462</first>
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<count>1</count>
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<item>56</item>
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<item>
<first>465</first>
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<count>1</count>
<item_version>0</item_version>
<item>60</item>
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<item>
<first>472</first>
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<count>1</count>
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<item>61</item>
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<item>
<first>476</first>
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<item_version>0</item_version>
<item>62</item>
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<item>
<first>482</first>
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<count>1</count>
<item_version>0</item_version>
<item>63</item>
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<item>
<first>487</first>
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<count>1</count>
<item_version>0</item_version>
<item>102</item>
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<item>
<first>492</first>
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<count>1</count>
<item_version>0</item_version>
<item>55</item>
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</item>
<item>
<first>503</first>
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<count>1</count>
<item_version>0</item_version>
<item>108</item>
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<item>
<first>509</first>
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<item_version>0</item_version>
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<item>
<first>515</first>
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<item>122</item>
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<item>
<first>521</first>
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<count>1</count>
<item_version>0</item_version>
<item>123</item>
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<item>
<first>527</first>
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<count>1</count>
<item_version>0</item_version>
<item>126</item>
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</item>
<item>
<first>533</first>
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<item>129</item>
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</item>
<item>
<first>539</first>
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<item>130</item>
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<item>
<first>547</first>
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<item>
<first>555</first>
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<item>
<first>558</first>
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<item>
<first>565</first>
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<item>
<first>569</first>
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<item>
<first>575</first>
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<item>145</item>
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<item>
<first>580</first>
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<item>150</item>
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<item>
<first>585</first>
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<item>
<first>592</first>
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<item>134</item>
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</item>
<item>
<first>596</first>
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<item>138</item>
</second>
</item>
<item>
<first>599</first>
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<count>1</count>
<item_version>0</item_version>
<item>139</item>
</second>
</item>
<item>
<first>605</first>
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<item>140</item>
</second>
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<first>col_inbuf_0_addr_gep_fu_225</first>
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<item>
<first>col_inbuf_0_alloca_fu_110</first>
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<item>
<first>col_inbuf_1_addr_gep_fu_213</first>
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<item>
<first>col_inbuf_1_alloca_fu_114</first>
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<item>
<first>col_inbuf_2_addr_gep_fu_201</first>
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<first>col_inbuf_2_alloca_fu_118</first>
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<first>col_inbuf_3_addr_gep_fu_189</first>
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<first>col_inbuf_3_alloca_fu_122</first>
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<item>
<first>col_inbuf_4_addr_gep_fu_177</first>
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<first>col_inbuf_4_alloca_fu_126</first>
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<first>col_inbuf_5_addr_gep_fu_165</first>
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<first>col_inbuf_5_alloca_fu_130</first>
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<first>col_inbuf_6_addr_gep_fu_153</first>
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<first>col_inbuf_6_alloca_fu_134</first>
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<first>col_inbuf_7_alloca_fu_138</first>
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<first>col_outbuf_addr_gep_fu_249</first>
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<first>col_outbuf_alloca_fu_106</first>
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<item>
<first>exitcond_flatten_fu_418</first>
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<item>
<first>i_1_mid2_fu_442</first>
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<item>
<first>i_2_phi_fu_322</first>
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<item>107</item>
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</item>
<item>
<first>i_3_mid2_fu_539</first>
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</second>
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<item>
<first>i_3_phi_fu_356</first>
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<first>i_5_fu_509</first>
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<first>i_6_fu_487</first>
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<item>
<first>i_7_fu_580</first>
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<first>i_phi_fu_277</first>
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<item>
<first>indvar_flatten1_phi_fu_334</first>
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<item>
<first>indvar_flatten_next1_fu_521</first>
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<item>
<first>indvar_flatten_next_fu_424</first>
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<item>
<first>indvar_flatten_phi_fu_289</first>
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<item>
<first>j_1_phi_fu_345</first>
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<item>
<first>j_2_fu_430</first>
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<first>j_3_fu_527</first>
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<first>j_phi_fu_300</first>
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<item>
<first>out_block_addr_gep_fu_260</first>
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<first>row_outbuf_addr_gep_fu_142</first>
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<first>row_outbuf_alloca_fu_102</first>
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<item>
<first>tmp_10_fu_558</first>
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<item>
<first>tmp_11_cast_fu_482</first>
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<first>tmp_11_fu_569</first>
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<item>
<first>tmp_14_cast_fu_592</first>
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<item>
<first>tmp_15_cast_fu_605</first>
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<item>
<first>tmp_17_cast_fu_565</first>
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</item>
<item>
<first>tmp_18_cast_fu_575</first>
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</item>
<item>
<first>tmp_1_fu_436</first>
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</item>
<item>
<first>tmp_2_cast_fu_596</first>
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</item>
<item>
<first>tmp_2_fu_476</first>
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<item>
<first>tmp_3_fu_458</first>
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<item>
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<item>
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<item>
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<item>
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<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>store</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>148</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>10</count>
<item_version>0</item_version>
<item>
<first>18</first>
<second>RAM</second>
</item>
<item>
<first>19</first>
<second>RAM</second>
</item>
<item>
<first>20</first>
<second>RAM</second>
</item>
<item>
<first>21</first>
<second>RAM</second>
</item>
<item>
<first>22</first>
<second>RAM</second>
</item>
<item>
<first>23</first>
<second>RAM</second>
</item>
<item>
<first>24</first>
<second>RAM</second>
</item>
<item>
<first>25</first>
<second>RAM</second>
</item>
<item>
<first>26</first>
<second>RAM</second>
</item>
<item>
<first>27</first>
<second>RAM</second>
</item>
</node2core>
</syndb>
</boost_serialization>
|
------------------------------------------------------------------------------
-- --
-- GNAT ncurses Binding --
-- --
-- Terminal_Interface.Curses.Forms.Field_Types.IntField --
-- --
-- B O D Y --
-- --
------------------------------------------------------------------------------
-- 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: 1.8 $
-- Binding Version 01.00
------------------------------------------------------------------------------
with Interfaces.C;
with Terminal_Interface.Curses.Aux; use Terminal_Interface.Curses.Aux;
package body Terminal_Interface.Curses.Forms.Field_Types.IntField is
use type Interfaces.C.int;
procedure Set_Field_Type (Fld : in Field;
Typ : in Integer_Field)
is
C_Integer_Field_Type : C_Field_Type;
pragma Import (C, C_Integer_Field_Type, "TYPE_INTEGER");
function Set_Fld_Type (F : Field := Fld;
Cft : C_Field_Type := C_Integer_Field_Type;
Arg1 : C_Int;
Arg2 : C_Long_Int;
Arg3 : C_Long_Int) return C_Int;
pragma Import (C, Set_Fld_Type, "set_field_type");
Res : Eti_Error;
begin
Res := Set_Fld_Type (Arg1 => C_Int (Typ.Precision),
Arg2 => C_Long_Int (Typ.Lower_Limit),
Arg3 => C_Long_Int (Typ.Upper_Limit));
if Res /= E_Ok then
Eti_Exception (Res);
end if;
Wrap_Builtin (Fld, Typ);
end Set_Field_Type;
end Terminal_Interface.Curses.Forms.Field_Types.IntField;
|
-- Copyright (c) 2020 Maxim Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-- License-Filename: LICENSE
-------------------------------------------------------------
with Ada.Streams;
with League.Strings;
with League.Base_Codecs;
with JWS;
procedure HS_256_Test is
function "+"
(Item : Wide_Wide_String) return League.Strings.Universal_String
renames League.Strings.To_Universal_String;
-- This data is from rfc7515 example.
Header_Encoded : constant Wide_Wide_String :=
"eyJ0eXAiOiJKV1QiLA0KICJhbGciOiJIUzI1NiJ9";
Payload_Encoded : constant Wide_Wide_String :=
"eyJpc3MiOiJqb2UiLA0KICJleHAiOjEzMDA4MTkzODAsDQogImh0dHA6Ly9leGFt" &
"cGxlLmNvbS9pc19yb290Ijp0cnVlfQ";
Signature_Encoded : constant Wide_Wide_String :=
"dBjftJeZ4CVP-mB92K27uhbUJU1p1r_wW1gFWFOEjXk";
Secret_Encoded : constant Wide_Wide_String :=
"AyM1SysPpbyDfgZld3umj1qzKObwVMkoqQ+EstJQLr/T+" &
"1qS0gZH75aKtMN3Yj0iPS4hcgUuTwjAzZr1Z9CAow==";
Token : constant Wide_Wide_String := Header_Encoded &
"." & Payload_Encoded &
"." & Signature_Encoded;
Secret : constant Ada.Streams.Stream_Element_Array :=
League.Base_Codecs.From_Base_64 (+Secret_Encoded).To_Stream_Element_Array;
Backward_Token : constant Wide_Wide_String :=
"eyJhbGciOiJIUzI1NiIsInR5cCI6IkpXVCJ9" & "." &
Payload_Encoded & "." &
"SfgggA-oZk7ztlq1i8Uz5VhmPmustakoDa9wAf8uHyQ";
Signature : JWS.JSON_Web_Signature;
Ok : Boolean;
Backward : JWS.JSON_Web_Signature;
Result : League.Strings.Universal_String;
begin
Signature.Validate_Compact_Serialization
(Value => +Token,
Secret => Secret,
Valid => Ok);
pragma Assert (Ok, "Validation failed");
Backward.Create
(Header => Signature.Header,
Payload => Signature.Payload,
Secret => Secret);
-- Backward token differs from the original, because Header has more
-- compact representation then original.
Result := Backward.Compact_Serialization;
pragma Assert
(Result.To_Wide_Wide_String = Backward_Token,
"Invalid Compact_Serialization");
end HS_256_Test;
|
-- Abstract :
--
-- Ada language specific indent options and functions
--
-- [1] ada.wy
-- [2] ada-indent-user-options.el
--
-- Copyright (C) 2017 - 2020 Free Software Foundation, Inc.
--
-- This library is free software; you can redistribute it and/or modify it
-- under terms of the GNU General Public License as published by the Free
-- Software Foundation; either version 3, or (at your option) any later
-- version. This library is distributed in the hope that it will be useful,
-- but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHAN-
-- TABILITY 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.
pragma License (Modified_GPL);
package Wisi.Ada is
Language_Protocol_Version : constant String := "3";
-- Defines the data passed to Initialize in Params.
--
-- This value must match ada-mode.el
-- ada-wisi-language-protocol-version.
--
-- Only changes once per ada-mode release. Increment as soon as
-- required, record new version in NEWS-ada-mode.text.
-- Indent parameters from [2]
Ada_Indent : Integer := 3;
Ada_Indent_Broken : Integer := 2;
Ada_Indent_Comment_Col_0 : Boolean := False;
Ada_Indent_Comment_GNAT : Boolean := False;
Ada_Indent_Label : Integer := -3;
Ada_Indent_Record_Rel_Type : Integer := 3;
Ada_Indent_Renames : Integer := 2;
Ada_Indent_Return : Integer := 0;
Ada_Indent_Use : Integer := 2;
Ada_Indent_When : Integer := 3;
Ada_Indent_With : Integer := 2;
Ada_Indent_Hanging_Rel_Exp : Boolean := False;
-- Other parameters
End_Names_Optional : Boolean := False;
type Parse_Data_Type is new Wisi.Parse_Data_Type with null record;
overriding
procedure Initialize
(Data : in out Parse_Data_Type;
Lexer : in WisiToken.Lexer.Handle;
Descriptor : access constant WisiToken.Descriptor;
Base_Terminals : in WisiToken.Base_Token_Array_Access;
Post_Parse_Action : in Post_Parse_Action_Type;
Begin_Line : in WisiToken.Line_Number_Type;
End_Line : in WisiToken.Line_Number_Type;
Begin_Indent : in Integer;
Params : in String);
-- Call Wisi_Runtime.Initialize, then:
--
-- If Params /= "", set all language-specific parameters from Params,
-- in declaration order; otherwise keep default values. Boolean is
-- represented by 0 | 1. Parameter values are space delimited.
--
-- Also do any other initialization that Data needs.
overriding
function Indent_Hanging_1
(Data : in out Parse_Data_Type;
Tree : in WisiToken.Syntax_Trees.Tree;
Tokens : in WisiToken.Syntax_Trees.Valid_Node_Index_Array;
Tree_Indenting : in WisiToken.Syntax_Trees.Valid_Node_Index;
Indenting_Comment : in Boolean;
Delta_1 : in Simple_Indent_Param;
Delta_2 : in Simple_Indent_Param;
Option : in Boolean;
Accumulate : in Boolean)
return Delta_Type;
overriding
procedure Refactor
(Data : in out Parse_Data_Type;
Tree : in WisiToken.Syntax_Trees.Tree;
Action : in Positive;
Edit_Begin : in WisiToken.Buffer_Pos);
----------
-- The following are declared in ada.wy %elisp_indent, and must match
-- Language_Indent_Function.
function Ada_Indent_Aggregate
(Data : in out Wisi.Parse_Data_Type'Class;
Tree : in WisiToken.Syntax_Trees.Tree;
Tokens : in WisiToken.Syntax_Trees.Valid_Node_Index_Array;
Tree_Indenting : in WisiToken.Syntax_Trees.Valid_Node_Index;
Indenting_Comment : in Boolean;
Args : in Wisi.Indent_Arg_Arrays.Vector)
return Wisi.Delta_Type;
-- [1] ada-indent-aggregate
function Ada_Indent_Renames_0
(Data : in out Wisi.Parse_Data_Type'Class;
Tree : in WisiToken.Syntax_Trees.Tree;
Tokens : in WisiToken.Syntax_Trees.Valid_Node_Index_Array;
Tree_Indenting : in WisiToken.Syntax_Trees.Valid_Node_Index;
Indenting_Comment : in Boolean;
Args : in Wisi.Indent_Arg_Arrays.Vector)
return Wisi.Delta_Type;
-- [1] ada-indent-renames
function Ada_Indent_Return_0
(Data : in out Wisi.Parse_Data_Type'Class;
Tree : in WisiToken.Syntax_Trees.Tree;
Tokens : in WisiToken.Syntax_Trees.Valid_Node_Index_Array;
Tree_Indenting : in WisiToken.Syntax_Trees.Valid_Node_Index;
Indenting_Comment : in Boolean;
Args : in Wisi.Indent_Arg_Arrays.Vector)
return Wisi.Delta_Type;
-- [1] ada-indent-return
function Ada_Indent_Record_0
(Data : in out Wisi.Parse_Data_Type'Class;
Tree : in WisiToken.Syntax_Trees.Tree;
Tokens : in WisiToken.Syntax_Trees.Valid_Node_Index_Array;
Tree_Indenting : in WisiToken.Syntax_Trees.Valid_Node_Index;
Indenting_Comment : in Boolean;
Args : in Wisi.Indent_Arg_Arrays.Vector)
return Wisi.Delta_Type;
-- [1] ada-indent-record
function Ada_Indent_Record_1
(Data : in out Wisi.Parse_Data_Type'Class;
Tree : in WisiToken.Syntax_Trees.Tree;
Tokens : in WisiToken.Syntax_Trees.Valid_Node_Index_Array;
Tree_Indenting : in WisiToken.Syntax_Trees.Valid_Node_Index;
Indenting_Comment : in Boolean;
Args : in Wisi.Indent_Arg_Arrays.Vector)
return Wisi.Delta_Type;
-- [1] ada-indent-record*
end Wisi.Ada;
|
-- Auto generated file. Don't edit
-- Read copyright and license at the end of this file
package body Encodings.Maps.CP_850 is
Forward : Forward_Map (Character'Val(16#80#) .. Character'Last) :=
(Wide_Character'Val( 16#C7#),
Wide_Character'Val( 16#FC#),
Wide_Character'Val( 16#E9#),
Wide_Character'Val( 16#E2#),
Wide_Character'Val( 16#E4#),
Wide_Character'Val( 16#E0#),
Wide_Character'Val( 16#E5#),
Wide_Character'Val( 16#E7#),
Wide_Character'Val( 16#EA#),
Wide_Character'Val( 16#EB#),
Wide_Character'Val( 16#E8#),
Wide_Character'Val( 16#EF#),
Wide_Character'Val( 16#EE#),
Wide_Character'Val( 16#EC#),
Wide_Character'Val( 16#C4#),
Wide_Character'Val( 16#C5#),
Wide_Character'Val( 16#C9#),
Wide_Character'Val( 16#E6#),
Wide_Character'Val( 16#C6#),
Wide_Character'Val( 16#F4#),
Wide_Character'Val( 16#F6#),
Wide_Character'Val( 16#F2#),
Wide_Character'Val( 16#FB#),
Wide_Character'Val( 16#F9#),
Wide_Character'Val( 16#FF#),
Wide_Character'Val( 16#D6#),
Wide_Character'Val( 16#DC#),
Wide_Character'Val( 16#F8#),
Wide_Character'Val( 16#A3#),
Wide_Character'Val( 16#D8#),
Wide_Character'Val( 16#D7#),
Wide_Character'Val( 16#192#),
Wide_Character'Val( 16#E1#),
Wide_Character'Val( 16#ED#),
Wide_Character'Val( 16#F3#),
Wide_Character'Val( 16#FA#),
Wide_Character'Val( 16#F1#),
Wide_Character'Val( 16#D1#),
Wide_Character'Val( 16#AA#),
Wide_Character'Val( 16#BA#),
Wide_Character'Val( 16#BF#),
Wide_Character'Val( 16#AE#),
Wide_Character'Val( 16#AC#),
Wide_Character'Val( 16#BD#),
Wide_Character'Val( 16#BC#),
Wide_Character'Val( 16#A1#),
Wide_Character'Val( 16#AB#),
Wide_Character'Val( 16#BB#),
Wide_Character'Val(16#2591#),
Wide_Character'Val(16#2592#),
Wide_Character'Val(16#2593#),
Wide_Character'Val(16#2502#),
Wide_Character'Val(16#2524#),
Wide_Character'Val( 16#C1#),
Wide_Character'Val( 16#C2#),
Wide_Character'Val( 16#C0#),
Wide_Character'Val( 16#A9#),
Wide_Character'Val(16#2563#),
Wide_Character'Val(16#2551#),
Wide_Character'Val(16#2557#),
Wide_Character'Val(16#255D#),
Wide_Character'Val( 16#A2#),
Wide_Character'Val( 16#A5#),
Wide_Character'Val(16#2510#),
Wide_Character'Val(16#2514#),
Wide_Character'Val(16#2534#),
Wide_Character'Val(16#252C#),
Wide_Character'Val(16#251C#),
Wide_Character'Val(16#2500#),
Wide_Character'Val(16#253C#),
Wide_Character'Val( 16#E3#),
Wide_Character'Val( 16#C3#),
Wide_Character'Val(16#255A#),
Wide_Character'Val(16#2554#),
Wide_Character'Val(16#2569#),
Wide_Character'Val(16#2566#),
Wide_Character'Val(16#2560#),
Wide_Character'Val(16#2550#),
Wide_Character'Val(16#256C#),
Wide_Character'Val( 16#A4#),
Wide_Character'Val( 16#F0#),
Wide_Character'Val( 16#D0#),
Wide_Character'Val( 16#CA#),
Wide_Character'Val( 16#CB#),
Wide_Character'Val( 16#C8#),
Wide_Character'Val( 16#131#),
Wide_Character'Val( 16#CD#),
Wide_Character'Val( 16#CE#),
Wide_Character'Val( 16#CF#),
Wide_Character'Val(16#2518#),
Wide_Character'Val(16#250C#),
Wide_Character'Val(16#2588#),
Wide_Character'Val(16#2584#),
Wide_Character'Val( 16#A6#),
Wide_Character'Val( 16#CC#),
Wide_Character'Val(16#2580#),
Wide_Character'Val( 16#D3#),
Wide_Character'Val( 16#DF#),
Wide_Character'Val( 16#D4#),
Wide_Character'Val( 16#D2#),
Wide_Character'Val( 16#F5#),
Wide_Character'Val( 16#D5#),
Wide_Character'Val( 16#B5#),
Wide_Character'Val( 16#FE#),
Wide_Character'Val( 16#DE#),
Wide_Character'Val( 16#DA#),
Wide_Character'Val( 16#DB#),
Wide_Character'Val( 16#D9#),
Wide_Character'Val( 16#FD#),
Wide_Character'Val( 16#DD#),
Wide_Character'Val( 16#AF#),
Wide_Character'Val( 16#B4#),
Wide_Character'Val( 16#AD#),
Wide_Character'Val( 16#B1#),
Wide_Character'Val(16#2017#),
Wide_Character'Val( 16#BE#),
Wide_Character'Val( 16#B6#),
Wide_Character'Val( 16#A7#),
Wide_Character'Val( 16#F7#),
Wide_Character'Val( 16#B8#),
Wide_Character'Val( 16#B0#),
Wide_Character'Val( 16#A8#),
Wide_Character'Val( 16#B7#),
Wide_Character'Val( 16#B9#),
Wide_Character'Val( 16#B3#),
Wide_Character'Val( 16#B2#),
Wide_Character'Val(16#25A0#),
Wide_Character'Val( 16#A0#));
Ranges : Maps.Wide_Ranges (1 .. 31) :=
((Wide_Character'Val( 16#0#),Wide_Character'Val( 16#7F#), 1),
(Wide_Character'Val( 16#A0#),Wide_Character'Val( 16#FF#), 129),
(Wide_Character'Val( 16#131#),Wide_Character'Val( 16#131#), 225),
(Wide_Character'Val( 16#192#),Wide_Character'Val( 16#192#), 226),
(Wide_Character'Val(16#2017#),Wide_Character'Val(16#2017#), 227),
(Wide_Character'Val(16#2500#),Wide_Character'Val(16#2500#), 228),
(Wide_Character'Val(16#2502#),Wide_Character'Val(16#2502#), 229),
(Wide_Character'Val(16#250C#),Wide_Character'Val(16#250C#), 230),
(Wide_Character'Val(16#2510#),Wide_Character'Val(16#2510#), 231),
(Wide_Character'Val(16#2514#),Wide_Character'Val(16#2514#), 232),
(Wide_Character'Val(16#2518#),Wide_Character'Val(16#2518#), 233),
(Wide_Character'Val(16#251C#),Wide_Character'Val(16#251C#), 234),
(Wide_Character'Val(16#2524#),Wide_Character'Val(16#2524#), 235),
(Wide_Character'Val(16#252C#),Wide_Character'Val(16#252C#), 236),
(Wide_Character'Val(16#2534#),Wide_Character'Val(16#2534#), 237),
(Wide_Character'Val(16#253C#),Wide_Character'Val(16#253C#), 238),
(Wide_Character'Val(16#2550#),Wide_Character'Val(16#2551#), 239),
(Wide_Character'Val(16#2554#),Wide_Character'Val(16#2554#), 241),
(Wide_Character'Val(16#2557#),Wide_Character'Val(16#2557#), 242),
(Wide_Character'Val(16#255A#),Wide_Character'Val(16#255A#), 243),
(Wide_Character'Val(16#255D#),Wide_Character'Val(16#255D#), 244),
(Wide_Character'Val(16#2560#),Wide_Character'Val(16#2560#), 245),
(Wide_Character'Val(16#2563#),Wide_Character'Val(16#2563#), 246),
(Wide_Character'Val(16#2566#),Wide_Character'Val(16#2566#), 247),
(Wide_Character'Val(16#2569#),Wide_Character'Val(16#2569#), 248),
(Wide_Character'Val(16#256C#),Wide_Character'Val(16#256C#), 249),
(Wide_Character'Val(16#2580#),Wide_Character'Val(16#2580#), 250),
(Wide_Character'Val(16#2584#),Wide_Character'Val(16#2584#), 251),
(Wide_Character'Val(16#2588#),Wide_Character'Val(16#2588#), 252),
(Wide_Character'Val(16#2591#),Wide_Character'Val(16#2593#), 253),
(Wide_Character'Val(16#25A0#),Wide_Character'Val(16#25A0#), 256));
Backward : Maps.Backward_Map (1 .. 256) :=
(Character'Val( 16#0#),
Character'Val( 16#1#),
Character'Val( 16#2#),
Character'Val( 16#3#),
Character'Val( 16#4#),
Character'Val( 16#5#),
Character'Val( 16#6#),
Character'Val( 16#7#),
Character'Val( 16#8#),
Character'Val( 16#9#),
Character'Val( 16#A#),
Character'Val( 16#B#),
Character'Val( 16#C#),
Character'Val( 16#D#),
Character'Val( 16#E#),
Character'Val( 16#F#),
Character'Val(16#10#),
Character'Val(16#11#),
Character'Val(16#12#),
Character'Val(16#13#),
Character'Val(16#14#),
Character'Val(16#15#),
Character'Val(16#16#),
Character'Val(16#17#),
Character'Val(16#18#),
Character'Val(16#19#),
Character'Val(16#1A#),
Character'Val(16#1B#),
Character'Val(16#1C#),
Character'Val(16#1D#),
Character'Val(16#1E#),
Character'Val(16#1F#),
Character'Val(16#20#),
Character'Val(16#21#),
Character'Val(16#22#),
Character'Val(16#23#),
Character'Val(16#24#),
Character'Val(16#25#),
Character'Val(16#26#),
Character'Val(16#27#),
Character'Val(16#28#),
Character'Val(16#29#),
Character'Val(16#2A#),
Character'Val(16#2B#),
Character'Val(16#2C#),
Character'Val(16#2D#),
Character'Val(16#2E#),
Character'Val(16#2F#),
Character'Val(16#30#),
Character'Val(16#31#),
Character'Val(16#32#),
Character'Val(16#33#),
Character'Val(16#34#),
Character'Val(16#35#),
Character'Val(16#36#),
Character'Val(16#37#),
Character'Val(16#38#),
Character'Val(16#39#),
Character'Val(16#3A#),
Character'Val(16#3B#),
Character'Val(16#3C#),
Character'Val(16#3D#),
Character'Val(16#3E#),
Character'Val(16#3F#),
Character'Val(16#40#),
Character'Val(16#41#),
Character'Val(16#42#),
Character'Val(16#43#),
Character'Val(16#44#),
Character'Val(16#45#),
Character'Val(16#46#),
Character'Val(16#47#),
Character'Val(16#48#),
Character'Val(16#49#),
Character'Val(16#4A#),
Character'Val(16#4B#),
Character'Val(16#4C#),
Character'Val(16#4D#),
Character'Val(16#4E#),
Character'Val(16#4F#),
Character'Val(16#50#),
Character'Val(16#51#),
Character'Val(16#52#),
Character'Val(16#53#),
Character'Val(16#54#),
Character'Val(16#55#),
Character'Val(16#56#),
Character'Val(16#57#),
Character'Val(16#58#),
Character'Val(16#59#),
Character'Val(16#5A#),
Character'Val(16#5B#),
Character'Val(16#5C#),
Character'Val(16#5D#),
Character'Val(16#5E#),
Character'Val(16#5F#),
Character'Val(16#60#),
Character'Val(16#61#),
Character'Val(16#62#),
Character'Val(16#63#),
Character'Val(16#64#),
Character'Val(16#65#),
Character'Val(16#66#),
Character'Val(16#67#),
Character'Val(16#68#),
Character'Val(16#69#),
Character'Val(16#6A#),
Character'Val(16#6B#),
Character'Val(16#6C#),
Character'Val(16#6D#),
Character'Val(16#6E#),
Character'Val(16#6F#),
Character'Val(16#70#),
Character'Val(16#71#),
Character'Val(16#72#),
Character'Val(16#73#),
Character'Val(16#74#),
Character'Val(16#75#),
Character'Val(16#76#),
Character'Val(16#77#),
Character'Val(16#78#),
Character'Val(16#79#),
Character'Val(16#7A#),
Character'Val(16#7B#),
Character'Val(16#7C#),
Character'Val(16#7D#),
Character'Val(16#7E#),
Character'Val(16#7F#),
Character'Val(16#FF#),
Character'Val(16#AD#),
Character'Val(16#BD#),
Character'Val(16#9C#),
Character'Val(16#CF#),
Character'Val(16#BE#),
Character'Val(16#DD#),
Character'Val(16#F5#),
Character'Val(16#F9#),
Character'Val(16#B8#),
Character'Val(16#A6#),
Character'Val(16#AE#),
Character'Val(16#AA#),
Character'Val(16#F0#),
Character'Val(16#A9#),
Character'Val(16#EE#),
Character'Val(16#F8#),
Character'Val(16#F1#),
Character'Val(16#FD#),
Character'Val(16#FC#),
Character'Val(16#EF#),
Character'Val(16#E6#),
Character'Val(16#F4#),
Character'Val(16#FA#),
Character'Val(16#F7#),
Character'Val(16#FB#),
Character'Val(16#A7#),
Character'Val(16#AF#),
Character'Val(16#AC#),
Character'Val(16#AB#),
Character'Val(16#F3#),
Character'Val(16#A8#),
Character'Val(16#B7#),
Character'Val(16#B5#),
Character'Val(16#B6#),
Character'Val(16#C7#),
Character'Val(16#8E#),
Character'Val(16#8F#),
Character'Val(16#92#),
Character'Val(16#80#),
Character'Val(16#D4#),
Character'Val(16#90#),
Character'Val(16#D2#),
Character'Val(16#D3#),
Character'Val(16#DE#),
Character'Val(16#D6#),
Character'Val(16#D7#),
Character'Val(16#D8#),
Character'Val(16#D1#),
Character'Val(16#A5#),
Character'Val(16#E3#),
Character'Val(16#E0#),
Character'Val(16#E2#),
Character'Val(16#E5#),
Character'Val(16#99#),
Character'Val(16#9E#),
Character'Val(16#9D#),
Character'Val(16#EB#),
Character'Val(16#E9#),
Character'Val(16#EA#),
Character'Val(16#9A#),
Character'Val(16#ED#),
Character'Val(16#E8#),
Character'Val(16#E1#),
Character'Val(16#85#),
Character'Val(16#A0#),
Character'Val(16#83#),
Character'Val(16#C6#),
Character'Val(16#84#),
Character'Val(16#86#),
Character'Val(16#91#),
Character'Val(16#87#),
Character'Val(16#8A#),
Character'Val(16#82#),
Character'Val(16#88#),
Character'Val(16#89#),
Character'Val(16#8D#),
Character'Val(16#A1#),
Character'Val(16#8C#),
Character'Val(16#8B#),
Character'Val(16#D0#),
Character'Val(16#A4#),
Character'Val(16#95#),
Character'Val(16#A2#),
Character'Val(16#93#),
Character'Val(16#E4#),
Character'Val(16#94#),
Character'Val(16#F6#),
Character'Val(16#9B#),
Character'Val(16#97#),
Character'Val(16#A3#),
Character'Val(16#96#),
Character'Val(16#81#),
Character'Val(16#EC#),
Character'Val(16#E7#),
Character'Val(16#98#),
Character'Val(16#D5#),
Character'Val(16#9F#),
Character'Val(16#F2#),
Character'Val(16#C4#),
Character'Val(16#B3#),
Character'Val(16#DA#),
Character'Val(16#BF#),
Character'Val(16#C0#),
Character'Val(16#D9#),
Character'Val(16#C3#),
Character'Val(16#B4#),
Character'Val(16#C2#),
Character'Val(16#C1#),
Character'Val(16#C5#),
Character'Val(16#CD#),
Character'Val(16#BA#),
Character'Val(16#C9#),
Character'Val(16#BB#),
Character'Val(16#C8#),
Character'Val(16#BC#),
Character'Val(16#CC#),
Character'Val(16#B9#),
Character'Val(16#CB#),
Character'Val(16#CA#),
Character'Val(16#CE#),
Character'Val(16#DF#),
Character'Val(16#DC#),
Character'Val(16#DB#),
Character'Val(16#B0#),
Character'Val(16#B1#),
Character'Val(16#B2#),
Character'Val(16#FE#));
function Decode (Char : Character) return Wide_Character is
begin
return Decode (Char, Forward);
end Decode;
procedure Decode
(Text : in Raw_String;
Text_Last : out Natural;
Result : out Wide_String;
Result_Last : out Natural;
Map : in Encoding := Encodings.CP_850)
is
begin
Decode (Text, Text_Last, Result, Result_Last, Forward);
end Decode;
procedure Encode
(Text : in Wide_String;
Text_Last : out Natural;
Result : out Raw_String;
Result_Last : out Natural;
Map : in Encoding := Encodings.CP_850)
is
begin
Encode (Text, Text_Last, Result, Result_Last,
Ranges, Backward);
end Encode;
begin
Encoder_List (Encodings.CP_850) := Encode'Access;
Decoder_List (Encodings.CP_850) := Decode'Access;
end Encodings.Maps.CP_850;
------------------------------------------------------------------------------
-- Copyright (c) 2006-2013, Maxim Reznik
-- 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 Maxim Reznik, 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 OWNER 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 Ada.Text_IO;
with Ada.Text_IO.Complex_IO;
with Ada.Numerics.Generic_Real_Arrays;
with Ada.Numerics.Generic_Complex_Types;
with Ada.Numerics.Generic_Complex_Arrays;
with Ada.Numerics.Generic_Elementary_Functions;
with Ada.Numerics.Generic_Complex_Elementary_Functions;
with Ada_Lapack;
use Ada.Text_IO;
procedure tdgesvd is
type Real is digits 18;
package Real_Arrays is new Ada.Numerics.Generic_Real_Arrays (Real);
package Complex_Types is new Ada.Numerics.Generic_Complex_Types (Real);
package Complex_Arrays is new Ada.Numerics.Generic_Complex_Arrays (Real_Arrays, Complex_Types);
package Real_Maths is new Ada.Numerics.Generic_Elementary_Functions (Real);
package Complex_Maths is new Ada.Numerics.Generic_Complex_Elementary_Functions (Complex_Types);
package Real_IO is new Ada.Text_IO.Float_IO (Real);
package Integer_IO is new Ada.Text_IO.Integer_IO (Integer);
package Complex_IO is new Ada.Text_IO.Complex_IO (Complex_Types);
package Lapack is new Ada_Lapack(Real, Complex_Types, Real_Arrays, Complex_Arrays);
use Lapack;
use Real_Arrays;
use Complex_Types;
use Complex_Arrays;
use Real_IO;
use Integer_IO;
use Complex_IO;
use Real_Maths;
use Complex_Maths;
function min(left,right : Integer) return Integer is
begin
if left < right
then return left;
else return right;
end if;
end min;
one : constant Real := 1.0e0;
zero : constant Real := 0.0e0;
matrix : Real_Matrix (1..6,1..5);
matrix_rows : Integer := Matrix'Length (1);
matrix_cols : Integer := Matrix'Length (2);
num_singular : Integer;
singular_values : Real_Vector (1..min(matrix_rows,matrix_cols));
u_rows : Integer := matrix_rows;
u_cols : Integer := matrix_rows;
u_matrix : Real_Matrix (1..u_rows,1..u_cols);
v_rows : Integer := matrix_cols;
v_cols : Integer := matrix_cols;
v_transpose : Real_Matrix (1..v_rows,1..v_cols);
short_vector : Real_Vector (1..1);
return_code : Integer;
begin
matrix :=( ( 8.79, 9.93, 9.83, 5.45, 3.16),
( 6.11, 6.91, 5.04, -0.27, 7.98),
( -9.15, -7.93, 4.86, 4.85, 3.01),
( 9.57, 1.64, 8.83, 0.74, 5.80),
( -3.49, 4.02, 9.80, 10.00, 4.27),
( 9.84, 0.15, -8.99, -6.02, -5.31) );
GESVD ( JOBU => 'S',
JOBVT => 'S',
M => matrix_rows,
N => matrix_cols,
A => matrix,
LDA => matrix_rows,
S => singular_values,
U => u_matrix,
LDU => u_rows,
VT => v_transpose,
LDVT => v_rows,
WORK => short_vector,
LWORK => -1,
INFO => return_code );
declare
work_vector_rows : Integer := Integer( short_vector(1) );
work_vector : Real_Vector (1 .. work_vector_rows);
begin
GESVD ( JOBU => 'S',
JOBVT => 'S',
M => matrix_rows,
N => matrix_cols,
A => matrix,
LDA => matrix_rows,
S => singular_values,
U => u_matrix,
LDU => u_rows,
VT => v_transpose,
LDVT => v_rows,
WORK => work_vector,
LWORK => work_vector_rows,
INFO => return_code );
end;
if return_code > 0 then
Put ("DGESVD failed, the return code was : ");
Put ( return_code );
New_line;
else
num_singular := min(matrix_rows,matrix_cols);
put_line("Singular values");
for i in 1..num_singular loop
put(singular_values(i),3,4,0);
end loop;
new_line;
new_line;
put_line("Matrix U");
for i in 1..matrix_rows loop
for j in 1..num_singular loop
put(u_matrix(i,j),3,4,0);
end loop;
new_line;
end loop;
new_line;
put_line("Matrix V transpose");
for i in 1..num_singular loop
for j in 1..matrix_cols loop
put(v_transpose(i,j),3,4,0);
end loop;
new_line;
end loop;
end if;
end tdgesvd;
|
------------------------------------------------------------------------------
-- --
-- GNAT EXAMPLE --
-- --
-- Copyright (C) 2013, 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 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 Ada.Text_IO; use Ada.Text_IO;
package body Netutils is
function To_In_Addr (Addr : Ip_Addr) return In_Addr is
begin
return Shift_Left (Unsigned_32 (Addr (1)), 24)
or Shift_Left (Unsigned_32 (Addr (2)), 16)
or Shift_Left (Unsigned_32 (Addr (3)), 8)
or Shift_Left (Unsigned_32 (Addr (4)), 0);
end To_In_Addr;
function To_Ip_Addr (Addr : In_Addr) return Ip_Addr is
Res : Ip_Addr;
Tmp : In_Addr := Addr;
begin
for I in reverse Res'Range loop
Res (I) := Unsigned_8 (Tmp and 16#ff#);
Tmp := Shift_Right (Tmp, 8);
end loop;
return Res;
end To_Ip_Addr;
procedure Put_Dec (V : Unsigned_8) is
Res : String (1 .. 3);
P : Natural := Res'Last;
Val : Unsigned_8 := V;
begin
loop
Res (P) := Character'Val (Character'Pos ('0') + Val mod 10);
Val := Val / 10;
exit when Val = 0;
P := P - 1;
end loop;
Put (Res (P .. Res'Last));
end Put_Dec;
procedure Put_Dec (V : Unsigned_16) is
Res : String (1 .. 5);
P : Natural := Res'Last;
Val : Unsigned_16 := V;
begin
loop
Res (P) := Character'Val (Character'Pos ('0') + Val mod 10);
Val := Val / 10;
exit when Val = 0;
P := P - 1;
end loop;
Put (Res (P .. Res'Last));
end Put_Dec;
procedure Put_Hex (V : Unsigned_8) is
begin
pragma Warnings (Off, "loop range may be null");
for I in reverse 0 .. 1 loop
Put (Hex_Digits (Natural (Shift_Right (V, 4 * I) and 15)));
end loop;
pragma Warnings (On, "loop range may be null");
end Put_Hex;
procedure Put_Hex (V : Unsigned_16) is
begin
for I in reverse 0 .. 3 loop
Put (Hex_Digits (Natural (Shift_Right (V, 4 * I) and 15)));
end loop;
end Put_Hex;
procedure Put_Hex (V : Unsigned_32) is
begin
for I in reverse 0 .. 7 loop
Put (Hex_Digits (Natural (Shift_Right (V, 4 * I) and 15)));
end loop;
end Put_Hex;
procedure Disp_Ip_Addr (Addr : Ip_Addr) is
begin
for I in 1 .. 3 loop
Put_Dec (Addr (I));
Put ('.');
end loop;
Put_Dec (Addr (4));
end Disp_Ip_Addr;
procedure Disp_Ip_Addr (Addr : In_Addr) is
begin
Disp_Ip_Addr (To_Ip_Addr (Addr));
end Disp_Ip_Addr;
procedure Disp_Eth_Addr (Addr : Eth_Addr) is
begin
for I in Addr'Range loop
Put_Hex (Addr (I));
exit when I = Addr'Last;
Put (':');
end loop;
end Disp_Eth_Addr;
function Read_BE1 (Off : Natural) return Unsigned_8 is
begin
return Packet (Off);
end Read_BE1;
function Read_BE2 (Off : Natural) return Unsigned_16 is
begin
return Shift_Left (Unsigned_16 (Packet (Off)), 8)
or Unsigned_16 (Packet (Off + 1));
end Read_BE2;
function Read_BE4 (Off : Natural) return Unsigned_32 is
begin
return Shift_Left (Unsigned_32 (Packet (Off)), 24)
or Shift_Left (Unsigned_32 (Packet (Off + 1)), 16)
or Shift_Left (Unsigned_32 (Packet (Off + 2)), 8)
or Shift_Left (Unsigned_32 (Packet (Off + 3)), 0);
end Read_BE4;
function Read_Eth (Off : Natural) return Eth_Addr is
begin
return Eth_Addr (Packet (Off .. Off + 5));
end Read_Eth;
procedure Write_Eth (Addr : Eth_Addr) is
begin
Packet (Packet_Off .. Packet_Off + Addr'Length - 1) := Netbuf (Addr);
Packet_Off := Packet_Off + Addr'Length;
end Write_Eth;
procedure Write_BE1 (V : Unsigned_8; Off : Natural) is
begin
Packet (Off) := V;
end Write_BE1;
procedure Write_BE2 (V : Unsigned_16; Off : Natural) is
begin
Packet (Off + 0) := Unsigned_8 (Shift_Right (V, 8) and 16#ff#);
Packet (Off + 1) := Unsigned_8 (Shift_Right (V, 0) and 16#ff#);
end Write_BE2;
procedure Write_2 (V : Unsigned_16; Off : Natural) is
pragma Warnings (Off);
Tmp : Unsigned_16;
for Tmp'Address use Packet (Off)'Address;
pragma Warnings (On);
begin
Tmp := V;
end Write_2;
procedure Write_BE4 (V : Unsigned_32; Off : Natural) is
begin
Packet (Off + 0) := Unsigned_8 (Shift_Right (V, 24) and 16#ff#);
Packet (Off + 1) := Unsigned_8 (Shift_Right (V, 16) and 16#ff#);
Packet (Off + 2) := Unsigned_8 (Shift_Right (V, 8) and 16#ff#);
Packet (Off + 3) := Unsigned_8 (Shift_Right (V, 0) and 16#ff#);
end Write_BE4;
procedure Write_BE1 (V : Unsigned_8) is
begin
Write_BE1 (V, Packet_Off);
Packet_Off := Packet_Off + 1;
end Write_BE1;
procedure Write_BE2 (V : Unsigned_16) is
begin
Write_BE2 (V, Packet_Off);
Packet_Off := Packet_Off + 2;
end Write_BE2;
procedure Write_BE4 (V : Unsigned_32) is
begin
Write_BE4 (V, Packet_Off);
Packet_Off := Packet_Off + 4;
end Write_BE4;
end Netutils;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- A D A . E X C E P T I O N S . L A S T _ C H A N C E _ H A N D L E R --
-- --
-- S p e c --
-- --
-- Copyright (C) 2003-2013, 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. --
-- --
------------------------------------------------------------------------------
-- Last chance handler. Unhandled exceptions are passed to this routine
pragma Compiler_Unit_Warning;
procedure Ada.Exceptions.Last_Chance_Handler
(Except : Exception_Occurrence);
pragma Export (C,
Last_Chance_Handler,
"__gnat_last_chance_handler");
pragma No_Return (Last_Chance_Handler);
|
------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- Localization, Internationalization, Globalization for Ada --
-- --
-- Tools Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2010, 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 Scanner_Extractor;
with Scanner_Utilities;
package body Scanner_Analyzer is
use Scanner_Extractor;
use Scanner_Utilities;
procedure Set_0000_Class_To_FFFE_Class;
-- Sets meta class of 16#0000# code point to meta class of 16#FFFE# code
-- point.
-------------
-- Analyze --
-------------
procedure Analyze is
begin
case Mode is
when Regexp =>
null;
when XML =>
Set_0000_Class_To_FFFE_Class;
end case;
end Analyze;
----------------------------------
-- Set_0000_Class_To_FFFE_Class --
----------------------------------
procedure Set_0000_Class_To_FFFE_Class is
procedure Lookup (Position : Plane_Vectors.Cursor);
-- Searchs 16#00FF# plane and extract meta class.
procedure Modify (Position : Plane_Vectors.Cursor);
-- Searchs 16#0000# plane and modify meta class.
Meta_Class : Integer := 0;
------------
-- Lookup --
------------
procedure Lookup (Position : Plane_Vectors.Cursor) is
Plane : constant Plane_Information
:= Plane_Vectors.Element (Position);
begin
if Plane.Number = 16#00FF# then
Meta_Class := Plane.Values.Element (16#FE#);
end if;
end Lookup;
------------
-- Modify --
------------
procedure Modify (Position : Plane_Vectors.Cursor) is
Plane : Plane_Information := Plane_Vectors.Element (Position);
begin
if Plane.Number = 16#0000# then
Plane.Values.Replace_Element (16#00#, Meta_Class);
YY_EC_Planes.Replace_Element (Position, Plane);
end if;
end Modify;
begin
YY_EC_Planes.Iterate (Lookup'Access);
if Meta_Class = 0 then
raise Program_Error;
end if;
YY_EC_Planes.Iterate (Modify'Access);
end Set_0000_Class_To_FFFE_Class;
end Scanner_Analyzer;
|
------------------------------------------------------------------------------
-- --
-- Copyright (C) 2020, 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 HAL; use HAL;
with SAM_SVD.EIC; use SAM_SVD.EIC;
package body SAM.EIC is
-----------------
-- EIC_Enabled --
-----------------
function EIC_Enabled return Boolean
is (EIC_Periph.CTRLA.ENABLE);
----------------
-- Enable_EIC --
----------------
procedure Enable_EIC (Clock : EIC_Clock) is
begin
EIC_Periph.CTRLA.CKSEL :=
CTRLA_CKSELSelect'Enum_Val (if Clock = CLK_ULP32K then 1 else 0);
EIC_Periph.CTRLA.ENABLE := True;
while EIC_Periph.SYNCBUSY.ENABLE loop
null;
end loop;
end Enable_EIC;
---------------
-- Configure --
---------------
procedure Configure
(Pin : EXTINT_Pin;
Sense : Sense_Kind;
Enable_Interrupt : Boolean;
Debouncer : Boolean;
Event_Output : Boolean := False)
is
CFG_Reg : constant Natural := (if Pin < 8 then 0 else 1);
CFG_Index : constant Natural := Natural (Pin) mod 8;
Pin_Mask : constant UInt16 := UInt16 (2 ** Natural (Pin));
begin
case CFG_Index is
when 0 =>
EIC_Periph.CONFIG (CFG_Reg).SENSE0 :=
CONFIG_SENSE0Select'Enum_Val (Sense_Kind'Enum_Rep (Sense));
when 1 =>
EIC_Periph.CONFIG (CFG_Reg).SENSE1 :=
CONFIG_SENSE1Select'Enum_Val (Sense_Kind'Enum_Rep (Sense));
when 2 =>
EIC_Periph.CONFIG (CFG_Reg).SENSE2 :=
CONFIG_SENSE2Select'Enum_Val (Sense_Kind'Enum_Rep (Sense));
when 3 =>
EIC_Periph.CONFIG (CFG_Reg).SENSE3 :=
CONFIG_SENSE3Select'Enum_Val (Sense_Kind'Enum_Rep (Sense));
when 4 =>
EIC_Periph.CONFIG (CFG_Reg).SENSE4 :=
CONFIG_SENSE4Select'Enum_Val (Sense_Kind'Enum_Rep (Sense));
when 5 =>
EIC_Periph.CONFIG (CFG_Reg).SENSE5 :=
CONFIG_SENSE5Select'Enum_Val (Sense_Kind'Enum_Rep (Sense));
when 6 =>
EIC_Periph.CONFIG (CFG_Reg).SENSE6 :=
CONFIG_SENSE6Select'Enum_Val (Sense_Kind'Enum_Rep (Sense));
when others =>
EIC_Periph.CONFIG (CFG_Reg).SENSE7 :=
CONFIG_SENSE7Select'Enum_Val (Sense_Kind'Enum_Rep (Sense));
end case;
if Enable_Interrupt then
EIC_Periph.INTENSET.EXTINT := Pin_Mask;
else
EIC_Periph.INTENCLR.EXTINT := Pin_Mask;
end if;
if Debouncer then
EIC_Periph.DEBOUNCEN.DEBOUNCEN :=
EIC_Periph.DEBOUNCEN.DEBOUNCEN or Pin_Mask;
else
EIC_Periph.DEBOUNCEN.DEBOUNCEN :=
EIC_Periph.DEBOUNCEN.DEBOUNCEN and (not Pin_Mask);
end if;
if Event_Output then
EIC_Periph.EVCTRL.EXTINTEO :=
EIC_Periph.EVCTRL.EXTINTEO or Pin_Mask;
else
EIC_Periph.EVCTRL.EXTINTEO :=
EIC_Periph.EVCTRL.EXTINTEO and (not Pin_Mask);
end if;
end Configure;
---------------
-- Pin_State --
---------------
function Pin_State (Pin : EXTINT_Pin) return Boolean is
Pin_Mask : constant UInt16 := UInt16 (2 ** Natural (Pin));
begin
return (EIC_Periph.PINSTATE.PINSTATE and Pin_Mask) /= 0;
end Pin_State;
----------------------
-- Enable_Interrupt --
----------------------
procedure Enable_Interrupt (Pin : EXTINT_Pin) is
Pin_Mask : constant UInt16 := UInt16 (2 ** Natural (Pin));
begin
EIC_Periph.INTENSET.EXTINT := Pin_Mask;
end Enable_Interrupt;
-----------------------
-- Disable_Interrupt --
-----------------------
procedure Disable_Interrupt (Pin : EXTINT_Pin) is
Pin_Mask : constant UInt16 := UInt16 (2 ** Natural (Pin));
begin
EIC_Periph.INTENCLR.EXTINT := Pin_Mask;
end Disable_Interrupt;
---------------------
-- Clear_Interrupt --
---------------------
procedure Clear_Interrupt (Pin : EXTINT_Pin) is
Pin_Mask : constant UInt16 := UInt16 (2 ** Natural (Pin));
begin
EIC_Periph.INTFLAG.EXTINT := Pin_Mask;
end Clear_Interrupt;
---------------------
-- Interrupt_State --
---------------------
function Interrupt_State (Pin : EXTINT_Pin) return Boolean is
Pin_Mask : constant UInt16 := UInt16 (2 ** Natural (Pin));
begin
return (EIC_Periph.INTFLAG.EXTINT and Pin_Mask) /= 0;
end Interrupt_State;
end SAM.EIC;
|
-- sarge.adb - Implementation file for the Sarge command line argument parser project.
-- Revision 0
-- Features:
-- -
-- Notes:
-- -
-- 2019/04/10, Maya Posch
with Ada.Command_Line;
with Ada.Text_IO;
use Ada.Text_IO;
package body Sarge is
--- SET ARGUMENT ---
procedure setArgument(arg_short: in string, arg_long: in string, desc: in string, hasVal: in boolean) is
begin
arg: Argument := (arg_short => arg_short, arg_long => arg_long, description => desc, hasValue => hasVal);
args.append(arg);
-- Set up links.
if arg_short'Length > 0 then
argNames.include(arg_short, arg'Access);
end if;
if arg_long'Length > 0 then
argNames.include(arg_long, arg'Access);
end if;
end setArgument;
--- SET DESCRIPTION ---
procedure setDescription(desc: in string) is
begin
description := desc;
end setDescription;
--- SET USAGE ---
procedure setUsage(usage: in string) is
begin
usage := usage;
end setUsage;
--- PARSE ARGUMENTS ---
function parseArguments() return boolean is
flag_it: Cursor;
begin
--
execName := Ada.Command_Line.command_name;
expectValue: boolean := Boolean.False;
for arg in 1..Ada.Command_Line.argument_count loop
-- Each flag will start with a '-' character. Multiple flags can be joined together in
-- the same string if they're the short form flag type (one character per flag).
if expectValue is Boolean.True then
-- Copy value.
Get(flag_it).value := arg;
expectValue := Boolean.False;
elsif arg(arg'First) = '-' then
-- Parse flag.
-- First check for the long form.
if arg(arg'First + 1) = '-' then
-- Long form of the flag.
if not argNames.contains(arg(arg'First + 2..arg'Last)) then
-- Flag wasn't found. Abort.
put_line("Long flag " & arg & " wasn't found");
return Boolean.False;
end if;
-- Mark as found.
flag_it := argNames.find(arg);
Element(flag_it).parsed := Boolean.True;
flagCounter := flagCounter + 1;
if Element(flag_it).hasValue = Boolean.True then
expectValue := Boolean.True;
end if;
else
-- Parse short form flag. Parse all of them sequentially. Only the last one
-- is allowed to have an additional value following it.
for i in arg'range loop
flag_it := argNames.find(arg(arg'First + (1 + i)..arg'First + (2 + i)));
if flag_it = No_Elements then
-- Flag wasn't found. Abort.
put_line("Short flag " & arg(arg'First + (1 + i)..arg'First + (2 + i)) &
" wasn't found.");
return Boolean.False;
-- Mark as found.
Element(flag_it).parsed := Boolean.True;
flagCounter := flagCounter + 1;
if Element(flag_it).hasValue = Boolean.True then
if i /= (arg'Length - 1) then
-- Flag isn't at end, thus cannot have value.
put_line("Flag " & arg(arg'First + (1 + i)..arg'First + (2 + i))
& " needs to be followed by a value string.");
return Boolean.False;
else
expectValue := Boolean.True;
end if;
end if;
end loop;
end if;
else
put_line("Expected flag, not value.");
return Boolean.False;
end if;
end loop
parsed := Boolean.True;
return Boolean.True;
end parseArguments;
--- GET FLAG ---
function getFlag(arg_flag: in string, arg_value: out arg_value) return boolean is
flag_it: Cursor;
begin
if parsed /= Boolean.True then
return Boolean.False;
end if;
flag_it := argNames.find(arg_flag);
if flag_it = No_Elements then
return Boolean.False;
elsif Element(flag_it).parsed /= Boolean.True then
return Boolean.False;
end if;
if Element(flag_it).hasValue = Boolean.True then
arg_value := Element(flag_it).value;
end if;
return Boolean.True;
end getFlag;
--- EXISTS ---
function exists(arg_flag: in string) returns boolean is
flag_it: Cursor;
begin
if parsed /= Boolean.True then
return Boolean.False;
end if;
flag_it := argNames.find(arg_flag);
if flag_it = No_Elements then
return Boolean.False;
elsif Element(flag_it).parsed /= Boolean.True then
return Boolean.False;
end if;
return Boolean.True;
end exists;
--- PRINT HELP ---
procedure printHelp() is
begin
put_line();
put_line(description);
put_line("Usage:");
put_line(usage);
put_line();
put_line("Options:");
-- Print out the options.
for opt in args.Iterate loop
put_line("-" & opt.arg_short & " --" & opt.arg_long & " " & opt.description);
end loop;
end printHelp;
--- FLAG COUNT ---
function flagCount() return integer is
begin
return flagCount;
end flagCount;
--- EXECUTABLE NAME ---
function executableName() return string is
begin
return execName;
end executableName;
end Sarge;
|
-- Copyright (c) 2019 Maxim Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-- License-Filename: LICENSE
-------------------------------------------------------------
with Program.Elements.Definitions;
with Program.Lexical_Elements;
with Program.Elements.Subtype_Indications;
with Program.Elements.Expressions;
package Program.Elements.Private_Extension_Definitions is
pragma Pure (Program.Elements.Private_Extension_Definitions);
type Private_Extension_Definition is
limited interface and Program.Elements.Definitions.Definition;
type Private_Extension_Definition_Access is
access all Private_Extension_Definition'Class with Storage_Size => 0;
not overriding function Ancestor
(Self : Private_Extension_Definition)
return not null Program.Elements.Subtype_Indications
.Subtype_Indication_Access is abstract;
not overriding function Progenitors
(Self : Private_Extension_Definition)
return Program.Elements.Expressions.Expression_Vector_Access is abstract;
not overriding function Has_Abstract
(Self : Private_Extension_Definition)
return Boolean is abstract;
not overriding function Has_Limited
(Self : Private_Extension_Definition)
return Boolean is abstract;
not overriding function Has_Synchronized
(Self : Private_Extension_Definition)
return Boolean is abstract;
type Private_Extension_Definition_Text is limited interface;
type Private_Extension_Definition_Text_Access is
access all Private_Extension_Definition_Text'Class with Storage_Size => 0;
not overriding function To_Private_Extension_Definition_Text
(Self : aliased in out Private_Extension_Definition)
return Private_Extension_Definition_Text_Access is abstract;
not overriding function Abstract_Token
(Self : Private_Extension_Definition_Text)
return Program.Lexical_Elements.Lexical_Element_Access is abstract;
not overriding function Limited_Token
(Self : Private_Extension_Definition_Text)
return Program.Lexical_Elements.Lexical_Element_Access is abstract;
not overriding function Synchronized_Token
(Self : Private_Extension_Definition_Text)
return Program.Lexical_Elements.Lexical_Element_Access is abstract;
not overriding function New_Token
(Self : Private_Extension_Definition_Text)
return not null Program.Lexical_Elements.Lexical_Element_Access
is abstract;
not overriding function And_Token
(Self : Private_Extension_Definition_Text)
return Program.Lexical_Elements.Lexical_Element_Access is abstract;
not overriding function With_Token
(Self : Private_Extension_Definition_Text)
return not null Program.Lexical_Elements.Lexical_Element_Access
is abstract;
not overriding function Private_Token
(Self : Private_Extension_Definition_Text)
return not null Program.Lexical_Elements.Lexical_Element_Access
is abstract;
end Program.Elements.Private_Extension_Definitions;
|
-- This file is generated by SWIG. Please do not modify by hand.
--
with Interfaces.C;
with xcb.xcb_setup_authenticate_t;
with Interfaces.C;
with Interfaces.C.Pointers;
package xcb.xcb_setup_authenticate_iterator_t is
-- Item
--
type Item is record
data : access xcb.xcb_setup_authenticate_t.Item;
the_rem : aliased Interfaces.C.int;
index : aliased Interfaces.C.int;
end record;
-- Item_Array
--
type Item_Array is
array
(Interfaces.C
.size_t range <>) of aliased xcb.xcb_setup_authenticate_iterator_t
.Item;
-- Pointer
--
package C_Pointers is new Interfaces.C.Pointers
(Index => Interfaces.C.size_t,
Element => xcb.xcb_setup_authenticate_iterator_t.Item,
Element_Array => xcb.xcb_setup_authenticate_iterator_t.Item_Array,
Default_Terminator => (others => <>));
subtype Pointer is C_Pointers.Pointer;
-- Pointer_Array
--
type Pointer_Array is
array
(Interfaces.C
.size_t range <>) of aliased xcb.xcb_setup_authenticate_iterator_t
.Pointer;
-- Pointer_Pointer
--
package C_Pointer_Pointers is new Interfaces.C.Pointers
(Index => Interfaces.C.size_t,
Element => xcb.xcb_setup_authenticate_iterator_t.Pointer,
Element_Array => xcb.xcb_setup_authenticate_iterator_t.Pointer_Array,
Default_Terminator => null);
subtype Pointer_Pointer is C_Pointer_Pointers.Pointer;
end xcb.xcb_setup_authenticate_iterator_t;
|
-- This file is generated by SWIG. Please do not modify by hand.
--
with Interfaces;
with Interfaces.C;
with Interfaces.C.Pointers;
package xcb.xcb_glx_feedback_buffer_request_t is
-- Item
--
type Item is record
major_opcode : aliased Interfaces.Unsigned_8;
minor_opcode : aliased Interfaces.Unsigned_8;
length : aliased Interfaces.Unsigned_16;
context_tag : aliased xcb.xcb_glx_context_tag_t;
size : aliased Interfaces.Integer_32;
the_type : aliased Interfaces.Integer_32;
end record;
-- Item_Array
--
type Item_Array is
array
(Interfaces.C
.size_t range <>) of aliased xcb.xcb_glx_feedback_buffer_request_t
.Item;
-- Pointer
--
package C_Pointers is new Interfaces.C.Pointers
(Index => Interfaces.C.size_t,
Element => xcb.xcb_glx_feedback_buffer_request_t.Item,
Element_Array => xcb.xcb_glx_feedback_buffer_request_t.Item_Array,
Default_Terminator => (others => <>));
subtype Pointer is C_Pointers.Pointer;
-- Pointer_Array
--
type Pointer_Array is
array
(Interfaces.C
.size_t range <>) of aliased xcb.xcb_glx_feedback_buffer_request_t
.Pointer;
-- Pointer_Pointer
--
package C_Pointer_Pointers is new Interfaces.C.Pointers
(Index => Interfaces.C.size_t,
Element => xcb.xcb_glx_feedback_buffer_request_t.Pointer,
Element_Array => xcb.xcb_glx_feedback_buffer_request_t.Pointer_Array,
Default_Terminator => null);
subtype Pointer_Pointer is C_Pointer_Pointers.Pointer;
end xcb.xcb_glx_feedback_buffer_request_t;
|
-- { dg-do compile }
with Ada.Streams; use Ada.Streams;
procedure Addr9_1 is
type Signal_Type is mod 2 ** 16;
type A_Item is record
I : Signal_Type;
Q : Signal_Type;
end record
with Size => 32;
for A_Item use record
I at 0 range 0 .. 15;
Q at 2 range 0 .. 15;
end record;
type A_Array_Type is
array (Positive range <>)
of A_Item
with Alignment => 16;
pragma Pack (A_Array_Type);
type B_Array_Type is new Ada.Streams.Stream_Element_Array
with Alignment => 16;
Ct_Count : constant := 7_000;
package Set is
A : aliased A_Array_Type := (1 .. Ct_Count => <>);
B : aliased B_Array_Type := (1 .. Ct_Count * A_Item'Size / 8 => <>);
for B'Address use A'Address;
end Set;
begin
null;
end;
|
package body Problem_2 is
function Solution_1( Max : Int128 ) return Int128 is
N_1_Term : Int128 := 1;
N_Term : Int128 := 1;
Value : Int128 := 0;
Sum : Int128 := 0;
begin
loop
Value := N_1_Term + N_Term;
exit when Value > Max;
if Value mod 2 = 0 then
Sum := Sum + Value;
end if;
N_1_Term := N_Term;
N_Term := Value;
end loop;
return Sum;
end Solution_1;
function Solution_2( Max : Int128 ) return Int128 is
N_1_Term : Int128 := 2;
N_Term : Int128 := 8;
Sum : Int128 := N_1_Term + N_Term;
Value : Int128 := 0;
begin
loop
Value := 4*N_Term + N_1_Term;
exit when Value > Max;
Sum := Sum + Value;
N_1_Term := N_Term;
N_Term := Value;
end loop;
return Sum;
end Solution_2;
procedure Test_Solution_1 is
Solution : constant Int128 := 4613732;
begin
Assert( Solution_1(4_000_000) = Solution);
end Test_Solution_1;
procedure Test_Solution_2 is
Solution : constant Int128 := 4613732;
begin
Assert( Solution_2(4_000_000) = Solution);
end Test_Solution_2;
function Get_Solutions return Solution_Case is
Ret : Solution_Case;
begin
Set_Name( Ret, "Problem 2" );
Add_Test( Ret, Test_Solution_1'Access );
Add_Test( Ret, Test_Solution_2'Access );
return Ret;
end Get_Solutions;
end Problem_2;
|
-----------------------------------------------------------------------
-- util-encoders-base16 -- Encode/Decode a stream in hexadecimal
-- Copyright (C) 2009, 2010, 2011, 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.Streams;
-- The <b>Util.Encodes.Base16</b> packages encodes and decodes streams
-- in hexadecimal.
package Util.Encoders.Base16 is
pragma Preelaborate;
-- ------------------------------
-- Base16 encoder
-- ------------------------------
-- This <b>Encoder</b> translates the (binary) input stream into
-- an ascii hexadecimal stream. The encoding alphabet is: 0123456789ABCDEF.
type Encoder is new Util.Encoders.Transformer with private;
-- Encodes the binary input stream represented by <b>Data</b> into
-- the a base16 (hexadecimal) output stream <b>Into</b>.
--
-- If the transformer does not have enough room to write the result,
-- it must return in <b>Encoded</b> the index of the last encoded
-- position in the <b>Data</b> stream.
--
-- The transformer returns in <b>Last</b> the last valid position
-- in the output stream <b>Into</b>.
--
-- The <b>Encoding_Error</b> exception is raised if the input
-- stream cannot be transformed.
overriding
procedure Transform (E : in out Encoder;
Data : in Ada.Streams.Stream_Element_Array;
Into : out Ada.Streams.Stream_Element_Array;
Last : out Ada.Streams.Stream_Element_Offset;
Encoded : out Ada.Streams.Stream_Element_Offset);
-- ------------------------------
-- Base16 decoder
-- ------------------------------
-- The <b>Decoder</b> decodes an hexadecimal stream into a binary stream.
type Decoder is new Util.Encoders.Transformer with private;
-- Decodes the base16 input stream represented by <b>Data</b> into
-- the binary output stream <b>Into</b>.
--
-- If the transformer does not have enough room to write the result,
-- it must return in <b>Encoded</b> the index of the last encoded
-- position in the <b>Data</b> stream.
--
-- The transformer returns in <b>Last</b> the last valid position
-- in the output stream <b>Into</b>.
--
-- The <b>Encoding_Error</b> exception is raised if the input
-- stream cannot be transformed.
overriding
procedure Transform (E : in out Decoder;
Data : in Ada.Streams.Stream_Element_Array;
Into : out Ada.Streams.Stream_Element_Array;
Last : out Ada.Streams.Stream_Element_Offset;
Encoded : out Ada.Streams.Stream_Element_Offset);
private
type Encoder is new Util.Encoders.Transformer with null record;
type Decoder is new Util.Encoders.Transformer with null record;
generic
type Input_Char is (<>);
type Output_Char is (<>);
type Index is range <>;
type Output_Index is range <>;
type Input is array (Index range <>) of Input_Char;
type Output is array (Output_Index range <>) of Output_Char;
package Encoding is
procedure Encode (From : in Input;
Into : in out Output;
Last : out Output_Index;
Encoded : out Index);
procedure Decode (From : in Input;
Into : in out Output;
Last : out Output_Index;
Encoded : out Index);
end Encoding;
end Util.Encoders.Base16;
|
with impact.d3.Shape.concave,
impact.d3.triangle_Callback;
package impact.d3.Shape.concave.static_plane
--
-- Simulates an infinite non-moving (static) collision plane.
--
is
type Item is new impact.d3.Shape.concave.Item with private;
--- Forge
--
function to_static_plane_Shape (planeNormal : in math.Vector_3;
planeConstant : in math.Real ) return Item;
overriding procedure destruct (Self : in out Item);
--- Attributes
--
-- function localGetSupportingVertex (Self : in Item; vec : in Vector_3) return Vector_3;
-- function localGetSupportingVertexWithoutMargin (Self : in Item; vec : in Vector_3) return Vector_3;
-- procedure batchedUnitVectorGetSupportingVertexWithoutMargin (Self : in Item; vectors : in Vector_3_array;
-- supportVerticesOut : out Vector_3_array;
-- numVectors : in Integer );
overriding procedure getAabb (Self : in Item; t : in Transform_3d;
aabbMin, aabbMax : out Vector_3) ;
--
-- 'getAabb's default implementation is brute force, expected derived classes to implement a fast dedicated version
-- procedure setMargin (Self : in out Item; margin : in Scalar) ;
-- function getMargin (Self : in Item) return Scalar ;
overriding procedure calculateLocalInertia (Self : in Item; mass : in math.Real;
inertia : out math.Vector_3);
overriding function getName (Self : in Item) return String ;
-- function getRadius (Self : in Item) return math.Real;
overriding procedure setLocalScaling (Self : in out Item; scaling : in math.Vector_3);
overriding function getLocalScaling (Self : in Item) return math.Vector_3;
function getPlaneNormal (Self : in Item) return math.Vector_3;
function getPlaneConstant (Self : in Item) return math.Real;
overriding procedure processAllTriangles (Self : in Item; callback : access impact.d3.triangle_Callback.Item'Class;
aabbMin, aabbMax : in math.Vector_3);
private
type Item is new impact.d3.Shape.concave.Item with
record
m_localAabbMin,
m_localAabbMax : math.Vector_3;
m_planeNormal : math.Vector_3;
m_planeConstant : math.Real;
m_localScaling : math.Vector_3;
end record;
end impact.d3.Shape.concave.static_plane;
-- ATTRIBUTE_ALIGNED16(class) impact.d3.Shape.concave.static_plane : public impact.d3.Shape.concave
-- {
-- public:
--
--
-- const impact.d3.Vector& getPlaneNormal() const
-- {
-- return m_planeNormal;
-- }
--
-- const impact.d3.Scalar& getPlaneConstant() const
-- {
-- return m_planeConstant;
-- }
--
-- //debugging
-- virtual const char* getName()const {return "STATICPLANE";}
--
-- };
|
package Giza.Bitmap_Fonts.FreeSansOblique12pt7b is
Font : constant Giza.Font.Ref_Const;
private
FreeSansOblique12pt7bBitmaps : aliased constant Font_Bitmap := (
16#0C#, 16#61#, 16#86#, 16#18#, 16#63#, 16#0C#, 16#30#, 16#C2#, 16#18#,
16#61#, 16#00#, 16#00#, 16#C3#, 16#00#, 16#CF#, 16#3C#, 16#E2#, 16#8A#,
16#20#, 16#01#, 16#8C#, 16#03#, 16#18#, 16#06#, 16#60#, 16#18#, 16#C0#,
16#31#, 16#03#, 16#FF#, 16#87#, 16#FF#, 16#03#, 16#18#, 16#0C#, 16#60#,
16#18#, 16#C0#, 16#23#, 16#03#, 16#FF#, 16#8F#, 16#FF#, 16#02#, 16#30#,
16#0C#, 16#60#, 16#18#, 16#80#, 16#63#, 16#00#, 16#C6#, 16#00#, 16#00#,
16#80#, 16#3F#, 16#03#, 16#FC#, 16#32#, 16#73#, 16#91#, 16#98#, 16#8C#,
16#CC#, 16#06#, 16#60#, 16#3E#, 16#00#, 16#7E#, 16#00#, 16#FC#, 16#0C#,
16#EC#, 16#43#, 16#62#, 16#1B#, 16#11#, 16#9D#, 16#9C#, 16#7F#, 16#C1#,
16#F8#, 16#02#, 16#00#, 16#10#, 16#01#, 16#80#, 16#00#, 16#00#, 16#01#,
16#83#, 16#C0#, 16#60#, 16#FC#, 16#08#, 16#30#, 16#C2#, 16#0C#, 16#18#,
16#81#, 16#83#, 16#30#, 16#38#, 16#C4#, 16#03#, 16#F1#, 16#00#, 16#3C#,
16#40#, 16#00#, 16#10#, 16#F0#, 16#06#, 16#3F#, 16#00#, 16#8C#, 16#30#,
16#23#, 16#06#, 16#08#, 16#60#, 16#C3#, 16#0E#, 16#30#, 16#C0#, 16#FC#,
16#10#, 16#0F#, 16#00#, 16#01#, 16#E0#, 16#3F#, 16#81#, 16#8C#, 16#18#,
16#60#, 16#C3#, 16#06#, 16#30#, 16#1F#, 16#00#, 16#E0#, 16#1F#, 16#01#,
16#DC#, 16#D8#, 16#6D#, 16#81#, 16#EC#, 16#0E#, 16#60#, 16#73#, 16#87#,
16#CF#, 16#E6#, 16#3E#, 16#38#, 16#FE#, 16#A0#, 16#03#, 16#06#, 16#04#,
16#0C#, 16#18#, 16#18#, 16#30#, 16#30#, 16#60#, 16#60#, 16#60#, 16#C0#,
16#C0#, 16#C0#, 16#C0#, 16#C0#, 16#C0#, 16#C0#, 16#C0#, 16#40#, 16#60#,
16#60#, 16#20#, 16#04#, 16#06#, 16#06#, 16#02#, 16#03#, 16#03#, 16#03#,
16#03#, 16#03#, 16#03#, 16#03#, 16#03#, 16#06#, 16#06#, 16#06#, 16#0C#,
16#0C#, 16#18#, 16#18#, 16#30#, 16#20#, 16#60#, 16#C0#, 16#0C#, 16#0C#,
16#49#, 16#7F#, 16#3C#, 16#3C#, 16#6C#, 16#00#, 16#03#, 16#00#, 16#30#,
16#03#, 16#00#, 16#30#, 16#FF#, 16#FF#, 16#FF#, 16#06#, 16#00#, 16#60#,
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16#83#, 16#03#, 16#30#, 16#60#, 16#C4#, 16#0C#, 16#18#, 16#1B#, 16#E1#,
16#FF#, 16#3C#, 16#73#, 16#83#, 16#30#, 16#33#, 16#03#, 16#30#, 16#37#,
16#06#, 16#60#, 16#66#, 16#06#, 16#60#, 16#66#, 16#0C#, 16#40#, 16#C0#,
16#07#, 16#C1#, 16#FE#, 16#38#, 16#77#, 16#03#, 16#60#, 16#3E#, 16#03#,
16#C0#, 16#3C#, 16#06#, 16#C0#, 16#6C#, 16#0E#, 16#E1#, 16#C7#, 16#F8#,
16#3E#, 16#00#, 16#0C#, 16#F0#, 16#3F#, 16#E0#, 16#E1#, 16#C3#, 16#03#,
16#1C#, 16#0C#, 16#60#, 16#31#, 16#80#, 16#C6#, 16#07#, 16#38#, 16#18#,
16#E0#, 16#E3#, 16#C7#, 16#0F#, 16#F8#, 16#37#, 16#C1#, 16#80#, 16#06#,
16#00#, 16#18#, 16#00#, 16#60#, 16#03#, 16#80#, 16#00#, 16#0F#, 16#98#,
16#FF#, 16#8E#, 16#3C#, 16#E0#, 16#E6#, 16#03#, 16#70#, 16#1B#, 16#01#,
16#98#, 16#0C#, 16#C0#, 16#66#, 16#07#, 16#38#, 16#70#, 16#FF#, 16#83#,
16#CC#, 16#00#, 16#60#, 16#07#, 16#00#, 16#30#, 16#01#, 16#80#, 16#0C#,
16#00#, 16#1B#, 16#8F#, 16#CF#, 16#07#, 16#03#, 16#01#, 16#80#, 16#C0#,
16#E0#, 16#60#, 16#30#, 16#18#, 16#0C#, 16#06#, 16#00#, 16#0F#, 16#C1#,
16#FF#, 16#30#, 16#76#, 16#03#, 16#60#, 16#07#, 16#80#, 16#3F#, 16#80#,
16#7E#, 16#00#, 16#6C#, 16#06#, 16#E0#, 16#CF#, 16#F8#, 16#3E#, 16#00#,
16#18#, 16#30#, 16#67#, 16#EF#, 16#C6#, 16#0C#, 16#10#, 16#60#, 16#C1#,
16#83#, 16#0C#, 16#18#, 16#3C#, 16#38#, 16#30#, 16#33#, 16#03#, 16#30#,
16#32#, 16#06#, 16#60#, 16#66#, 16#06#, 16#60#, 16#66#, 16#06#, 16#C0#,
16#EC#, 16#0C#, 16#C3#, 16#CF#, 16#FC#, 16#7C#, 16#C0#, 16#C0#, 16#78#,
16#1B#, 16#03#, 16#60#, 16#CE#, 16#18#, 16#C6#, 16#19#, 16#83#, 16#30#,
16#6C#, 16#0D#, 16#81#, 16#E0#, 16#38#, 16#03#, 16#00#, 16#C1#, 16#C1#,
16#E0#, 16#E1#, 16#B0#, 16#F0#, 16#D8#, 16#78#, 16#CC#, 16#6C#, 16#66#,
16#36#, 16#63#, 16#33#, 16#30#, 16#99#, 16#B0#, 16#78#, 16#D8#, 16#3C#,
16#78#, 16#1C#, 16#3C#, 16#0E#, 16#1C#, 16#06#, 16#0E#, 16#00#, 16#0C#,
16#1C#, 16#30#, 16#E0#, 16#E3#, 16#01#, 16#98#, 16#07#, 16#C0#, 16#0E#,
16#00#, 16#30#, 16#01#, 16#E0#, 16#0F#, 16#80#, 16#73#, 16#01#, 16#8C#,
16#0C#, 16#38#, 16#60#, 16#60#, 16#18#, 16#0C#, 16#60#, 16#61#, 16#83#,
16#86#, 16#0C#, 16#1C#, 16#60#, 16#31#, 16#80#, 16#CC#, 16#03#, 16#30#,
16#0D#, 16#80#, 16#34#, 16#00#, 16#F0#, 16#03#, 16#80#, 16#06#, 16#00#,
16#30#, 16#00#, 16#80#, 16#06#, 16#00#, 16#F0#, 16#03#, 16#80#, 16#00#,
16#1F#, 16#F1#, 16#FF#, 16#00#, 16#70#, 16#0C#, 16#01#, 16#80#, 16#30#,
16#06#, 16#00#, 16#C0#, 16#18#, 16#03#, 16#00#, 16#60#, 16#0F#, 16#FC#,
16#FF#, 16#C0#, 16#07#, 16#0E#, 16#18#, 16#18#, 16#18#, 16#18#, 16#30#,
16#30#, 16#30#, 16#30#, 16#60#, 16#E0#, 16#E0#, 16#60#, 16#60#, 16#60#,
16#C0#, 16#C0#, 16#C0#, 16#C0#, 16#C0#, 16#F0#, 16#60#, 16#04#, 16#10#,
16#82#, 16#08#, 16#21#, 16#84#, 16#10#, 16#41#, 16#08#, 16#20#, 16#82#,
16#10#, 16#41#, 16#04#, 16#30#, 16#82#, 16#00#, 16#00#, 16#06#, 16#07#,
16#80#, 16#C0#, 16#60#, 16#30#, 16#18#, 16#0C#, 16#0C#, 16#06#, 16#03#,
16#01#, 16#C0#, 16#E0#, 16#60#, 16#60#, 16#30#, 16#18#, 16#0C#, 16#0C#,
16#06#, 16#03#, 16#01#, 16#83#, 16#83#, 16#80#, 16#38#, 16#0F#, 16#82#,
16#38#, 16#83#, 16#E0#, 16#38#);
FreeSansOblique12pt7bGlyphs : aliased constant Glyph_Array := (
(0, 0, 0, 7, 0, 1), -- 0x20 ' '
(0, 6, 18, 7, 3, -17), -- 0x21 '!'
(14, 6, 6, 9, 4, -16), -- 0x22 '"'
(19, 15, 18, 13, 1, -17), -- 0x23 '#'
(53, 13, 21, 13, 2, -17), -- 0x24 '$'
(88, 19, 17, 21, 3, -16), -- 0x25 '%'
(129, 13, 17, 16, 2, -16), -- 0x26 '&'
(157, 2, 6, 5, 4, -16), -- 0x27 '''
(159, 8, 23, 8, 3, -17), -- 0x28 '('
(182, 8, 23, 8, 0, -16), -- 0x29 ')'
(205, 8, 8, 9, 4, -17), -- 0x2A '*'
(213, 12, 11, 14, 2, -10), -- 0x2B '+'
(230, 4, 6, 7, 1, -1), -- 0x2C ','
(233, 6, 2, 8, 2, -7), -- 0x2D '-'
(235, 3, 2, 7, 2, -1), -- 0x2E '.'
(236, 10, 18, 7, 0, -17), -- 0x2F '/'
(259, 12, 17, 13, 2, -16), -- 0x30 '0'
(285, 7, 17, 13, 5, -16), -- 0x31 '1'
(300, 14, 17, 13, 1, -16), -- 0x32 '2'
(330, 12, 17, 13, 2, -16), -- 0x33 '3'
(356, 12, 17, 13, 2, -16), -- 0x34 '4'
(382, 13, 17, 13, 2, -16), -- 0x35 '5'
(410, 12, 17, 13, 2, -16), -- 0x36 '6'
(436, 13, 17, 13, 3, -16), -- 0x37 '7'
(464, 12, 17, 13, 2, -16), -- 0x38 '8'
(490, 12, 17, 13, 2, -16), -- 0x39 '9'
(516, 5, 12, 7, 3, -11), -- 0x3A ':'
(524, 6, 16, 7, 2, -11), -- 0x3B ';'
(536, 13, 12, 14, 2, -11), -- 0x3C '<'
(556, 13, 6, 14, 2, -8), -- 0x3D '='
(566, 13, 12, 14, 1, -10), -- 0x3E '>'
(586, 11, 18, 13, 4, -17), -- 0x3F '?'
(611, 23, 21, 24, 2, -17), -- 0x40 '@'
(672, 16, 18, 16, 0, -17), -- 0x41 'A'
(708, 15, 18, 16, 2, -17), -- 0x42 'B'
(742, 16, 18, 17, 2, -17), -- 0x43 'C'
(778, 16, 18, 17, 2, -17), -- 0x44 'D'
(814, 16, 18, 16, 2, -17), -- 0x45 'E'
(850, 15, 18, 14, 2, -17), -- 0x46 'F'
(884, 16, 18, 19, 3, -17), -- 0x47 'G'
(920, 17, 18, 17, 2, -17), -- 0x48 'H'
(959, 6, 18, 7, 2, -17), -- 0x49 'I'
(973, 13, 18, 12, 1, -17), -- 0x4A 'J'
(1003, 18, 18, 16, 2, -17), -- 0x4B 'K'
(1044, 11, 18, 13, 2, -17), -- 0x4C 'L'
(1069, 20, 18, 20, 2, -17), -- 0x4D 'M'
(1114, 17, 18, 18, 2, -17), -- 0x4E 'N'
(1153, 17, 18, 18, 2, -17), -- 0x4F 'O'
(1192, 15, 18, 15, 2, -17), -- 0x50 'P'
(1226, 18, 19, 19, 2, -17), -- 0x51 'Q'
(1269, 16, 18, 17, 2, -17), -- 0x52 'R'
(1305, 15, 18, 16, 2, -17), -- 0x53 'S'
(1339, 14, 18, 15, 4, -17), -- 0x54 'T'
(1371, 16, 18, 17, 3, -17), -- 0x55 'U'
(1407, 15, 18, 15, 4, -17), -- 0x56 'V'
(1441, 22, 18, 22, 4, -17), -- 0x57 'W'
(1491, 19, 18, 16, 0, -17), -- 0x58 'X'
(1534, 16, 18, 16, 4, -17), -- 0x59 'Y'
(1570, 17, 18, 15, 1, -17), -- 0x5A 'Z'
(1609, 10, 23, 7, 0, -17), -- 0x5B '['
(1638, 3, 18, 7, 4, -17), -- 0x5C '\'
(1645, 10, 23, 7, -1, -16), -- 0x5D ']'
(1674, 10, 9, 11, 2, -16), -- 0x5E '^'
(1686, 14, 1, 13, -1, 4), -- 0x5F '_'
(1688, 4, 4, 8, 4, -17), -- 0x60 '`'
(1690, 11, 13, 13, 2, -12), -- 0x61 'a'
(1708, 13, 18, 13, 1, -17), -- 0x62 'b'
(1738, 11, 13, 12, 2, -12), -- 0x63 'c'
(1756, 14, 18, 13, 2, -17), -- 0x64 'd'
(1788, 12, 13, 13, 2, -12), -- 0x65 'e'
(1808, 8, 18, 6, 2, -17), -- 0x66 'f'
(1826, 14, 18, 13, 1, -12), -- 0x67 'g'
(1858, 12, 18, 13, 1, -17), -- 0x68 'h'
(1885, 5, 18, 5, 2, -17), -- 0x69 'i'
(1897, 9, 23, 6, -1, -17), -- 0x6A 'j'
(1923, 13, 18, 12, 1, -17), -- 0x6B 'k'
(1953, 5, 18, 5, 2, -17), -- 0x6C 'l'
(1965, 19, 13, 20, 1, -12), -- 0x6D 'm'
(1996, 12, 13, 13, 1, -12), -- 0x6E 'n'
(2016, 12, 13, 13, 2, -12), -- 0x6F 'o'
(2036, 14, 18, 14, 0, -12), -- 0x70 'p'
(2068, 13, 18, 13, 2, -12), -- 0x71 'q'
(2098, 9, 13, 8, 1, -12), -- 0x72 'r'
(2113, 12, 13, 12, 1, -12), -- 0x73 's'
(2133, 7, 16, 6, 2, -15), -- 0x74 't'
(2147, 12, 13, 13, 2, -12), -- 0x75 'u'
(2167, 11, 13, 12, 3, -12), -- 0x76 'v'
(2185, 17, 13, 17, 3, -12), -- 0x77 'w'
(2213, 14, 13, 12, 0, -12), -- 0x78 'x'
(2236, 14, 18, 11, 0, -12), -- 0x79 'y'
(2268, 12, 13, 12, 1, -12), -- 0x7A 'z'
(2288, 8, 23, 8, 3, -17), -- 0x7B '{'
(2311, 6, 23, 6, 1, -17), -- 0x7C '|'
(2329, 9, 23, 8, -1, -16), -- 0x7D '}'
(2355, 11, 5, 14, 3, -10)); -- 0x7E '~'
Font_D : aliased constant Bitmap_Font :=
(FreeSansOblique12pt7bBitmaps'Access,
FreeSansOblique12pt7bGlyphs'Access,
28);
Font : constant Giza.Font.Ref_Const := Font_D'Access;
end Giza.Bitmap_Fonts.FreeSansOblique12pt7b;
|
------------------------------------------------------------------------------
-- --
-- GNAT ncurses Binding --
-- --
-- Terminal_Interface.Curses.Forms.Field_Types.RegExp --
-- --
-- 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: 1.11 $
-- Binding Version 01.00
------------------------------------------------------------------------------
package Terminal_Interface.Curses.Forms.Field_Types.RegExp is
pragma Preelaborate (Terminal_Interface.Curses.Forms.Field_Types.RegExp);
type String_Access is access String;
type Regular_Expression_Field is new Field_Type with
record
Regular_Expression : String_Access;
end record;
procedure Set_Field_Type (Fld : in Field;
Typ : in Regular_Expression_Field);
pragma Inline (Set_Field_Type);
end Terminal_Interface.Curses.Forms.Field_Types.RegExp;
|
<?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>AXIvideo2Mat</name>
<ret_bitwidth>0</ret_bitwidth>
<ports class_id="2" tracking_level="0" version="0">
<count>13</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>AXI_video_strm_V_data_V</name>
<fileName></fileName>
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<originalName>AXI_video_strm.V.data.V</originalName>
<rtlName></rtlName>
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</Obj>
<bitwidth>24</bitwidth>
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<item class_id_reference="3" object_id="_2">
<Value>
<Obj>
<type>1</type>
<id>2</id>
<name>AXI_video_strm_V_keep_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
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<originalName>AXI_video_strm.V.keep.V</originalName>
<rtlName></rtlName>
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</Value>
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<bit_vecs>
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</item>
<item class_id_reference="3" object_id="_3">
<Value>
<Obj>
<type>1</type>
<id>3</id>
<name>AXI_video_strm_V_strb_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
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<inlineStackInfo>
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<originalName>AXI_video_strm.V.strb.V</originalName>
<rtlName></rtlName>
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</item>
<item class_id_reference="3" object_id="_4">
<Value>
<Obj>
<type>1</type>
<id>4</id>
<name>AXI_video_strm_V_user_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
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<originalName>AXI_video_strm.V.user.V</originalName>
<rtlName></rtlName>
<coreName></coreName>
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<bitwidth>1</bitwidth>
</Value>
<direction>0</direction>
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</item>
<item class_id_reference="3" object_id="_5">
<Value>
<Obj>
<type>1</type>
<id>5</id>
<name>AXI_video_strm_V_last_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
<item_version>0</item_version>
</inlineStackInfo>
<originalName>AXI_video_strm.V.last.V</originalName>
<rtlName></rtlName>
<coreName></coreName>
</Obj>
<bitwidth>1</bitwidth>
</Value>
<direction>0</direction>
<if_type>0</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="_6">
<Value>
<Obj>
<type>1</type>
<id>6</id>
<name>AXI_video_strm_V_id_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
<item_version>0</item_version>
</inlineStackInfo>
<originalName>AXI_video_strm.V.id.V</originalName>
<rtlName></rtlName>
<coreName></coreName>
</Obj>
<bitwidth>1</bitwidth>
</Value>
<direction>0</direction>
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<bit_vecs>
<count>0</count>
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</bit_vecs>
</item>
<item class_id_reference="3" object_id="_7">
<Value>
<Obj>
<type>1</type>
<id>7</id>
<name>AXI_video_strm_V_dest_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
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<inlineStackInfo>
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</item>
<item class_id_reference="3" object_id="_8">
<Value>
<Obj>
<type>1</type>
<id>8</id>
<name>img_rows_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
<item_version>0</item_version>
</inlineStackInfo>
<originalName>img.rows.V</originalName>
<rtlName></rtlName>
<coreName>FIFO</coreName>
</Obj>
<bitwidth>12</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="_9">
<Value>
<Obj>
<type>1</type>
<id>9</id>
<name>img_cols_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
<item_version>0</item_version>
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<originalName></originalName>
<rtlName></rtlName>
<coreName>FIFO</coreName>
</Obj>
<bitwidth>12</bitwidth>
</Value>
<direction>0</direction>
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</item>
<item class_id_reference="3" object_id="_10">
<Value>
<Obj>
<type>1</type>
<id>10</id>
<name>img_data_stream_0_V</name>
<fileName></fileName>
<fileDirectory></fileDirectory>
<lineNumber>0</lineNumber>
<contextFuncName></contextFuncName>
<inlineStackInfo>
<count>0</count>
<item_version>0</item_version>
</inlineStackInfo>
<originalName>img.data_stream[0].V</originalName>
<rtlName></rtlName>
<coreName>FIFO</coreName>
</Obj>
<bitwidth>8</bitwidth>
</Value>
<direction>1</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="_11">
<Value>
<Obj>
<type>1</type>
<id>11</id>
<name>img_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>img.data_stream[1].V</originalName>
<rtlName></rtlName>
<coreName>FIFO</coreName>
</Obj>
<bitwidth>8</bitwidth>
</Value>
<direction>1</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="_12">
<Value>
<Obj>
<type>1</type>
<id>12</id>
<name>img_data_stream_2_V</name>
<fileName></fileName>
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<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_334">
<id>74</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_335">
<id>88</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_336">
<id>89</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_337">
<id>90</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_338">
<id>91</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_339">
<id>92</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_340">
<id>93</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_341">
<id>94</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_342">
<id>96</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_343">
<id>7</id>
<operations>
<count>1</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_344">
<id>98</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_345">
<id>8</id>
<operations>
<count>13</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_346">
<id>100</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_347">
<id>101</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_348">
<id>102</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_349">
<id>103</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_350">
<id>105</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_351">
<id>106</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_352">
<id>107</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_353">
<id>108</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_354">
<id>109</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_355">
<id>110</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_356">
<id>111</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_357">
<id>112</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_358">
<id>113</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_359">
<id>9</id>
<operations>
<count>2</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_360">
<id>115</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_361">
<id>116</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
</states>
<transitions class_id="29" tracking_level="0" version="0">
<count>12</count>
<item_version>0</item_version>
<item class_id="30" tracking_level="1" version="0" object_id="_362">
<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="_363">
<inState>3</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="_364">
<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 class_id="34" tracking_level="0" version="0">
<first class_id="35" tracking_level="0" version="0">
<first>53</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_365">
<inState>7</inState>
<outState>8</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="_366">
<inState>9</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="_367">
<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>41</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_368">
<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>
<first>
<first>41</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_369">
<inState>6</inState>
<outState>5</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="_370">
<inState>5</inState>
<outState>7</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>66</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_371">
<inState>5</inState>
<outState>6</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>66</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_372">
<inState>8</inState>
<outState>9</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>102</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_373">
<inState>8</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>102</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>56</count>
<item_version>0</item_version>
<item class_id="38" tracking_level="0" version="0">
<first>26</first>
<second class_id="39" tracking_level="0" version="0">
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>28</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>30</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>31</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>32</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>33</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>39</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>40</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>41</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>42</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>44</first>
<second>
<first>1</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>2</first>
<second>0</second>
</second>
</item>
<item>
<first>48</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>50</first>
<second>
<first>3</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>60</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>62</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>63</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>64</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>65</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>66</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>68</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>69</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>71</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>75</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>76</first>
<second>
<first>4</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>81</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>83</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>84</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>85</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>86</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>87</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>90</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>91</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>92</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>95</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>96</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>98</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>100</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>101</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>102</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>103</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>109</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>110</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>111</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>113</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>116</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>118</first>
<second>
<first>3</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>34</first>
<second class_id="42" tracking_level="0" version="0">
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>45</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>49</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>61</first>
<second>
<first>3</first>
<second>3</second>
</second>
</item>
<item>
<first>70</first>
<second>
<first>4</first>
<second>4</second>
</second>
</item>
<item>
<first>77</first>
<second>
<first>4</first>
<second>5</second>
</second>
</item>
<item>
<first>82</first>
<second>
<first>4</first>
<second>4</second>
</second>
</item>
<item>
<first>97</first>
<second>
<first>4</first>
<second>5</second>
</second>
</item>
<item>
<first>99</first>
<second>
<first>5</first>
<second>5</second>
</second>
</item>
<item>
<first>104</first>
<second>
<first>6</first>
<second>6</second>
</second>
</item>
<item>
<first>114</first>
<second>
<first>6</first>
<second>6</second>
</second>
</item>
<item>
<first>117</first>
<second>
<first>7</first>
<second>7</second>
</second>
</item>
<item>
<first>119</first>
<second>
<first>3</first>
<second>3</second>
</second>
</item>
</bblk_ent_exit>
<regions class_id="43" tracking_level="0" version="0">
<count>4</count>
<item_version>0</item_version>
<item class_id="44" tracking_level="1" version="0" object_id="_374">
<region_name>loop_wait_for_start</region_name>
<basic_blocks>
<count>1</count>
<item_version>0</item_version>
<item>45</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>1</pipe_depth>
</item>
<item class_id_reference="44" object_id="_375">
<region_name>loop_width</region_name>
<basic_blocks>
<count>4</count>
<item_version>0</item_version>
<item>70</item>
<item>77</item>
<item>82</item>
<item>97</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>2</pipe_depth>
</item>
<item class_id_reference="44" object_id="_376">
<region_name>hls_label_6</region_name>
<basic_blocks>
<count>1</count>
<item_version>0</item_version>
<item>97</item>
</basic_blocks>
<nodes>
<count>6</count>
<item_version>0</item_version>
<item>88</item>
<item>89</item>
<item>90</item>
<item>91</item>
<item>92</item>
<item>93</item>
</nodes>
<anchor_node>88</anchor_node>
<region_type>1</region_type>
<interval>0</interval>
<pipe_depth>0</pipe_depth>
</item>
<item class_id_reference="44" object_id="_377">
<region_name>loop_wait_for_eol</region_name>
<basic_blocks>
<count>2</count>
<item_version>0</item_version>
<item>104</item>
<item>114</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>1</pipe_depth>
</item>
</regions>
<dp_fu_nodes class_id="45" tracking_level="0" version="0">
<count>36</count>
<item_version>0</item_version>
<item class_id="46" tracking_level="0" version="0">
<first>94</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>46</item>
</second>
</item>
<item>
<first>98</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>26</item>
</second>
</item>
<item>
<first>104</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>28</item>
</second>
</item>
<item>
<first>112</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>30</item>
</second>
</item>
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<item_version>0</item_version>
<item>111</item>
</second>
</item>
<item>
<first>tmp_last_V_reg_397</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>42</item>
</second>
</item>
<item>
<first>tmp_reg_431</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>85</item>
</second>
</item>
</dp_regname_nodes>
<dp_reg_phi>
<count>12</count>
<item_version>0</item_version>
<item>
<first>157</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>50</item>
</second>
</item>
<item>
<first>167</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>51</item>
</second>
</item>
<item>
<first>177</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>52</item>
</second>
</item>
<item>
<first>188</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>62</item>
</second>
</item>
<item>
<first>199</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>63</item>
</second>
</item>
<item>
<first>210</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>64</item>
</second>
</item>
<item>
<first>221</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>65</item>
</second>
</item>
<item>
<first>233</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>83</item>
</second>
</item>
<item>
<first>246</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>84</item>
</second>
</item>
<item>
<first>258</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>100</item>
</second>
</item>
<item>
<first>270</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>101</item>
</second>
</item>
<item>
<first>282</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>102</item>
</second>
</item>
</dp_reg_phi>
<dp_regname_phi>
<count>12</count>
<item_version>0</item_version>
<item>
<first>axi_data_V1_i_reg_167</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>51</item>
</second>
</item>
<item>
<first>axi_data_V_1_i_reg_199</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>63</item>
</second>
</item>
<item>
<first>axi_data_V_3_i_reg_270</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>101</item>
</second>
</item>
<item>
<first>axi_last_V1_i_reg_157</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>50</item>
</second>
</item>
<item>
<first>axi_last_V_2_i_reg_233</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>83</item>
</second>
</item>
<item>
<first>axi_last_V_3_i_reg_258</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>100</item>
</second>
</item>
<item>
<first>eol_2_i_reg_282</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>102</item>
</second>
</item>
<item>
<first>eol_i_reg_221</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>65</item>
</second>
</item>
<item>
<first>eol_reg_188</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>62</item>
</second>
</item>
<item>
<first>p_Val2_s_reg_246</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>84</item>
</second>
</item>
<item>
<first>t_V_4_reg_210</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>64</item>
</second>
</item>
<item>
<first>t_V_reg_177</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>52</item>
</second>
</item>
</dp_regname_phi>
<dp_port_io_nodes class_id="51" tracking_level="0" version="0">
<count>13</count>
<item_version>0</item_version>
<item class_id="52" tracking_level="0" version="0">
<first>AXI_video_strm_V_data_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>39</item>
<item>78</item>
<item>109</item>
</second>
</item>
</second>
</item>
<item>
<first>AXI_video_strm_V_dest_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>39</item>
<item>78</item>
<item>109</item>
</second>
</item>
</second>
</item>
<item>
<first>AXI_video_strm_V_id_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>39</item>
<item>78</item>
<item>109</item>
</second>
</item>
</second>
</item>
<item>
<first>AXI_video_strm_V_keep_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>39</item>
<item>78</item>
<item>109</item>
</second>
</item>
</second>
</item>
<item>
<first>AXI_video_strm_V_last_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>39</item>
<item>78</item>
<item>109</item>
</second>
</item>
</second>
</item>
<item>
<first>AXI_video_strm_V_strb_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>39</item>
<item>78</item>
<item>109</item>
</second>
</item>
</second>
</item>
<item>
<first>AXI_video_strm_V_user_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>39</item>
<item>78</item>
<item>109</item>
</second>
</item>
</second>
</item>
<item>
<first>img_cols_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>26</item>
</second>
</item>
</second>
</item>
<item>
<first>img_cols_V_out</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>write</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>28</item>
</second>
</item>
</second>
</item>
<item>
<first>img_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>90</item>
</second>
</item>
</second>
</item>
<item>
<first>img_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>91</item>
</second>
</item>
</second>
</item>
<item>
<first>img_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>92</item>
</second>
</item>
</second>
</item>
<item>
<first>img_rows_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>30</item>
</second>
</item>
</second>
</item>
</dp_port_io_nodes>
<port2core 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>8</first>
<second>FIFO</second>
</item>
<item>
<first>9</first>
<second>FIFO</second>
</item>
<item>
<first>10</first>
<second>FIFO</second>
</item>
<item>
<first>11</first>
<second>FIFO</second>
</item>
<item>
<first>12</first>
<second>FIFO</second>
</item>
<item>
<first>13</first>
<second>FIFO</second>
</item>
</port2core>
<node2core>
<count>0</count>
<item_version>0</item_version>
</node2core>
</syndb>
</boost_serialization>
|
------------------------------------------------------------------------------
-- --
-- GNAT LIBRARY COMPONENTS --
-- --
-- A D A . S T R I N G S . U N B O U N D E D . H A S H --
-- --
-- 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.Containers;
function Ada.Strings.Unbounded.Hash
(Key : Unbounded_String) return Containers.Hash_Type;
pragma Preelaborate (Ada.Strings.Unbounded.Hash);
|
pragma Ada_2012;
with Tokenize.Token_Vectors;
with Ada.Text_IO; use Ada.Text_IO;
package body EU_Projects is
function Verbose_To_ID (X : String) return Dotted_Identifier
is
begin
Put_Line ("TT(" & X & ")" & Is_Valid_ID (X)'Image);
return To_Bounded_String (X);
end Verbose_To_ID;
----------------
-- To_ID_List --
----------------
function To_ID_List (Input : String;
Separators : String := " ,")
return ID_List
is
use Tokenize;
Result : ID_List;
Splitted : constant Token_Vectors.Vector :=
Token_Vectors.To_Vector(Split (To_Be_Splitted => Input,
Separator => Separators,
Collate_Separator => True));
OK : Boolean;
Consumed : Natural;
Tmp : Dotted_Identifier;
begin
for ID of Splitted loop
-- Put_Line ("[" & Id & "]");
ID_Readers.Reader (Input => ID,
Success => OK,
Consumed => Consumed,
Result => Tmp);
-- Put_Line (Ok'Image & " " & Consumed'Image & "(" & To_String (Tmp) & ")");
if not OK or Consumed < ID'Length then
raise Bad_Identifier with "Bad ID in '" & ID & "'";
else
Result.Append (Tmp);
end if;
end loop;
return Result;
end To_ID_List;
end EU_Projects;
|
-- Copyright (c) 2021 Devin Hill
-- zlib License -- see LICENSE for details.
with System;
use System;
with Interfaces.C;
use Interfaces;
function GBA.BIOS.Memset
( Dest : in Address; Value : Integer; Num_Bytes : C.size_t ) return Address
with Linker_Section => ".iwram";
pragma Machine_Attribute (Memset, "target", "arm");
|
-------------------------------------------------------------------------------
-- Copyright (C) 2020-2030, per.s.sandberg@bahnhof.se --
-- --
-- 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. --
-------------------------------------------------------------------------------
-- Import tests and sub-suites to run
with ZMQ.Tests.TestCases.Test_Pubsub;
with ZMQ.Tests.TestCases.Test_REQRESP;
package body ZMQ.Tests.Testsuits.Test_All is
use AUnit.Test_Suites;
-- Statically allocate test suite:
Result : aliased Test_Suite;
-- Statically allocate test cases:
Test_2 : aliased TestCases.Test_Pubsub.Test_Case;
Test_3 : aliased TestCases.Test_REQRESP.Test_Case;
-----------
-- Suite --
-----------
function Suite return AUnit.Test_Suites.Access_Test_Suite is
begin
Add_Test (Result'Access, Test_2'Access);
Add_Test (Result'Access, Test_3'Access);
return Result'Access;
end Suite;
end ZMQ.Tests.TestSuits.Test_All;
|
-- POK header
--
-- The following file is a part of the POK project. Any modification should
-- be made according to the POK licence. You CANNOT use this file or a part
-- of a file for your own project.
--
-- For more information on the POK licence, please see our LICENCE FILE
--
-- Please follow the coding guidelines described in doc/CODING_GUIDELINES
--
-- Copyright (c) 2007-2020 POK team
-- ---------------------------------------------------------------------------
-- --
-- TIME constant and type definitions and management services --
-- --
-- ---------------------------------------------------------------------------
package APEX.Timing is
procedure Timed_Wait
(Delay_Time : in System_Time_Type;
Return_Code : out Return_Code_Type);
procedure Periodic_Wait (Return_Code : out Return_Code_Type);
procedure Get_Time
(System_Time : out System_Time_Type;
Return_Code : out Return_Code_Type);
procedure Replenish
(Budget_Time : in System_Time_Type;
Return_Code : out Return_Code_Type);
-- POK BINDINGS
pragma Import (C, Timed_Wait, "TIMED_WAIT");
pragma Import (C, Periodic_Wait, "PERIODIC_WAIT");
pragma Import (C, Get_Time, "GET_TIME");
pragma Import (C, Replenish, "REPLENISH");
-- END OF POK BINDINGS
end Apex.Timing;
|
--
-- Copyright (C) 2015-2018 secunet Security Networks AG
--
-- 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 2 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.
--
with HW.Debug;
with GNAT.Source_Info;
with HW.GFX.GMA.DP_Info;
package body HW.GFX.GMA.Transcoder is
type Default_Transcoder_Array is array (Pipe_Index) of Transcoder_Index;
Default_Transcoder : constant Default_Transcoder_Array :=
(Primary => Trans_A,
Secondary => Trans_B,
Tertiary => Trans_C);
function Get_Idx (Pipe : Pipe_Index; Port : GPU_Port) return Transcoder_Index
is
begin
return
(if Config.Has_EDP_Transcoder and then Port = DIGI_A then
Trans_EDP
else
Default_Transcoder (Pipe));
end Get_Idx;
----------------------------------------------------------------------------
TRANS_CLK_SEL_PORT_NONE : constant := 0 * 2 ** 29;
type TRANS_CLK_SEL_PORT_Array is
array (Digital_Port) of Word32;
TRANS_CLK_SEL_PORT : constant TRANS_CLK_SEL_PORT_Array :=
(DIGI_A => 0 * 2 ** 29, -- DDI A is not selectable
DIGI_B => 2 * 2 ** 29,
DIGI_C => 3 * 2 ** 29,
DIGI_D => 4 * 2 ** 29,
DIGI_E => 5 * 2 ** 29);
TRANS_CONF_ENABLE : constant := 1 * 2 ** 31;
TRANS_CONF_ENABLED_STATUS : constant := 1 * 2 ** 30;
TRANS_CONF_ENABLE_DITHER : constant := 1 * 2 ** 4;
type BPC_Array is array (BPC_Type) of Word32;
TRANS_CONF_BPC : constant BPC_Array :=
(6 => 2 * 2 ** 5,
8 => 0 * 2 ** 5,
10 => 1 * 2 ** 5,
12 => 3 * 2 ** 5,
others => 0 * 2 ** 5); -- default to 8 BPC
function BPC_Conf (BPC : BPC_Type; Dither : Boolean) return Word32 is
begin
return
(if Config.Has_Pipeconf_BPC then TRANS_CONF_BPC (BPC) else 0) or
(if Dither then TRANS_CONF_ENABLE_DITHER else 0);
end BPC_Conf;
----------------------------------------------------------------------------
DDI_FUNC_CTL_ENABLE : constant := 1 * 2 ** 31;
DDI_FUNC_CTL_MODE_SELECT_MASK : constant := 7 * 2 ** 24;
DDI_FUNC_CTL_MODE_SELECT_HDMI : constant := 0 * 2 ** 24;
DDI_FUNC_CTL_MODE_SELECT_DVI : constant := 1 * 2 ** 24;
DDI_FUNC_CTL_MODE_SELECT_DP_SST : constant := 2 * 2 ** 24;
DDI_FUNC_CTL_MODE_SELECT_DP_MST : constant := 3 * 2 ** 24;
DDI_FUNC_CTL_MODE_SELECT_FDI : constant := 4 * 2 ** 24;
type DDI_Select_Array is array (Digital_Port) of Word32;
DDI_FUNC_CTL_DDI_SELECT : constant DDI_Select_Array :=
(DIGI_A => 0 * 2 ** 28,
DIGI_B => 1 * 2 ** 28,
DIGI_C => 2 * 2 ** 28,
DIGI_D => 3 * 2 ** 28,
DIGI_E => 4 * 2 ** 28);
type DDI_Mode_Array is array (Display_Type) of Word32;
DDI_FUNC_CTL_MODE_SELECT : constant DDI_Mode_Array :=
(VGA => DDI_FUNC_CTL_MODE_SELECT_FDI,
HDMI => DDI_FUNC_CTL_MODE_SELECT_DVI,
DP => DDI_FUNC_CTL_MODE_SELECT_DP_SST,
others => 0);
type HV_Sync_Array is array (Boolean) of Word32;
DDI_FUNC_CTL_VSYNC : constant HV_Sync_Array :=
(False => 0 * 2 ** 17,
True => 1 * 2 ** 17);
DDI_FUNC_CTL_HSYNC : constant HV_Sync_Array :=
(False => 0 * 2 ** 16,
True => 1 * 2 ** 16);
DDI_FUNC_CTL_EDP_SELECT_MASK : constant := 7 * 2 ** 12;
DDI_FUNC_CTL_EDP_SELECT_ALWAYS_ON : constant := 0 * 2 ** 12;
DDI_FUNC_CTL_EDP_SELECT : constant array (Pipe_Index) of Word32 :=
(Primary => 4 * 2 ** 12,
Secondary => 5 * 2 ** 12,
Tertiary => 6 * 2 ** 12);
type Port_Width_Array is array (DP_Lane_Count) of Word32;
DDI_FUNC_CTL_PORT_WIDTH : constant Port_Width_Array :=
(DP_Lane_Count_1 => 0 * 2 ** 1,
DP_Lane_Count_2 => 1 * 2 ** 1,
DP_Lane_Count_4 => 3 * 2 ** 1);
DDI_FUNC_CTL_BPC : constant BPC_Array :=
(6 => 2 * 2 ** 20,
8 => 0 * 2 ** 20,
10 => 1 * 2 ** 20,
12 => 3 * 2 ** 20,
others => 0 * 2 ** 20); -- default to 8 BPC
----------------------------------------------------------------------------
TRANS_MSA_MISC_SYNC_CLK : constant := 1 * 2 ** 0;
TRANS_MSA_MISC_BPC : constant BPC_Array :=
(6 => 0 * 2 ** 5,
8 => 1 * 2 ** 5,
10 => 2 * 2 ** 5,
12 => 3 * 2 ** 5,
16 => 4 * 2 ** 5,
others => 1 * 2 ** 5); -- default to 8 BPC
function TRANS_DATA_M_TU (Transfer_Unit : Positive) return Word32 is
begin
return Shift_Left (Word32 (Transfer_Unit - 1), 25);
end TRANS_DATA_M_TU;
----------------------------------------------------------------------------
function Encode (LSW, MSW : Pos32) return Word32 is
begin
return Shift_Left (Word32 (MSW - 1), 16) or Word32 (LSW - 1);
end Encode;
----------------------------------------------------------------------------
procedure Setup_Link
(Trans : Transcoder_Regs;
Link : DP_Link;
Mode : Mode_Type)
with
Global => (In_Out => Registers.Register_State),
Depends => (Registers.Register_State =>+ (Trans, Link, Mode))
is
Data_M, Link_M : DP_Info.M_Type;
Data_N, Link_N : DP_Info.N_Type;
begin
pragma Debug (Debug.Put_Line (GNAT.Source_Info.Enclosing_Entity));
DP_Info.Calculate_M_N
(Link => Link,
Mode => Mode,
Data_M => Data_M,
Data_N => Data_N,
Link_M => Link_M,
Link_N => Link_N);
Registers.Write
(Register => Trans.DATA_M1,
Value => TRANS_DATA_M_TU (64) or
Word32 (Data_M));
Registers.Write
(Register => Trans.DATA_N1,
Value => Word32 (Data_N));
Registers.Write
(Register => Trans.LINK_M1,
Value => Word32 (Link_M));
Registers.Write
(Register => Trans.LINK_N1,
Value => Word32 (Link_N));
if Config.Has_Pipe_MSA_Misc then
Registers.Write
(Register => Trans.MSA_MISC,
Value => TRANS_MSA_MISC_SYNC_CLK or
TRANS_MSA_MISC_BPC (Mode.BPC));
end if;
end Setup_Link;
----------------------------------------------------------------------------
procedure Setup
(Pipe : Pipe_Index;
Port_Cfg : Port_Config)
is
use type HW.GFX.GMA.Registers.Registers_Invalid_Index;
Trans : Transcoder_Regs renames
Transcoders (Get_Idx (Pipe, Port_Cfg.Port));
M : constant Mode_Type := Port_Cfg.Mode;
begin
pragma Debug (Debug.Put_Line (GNAT.Source_Info.Enclosing_Entity));
if Config.Has_Trans_Clk_Sel and then
Trans.CLK_SEL /= Registers.Invalid_Register and then
Port_Cfg.Port in Digital_Port
then
Registers.Write
(Register => Trans.CLK_SEL,
Value => TRANS_CLK_SEL_PORT (Port_Cfg.Port));
end if;
if Port_Cfg.Is_FDI then
Setup_Link (Trans, Port_Cfg.FDI, Port_Cfg.Mode);
elsif Port_Cfg.Display = DP then
Setup_Link (Trans, Port_Cfg.DP, Port_Cfg.Mode);
end if;
Registers.Write (Trans.HTOTAL, Encode (M.H_Visible, M.H_Total));
Registers.Write (Trans.HBLANK, Encode (M.H_Visible, M.H_Total));
Registers.Write (Trans.HSYNC, Encode (M.H_Sync_Begin, M.H_Sync_End));
Registers.Write (Trans.VTOTAL, Encode (M.V_Visible, M.V_Total));
Registers.Write (Trans.VBLANK, Encode (M.V_Visible, M.V_Total));
Registers.Write (Trans.VSYNC, Encode (M.V_Sync_Begin, M.V_Sync_End));
end Setup;
----------------------------------------------------------------------------
procedure On
(Pipe : Pipe_Index;
Port_Cfg : Port_Config;
Dither : Boolean;
Scale : Boolean)
is
Trans : Transcoder_Regs renames
Transcoders (Get_Idx (Pipe, Port_Cfg.Port));
EDP_Select : constant Word32 :=
(if Pipe = Primary and not Scale then
DDI_FUNC_CTL_EDP_SELECT_ALWAYS_ON
else
DDI_FUNC_CTL_EDP_SELECT (Pipe));
begin
if Config.Has_Pipe_DDI_Func and Port_Cfg.Port in Digital_Port then
Registers.Write
(Register => Trans.DDI_FUNC_CTL,
Value => DDI_FUNC_CTL_ENABLE or
DDI_FUNC_CTL_DDI_SELECT (Port_Cfg.Port) or
DDI_FUNC_CTL_MODE_SELECT (Port_Cfg.Display) or
DDI_FUNC_CTL_BPC (Port_Cfg.Mode.BPC) or
DDI_FUNC_CTL_VSYNC (Port_Cfg.Mode.V_Sync_Active_High) or
DDI_FUNC_CTL_HSYNC (Port_Cfg.Mode.H_Sync_Active_High) or
EDP_Select or
DDI_FUNC_CTL_PORT_WIDTH (Port_Cfg.DP.Lane_Count));
end if;
Registers.Write
(Register => Trans.CONF,
Value => TRANS_CONF_ENABLE or
(if not Config.Has_Pipeconf_Misc then
BPC_Conf (Port_Cfg.Mode.BPC, Dither) else 0));
Registers.Posting_Read (Trans.CONF);
end On;
----------------------------------------------------------------------------
procedure Trans_Off (Trans : Transcoder_Regs)
is
Enabled : Boolean;
begin
Registers.Is_Set_Mask (Trans.CONF, TRANS_CONF_ENABLE, Enabled);
if Enabled then
Registers.Unset_Mask (Trans.CONF, TRANS_CONF_ENABLE);
end if;
-- Workaround for Broadwell:
-- Status may be wrong if pipe hasn't been enabled since reset.
if not Config.Pipe_Enabled_Workaround or else Enabled then
-- synchronously wait until pipe is truly off
Registers.Wait_Unset_Mask
(Register => Trans.CONF,
Mask => TRANS_CONF_ENABLED_STATUS,
TOut_MS => 40);
end if;
if Config.Has_Pipe_DDI_Func then
Registers.Write (Trans.DDI_FUNC_CTL, 0);
end if;
end Trans_Off;
procedure Off (Pipe : Pipe_Index)
is
DDI_Func_Ctl : Word32;
begin
if Config.Has_EDP_Transcoder then
Registers.Read (Registers.PIPE_EDP_DDI_FUNC_CTL, DDI_Func_Ctl);
DDI_Func_Ctl := DDI_Func_Ctl and DDI_FUNC_CTL_EDP_SELECT_MASK;
if (Pipe = Primary and
DDI_Func_Ctl = DDI_FUNC_CTL_EDP_SELECT_ALWAYS_ON) or
DDI_Func_Ctl = DDI_FUNC_CTL_EDP_SELECT (Pipe)
then
Trans_Off (Transcoders (Trans_EDP));
end if;
end if;
Trans_Off (Transcoders (Default_Transcoder (Pipe)));
end Off;
procedure Clk_Off (Pipe : Pipe_Index)
is
use type Registers.Registers_Invalid_Index;
Trans : Transcoder_Regs renames Transcoders (Default_Transcoder (Pipe));
begin
if Config.Has_Trans_Clk_Sel and then
Trans.CLK_SEL /= Registers.Invalid_Register
then
Registers.Write (Trans.CLK_SEL, TRANS_CLK_SEL_PORT_NONE);
end if;
end Clk_Off;
end HW.GFX.GMA.Transcoder;
|
-- Copyright (c) 2021 Bartek thindil Jasicki <thindil@laeran.pl>
--
-- 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; use Ada.Strings.Unbounded;
package body Tk.TtkLabelFrame is
function Create
(Path_Name: Tk_Path_String; Options: Ttk_Label_Frame_Options;
Interpreter: Tcl_Interpreter := Get_Interpreter)
return Ttk_Label_Frame is
Options_String: Unbounded_String := Null_Unbounded_String;
begin
Option_Image
(Name => "borderwidth", Value => Options.Border_Width,
Options_String => Options_String);
Option_Image
(Name => "class", Value => Options.Class,
Options_String => Options_String);
Option_Image
(Name => "cursor", Value => Options.Cursor,
Options_String => Options_String);
Option_Image
(Name => "height", Value => Options.Height,
Options_String => Options_String);
Option_Image
(Name => "labelanchor", Value => Options.Label_Anchor,
Options_String => Options_String);
Option_Image
(Name => "labelwidget", Value => Options.Label_Widget,
Options_String => Options_String);
Option_Image
(Name => "padding", Value => Options.Padding,
Options_String => Options_String);
Option_Image
(Name => "relief", Value => Options.Relief,
Options_String => Options_String);
Option_Image
(Name => "takefocus", Value => Options.Take_Focus,
Options_String => Options_String);
Option_Image
(Name => "text", Value => Options.Text,
Options_String => Options_String);
Option_Image
(Name => "underline", Value => Options.Underline,
Options_String => Options_String);
Option_Image
(Name => "width", Value => Options.Width,
Options_String => Options_String);
Tcl_Eval
(Tcl_Script =>
"ttk::labelframe " & Path_Name & " " &
To_String(Source => Options_String),
Interpreter => Interpreter);
return Get_Widget(Path_Name => Path_Name, Interpreter => Interpreter);
end Create;
procedure Create
(Frame_Widget: out Ttk_Label_Frame; Path_Name: Tk_Path_String;
Options: Ttk_Label_Frame_Options;
Interpreter: Tcl_Interpreter := Get_Interpreter) is
begin
Frame_Widget :=
Create
(Path_Name => Path_Name, Options => Options,
Interpreter => Interpreter);
end Create;
function Get_Options
(Frame_Widget: Ttk_Label_Frame) return Ttk_Label_Frame_Options is
begin
return
Options: Ttk_Label_Frame_Options := Default_Ttk_Label_Frame_Options do
Options.Border_Width :=
Option_Value(Widgt => Frame_Widget, Name => "borderwidth");
Options.Class := Option_Value(Widgt => Frame_Widget, Name => "class");
Options.Cursor :=
Option_Value(Widgt => Frame_Widget, Name => "cursor");
Options.Height :=
Option_Value(Widgt => Frame_Widget, Name => "height");
Options.Label_Anchor :=
Option_Value(Widgt => Frame_Widget, Name => "labelanchor");
Options.Label_Widget :=
Option_Value(Widgt => Frame_Widget, Name => "labelwidget");
Options.Padding :=
Option_Value(Ttk_Widgt => Frame_Widget, Name => "padding");
Options.Relief :=
Option_Value(Widgt => Frame_Widget, Name => "relief");
Options.Take_Focus :=
Option_Value(Widgt => Frame_Widget, Name => "takefocus");
Options.Text := Option_Value(Widgt => Frame_Widget, Name => "text");
Options.Underline :=
Option_Value(Widgt => Frame_Widget, Name => "underline");
Options.Width := Option_Value(Widgt => Frame_Widget, Name => "width");
end return;
end Get_Options;
procedure Configure
(Frame_Widget: Ttk_Label_Frame; Options: Ttk_Label_Frame_Options) is
Options_String: Unbounded_String := Null_Unbounded_String;
begin
Option_Image
(Name => "borderwidth", Value => Options.Border_Width,
Options_String => Options_String);
Option_Image
(Name => "cursor", Value => Options.Cursor,
Options_String => Options_String);
Option_Image
(Name => "height", Value => Options.Height,
Options_String => Options_String);
Option_Image
(Name => "labelanchor", Value => Options.Label_Anchor,
Options_String => Options_String);
Option_Image
(Name => "labelwidget", Value => Options.Label_Widget,
Options_String => Options_String);
Option_Image
(Name => "padding", Value => Options.Padding,
Options_String => Options_String);
Option_Image
(Name => "relief", Value => Options.Relief,
Options_String => Options_String);
Option_Image
(Name => "takefocus", Value => Options.Take_Focus,
Options_String => Options_String);
Option_Image
(Name => "text", Value => Options.Text,
Options_String => Options_String);
Option_Image
(Name => "underline", Value => Options.Underline,
Options_String => Options_String);
Option_Image
(Name => "width", Value => Options.Width,
Options_String => Options_String);
Execute_Widget_Command
(Widgt => Frame_Widget, Command_Name => "configure",
Options => To_String(Source => Options_String));
end Configure;
end Tk.TtkLabelFrame;
|
-- This spec has been automatically generated from msp430g2553.svd
pragma Restrictions (No_Elaboration_Code);
pragma Ada_2012;
pragma Style_Checks (Off);
with System;
-- ADC10
package MSP430_SVD.ADC10 is
pragma Preelaborate;
---------------
-- Registers --
---------------
-- ADC10 Data Transfer Control 0
type ADC10DTC0_Register is record
-- This bit should normally be reset
ADC10FETCH : MSP430_SVD.Bit := 16#0#;
-- ADC10 block one
ADC10B1 : MSP430_SVD.Bit := 16#0#;
-- ADC10 continuous transfer
ADC10CT : MSP430_SVD.Bit := 16#0#;
-- ADC10 two-block mode
ADC10TB : MSP430_SVD.Bit := 16#0#;
-- unspecified
Reserved_4_7 : MSP430_SVD.UInt4 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 8,
Bit_Order => System.Low_Order_First;
for ADC10DTC0_Register use record
ADC10FETCH at 0 range 0 .. 0;
ADC10B1 at 0 range 1 .. 1;
ADC10CT at 0 range 2 .. 2;
ADC10TB at 0 range 3 .. 3;
Reserved_4_7 at 0 range 4 .. 7;
end record;
-- ADC10 Sample Hold Select Bit: 0
type ADC10CTL0_ADC10SHT_Field is
(-- 4 x ADC10CLKs
Adc10Sht_0,
-- 8 x ADC10CLKs
Adc10Sht_1,
-- 16 x ADC10CLKs
Adc10Sht_2,
-- 64 x ADC10CLKs
Adc10Sht_3)
with Size => 2;
for ADC10CTL0_ADC10SHT_Field use
(Adc10Sht_0 => 0,
Adc10Sht_1 => 1,
Adc10Sht_2 => 2,
Adc10Sht_3 => 3);
-- ADC10 Reference Select Bit: 0
type ADC10CTL0_SREF_Field is
(-- VR+ = AVCC and VR- = AVSS
Sref_0,
-- VR+ = VREF+ and VR- = AVSS
Sref_1,
-- VR+ = VEREF+ and VR- = AVSS
Sref_2,
-- VR+ = VEREF+ and VR- = AVSS
Sref_3,
-- VR+ = AVCC and VR- = VREF-/VEREF-
Sref_4,
-- VR+ = VREF+ and VR- = VREF-/VEREF-
Sref_5,
-- VR+ = VEREF+ and VR- = VREF-/VEREF-
Sref_6,
-- VR+ = VEREF+ and VR- = VREF-/VEREF-
Sref_7)
with Size => 3;
for ADC10CTL0_SREF_Field use
(Sref_0 => 0,
Sref_1 => 1,
Sref_2 => 2,
Sref_3 => 3,
Sref_4 => 4,
Sref_5 => 5,
Sref_6 => 6,
Sref_7 => 7);
-- ADC10 Control 0
type ADC10CTL0_Register is record
-- ADC10 Start Conversion
ADC10SC : MSP430_SVD.Bit := 16#0#;
-- ADC10 Enable Conversion
ENC : MSP430_SVD.Bit := 16#0#;
-- ADC10 Interrupt Flag
ADC10IFG : MSP430_SVD.Bit := 16#0#;
-- ADC10 Interrupt Enalbe
ADC10IE : MSP430_SVD.Bit := 16#0#;
-- ADC10 On/Enable
ADC10ON : MSP430_SVD.Bit := 16#0#;
-- ADC10 Reference on
REFON : MSP430_SVD.Bit := 16#0#;
-- ADC10 Ref 0:1.5V / 1:2.5V
REF2_5V : MSP430_SVD.Bit := 16#0#;
-- ADC10 Multiple SampleConversion
MSC : MSP430_SVD.Bit := 16#0#;
-- ADC10 Reference Burst Mode
REFBURST : MSP430_SVD.Bit := 16#0#;
-- ADC10 Enalbe output of Ref.
REFOUT : MSP430_SVD.Bit := 16#0#;
-- ADC10 Sampling Rate 0:200ksps / 1:50ksps
ADC10SR : MSP430_SVD.Bit := 16#0#;
-- ADC10 Sample Hold Select Bit: 0
ADC10SHT : ADC10CTL0_ADC10SHT_Field := MSP430_SVD.ADC10.Adc10Sht_0;
-- ADC10 Reference Select Bit: 0
SREF : ADC10CTL0_SREF_Field := MSP430_SVD.ADC10.Sref_0;
end record
with Volatile_Full_Access, Object_Size => 16,
Bit_Order => System.Low_Order_First;
for ADC10CTL0_Register use record
ADC10SC at 0 range 0 .. 0;
ENC at 0 range 1 .. 1;
ADC10IFG at 0 range 2 .. 2;
ADC10IE at 0 range 3 .. 3;
ADC10ON at 0 range 4 .. 4;
REFON at 0 range 5 .. 5;
REF2_5V at 0 range 6 .. 6;
MSC at 0 range 7 .. 7;
REFBURST at 0 range 8 .. 8;
REFOUT at 0 range 9 .. 9;
ADC10SR at 0 range 10 .. 10;
ADC10SHT at 0 range 11 .. 12;
SREF at 0 range 13 .. 15;
end record;
-- ADC10 Conversion Sequence Select 0
type ADC10CTL1_CONSEQ_Field is
(-- Single channel single conversion
Conseq_0,
-- Sequence of channels
Conseq_1,
-- Repeat single channel
Conseq_2,
-- Repeat sequence of channels
Conseq_3)
with Size => 2;
for ADC10CTL1_CONSEQ_Field use
(Conseq_0 => 0,
Conseq_1 => 1,
Conseq_2 => 2,
Conseq_3 => 3);
-- ADC10 Clock Source Select Bit: 0
type ADC10CTL1_ADC10SSEL_Field is
(-- ADC10OSC
Adc10Ssel_0,
-- ACLK
Adc10Ssel_1,
-- MCLK
Adc10Ssel_2,
-- SMCLK
Adc10Ssel_3)
with Size => 2;
for ADC10CTL1_ADC10SSEL_Field use
(Adc10Ssel_0 => 0,
Adc10Ssel_1 => 1,
Adc10Ssel_2 => 2,
Adc10Ssel_3 => 3);
-- ADC10 Clock Divider Select Bit: 0
type ADC10CTL1_ADC10DIV_Field is
(-- ADC10 Clock Divider Select 0
Adc10Div_0,
-- ADC10 Clock Divider Select 1
Adc10Div_1,
-- ADC10 Clock Divider Select 2
Adc10Div_2,
-- ADC10 Clock Divider Select 3
Adc10Div_3,
-- ADC10 Clock Divider Select 4
Adc10Div_4,
-- ADC10 Clock Divider Select 5
Adc10Div_5,
-- ADC10 Clock Divider Select 6
Adc10Div_6,
-- ADC10 Clock Divider Select 7
Adc10Div_7)
with Size => 3;
for ADC10CTL1_ADC10DIV_Field use
(Adc10Div_0 => 0,
Adc10Div_1 => 1,
Adc10Div_2 => 2,
Adc10Div_3 => 3,
Adc10Div_4 => 4,
Adc10Div_5 => 5,
Adc10Div_6 => 6,
Adc10Div_7 => 7);
-- ADC10 Sample/Hold Source Bit: 0
type ADC10CTL1_SHS_Field is
(-- ADC10SC
Shs_0,
-- TA3 OUT1
Shs_1,
-- TA3 OUT0
Shs_2,
-- TA3 OUT2
Shs_3)
with Size => 2;
for ADC10CTL1_SHS_Field use
(Shs_0 => 0,
Shs_1 => 1,
Shs_2 => 2,
Shs_3 => 3);
-- ADC10 Input Channel Select Bit: 0
type ADC10CTL1_INCH_Field is
(-- Selects Channel 0
Inch_0,
-- Selects Channel 1
Inch_1,
-- Selects Channel 2
Inch_2,
-- Selects Channel 3
Inch_3,
-- Selects Channel 4
Inch_4,
-- Selects Channel 5
Inch_5,
-- Selects Channel 6
Inch_6,
-- Selects Channel 7
Inch_7,
-- Selects Channel 8
Inch_8,
-- Selects Channel 9
Inch_9,
-- Selects Channel 10
Inch_10,
-- Selects Channel 11
Inch_11,
-- Selects Channel 12
Inch_12,
-- Selects Channel 13
Inch_13,
-- Selects Channel 14
Inch_14,
-- Selects Channel 15
Inch_15)
with Size => 4;
for ADC10CTL1_INCH_Field use
(Inch_0 => 0,
Inch_1 => 1,
Inch_2 => 2,
Inch_3 => 3,
Inch_4 => 4,
Inch_5 => 5,
Inch_6 => 6,
Inch_7 => 7,
Inch_8 => 8,
Inch_9 => 9,
Inch_10 => 10,
Inch_11 => 11,
Inch_12 => 12,
Inch_13 => 13,
Inch_14 => 14,
Inch_15 => 15);
-- ADC10 Control 1
type ADC10CTL1_Register is record
-- ADC10 BUSY
ADC10BUSY : MSP430_SVD.Bit := 16#0#;
-- ADC10 Conversion Sequence Select 0
CONSEQ : ADC10CTL1_CONSEQ_Field := MSP430_SVD.ADC10.Conseq_0;
-- ADC10 Clock Source Select Bit: 0
ADC10SSEL : ADC10CTL1_ADC10SSEL_Field := MSP430_SVD.ADC10.Adc10Ssel_0;
-- ADC10 Clock Divider Select Bit: 0
ADC10DIV : ADC10CTL1_ADC10DIV_Field := MSP430_SVD.ADC10.Adc10Div_0;
-- ADC10 Invert Sample Hold Signal
ISSH : MSP430_SVD.Bit := 16#0#;
-- ADC10 Data Format 0:binary 1:2's complement
ADC10DF : MSP430_SVD.Bit := 16#0#;
-- ADC10 Sample/Hold Source Bit: 0
SHS : ADC10CTL1_SHS_Field := MSP430_SVD.ADC10.Shs_0;
-- ADC10 Input Channel Select Bit: 0
INCH : ADC10CTL1_INCH_Field := MSP430_SVD.ADC10.Inch_0;
end record
with Volatile_Full_Access, Object_Size => 16,
Bit_Order => System.Low_Order_First;
for ADC10CTL1_Register use record
ADC10BUSY at 0 range 0 .. 0;
CONSEQ at 0 range 1 .. 2;
ADC10SSEL at 0 range 3 .. 4;
ADC10DIV at 0 range 5 .. 7;
ISSH at 0 range 8 .. 8;
ADC10DF at 0 range 9 .. 9;
SHS at 0 range 10 .. 11;
INCH at 0 range 12 .. 15;
end record;
-----------------
-- Peripherals --
-----------------
-- ADC10
type ADC10_Peripheral is record
-- ADC10 Data Transfer Control 0
ADC10DTC0 : aliased ADC10DTC0_Register;
-- ADC10 Data Transfer Control 1
ADC10DTC1 : aliased MSP430_SVD.Byte;
-- ADC10 Analog Enable 0
ADC10AE0 : aliased MSP430_SVD.Byte;
-- ADC10 Control 0
ADC10CTL0 : aliased ADC10CTL0_Register;
-- ADC10 Control 1
ADC10CTL1 : aliased ADC10CTL1_Register;
-- ADC10 Memory
ADC10MEM : aliased MSP430_SVD.UInt16;
-- ADC10 Data Transfer Start Address
ADC10SA : aliased MSP430_SVD.UInt16;
end record
with Volatile;
for ADC10_Peripheral use record
ADC10DTC0 at 16#0# range 0 .. 7;
ADC10DTC1 at 16#1# range 0 .. 7;
ADC10AE0 at 16#2# range 0 .. 7;
ADC10CTL0 at 16#168# range 0 .. 15;
ADC10CTL1 at 16#16A# range 0 .. 15;
ADC10MEM at 16#16C# range 0 .. 15;
ADC10SA at 16#174# range 0 .. 15;
end record;
-- ADC10
ADC10_Periph : aliased ADC10_Peripheral
with Import, Address => ADC10_Base;
end MSP430_SVD.ADC10;
|
--
-- ABench2020 Benchmark Suite
--
-- Binary Search Tree Program
--
-- Licensed under the MIT License. See LICENSE file in the ABench root
-- directory for license information.
--
-- Uncomment the line below to print the result.
-- with Ada.Text_IO; use Ada.Text_IO;
procedure Binary_Search_Tree is
type Vector is array (Positive range<>) of Integer;
type Node;
type Node_Pointer is access Node;
type Node is record
Value : Integer;
Left : Node_Pointer := null;
Right : Node_Pointer := null;
end record;
Root_Node : Node_Pointer := null;
function Insert_Node (Parent_Node : in Node_Pointer; Node_Value : in Integer) return Node_Pointer is
New_Node : Node_Pointer;
begin
if Parent_Node = null then
New_Node := new Node;
New_Node.Value := Node_Value;
return New_Node;
elsif Node_Value < Parent_Node.Value then
Parent_Node.Left := Insert_Node (Parent_Node.Left, Node_Value);
elsif Node_Value > Parent_Node.Value then
Parent_Node.Right := Insert_Node (Parent_Node.Right, Node_Value);
end if;
return Parent_Node;
end;
procedure Insert (Node_Value : in Integer) is
Temp_Node : Node_Pointer;
begin
if Root_Node = null then
Root_Node := new Node;
Root_Node.Value := Node_Value;
else
Temp_Node := Insert_Node (Root_Node, Node_Value);
end if;
end;
procedure Traverse (Current_Node : in Node_Pointer) is
begin
if Current_Node /= null then
Traverse (Current_Node.Right);
-- Uncomment the lines below to print the result.
-- Put (Integer'Image (Current_Node.Value) & " ");
Traverse (Current_Node.Left);
end if;
end;
Node_Array : Vector := (3, 4, 7, 8, 9, 10, 11, 24, 25, 55, 56, 78, 90,
98, 120, 134, 152, 155, 165, 167, 168, 198, 250, 287, 298, 300, 310,
333, 338, 350, 399, 442, 475, 567);
begin
loop
for I in Node_Array'Range loop
Insert (Node_Array (I));
end loop;
end loop;
Traverse (Root_Node);
end;
|
-- This file is generated by SWIG. Please do not modify by hand.
--
with Interfaces;
with swig;
with Interfaces.C;
with Interfaces.C.Pointers;
package xcb.xcb_list_extensions_reply_t is
-- Item
--
type Item is record
response_type : aliased Interfaces.Unsigned_8;
names_len : aliased Interfaces.Unsigned_8;
sequence : aliased Interfaces.Unsigned_16;
length : aliased Interfaces.Unsigned_32;
pad0 : aliased swig.int8_t_Array (0 .. 23);
end record;
-- Item_Array
--
type Item_Array is
array
(Interfaces.C
.size_t range <>) of aliased xcb.xcb_list_extensions_reply_t
.Item;
-- Pointer
--
package C_Pointers is new Interfaces.C.Pointers
(Index => Interfaces.C.size_t,
Element => xcb.xcb_list_extensions_reply_t.Item,
Element_Array => xcb.xcb_list_extensions_reply_t.Item_Array,
Default_Terminator => (others => <>));
subtype Pointer is C_Pointers.Pointer;
-- Pointer_Array
--
type Pointer_Array is
array
(Interfaces.C
.size_t range <>) of aliased xcb.xcb_list_extensions_reply_t
.Pointer;
-- Pointer_Pointer
--
package C_Pointer_Pointers is new Interfaces.C.Pointers
(Index => Interfaces.C.size_t,
Element => xcb.xcb_list_extensions_reply_t.Pointer,
Element_Array => xcb.xcb_list_extensions_reply_t.Pointer_Array,
Default_Terminator => null);
subtype Pointer_Pointer is C_Pointer_Pointers.Pointer;
end xcb.xcb_list_extensions_reply_t;
|
-- 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.CRC is
pragma Preelaborate;
---------------
-- Registers --
---------------
subtype IDR_IDR_Field is HAL.UInt8;
-- Independent data register
type IDR_Register is record
-- General-purpose 8-bit data register bits
IDR : IDR_IDR_Field := 16#0#;
-- unspecified
Reserved_8_31 : HAL.UInt24 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for IDR_Register use record
IDR at 0 range 0 .. 7;
Reserved_8_31 at 0 range 8 .. 31;
end record;
subtype CR_POLYSIZE_Field is HAL.UInt2;
subtype CR_REV_IN_Field is HAL.UInt2;
-- Control register
type CR_Register is record
-- Write-only. RESET bit
RESET : Boolean := False;
-- unspecified
Reserved_1_2 : HAL.UInt2 := 16#0#;
-- Polynomial size
POLYSIZE : CR_POLYSIZE_Field := 16#0#;
-- Reverse input data
REV_IN : CR_REV_IN_Field := 16#0#;
-- Reverse output data
REV_OUT : Boolean := False;
-- unspecified
Reserved_8_31 : HAL.UInt24 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CR_Register use record
RESET at 0 range 0 .. 0;
Reserved_1_2 at 0 range 1 .. 2;
POLYSIZE at 0 range 3 .. 4;
REV_IN at 0 range 5 .. 6;
REV_OUT at 0 range 7 .. 7;
Reserved_8_31 at 0 range 8 .. 31;
end record;
-----------------
-- Peripherals --
-----------------
-- Cyclic redundancy check calculation unit
type CRC_Peripheral is record
-- Data register
DR : aliased HAL.UInt32;
-- Independent data register
IDR : aliased IDR_Register;
-- Control register
CR : aliased CR_Register;
-- Initial CRC value
INIT : aliased HAL.UInt32;
-- polynomial
POL : aliased HAL.UInt32;
end record
with Volatile;
for CRC_Peripheral use record
DR at 16#0# range 0 .. 31;
IDR at 16#4# range 0 .. 31;
CR at 16#8# range 0 .. 31;
INIT at 16#10# range 0 .. 31;
POL at 16#14# range 0 .. 31;
end record;
-- Cyclic redundancy check calculation unit
CRC_Periph : aliased CRC_Peripheral
with Import, Address => System'To_Address (16#40023000#);
end STM32_SVD.CRC;
|
with p2; use p2;
procedure main with SPARK_Mode is
begin
-- trying to reprouce the problem StratoX has in hil.ads, but doesn't show up here
p2.foo;
end main;
|
------------------------------------------------------------------------------
-- --
-- GNAT EXAMPLE --
-- --
-- Copyright (C) 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 Registers; use Registers;
with STM32F4.GPIO; use STM32F4.GPIO;
package body LEDs is
function As_Word is new Ada.Unchecked_Conversion
(Source => User_LED, Target => Word);
procedure On (This : User_LED) is
begin
GPIOD.BSRR := As_Word (This);
end On;
procedure Off (This : User_LED) is
begin
GPIOD.BSRR := Shift_Left (As_Word (This), 16);
end Off;
All_LEDs_On : constant Word := Green'Enum_Rep or Red'Enum_Rep or
Blue'Enum_Rep or Orange'Enum_Rep;
pragma Compile_Time_Error
(All_LEDs_On /= 16#F000#,
"Invalid representation for All_LEDs_On");
All_LEDs_Off : constant Word := Shift_Left (All_LEDs_On, 16);
procedure All_Off is
begin
GPIOD.BSRR := All_LEDs_Off;
end All_Off;
procedure All_On is
begin
GPIOD.BSRR := All_LEDs_On;
end All_On;
procedure Initialize is
RCC_AHB1ENR_GPIOD : constant Word := 16#08#;
begin
-- Enable clock for GPIO-D
RCC.AHB1ENR := RCC.AHB1ENR or RCC_AHB1ENR_GPIOD;
-- Configure PD12-15
GPIOD.MODER (12 .. 15) := (others => Mode_OUT);
GPIOD.OTYPER (12 .. 15) := (others => Type_PP);
GPIOD.OSPEEDR (12 .. 15) := (others => Speed_100MHz);
GPIOD.PUPDR (12 .. 15) := (others => No_Pull);
end Initialize;
begin
Initialize;
end LEDs;
|
with Ada.Text_IO; use Ada.Text_IO;
procedure Test is
type R is record A: Integer; end record;
procedure F(X: in out Integer) is begin X := 0; end;
procedure G(X: in R) is begin F(X.A); end; X: R;
begin
G(X);
end Test;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- S Y S T E M . F O R E --
-- --
-- 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. --
-- --
------------------------------------------------------------------------------
package body System.Fore is
----------
-- Fore --
----------
function Fore (Lo, Hi : Long_Long_Float) return Natural is
T : Long_Long_Float := Long_Long_Float'Max (abs Lo, abs Hi);
R : Natural;
begin
-- Initial value of 2 allows for sign and mandatory single digit
R := 2;
-- Loop to increase Fore as needed to include full range of values
while T >= 10.0 loop
T := T / 10.0;
R := R + 1;
end loop;
return R;
end Fore;
end System.Fore;
|
-- { dg-do compile }
-- { dg-options "-O0 -fdump-tree-gimple" }
with Atomic1_Pkg; use Atomic1_Pkg;
procedure Atomic1 is
C_16 : constant R16 := (2, 3, 5, 7);
C_32 : constant R32 := (1, 1, 2, 3, 5, 8, 13, 5);
begin
V_16 := C_16;
V_32 := C_32;
end;
-- { dg-final { scan-tree-dump-times "v_16" 1 "gimple"} }
-- { dg-final { scan-tree-dump-times "v_32" 1 "gimple"} }
|
------------------------------------------------------------------------------
-- --
-- Giza --
-- --
-- Copyright (C) 2016 Fabien Chouteau (chouteau@adacore.com) --
-- --
-- --
-- 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 Ada.Numerics.Elementary_Functions; use Ada.Numerics.Elementary_Functions;
package body Giza.Types is
------------
-- Center --
------------
function Center (R : Rect_T) return Point_T is
begin
return (R.Org.X + R.Size.W / 2, R.Org.Y + R.Size.H / 2);
end Center;
------------------
-- Intersection --
------------------
function Intersection (A, B : Rect_T) return Rect_T is
P1 : constant Point_T := A.Org;
P2 : constant Point_T := A.Org + A.Size;
P3 : constant Point_T := B.Org;
P4 : constant Point_T := B.Org + B.Size;
Ret1, Ret2 : Point_T;
H, W : Natural;
begin
Ret1.X := Dim'Max (P1.X, P3.X);
Ret1.Y := Dim'Max (P1.Y, P3.Y);
Ret2.X := Dim'Min (P2.X, P4.X);
Ret2.Y := Dim'Min (P2.Y, P4.Y);
if Ret2.X - Ret1.X < 0 then
W := 0;
else
W := Ret2.X - Ret1.X;
end if;
if Ret2.Y - Ret1.Y < 0 then
H := 0;
else
H := Ret2.Y - Ret1.Y;
end if;
return (Ret1, (W, H));
end Intersection;
---------
-- "*" --
---------
function "*" (A, B : HC_Matrix) return HC_Matrix is
Res : HC_Matrix;
begin
Res.V11 := A.V11 * B.V11 + A.V12 * B.V21 + A.V13 * B.V31;
Res.V12 := A.V11 * B.V12 + A.V12 * B.V22 + A.V13 * B.V32;
Res.V13 := A.V11 * B.V13 + A.V12 * B.V23 + A.V13 * B.V33;
Res.V21 := A.V21 * B.V11 + A.V22 * B.V21 + A.V23 * B.V31;
Res.V22 := A.V21 * B.V12 + A.V22 * B.V22 + A.V23 * B.V32;
Res.V23 := A.V21 * B.V13 + A.V22 * B.V23 + A.V23 * B.V33;
Res.V31 := A.V31 * B.V11 + A.V32 * B.V21 + A.V33 * B.V31;
Res.V32 := A.V31 * B.V12 + A.V32 * B.V22 + A.V33 * B.V32;
Res.V33 := A.V31 * B.V13 + A.V32 * B.V23 + A.V33 * B.V33;
return Res;
end "*";
---------
-- "*" --
---------
function "*" (A : HC_Matrix; B : Point_T) return Point_T is
Res : Point_T;
begin
Res.X := Dim (Float (B.X) * A.V11 + Float (B.Y) * A.V12 + 1.0 * A.V13);
Res.Y := Dim (Float (B.X) * A.V21 + Float (B.Y) * A.V22 + 1.0 * A.V23);
return Res;
end "*";
--------
-- Id --
--------
function Id return HC_Matrix is
Res : HC_Matrix;
begin
Res.V11 := 1.0;
Res.V22 := 1.0;
Res.V33 := 1.0;
return Res;
end Id;
---------------------
-- Rotation_Matrix --
---------------------
function Rotation_Matrix (Rad : Float) return HC_Matrix is
Res : HC_Matrix;
begin
Res.V11 := Cos (Rad);
Res.V12 := -Sin (Rad);
Res.V21 := Sin (Rad);
Res.V22 := Cos (Rad);
Res.V33 := 1.0;
return Res;
end Rotation_Matrix;
------------------------
-- Translation_Matrix --
------------------------
function Translation_Matrix (Pt : Point_T) return HC_Matrix is
Res : HC_Matrix;
begin
Res.V11 := 1.0;
Res.V22 := 1.0;
Res.V33 := 1.0;
Res.V13 := Float (Pt.X);
Res.V23 := Float (Pt.Y);
return Res;
end Translation_Matrix;
------------------
-- Scale_Matrix --
------------------
function Scale_Matrix (Scale : Float) return HC_Matrix is
Res : HC_Matrix;
begin
Res.V11 := Scale;
Res.V22 := Scale;
Res.V33 := 1.0;
return Res;
end Scale_Matrix;
------------------
-- Scale_Matrix --
------------------
function Scale_Matrix (X, Y : Float) return HC_Matrix is
Res : HC_Matrix;
begin
Res.V11 := X;
Res.V22 := Y;
Res.V33 := 1.0;
return Res;
end Scale_Matrix;
end Giza.Types;
|
-- MIT License
--
-- Copyright (c) 2020 Max Reznik
--
-- 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.
with Ada.Streams;
with League.Stream_Element_Vectors;
package PB_Support.Memory_Streams is
type Memory_Stream is new Ada.Streams.Root_Stream_Type with private;
procedure Clear (Self : in out Memory_Stream'Class);
function Written
(Self : Memory_Stream'Class) return Ada.Streams.Stream_Element_Count;
function Data (Self : Memory_Stream'Class)
return League.Stream_Element_Vectors.Stream_Element_Vector;
private
type Memory_Stream is new Ada.Streams.Root_Stream_Type with record
Data : League.Stream_Element_Vectors.Stream_Element_Vector;
Read : Ada.Streams.Stream_Element_Count := 0;
end record;
overriding procedure Read
(Self : in out Memory_Stream;
Item : out Ada.Streams.Stream_Element_Array;
Last : out Ada.Streams.Stream_Element_Offset);
overriding procedure Write
(Self : in out Memory_Stream;
Item : Ada.Streams.Stream_Element_Array);
end PB_Support.Memory_Streams;
|
-- Copyright 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.Unchecked_Conversion;
with Interfaces;
package body Linted.Tagged_Accessors is
use type Interfaces.Unsigned_64;
-- Warnings are off because of a spurious warning about strict
-- aliasing
pragma Warnings (Off);
function Convert is new Ada.Unchecked_Conversion
(Source => Access_T,
Target => Interfaces.Unsigned_64);
function Convert is new Ada.Unchecked_Conversion
(Source => Interfaces.Unsigned_64,
Target => Access_T);
pragma Warnings (On);
function To (Ptr : Access_T) return Tagged_Access is
begin
return To (Ptr, 0);
end To;
function To (Ptr : Access_T; Tag : Tag_Bits) return Tagged_Access is
Converted : Interfaces.Unsigned_64;
begin
Converted := Convert (Ptr);
pragma Assert
(Interfaces.Shift_Right (Interfaces.Unsigned_64 (Converted), 48) = 0);
return Tagged_Access
(Interfaces.Shift_Right (Converted, 6) or
Interfaces.Shift_Left (Interfaces.Unsigned_64 (Tag), 42));
end To;
function From (Ptr : Tagged_Access) return Access_T is
begin
return Convert
(Interfaces.Shift_Left
(Interfaces.Unsigned_64 (Ptr) and
2#11_11111111_11111111_11111111_11111111_11111111#,
6));
end From;
function Tag (Ptr : Tagged_Access) return Tag_Bits is
begin
return Tag_Bits
(Interfaces.Shift_Right (Interfaces.Unsigned_64 (Ptr), 42));
end Tag;
end Linted.Tagged_Accessors;
|
-- C45672A.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 "NOT" YIELDS THE CORRECT RESULTS WHEN APPLIED TO
-- ONE-DIMENSIONAL BOOLEAN ARRAYS.
-- JWC 11/15/85
WITH REPORT;USE REPORT;
PROCEDURE C45672A IS
BEGIN
TEST ("C45672A", "CHECK THE UNARY OPERATOR 'NOT' APPLIED TO " &
"ONE-DIMENSIONAL BOOLEAN ARRAYS");
DECLARE
TYPE ARR1 IS ARRAY (INTEGER RANGE 1 .. 4) OF BOOLEAN;
TYPE ARR2 IS ARRAY (INTEGER RANGE 1 .. 40) OF BOOLEAN;
TYPE ARR3 IS ARRAY (INTEGER RANGE <>) OF BOOLEAN;
TYPE ARR4 IS ARRAY (INTEGER RANGE 1 .. 4) OF BOOLEAN;
TYPE ARR5 IS ARRAY (INTEGER RANGE 1 .. 40) OF BOOLEAN;
PRAGMA PACK (ARR4);
PRAGMA PACK (ARR5);
A1 : ARR1 := ARR1'(1 | 3 => TRUE, OTHERS => FALSE);
A2 : ARR2 := ARR2'(1 | 14 .. 18 | 30 .. 33 | 35 .. 37 => TRUE,
OTHERS => FALSE);
A3 : ARR3(IDENT_INT(3) .. IDENT_INT(4)) := ARR3'(TRUE, FALSE);
A4 : ARR4 := ARR4'(1 | 3 => TRUE, OTHERS => FALSE);
A5 : ARR5 := ARR5'(1 | 14 .. 18 | 30 .. 33 | 35 .. 37 => TRUE,
OTHERS => FALSE);
A6 : ARR3 (IDENT_INT(9) .. IDENT_INT(7));
PROCEDURE P (A : ARR3; F : INTEGER; L : INTEGER) IS
BEGIN
IF A'FIRST /= F OR A'LAST /= L THEN
FAILED ("'NOT' YIELDED THE WRONG BOUNDS");
END IF;
END P;
BEGIN
P (NOT A3, 3, 4);
P (NOT A6, 9, 7);
IF NOT A1 /= ARR1'(1 | 3 => FALSE, OTHERS => TRUE) THEN
FAILED ("WRONG RESULT WHEN 'NOT' APPLIED " &
"TO SMALL ARRAY");
END IF;
IF NOT A2 /= ARR2'(1 | 14 .. 18 | 30 .. 33 | 35 .. 37
=> FALSE, OTHERS => TRUE) THEN
FAILED ("WRONG RESULT WHEN 'NOT' APPLIED " &
"TO LARGE ARRAY");
END IF;
IF NOT A4 /= ARR4'(1 | 3 => FALSE, OTHERS => TRUE) THEN
FAILED ("WRONG RESULT WHEN 'NOT' APPLIED " &
"TO SMALL PACKED ARRAY");
END IF;
IF NOT A5 /= ARR5'(1 | 14 .. 18 | 30 .. 33 | 35 .. 37
=> FALSE, OTHERS => TRUE) THEN
FAILED ("WRONG RESULT WHEN 'NOT' APPLIED " &
"TO LARGE PACKED ARRAY");
END IF;
IF "NOT" (RIGHT => A1) /= ARR1'(1 | 3 => FALSE,
OTHERS => TRUE) THEN
FAILED ("WRONG RESULT WHEN 'NOT' APPLIED " &
"TO SMALL ARRAY USING NAMED NOTATION");
END IF;
IF "NOT" (RIGHT => A5) /= ARR5'(1 | 14 .. 18 | 30 .. 33 |
35 .. 37 => FALSE,
OTHERS => TRUE) THEN
FAILED ("WRONG RESULT WHEN 'NOT' APPLIED TO LARGE " &
"PACKED ARRAY USING NAMED NOTATION");
END IF;
END;
RESULT;
END C45672A;
|
-- This spec has been automatically generated from STM32F427x.svd
pragma Restrictions (No_Elaboration_Code);
pragma Ada_2012;
with System;
with HAL;
package STM32_SVD.USART is
pragma Preelaborate;
---------------
-- Registers --
---------------
-----------------
-- SR_Register --
-----------------
-- Status register
type SR_Register is record
-- Read-only. Parity error
PE : Boolean := False;
-- Read-only. Framing error
FE : Boolean := False;
-- Read-only. Noise detected flag
NF : Boolean := False;
-- Read-only. Overrun error
ORE : Boolean := False;
-- Read-only. IDLE line detected
IDLE : Boolean := False;
-- Read data register not empty
RXNE : Boolean := False;
-- Transmission complete
TC : Boolean := False;
-- Read-only. Transmit data register empty
TXE : Boolean := False;
-- LIN break detection flag
LBD : Boolean := False;
-- CTS flag
CTS : Boolean := False;
-- unspecified
Reserved_10_31 : HAL.UInt22 := 16#3000#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for SR_Register use record
PE at 0 range 0 .. 0;
FE at 0 range 1 .. 1;
NF at 0 range 2 .. 2;
ORE at 0 range 3 .. 3;
IDLE at 0 range 4 .. 4;
RXNE at 0 range 5 .. 5;
TC at 0 range 6 .. 6;
TXE at 0 range 7 .. 7;
LBD at 0 range 8 .. 8;
CTS at 0 range 9 .. 9;
Reserved_10_31 at 0 range 10 .. 31;
end record;
-----------------
-- DR_Register --
-----------------
subtype DR_DR_Field is HAL.UInt9;
-- Data register
type DR_Register is record
-- Data value
DR : DR_DR_Field := 16#0#;
-- unspecified
Reserved_9_31 : HAL.UInt23 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for DR_Register use record
DR at 0 range 0 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
------------------
-- BRR_Register --
------------------
subtype BRR_DIV_Fraction_Field is HAL.UInt4;
subtype BRR_DIV_Mantissa_Field is HAL.UInt12;
-- Baud rate register
type BRR_Register is record
-- fraction of USARTDIV
DIV_Fraction : BRR_DIV_Fraction_Field := 16#0#;
-- mantissa of USARTDIV
DIV_Mantissa : BRR_DIV_Mantissa_Field := 16#0#;
-- unspecified
Reserved_16_31 : HAL.Short := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for BRR_Register use record
DIV_Fraction at 0 range 0 .. 3;
DIV_Mantissa at 0 range 4 .. 15;
Reserved_16_31 at 0 range 16 .. 31;
end record;
------------------
-- CR1_Register --
------------------
-- Control register 1
type CR1_Register is record
-- Send break
SBK : Boolean := False;
-- Receiver wakeup
RWU : Boolean := False;
-- Receiver enable
RE : Boolean := False;
-- Transmitter enable
TE : Boolean := False;
-- IDLE interrupt enable
IDLEIE : Boolean := False;
-- RXNE interrupt enable
RXNEIE : Boolean := False;
-- Transmission complete interrupt enable
TCIE : Boolean := False;
-- TXE interrupt enable
TXEIE : Boolean := False;
-- PE interrupt enable
PEIE : Boolean := False;
-- Parity selection
PS : Boolean := False;
-- Parity control enable
PCE : Boolean := False;
-- Wakeup method
WAKE : Boolean := False;
-- Word length
M : Boolean := False;
-- USART enable
UE : Boolean := False;
-- unspecified
Reserved_14_14 : HAL.Bit := 16#0#;
-- Oversampling mode
OVER8 : Boolean := False;
-- unspecified
Reserved_16_31 : HAL.Short := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CR1_Register use record
SBK at 0 range 0 .. 0;
RWU at 0 range 1 .. 1;
RE at 0 range 2 .. 2;
TE at 0 range 3 .. 3;
IDLEIE at 0 range 4 .. 4;
RXNEIE at 0 range 5 .. 5;
TCIE at 0 range 6 .. 6;
TXEIE at 0 range 7 .. 7;
PEIE at 0 range 8 .. 8;
PS at 0 range 9 .. 9;
PCE at 0 range 10 .. 10;
WAKE at 0 range 11 .. 11;
M at 0 range 12 .. 12;
UE at 0 range 13 .. 13;
Reserved_14_14 at 0 range 14 .. 14;
OVER8 at 0 range 15 .. 15;
Reserved_16_31 at 0 range 16 .. 31;
end record;
------------------
-- CR2_Register --
------------------
subtype CR2_ADD_Field is HAL.UInt4;
subtype CR2_STOP_Field is HAL.UInt2;
-- Control register 2
type CR2_Register is record
-- Address of the USART node
ADD : CR2_ADD_Field := 16#0#;
-- unspecified
Reserved_4_4 : HAL.Bit := 16#0#;
-- lin break detection length
LBDL : Boolean := False;
-- LIN break detection interrupt enable
LBDIE : Boolean := False;
-- unspecified
Reserved_7_7 : HAL.Bit := 16#0#;
-- Last bit clock pulse
LBCL : Boolean := False;
-- Clock phase
CPHA : Boolean := False;
-- Clock polarity
CPOL : Boolean := False;
-- Clock enable
CLKEN : Boolean := False;
-- STOP bits
STOP : CR2_STOP_Field := 16#0#;
-- LIN mode enable
LINEN : Boolean := False;
-- unspecified
Reserved_15_31 : HAL.UInt17 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CR2_Register use record
ADD at 0 range 0 .. 3;
Reserved_4_4 at 0 range 4 .. 4;
LBDL at 0 range 5 .. 5;
LBDIE at 0 range 6 .. 6;
Reserved_7_7 at 0 range 7 .. 7;
LBCL at 0 range 8 .. 8;
CPHA at 0 range 9 .. 9;
CPOL at 0 range 10 .. 10;
CLKEN at 0 range 11 .. 11;
STOP at 0 range 12 .. 13;
LINEN at 0 range 14 .. 14;
Reserved_15_31 at 0 range 15 .. 31;
end record;
------------------
-- CR3_Register --
------------------
-- Control register 3
type CR3_Register is record
-- Error interrupt enable
EIE : Boolean := False;
-- IrDA mode enable
IREN : Boolean := False;
-- IrDA low-power
IRLP : Boolean := False;
-- Half-duplex selection
HDSEL : Boolean := False;
-- Smartcard NACK enable
NACK : Boolean := False;
-- Smartcard mode enable
SCEN : Boolean := False;
-- DMA enable receiver
DMAR : Boolean := False;
-- DMA enable transmitter
DMAT : Boolean := False;
-- RTS enable
RTSE : Boolean := False;
-- CTS enable
CTSE : Boolean := False;
-- CTS interrupt enable
CTSIE : Boolean := False;
-- One sample bit method enable
ONEBIT : Boolean := False;
-- unspecified
Reserved_12_31 : HAL.UInt20 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CR3_Register use record
EIE at 0 range 0 .. 0;
IREN at 0 range 1 .. 1;
IRLP at 0 range 2 .. 2;
HDSEL at 0 range 3 .. 3;
NACK at 0 range 4 .. 4;
SCEN at 0 range 5 .. 5;
DMAR at 0 range 6 .. 6;
DMAT at 0 range 7 .. 7;
RTSE at 0 range 8 .. 8;
CTSE at 0 range 9 .. 9;
CTSIE at 0 range 10 .. 10;
ONEBIT at 0 range 11 .. 11;
Reserved_12_31 at 0 range 12 .. 31;
end record;
-------------------
-- GTPR_Register --
-------------------
subtype GTPR_PSC_Field is HAL.Byte;
subtype GTPR_GT_Field is HAL.Byte;
-- Guard time and prescaler register
type GTPR_Register is record
-- Prescaler value
PSC : GTPR_PSC_Field := 16#0#;
-- Guard time value
GT : GTPR_GT_Field := 16#0#;
-- unspecified
Reserved_16_31 : HAL.Short := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for GTPR_Register use record
PSC at 0 range 0 .. 7;
GT at 0 range 8 .. 15;
Reserved_16_31 at 0 range 16 .. 31;
end record;
-----------------
-- SR_Register --
-----------------
-- Status register
type SR_Register_1 is record
-- Read-only. Parity error
PE : Boolean := False;
-- Read-only. Framing error
FE : Boolean := False;
-- Read-only. Noise detected flag
NF : Boolean := False;
-- Read-only. Overrun error
ORE : Boolean := False;
-- Read-only. IDLE line detected
IDLE : Boolean := False;
-- Read data register not empty
RXNE : Boolean := False;
-- Transmission complete
TC : Boolean := False;
-- Read-only. Transmit data register empty
TXE : Boolean := False;
-- LIN break detection flag
LBD : Boolean := False;
-- unspecified
Reserved_9_31 : HAL.UInt23 := 16#6000#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for SR_Register_1 use record
PE at 0 range 0 .. 0;
FE at 0 range 1 .. 1;
NF at 0 range 2 .. 2;
ORE at 0 range 3 .. 3;
IDLE at 0 range 4 .. 4;
RXNE at 0 range 5 .. 5;
TC at 0 range 6 .. 6;
TXE at 0 range 7 .. 7;
LBD at 0 range 8 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
------------------
-- CR2_Register --
------------------
-- Control register 2
type CR2_Register_1 is record
-- Address of the USART node
ADD : CR2_ADD_Field := 16#0#;
-- unspecified
Reserved_4_4 : HAL.Bit := 16#0#;
-- lin break detection length
LBDL : Boolean := False;
-- LIN break detection interrupt enable
LBDIE : Boolean := False;
-- unspecified
Reserved_7_11 : HAL.UInt5 := 16#0#;
-- STOP bits
STOP : CR2_STOP_Field := 16#0#;
-- LIN mode enable
LINEN : Boolean := False;
-- unspecified
Reserved_15_31 : HAL.UInt17 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CR2_Register_1 use record
ADD at 0 range 0 .. 3;
Reserved_4_4 at 0 range 4 .. 4;
LBDL at 0 range 5 .. 5;
LBDIE at 0 range 6 .. 6;
Reserved_7_11 at 0 range 7 .. 11;
STOP at 0 range 12 .. 13;
LINEN at 0 range 14 .. 14;
Reserved_15_31 at 0 range 15 .. 31;
end record;
------------------
-- CR3_Register --
------------------
-- Control register 3
type CR3_Register_1 is record
-- Error interrupt enable
EIE : Boolean := False;
-- IrDA mode enable
IREN : Boolean := False;
-- IrDA low-power
IRLP : Boolean := False;
-- Half-duplex selection
HDSEL : Boolean := False;
-- unspecified
Reserved_4_5 : HAL.UInt2 := 16#0#;
-- DMA enable receiver
DMAR : Boolean := False;
-- DMA enable transmitter
DMAT : Boolean := False;
-- unspecified
Reserved_8_10 : HAL.UInt3 := 16#0#;
-- One sample bit method enable
ONEBIT : Boolean := False;
-- unspecified
Reserved_12_31 : HAL.UInt20 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for CR3_Register_1 use record
EIE at 0 range 0 .. 0;
IREN at 0 range 1 .. 1;
IRLP at 0 range 2 .. 2;
HDSEL at 0 range 3 .. 3;
Reserved_4_5 at 0 range 4 .. 5;
DMAR at 0 range 6 .. 6;
DMAT at 0 range 7 .. 7;
Reserved_8_10 at 0 range 8 .. 10;
ONEBIT at 0 range 11 .. 11;
Reserved_12_31 at 0 range 12 .. 31;
end record;
-----------------
-- Peripherals --
-----------------
-- Universal synchronous asynchronous receiver transmitter
type USART2_Peripheral is record
-- Status register
SR : SR_Register;
-- Data register
DR : DR_Register;
-- Baud rate register
BRR : BRR_Register;
-- Control register 1
CR1 : CR1_Register;
-- Control register 2
CR2 : CR2_Register;
-- Control register 3
CR3 : CR3_Register;
-- Guard time and prescaler register
GTPR : GTPR_Register;
end record
with Volatile;
for USART2_Peripheral use record
SR at 0 range 0 .. 31;
DR at 4 range 0 .. 31;
BRR at 8 range 0 .. 31;
CR1 at 12 range 0 .. 31;
CR2 at 16 range 0 .. 31;
CR3 at 20 range 0 .. 31;
GTPR at 24 range 0 .. 31;
end record;
-- Universal synchronous asynchronous receiver transmitter
USART2_Periph : aliased USART2_Peripheral
with Import, Address => USART2_Base;
-- Universal synchronous asynchronous receiver transmitter
USART3_Periph : aliased USART2_Peripheral
with Import, Address => USART3_Base;
-- Universal synchronous asynchronous receiver transmitter
UART7_Periph : aliased USART2_Peripheral
with Import, Address => UART7_Base;
-- Universal synchronous asynchronous receiver transmitter
UART8_Periph : aliased USART2_Peripheral
with Import, Address => UART8_Base;
-- Universal synchronous asynchronous receiver transmitter
USART1_Periph : aliased USART2_Peripheral
with Import, Address => USART1_Base;
-- Universal synchronous asynchronous receiver transmitter
USART6_Periph : aliased USART2_Peripheral
with Import, Address => USART6_Base;
-- Universal synchronous asynchronous receiver transmitter
type UART4_Peripheral is record
-- Status register
SR : SR_Register_1;
-- Data register
DR : DR_Register;
-- Baud rate register
BRR : BRR_Register;
-- Control register 1
CR1 : CR1_Register;
-- Control register 2
CR2 : CR2_Register_1;
-- Control register 3
CR3 : CR3_Register_1;
end record
with Volatile;
for UART4_Peripheral use record
SR at 0 range 0 .. 31;
DR at 4 range 0 .. 31;
BRR at 8 range 0 .. 31;
CR1 at 12 range 0 .. 31;
CR2 at 16 range 0 .. 31;
CR3 at 20 range 0 .. 31;
end record;
-- Universal synchronous asynchronous receiver transmitter
UART4_Periph : aliased UART4_Peripheral
with Import, Address => UART4_Base;
-- Universal synchronous asynchronous receiver transmitter
UART5_Periph : aliased UART4_Peripheral
with Import, Address => UART5_Base;
end STM32_SVD.USART;
|
------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- Ada Modeling Framework --
-- --
-- Runtime Library Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2011-2012, 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.Elements.Generic_Hash;
function AMF.UML.Write_Link_Actions.Hash is
new AMF.Elements.Generic_Hash (UML_Write_Link_Action, UML_Write_Link_Action_Access);
|
-- CD5003F.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 A 'WITH' CLAUSE NAMING 'SYSTEM' NEED NOT BE GIVEN
-- FOR A GENERIC PACKAGE BODY CONTAINING AN ADDRESS CLAUSE
-- AS LONG AS A 'WITH' CLAUSE IS GIVEN FOR THE GENERIC PACKAGE
-- SPECIFICATION.
-- HISTORY:
-- VCL 09/09/87 CREATED ORIGINAL TEST.
-- PWB 05/11/89 CHANGED EXTENSION FROM '.DEP' TO '.ADA'.
-- PWN 11/30/94 ADDED A PROCEDURE TO KEEP PACKAGE BODIES LEGAL.
WITH SYSTEM;
GENERIC
PACKAGE CD5003F_PACK2 IS
PROCEDURE REQUIRE_BODY;
END CD5003F_PACK2;
WITH SPPRT13;
WITH REPORT; USE REPORT;
PRAGMA ELABORATE (SPPRT13);
PRAGMA ELABORATE (REPORT);
PACKAGE BODY CD5003F_PACK2 IS
TYPE ATYPE IS ARRAY (1 .. 10) OF INTEGER;
TEST_VAR : ATYPE := (OTHERS => 0);
FOR TEST_VAR USE AT SPPRT13.VARIABLE_ADDRESS;
USE SYSTEM;
FUNCTION IDENT (P : ATYPE) RETURN ATYPE IS
BEGIN
IF EQUAL (3, 3) THEN
RETURN P;
ELSE
RETURN (OTHERS => 0);
END IF;
END IDENT;
PROCEDURE REQUIRE_BODY IS
BEGIN
NULL;
END;
BEGIN
TEST ("CD5003F", "A 'WITH' CLAUSE NAMING 'SYSTEM' NEED NOT " &
"BE GIVEN FOR A GENERIC PACKAGE BODY " &
"CONTAINING AN ADDRESS CLAUSE AS LONG AS A " &
"'WITH' CLAUSE IS GIVEN FOR THE GENERIC " &
"PACKAGE SPECIFICATION");
TEST_VAR := IDENT (ATYPE'(OTHERS => 3));
IF TEST_VAR /= ATYPE'(OTHERS => 3) THEN
FAILED ("INCORRECT VALUE FOR TEST_VAR");
END IF;
IF TEST_VAR'ADDRESS /= SPPRT13.VARIABLE_ADDRESS THEN
FAILED ("INCORRECT ADDRESS FOR TEST_VAR");
END IF;
END CD5003F_PACK2;
WITH CD5003F_PACK2;
WITH REPORT; USE REPORT;
PRAGMA ELABORATE (REPORT);
PROCEDURE CD5003F IS
PACKAGE CD5003F_PACK3 IS NEW CD5003F_PACK2;
BEGIN
RESULT;
END CD5003F;
|
with CLIC.TTY; use CLIC.TTY;
with Ada.Text_IO; use Ada.Text_IO;
package body CLIC_Ex.Commands.TTY is
package TTY renames CLIC.TTY;
-------------
-- Execute --
-------------
overriding
procedure Execute (Cmd : in out Instance; Args : AAA.Strings.Vector)
is
begin
Put_Line (TTY.Bold ("CLIC.TTY.Bold ()"));
Put_Line (TTY.Dim ("CLIC.TTY.Dim ()"));
Put_Line (TTY.Italic ("CLIC.TTY.Italic ()"));
Put_Line (TTY.Underline ("CLIC.TTY.Underline ()"));
Put_Line (TTY.Emph ("CLIC.TTY.Emph ()"));
Put_Line (TTY.Description ("CLIC.TTY.Description ()"));
Put_Line (TTY.Error ("CLIC.TTY.Error ()"));
Put_Line (TTY.Warn ("CLIC.TTY.Warn ()"));
Put_Line (TTY.Info ("CLIC.TTY.Info ()"));
Put_Line (TTY.Success ("CLIC.TTY.Success ()"));
Put_Line (TTY.Terminal ("CLIC.TTY.Terminal ()"));
Put_Line
(TTY.Format (Text => "CLIC.TTY.Format ("", Fore => ANSI.Light_Blue, Style => ANSI.Strike)",
Fore => ANSI.Light_Blue,
Style => ANSI.Strike));
end Execute;
end CLIC_Ex.Commands.TTY;
|
generic
package any_Math.any_fast_Rotation
is
function to_Rotation (Angle : in Real) return access constant Matrix_2x2;
private
pragma Inline_Always (to_Rotation);
end any_Math.any_fast_Rotation;
|
gcc -c main.c
gnatmake -c exported.adb
gnatbind -n exported.ali
gnatlink exported.ali main.o -o main
|
-- Copyright (c) 1990 Regents of the University of California.
-- All rights reserved.
--
-- This software was developed by John Self of the Arcadia project
-- at the University of California, Irvine.
--
-- Redistribution and use in source and binary forms are permitted
-- provided that the above copyright notice and this paragraph are
-- duplicated in all such forms and that any documentation,
-- advertising materials, and other materials related to such
-- distribution and use acknowledge that the software was developed
-- by the University of California, Irvine. The name of the
-- University may not be used to endorse or promote products derived
-- from this software without specific prior written permission.
-- THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR
-- IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED
-- WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR A PARTICULAR PURPOSE.
-- TITLE external_file_manager
-- AUTHOR: John Self (UCI)
-- DESCRIPTION opens external files for other functions
-- NOTES This package opens external files, and thus may be system dependent
-- because of limitations on file names.
-- This version is for the VADS 5.5 Ada development system.
-- $Header: /co/ua/self/arcadia/aflex/ada/src/RCS/file_managerS.a,v 1.4 90/01/12 15:20:00 self Exp Locker: self $
with text_io; use text_io;
package external_file_manager is
procedure GET_IO_FILE(F : in out FILE_TYPE);
procedure GET_DFA_FILE(F : in out FILE_TYPE);
procedure GET_SCANNER_FILE(F : in out FILE_TYPE);
procedure GET_BACKTRACK_FILE(F : in out FILE_TYPE);
procedure INITIALIZE_FILES;
end external_file_manager;
|
------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- XML Processor --
-- --
-- Runtime Library Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2010-2014, 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 League.Strings.Internals;
with Matreshka.Internals.URI_Utilities;
with XML.SAX.Constants;
with XML.SAX.Simple_Readers.Callbacks;
with XML.SAX.Simple_Readers.Parser;
with XML.SAX.Simple_Readers.Scanner;
package body XML.SAX.Simple_Readers is
use Matreshka.Internals.Strings;
use XML.SAX.Readers;
use type League.Strings.Universal_String;
procedure Reset (Self : in out Simple_Reader);
-- Resets reader to start to read data from new input source.
--------------
-- Base_URI --
--------------
overriding function Base_URI
(Self : not null access constant Simple_Shared_Locator)
return League.IRIs.IRI is
begin
return Matreshka.Internals.XML.Base_Scopes.Base_URI (Self.Reader.Bases);
end Base_URI;
-----------
-- Clear --
-----------
procedure Clear (Item : in out YYSType) is
begin
if Item.String /= null then
Matreshka.Internals.Strings.Dereference (Item.String);
Item.String := null;
end if;
Item.Is_Whitespace := False;
Item.Symbol := Matreshka.Internals.XML.No_Symbol;
end Clear;
------------
-- Column --
------------
overriding function Column
(Self : not null access constant Simple_Shared_Locator) return Natural is
begin
return Self.Reader.Scanner_State.YY_Current_Column;
end Column;
---------------------
-- Content_Handler --
---------------------
overriding function Content_Handler
(Self : Simple_Reader) return XML.SAX.Readers.SAX_Content_Handler_Access is
begin
if Self.Content_Handler = Default_Handler'Access then
return null;
else
return Self.Content_Handler;
end if;
end Content_Handler;
-------------------------
-- Declaration_Handler --
-------------------------
overriding function Declaration_Handler
(Self : Simple_Reader)
return XML.SAX.Readers.SAX_Declaration_Handler_Access is
begin
if Self.Declaration_Handler = Default_Handler'Access then
return null;
else
return Self.Declaration_Handler;
end if;
end Declaration_Handler;
-----------------
-- DTD_Handler --
-----------------
overriding function DTD_Handler
(Self : Simple_Reader) return XML.SAX.Readers.SAX_DTD_Handler_Access is
begin
if Self.DTD_Handler = Default_Handler'Access then
return null;
else
return Self.DTD_Handler;
end if;
end DTD_Handler;
--------------
-- Encoding --
--------------
overriding function Encoding
(Self : not null access constant Simple_Shared_Locator)
return League.Strings.Universal_String
is
pragma Unreferenced (Self);
begin
return League.Strings.Empty_Universal_String;
end Encoding;
---------------------
-- Entity_Resolver --
---------------------
overriding function Entity_Resolver
(Self : Simple_Reader)
return XML.SAX.Readers.SAX_Entity_Resolver_Access is
begin
return Self.Entity_Resolver;
end Entity_Resolver;
-------------------
-- Error_Handler --
-------------------
overriding function Error_Handler
(Self : Simple_Reader) return XML.SAX.Readers.SAX_Error_Handler_Access is
begin
if Self.Error_Handler = Default_Handler'Access then
return null;
else
return Self.Error_Handler;
end if;
end Error_Handler;
-------------
-- Feature --
-------------
overriding function Feature
(Self : Simple_Reader;
Name : League.Strings.Universal_String)
return Boolean is
begin
if Name = XML.SAX.Constants.Namespaces_Feature then
return Self.Configuration.Enable_Namespaces;
elsif Name = XML.SAX.Constants.Namespace_Prefixes_Feature then
return Self.Configuration.Enable_Prefixes;
elsif Name = XML.SAX.Constants.Validation_Feature then
return Self.Configuration.Enable_Validation;
elsif Name = XML.SAX.Constants.Load_External_DTD_Feature then
return Self.Configuration.Load_External_DTD;
end if;
raise Constraint_Error;
end Feature;
--------------
-- Finalize --
--------------
overriding procedure Finalize (Self : in out Simple_Reader) is
Locator : Matreshka.Internals.SAX_Locators.Shared_Locator_Access
:= Matreshka.Internals.SAX_Locators.Shared_Locator_Access
(Self.Locator);
begin
Self.Locator.Reader := null;
Self.Locator := null;
Matreshka.Internals.SAX_Locators.Dereference (Locator);
Scanner.Finalize (Self);
Matreshka.Internals.Strings.Dereference (Self.Character_Buffer);
Matreshka.Internals.Strings.Dereference (Self.Character_Data);
Matreshka.Internals.XML.Attribute_Tables.Finalize (Self.Attributes);
Matreshka.Internals.XML.Base_Scopes.Finalize (Self.Bases);
Matreshka.Internals.XML.Element_Tables.Finalize (Self.Elements);
Matreshka.Internals.XML.Symbol_Tables.Finalize (Self.Symbols);
Matreshka.Internals.XML.Entity_Tables.Finalize (Self.Entities);
Matreshka.Internals.XML.Namespace_Scopes.Finalize (Self.Namespace_Scope);
Matreshka.Internals.XML.Notation_Tables.Finalize (Self.Notations);
Matreshka.Internals.XML.Attributes.Finalize (Self.Attribute_Set);
end Finalize;
-----------------
-- Has_Feature --
-----------------
overriding function Has_Feature
(Self : Simple_Reader;
Name : League.Strings.Universal_String) return Boolean
is
pragma Unreferenced (Self);
begin
if Name = XML.SAX.Constants.Namespaces_Feature then
return True;
elsif Name = XML.SAX.Constants.Namespace_Prefixes_Feature then
return True;
elsif Name = XML.SAX.Constants.Validation_Feature then
return True;
elsif Name = XML.SAX.Constants.Load_External_DTD_Feature then
return True;
else
return False;
end if;
end Has_Feature;
----------------
-- Initialize --
----------------
overriding procedure Initialize (Self : in out Simple_Reader) is
begin
Matreshka.Internals.XML.Attributes.Initialize (Self.Attribute_Set);
Matreshka.Internals.XML.Base_Scopes.Initialize (Self.Bases);
Matreshka.Internals.XML.Namespace_Scopes.Initialize
(Self.Namespace_Scope);
Matreshka.Internals.XML.Entity_Tables.Initialize (Self.Entities);
Matreshka.Internals.XML.Symbol_Tables.Initialize (Self.Symbols);
XML.SAX.Simple_Readers.Parser.Initialize (Self.Parser_State);
Self.Character_Buffer := Matreshka.Internals.Strings.Allocate (2);
-- Preallocate internal buffer for character reference handling. One
-- Unicode character can be represented in UTF-16 encoding by one or
-- or two code units, thus preallocate enough space.
Scanner.Initialize (Self);
Self.Locator :=
new Simple_Shared_Locator'
(Matreshka.Internals.SAX_Locators.Shared_Abstract_Locator with
Reader => Self'Unchecked_Access);
end Initialize;
---------------------
-- Lexical_Handler --
---------------------
overriding function Lexical_Handler
(Self : Simple_Reader) return XML.SAX.Readers.SAX_Lexical_Handler_Access is
begin
if Self.Lexical_Handler = Default_Handler'Access then
return null;
else
return Self.Lexical_Handler;
end if;
end Lexical_Handler;
----------
-- Line --
----------
overriding function Line
(Self : not null access constant Simple_Shared_Locator) return Natural is
begin
return Self.Reader.Scanner_State.YY_Current_Line;
end Line;
----------
-- Move --
----------
procedure Move
(To : in out YYSType;
From : in out YYSType) is
begin
To.String := From.String;
To.Is_Whitespace := From.Is_Whitespace;
To.Symbol := From.Symbol;
From.String := null;
From.Is_Whitespace := False;
From.Symbol := Matreshka.Internals.XML.No_Symbol;
end Move;
-----------
-- Parse --
-----------
procedure Parse
(Self : in out Simple_Reader;
Source : not null access XML.SAX.Input_Sources.SAX_Input_Source'Class) is
begin
Self.Set_Input_Source (Source);
Self.Configuration.Incremental := False;
Self.Parse;
end Parse;
-----------
-- Parse --
-----------
not overriding procedure Parse (Self : in out Simple_Reader) is
begin
if Self.Configuration.Reset then
Reset (Self);
end if;
Parser.YYParse (Self);
Ada.Exceptions.Reraise_Occurrence (Self.User_Exception);
end Parse;
---------------
-- Public_Id --
---------------
overriding function Public_Id
(Self : not null access constant Simple_Shared_Locator)
return League.Strings.Universal_String is
begin
return
League.Strings.Internals.Create
(Matreshka.Internals.XML.Entity_Tables.Public_Id
(Self.Reader.Entities, Self.Reader.Scanner_State.Entity));
end Public_Id;
-----------
-- Reset --
-----------
procedure Reset (Self : in out Simple_Reader) is
use Matreshka.Internals.XML;
use Matreshka.Internals.XML.Entity_Tables;
Entity : Entity_Identifier;
begin
-- Reset reader's state to initial.
Matreshka.Internals.XML.Attribute_Tables.Reset (Self.Attributes);
Matreshka.Internals.XML.Base_Scopes.Reset (Self.Bases);
Matreshka.Internals.XML.Element_Tables.Reset (Self.Elements);
Matreshka.Internals.XML.Entity_Tables.Reset (Self.Entities);
Matreshka.Internals.XML.Namespace_Scopes.Reset (Self.Namespace_Scope);
Matreshka.Internals.XML.Symbol_Tables.Reset (Self.Symbols);
Matreshka.Internals.XML.Notation_Tables.Reset (Self.Notations);
Self.Namespaces.Enabled := Self.Configuration.Enable_Namespaces;
Self.Namespaces.Prefixes := Self.Configuration.Enable_Prefixes;
Self.Validation.Enabled := Self.Configuration.Enable_Validation;
Self.Validation.Load_DTD := Self.Configuration.Load_External_DTD;
Self.Validation.Has_DTD := False;
if Self.Validation.Enabled then
-- This feature is always on when validation is on.
Self.Validation.Load_DTD := True;
end if;
Callbacks.Call_Set_Document_Locator (Self);
Self.Version := XML_1_0;
New_Document_Entity
(Self.Entities,
Self.Configuration.Source.Public_Id,
Self.Configuration.Source.System_Id,
Matreshka.Internals.URI_Utilities.Directory_Name
(Self.Configuration.Source.System_Id),
Entity);
Self.Scanner_State :=
(Entity => Entity,
Source => Self.Configuration.Source,
Data => Matreshka.Internals.Strings.Shared_Empty'Access,
Incremental => Self.Configuration.Incremental,
others => <>);
Self.Parser_State.TOS := 0;
Self.Parser_State.Look_Ahead := True;
Self.Parser_State.Error := False;
Scanner.Initialize (Self);
-- Initialize base URI.
Matreshka.Internals.XML.Base_Scopes.Push_Scope
(Self.Bases,
League.IRIs.From_Universal_String
(Matreshka.Internals.URI_Utilities.Directory_Name
(Self.Configuration.Source.System_Id)));
Self.Configuration.Reset := False;
Self.Configuration.Source := null;
Self.In_Document_Content := False;
Self.Is_Standalone := False;
end Reset;
-------------------------
-- Set_Content_Handler --
-------------------------
overriding procedure Set_Content_Handler
(Self : in out Simple_Reader;
Handler : XML.SAX.Readers.SAX_Content_Handler_Access) is
begin
if Handler = null then
Self.Content_Handler := Default_Handler'Access;
else
Self.Content_Handler := Handler;
end if;
end Set_Content_Handler;
-----------------------------
-- Set_Declaration_Handler --
-----------------------------
overriding procedure Set_Declaration_Handler
(Self : in out Simple_Reader;
Handler : XML.SAX.Readers.SAX_Declaration_Handler_Access) is
begin
if Handler = null then
Self.Declaration_Handler := Default_Handler'Access;
else
Self.Declaration_Handler := Handler;
end if;
end Set_Declaration_Handler;
---------------------
-- Set_DTD_Handler --
---------------------
overriding procedure Set_DTD_Handler
(Self : in out Simple_Reader;
Handler : XML.SAX.Readers.SAX_DTD_Handler_Access) is
begin
if Handler = null then
Self.DTD_Handler := Default_Handler'Access;
else
Self.DTD_Handler := Handler;
end if;
end Set_DTD_Handler;
-------------------------
-- Set_Entity_Resolver --
-------------------------
overriding procedure Set_Entity_Resolver
(Self : in out Simple_Reader;
Resolver : XML.SAX.Readers.SAX_Entity_Resolver_Access) is
begin
Self.Entity_Resolver := Resolver;
end Set_Entity_Resolver;
-----------------------
-- Set_Error_Handler --
-----------------------
overriding procedure Set_Error_Handler
(Self : in out Simple_Reader;
Handler : XML.SAX.Readers.SAX_Error_Handler_Access) is
begin
if Handler = null then
Self.Error_Handler := Default_Handler'Access;
else
Self.Error_Handler := Handler;
end if;
end Set_Error_Handler;
-----------------
-- Set_Feature --
-----------------
overriding procedure Set_Feature
(Self : in out Simple_Reader;
Name : League.Strings.Universal_String;
Value : Boolean) is
begin
if Name = XML.SAX.Constants.Namespaces_Feature then
Self.Configuration.Enable_Namespaces := Value;
elsif Name = XML.SAX.Constants.Namespace_Prefixes_Feature then
Self.Configuration.Enable_Prefixes := Value;
elsif Name = XML.SAX.Constants.Validation_Feature then
Self.Configuration.Enable_Validation := Value;
elsif Name = XML.SAX.Constants.Load_External_DTD_Feature then
Self.Configuration.Load_External_DTD := Value;
end if;
end Set_Feature;
----------------------
-- Set_Input_Source --
----------------------
not overriding procedure Set_Input_Source
(Self : in out Simple_Reader;
Source : not null access XML.SAX.Input_Sources.SAX_Input_Source'Class) is
begin
Self.Configuration.Source := Source.all'Unchecked_Access;
Self.Configuration.Incremental := True;
Self.Configuration.Reset := True;
end Set_Input_Source;
-------------------------
-- Set_Lexical_Handler --
-------------------------
overriding procedure Set_Lexical_Handler
(Self : in out Simple_Reader;
Handler : XML.SAX.Readers.SAX_Lexical_Handler_Access) is
begin
if Handler = null then
Self.Lexical_Handler := Default_Handler'Access;
else
Self.Lexical_Handler := Handler;
end if;
end Set_Lexical_Handler;
----------------
-- Set_String --
----------------
procedure Set_String
(Item : in out YYSType;
String : League.Strings.Universal_String;
Is_Whitespace : Boolean)
is
pragma Assert (Item.String = null);
begin
Item.String := League.Strings.Internals.Internal (String);
Item.Is_Whitespace := Is_Whitespace;
Item.Symbol := Matreshka.Internals.XML.No_Symbol;
Matreshka.Internals.Strings.Reference (Item.String);
end Set_String;
-------------------------
-- Set_String_Internal --
-------------------------
procedure Set_String_Internal
(Item : in out YYSType;
String : Matreshka.Internals.Strings.Shared_String_Access;
Is_Whitespace : Boolean)
is
pragma Assert (Item.String = null);
begin
Item.String := String;
Item.Is_Whitespace := Is_Whitespace;
Item.Symbol := Matreshka.Internals.XML.No_Symbol;
end Set_String_Internal;
----------------
-- Set_Symbol --
----------------
procedure Set_Symbol
(Item : in out YYSType;
Symbol : Matreshka.Internals.XML.Symbol_Identifier)
is
pragma Assert (Item.String = null);
begin
Item.String := null;
Item.Is_Whitespace := False;
Item.Symbol := Symbol;
end Set_Symbol;
---------------
-- System_Id --
---------------
overriding function System_Id
(Self : not null access constant Simple_Shared_Locator)
return League.Strings.Universal_String is
begin
return
League.Strings.Internals.Create
(Matreshka.Internals.XML.Entity_Tables.System_Id
(Self.Reader.Entities, Self.Reader.Scanner_State.Entity));
end System_Id;
-------------
-- Version --
-------------
overriding function Version
(Self : not null access constant Simple_Shared_Locator)
return League.Strings.Universal_String is
begin
case Self.Reader.Version is
when XML_1_0 =>
return League.Strings.To_Universal_String ("1.0");
when XML_1_1 =>
return League.Strings.To_Universal_String ("1.1");
end case;
end Version;
end XML.SAX.Simple_Readers;
|
-- C35507N.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 THE ATTRIBUTES 'POS' AND 'VAL' YIELD THE CORRECT
-- RESULTS WHEN THE PREFIX IS A FORMAL DISCRETE TYPE WHOSE ACTUAL
-- PARAMETER IS A CHARACTER TYPE WITH AN ENUMERATION REPRESENTATION
-- CLAUSE.
-- HISTORY:
-- RJW 06/03/86 CREATED ORIGINAL TEST.
-- JET 09/22/87 MADE REPRESENTATION VALUES CONSECUTIVE.
-- PWB 05/11/89 CHANGED EXTENSION FROM '.DEP' TO '.ADA'.
-- PWN 11/30/94 REMOVED TESTS BASED ON 128 CHARACTERS FOR ADA 9X.
WITH REPORT; USE REPORT;
PROCEDURE C35507N IS
TYPE CHAR IS ('A', B);
FOR CHAR USE ('A' => 4, B => 5);
TYPE NEWCHAR IS NEW CHAR;
BEGIN
TEST( "C35507N" , "CHECK THAT THE ATTRIBUTES 'POS' AND " &
"'VAL' YIELD THE CORRECT RESULTS WHEN THE " &
"PREFIX IS A FORMAL DISCRETE TYPE WHOSE " &
"ACTUAL PARAMETER IS A CHARACTER TYPE " &
"WITH AN ENUMERATION REPRESENTATION CLAUSE" );
DECLARE
GENERIC
TYPE CHTYPE IS (<>);
STR : STRING;
I1 : INTEGER;
PROCEDURE P;
PROCEDURE P IS
SUBTYPE SUBCH IS CHTYPE;
CH : CHTYPE;
POSITION : INTEGER;
BEGIN
POSITION := 0;
FOR CH IN CHTYPE LOOP
IF SUBCH'POS (CH) /= POSITION THEN
FAILED ( "INCORRECT VALUE FOR " & STR &
"'POS OF " & CHTYPE'IMAGE (CH) );
END IF;
IF SUBCH'VAL (POSITION) /= CH THEN
FAILED ( "INCORRECT VALUE FOR " & STR &
"'VAL OF CHARACTER IN POSITION - " &
INTEGER'IMAGE (POSITION) );
END IF;
POSITION := POSITION + 1;
END LOOP;
BEGIN
IF SUBCH'VAL (-1) = SUBCH'VAL (0) THEN
FAILED ( "NO EXCEPTION RAISED " &
"FOR " & STR & "'VAL (-1) - 1" );
ELSE
FAILED ( "NO EXCEPTION RAISED " &
"FOR " & STR & "'VAL (-1) - 2" );
END IF;
EXCEPTION
WHEN CONSTRAINT_ERROR =>
NULL;
WHEN OTHERS =>
FAILED ( "WRONG EXCEPTION RAISED " &
"FOR " & STR & "'VAL (-1)" );
END;
END P;
PROCEDURE PCHAR IS NEW P (CHAR, "CHAR", 1);
PROCEDURE PNCHAR IS NEW P (NEWCHAR, "NEWCHAR", 1);
PROCEDURE PCH IS NEW P (CHARACTER, "CHARACTER", 127);
BEGIN
PCHAR;
PNCHAR;
PCH;
END;
RESULT;
END C35507N;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- A D A . S T R I N G S . B O U N D E D --
-- --
-- S p e c --
-- --
-- Copyright (C) 1992-2021, 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 contents of the part following the private keyword. --
-- --
-- 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. --
-- --
------------------------------------------------------------------------------
-- Preconditions in this unit are meant for analysis only, not for run-time
-- checking, so that the expected exceptions are raised. This is enforced by
-- setting the corresponding assertion policy to Ignore.
pragma Assertion_Policy (Pre => Ignore);
with Ada.Strings.Maps;
with Ada.Strings.Superbounded;
package Ada.Strings.Bounded is
pragma Preelaborate;
generic
Max : Positive;
-- Maximum length of a Bounded_String
package Generic_Bounded_Length with
Initial_Condition => Length (Null_Bounded_String) = 0
is
Max_Length : constant Positive := Max;
type Bounded_String is private;
pragma Preelaborable_Initialization (Bounded_String);
Null_Bounded_String : constant Bounded_String;
subtype Length_Range is Natural range 0 .. Max_Length;
function Length (Source : Bounded_String) return Length_Range with
Global => null;
--------------------------------------------------------
-- Conversion, Concatenation, and Selection Functions --
--------------------------------------------------------
function To_Bounded_String
(Source : String;
Drop : Truncation := Error) return Bounded_String
with
Pre => (if Source'Length > Max_Length then Drop /= Error),
Post =>
Length (To_Bounded_String'Result)
= Natural'Min (Max_Length, Source'Length),
Global => null;
function To_String (Source : Bounded_String) return String with
Post => To_String'Result'Length = Length (Source),
Global => null;
procedure Set_Bounded_String
(Target : out Bounded_String;
Source : String;
Drop : Truncation := Error)
with
Pre => (if Source'Length > Max_Length then Drop /= Error),
Post => Length (Target) = Natural'Min (Max_Length, Source'Length),
Global => null;
pragma Ada_05 (Set_Bounded_String);
function Append
(Left : Bounded_String;
Right : Bounded_String;
Drop : Truncation := Error) return Bounded_String
with
Pre =>
(if Length (Left) > Max_Length - Length (Right)
then Drop /= Error),
Post =>
Length (Append'Result)
= Natural'Min (Max_Length, Length (Left) + Length (Right)),
Global => null;
function Append
(Left : Bounded_String;
Right : String;
Drop : Truncation := Error) return Bounded_String
with
Pre =>
(if Right'Length > Max_Length - Length (Left)
then Drop /= Error),
Post =>
Length (Append'Result)
= Natural'Min (Max_Length, Length (Left) + Right'Length),
Global => null;
function Append
(Left : String;
Right : Bounded_String;
Drop : Truncation := Error) return Bounded_String
with
Pre =>
(if Left'Length > Max_Length - Length (Right)
then Drop /= Error),
Post =>
Length (Append'Result)
= Natural'Min (Max_Length, Left'Length + Length (Right)),
Global => null;
function Append
(Left : Bounded_String;
Right : Character;
Drop : Truncation := Error) return Bounded_String
with
Pre => (if Length (Left) = Max_Length then Drop /= Error),
Post =>
Length (Append'Result)
= Natural'Min (Max_Length, Length (Left) + 1),
Global => null;
function Append
(Left : Character;
Right : Bounded_String;
Drop : Truncation := Error) return Bounded_String
with
Pre => (if Length (Right) = Max_Length then Drop /= Error),
Post =>
Length (Append'Result)
= Natural'Min (Max_Length, 1 + Length (Right)),
Global => null;
procedure Append
(Source : in out Bounded_String;
New_Item : Bounded_String;
Drop : Truncation := Error)
with
Pre =>
(if Length (Source) > Max_Length - Length (New_Item)
then Drop /= Error),
Post =>
Length (Source)
= Natural'Min (Max_Length, Length (Source)'Old + Length (New_Item)),
Global => null;
procedure Append
(Source : in out Bounded_String;
New_Item : String;
Drop : Truncation := Error)
with
Pre =>
(if New_Item'Length > Max_Length - Length (Source)
then Drop /= Error),
Post =>
Length (Source)
= Natural'Min (Max_Length, Length (Source)'Old + New_Item'Length),
Global => null;
procedure Append
(Source : in out Bounded_String;
New_Item : Character;
Drop : Truncation := Error)
with
Pre => (if Length (Source) = Max_Length then Drop /= Error),
Post =>
Length (Source)
= Natural'Min (Max_Length, Length (Source)'Old + 1),
Global => null;
function "&"
(Left : Bounded_String;
Right : Bounded_String) return Bounded_String
with
Pre => Length (Left) <= Max_Length - Length (Right),
Post => Length ("&"'Result) = Length (Left) + Length (Right),
Global => null;
function "&"
(Left : Bounded_String;
Right : String) return Bounded_String
with
Pre => Right'Length <= Max_Length - Length (Left),
Post => Length ("&"'Result) = Length (Left) + Right'Length,
Global => null;
function "&"
(Left : String;
Right : Bounded_String) return Bounded_String
with
Pre => Left'Length <= Max_Length - Length (Right),
Post => Length ("&"'Result) = Left'Length + Length (Right),
Global => null;
function "&"
(Left : Bounded_String;
Right : Character) return Bounded_String
with
Pre => Length (Left) < Max_Length,
Post => Length ("&"'Result) = Length (Left) + 1,
Global => null;
function "&"
(Left : Character;
Right : Bounded_String) return Bounded_String
with
Pre => Length (Right) < Max_Length,
Post => Length ("&"'Result) = 1 + Length (Right),
Global => null;
function Element
(Source : Bounded_String;
Index : Positive) return Character
with
Pre => Index <= Length (Source),
Global => null;
procedure Replace_Element
(Source : in out Bounded_String;
Index : Positive;
By : Character)
with
Pre => Index <= Length (Source),
Post => Length (Source) = Length (Source)'Old,
Global => null;
function Slice
(Source : Bounded_String;
Low : Positive;
High : Natural) return String
with
Pre => Low - 1 <= Length (Source) and then High <= Length (Source),
Post => Slice'Result'Length = Natural'Max (0, High - Low + 1),
Global => null;
function Bounded_Slice
(Source : Bounded_String;
Low : Positive;
High : Natural) return Bounded_String
with
Pre => Low - 1 <= Length (Source) and then High <= Length (Source),
Post =>
Length (Bounded_Slice'Result) = Natural'Max (0, High - Low + 1),
Global => null;
pragma Ada_05 (Bounded_Slice);
procedure Bounded_Slice
(Source : Bounded_String;
Target : out Bounded_String;
Low : Positive;
High : Natural)
with
Pre => Low - 1 <= Length (Source) and then High <= Length (Source),
Post => Length (Target) = Natural'Max (0, High - Low + 1),
Global => null;
pragma Ada_05 (Bounded_Slice);
function "="
(Left : Bounded_String;
Right : Bounded_String) return Boolean
with
Global => null;
function "="
(Left : Bounded_String;
Right : String) return Boolean
with
Global => null;
function "="
(Left : String;
Right : Bounded_String) return Boolean
with
Global => null;
function "<"
(Left : Bounded_String;
Right : Bounded_String) return Boolean
with
Global => null;
function "<"
(Left : Bounded_String;
Right : String) return Boolean
with
Global => null;
function "<"
(Left : String;
Right : Bounded_String) return Boolean
with
Global => null;
function "<="
(Left : Bounded_String;
Right : Bounded_String) return Boolean
with
Global => null;
function "<="
(Left : Bounded_String;
Right : String) return Boolean
with
Global => null;
function "<="
(Left : String;
Right : Bounded_String) return Boolean
with
Global => null;
function ">"
(Left : Bounded_String;
Right : Bounded_String) return Boolean
with
Global => null;
function ">"
(Left : Bounded_String;
Right : String) return Boolean
with
Global => null;
function ">"
(Left : String;
Right : Bounded_String) return Boolean
with
Global => null;
function ">="
(Left : Bounded_String;
Right : Bounded_String) return Boolean
with
Global => null;
function ">="
(Left : Bounded_String;
Right : String) return Boolean
with
Global => null;
function ">="
(Left : String;
Right : Bounded_String) return Boolean
with
Global => null;
----------------------
-- Search Functions --
----------------------
function Index
(Source : Bounded_String;
Pattern : String;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping := Maps.Identity) return Natural
with
Pre => Pattern'Length /= 0,
Global => null;
function Index
(Source : Bounded_String;
Pattern : String;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping_Function) return Natural
with
Pre => Pattern'Length /= 0,
Global => null;
function Index
(Source : Bounded_String;
Set : Maps.Character_Set;
Test : Membership := Inside;
Going : Direction := Forward) return Natural
with
Global => null;
function Index
(Source : Bounded_String;
Pattern : String;
From : Positive;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping := Maps.Identity) return Natural
with
Pre =>
(if Length (Source) /= 0
then From <= Length (Source))
and then Pattern'Length /= 0,
Global => null;
pragma Ada_05 (Index);
function Index
(Source : Bounded_String;
Pattern : String;
From : Positive;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping_Function) return Natural
with
Pre =>
(if Length (Source) /= 0
then From <= Length (Source))
and then Pattern'Length /= 0,
Global => null;
pragma Ada_05 (Index);
function Index
(Source : Bounded_String;
Set : Maps.Character_Set;
From : Positive;
Test : Membership := Inside;
Going : Direction := Forward) return Natural
with
Pre => (if Length (Source) /= 0 then From <= Length (Source)),
Global => null;
pragma Ada_05 (Index);
function Index_Non_Blank
(Source : Bounded_String;
Going : Direction := Forward) return Natural
with
Global => null;
function Index_Non_Blank
(Source : Bounded_String;
From : Positive;
Going : Direction := Forward) return Natural
with
Pre => (if Length (Source) /= 0 then From <= Length (Source)),
Global => null;
pragma Ada_05 (Index_Non_Blank);
function Count
(Source : Bounded_String;
Pattern : String;
Mapping : Maps.Character_Mapping := Maps.Identity) return Natural
with
Pre => Pattern'Length /= 0,
Global => null;
function Count
(Source : Bounded_String;
Pattern : String;
Mapping : Maps.Character_Mapping_Function) return Natural
with
Pre => Pattern'Length /= 0,
Global => null;
function Count
(Source : Bounded_String;
Set : Maps.Character_Set) return Natural
with
Global => null;
procedure Find_Token
(Source : Bounded_String;
Set : Maps.Character_Set;
From : Positive;
Test : Membership;
First : out Positive;
Last : out Natural)
with
Pre => (if Length (Source) /= 0 then From <= Length (Source)),
Global => null;
pragma Ada_2012 (Find_Token);
procedure Find_Token
(Source : Bounded_String;
Set : Maps.Character_Set;
Test : Membership;
First : out Positive;
Last : out Natural)
with
Global => null;
------------------------------------
-- String Translation Subprograms --
------------------------------------
function Translate
(Source : Bounded_String;
Mapping : Maps.Character_Mapping) return Bounded_String
with
Post => Length (Translate'Result) = Length (Source),
Global => null;
procedure Translate
(Source : in out Bounded_String;
Mapping : Maps.Character_Mapping)
with
Post => Length (Source) = Length (Source)'Old,
Global => null;
function Translate
(Source : Bounded_String;
Mapping : Maps.Character_Mapping_Function) return Bounded_String
with
Post => Length (Translate'Result) = Length (Source),
Global => null;
procedure Translate
(Source : in out Bounded_String;
Mapping : Maps.Character_Mapping_Function)
with
Post => Length (Source) = Length (Source)'Old,
Global => null;
---------------------------------------
-- String Transformation Subprograms --
---------------------------------------
function Replace_Slice
(Source : Bounded_String;
Low : Positive;
High : Natural;
By : String;
Drop : Truncation := Error) return Bounded_String
with
Pre =>
Low - 1 <= Length (Source)
and then
(if Drop = Error
then (if High >= Low
then Low - 1
<= Max_Length - By'Length
- Natural'Max (Length (Source) - High, 0)
else Length (Source) <= Max_Length - By'Length)),
Contract_Cases =>
(High >= Low =>
Length (Replace_Slice'Result)
= Natural'Min
(Max_Length,
Low - 1 + By'Length + Natural'Max (Length (Source) - High,
0)),
others =>
Length (Replace_Slice'Result)
= Natural'Min (Max_Length, Length (Source) + By'Length)),
Global => null;
procedure Replace_Slice
(Source : in out Bounded_String;
Low : Positive;
High : Natural;
By : String;
Drop : Truncation := Error)
with
Pre =>
Low - 1 <= Length (Source)
and then
(if Drop = Error
then (if High >= Low
then Low - 1
<= Max_Length - By'Length
- Natural'Max (Length (Source) - High, 0)
else Length (Source) <= Max_Length - By'Length)),
Contract_Cases =>
(High >= Low =>
Length (Source)
= Natural'Min
(Max_Length,
Low - 1 + By'Length + Natural'Max (Length (Source)'Old - High,
0)),
others =>
Length (Source)
= Natural'Min (Max_Length, Length (Source)'Old + By'Length)),
Global => null;
function Insert
(Source : Bounded_String;
Before : Positive;
New_Item : String;
Drop : Truncation := Error) return Bounded_String
with
Pre =>
Before - 1 <= Length (Source)
and then (if New_Item'Length > Max_Length - Length (Source)
then Drop /= Error),
Post =>
Length (Insert'Result)
= Natural'Min (Max_Length, Length (Source) + New_Item'Length),
Global => null;
procedure Insert
(Source : in out Bounded_String;
Before : Positive;
New_Item : String;
Drop : Truncation := Error)
with
Pre =>
Before - 1 <= Length (Source)
and then (if New_Item'Length > Max_Length - Length (Source)
then Drop /= Error),
Post =>
Length (Source)
= Natural'Min (Max_Length, Length (Source)'Old + New_Item'Length),
Global => null;
function Overwrite
(Source : Bounded_String;
Position : Positive;
New_Item : String;
Drop : Truncation := Error) return Bounded_String
with
Pre =>
Position - 1 <= Length (Source)
and then (if New_Item'Length > Max_Length - (Position - 1)
then Drop /= Error),
Post =>
Length (Overwrite'Result)
= Natural'Max
(Length (Source),
Natural'Min (Max_Length, Position - 1 + New_Item'Length)),
Global => null;
procedure Overwrite
(Source : in out Bounded_String;
Position : Positive;
New_Item : String;
Drop : Truncation := Error)
with
Pre =>
Position - 1 <= Length (Source)
and then (if New_Item'Length > Max_Length - (Position - 1)
then Drop /= Error),
Post =>
Length (Source)
= Natural'Max
(Length (Source)'Old,
Natural'Min (Max_Length, Position - 1 + New_Item'Length)),
Global => null;
function Delete
(Source : Bounded_String;
From : Positive;
Through : Natural) return Bounded_String
with
Pre =>
(if Through <= From then From - 1 <= Length (Source)),
Contract_Cases =>
(Through >= From =>
Length (Delete'Result) = Length (Source) - (Through - From + 1),
others =>
Length (Delete'Result) = Length (Source)),
Global => null;
procedure Delete
(Source : in out Bounded_String;
From : Positive;
Through : Natural)
with
Pre =>
(if Through <= From then From - 1 <= Length (Source)),
Contract_Cases =>
(Through >= From =>
Length (Source) = Length (Source)'Old - (Through - From + 1),
others =>
Length (Source) = Length (Source)'Old),
Global => null;
---------------------------------
-- String Selector Subprograms --
---------------------------------
function Trim
(Source : Bounded_String;
Side : Trim_End) return Bounded_String
with
Post => Length (Trim'Result) <= Length (Source),
Global => null;
procedure Trim
(Source : in out Bounded_String;
Side : Trim_End)
with
Post => Length (Source) <= Length (Source)'Old,
Global => null;
function Trim
(Source : Bounded_String;
Left : Maps.Character_Set;
Right : Maps.Character_Set) return Bounded_String
with
Post => Length (Trim'Result) <= Length (Source),
Global => null;
procedure Trim
(Source : in out Bounded_String;
Left : Maps.Character_Set;
Right : Maps.Character_Set)
with
Post => Length (Source) <= Length (Source)'Old,
Global => null;
function Head
(Source : Bounded_String;
Count : Natural;
Pad : Character := Space;
Drop : Truncation := Error) return Bounded_String
with
Pre => (if Count > Max_Length then Drop /= Error),
Post => Length (Head'Result) = Natural'Min (Max_Length, Count),
Global => null;
procedure Head
(Source : in out Bounded_String;
Count : Natural;
Pad : Character := Space;
Drop : Truncation := Error)
with
Pre => (if Count > Max_Length then Drop /= Error),
Post => Length (Source) = Natural'Min (Max_Length, Count),
Global => null;
function Tail
(Source : Bounded_String;
Count : Natural;
Pad : Character := Space;
Drop : Truncation := Error) return Bounded_String
with
Pre => (if Count > Max_Length then Drop /= Error),
Post => Length (Tail'Result) = Natural'Min (Max_Length, Count),
Global => null;
procedure Tail
(Source : in out Bounded_String;
Count : Natural;
Pad : Character := Space;
Drop : Truncation := Error)
with
Pre => (if Count > Max_Length then Drop /= Error),
Post => Length (Source) = Natural'Min (Max_Length, Count),
Global => null;
------------------------------------
-- String Constructor Subprograms --
------------------------------------
function "*"
(Left : Natural;
Right : Character) return Bounded_String
with
Pre => Left <= Max_Length,
Post => Length ("*"'Result) = Left,
Global => null;
function "*"
(Left : Natural;
Right : String) return Bounded_String
with
Pre => (if Left /= 0 then Right'Length <= Max_Length / Left),
Post => Length ("*"'Result) = Left * Right'Length,
Global => null;
function "*"
(Left : Natural;
Right : Bounded_String) return Bounded_String
with
Pre => (if Left /= 0 then Length (Right) <= Max_Length / Left),
Post => Length ("*"'Result) = Left * Length (Right),
Global => null;
function Replicate
(Count : Natural;
Item : Character;
Drop : Truncation := Error) return Bounded_String
with
Pre => (if Count > Max_Length then Drop /= Error),
Post =>
Length (Replicate'Result)
= Natural'Min (Max_Length, Count),
Global => null;
function Replicate
(Count : Natural;
Item : String;
Drop : Truncation := Error) return Bounded_String
with
Pre =>
(if Item'Length /= 0
and then Count > Max_Length / Item'Length
then Drop /= Error),
Post =>
Length (Replicate'Result)
= Natural'Min (Max_Length, Count * Item'Length),
Global => null;
function Replicate
(Count : Natural;
Item : Bounded_String;
Drop : Truncation := Error) return Bounded_String
with
Pre =>
(if Length (Item) /= 0
and then Count > Max_Length / Length (Item)
then Drop /= Error),
Post =>
Length (Replicate'Result)
= Natural'Min (Max_Length, Count * Length (Item)),
Global => null;
private
-- Most of the implementation is in the separate non generic package
-- Ada.Strings.Superbounded. Type Bounded_String is derived from type
-- Superbounded.Super_String with the maximum length constraint. In
-- almost all cases, the routines in Superbounded can be called with
-- no requirement to pass the maximum length explicitly, since there
-- is at least one Bounded_String argument from which the maximum
-- length can be obtained. For all such routines, the implementation
-- in this private part is simply a renaming of the corresponding
-- routine in the superbounded package.
-- The five exceptions are the * and Replicate routines operating on
-- character values. For these cases, we have a routine in the body
-- that calls the superbounded routine passing the maximum length
-- explicitly as an extra parameter.
type Bounded_String is new Superbounded.Super_String (Max_Length);
-- Deriving Bounded_String from Superbounded.Super_String is the
-- real trick, it ensures that the type Bounded_String declared in
-- the generic instantiation is compatible with the Super_String
-- type declared in the Superbounded package.
function From_String (Source : String) return Bounded_String;
-- Private routine used only by Stream_Convert
pragma Stream_Convert (Bounded_String, From_String, To_String);
-- Provide stream routines without dragging in Ada.Streams
Null_Bounded_String : constant Bounded_String :=
(Max_Length => Max_Length,
Current_Length => 0,
Data =>
(1 .. Max_Length => ASCII.NUL));
pragma Inline (To_Bounded_String);
procedure Set_Bounded_String
(Target : out Bounded_String;
Source : String;
Drop : Truncation := Error)
renames Set_Super_String;
function Length
(Source : Bounded_String) return Length_Range
renames Super_Length;
function To_String
(Source : Bounded_String) return String
renames Super_To_String;
function Append
(Left : Bounded_String;
Right : Bounded_String;
Drop : Truncation := Error) return Bounded_String
renames Super_Append;
function Append
(Left : Bounded_String;
Right : String;
Drop : Truncation := Error) return Bounded_String
renames Super_Append;
function Append
(Left : String;
Right : Bounded_String;
Drop : Truncation := Error) return Bounded_String
renames Super_Append;
function Append
(Left : Bounded_String;
Right : Character;
Drop : Truncation := Error) return Bounded_String
renames Super_Append;
function Append
(Left : Character;
Right : Bounded_String;
Drop : Truncation := Error) return Bounded_String
renames Super_Append;
procedure Append
(Source : in out Bounded_String;
New_Item : Bounded_String;
Drop : Truncation := Error)
renames Super_Append;
procedure Append
(Source : in out Bounded_String;
New_Item : String;
Drop : Truncation := Error)
renames Super_Append;
procedure Append
(Source : in out Bounded_String;
New_Item : Character;
Drop : Truncation := Error)
renames Super_Append;
function "&"
(Left : Bounded_String;
Right : Bounded_String) return Bounded_String
renames Concat;
function "&"
(Left : Bounded_String;
Right : String) return Bounded_String
renames Concat;
function "&"
(Left : String;
Right : Bounded_String) return Bounded_String
renames Concat;
function "&"
(Left : Bounded_String;
Right : Character) return Bounded_String
renames Concat;
function "&"
(Left : Character;
Right : Bounded_String) return Bounded_String
renames Concat;
function Element
(Source : Bounded_String;
Index : Positive) return Character
renames Super_Element;
procedure Replace_Element
(Source : in out Bounded_String;
Index : Positive;
By : Character)
renames Super_Replace_Element;
function Slice
(Source : Bounded_String;
Low : Positive;
High : Natural) return String
renames Super_Slice;
function Bounded_Slice
(Source : Bounded_String;
Low : Positive;
High : Natural) return Bounded_String
renames Super_Slice;
procedure Bounded_Slice
(Source : Bounded_String;
Target : out Bounded_String;
Low : Positive;
High : Natural)
renames Super_Slice;
overriding function "="
(Left : Bounded_String;
Right : Bounded_String) return Boolean
renames Equal;
function "="
(Left : Bounded_String;
Right : String) return Boolean
renames Equal;
function "="
(Left : String;
Right : Bounded_String) return Boolean
renames Equal;
function "<"
(Left : Bounded_String;
Right : Bounded_String) return Boolean
renames Less;
function "<"
(Left : Bounded_String;
Right : String) return Boolean
renames Less;
function "<"
(Left : String;
Right : Bounded_String) return Boolean
renames Less;
function "<="
(Left : Bounded_String;
Right : Bounded_String) return Boolean
renames Less_Or_Equal;
function "<="
(Left : Bounded_String;
Right : String) return Boolean
renames Less_Or_Equal;
function "<="
(Left : String;
Right : Bounded_String) return Boolean
renames Less_Or_Equal;
function ">"
(Left : Bounded_String;
Right : Bounded_String) return Boolean
renames Greater;
function ">"
(Left : Bounded_String;
Right : String) return Boolean
renames Greater;
function ">"
(Left : String;
Right : Bounded_String) return Boolean
renames Greater;
function ">="
(Left : Bounded_String;
Right : Bounded_String) return Boolean
renames Greater_Or_Equal;
function ">="
(Left : Bounded_String;
Right : String) return Boolean
renames Greater_Or_Equal;
function ">="
(Left : String;
Right : Bounded_String) return Boolean
renames Greater_Or_Equal;
function Index
(Source : Bounded_String;
Pattern : String;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping := Maps.Identity) return Natural
renames Super_Index;
function Index
(Source : Bounded_String;
Pattern : String;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping_Function) return Natural
renames Super_Index;
function Index
(Source : Bounded_String;
Set : Maps.Character_Set;
Test : Membership := Inside;
Going : Direction := Forward) return Natural
renames Super_Index;
function Index
(Source : Bounded_String;
Pattern : String;
From : Positive;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping := Maps.Identity) return Natural
renames Super_Index;
function Index
(Source : Bounded_String;
Pattern : String;
From : Positive;
Going : Direction := Forward;
Mapping : Maps.Character_Mapping_Function) return Natural
renames Super_Index;
function Index
(Source : Bounded_String;
Set : Maps.Character_Set;
From : Positive;
Test : Membership := Inside;
Going : Direction := Forward) return Natural
renames Super_Index;
function Index_Non_Blank
(Source : Bounded_String;
Going : Direction := Forward) return Natural
renames Super_Index_Non_Blank;
function Index_Non_Blank
(Source : Bounded_String;
From : Positive;
Going : Direction := Forward) return Natural
renames Super_Index_Non_Blank;
function Count
(Source : Bounded_String;
Pattern : String;
Mapping : Maps.Character_Mapping := Maps.Identity) return Natural
renames Super_Count;
function Count
(Source : Bounded_String;
Pattern : String;
Mapping : Maps.Character_Mapping_Function) return Natural
renames Super_Count;
function Count
(Source : Bounded_String;
Set : Maps.Character_Set) return Natural
renames Super_Count;
procedure Find_Token
(Source : Bounded_String;
Set : Maps.Character_Set;
From : Positive;
Test : Membership;
First : out Positive;
Last : out Natural)
renames Super_Find_Token;
procedure Find_Token
(Source : Bounded_String;
Set : Maps.Character_Set;
Test : Membership;
First : out Positive;
Last : out Natural)
renames Super_Find_Token;
function Translate
(Source : Bounded_String;
Mapping : Maps.Character_Mapping) return Bounded_String
renames Super_Translate;
procedure Translate
(Source : in out Bounded_String;
Mapping : Maps.Character_Mapping)
renames Super_Translate;
function Translate
(Source : Bounded_String;
Mapping : Maps.Character_Mapping_Function) return Bounded_String
renames Super_Translate;
procedure Translate
(Source : in out Bounded_String;
Mapping : Maps.Character_Mapping_Function)
renames Super_Translate;
function Replace_Slice
(Source : Bounded_String;
Low : Positive;
High : Natural;
By : String;
Drop : Truncation := Error) return Bounded_String
renames Super_Replace_Slice;
procedure Replace_Slice
(Source : in out Bounded_String;
Low : Positive;
High : Natural;
By : String;
Drop : Truncation := Error)
renames Super_Replace_Slice;
function Insert
(Source : Bounded_String;
Before : Positive;
New_Item : String;
Drop : Truncation := Error) return Bounded_String
renames Super_Insert;
procedure Insert
(Source : in out Bounded_String;
Before : Positive;
New_Item : String;
Drop : Truncation := Error)
renames Super_Insert;
function Overwrite
(Source : Bounded_String;
Position : Positive;
New_Item : String;
Drop : Truncation := Error) return Bounded_String
renames Super_Overwrite;
procedure Overwrite
(Source : in out Bounded_String;
Position : Positive;
New_Item : String;
Drop : Truncation := Error)
renames Super_Overwrite;
function Delete
(Source : Bounded_String;
From : Positive;
Through : Natural) return Bounded_String
renames Super_Delete;
procedure Delete
(Source : in out Bounded_String;
From : Positive;
Through : Natural)
renames Super_Delete;
function Trim
(Source : Bounded_String;
Side : Trim_End) return Bounded_String
renames Super_Trim;
procedure Trim
(Source : in out Bounded_String;
Side : Trim_End)
renames Super_Trim;
function Trim
(Source : Bounded_String;
Left : Maps.Character_Set;
Right : Maps.Character_Set) return Bounded_String
renames Super_Trim;
procedure Trim
(Source : in out Bounded_String;
Left : Maps.Character_Set;
Right : Maps.Character_Set)
renames Super_Trim;
function Head
(Source : Bounded_String;
Count : Natural;
Pad : Character := Space;
Drop : Truncation := Error) return Bounded_String
renames Super_Head;
procedure Head
(Source : in out Bounded_String;
Count : Natural;
Pad : Character := Space;
Drop : Truncation := Error)
renames Super_Head;
function Tail
(Source : Bounded_String;
Count : Natural;
Pad : Character := Space;
Drop : Truncation := Error) return Bounded_String
renames Super_Tail;
procedure Tail
(Source : in out Bounded_String;
Count : Natural;
Pad : Character := Space;
Drop : Truncation := Error)
renames Super_Tail;
function "*"
(Left : Natural;
Right : Bounded_String) return Bounded_String
renames Times;
function Replicate
(Count : Natural;
Item : Bounded_String;
Drop : Truncation := Error) return Bounded_String
renames Super_Replicate;
end Generic_Bounded_Length;
end Ada.Strings.Bounded;
|
-- Auto generated file. Don't edit
-- Read copyright and license at the end of this file
package body Encodings.Maps.CP_875 is
Forward : Forward_Map (Character'Val( 16#4#) .. Character'Last) :=
(Wide_Character'Val( 16#9C#),
Wide_Character'Val( 16#9#),
Wide_Character'Val( 16#86#),
Wide_Character'Val( 16#7F#),
Wide_Character'Val( 16#97#),
Wide_Character'Val( 16#8D#),
Wide_Character'Val( 16#8E#),
Wide_Character'Val( 16#B#),
Wide_Character'Val( 16#C#),
Wide_Character'Val( 16#D#),
Wide_Character'Val( 16#E#),
Wide_Character'Val( 16#F#),
Wide_Character'Val( 16#10#),
Wide_Character'Val( 16#11#),
Wide_Character'Val( 16#12#),
Wide_Character'Val( 16#13#),
Wide_Character'Val( 16#9D#),
Wide_Character'Val( 16#85#),
Wide_Character'Val( 16#8#),
Wide_Character'Val( 16#87#),
Wide_Character'Val( 16#18#),
Wide_Character'Val( 16#19#),
Wide_Character'Val( 16#92#),
Wide_Character'Val( 16#8F#),
Wide_Character'Val( 16#1C#),
Wide_Character'Val( 16#1D#),
Wide_Character'Val( 16#1E#),
Wide_Character'Val( 16#1F#),
Wide_Character'Val( 16#80#),
Wide_Character'Val( 16#81#),
Wide_Character'Val( 16#82#),
Wide_Character'Val( 16#83#),
Wide_Character'Val( 16#84#),
Wide_Character'Val( 16#A#),
Wide_Character'Val( 16#17#),
Wide_Character'Val( 16#1B#),
Wide_Character'Val( 16#88#),
Wide_Character'Val( 16#89#),
Wide_Character'Val( 16#8A#),
Wide_Character'Val( 16#8B#),
Wide_Character'Val( 16#8C#),
Wide_Character'Val( 16#5#),
Wide_Character'Val( 16#6#),
Wide_Character'Val( 16#7#),
Wide_Character'Val( 16#90#),
Wide_Character'Val( 16#91#),
Wide_Character'Val( 16#16#),
Wide_Character'Val( 16#93#),
Wide_Character'Val( 16#94#),
Wide_Character'Val( 16#95#),
Wide_Character'Val( 16#96#),
Wide_Character'Val( 16#4#),
Wide_Character'Val( 16#98#),
Wide_Character'Val( 16#99#),
Wide_Character'Val( 16#9A#),
Wide_Character'Val( 16#9B#),
Wide_Character'Val( 16#14#),
Wide_Character'Val( 16#15#),
Wide_Character'Val( 16#9E#),
Wide_Character'Val( 16#1A#),
Wide_Character'Val( 16#20#),
Wide_Character'Val( 16#391#),
Wide_Character'Val( 16#392#),
Wide_Character'Val( 16#393#),
Wide_Character'Val( 16#394#),
Wide_Character'Val( 16#395#),
Wide_Character'Val( 16#396#),
Wide_Character'Val( 16#397#),
Wide_Character'Val( 16#398#),
Wide_Character'Val( 16#399#),
Wide_Character'Val( 16#5B#),
Wide_Character'Val( 16#2E#),
Wide_Character'Val( 16#3C#),
Wide_Character'Val( 16#28#),
Wide_Character'Val( 16#2B#),
Wide_Character'Val( 16#21#),
Wide_Character'Val( 16#26#),
Wide_Character'Val( 16#39A#),
Wide_Character'Val( 16#39B#),
Wide_Character'Val( 16#39C#),
Wide_Character'Val( 16#39D#),
Wide_Character'Val( 16#39E#),
Wide_Character'Val( 16#39F#),
Wide_Character'Val( 16#3A0#),
Wide_Character'Val( 16#3A1#),
Wide_Character'Val( 16#3A3#),
Wide_Character'Val( 16#5D#),
Wide_Character'Val( 16#24#),
Wide_Character'Val( 16#2A#),
Wide_Character'Val( 16#29#),
Wide_Character'Val( 16#3B#),
Wide_Character'Val( 16#5E#),
Wide_Character'Val( 16#2D#),
Wide_Character'Val( 16#2F#),
Wide_Character'Val( 16#3A4#),
Wide_Character'Val( 16#3A5#),
Wide_Character'Val( 16#3A6#),
Wide_Character'Val( 16#3A7#),
Wide_Character'Val( 16#3A8#),
Wide_Character'Val( 16#3A9#),
Wide_Character'Val( 16#3AA#),
Wide_Character'Val( 16#3AB#),
Wide_Character'Val( 16#7C#),
Wide_Character'Val( 16#2C#),
Wide_Character'Val( 16#25#),
Wide_Character'Val( 16#5F#),
Wide_Character'Val( 16#3E#),
Wide_Character'Val( 16#3F#),
Wide_Character'Val( 16#A8#),
Wide_Character'Val( 16#386#),
Wide_Character'Val( 16#388#),
Wide_Character'Val( 16#389#),
Wide_Character'Val( 16#A0#),
Wide_Character'Val( 16#38A#),
Wide_Character'Val( 16#38C#),
Wide_Character'Val( 16#38E#),
Wide_Character'Val( 16#38F#),
Wide_Character'Val( 16#60#),
Wide_Character'Val( 16#3A#),
Wide_Character'Val( 16#23#),
Wide_Character'Val( 16#40#),
Wide_Character'Val( 16#27#),
Wide_Character'Val( 16#3D#),
Wide_Character'Val( 16#22#),
Wide_Character'Val( 16#385#),
Wide_Character'Val( 16#61#),
Wide_Character'Val( 16#62#),
Wide_Character'Val( 16#63#),
Wide_Character'Val( 16#64#),
Wide_Character'Val( 16#65#),
Wide_Character'Val( 16#66#),
Wide_Character'Val( 16#67#),
Wide_Character'Val( 16#68#),
Wide_Character'Val( 16#69#),
Wide_Character'Val( 16#3B1#),
Wide_Character'Val( 16#3B2#),
Wide_Character'Val( 16#3B3#),
Wide_Character'Val( 16#3B4#),
Wide_Character'Val( 16#3B5#),
Wide_Character'Val( 16#3B6#),
Wide_Character'Val( 16#B0#),
Wide_Character'Val( 16#6A#),
Wide_Character'Val( 16#6B#),
Wide_Character'Val( 16#6C#),
Wide_Character'Val( 16#6D#),
Wide_Character'Val( 16#6E#),
Wide_Character'Val( 16#6F#),
Wide_Character'Val( 16#70#),
Wide_Character'Val( 16#71#),
Wide_Character'Val( 16#72#),
Wide_Character'Val( 16#3B7#),
Wide_Character'Val( 16#3B8#),
Wide_Character'Val( 16#3B9#),
Wide_Character'Val( 16#3BA#),
Wide_Character'Val( 16#3BB#),
Wide_Character'Val( 16#3BC#),
Wide_Character'Val( 16#B4#),
Wide_Character'Val( 16#7E#),
Wide_Character'Val( 16#73#),
Wide_Character'Val( 16#74#),
Wide_Character'Val( 16#75#),
Wide_Character'Val( 16#76#),
Wide_Character'Val( 16#77#),
Wide_Character'Val( 16#78#),
Wide_Character'Val( 16#79#),
Wide_Character'Val( 16#7A#),
Wide_Character'Val( 16#3BD#),
Wide_Character'Val( 16#3BE#),
Wide_Character'Val( 16#3BF#),
Wide_Character'Val( 16#3C0#),
Wide_Character'Val( 16#3C1#),
Wide_Character'Val( 16#3C3#),
Wide_Character'Val( 16#A3#),
Wide_Character'Val( 16#3AC#),
Wide_Character'Val( 16#3AD#),
Wide_Character'Val( 16#3AE#),
Wide_Character'Val( 16#3CA#),
Wide_Character'Val( 16#3AF#),
Wide_Character'Val( 16#3CC#),
Wide_Character'Val( 16#3CD#),
Wide_Character'Val( 16#3CB#),
Wide_Character'Val( 16#3CE#),
Wide_Character'Val( 16#3C2#),
Wide_Character'Val( 16#3C4#),
Wide_Character'Val( 16#3C5#),
Wide_Character'Val( 16#3C6#),
Wide_Character'Val( 16#3C7#),
Wide_Character'Val( 16#3C8#),
Wide_Character'Val( 16#7B#),
Wide_Character'Val( 16#41#),
Wide_Character'Val( 16#42#),
Wide_Character'Val( 16#43#),
Wide_Character'Val( 16#44#),
Wide_Character'Val( 16#45#),
Wide_Character'Val( 16#46#),
Wide_Character'Val( 16#47#),
Wide_Character'Val( 16#48#),
Wide_Character'Val( 16#49#),
Wide_Character'Val( 16#AD#),
Wide_Character'Val( 16#3C9#),
Wide_Character'Val( 16#390#),
Wide_Character'Val( 16#3B0#),
Wide_Character'Val(16#2018#),
Wide_Character'Val(16#2015#),
Wide_Character'Val( 16#7D#),
Wide_Character'Val( 16#4A#),
Wide_Character'Val( 16#4B#),
Wide_Character'Val( 16#4C#),
Wide_Character'Val( 16#4D#),
Wide_Character'Val( 16#4E#),
Wide_Character'Val( 16#4F#),
Wide_Character'Val( 16#50#),
Wide_Character'Val( 16#51#),
Wide_Character'Val( 16#52#),
Wide_Character'Val( 16#B1#),
Wide_Character'Val( 16#BD#),
Wide_Character'Val( 16#1A#),
Wide_Character'Val( 16#387#),
Wide_Character'Val(16#2019#),
Wide_Character'Val( 16#A6#),
Wide_Character'Val( 16#5C#),
Wide_Character'Val( 16#1A#),
Wide_Character'Val( 16#53#),
Wide_Character'Val( 16#54#),
Wide_Character'Val( 16#55#),
Wide_Character'Val( 16#56#),
Wide_Character'Val( 16#57#),
Wide_Character'Val( 16#58#),
Wide_Character'Val( 16#59#),
Wide_Character'Val( 16#5A#),
Wide_Character'Val( 16#B2#),
Wide_Character'Val( 16#A7#),
Wide_Character'Val( 16#1A#),
Wide_Character'Val( 16#1A#),
Wide_Character'Val( 16#AB#),
Wide_Character'Val( 16#AC#),
Wide_Character'Val( 16#30#),
Wide_Character'Val( 16#31#),
Wide_Character'Val( 16#32#),
Wide_Character'Val( 16#33#),
Wide_Character'Val( 16#34#),
Wide_Character'Val( 16#35#),
Wide_Character'Val( 16#36#),
Wide_Character'Val( 16#37#),
Wide_Character'Val( 16#38#),
Wide_Character'Val( 16#39#),
Wide_Character'Val( 16#B3#),
Wide_Character'Val( 16#A9#),
Wide_Character'Val( 16#1A#),
Wide_Character'Val( 16#1A#),
Wide_Character'Val( 16#BB#),
Wide_Character'Val( 16#9F#));
Ranges : Maps.Wide_Ranges (1 .. 19) :=
((Wide_Character'Val( 16#0#),Wide_Character'Val( 16#1A#), 1),
(Wide_Character'Val( 16#1A#),Wide_Character'Val( 16#1A#), 28),
(Wide_Character'Val( 16#1A#),Wide_Character'Val( 16#1A#), 29),
(Wide_Character'Val( 16#1A#),Wide_Character'Val( 16#1A#), 30),
(Wide_Character'Val( 16#1A#),Wide_Character'Val( 16#1A#), 31),
(Wide_Character'Val( 16#1A#),Wide_Character'Val( 16#1A#), 32),
(Wide_Character'Val( 16#1A#),Wide_Character'Val( 16#A0#), 33),
(Wide_Character'Val( 16#A3#),Wide_Character'Val( 16#A3#), 168),
(Wide_Character'Val( 16#A6#),Wide_Character'Val( 16#A9#), 169),
(Wide_Character'Val( 16#AB#),Wide_Character'Val( 16#AD#), 173),
(Wide_Character'Val( 16#B0#),Wide_Character'Val( 16#B4#), 176),
(Wide_Character'Val( 16#BB#),Wide_Character'Val( 16#BB#), 181),
(Wide_Character'Val( 16#BD#),Wide_Character'Val( 16#BD#), 182),
(Wide_Character'Val( 16#385#),Wide_Character'Val( 16#38A#), 183),
(Wide_Character'Val( 16#38C#),Wide_Character'Val( 16#38C#), 189),
(Wide_Character'Val( 16#38E#),Wide_Character'Val( 16#3A1#), 190),
(Wide_Character'Val( 16#3A3#),Wide_Character'Val( 16#3CE#), 210),
(Wide_Character'Val(16#2015#),Wide_Character'Val(16#2015#), 254),
(Wide_Character'Val(16#2018#),Wide_Character'Val(16#2019#), 255));
Backward : Maps.Backward_Map (1 .. 256) :=
(Character'Val( 16#0#),
Character'Val( 16#1#),
Character'Val( 16#2#),
Character'Val( 16#3#),
Character'Val(16#37#),
Character'Val(16#2D#),
Character'Val(16#2E#),
Character'Val(16#2F#),
Character'Val(16#16#),
Character'Val( 16#5#),
Character'Val(16#25#),
Character'Val( 16#B#),
Character'Val( 16#C#),
Character'Val( 16#D#),
Character'Val( 16#E#),
Character'Val( 16#F#),
Character'Val(16#10#),
Character'Val(16#11#),
Character'Val(16#12#),
Character'Val(16#13#),
Character'Val(16#3C#),
Character'Val(16#3D#),
Character'Val(16#32#),
Character'Val(16#26#),
Character'Val(16#18#),
Character'Val(16#19#),
Character'Val(16#3F#),
Character'Val(16#DC#),
Character'Val(16#E1#),
Character'Val(16#EC#),
Character'Val(16#ED#),
Character'Val(16#FC#),
Character'Val(16#FD#),
Character'Val(16#27#),
Character'Val(16#1C#),
Character'Val(16#1D#),
Character'Val(16#1E#),
Character'Val(16#1F#),
Character'Val(16#40#),
Character'Val(16#4F#),
Character'Val(16#7F#),
Character'Val(16#7B#),
Character'Val(16#5B#),
Character'Val(16#6C#),
Character'Val(16#50#),
Character'Val(16#7D#),
Character'Val(16#4D#),
Character'Val(16#5D#),
Character'Val(16#5C#),
Character'Val(16#4E#),
Character'Val(16#6B#),
Character'Val(16#60#),
Character'Val(16#4B#),
Character'Val(16#61#),
Character'Val(16#F0#),
Character'Val(16#F1#),
Character'Val(16#F2#),
Character'Val(16#F3#),
Character'Val(16#F4#),
Character'Val(16#F5#),
Character'Val(16#F6#),
Character'Val(16#F7#),
Character'Val(16#F8#),
Character'Val(16#F9#),
Character'Val(16#7A#),
Character'Val(16#5E#),
Character'Val(16#4C#),
Character'Val(16#7E#),
Character'Val(16#6E#),
Character'Val(16#6F#),
Character'Val(16#7C#),
Character'Val(16#C1#),
Character'Val(16#C2#),
Character'Val(16#C3#),
Character'Val(16#C4#),
Character'Val(16#C5#),
Character'Val(16#C6#),
Character'Val(16#C7#),
Character'Val(16#C8#),
Character'Val(16#C9#),
Character'Val(16#D1#),
Character'Val(16#D2#),
Character'Val(16#D3#),
Character'Val(16#D4#),
Character'Val(16#D5#),
Character'Val(16#D6#),
Character'Val(16#D7#),
Character'Val(16#D8#),
Character'Val(16#D9#),
Character'Val(16#E2#),
Character'Val(16#E3#),
Character'Val(16#E4#),
Character'Val(16#E5#),
Character'Val(16#E6#),
Character'Val(16#E7#),
Character'Val(16#E8#),
Character'Val(16#E9#),
Character'Val(16#4A#),
Character'Val(16#E0#),
Character'Val(16#5A#),
Character'Val(16#5F#),
Character'Val(16#6D#),
Character'Val(16#79#),
Character'Val(16#81#),
Character'Val(16#82#),
Character'Val(16#83#),
Character'Val(16#84#),
Character'Val(16#85#),
Character'Val(16#86#),
Character'Val(16#87#),
Character'Val(16#88#),
Character'Val(16#89#),
Character'Val(16#91#),
Character'Val(16#92#),
Character'Val(16#93#),
Character'Val(16#94#),
Character'Val(16#95#),
Character'Val(16#96#),
Character'Val(16#97#),
Character'Val(16#98#),
Character'Val(16#99#),
Character'Val(16#A2#),
Character'Val(16#A3#),
Character'Val(16#A4#),
Character'Val(16#A5#),
Character'Val(16#A6#),
Character'Val(16#A7#),
Character'Val(16#A8#),
Character'Val(16#A9#),
Character'Val(16#C0#),
Character'Val(16#6A#),
Character'Val(16#D0#),
Character'Val(16#A1#),
Character'Val( 16#7#),
Character'Val(16#20#),
Character'Val(16#21#),
Character'Val(16#22#),
Character'Val(16#23#),
Character'Val(16#24#),
Character'Val(16#15#),
Character'Val( 16#6#),
Character'Val(16#17#),
Character'Val(16#28#),
Character'Val(16#29#),
Character'Val(16#2A#),
Character'Val(16#2B#),
Character'Val(16#2C#),
Character'Val( 16#9#),
Character'Val( 16#A#),
Character'Val(16#1B#),
Character'Val(16#30#),
Character'Val(16#31#),
Character'Val(16#1A#),
Character'Val(16#33#),
Character'Val(16#34#),
Character'Val(16#35#),
Character'Val(16#36#),
Character'Val( 16#8#),
Character'Val(16#38#),
Character'Val(16#39#),
Character'Val(16#3A#),
Character'Val(16#3B#),
Character'Val( 16#4#),
Character'Val(16#14#),
Character'Val(16#3E#),
Character'Val(16#FF#),
Character'Val(16#74#),
Character'Val(16#B0#),
Character'Val(16#DF#),
Character'Val(16#EB#),
Character'Val(16#70#),
Character'Val(16#FB#),
Character'Val(16#EE#),
Character'Val(16#EF#),
Character'Val(16#CA#),
Character'Val(16#90#),
Character'Val(16#DA#),
Character'Val(16#EA#),
Character'Val(16#FA#),
Character'Val(16#A0#),
Character'Val(16#FE#),
Character'Val(16#DB#),
Character'Val(16#80#),
Character'Val(16#71#),
Character'Val(16#DD#),
Character'Val(16#72#),
Character'Val(16#73#),
Character'Val(16#75#),
Character'Val(16#76#),
Character'Val(16#77#),
Character'Val(16#78#),
Character'Val(16#CC#),
Character'Val(16#41#),
Character'Val(16#42#),
Character'Val(16#43#),
Character'Val(16#44#),
Character'Val(16#45#),
Character'Val(16#46#),
Character'Val(16#47#),
Character'Val(16#48#),
Character'Val(16#49#),
Character'Val(16#51#),
Character'Val(16#52#),
Character'Val(16#53#),
Character'Val(16#54#),
Character'Val(16#55#),
Character'Val(16#56#),
Character'Val(16#57#),
Character'Val(16#58#),
Character'Val(16#59#),
Character'Val(16#62#),
Character'Val(16#63#),
Character'Val(16#64#),
Character'Val(16#65#),
Character'Val(16#66#),
Character'Val(16#67#),
Character'Val(16#68#),
Character'Val(16#69#),
Character'Val(16#B1#),
Character'Val(16#B2#),
Character'Val(16#B3#),
Character'Val(16#B5#),
Character'Val(16#CD#),
Character'Val(16#8A#),
Character'Val(16#8B#),
Character'Val(16#8C#),
Character'Val(16#8D#),
Character'Val(16#8E#),
Character'Val(16#8F#),
Character'Val(16#9A#),
Character'Val(16#9B#),
Character'Val(16#9C#),
Character'Val(16#9D#),
Character'Val(16#9E#),
Character'Val(16#9F#),
Character'Val(16#AA#),
Character'Val(16#AB#),
Character'Val(16#AC#),
Character'Val(16#AD#),
Character'Val(16#AE#),
Character'Val(16#BA#),
Character'Val(16#AF#),
Character'Val(16#BB#),
Character'Val(16#BC#),
Character'Val(16#BD#),
Character'Val(16#BE#),
Character'Val(16#BF#),
Character'Val(16#CB#),
Character'Val(16#B4#),
Character'Val(16#B8#),
Character'Val(16#B6#),
Character'Val(16#B7#),
Character'Val(16#B9#),
Character'Val(16#CF#),
Character'Val(16#CE#),
Character'Val(16#DE#));
function Decode (Char : Character) return Wide_Character is
begin
return Decode (Char, Forward);
end Decode;
procedure Decode
(Text : in Raw_String;
Text_Last : out Natural;
Result : out Wide_String;
Result_Last : out Natural;
Map : in Encoding := Encodings.CP_875)
is
begin
Decode (Text, Text_Last, Result, Result_Last, Forward);
end Decode;
procedure Encode
(Text : in Wide_String;
Text_Last : out Natural;
Result : out Raw_String;
Result_Last : out Natural;
Map : in Encoding := Encodings.CP_875)
is
begin
Encode (Text, Text_Last, Result, Result_Last,
Ranges, Backward);
end Encode;
begin
Encoder_List (Encodings.CP_875) := Encode'Access;
Decoder_List (Encodings.CP_875) := Decode'Access;
end Encodings.Maps.CP_875;
------------------------------------------------------------------------------
-- Copyright (c) 2006-2013, Maxim Reznik
-- 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 Maxim Reznik, 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 OWNER 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.
------------------------------------------------------------------------------
|
------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- Ada Modeling Framework --
-- --
-- Runtime Library Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2011-2012, 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. --
-- --
------------------------------------------------------------------------------
-- $Revision$ $Date$
------------------------------------------------------------------------------
with AMF.Elements;
with AMF.Internals.Element_Collections;
with AMF.Internals.Helpers;
with AMF.Internals.Tables.UML_Attributes;
with AMF.Visitors.UML_Iterators;
with AMF.Visitors.UML_Visitors;
package body AMF.Internals.UML_Operation_Template_Parameters is
-------------------
-- Enter_Element --
-------------------
overriding procedure Enter_Element
(Self : not null access constant UML_Operation_Template_Parameter_Proxy;
Visitor : in out AMF.Visitors.Abstract_Visitor'Class;
Control : in out AMF.Visitors.Traverse_Control) is
begin
if Visitor in AMF.Visitors.UML_Visitors.UML_Visitor'Class then
AMF.Visitors.UML_Visitors.UML_Visitor'Class
(Visitor).Enter_Operation_Template_Parameter
(AMF.UML.Operation_Template_Parameters.UML_Operation_Template_Parameter_Access (Self),
Control);
end if;
end Enter_Element;
-------------------
-- Leave_Element --
-------------------
overriding procedure Leave_Element
(Self : not null access constant UML_Operation_Template_Parameter_Proxy;
Visitor : in out AMF.Visitors.Abstract_Visitor'Class;
Control : in out AMF.Visitors.Traverse_Control) is
begin
if Visitor in AMF.Visitors.UML_Visitors.UML_Visitor'Class then
AMF.Visitors.UML_Visitors.UML_Visitor'Class
(Visitor).Leave_Operation_Template_Parameter
(AMF.UML.Operation_Template_Parameters.UML_Operation_Template_Parameter_Access (Self),
Control);
end if;
end Leave_Element;
-------------------
-- Visit_Element --
-------------------
overriding procedure Visit_Element
(Self : not null access constant UML_Operation_Template_Parameter_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.UML_Iterators.UML_Iterator'Class then
AMF.Visitors.UML_Iterators.UML_Iterator'Class
(Iterator).Visit_Operation_Template_Parameter
(Visitor,
AMF.UML.Operation_Template_Parameters.UML_Operation_Template_Parameter_Access (Self),
Control);
end if;
end Visit_Element;
-----------------------------
-- Get_Parametered_Element --
-----------------------------
overriding function Get_Parametered_Element
(Self : not null access constant UML_Operation_Template_Parameter_Proxy)
return AMF.UML.Operations.UML_Operation_Access is
begin
return
AMF.UML.Operations.UML_Operation_Access
(AMF.Internals.Helpers.To_Element
(AMF.Internals.Tables.UML_Attributes.Internal_Get_Parametered_Element
(Self.Element)));
end Get_Parametered_Element;
-----------------------------
-- Set_Parametered_Element --
-----------------------------
overriding procedure Set_Parametered_Element
(Self : not null access UML_Operation_Template_Parameter_Proxy;
To : AMF.UML.Operations.UML_Operation_Access) is
begin
AMF.Internals.Tables.UML_Attributes.Internal_Set_Parametered_Element
(Self.Element,
AMF.Internals.Helpers.To_Element
(AMF.Elements.Element_Access (To)));
end Set_Parametered_Element;
-----------------
-- Get_Default --
-----------------
overriding function Get_Default
(Self : not null access constant UML_Operation_Template_Parameter_Proxy)
return AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access is
begin
return
AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access
(AMF.Internals.Helpers.To_Element
(AMF.Internals.Tables.UML_Attributes.Internal_Get_Default
(Self.Element)));
end Get_Default;
-----------------
-- Set_Default --
-----------------
overriding procedure Set_Default
(Self : not null access UML_Operation_Template_Parameter_Proxy;
To : AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access) is
begin
AMF.Internals.Tables.UML_Attributes.Internal_Set_Default
(Self.Element,
AMF.Internals.Helpers.To_Element
(AMF.Elements.Element_Access (To)));
end Set_Default;
-----------------------
-- Get_Owned_Default --
-----------------------
overriding function Get_Owned_Default
(Self : not null access constant UML_Operation_Template_Parameter_Proxy)
return AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access is
begin
return
AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access
(AMF.Internals.Helpers.To_Element
(AMF.Internals.Tables.UML_Attributes.Internal_Get_Owned_Default
(Self.Element)));
end Get_Owned_Default;
-----------------------
-- Set_Owned_Default --
-----------------------
overriding procedure Set_Owned_Default
(Self : not null access UML_Operation_Template_Parameter_Proxy;
To : AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access) is
begin
AMF.Internals.Tables.UML_Attributes.Internal_Set_Owned_Default
(Self.Element,
AMF.Internals.Helpers.To_Element
(AMF.Elements.Element_Access (To)));
end Set_Owned_Default;
-----------------------------------
-- Get_Owned_Parametered_Element --
-----------------------------------
overriding function Get_Owned_Parametered_Element
(Self : not null access constant UML_Operation_Template_Parameter_Proxy)
return AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access is
begin
return
AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access
(AMF.Internals.Helpers.To_Element
(AMF.Internals.Tables.UML_Attributes.Internal_Get_Owned_Parametered_Element
(Self.Element)));
end Get_Owned_Parametered_Element;
-----------------------------------
-- Set_Owned_Parametered_Element --
-----------------------------------
overriding procedure Set_Owned_Parametered_Element
(Self : not null access UML_Operation_Template_Parameter_Proxy;
To : AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access) is
begin
AMF.Internals.Tables.UML_Attributes.Internal_Set_Owned_Parametered_Element
(Self.Element,
AMF.Internals.Helpers.To_Element
(AMF.Elements.Element_Access (To)));
end Set_Owned_Parametered_Element;
-----------------------------
-- Get_Parametered_Element --
-----------------------------
overriding function Get_Parametered_Element
(Self : not null access constant UML_Operation_Template_Parameter_Proxy)
return AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access is
begin
return
AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access
(AMF.Internals.Helpers.To_Element
(AMF.Internals.Tables.UML_Attributes.Internal_Get_Parametered_Element
(Self.Element)));
end Get_Parametered_Element;
-----------------------------
-- Set_Parametered_Element --
-----------------------------
overriding procedure Set_Parametered_Element
(Self : not null access UML_Operation_Template_Parameter_Proxy;
To : AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access) is
begin
AMF.Internals.Tables.UML_Attributes.Internal_Set_Parametered_Element
(Self.Element,
AMF.Internals.Helpers.To_Element
(AMF.Elements.Element_Access (To)));
end Set_Parametered_Element;
-------------------
-- Get_Signature --
-------------------
overriding function Get_Signature
(Self : not null access constant UML_Operation_Template_Parameter_Proxy)
return AMF.UML.Template_Signatures.UML_Template_Signature_Access is
begin
return
AMF.UML.Template_Signatures.UML_Template_Signature_Access
(AMF.Internals.Helpers.To_Element
(AMF.Internals.Tables.UML_Attributes.Internal_Get_Signature
(Self.Element)));
end Get_Signature;
-------------------
-- Set_Signature --
-------------------
overriding procedure Set_Signature
(Self : not null access UML_Operation_Template_Parameter_Proxy;
To : AMF.UML.Template_Signatures.UML_Template_Signature_Access) is
begin
AMF.Internals.Tables.UML_Attributes.Internal_Set_Signature
(Self.Element,
AMF.Internals.Helpers.To_Element
(AMF.Elements.Element_Access (To)));
end Set_Signature;
end AMF.Internals.UML_Operation_Template_Parameters;
|
-- POK header
--
-- The following file is a part of the POK project. Any modification should
-- be made according to the POK licence. You CANNOT use this file or a part
-- of a file for your own project.
--
-- For more information on the POK licence, please see our LICENCE FILE
--
-- Please follow the coding guidelines described in doc/CODING_GUIDELINES
--
-- Copyright (c) 2007-2020 POK team
-- This is a compilable Ada 95 specification for the APEX interface,
-- derived from section 3 of ARINC 653.
-- The declarations of the services given below are taken from the
-- standard, as are the enumerated types and the names of the others types.
-- However, the definitions given for these others types, and the
-- names and values given below for constants, are all implementation
-- specific.
-- All types have defining representation pragmas or clauses to ensure
-- representation compatibility with the C and Ada 83 bindings.
-- ---------------------------------------------------------------------------
-- --
-- Root package providing constant and type definitions --
-- --
-- ---------------------------------------------------------------------------
with System;
-- This is the Ada 95 predefined C interface package
with Interfaces.C;
package APEX is
pragma Pure;
-- ----------------------------
-- Domain limits --
-- ----------------------------
-- Domain dependent
-- These values define the domain limits and are implementation-dependent.
System_Limit_Number_Of_Partitions : constant := 32;
-- module scope
System_Limit_Number_Of_Messages : constant := 512;
-- module scope
System_Limit_Message_Size : constant := 16#10_0000#;
-- module scope
System_Limit_Number_Of_Processes : constant := 1024;
-- partition scope
System_Limit_Number_Of_Sampling_Ports : constant := 1024;
-- partition scope
System_Limit_Number_Of_Queuing_Ports : constant := 1024;
-- partition scope
System_Limit_Number_Of_Buffers : constant := 512;
-- partition scope
System_Limit_Number_Of_Blackboards : constant := 512;
-- partition scope
System_Limit_Number_Of_Semaphores : constant := 512;
-- partition scope
System_Limit_Number_Of_Events : constant := 512;
-- partition scope
-- ----------------------------
-- Base APEX types --
-- ----------------------------
-- The actual sizes of these base types are system-specific and must
-- match those of the underlying Operating System.
type APEX_Byte is new Interfaces.C.unsigned_char;
type APEX_Integer is new Interfaces.C.long;
type APEX_Unsigned is new Interfaces.C.unsigned_long;
type APEX_Long_Integer is new Interfaces.Integer_64;
-- If Integer_64 is not provided in package Interfaces, any implementation-
-- defined alternative 64-bit signed integer type may be used.
-- ----------------------------
-- General APEX types --
-- ----------------------------
type Return_Code_Type is (
No_Error, -- request valid and operation performed
No_Action, -- status of system unaffected by request
Not_Available, -- resource required by request unavailable
Invalid_Param, -- invalid parameter specified in request
Invalid_Config, -- parameter incompatible with configuration
Invalid_Mode, -- request incompatible with current mode
Timed_Out); -- time-out tied up with request has expired
pragma Convention (C, Return_Code_Type);
Max_Name_Length : constant := 30;
subtype Name_Type is String (1 .. Max_Name_Length);
subtype System_Address_Type is System.Address;
subtype Message_Addr_Type is System.Address;
subtype Message_Size_Type is APEX_Integer range
1 .. System_Limit_Message_Size;
subtype Message_Range_Type is APEX_Integer range
0 .. System_Limit_Number_Of_Messages;
type Port_Direction_Type is (Source, Destination);
pragma Convention (C, Port_Direction_Type);
type Queuing_Discipline_Type is (Fifo, Priority);
pragma Convention (C, Queuing_Discipline_Type);
subtype System_Time_Type is APEX_Long_Integer;
-- 64-bit signed integer with 1 nanosecond LSB
Infinite_Time_Value : constant System_Time_Type;
Aperiodic : constant System_Time_Type;
Zero_Time_Value : constant System_Time_Type;
private
Infinite_Time_Value : constant System_Time_Type := -1;
Aperiodic : constant System_Time_Type := 0;
Zero_Time_Value : constant System_Time_Type := 0;
end APEX;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- A D A . S E Q U E N T I A L _ I O . C _ S T R E A M S --
-- --
-- B o d y --
-- --
-- Copyright (C) 1992-2002 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 Interfaces.C_Streams; use Interfaces.C_Streams;
with System.File_IO;
with System.File_Control_Block;
with System.Sequential_IO;
with Unchecked_Conversion;
package body Ada.Sequential_IO.C_Streams is
package FIO renames System.File_IO;
package FCB renames System.File_Control_Block;
package SIO renames System.Sequential_IO;
subtype AP is FCB.AFCB_Ptr;
function To_FCB is new Unchecked_Conversion (File_Mode, FCB.File_Mode);
--------------
-- C_Stream --
--------------
function C_Stream (F : File_Type) return FILEs is
begin
FIO.Check_File_Open (AP (F));
return F.Stream;
end C_Stream;
----------
-- Open --
----------
procedure Open
(File : in out File_Type;
Mode : File_Mode;
C_Stream : FILEs;
Form : String := "";
Name : String := "")
is
Dummy_File_Control_Block : SIO.Sequential_AFCB;
pragma Warnings (Off, Dummy_File_Control_Block);
-- Yes, we know this is never assigned a value, only the tag
-- is used for dispatching purposes, so that's expected.
begin
FIO.Open (File_Ptr => AP (File),
Dummy_FCB => Dummy_File_Control_Block,
Mode => To_FCB (Mode),
Name => Name,
Form => Form,
Amethod => 'Q',
Creat => False,
Text => False,
C_Stream => C_Stream);
end Open;
end Ada.Sequential_IO.C_Streams;
|
-- Abstract:
--
-- Root package for Stephe's Ada Library packages.
--
-- See sal.html for more information.
--
-- See http://stephe-leake.org/ada/sal.html for the
-- latest version.
--
-- Contact Stephe at stephen_leake@stephe-leake.org.
--
-- Copyright (C) 1997 - 2004, 2008, 2009, 2015, 2017, 2018 Free Software Foundation, Inc.
--
-- SAL is free software; you can redistribute it and/or modify it
-- under terms of the GNU General Public License as published by the
-- Free Software Foundation; either version 3, or (at your option) any
-- later version. SAL is distributed in the hope that it will be
-- useful, but WITHOUT ANY WARRANTY; without even the implied warranty
-- of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
-- General Public License for more details. You should have received a
-- copy of the GNU General Public License distributed with SAL; see
-- file COPYING. If not, write to the Free Software Foundation, 59
-- Temple Place - Suite 330, Boston, MA 02111-1307, USA.
--
-- As a special exception, if other files instantiate generics from
-- SAL, or you link SAL object files with other files to produce
-- an executable, that 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.
pragma License (Modified_GPL);
with Ada.Containers;
package SAL is
pragma Pure;
function Version return String;
-- Returns string with format "SAL x.xx".
Container_Empty : exception;
Container_Full : exception;
Config_File_Error : exception;
Domain_Error : exception;
Duplicate_Key : exception;
Initialization_Error : exception;
Invalid_Format : exception;
Invalid_Limit : exception;
Invalid_Operation : exception;
Invalid_Range : exception;
Iterator_Error : exception;
Not_Found : exception;
Not_Implemented : exception;
Parameter_Error : exception;
Programmer_Error : exception;
Range_Error : exception;
--------------
-- General options
type Direction_Type is (Forward, Backward);
type Duplicate_Action_Type is (Allow, Ignore, Error);
type Overflow_Action_Type is (Overwrite, Error);
-- We use a new type for Peek_Type, not just
-- Ada.Containers.Count_Type, to enforce Peek_Type'First = top/first.
type Base_Peek_Type is new Ada.Containers.Count_Type range 0 .. Ada.Containers.Count_Type'Last;
subtype Peek_Type is Base_Peek_Type range 1 .. Base_Peek_Type'Last;
Invalid_Peek_Index : constant Base_Peek_Type := 0;
type Compare_Result is (Less, Equal, Greater);
end SAL;
|
with
SDL.Events.Windows,
SDL.Events.Keyboards,
SDL.Events.Events,
SDL.Events.Mice,
SDL.Video.Windows.Makers,
SDL.Log,
ada.Text_IO;
package body gel.Window.sdl
is
package std_SDL renames standard.SDL;
use std_SDL,
std_SDL.Events;
function to_gel_Key (From : in std_SDL.Events.Keyboards.Key_Codes) return gel.keyboard.Key;
---------
--- Forge
--
procedure define (Self : in View; Title : in String;
Width : in Natural;
Height : in Natural)
is
use type Video.Windows.Window_Flags;
begin
if not std_SDL.initialise
then
raise gel.Error with "Unable to initialise SDL.";
end if;
Video.Windows.Makers.create (Win => Self.window_Handle,
Title => Title,
X => 100,
Y => 100,
Width => C.int (Width),
Height => C.int (Height),
Flags => Video.Windows.openGL
or Video.Windows.Resizable);
Video.GL.create (Self.GL_Context, From => Self.window_Handle);
end define;
overriding
procedure destroy (Self : in out Item)
is
begin
Self.window_Handle.finalize;
std_SDL.finalise;
destroy (gel.Window.item (Self)); -- Destroy base class.
end destroy;
package body Forge
is
function to_Window (Title : in String;
Width : in Natural;
Height : in Natural) return gel.Window.sdl.item
is
begin
return Self : gel.Window.sdl.item := (gel.Window.private_Forge.to_Window (Title, Width, Height)
with others => <>)
do
define (Self'unchecked_Access, Title, Width, Height);
end return;
end to_Window;
function new_Window (Title : in String;
Width : in Natural;
Height : in Natural) return Window.sdl.view
is
Self : constant gel.Window.sdl.view := new Window.sdl.item' (to_Window (Title, Width, Height));
begin
return Self;
end new_Window;
end Forge;
--------------
--- Operations
--
use gel.Keyboard;
overriding
procedure emit_Events (Self : in out Item)
is
use type std_SDL.Events.Keyboards.Key_Codes;
Event : aliased std_SDL.Events.Events.Events;
begin
while std_SDL.Events.Events.Poll (Event)
loop
case Event.Common.Event_Type
is
when std_SDL.Events.Quit =>
Self.is_Open := False;
when std_SDL.Events.Keyboards.Key_Down =>
Self.Keyboard.emit_key_press_Event (Key => to_gel_Key (Event.keyboard.key_Sym.key_Code),
key_Code => Integer (Event.keyboard.key_Sym.key_Code));
when std_SDL.Events.Keyboards.Key_Up =>
std_SDL.Log.put_Debug ("Key up event: " & Event.keyboard.key_Sym. key_Code'Image &
" Scan code: " & Event.keyboard.key_Sym.scan_Code'Image);
if Event.keyboard.key_Sym.key_Code = std_SDL.Events.Keyboards.Code_escape -- TODO: Make this user-configurable.
then
Self.is_Open := False;
end if;
Self.Keyboard.emit_key_release_Event (Key => to_gel_Key (Event.keyboard.key_Sym.key_Code));
when std_SDL.Events.Mice.Button_Down =>
Self.Mouse.emit_button_press_Event (Button => gel.mouse.button_Id (std_SDL.Events.Mice.Buttons'Pos (Event.mouse_Button.Button) + 1),
Modifiers => Self.Keyboard.Modifiers,
Site => (Integer (Event.mouse_Button.X),
Integer (Event.mouse_Button.Y)));
when std_SDL.Events.Mice.Button_Up =>
Self.Mouse.emit_button_release_Event (Button => gel.mouse.button_Id (std_SDL.Events.Mice.Buttons'Pos (Event.Mouse_Button.Button) + 1),
Modifiers => Self.Keyboard.Modifiers,
Site => (Integer (Event.mouse_Button.X),
Integer (Event.mouse_Button.Y)));
when std_SDL.Events.Mice.Motion =>
Self.Mouse.emit_motion_Event (Site => (Integer (Event.Mouse_Motion.x),
Integer (Event.Mouse_Motion.y)));
when std_SDL.Events.Mice.Wheel => -- TODO
null;
when std_SDL.Events.Windows.Window =>
declare
use std_SDL.Events.Windows;
begin
if Event.Window.Event_ID = Windows.Resized
then
Self.Size_is (Integer (Event.Window.Data_1),
Integer (Event.Window.Data_2));
end if;
end;
when others => -- TODO
null;
end case;
end loop;
-- SDL_GL_SwapBuffers;
end emit_Events;
overriding
procedure enable_GL (Self : in Item)
is
begin
std_SDL.Video.gl.set_Current (Self.GL_Context, To => Self.window_Handle);
end enable_GL;
overriding
procedure disable_GL (Self : in Item)
is
null_Context : standard.SDL.Video.GL.Contexts;
begin
std_SDL.Video.gl.set_Current (null_Context, To => Self.window_Handle);
end disable_GL;
overriding
procedure swap_GL (Self : in out Item)
is
use std_SDL.Video.GL;
begin
swap (Self.window_Handle);
end swap_GL;
function to_gel_Key (From : in std_SDL.Events.Keyboards.key_Codes) return gel.keyboard.Key
is
package Key renames std_SDL.Events.keyboards;
begin
case From
is
when Key.Code_return => return gel.Keyboard.Enter;
when Key.Code_escape => return gel.Keyboard.Escape;
when Key.Code_backspace => return gel.Keyboard.BackSpace;
when Key.Code_tab => return gel.Keyboard.Tab;
when Key.Code_space => return gel.Keyboard.Space;
when Key.Code_exclamation => return gel.Keyboard.Exclaim;
when Key.Code_double_quote => return gel.Keyboard.QuoteDbl;
when Key.Code_hash => return gel.Keyboard.Hash;
when Key.Code_percent => return gel.Keyboard.Percent;
when Key.Code_dollar => return gel.Keyboard.Dollar;
when Key.Code_ampersand => return gel.Keyboard.Ampersand;
when Key.Code_quote => return gel.Keyboard.Quote;
when Key.Code_left_parenthesis => return gel.Keyboard.leftParen;
when Key.Code_right_parenthesis => return gel.Keyboard.rightParen;
when Key.Code_asterisk => return gel.Keyboard.Asterisk;
when Key.Code_plus => return gel.Keyboard.Plus;
when Key.Code_comma => return gel.Keyboard.Comma;
when Key.Code_minus => return gel.Keyboard.Minus;
when Key.Code_period => return gel.Keyboard.Period;
when Key.Code_slash => return gel.Keyboard.Slash;
when Key.Code_0 => return gel.Keyboard.'0';
when Key.Code_1 => return gel.Keyboard.'1';
when Key.Code_2 => return gel.Keyboard.'2';
when Key.Code_3 => return gel.Keyboard.'3';
when Key.Code_4 => return gel.Keyboard.'4';
when Key.Code_5 => return gel.Keyboard.'5';
when Key.Code_6 => return gel.Keyboard.'6';
when Key.Code_7 => return gel.Keyboard.'7';
when Key.Code_8 => return gel.Keyboard.'8';
when Key.Code_9 => return gel.Keyboard.'9';
when Key.Code_colon => return gel.Keyboard.Colon;
when Key.Code_semi_colon => return gel.Keyboard.semiColon;
when Key.Code_less => return gel.Keyboard.Less;
when Key.Code_equals => return gel.Keyboard.Equals;
when Key.Code_greater => return gel.Keyboard.Greater;
when Key.Code_question => return gel.Keyboard.Question;
when Key.Code_at => return gel.Keyboard.At_key;
when Key.Code_left_bracket => return gel.Keyboard.leftBracket;
when Key.Code_back_slash => return gel.Keyboard.backSlash;
when Key.Code_right_bracket => return gel.Keyboard.rightBracket;
when Key.Code_caret => return gel.Keyboard.Caret;
when Key.Code_underscore => return gel.Keyboard.Underscore;
when Key.Code_back_quote => return gel.Keyboard.backQuote;
when Key.Code_a => return gel.Keyboard.A;
when Key.Code_b => return gel.Keyboard.B;
when Key.Code_c => return gel.Keyboard.C;
when Key.Code_d => return gel.Keyboard.D;
when Key.Code_e => return gel.Keyboard.E;
when Key.Code_f => return gel.Keyboard.F;
when Key.Code_g => return gel.Keyboard.G;
when Key.Code_h => return gel.Keyboard.H;
when Key.Code_i => return gel.Keyboard.I;
when Key.Code_j => return gel.Keyboard.J;
when Key.Code_k => return gel.Keyboard.K;
when Key.Code_l => return gel.Keyboard.L;
when Key.Code_m => return gel.Keyboard.M;
when Key.Code_n => return gel.Keyboard.N;
when Key.Code_o => return gel.Keyboard.O;
when Key.Code_p => return gel.Keyboard.P;
when Key.Code_q => return gel.Keyboard.Q;
when Key.Code_r => return gel.Keyboard.R;
when Key.Code_s => return gel.Keyboard.S;
when Key.Code_t => return gel.Keyboard.T;
when Key.Code_u => return gel.Keyboard.U;
when Key.Code_v => return gel.Keyboard.V;
when Key.Code_w => return gel.Keyboard.W;
when Key.Code_x => return gel.Keyboard.X;
when Key.Code_y => return gel.Keyboard.Y;
when Key.Code_z => return gel.Keyboard.Z;
when Key.Code_caps_lock => return gel.Keyboard.CapsLock;
when Key.Code_F1 => return gel.Keyboard.F1;
when Key.Code_F2 => return gel.Keyboard.F2;
when Key.Code_F3 => return gel.Keyboard.F3;
when Key.Code_F4 => return gel.Keyboard.F4;
when Key.Code_F5 => return gel.Keyboard.F5;
when Key.Code_F6 => return gel.Keyboard.F6;
when Key.Code_F7 => return gel.Keyboard.F7;
when Key.Code_F8 => return gel.Keyboard.F8;
when Key.Code_F9 => return gel.Keyboard.F9;
when Key.Code_F10 => return gel.Keyboard.F10;
when Key.Code_F11 => return gel.Keyboard.F11;
when Key.Code_F12 => return gel.Keyboard.F12;
when Key.Code_print_screen => return gel.Keyboard.Print;
when Key.Code_scroll_lock => return gel.Keyboard.ScrollLock;
when Key.Code_pause => return gel.Keyboard.Pause;
when Key.Code_insert => return gel.Keyboard.Insert;
when Key.Code_home => return gel.Keyboard.Home;
when Key.Code_page_up => return gel.Keyboard.PageUp;
when Key.Code_delete => return gel.Keyboard.Delete;
when Key.Code_end => return gel.Keyboard.End_key;
when Key.Code_page_down => return gel.Keyboard.PageDown;
when Key.Code_right => return gel.Keyboard.Right;
when Key.Code_left => return gel.Keyboard.Left;
when Key.Code_down => return gel.Keyboard.Down;
when Key.Code_up => return gel.Keyboard.Up;
when Key.Code_num_lock_clear => return gel.Keyboard.NumLock;
when Key.Code_KP_divide => return gel.Keyboard.KP_Divide;
when Key.Code_KP_multiply => return gel.Keyboard.KP_Multiply;
when Key.Code_KP_minus => return gel.Keyboard.KP_Minus;
when Key.Code_KP_plus => return gel.Keyboard.KP_Plus;
when Key.Code_KP_enter => return gel.Keyboard.KP_Enter;
when Key.Code_KP_1 => return gel.Keyboard.KP1;
when Key.Code_KP_2 => return gel.Keyboard.KP2;
when Key.Code_KP_3 => return gel.Keyboard.KP3;
when Key.Code_KP_4 => return gel.Keyboard.KP4;
when Key.Code_KP_5 => return gel.Keyboard.KP5;
when Key.Code_KP_6 => return gel.Keyboard.KP6;
when Key.Code_KP_7 => return gel.Keyboard.KP7;
when Key.Code_KP_8 => return gel.Keyboard.KP8;
when Key.Code_KP_9 => return gel.Keyboard.KP9;
when Key.Code_KP_0 => return gel.Keyboard.KP0;
when Key.Code_KP_period => return gel.Keyboard.KP_Period;
-- when Key.Code_application => return gel.Keyboard.;
when Key.Code_power => return gel.Keyboard.Power;
when Key.Code_KP_equals => return gel.Keyboard.KP_Equals;
when Key.Code_F13 => return gel.Keyboard.F13;
when Key.Code_F14 => return gel.Keyboard.F14;
when Key.Code_F15 => return gel.Keyboard.F15;
-- when Key.Code_F16 => return gel.Keyboard.;
-- when Key.Code_F17 => return gel.Keyboard.;
-- when Key.Code_F18 => return gel.Keyboard.;
-- when Key.Code_F19 => return gel.Keyboard.;
-- when Key.Code_F20 => return gel.Keyboard.;
-- when Key.Code_F21 => return gel.Keyboard.;
-- when Key.Code_F22 => return gel.Keyboard.;
-- when Key.Code_F23 => return gel.Keyboard.;
-- when Key.Code_F24 => return gel.Keyboard.;
-- when Key.Code_execute => return gel.Keyboard.;
when Key.Code_help => return gel.Keyboard.Help;
when Key.Code_menu => return gel.Keyboard.Menu;
-- when Key.Code_select => return gel.Keyboard.;
-- when Key.Code_stop => return gel.Keyboard.;
-- when Key.Code_again => return gel.Keyboard.;
when Key.Code_undo => return gel.Keyboard.Undo;
-- when Key.Code_cut => return gel.Keyboard.;
-- when Key.Code_copy => return gel.Keyboard.;
-- when Key.Code_paste => return gel.Keyboard.;
-- when Key.Code_find => return gel.Keyboard.;
-- when Key.Code_mute => return gel.Keyboard.;
-- when Key.Code_volume_up => return gel.Keyboard.;
-- when Key.Code_volume_down => return gel.Keyboard.;
-- when Key.Code_KP_comma => return gel.Keyboard.;
-- when Key.Code_KP_equals_AS400 => return gel.Keyboard.;
-- when Key.Code_alt_erase => return gel.Keyboard.;
when Key.Code_sys_req => return gel.Keyboard.SysReq;
-- when Key.Code_cancel => return gel.Keyboard.;
when Key.Code_clear => return gel.Keyboard.Clear;
-- when Key.Code_prior => return gel.Keyboard.;
-- when Key.Code_return_2 => return gel.Keyboard.;
-- when Key.Code_separator => return gel.Keyboard.;
-- when Key.Code_out => return gel.Keyboard.;
-- when Key.Code_oper => return gel.Keyboard.;
-- when Key.Code_clear_again => return gel.Keyboard.;
-- when Key.Code_CR_sel => return gel.Keyboard.;
-- when Key.Code_Ex_sel => return gel.Keyboard.;
-- when Key.Code_KP_00 => return gel.Keyboard.;
-- when Key.Code_KP_000 => return gel.Keyboard.;
-- when Key.Code_thousands_separator => return gel.Keyboard.;
-- when Key.Code_decimal_separator => return gel.Keyboard.;
-- when Key.Code_currency_unit => return gel.Keyboard.;
-- when Key.Code_KP_left_parenthesis => return gel.Keyboard.;
-- when Key.Code_KP_right_parentheesis => return gel.Keyboard.;
-- when Key.Code_KP_left_brace => return gel.Keyboard.;
-- when Key.Code_KP_right_brace => return gel.Keyboard.;
-- when Key.Code_KP_tab => return gel.Keyboard.;
-- when Key.Code_KP_backspace => return gel.Keyboard.;
-- when Key.Code_KP_A => return gel.Keyboard.;
-- when Key.Code_KP_B => return gel.Keyboard.;
-- when Key.Code_KP_C => return gel.Keyboard.;
-- when Key.Code_KP_D => return gel.Keyboard.;
-- when Key.Code_KP_E => return gel.Keyboard.;
-- when Key.Code_KP_F => return gel.Keyboard.;
-- when Key.Code_KP_xor => return gel.Keyboard.;
-- when Key.Code_KP_power => return gel.Keyboard.;
-- when Key.Code_KP_percent => return gel.Keyboard.;
-- when Key.Code_KP_less => return gel.Keyboard.;
-- when Key.Code_KP_greater => return gel.Keyboard.;
-- when Key.Code_KP_ampersand => return gel.Keyboard.;
-- when Key.Code_KP_double_ampersand => return gel.Keyboard.;
-- when Key.Code_KP_vertical_bar => return gel.Keyboard.;
-- when Key.Code_KP_double_vertical_bar => return gel.Keyboard.;
-- when Key.Code_KP_colon => return gel.Keyboard.;
-- when Key.Code_KP_hash => return gel.Keyboard.;
-- when Key.Code_KP_space => return gel.Keyboard.;
-- when Key.Code_KP_at => return gel.Keyboard.;
-- when Key.Code_KP_exclamation => return gel.Keyboard.;
-- when Key.Code_KP_memory_store => return gel.Keyboard.;
-- when Key.Code_KP_memory_recall => return gel.Keyboard.;
-- when Key.Code_KP_memory_clear => return gel.Keyboard.;
-- when Key.Code_KP_memory_add => return gel.Keyboard.;
-- when Key.Code_KP_memory_subtract => return gel.Keyboard.;
-- when Key.Code_KP_memory_multiply => return gel.Keyboard.;
-- when Key.Code_KP_memory_divide => return gel.Keyboard.;
-- when Key.Code_KP_plus_minus => return gel.Keyboard.;
-- when Key.Code_KP_clear => return gel.Keyboard.;
-- when Key.Code_KP_clear_entry => return gel.Keyboard.;
-- when Key.Code_KP_binary => return gel.Keyboard.;
-- when Key.Code_KP_octal => return gel.Keyboard.;
-- when Key.Code_KP_decimal => return gel.Keyboard.;
-- when Key.Code_KP_hexadecimal => return gel.Keyboard.;
when Key.Code_left_control => return gel.Keyboard.lCtrl;
when Key.Code_left_shift => return gel.Keyboard.lShift;
when Key.Code_left_alt => return gel.Keyboard.lAlt;
-- when Key.Code_left_gui => return gel.Keyboard.;
when Key.Code_right_control => return gel.Keyboard.rCtrl;
when Key.Code_right_shift => return gel.Keyboard.rShift;
when Key.Code_right_alt => return gel.Keyboard.rAlt;
-- when Key.Code_right_gui => return gel.Keyboard.;
-- when Key.Code_mode => return gel.Keyboard.;
-- when Key.Code_audio_next => return gel.Keyboard.;
-- when Key.Code_audio_previous => return gel.Keyboard.;
-- when Key.Code_audio_stop => return gel.Keyboard.;
-- when Key.Code_audio_play => return gel.Keyboard.;
-- when Key.Code_audio_mute => return gel.Keyboard.;
-- when Key.Code_media_select => return gel.Keyboard.;
-- when Key.Code_www => return gel.Keyboard.;
-- when Key.Code_mail => return gel.Keyboard.;
-- when Key.Code_calculator => return gel.Keyboard.;
-- when Key.Code_computer => return gel.Keyboard.;
-- when Key.Code_AC_search => return gel.Keyboard.;
-- when Key.Code_AC_home => return gel.Keyboard.;
-- when Key.Code_AC_back => return gel.Keyboard.;
-- when Key.Code_AC_forward => return gel.Keyboard.;
-- when Key.Code_AC_stop => return gel.Keyboard.;
-- when Key.Code_AC_refresh => return gel.Keyboard.;
-- when Key.Code_AC_bookmarks => return gel.Keyboard.;
-- when Key.Code_brightness_down => return gel.Keyboard.;
-- when Key.Code_brightness_up => return gel.Keyboard.;
-- when Key.Code_display_switch => return gel.Keyboard.;
-- when Key.Code_illumination_toggle => return gel.Keyboard.;
-- when Key.Code_illumination_down => return gel.Keyboard.;
-- when Key.Code_illumination_up => return gel.Keyboard.;
-- when Key.Code_eject => return gel.Keyboard.;
-- when Key.Code_sleep => return gel.Keyboard.;
when others =>
ada.Text_IO.put_Line ("SDL window unhandled key: " & From'Image); -- TODO: Remaining key codes.
end case;
return gel.Keyboard.Key'First;
end to_gel_Key;
-------------------
--- Window Creator
--
function window_Creator (Name : in String;
Width,
Height : in Positive) return gel.Window.view
is
begin
return gel.Window.view (Forge.new_Window (Name, Width, Height));
end window_Creator;
begin
gel.Window.use_create_Window (window_Creator'Access);
end gel.Window.sdl;
|
with Ada.Text_IO;
with GC;
procedure version is
begin
Ada.Text_IO.Put_Line (GC.Version);
end version;
|
-- SPDX-FileCopyrightText: 2019 Max Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-------------------------------------------------------------
with Program.Element_Filters;
with Program.Element_Vectors;
with Program.Elements.Identifiers;
with Program.Elements.Selected_Components;
with Program.Elements.With_Clauses;
with Program.Elements.Expressions;
with Program.Node_Symbols;
package body Program.Unit_Dependencies is
procedure Image
(Lists : in out Program.Symbol_Lists.Symbol_List_Table'Class;
Name : Program.Elements.Expressions.Expression_Access;
Result : out Program.Symbol_Lists.Symbol_List);
-----------------------------------
-- Find_Elaboration_Dependencies --
-----------------------------------
procedure Find_Elaboration_Dependencies
(Unit : Program.Compilation_Units.Compilation_Unit_Access;
Lists : in out Program.Symbol_Lists.Symbol_List_Table'Class;
Report : in out Unit_Dependency_Listener'Class) is
begin
raise Program_Error with "Unimplemented";
end Find_Elaboration_Dependencies;
-----------------------
-- Find_Needed_Units --
-----------------------
procedure Find_Needed_Units
(Unit : Program.Compilation_Units.Compilation_Unit_Access;
Lists : in out Program.Symbol_Lists.Symbol_List_Table'Class;
Report : in out Unit_Dependency_Listener'Class) is
begin
raise Program_Error with "Unimplemented";
end Find_Needed_Units;
--------------------------------
-- Find_Semantic_Dependencies --
--------------------------------
procedure Find_Semantic_Dependencies
(Unit : Program.Compilation_Units.Compilation_Unit_Access;
Lists : in out Program.Symbol_Lists.Symbol_List_Table'Class;
Report : in out Unit_Dependency_Listener'Class)
is
use type Program.Symbol_Lists.Symbol_List;
Full_Name : Program.Symbol_Lists.Symbol_List;
Clauses : constant Program.Element_Vectors.Element_Vector_Access :=
Unit.Context_Clause_Elements;
begin
Program.Node_Symbols.Unit_Full_Name (Lists, Unit, Full_Name);
if Full_Name = Program.Symbol_Lists.Empty_Symbol_List then
-- Standard package has no dependencies
return;
elsif Unit.Is_Subunit then
-- A subunit depends semantically upon its parent body.
Report.Required_Body (Lists.Prefix (Full_Name));
else
-- A library_item depends semantically upon its parent declaration.
Report.Required_Declaration (Lists.Prefix (Full_Name));
if Unit.Is_Library_Unit_Body then
-- A library_unit_body depends semantically upon the corresponding
-- library_unit_declaration, if any.
Report.Required_Declaration (Full_Name, If_Any => True);
end if;
end if;
-- A compilation unit depends semantically upon each library_item
-- mentioned in a with_clause of the compilation unit.
for J in Clauses.Each_Element
(Program.Element_Filters.Is_With_Clause'Access)
loop
declare
With_Clause : constant Elements.With_Clauses.With_Clause_Access :=
J.Element.To_With_Clause;
Names : constant Program.Elements.Expressions
.Expression_Vector_Access := With_Clause.Clause_Names;
Is_Limited : constant Boolean := With_Clause.Has_Limited;
List : Program.Symbol_Lists.Symbol_List;
begin
for K in Names.Each_Element loop
Image (Lists, Names.To_Expression (K.Index), List);
Report.Required_Unit (List, Is_Limited);
end loop;
end;
end loop;
end Find_Semantic_Dependencies;
procedure Image
(Lists : in out Program.Symbol_Lists.Symbol_List_Table'Class;
Name : Program.Elements.Expressions.Expression_Access;
Result : out Program.Symbol_Lists.Symbol_List) is
begin
if Name.Is_Selected_Component then
declare
Prefix : Program.Symbol_Lists.Symbol_List;
begin
Image (Lists, Name.To_Selected_Component.Prefix, Prefix);
Lists.Find_Or_Create
(Prefix,
Program.Node_Symbols.Get_Symbol
(Name.To_Selected_Component.Selector),
Result);
end;
elsif Name.Is_Identifier then
Lists.Find_Or_Create
(Program.Symbol_Lists.Empty_Symbol_List,
Program.Node_Symbols.Get_Symbol (Name),
Result);
else
raise Program_Error;
end if;
end Image;
end Program.Unit_Dependencies;
|
-- This file is generated by SWIG. Please do not modify by hand.
--
with Interfaces;
with Interfaces.C;
with Interfaces.C.Pointers;
package xcb.xcb_glx_gen_textures_request_t is
-- Item
--
type Item is record
major_opcode : aliased Interfaces.Unsigned_8;
minor_opcode : aliased Interfaces.Unsigned_8;
length : aliased Interfaces.Unsigned_16;
context_tag : aliased xcb.xcb_glx_context_tag_t;
n : aliased Interfaces.Integer_32;
end record;
-- Item_Array
--
type Item_Array is
array
(Interfaces.C
.size_t range <>) of aliased xcb.xcb_glx_gen_textures_request_t
.Item;
-- Pointer
--
package C_Pointers is new Interfaces.C.Pointers
(Index => Interfaces.C.size_t,
Element => xcb.xcb_glx_gen_textures_request_t.Item,
Element_Array => xcb.xcb_glx_gen_textures_request_t.Item_Array,
Default_Terminator => (others => <>));
subtype Pointer is C_Pointers.Pointer;
-- Pointer_Array
--
type Pointer_Array is
array
(Interfaces.C
.size_t range <>) of aliased xcb.xcb_glx_gen_textures_request_t
.Pointer;
-- Pointer_Pointer
--
package C_Pointer_Pointers is new Interfaces.C.Pointers
(Index => Interfaces.C.size_t,
Element => xcb.xcb_glx_gen_textures_request_t.Pointer,
Element_Array => xcb.xcb_glx_gen_textures_request_t.Pointer_Array,
Default_Terminator => null);
subtype Pointer_Pointer is C_Pointer_Pointers.Pointer;
end xcb.xcb_glx_gen_textures_request_t;
|
-----------------------------------------------------------------------
-- util -- Various Utility Packages
-- Copyright (C) 2001, 2002, 2003, 2009, 2010, 2011, 2012, 2013, 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.
-----------------------------------------------------------------------
package Util is
pragma Pure;
-- Library SVN identification
SVN_URL : constant String := "https://ada-util.googlecode.com/svn/trunk";
-- Revision used (must run 'make version' to update)
SVN_REV : constant Positive := 723;
end Util;
|
------------------------------------------------------------------------------
-- --
-- GNAT ncurses Binding --
-- --
-- Terminal_Interface.Curses.Forms.Field_Types.User.Choice --
-- --
-- S P E C --
-- --
------------------------------------------------------------------------------
-- Copyright (c) 1998,2008 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: 1.12 $
-- $Date: 2008/07/26 18:49:20 $
-- Binding Version 01.00
------------------------------------------------------------------------------
with Interfaces.C;
package Terminal_Interface.Curses.Forms.Field_Types.User.Choice is
pragma Preelaborate
(Terminal_Interface.Curses.Forms.Field_Types.User.Choice);
subtype C_Int is Interfaces.C.int;
type User_Defined_Field_Type_With_Choice is abstract new
User_Defined_Field_Type with null record;
-- This is the root of the mechanism we use to create field types in
-- Ada95 that allow the prev/next mechanism. You should your own type
-- derive from this one and implement the Field_Check, Character_Check
-- Next and Previous functions for your own type.
type User_Defined_Field_Type_With_Choice_Access is access all
User_Defined_Field_Type_With_Choice'Class;
function Next
(Fld : Field;
Typ : User_Defined_Field_Type_With_Choice) return Boolean
is abstract;
-- If True is returned, the function successfully generated a next
-- value into the fields buffer.
function Previous
(Fld : Field;
Typ : User_Defined_Field_Type_With_Choice) return Boolean
is abstract;
-- If True is returned, the function successfully generated a previous
-- value into the fields buffer.
-- +----------------------------------------------------------------------
-- | Private Part.
-- |
private
function C_Generic_Choice return C_Field_Type;
function Generic_Next (Fld : Field;
Usr : System.Address) return C_Int;
pragma Convention (C, Generic_Next);
-- This is the generic next Choice_Function for the low-level fieldtype
-- representing all the User_Defined_Field_Type derivates. It routes
-- the call to the Next implementation for the type.
function Generic_Prev (Fld : Field;
Usr : System.Address) return C_Int;
pragma Convention (C, Generic_Prev);
-- This is the generic prev Choice_Function for the low-level fieldtype
-- representing all the User_Defined_Field_Type derivates. It routes
-- the call to the Previous implementation for the type.
end Terminal_Interface.Curses.Forms.Field_Types.User.Choice;
|
------------------------------------------------------------------------------
-- --
-- ASIS-for-GNAT IMPLEMENTATION COMPONENTS --
-- --
-- A 4 G . C O N T T . D P --
-- --
-- B o d y --
-- --
-- Copyright (C) 1995-2012, Free Software Foundation, Inc. --
-- --
-- ASIS-for-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 --
-- Software Foundation; either version 2, or (at your option) any later --
-- version. ASIS-for-GNAT is distributed in the hope that it will be use- --
-- ful, but WITHOUT ANY WARRANTY; without even the implied warranty of MER- --
-- CHANTABILITY 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 ASIS-for-GNAT; see file --
-- COPYING. If not, write to the Free Software Foundation, 51 Franklin --
-- Street, Fifth Floor, Boston, MA 02110-1301, USA. --
-- --
-- --
-- --
-- --
-- --
-- --
-- --
-- --
-- ASIS-for-GNAT was originally developed by the ASIS-for-GNAT team at the --
-- Software Engineering Laboratory of the Swiss Federal Institute of --
-- Technology (LGL-EPFL) in Lausanne, Switzerland, in cooperation with the --
-- Scientific Research Computer Center of Moscow State University (SRCC --
-- MSU), Russia, with funding partially provided by grants from the Swiss --
-- National Science Foundation and the Swiss Academy of Engineering --
-- Sciences. ASIS-for-GNAT is now maintained by AdaCore --
-- (http://www.adacore.com). --
-- --
------------------------------------------------------------------------------
pragma Ada_2005;
with Ada.Containers.Ordered_Sets;
with Ada.Unchecked_Deallocation;
with Asis.Set_Get; use Asis.Set_Get;
with A4G.Contt.UT; use A4G.Contt.UT;
with A4G.Get_Unit; use A4G.Get_Unit;
with Atree; use Atree;
with Nlists; use Nlists;
with Namet; use Namet;
with Sinfo; use Sinfo;
with Lib; use Lib;
package body A4G.Contt.Dp is
-----------------------
-- Local Subprograms --
-----------------------
function Get_First_Stub (Body_Node : Node_Id) return Node_Id;
function Get_Next_Stub (Stub_Node : Node_Id) return Node_Id;
-- these two functions implement the iterator through the body stubs
-- contained in the given compilation unit. The iterator should
-- be started from calling Get_First_Stub for the node pointed to
-- the body (that is, for the node of ..._Body kind). The Empty node
-- is returned if there is no first/next body stub node
procedure Set_All_Unit_Dependencies (U : Unit_Id);
-- Computes the full lists of supporters and dependents of U in the current
-- Context from the list of direct supporters of U and sets these lists as
-- values of Supporters and Dependents lists in the Unit Table
procedure Add_Unit_Supporters (U : Unit_Id; L : in out Elist_Id);
-- Add all the supporters of U, excluding U itself to L. This procedure
-- traverses all the transitive semantic dependencies.
procedure Fix_Direct_Supporters (Unit : Unit_Id);
-- This procedure adds missed direct dependencies to the unit. It is
-- supposed that before the call the list of direct supporters contains
-- only units extracted from the unit context clause. So, if U is a body,
-- this procedure adds the spec to the list of direct supporters, if it is
-- a subunit - the parent body is added, if it is a child unit - the
-- parent spec is added etc. The procedure adds these supporters in a
-- transitive manner - that is, in case of a subunit, it adds the parent
-- body, its spec (if any), its parent (if any) etc.
-- This function supposes that Current Context is correctly set before
-- the call.
function In_List
(U : Unit_Id;
L : Unit_Id_List;
Up_To : Natural)
return Boolean;
-- Checks if U is a member of the first Up_To components of L. (If
-- Up_To is 0, False is returned
procedure CU_To_Unit_Id_List
(CU_List : Compilation_Unit_List;
Result_Unit_Id_List : in out Unit_Id_List;
Result_List_Len : out Natural);
-- Converts the ASIS Compilation Unit list into the list of Unit Ids and
-- places this list into Result_Unit_Id_List. (Probably, we should replace
-- this routine with a function...)
-- For each ASIS Compilation Unit from CU_List the Result_Unit_Id_List
-- contains exactly one Id for the corresponding unit. Result_List_Len is
-- set to represent the index of the last Unit Id in Result_List_Len (0
-- in case if Result_List_Len is empty). This routine expects that
-- Result_Unit_Id_List'Length >= CU_List'Length
--------------------------------------
-- Dynamic Unit_Id list abstraction --
--------------------------------------
-- All the subprograms implementing Unit_Id list abstraction do not
-- reset Context
-- Is this package body the right place for defining this abstraction?
-- May be, we should move it into A4G.A_Types???
type Unit_Id_List_Access is access Unit_Id_List;
Tmp_Unit_Id_List_Access : Unit_Id_List_Access;
procedure Free is new Ada.Unchecked_Deallocation
(Unit_Id_List, Unit_Id_List_Access);
function In_Unit_Id_List
(U : Unit_Id;
L : Unit_Id_List_Access)
return Boolean;
-- Checks if U is a member of L.
procedure Append_Unit_To_List
(U : Unit_Id;
L : in out Unit_Id_List_Access);
-- (Unconditionally) appends U to L.
procedure Add_To_Unit_Id_List
(U : Unit_Id;
L : in out Unit_Id_List_Access);
-- If not In_Unit_Id_List (U, L), U is appended to L (if L is null,
-- new Unit_Id_List value is created)
procedure Reorder_Sem_Dependencies (Units : Unit_Id_List_Access);
-- This procedure takes the unit list with is supposed to be the result of
-- one of the Set_All_<Relation> functions above (that is, its parameter
-- is not supposed to be null and it contains only existing units). It
-- reorders it in the way required by
-- Asis.Compilation_Units.Relations.Semantic_Dependence_Order - that is,
-- with no forward semantic dependencies.
-------------------
-- Add_To_Parent --
-------------------
procedure Add_To_Parent (C : Context_Id; U : Unit_Id) is
Parent_Id : Unit_Id;
Unit_Kind : constant Unit_Kinds := Kind (C, U);
begin
if U = Standard_Id then
return;
end if;
Reset_Context (C); -- ???
Get_Name_String (U, Norm_Ada_Name);
if Not_Root then
Form_Parent_Name;
if Unit_Kind in A_Subunit then
A_Name_Buffer (A_Name_Len) := 'b';
end if;
Parent_Id := Name_Find (C);
-- Parent_Id cannot be Nil_Unit here
Append_Elmt
(Unit => U,
To => Unit_Table.Table (Parent_Id).Subunits_Or_Childs);
else
Append_Elmt
(Unit => U,
To => Unit_Table.Table (Standard_Id).Subunits_Or_Childs);
end if;
end Add_To_Parent;
-------------------------
-- Add_Unit_Supporters --
-------------------------
procedure Add_Unit_Supporters (U : Unit_Id; L : in out Elist_Id) is
Supporters : Elist_Id renames Unit_Table.Table (U).Supporters;
Direct_Supporters : Elist_Id renames
Unit_Table.Table (U).Direct_Supporters;
Next_Support_Elmt : Elmt_Id;
Next_Support_Unit : Unit_Id;
begin
if Is_Empty_Elmt_List (Direct_Supporters) then
-- end of the recursion
return;
elsif not Is_Empty_Elmt_List (Supporters) then
-- no need to traverse indirect dependencies
Next_Support_Elmt := First_Elmt (Supporters);
while Present (Next_Support_Elmt) loop
Next_Support_Unit := Unit (Next_Support_Elmt);
Add_To_Elmt_List
(Unit => Next_Support_Unit,
List => L);
Next_Support_Elmt := Next_Elmt (Next_Support_Elmt);
end loop;
else
-- And here we have to traverse the recursive dependencies:
Next_Support_Elmt := First_Elmt (Direct_Supporters);
while Present (Next_Support_Elmt) loop
Next_Support_Unit := Unit (Next_Support_Elmt);
-- The old code currently commented out caused a huge delay
-- when opening one tree context (8326-002). We will keep it
-- till the new code is tested for queries from
-- Asis.Compilation_Units.Relations
-- ???Old code start
-- Here we can not be sure, that if Next_Support_Unit already
-- is in the list, all its supporters also are in the list
-- Add_To_Elmt_List
-- (Unit => Next_Support_Unit,
-- List => L);
-- Add_Unit_Supporters (Next_Support_Unit, L);
-- ???Old code end
-- ???New code start
if not In_Elmt_List (Next_Support_Unit, L) then
Append_Elmt
(Unit => Next_Support_Unit,
To => L);
Add_Unit_Supporters (Next_Support_Unit, L);
end if;
-- ???New code end
Next_Support_Elmt := Next_Elmt (Next_Support_Elmt);
end loop;
end if;
end Add_Unit_Supporters;
-------------------------
-- Append_Subunit_Name --
-------------------------
procedure Append_Subunit_Name (Def_S_Name : Node_Id) is
begin
-- Here we need unqualified name, because the name
-- which comes from the stub is qualified by parent body
-- name
Get_Unqualified_Decoded_Name_String (Chars (Def_S_Name));
A_Name_Buffer (A_Name_Len - 1) := '.';
A_Name_Buffer (A_Name_Len .. A_Name_Len + Name_Len - 1) :=
Name_Buffer (1 .. Name_Len);
A_Name_Len := A_Name_Len + Name_Len + 1;
A_Name_Buffer (A_Name_Len - 1) := '%';
A_Name_Buffer (A_Name_Len) := 'b';
end Append_Subunit_Name;
------------------------
-- CU_To_Unit_Id_List --
------------------------
procedure CU_To_Unit_Id_List
(CU_List : Compilation_Unit_List;
Result_Unit_Id_List : in out Unit_Id_List;
Result_List_Len : out Natural)
is
Next_Unit : Unit_Id;
begin
Result_List_Len := 0;
for I in CU_List'Range loop
Next_Unit := Get_Unit_Id (CU_List (I));
if not In_List (Next_Unit, Result_Unit_Id_List, Result_List_Len) then
Result_List_Len := Result_List_Len + 1;
Result_Unit_Id_List (Result_List_Len) := Next_Unit;
end if;
end loop;
end CU_To_Unit_Id_List;
---------------------------
-- Fix_Direct_Supporters --
---------------------------
procedure Fix_Direct_Supporters (Unit : Unit_Id) is
function Next_Supporter (U : Unit_Id) return Unit_Id;
-- Computes the next supporter to be added (from subunit to the parent
-- body, from body to the spec, from child to the parent etc). Ends up
-- with Standard and then with Nil_Unit as its parent
Next_Supporter_Id : Unit_Id;
function Next_Supporter (U : Unit_Id) return Unit_Id is
C : constant Context_Id := Current_Context;
Arg_Unit_Kind : constant Unit_Kinds := Kind (C, U);
Result_Id : Unit_Id := Nil_Unit;
begin
case Arg_Unit_Kind is
when A_Procedure |
A_Function |
A_Package |
A_Generic_Procedure |
A_Generic_Function |
A_Generic_Package |
A_Procedure_Instance |
A_Function_Instance |
A_Package_Instance |
A_Procedure_Renaming |
A_Function_Renaming |
A_Package_Renaming |
A_Generic_Procedure_Renaming |
A_Generic_Function_Renaming |
A_Generic_Package_Renaming =>
Result_Id := Get_Parent_Unit (C, U);
when A_Procedure_Body |
A_Function_Body =>
if Class (C, U) = A_Public_Declaration_And_Body then
Result_Id := Get_Parent_Unit (C, U);
else
Result_Id := Get_Declaration (C, U);
end if;
when A_Package_Body =>
Result_Id := Get_Declaration (C, U);
when A_Procedure_Body_Subunit |
A_Function_Body_Subunit |
A_Package_Body_Subunit |
A_Task_Body_Subunit |
A_Protected_Body_Subunit =>
Result_Id := Get_Subunit_Parent_Body (C, U);
when others =>
pragma Assert (False);
null;
end case;
return Result_Id;
end Next_Supporter;
begin
Next_Supporter_Id := Next_Supporter (Unit);
while Present (Next_Supporter_Id) loop
Append_Elmt (Unit => Next_Supporter_Id,
To => Unit_Table.Table (Unit).Direct_Supporters);
Next_Supporter_Id := Next_Supporter (Next_Supporter_Id);
end loop;
end Fix_Direct_Supporters;
--------------------
-- Get_First_Stub --
--------------------
function Get_First_Stub (Body_Node : Node_Id) return Node_Id is
Decls : List_Id;
Decl : Node_Id;
begin
Decls := Declarations (Body_Node);
if No (Decls) then
return Empty;
else
Decl := Nlists.First (Decls);
while Present (Decl) loop
if Nkind (Decl) in N_Body_Stub then
return Decl;
end if;
Decl := Next (Decl);
end loop;
return Empty;
end if;
end Get_First_Stub;
-------------------
-- Get_Next_Stub --
-------------------
function Get_Next_Stub (Stub_Node : Node_Id) return Node_Id is
Next_Decl : Node_Id;
begin
Next_Decl := Next (Stub_Node);
while Present (Next_Decl) loop
if Nkind (Next_Decl) in N_Body_Stub then
return Next_Decl;
end if;
Next_Decl := Next (Next_Decl);
end loop;
return Empty;
end Get_Next_Stub;
-------------
-- In_List --
-------------
function In_List
(U : Unit_Id;
L : Unit_Id_List;
Up_To : Natural)
return Boolean
is
Len : constant Natural := Natural'Min (Up_To, L'Length);
Result : Boolean := False;
begin
for I in 1 .. Len loop
if L (I) = U then
Result := True;
exit;
end if;
end loop;
return Result;
end In_List;
------------------
-- Process_Stub --
------------------
procedure Process_Stub (C : Context_Id; U : Unit_Id; Stub : Node_Id) is
Def_S_Name : Node_Id;
Subunit_Id : Unit_Id;
begin
-- We should save (and then restore) the content of A_Name_Buffer in
-- case when more than one stub is to be processed. (A_Name_Buffer
-- contains the Ada name of the parent body)
NB_Save;
if Nkind (Stub) = N_Subprogram_Body_Stub then
Def_S_Name := Defining_Unit_Name (Specification (Stub));
else
Def_S_Name := Defining_Identifier (Stub);
end if;
Append_Subunit_Name (Def_S_Name);
Subunit_Id := Name_Find (C);
if No (Subunit_Id) then
Subunit_Id := Allocate_Nonexistent_Unit_Entry (C);
Append_Elmt (Unit => Subunit_Id,
To => Unit_Table.Table (U).Subunits_Or_Childs);
end if;
NB_Restore;
end Process_Stub;
------------------------------
-- Reorder_Sem_Dependencies --
------------------------------
procedure Reorder_Sem_Dependencies (Units : Unit_Id_List_Access) is
More_Inversion : Boolean := True;
Tmp_Unit : Unit_Id;
begin
if Units'Length = 0 then
return;
end if;
-- The idea is simple: for all the units in Units list we have the
-- lists of all the unit's supporters already computed. If we order
-- units so that the lengths of supporter lists will increase we will
-- get the order in which there will be no forward semantic
-- dependencies: if unit A depends on unit B, then A also depends on
-- all the supporters of B, so it has the list of supporters longer
-- then B has
while More_Inversion loop
More_Inversion := False;
for J in Units'First .. Units'Last - 1 loop
if List_Length (Unit_Table.Table (Units (J)).Supporters) >
List_Length (Unit_Table.Table (Units (J + 1)).Supporters)
then
Tmp_Unit := Units (J + 1);
Units (J + 1) := Units (J);
Units (J) := Tmp_Unit;
More_Inversion := True;
end if;
end loop;
end loop;
end Reorder_Sem_Dependencies;
--------------------------
-- Set_All_Dependencies --
--------------------------
procedure Set_All_Dependencies (Use_First_New_Unit : Boolean := False) is
Starting_Unit : Unit_Id;
begin
if Use_First_New_Unit then
Starting_Unit := First_New_Unit;
if No (Starting_Unit) then
-- This may happen, when, for the incremental Context, we
-- process the tree which is the main tree for some body unit,
-- and this body unit has been already included in the Context
-- (See Lib (spec, (h))
return;
end if;
else
Starting_Unit := Config_Comp_Id + 1;
-- Config_Comp_Id corresponds to last predefined unit set in the
-- unit table
end if;
for U in Starting_Unit .. Last_Unit loop
Set_All_Unit_Dependencies (U);
end loop;
end Set_All_Dependencies;
-------------------------------
-- Set_All_Unit_Dependencies --
-------------------------------
procedure Set_All_Unit_Dependencies (U : Unit_Id) is
Supporters : Elist_Id renames Unit_Table.Table (U).Supporters;
Direct_Supporters : Elist_Id renames
Unit_Table.Table (U).Direct_Supporters;
Next_Support_Elmt : Elmt_Id;
Next_Support_Unit : Unit_Id;
begin
Fix_Direct_Supporters (U);
-- Setting all the unit supporters
Next_Support_Elmt := First_Elmt (Direct_Supporters);
while Present (Next_Support_Elmt) loop
Next_Support_Unit := Unit (Next_Support_Elmt);
-- If Next_Support_Unit already is in Supporters list,
-- all its supporters also are already included in Supporters.
if not In_Elmt_List (Next_Support_Unit, Supporters) then
Append_Elmt
(Unit => Next_Support_Unit,
To => Supporters);
Add_Unit_Supporters (Next_Support_Unit, Supporters);
end if;
Next_Support_Elmt := Next_Elmt (Next_Support_Elmt);
end loop;
-- And now - adding U as depended unit to the list of Dependents for
-- all its supporters
Next_Support_Elmt := First_Elmt (Supporters);
while Present (Next_Support_Elmt) loop
Next_Support_Unit := Unit (Next_Support_Elmt);
Append_Elmt
(Unit => U,
To => Unit_Table.Table (Next_Support_Unit).Dependents);
Next_Support_Elmt := Next_Elmt (Next_Support_Elmt);
end loop;
end Set_All_Unit_Dependencies;
---------------------------
-- Set_Direct_Dependents --
---------------------------
procedure Set_Direct_Dependents (U : Unit_Id) is
Next_Support_Elmt : Elmt_Id;
Next_Support_Unit : Unit_Id;
begin
Next_Support_Elmt := First_Elmt (Unit_Table.Table (U).Direct_Supporters);
while Present (Next_Support_Elmt) loop
Next_Support_Unit := Unit (Next_Support_Elmt);
Append_Elmt
(Unit => U,
To => Unit_Table.Table (Next_Support_Unit).Direct_Dependents);
Next_Support_Elmt := Next_Elmt (Next_Support_Elmt);
end loop;
end Set_Direct_Dependents;
-----------------------
-- Set_All_Ancestors --
-----------------------
procedure Set_All_Ancestors
(Compilation_Units : Asis.Compilation_Unit_List;
Result : in out Compilation_Unit_List_Access)
is
Cont : constant Context_Id := Current_Context;
Arg_List : Unit_Id_List (1 .. Compilation_Units'Length) :=
(others => Nil_Unit);
Arg_List_Len : Natural := 0;
Result_List : Unit_Id_List_Access := null;
Next_Ancestor_Unit : Unit_Id;
begin
-- For the current version, we are supposing, that we have only one
-- Context opened at a time
CU_To_Unit_Id_List (Compilation_Units, Arg_List, Arg_List_Len);
-- Standard is an ancestor of any unit, and if we are here,
-- Compilation_Units can not be Nil_Compilation_Unit_List. So we set
-- it as the first element of the result list:
Append_Unit_To_List (Standard_Id, Result_List);
for I in 1 .. Arg_List_Len loop
Next_Ancestor_Unit := Arg_List (I);
if Next_Ancestor_Unit /= Standard_Id then
while Kind (Cont, Next_Ancestor_Unit) in A_Subunit loop
Next_Ancestor_Unit :=
Get_Subunit_Parent_Body (Cont, Next_Ancestor_Unit);
end loop;
if Class (Cont, Next_Ancestor_Unit) = A_Public_Body or else
Class (Cont, Next_Ancestor_Unit) = A_Private_Body
then
Next_Ancestor_Unit :=
Get_Declaration (Cont, Next_Ancestor_Unit);
end if;
while Next_Ancestor_Unit /= Standard_Id loop
if not In_Unit_Id_List (Next_Ancestor_Unit, Result_List) then
Append_Unit_To_List (Next_Ancestor_Unit, Result_List);
Next_Ancestor_Unit :=
Get_Parent_Unit (Cont, Next_Ancestor_Unit);
else
exit;
end if;
end loop;
end if;
end loop;
-- And here we have to order Result_List to eliminate forward
-- semantic dependencies
-- Result_List can not be null - it contains at least Standard_Id
Reorder_Sem_Dependencies (Result_List);
Result := new Compilation_Unit_List'
(Get_Comp_Unit_List (Result_List.all, Cont));
Free (Result_List);
end Set_All_Ancestors;
------------------------
-- Set_All_Dependents --
------------------------
procedure Set_All_Dependents
(Compilation_Units : Asis.Compilation_Unit_List;
Dependent_Units : Asis.Compilation_Unit_List;
Result : in out Compilation_Unit_List_Access)
is
Cont : constant Context_Id := Current_Context;
Arg_List : Unit_Id_List (1 .. Compilation_Units'Length) :=
(others => Nil_Unit);
Arg_List_Len : Natural := 0;
Dep_List : Unit_Id_List (1 .. Dependent_Units'Length) :=
(others => Nil_Unit);
Dep_List_Len : Natural := 0;
Result_List : Unit_Id_List_Access := null;
Next_Dependent_Elmt : Elmt_Id;
Next_Dependent_Unit : Unit_Id;
begin
-- For the current version, we are supposing, that we have only one
-- Context opened at a time
CU_To_Unit_Id_List (Compilation_Units, Arg_List, Arg_List_Len);
CU_To_Unit_Id_List (Dependent_Units, Dep_List, Dep_List_Len);
-- Now, collecting all the dependents for Compilation_Units
for I in 1 .. Arg_List_Len loop
Next_Dependent_Elmt :=
First_Elmt (Unit_Table.Table (Arg_List (I)).Dependents);
while Present (Next_Dependent_Elmt) loop
Next_Dependent_Unit := Unit (Next_Dependent_Elmt);
if Dep_List_Len = 0 or else
In_List (Next_Dependent_Unit, Dep_List, Dep_List_Len)
then
Add_To_Unit_Id_List (Next_Dependent_Unit, Result_List);
end if;
Next_Dependent_Elmt := Next_Elmt (Next_Dependent_Elmt);
end loop;
end loop;
-- And here we have to order Result_List to eliminate forward
-- semantic dependencies
if Result_List /= null then
Reorder_Sem_Dependencies (Result_List);
Result := new Compilation_Unit_List'
(Get_Comp_Unit_List (Result_List.all, Cont));
Free (Result_List);
else
Result := new Compilation_Unit_List (1 .. 0);
end if;
end Set_All_Dependents;
-------------------------
-- Set_All_Descendants --
-------------------------
procedure Set_All_Descendants
(Compilation_Units : Asis.Compilation_Unit_List;
Result : in out Compilation_Unit_List_Access)
is
Cont : constant Context_Id := Current_Context;
Arg_List : Unit_Id_List (1 .. Compilation_Units'Length) :=
(others => Nil_Unit);
Arg_List_Len : Natural := 0;
Result_List : Unit_Id_List_Access := null;
Next_Descendant_Elmt : Elmt_Id;
Next_Unit : Unit_Id;
procedure Add_All_Descendants
(Desc_Unit : Unit_Id;
Result_List : in out Unit_Id_List_Access);
-- If Desc_Unit is not in Result_List, this procedure adds it and
-- (recursively) all its descendants which are not in Result_List to
-- the list.
procedure Add_All_Descendants
(Desc_Unit : Unit_Id;
Result_List : in out Unit_Id_List_Access)
is
Child_Elmt : Elmt_Id;
Child_Unit : Unit_Id;
begin
if not In_Unit_Id_List (Desc_Unit, Result_List) then
Append_Unit_To_List (Desc_Unit, Result_List);
if Kind (Cont, Desc_Unit) = A_Package or else
Kind (Cont, Desc_Unit) = A_Generic_Package or else
Kind (Cont, Desc_Unit) = A_Package_Renaming or else
Kind (Cont, Desc_Unit) = A_Generic_Package_Renaming
then
Child_Elmt :=
First_Elmt (Unit_Table.Table (Desc_Unit).Subunits_Or_Childs);
while Present (Child_Elmt) loop
Child_Unit := Unit (Child_Elmt);
Add_All_Descendants (Child_Unit, Result_List);
Child_Elmt := Next_Elmt (Child_Elmt);
end loop;
end if;
end if;
end Add_All_Descendants;
begin
-- We can not use CU_To_Unit_Id_List routine, because we have to
-- filter out subunits, nonexistent units (?) and bodies for which the
-- Context does not contain a spec - such units can not have
-- descendants. For bodies, only the corresponding specs contain the
-- lists of descendants.
for I in Compilation_Units'Range loop
Next_Unit := Get_Unit_Id (Compilation_Units (I));
if Kind (Cont, Next_Unit) not in A_Procedure_Body_Subunit ..
A_Nonexistent_Body
then
if Kind (Cont, Next_Unit) in A_Library_Unit_Body then
Next_Unit := Get_Declaration (Cont, Next_Unit);
end if;
if Present (Next_Unit) and then
(not In_List (Next_Unit, Arg_List, Arg_List_Len))
then
Arg_List_Len := Arg_List_Len + 1;
Arg_List (Arg_List_Len) := Next_Unit;
end if;
end if;
end loop;
for J in 1 .. Arg_List_Len loop
Next_Descendant_Elmt :=
First_Elmt (Unit_Table.Table (Arg_List (J)).Subunits_Or_Childs);
while Present (Next_Descendant_Elmt) loop
Next_Unit := Unit (Next_Descendant_Elmt);
Add_All_Descendants (Next_Unit, Result_List);
Next_Descendant_Elmt := Next_Elmt (Next_Descendant_Elmt);
end loop;
end loop;
if Result_List /= null then
Reorder_Sem_Dependencies (Result_List);
Result := new Compilation_Unit_List'
(Get_Comp_Unit_List (Result_List.all, Cont));
Free (Result_List);
else
Result := new Compilation_Unit_List (1 .. 0);
end if;
end Set_All_Descendants;
----------------------
-- Set_All_Families --
----------------------
procedure Set_All_Families
(Compilation_Units : Asis.Compilation_Unit_List;
Result : in out Compilation_Unit_List_Access)
is
Cont : constant Context_Id := Current_Context;
Arg_List : Unit_Id_List (1 .. Compilation_Units'Length) :=
(others => Nil_Unit);
Arg_List_Len : Natural := 0;
Result_List : Unit_Id_List_Access := null;
procedure Collect_Spec_Family
(Spec_Unit : Unit_Id;
Result_List : in out Unit_Id_List_Access);
-- If Spec_Unit is not in Result_List, this procedure adds it and
-- (recursively) all members of its family which are not in Result_List
-- to the list. In case of a spec, the corresponding body's family is
-- also added
procedure Collect_Body_Family
(Body_Unit : Unit_Id;
Result_List : in out Unit_Id_List_Access);
-- If Body_Unit is not in Result_List, this procedure adds it and
-- (recursively) all members of its family which are not in Result_List
-- to the list. In case of a body, only the subunit tree rooted by this
-- body may be added
procedure Collect_Spec_Family
(Spec_Unit : Unit_Id;
Result_List : in out Unit_Id_List_Access)
is
Child_Elmt : Elmt_Id;
Child_Unit : Unit_Id;
begin
if not In_Unit_Id_List (Spec_Unit, Result_List) then
Append_Unit_To_List (Spec_Unit, Result_List);
-- We have to add all descendants (if any) and their families
if Kind (Cont, Spec_Unit) = A_Package or else
Kind (Cont, Spec_Unit) = A_Generic_Package or else
Kind (Cont, Spec_Unit) = A_Package_Renaming or else
Kind (Cont, Spec_Unit) = A_Generic_Package_Renaming
then
Child_Elmt :=
First_Elmt (Unit_Table.Table (Spec_Unit).Subunits_Or_Childs);
while Present (Child_Elmt) loop
Child_Unit := Unit (Child_Elmt);
if Kind (Cont, Child_Unit) in
A_Procedure .. A_Generic_Package_Renaming
then
Collect_Spec_Family (Child_Unit, Result_List);
elsif Kind (Cont, Child_Unit) in
A_Procedure_Body .. A_Protected_Body_Subunit
then
Collect_Body_Family (Child_Unit, Result_List);
end if;
Child_Elmt := Next_Elmt (Child_Elmt);
end loop;
end if;
end if;
end Collect_Spec_Family;
procedure Collect_Body_Family
(Body_Unit : Unit_Id;
Result_List : in out Unit_Id_List_Access)
is
Child_Elmt : Elmt_Id;
Child_Unit : Unit_Id;
begin
if not In_Unit_Id_List (Body_Unit, Result_List) then
Append_Unit_To_List (Body_Unit, Result_List);
-- We have to add all descendants (if any) and their families
if Kind (Cont, Body_Unit) in
A_Procedure_Body .. A_Protected_Body_Subunit
then
Child_Elmt :=
First_Elmt (Unit_Table.Table (Body_Unit).Subunits_Or_Childs);
while Present (Child_Elmt) loop
Child_Unit := Unit (Child_Elmt);
Collect_Body_Family (Child_Unit, Result_List);
Child_Elmt := Next_Elmt (Child_Elmt);
end loop;
end if;
end if;
end Collect_Body_Family;
begin
CU_To_Unit_Id_List (Compilation_Units, Arg_List, Arg_List_Len);
for J in 1 .. Arg_List_Len loop
case Class (Cont, Arg_List (J)) is
when A_Public_Declaration |
A_Private_Declaration =>
Collect_Spec_Family (Arg_List (J), Result_List);
when Not_A_Class =>
-- This should never happen, so just in case we
-- raise an exception
null;
pragma Assert (False);
when others =>
-- Here we can have only a body or a separate body
Collect_Body_Family (Arg_List (J), Result_List);
end case;
end loop;
-- And here we have to order Result_List to eliminate forward
-- semantic dependencies
if Result_List /= null then
Reorder_Sem_Dependencies (Result_List);
Result := new Compilation_Unit_List'
(Get_Comp_Unit_List (Result_List.all, Cont));
Free (Result_List);
else
Result := new Compilation_Unit_List (1 .. 0);
end if;
end Set_All_Families;
------------------------
-- Set_All_Supporters --
------------------------
package Unit_Container is new Ada.Containers.Ordered_Sets
(Element_Type => Unit_Id);
procedure Unit_List_To_Set
(Unit_List : Elist_Id;
Unit_Set : in out Unit_Container.Set);
-- Assuming that Unit_List does not contain repeating elements, creates
-- Unit_Set as the set containing Unit IDs from Unit_List. If Unit_Set is
-- non-empty before the call, the old content of the set is lost.
function Unit_Set_To_List
(Unit_Set : Unit_Container.Set)
return Unit_Id_List;
-- Converts the unit id set into array
Result_Set : Unit_Container.Set;
New_Set : Unit_Container.Set;
Newer_Set : Unit_Container.Set;
Next_Direct_Supporter : Unit_Container.Cursor;
procedure Unit_List_To_Set
(Unit_List : Elist_Id;
Unit_Set : in out Unit_Container.Set)
is
Next_El : Elmt_Id;
begin
Unit_Container.Clear (Unit_Set);
Next_El := First_Elmt (Unit_List);
while Present (Next_El) loop
Unit_Container.Insert (Unit_Set, Unit (Next_El));
Next_El := Next_Elmt (Next_El);
end loop;
end Unit_List_To_Set;
function Unit_Set_To_List
(Unit_Set : Unit_Container.Set)
return Unit_Id_List
is
Next_Unit : Unit_Container.Cursor;
Result : Unit_Id_List (1 .. Natural (Unit_Container.Length (Unit_Set)));
Next_Idx : Natural := Result'First;
begin
Next_Unit := Unit_Container.First (Unit_Set);
while Unit_Container.Has_Element (Next_Unit) loop
Result (Next_Idx) := Unit_Container.Element (Next_Unit);
Next_Idx := Next_Idx + 1;
Next_Unit := Unit_Container.Next (Next_Unit);
end loop;
return Result;
end Unit_Set_To_List;
procedure Set_All_Supporters
(Compilation_Units : Asis.Compilation_Unit_List;
Result : in out Compilation_Unit_List_Access)
is
Cont : constant Context_Id := Current_Context;
Arg_List : Unit_Id_List (1 .. Compilation_Units'Length) :=
(others => Nil_Unit);
Result_List : Unit_Id_List_Access := null;
Arg_List_Len : Natural := 0;
pragma Unreferenced (Arg_List_Len);
procedure Collect_Supporters (U : Unit_Id);
-- If U is not presented in Result, adds (recursively) all its
-- supporters to Result_List
-- Uses workpile algorithm to avoid cycling (cycling is possible because
-- of limited with)
procedure Collect_Supporters (U : Unit_Id) is
Next_Supporter : Elmt_Id;
begin
Unit_Container.Clear (New_Set);
Unit_Container.Clear (Newer_Set);
Unit_List_To_Set
(Unit_List => Unit_Table.Table (U).Supporters,
Unit_Set => New_Set);
Unit_Container.Union
(Target => Result_Set,
Source => New_Set);
while not Unit_Container.Is_Empty (New_Set) loop
Next_Direct_Supporter := Unit_Container.First (New_Set);
Next_Supporter :=
First_Elmt (Unit_Table.Table
(Unit_Container.Element (Next_Direct_Supporter)).Supporters);
while Present (Next_Supporter) loop
if not Unit_Container.Contains
(Result_Set, Unit (Next_Supporter))
then
Unit_Container.Insert (Newer_Set, Unit (Next_Supporter));
end if;
Next_Supporter := Next_Elmt (Next_Supporter);
end loop;
Unit_Container.Delete_First (New_Set);
if not Unit_Container.Is_Empty (Newer_Set) then
Unit_Container.Union (Result_Set, Newer_Set);
Unit_Container.Union (New_Set, Newer_Set);
Unit_Container.Clear (Newer_Set);
end if;
end loop;
end Collect_Supporters;
begin
Unit_Container.Clear (Result_Set);
Unit_Container.Insert (Result_Set, Standard_Id);
-- For the current version, we are supposing, that we have only one
-- Context opened at a time
CU_To_Unit_Id_List (Compilation_Units, Arg_List, Arg_List_Len);
-- Now, collecting all the supporters for Compilation_Units
-- Standard is a supporter of any unit, and if we are here,
-- Compilation_Units can not be Nil_Compilation_Unit_List. So we set
-- it as the first element of the result list:
for J in Compilation_Units'Range loop
Collect_Supporters (Get_Unit_Id (Compilation_Units (J)));
end loop;
Result_List := new Unit_Id_List'(Unit_Set_To_List (Result_Set));
-- And here we have to order Result_List to eliminate forward
-- semantic dependencies
-- Result_List can not be null - it contains at least Standard_Id
Reorder_Sem_Dependencies (Result_List);
Result := new Compilation_Unit_List'
(Get_Comp_Unit_List (Result_List.all, Cont));
Free (Result_List);
end Set_All_Supporters;
--------------------------
-- Set_All_Needed_Units --
--------------------------
procedure Set_All_Needed_Units
(Compilation_Units : Asis.Compilation_Unit_List;
Result : in out Compilation_Unit_List_Access;
Missed : in out Compilation_Unit_List_Access)
is
Cont : constant Context_Id := Current_Context;
Cont_Tree_Mode : constant Tree_Mode := Tree_Processing_Mode (Cont);
Arg_List : Unit_Id_List (1 .. Compilation_Units'Length) :=
(others => Nil_Unit);
Arg_List_Len : Natural := 0;
Result_List : Unit_Id_List_Access := null;
Missed_List : Unit_Id_List_Access := null;
procedure Set_One_Unit (U : Unit_Id);
-- Provided that U is an (existing) unit which is not in the
-- Result_List, this procedure adds this unit and all the units
-- needed by it to result lists.
procedure Add_Needed_By_Spec (Spec_Unit : Unit_Id);
-- Provided that Spec_Unit denotes an (existing) spec, this procedure
-- adds to the result lists units which are needed by this unit only,
-- that is, excluding this unit (it is supposed to be already added at
-- the moment of the call), its body and units needed by the body (if
-- any, they are processed separately)
procedure Add_Needed_By_Body (Body_Unit : Unit_Id);
-- Provided that Body_Unit denotes an (existing) body, this procedure
-- adds to the result lists units which are needed by this unit,
-- excluding the unit itself (it is supposed to be already added at
-- the moment of the call). That is, the spec of this unit and units
-- which are needed by the spec (if any) are also needed, if they have
-- not been added before
------------------------
-- Add_Needed_By_Body --
------------------------
procedure Add_Needed_By_Body (Body_Unit : Unit_Id) is
Spec_Unit : Unit_Id;
Subunit_List : constant Unit_Id_List := Subunits (Cont, Body_Unit);
Next_Support_Elmt : Elmt_Id;
Next_Support_Unit : Unit_Id;
begin
-- First, check if there is a separate spec then it has to be
-- processed
if Class (Cont, Body_Unit) /= A_Public_Declaration_And_Body then
Spec_Unit := Body_Unit;
while Class (Cont, Spec_Unit) = A_Separate_Body loop
Spec_Unit := Get_Subunit_Parent_Body (Cont, Spec_Unit);
end loop;
Spec_Unit := Get_Declaration (Cont, Spec_Unit);
-- We can not get Nil or nonexistent unit here
if not In_Unit_Id_List (Spec_Unit, Result_List) then
Add_Needed_By_Spec (Spec_Unit);
end if;
end if;
-- Now process body's supporters:
Next_Support_Elmt :=
First_Elmt (Unit_Table.Table (Body_Unit).Supporters);
while Present (Next_Support_Elmt) loop
Next_Support_Unit := Unit (Next_Support_Elmt);
if not In_Unit_Id_List (Next_Support_Unit, Result_List) then
Set_One_Unit (Next_Support_Unit);
end if;
Next_Support_Elmt := Next_Elmt (Next_Support_Elmt);
end loop;
-- And, finally, subunits:
for J in Subunit_List'Range loop
if Kind (Cont, Subunit_List (J)) = A_Nonexistent_Body then
Append_Unit_To_List (Subunit_List (J), Missed_List);
elsif not In_Unit_Id_List (Subunit_List (J), Result_List) then
Append_Unit_To_List (Subunit_List (J), Result_List);
Add_Needed_By_Body (Subunit_List (J));
end if;
end loop;
end Add_Needed_By_Body;
------------------------
-- Add_Needed_By_Spec --
------------------------
procedure Add_Needed_By_Spec (Spec_Unit : Unit_Id) is
Next_Support_Elmt : Elmt_Id;
Next_Support_Unit : Unit_Id;
begin
Next_Support_Elmt :=
First_Elmt (Unit_Table.Table (Spec_Unit).Supporters);
while Present (Next_Support_Elmt) loop
Next_Support_Unit := Unit (Next_Support_Elmt);
if not In_Unit_Id_List (Next_Support_Unit, Result_List) then
Set_One_Unit (Next_Support_Unit);
end if;
Next_Support_Elmt := Next_Elmt (Next_Support_Elmt);
end loop;
end Add_Needed_By_Spec;
------------------
-- Set_One_Unit --
------------------
procedure Set_One_Unit (U : Unit_Id) is
U_Body : Unit_Id;
begin
Append_Unit_To_List (U, Result_List);
case Class (Cont, U) is
when A_Public_Declaration |
A_Private_Declaration =>
Add_Needed_By_Spec (U);
if Is_Body_Required (Cont, U) then
U_Body := Get_Body (Cont, U);
if No (U_Body) and then
(Cont_Tree_Mode = On_The_Fly
or else
Cont_Tree_Mode = Mixed)
then
-- Is it a correct thing to compile something on the fly
-- Inside the query from Relations???
U_Body := Get_One_Unit
(Name => To_Program_Text
(Unit_Name (Get_Comp_Unit (U, Cont))),
Context => Cont,
Spec => False);
end if;
if Present (U_Body) then
if Kind (Cont, U_Body) in A_Nonexistent_Declaration ..
A_Nonexistent_Body
then
Add_To_Unit_Id_List (U_Body, Missed_List);
elsif not In_Unit_Id_List (U_Body, Result_List) then
Append_Unit_To_List (U_Body, Result_List);
Add_Needed_By_Body (U_Body);
end if;
else
U_Body := Get_Nonexistent_Unit (Cont);
Append_Unit_To_List (U_Body, Missed_List);
end if;
end if;
when Not_A_Class =>
-- This should never happen, so just in case we
-- raise an exception
null;
pragma Assert (False);
when others =>
Add_Needed_By_Body (U);
end case;
end Set_One_Unit;
begin -- Set_All_Needed_Units
CU_To_Unit_Id_List (Compilation_Units, Arg_List, Arg_List_Len);
-- Standard is a supporter of any unit, and if we are here,
-- Compilation_Units can not be Nil_Compilation_Unit_List. So we set
-- it as the first element of the result list:
Append_Unit_To_List (Standard_Id, Result_List);
for J in 1 .. Arg_List_Len loop
if not In_Unit_Id_List (Arg_List (J), Result_List) then
Set_One_Unit (Arg_List (J));
end if;
end loop;
-- Result_List can not be null - it contains at least Standard_Id
Reorder_Sem_Dependencies (Result_List);
Result := new Compilation_Unit_List'
(Get_Comp_Unit_List (Result_List.all, Cont));
Free (Result_List);
if Missed_List /= null then
Missed := new Compilation_Unit_List'
(Get_Comp_Unit_List (Missed_List.all, Cont));
Free (Missed_List);
else
Missed := new Compilation_Unit_List (1 .. 0);
end if;
end Set_All_Needed_Units;
------------------
-- Set_Subunits --
------------------
procedure Set_Subunits (C : Context_Id; U : Unit_Id; Top : Node_Id) is
Body_Node : Node_Id;
Stub_Node : Node_Id;
begin
Get_Name_String (U, Norm_Ada_Name);
Body_Node := Unit (Top);
if Nkind (Body_Node) = N_Subunit then
Body_Node := Proper_Body (Body_Node);
end if;
Stub_Node := Get_First_Stub (Body_Node);
if No (Stub_Node) then
return;
end if;
while Present (Stub_Node) loop
Process_Stub (C, U, Stub_Node);
Stub_Node := Get_Next_Stub (Stub_Node);
end loop;
Unit_Table.Table (U).Subunits_Computed := True;
end Set_Subunits;
--------------------
-- Set_Supporters --
--------------------
procedure Set_Supporters (C : Context_Id; U : Unit_Id; Top : Node_Id) is
begin
Set_Withed_Units (C, U, Top);
Set_Direct_Dependents (U);
end Set_Supporters;
----------------------
-- Set_Withed_Units --
----------------------
procedure Set_Withed_Units (C : Context_Id; U : Unit_Id; Top : Node_Id)
is
With_Clause_Node : Node_Id;
Cunit_Node : Node_Id;
Cunit_Number : Unit_Number_Type;
Current_Supporter : Unit_Id;
Tmp : Unit_Id;
Include_Unit : Boolean := False;
begin
-- the maim control structure - cycle through the with clauses
-- in the tree
if No (Context_Items (Top)) then
return;
end if;
With_Clause_Node := First_Non_Pragma (Context_Items (Top));
while Present (With_Clause_Node) loop
-- here we simply get the name of the next supporting unit from
-- the GNAT Units Table (defined in Lib)
Cunit_Node := Library_Unit (With_Clause_Node);
Cunit_Number := Get_Cunit_Unit_Number (Cunit_Node);
Get_Decoded_Name_String (Unit_Name (Cunit_Number));
Set_Norm_Ada_Name_String_With_Check (Cunit_Number, Include_Unit);
if Include_Unit then
Current_Supporter := Name_Find (C);
if A_Name_Buffer (A_Name_Len) = 'b' then
A_Name_Buffer (A_Name_Len) := 's';
Tmp := Name_Find (C);
if Present (Tmp) then
-- OPEN PROBLEM: is this the best solution for this problem?
--
-- Here we are in the potentially hard-to-report-about and
-- definitely involving inconsistent unit set situation.
-- The last version of U depends on subprogram body at least
-- in one of the consistent trees, but the Context contains
-- a spec (that is, a library_unit_declaration or a
-- library_unit_renaming_declaration) for the same full
-- expanded Ada name. The current working decision is
-- to set this dependency as if U depends on the spec.
--
-- Another (crazy!) problem: in one consistent tree
-- U depends on the package P (and P does not require a
-- body), and in another consistent tree U depends on
-- the procedure P which is presented by its body only.
-- It may be quite possible, if these trees were created
-- with different search paths. Is our decision reasonable
-- for this crazy situation :-[ ??!!??
Current_Supporter := Tmp;
end if;
end if;
-- and now we store this dependency - we have to use
-- Add_To_Elmt_List instead of Append_Elmt - some units
-- may be mentioned several times in the context clause:
if Implicit_With (With_Clause_Node) then
Add_To_Elmt_List
(Unit => Current_Supporter,
List => Unit_Table.Table (U).Implicit_Supporters);
else
Add_To_Elmt_List
(Unit => Current_Supporter,
List => Unit_Table.Table (U).Direct_Supporters);
end if;
end if;
With_Clause_Node := Next_Non_Pragma (With_Clause_Node);
while Present (With_Clause_Node) and then
Nkind (With_Clause_Node) /= N_With_Clause
loop
With_Clause_Node := Next_Non_Pragma (With_Clause_Node);
end loop;
end loop;
end Set_Withed_Units;
-------------------------------------------------------
-- Dynamic Unit_Id list abstraction (implementation) --
-------------------------------------------------------
----------------------
-- In_Unit_Id_List --
----------------------
function In_Unit_Id_List
(U : Unit_Id;
L : Unit_Id_List_Access)
return Boolean
is
begin
if L /= null then
for I in L'Range loop
if U = L (I) then
return True;
end if;
end loop;
end if;
return False;
end In_Unit_Id_List;
--------------------------
-- Add_To_Unit_Id_List --
--------------------------
procedure Add_To_Unit_Id_List
(U : Unit_Id;
L : in out Unit_Id_List_Access)
is
begin
if not In_Unit_Id_List (U, L) then
Append_Unit_To_List (U, L);
end if;
end Add_To_Unit_Id_List;
-------------------------
-- Append_Unit_To_List --
-------------------------
procedure Append_Unit_To_List
(U : Unit_Id;
L : in out Unit_Id_List_Access)
is
begin
if L = null then
L := new Unit_Id_List'(1 => U);
else
Free (Tmp_Unit_Id_List_Access);
Tmp_Unit_Id_List_Access := new Unit_Id_List'(L.all & U);
Free (L);
L := new Unit_Id_List'(Tmp_Unit_Id_List_Access.all);
end if;
end Append_Unit_To_List;
end A4G.Contt.Dp;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- ADA.STRINGS.WIDE_UNBOUNDED.WIDE_TEXT_IO --
-- --
-- B o d y --
-- --
-- Copyright (C) 1997-2005, 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 Ada.Wide_Text_IO; use Ada.Wide_Text_IO;
package body Ada.Strings.Wide_Unbounded.Wide_Text_IO is
--------------
-- Get_Line --
--------------
function Get_Line return Unbounded_Wide_String is
Buffer : Wide_String (1 .. 1000);
Last : Natural;
Str1 : Wide_String_Access;
Str2 : Wide_String_Access;
Result : Unbounded_Wide_String;
begin
Get_Line (Buffer, Last);
Str1 := new Wide_String'(Buffer (1 .. Last));
while Last = Buffer'Last loop
Get_Line (Buffer, Last);
Str2 := new Wide_String'(Str1.all & Buffer (1 .. Last));
Free (Str1);
Str1 := Str2;
end loop;
Result.Reference := Str1;
Result.Last := Str1'Length;
return Result;
end Get_Line;
function Get_Line
(File : Ada.Wide_Text_IO.File_Type) return Unbounded_Wide_String
is
Buffer : Wide_String (1 .. 1000);
Last : Natural;
Str1 : Wide_String_Access;
Str2 : Wide_String_Access;
Result : Unbounded_Wide_String;
begin
Get_Line (File, Buffer, Last);
Str1 := new Wide_String'(Buffer (1 .. Last));
while Last = Buffer'Last loop
Get_Line (File, Buffer, Last);
Str2 := new Wide_String'(Str1.all & Buffer (1 .. Last));
Free (Str1);
Str1 := Str2;
end loop;
Result.Reference := Str1;
Result.Last := Str1'Length;
return Result;
end Get_Line;
procedure Get_Line (Item : out Unbounded_Wide_String) is
begin
Get_Line (Current_Input, Item);
end Get_Line;
procedure Get_Line
(File : Ada.Wide_Text_IO.File_Type;
Item : out Unbounded_Wide_String)
is
begin
-- We are going to read into the string that is already there and
-- allocated. Hopefully it is big enough now, if not, we will extend
-- it in the usual manner using Realloc_For_Chunk.
-- Make sure we start with at least 80 characters
if Item.Reference'Last < 80 then
Realloc_For_Chunk (Item, 80);
end if;
-- Loop to read data, filling current string as far as possible.
-- Item.Last holds the number of characters read so far.
Item.Last := 0;
loop
Get_Line
(File,
Item.Reference (Item.Last + 1 .. Item.Reference'Last),
Item.Last);
-- If we hit the end of the line before the end of the buffer, then
-- we are all done, and the result length is properly set.
if Item.Last < Item.Reference'Last then
return;
end if;
-- If not enough room, double it and keep reading
Realloc_For_Chunk (Item, Item.Last);
end loop;
end Get_Line;
---------
-- Put --
---------
procedure Put (U : Unbounded_Wide_String) is
begin
Put (U.Reference (1 .. U.Last));
end Put;
procedure Put (File : File_Type; U : Unbounded_Wide_String) is
begin
Put (File, U.Reference (1 .. U.Last));
end Put;
--------------
-- Put_Line --
--------------
procedure Put_Line (U : Unbounded_Wide_String) is
begin
Put_Line (U.Reference (1 .. U.Last));
end Put_Line;
procedure Put_Line (File : File_Type; U : Unbounded_Wide_String) is
begin
Put_Line (File, U.Reference (1 .. U.Last));
end Put_Line;
end Ada.Strings.Wide_Unbounded.Wide_Text_IO;
|
-----------------------------------------------------------------------
-- openapi-testsuite - Swagger Test suite
-- 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 Util.Tests;
package OpenAPI.Testsuite is
function Suite return Util.Tests.Access_Test_Suite;
end OpenAPI.Testsuite;
|
package body openGL.Screen
is
-- function Thin (Self : in Item) return xcb.xcb_screen_t.Pointer
-- is
-- begin
-- return Self.Thin;
-- end Thin;
-- procedure Thin_is (Self : in out Item; Now : in xcb.xcb_screen_t.Pointer)
-- is
-- begin
-- Self.Thin := Now;
-- end Thin_is;
procedure dummy is begin null; end dummy;
end openGL.Screen;
|
-- Copyright (c) 2021 Bartek thindil Jasicki <thindil@laeran.pl>
--
-- 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; use Ada.Strings.Unbounded;
package body Tk.Labelframe is
function Create
(Path_Name: Tk_Path_String; Options: Label_Frame_Create_Options;
Interpreter: Tcl_Interpreter := Get_Interpreter) return Tk_Label_Frame is
Options_String: Unbounded_String := Null_Unbounded_String;
begin
Option_Image
(Name => "background", Value => Options.Background,
Options_String => Options_String);
Option_Image
(Name => "borderwidth", Value => Options.Border_Width,
Options_String => Options_String);
Option_Image
(Name => "class", Value => Options.Class,
Options_String => Options_String);
Option_Image
(Name => "colormap", Value => Options.Color_Map,
Options_String => Options_String);
Option_Image
(Name => "container", Value => Options.Container,
Options_String => Options_String);
Option_Image
(Name => "cursor", Value => Options.Cursor,
Options_String => Options_String);
Option_Image
(Name => "height", Value => Options.Height,
Options_String => Options_String);
Option_Image
(Name => "highlightbackground", Value => Options.Highlight_Background,
Options_String => Options_String);
Option_Image
(Name => "highlightcolot", Value => Options.Highlight_Color,
Options_String => Options_String);
Option_Image
(Name => "highlighthickness", Value => Options.Highlight_Thickness,
Options_String => Options_String);
Option_Image
(Name => "labelwidget", Value => Options.Label_Widget,
Options_String => Options_String);
Option_Image
(Name => "padx", Value => Options.Pad_X,
Options_String => Options_String);
Option_Image
(Name => "pady", Value => Options.Pad_Y,
Options_String => Options_String);
Option_Image
(Name => "relief", Value => Options.Relief,
Options_String => Options_String);
Option_Image
(Name => "takefocus", Value => Options.Take_Focus,
Options_String => Options_String);
Option_Image
(Name => "text", Value => Options.Text,
Options_String => Options_String);
Option_Image
(Name => "visual", Value => Options.Visual,
Options_String => Options_String);
Option_Image
(Name => "width", Value => Options.Width,
Options_String => Options_String);
Option_Image
(Name => "labelanchor", Value => Options.Label_Anchor,
Options_String => Options_String);
Tcl_Eval
(Tcl_Script =>
"labelframe " & Path_Name & " " &
To_String(Source => Options_String),
Interpreter => Interpreter);
return Get_Widget(Path_Name => Path_Name, Interpreter => Interpreter);
end Create;
procedure Create
(Frame_Widget: out Tk_Label_Frame; Path_Name: Tk_Path_String;
Options: Label_Frame_Create_Options;
Interpreter: Tcl_Interpreter := Get_Interpreter) is
begin
Frame_Widget :=
Create
(Path_Name => Path_Name, Options => Options,
Interpreter => Interpreter);
end Create;
function Get_Options
(Frame_Widget: Tk_Label_Frame) return Label_Frame_Create_Options is
begin
return
Options: Label_Frame_Create_Options :=
Label_Frame_Create_Options'
(Class => Null_Tcl_String, Color_Map => Null_Tcl_String,
Container => NONE, Visual => Null_Tcl_String, others => <>)
do
Options.Background :=
Option_Value(Widgt => Frame_Widget, Name => "background");
Options.Border_Width :=
Option_Value(Widgt => Frame_Widget, Name => "borderwidth");
Options.Class := Option_Value(Widgt => Frame_Widget, Name => "class");
Options.Color_Map :=
Option_Value(Widgt => Frame_Widget, Name => "colormap");
Options.Container :=
Option_Value(Widgt => Frame_Widget, Name => "container");
Options.Cursor :=
Option_Value(Widgt => Frame_Widget, Name => "cursor");
Options.Height :=
Option_Value(Widgt => Frame_Widget, Name => "height");
Options.Highlight_Background :=
Option_Value(Widgt => Frame_Widget, Name => "highlightbackground");
Options.Highlight_Color :=
Option_Value(Widgt => Frame_Widget, Name => "highlightcolor");
Options.Highlight_Thickness :=
Option_Value(Widgt => Frame_Widget, Name => "highlightthickness");
Options.Label_Anchor :=
Option_Value(Widgt => Frame_Widget, Name => "labelanchor");
Options.Label_Widget :=
Option_Value(Widgt => Frame_Widget, Name => "labelwidget");
Options.Pad_X := Option_Value(Widgt => Frame_Widget, Name => "padx");
Options.Pad_Y := Option_Value(Widgt => Frame_Widget, Name => "pady");
Options.Relief :=
Option_Value(Widgt => Frame_Widget, Name => "relief");
Options.Take_Focus :=
Option_Value(Widgt => Frame_Widget, Name => "takefocus");
Options.Text := Option_Value(Widgt => Frame_Widget, Name => "text");
Options.Visual :=
Option_Value(Widgt => Frame_Widget, Name => "visual");
Options.Width := Option_Value(Widgt => Frame_Widget, Name => "width");
end return;
end Get_Options;
overriding procedure Configure
(Frame_Widget: Tk_Label_Frame; Options: Label_Frame_Options) is
Options_String: Unbounded_String := Null_Unbounded_String;
begin
Option_Image
(Name => "background", Value => Options.Background,
Options_String => Options_String);
Option_Image
(Name => "borderwidth", Value => Options.Border_Width,
Options_String => Options_String);
Option_Image
(Name => "cursor", Value => Options.Cursor,
Options_String => Options_String);
Option_Image
(Name => "height", Value => Options.Height,
Options_String => Options_String);
Option_Image
(Name => "highlightbackground", Value => Options.Highlight_Background,
Options_String => Options_String);
Option_Image
(Name => "highlightcolot", Value => Options.Highlight_Color,
Options_String => Options_String);
Option_Image
(Name => "highlighthickness", Value => Options.Highlight_Thickness,
Options_String => Options_String);
Option_Image
(Name => "labelwidget", Value => Options.Label_Widget,
Options_String => Options_String);
Option_Image
(Name => "padx", Value => Options.Pad_X,
Options_String => Options_String);
Option_Image
(Name => "pady", Value => Options.Pad_Y,
Options_String => Options_String);
Option_Image
(Name => "relief", Value => Options.Relief,
Options_String => Options_String);
Option_Image
(Name => "takefocus", Value => Options.Take_Focus,
Options_String => Options_String);
Option_Image
(Name => "text", Value => Options.Text,
Options_String => Options_String);
Option_Image
(Name => "width", Value => Options.Width,
Options_String => Options_String);
Option_Image
(Name => "labelanchor", Value => Options.Label_Anchor,
Options_String => Options_String);
Execute_Widget_Command
(Widgt => Frame_Widget, Command_Name => "configure",
Options => To_String(Source => Options_String));
end Configure;
end Tk.Labelframe;
|
#############################################################################
##
#W id8.ada GAP library of id's Hans Ulrich Besche
##
ID_GROUP_TREE.next[8].next[1].next[105]:=
rec(
fp:= [ 4304, 6104, 6704, 7004, 7304, 7604, 7904, 8204, 8504, 8804, 9104,
9404, 9704, 10004, 12704, 13904, 14504, 16304, 17504, 19304, 19604, 19904,
20204, 22304, 23804, 24104, 24404, 24704, 25004, 25304, 27104, 27404, 27704,
28904, 29204, 30104, 30404, 30704, 31004, 31304, 31604, 32204, 32504, 32804,
33104, 33404, 33704, 34304, 34604, 34904, 35204, 35804, 36104, 36404, 36704,
37004, 37304, 37904, 38204, 39104, 39404, 39704, 40004, 40304, 40604, 40904,
41504, 41804, 42104, 42404, 42704, 43304, 43604, 44204, 44504, 44804, 45104,
45404, 46604, 46904, 47204, 47504, 47804, 48404, 48704, 49004, 49304, 49604,
49904, 50204, 50504, 50804, 51104, 51704, 52004, 52304, 52604, 52904, 53204,
55304, 55904 ],
next:= [ rec(
fp:= [ 167, 466 ],
next:= [ rec(
desc:= [ 302004, 302006, 302008, 302010, 40309013 ],
fp:= [ 2, 30821 ],
next:= [ 78132, 78130 ] ), rec(
desc:= [ 302004, 302006, 302008, 302010, 40209010 ],
fp:= [ 15764, 15863, 15962 ],
next:= [ 78134, rec(
desc:= [ 309014, 309016, 40912012 ],
fp:= [ 5522, 5621 ],
next:= [ 78131, 78129 ] ), 78128 ] ) ] ), rec(
fp:= [ 118 ],
next:= [ rec(
desc:= [ 108003 ],
fp:= [ 2, 12 ],
next:= [ 87266, 87270 ] ) ] ), rec(
fp:= [ 148 ],
next:= [ rec(
desc:= [ 119015 ],
fp:= [ 8, 18 ],
next:= [ 90520, 90519 ] ) ] ), rec(
fp:= [ 165, 1019 ],
next:= [ rec(
fp:= [ 3450, 33365, 66724 ],
level:= 5,
next:= [ 92939, 92943, 92938 ] ), rec(
desc:= [ 108003 ],
fp:= [ 4, 14 ],
next:= [ 92946, 92944 ] ) ] ), rec(
fp:= [ 166, 168, 173 ],
next:= [ rec(
desc:= [ 106003, 108003, 302008, 208002 ],
fp:= [ 14, 212 ],
next:= [ 96519, 96521 ] ), rec(
desc:= [ 106003, 302004, 302006, 208002 ],
fp:= [ 14, 212 ],
next:= [ 96523, 96525 ] ), rec(
desc:= [ 107003 ],
fp:= [ 12, 418, 814 ],
next:= [ 96522, 96516, rec(
desc:= [ 302006, 302011, 108003, 208003 ],
fp:= [ 8, 414 ],
next:= [ 96526, 96524 ] ) ] ) ] ), rec(
fp:= [ 166, 168, 169, 171 ],
next:= [ rec(
desc:= [ 302007 ],
fp:= [ 1584, 69500 ],
next:= [ 100158, 100157 ] ), rec(
desc:= [ 302005 ],
fp:= [ 1165, 26960 ],
next:= [ rec(
desc:= [ 107003 ],
fp:= [ 14, 212 ],
next:= [ 100153, 100152 ] ), rec(
desc:= [ 108003 ],
fp:= [ 14, 212 ],
next:= [ 100154, 100151 ] ) ] ), rec(
desc:= [ 108003 ],
fp:= [ 216, 414 ],
next:= [ rec(
desc:= [ 302005, 209002 ],
fp:= [ 2, 12 ],
next:= [ 100155, 100161 ] ), 100160 ] ), rec(
desc:= [ 302005 ],
fp:= [ 1363, 46760 ],
next:= [ 100162, 100156 ] ) ] ), rec(
fp:= [ 171 ],
next:= [ rec(
desc:= [ 107003 ],
fp:= [ 18, 216, 414 ],
next:= [ 103453, 103444, 103448 ] ) ] ), rec(
fp:= [ 167 ],
next:= [ rec(
desc:= [ 107003 ],
fp:= [ 8, 414 ],
next:= [ 106903, 106901 ] ) ] ), rec(
fp:= [ 165, 168, 171, 174 ],
next:= [ rec(
desc:= [ 106003 ],
fp:= [ 214, 412 ],
next:= [ 110943, 110935 ] ), rec(
desc:= [ 106003 ],
fp:= [ 16, 412 ],
next:= [ 110940, 110942 ] ), rec(
desc:= [ 106003 ],
fp:= [ 218, 416, 614 ],
next:= [ 110945, 110937, 110941 ] ), rec(
desc:= [ 106003 ],
fp:= [ 416, 614 ],
next:= [ 110946, rec(
desc:= [ 302006 ],
fp:= [ 1363, 46760 ],
next:= [ 110936, 110938 ] ) ] ) ] ), rec(
fp:= [ 168, 173, 174, 175 ],
next:= [ rec(
desc:= [ 110011 ],
fp:= [ 16, 818, 1214 ],
next:= [ rec(
desc:= [ 302007, 106003, 108003, 206002, 302007, 210002, 302011,
302013, 215002, 40309015 ],
fp:= [ 1, 7681 ],
next:= [ 115224, 115216 ] ), 115221, 115214 ] ), rec(
desc:= [ 302006 ],
fp:= [ 1584, 69500 ],
next:= [ 115218, rec(
desc:= [ 302007, 108003, 110003, 303009, 211003, 303012, 214003,
40710014 ],
fp:= [ 2, 2661 ],
next:= [ 115217, 115225 ] ) ] ), rec(
desc:= [ 302005 ],
fp:= [ 1165, 26960 ],
next:= [ rec(
desc:= [ 106003 ],
fp:= [ 218, 614 ],
next:= [ 115226, 115222 ] ), 115219 ] ), rec(
desc:= [ 105003 ],
fp:= [ 218, 614 ],
next:= [ 115227, 115215 ] ) ] ), rec(
fp:= [ 168, 174, 177 ],
next:= [ rec(
desc:= [ 302004 ],
fp:= [ 1264, 36860 ],
next:= [ 119380, 119386 ] ), rec(
desc:= [ 105003 ],
fp:= [ 20, 416, 614 ],
next:= [ 119379, 119383, 119381 ] ), rec(
desc:= [ 105003 ],
fp:= [ 416, 614 ],
next:= [ 119382, 119385 ] ) ] ), rec(
fp:= [ 165, 171, 172, 173, 174 ],
next:= [ rec(
desc:= [ 106003 ],
fp:= [ 8, 612 ],
next:= [ 123495, 123503 ] ), rec(
desc:= [ 105003 ],
fp:= [ 616, 814 ],
next:= [ 123507, 123497 ] ), rec(
desc:= [ 105003 ],
fp:= [ 814, 1012 ],
next:= [ 123499, 123505 ] ), rec(
desc:= [ 106003 ],
fp:= [ 616, 814 ],
next:= [ 123506, 123496 ] ), rec(
desc:= [ 106003 ],
fp:= [ 616, 814, 1012 ],
next:= [ 123502, 123500, 123504 ] ) ] ), rec(
fp:= [ 174, 175, 176 ],
next:= [ rec(
desc:= [ 105003 ],
fp:= [ 220, 616, 814 ],
next:= [ 127541, 127532, 127540 ] ), rec(
desc:= [ 302007, 206002 ],
fp:= [ 4, 14 ],
next:= [ 127534, 127530 ] ), rec(
desc:= [ 105003 ],
fp:= [ 418, 616, 814 ],
next:= [ 127538, 127543, 127535 ] ) ] ), rec(
fp:= [ 171, 172, 173, 174, 175 ],
next:= [ rec(
desc:= [ 106003 ],
fp:= [ 614, 812 ],
next:= [ rec(
desc:= [ 302012, 208003 ],
fp:= [ 16, 214 ],
next:= [ 131594, 131605 ] ), rec(
desc:= [ 302006, 210002 ],
fp:= [ 18, 414 ],
next:= [ 131606, 131598 ] ) ] ), rec(
desc:= [ 106003 ],
fp:= [ 10, 614 ],
next:= [ 131602, 131597 ] ), rec(
desc:= [ 302006, 302010, 112003, 211003, 303012, 214003 ],
fp:= [ 414, 612 ],
next:= [ 131600, 131608 ] ), rec(
desc:= [ 106003 ],
fp:= [ 616, 1012 ],
next:= [ 131596, 131607 ] ), rec(
desc:= [ 108003, 302005, 209002 ],
fp:= [ 16, 214 ],
next:= [ 131604, 131599 ] ) ] ), rec(
fp:= [ 452, 1960 ],
next:= [ rec(
desc:= [ 302009 ],
fp:= [ 49161, 59541 ],
next:= [ rec(
desc:= [ 113003 ],
fp:= [ 4, 14 ],
next:= [ 158437, 158427 ] ), 158425 ] ), rec(
desc:= [ 113003 ],
fp:= [ 4, 14 ],
next:= [ 158432, 158434 ] ) ] ), rec(
fp:= [ 1631 ],
next:= [ rec(
fp:= [ 66360, 99217 ],
level:= 5,
next:= [ 170849, 170850 ] ) ] ), rec(
fp:= [ 610 ],
next:= [ rec(
desc:= [ 111007 ],
fp:= [ 4, 14 ],
next:= [ 175994, 176002 ] ) ] ), rec(
fp:= [ 655 ],
next:= [ rec(
fp:= [ 44094, 76042 ],
level:= 5,
next:= [ 195675, 195671 ] ) ] ), rec(
fp:= [ 787 ],
next:= [ rec(
desc:= [ 115003 ],
fp:= [ 4, 14 ],
next:= [ 208416, 208406 ] ) ] ), rec(
fp:= [ 657 ],
next:= [ rec(
desc:= [ 114007 ],
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|
------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- S Y S T E M . R I D E N T --
-- --
-- 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 defines the set of restriction identifiers. It is a generic
-- package that is instantiated by the compiler/binder in package Rident, and
-- is instantiated in package System.Restrictions for use at run-time.
-- The reason that we make this a generic package is so that in the case of
-- the instantiation in Rident for use at compile time and bind time, we can
-- generate normal image tables for the enumeration types, which are needed
-- for diagnostic and informational messages. At run-time we really do not
-- want to waste the space for these image tables, and they are not needed,
-- so we can do the instantiation under control of Discard_Names to remove
-- the tables.
---------------------------------------------------
-- Note On Compile/Run-Time Consistency Checking --
---------------------------------------------------
-- This unit is with'ed by the run-time (to make System.Restrictions which is
-- used for run-time access to restriction information), by the compiler (to
-- determine what restrictions are implemented and what their category is) and
-- by the binder (in processing ali files, and generating the information used
-- at run-time to access restriction information).
-- Normally the version of System.Rident referenced in all three contexts
-- should be the same. However, problems could arise in certain inconsistent
-- builds that used inconsistent versions of the compiler and run-time. This
-- sort of thing is not strictly correct, but it does arise when short-cuts
-- are taken in build procedures.
-- Previously, this kind of inconsistency could cause a significant problem.
-- If versions of System.Rident accessed by the compiler and binder differed,
-- then the binder could fail to recognize the R (restrictions line) in the
-- ali file, leading to bind errors when restrictions were added or removed.
-- The latest implementation avoids both this problem by using a named
-- scheme for recording restrictions, rather than a positional scheme which
-- fails completely if restrictions are added or subtracted. Now the worst
-- that happens at bind time in inconsistent builds is that unrecognized
-- restrictions are ignored, and the consistency checking for restrictions
-- might be incomplete, which is no big deal.
pragma Compiler_Unit_Warning;
generic
package System.Rident is
pragma Preelaborate;
-- The following enumeration type defines the set of restriction
-- identifiers that are implemented in GNAT.
-- To add a new restriction identifier, add an entry with the name to be
-- used in the pragma, and add calls to the Restrict.Check_Restriction
-- routine as appropriate.
type Restriction_Id is
-- The following cases are checked for consistency in the binder. The
-- binder will check that every unit either has the restriction set, or
-- does not violate the restriction.
(Simple_Barriers, -- Ada 2012 (D.7 (10.9/3))
Pure_Barriers, -- GNAT
No_Abort_Statements, -- (RM D.7(5), H.4(3))
No_Access_Parameter_Allocators, -- Ada 2012 (RM H.4 (8.3/3))
No_Access_Subprograms, -- (RM H.4(17))
No_Allocators, -- (RM H.4(7))
No_Anonymous_Allocators, -- Ada 2012 (RM H.4(8/1))
No_Asynchronous_Control, -- (RM J.13(3/2)
No_Calendar, -- GNAT
No_Coextensions, -- Ada 2012 (RM H.4(8.2/3))
No_Default_Stream_Attributes, -- Ada 2012 (RM 13.12.1(4/2))
No_Delay, -- (RM H.4(21))
No_Direct_Boolean_Operators, -- GNAT
No_Dispatch, -- (RM H.4(19))
No_Dispatching_Calls, -- GNAT
No_Dynamic_Attachment, -- Ada 2012 (RM E.7(10/3))
No_Dynamic_Priorities, -- (RM D.9(9))
No_Enumeration_Maps, -- GNAT
No_Entry_Calls_In_Elaboration_Code, -- GNAT
No_Entry_Queue, -- GNAT (Ravenscar)
No_Exception_Handlers, -- GNAT
No_Exception_Propagation, -- GNAT
No_Exception_Registration, -- GNAT
No_Exceptions, -- (RM H.4(12))
No_Finalization, -- GNAT
No_Fixed_IO, -- GNAT
No_Fixed_Point, -- (RM H.4(15))
No_Floating_Point, -- (RM H.4(14))
No_IO, -- (RM H.4(20))
No_Implicit_Conditionals, -- GNAT
No_Implicit_Dynamic_Code, -- GNAT
No_Implicit_Heap_Allocations, -- (RM D.8(8), H.4(3))
No_Implicit_Task_Allocations, -- GNAT
No_Implicit_Protected_Object_Allocations, -- GNAT
No_Initialize_Scalars, -- GNAT
No_Local_Allocators, -- (RM H.4(8))
No_Local_Timing_Events, -- (RM D.7(10.2/2))
No_Local_Protected_Objects, -- Ada 2012 (D.7(10/1.3))
No_Long_Long_Integers, -- GNAT
No_Multiple_Elaboration, -- GNAT
No_Nested_Finalization, -- (RM D.7(4))
No_Protected_Type_Allocators, -- Ada 2012 (D.7 (10.3/2))
No_Protected_Types, -- (RM H.4(5))
No_Recursion, -- (RM H.4(22))
No_Reentrancy, -- (RM H.4(23))
No_Relative_Delay, -- Ada 2012 (D.7 (10.5/3))
No_Requeue_Statements, -- Ada 2012 (D.7 (10.6/3))
No_Secondary_Stack, -- GNAT
No_Select_Statements, -- Ada 2012 (D.7 (10.7/4))
No_Specific_Termination_Handlers, -- (RM D.7(10.7/2))
No_Standard_Allocators_After_Elaboration, -- Ada 2012 (RM D.7(19.1/2))
No_Standard_Storage_Pools, -- GNAT
No_Stream_Optimizations, -- GNAT
No_Streams, -- GNAT
No_Task_Allocators, -- (RM D.7(7))
No_Task_Attributes_Package, -- GNAT
No_Task_At_Interrupt_Priority, -- GNAT
No_Task_Hierarchy, -- (RM D.7(3), H.4(3))
No_Task_Termination, -- GNAT (Ravenscar)
No_Tasking, -- GNAT
No_Terminate_Alternatives, -- (RM D.7(6))
No_Unchecked_Access, -- (RM H.4(18))
No_Unchecked_Conversion, -- (RM J.13(4/2))
No_Unchecked_Deallocation, -- (RM J.13(5/2))
Static_Priorities, -- GNAT
Static_Storage_Size, -- GNAT
-- The following require consistency checking with special rules. See
-- individual routines in unit Bcheck for details of what is required.
No_Default_Initialization, -- GNAT
-- The following cases do not require consistency checking and if used
-- as a configuration pragma within a specific unit, apply only to that
-- unit (e.g. if used in the package spec, do not apply to the body)
-- Note: No_Elaboration_Code is handled specially. Like the other
-- non-partition-wide restrictions, it can only be set in a unit that
-- is part of the extended main source unit (body/spec/subunits). But
-- it is sticky, in that if it is found anywhere within any of these
-- units, it applies to all units in this extended main source.
Immediate_Reclamation, -- (RM H.4(10))
No_Dynamic_Sized_Objects, -- GNAT
No_Implementation_Aspect_Specifications, -- Ada 2012 AI-241
No_Implementation_Attributes, -- Ada 2005 AI-257
No_Implementation_Identifiers, -- Ada 2012 AI-246
No_Implementation_Pragmas, -- Ada 2005 AI-257
No_Implementation_Restrictions, -- GNAT
No_Implementation_Units, -- Ada 2012 AI-242
No_Implicit_Aliasing, -- GNAT
No_Implicit_Loops, -- GNAT
No_Elaboration_Code, -- GNAT
No_Obsolescent_Features, -- Ada 2005 AI-368
No_Wide_Characters, -- GNAT
Static_Dispatch_Tables, -- GNAT
SPARK_05, -- GNAT
-- The following cases require a parameter value
No_Specification_Of_Aspect, -- 2012 (RM 13.12.1 (6.1/3))
No_Use_Of_Attribute, -- 2012 (RM 13.12.1 (6.2/3))
No_Use_Of_Pragma, -- 2012 (RM 13.12.1 (6.3/3))
-- The following entries are fully checked at compile/bind time, which
-- means that the compiler can in general tell the minimum value which
-- could be used with a restrictions pragma. The binder can deduce the
-- appropriate minimum value for the partition by taking the maximum
-- value required by any unit.
Max_Protected_Entries, -- (RM D.7(14))
Max_Select_Alternatives, -- (RM D.7(12))
Max_Task_Entries, -- (RM D.7(13), H.4(3))
-- The following entries are also fully checked at compile/bind time,
-- and the compiler can also at least in some cases tell the minimum
-- value which could be used with a restriction pragma. The difference
-- is that the contributions are additive, so the binder deduces this
-- value by adding the unit contributions.
Max_Tasks, -- (RM D.7(19), H.4(3))
-- The following entries are checked at compile time only for zero/
-- nonzero entries. This means that the compiler can tell at compile
-- time if a restriction value of zero is (would be) violated, but that
-- the compiler cannot distinguish between different non-zero values.
Max_Asynchronous_Select_Nesting, -- (RM D.7(18), H.4(3))
Max_Entry_Queue_Length, -- Ada 2012 (RM D.7 (19.1/2))
-- The remaining entries are not checked at compile/bind time
Max_Storage_At_Blocking, -- (RM D.7(17))
Not_A_Restriction_Id);
-- Synonyms permitted for historical purposes of compatibility.
-- Must be coordinated with Restrict.Process_Restriction_Synonym.
Boolean_Entry_Barriers : Restriction_Id renames Simple_Barriers;
Max_Entry_Queue_Depth : Restriction_Id renames Max_Entry_Queue_Length;
No_Dynamic_Interrupts : Restriction_Id renames No_Dynamic_Attachment;
No_Requeue : Restriction_Id renames No_Requeue_Statements;
No_Task_Attributes : Restriction_Id renames No_Task_Attributes_Package;
SPARK : Restriction_Id renames SPARK_05;
subtype All_Restrictions is Restriction_Id range
Simple_Barriers .. Max_Storage_At_Blocking;
-- All restrictions (excluding only Not_A_Restriction_Id)
subtype All_Boolean_Restrictions is Restriction_Id range
Simple_Barriers .. SPARK_05;
-- All restrictions which do not take a parameter
subtype Partition_Boolean_Restrictions is All_Boolean_Restrictions range
Simple_Barriers .. Static_Storage_Size;
-- Boolean restrictions that are checked for partition consistency.
-- Note that all parameter restrictions are checked for partition
-- consistency by default, so this distinction is only needed in the
-- case of Boolean restrictions.
subtype Cunit_Boolean_Restrictions is All_Boolean_Restrictions range
Immediate_Reclamation .. SPARK_05;
-- Boolean restrictions that are not checked for partition consistency
-- and that thus apply only to the current unit. Note that for these
-- restrictions, the compiler does not apply restrictions found in
-- with'ed units, parent specs etc. to the main unit, and vice versa.
subtype All_Parameter_Restrictions is
Restriction_Id range
No_Specification_Of_Aspect .. Max_Storage_At_Blocking;
-- All restrictions that take a parameter
subtype Integer_Parameter_Restrictions is
Restriction_Id range
Max_Protected_Entries .. Max_Storage_At_Blocking;
-- All restrictions taking an integer parameter
subtype Checked_Parameter_Restrictions is
All_Parameter_Restrictions range
Max_Protected_Entries .. Max_Entry_Queue_Length;
-- These are the parameter restrictions that can be at least partially
-- checked at compile/binder time. Minimally, the compiler can detect
-- violations of a restriction pragma with a value of zero reliably.
subtype Checked_Max_Parameter_Restrictions is
Checked_Parameter_Restrictions range
Max_Protected_Entries .. Max_Task_Entries;
-- Restrictions with parameters that can be checked in some cases by
-- maximizing among statically detected instances where the compiler
-- can determine the count.
subtype Checked_Add_Parameter_Restrictions is
Checked_Parameter_Restrictions range
Max_Tasks .. Max_Tasks;
-- Restrictions with parameters that can be checked in some cases by
-- summing the statically detected instances where the compiler can
-- determine the count.
subtype Checked_Val_Parameter_Restrictions is
Checked_Parameter_Restrictions range
Max_Protected_Entries .. Max_Tasks;
-- Restrictions with parameter where the count is known at least in some
-- cases by the compiler/binder.
subtype Checked_Zero_Parameter_Restrictions is
Checked_Parameter_Restrictions range
Max_Asynchronous_Select_Nesting .. Max_Entry_Queue_Length;
-- Restrictions with parameters where the compiler can detect the use of
-- the feature, and hence violations of a restriction specifying a value
-- of zero, but cannot detect specific values other than zero/nonzero.
subtype Unchecked_Parameter_Restrictions is
All_Parameter_Restrictions range
Max_Storage_At_Blocking .. Max_Storage_At_Blocking;
-- Restrictions with parameters where the compiler cannot ever detect
-- corresponding compile time usage, so the binder and compiler never
-- detect violations of any restriction.
-------------------------------------
-- Restriction Status Declarations --
-------------------------------------
-- The following declarations are used to record the current status or
-- restrictions (for the current unit, or related units, at compile time,
-- and for all units in a partition at bind time or run time).
type Restriction_Flags is array (All_Restrictions) of Boolean;
type Restriction_Values is array (All_Parameter_Restrictions) of Natural;
type Parameter_Flags is array (All_Parameter_Restrictions) of Boolean;
type Restrictions_Info is record
Set : Restriction_Flags;
-- An entry is True in the Set array if a restrictions pragma has been
-- encountered for the given restriction. If the value is True for a
-- parameter restriction, then the corresponding entry in the Value
-- array gives the minimum value encountered for any such restriction.
Value : Restriction_Values;
-- If the entry for a parameter restriction in Set is True (i.e. a
-- restrictions pragma for the restriction has been encountered), then
-- the corresponding entry in the Value array is the minimum value
-- specified by any such restrictions pragma. Note that a restrictions
-- pragma specifying a value greater than Int'Last is simply ignored.
Violated : Restriction_Flags;
-- An entry is True in the violations array if the compiler has detected
-- a violation of the restriction. For a parameter restriction, the
-- Count and Unknown arrays have additional information.
Count : Restriction_Values;
-- If an entry for a parameter restriction is True in Violated, the
-- corresponding entry in the Count array may record additional
-- information. If the actual minimum count is known (by taking
-- maximums, or sums, depending on the restriction), it will be
-- recorded in this array. If not, then the value will remain zero.
-- The value is also zero for a non-violated restriction.
Unknown : Parameter_Flags;
-- If an entry for a parameter restriction is True in Violated, the
-- corresponding entry in the Unknown array may record additional
-- information. If the actual count is not known by the compiler (but
-- is known to be non-zero), then the entry in Unknown will be True.
-- This indicates that the value in Count is not known to be exact,
-- and the actual violation count may be higher.
-- Note: If Violated (K) is True, then either Count (K) > 0 or
-- Unknown (K) = True. It is possible for both these to be set.
-- For example, if Count (K) = 3 and Unknown (K) is True, it means
-- that the actual violation count is at least 3 but might be higher.
end record;
No_Restrictions : constant Restrictions_Info :=
(Set => (others => False),
Value => (others => 0),
Violated => (others => False),
Count => (others => 0),
Unknown => (others => False));
-- Used to initialize Restrictions_Info variables
----------------------------------
-- Profile Definitions and Data --
----------------------------------
-- Note: to add a profile, modify the following declarations appropriately,
-- add Name_xxx to Snames, and add a branch to the conditions for pragmas
-- Profile and Profile_Warnings in the body of Sem_Prag.
type Profile_Name is
(No_Profile,
No_Implementation_Extensions,
Restricted_Tasking,
Restricted,
Ravenscar,
GNAT_Extended_Ravenscar,
GNAT_Ravenscar_EDF);
-- Names of recognized profiles. No_Profile is used to indicate that a
-- restriction came from pragma Restrictions[_Warning], as opposed to
-- pragma Profile[_Warning]. Restricted_Tasking is a non-user profile that
-- contaings the minimal set of restrictions to trigger the user of the
-- restricted tasking runtime. Restricted is the corresponding user profile
-- that also restrict protected types.
subtype Profile_Name_Actual is Profile_Name
range No_Implementation_Extensions .. Profile_Name'Last;
-- Actual used profile names
type Profile_Data is record
Set : Restriction_Flags;
-- Set to True if given restriction must be set for the profile, and
-- False if it need not be set (False does not mean that it must not be
-- set, just that it need not be set). If the flag is True for a
-- parameter restriction, then the Value array gives the maximum value
-- permitted by the profile.
Value : Restriction_Values;
-- An entry in this array is meaningful only if the corresponding flag
-- in Set is True. In that case, the value in this array is the maximum
-- value of the parameter permitted by the profile.
end record;
Profile_Info : constant array (Profile_Name_Actual) of Profile_Data := (
-- No_Implementation_Extensions profile
No_Implementation_Extensions =>
(Set =>
(No_Implementation_Aspect_Specifications => True,
No_Implementation_Attributes => True,
No_Implementation_Identifiers => True,
No_Implementation_Pragmas => True,
No_Implementation_Units => True,
others => False),
-- Value settings for Restricted profile (none
Value =>
(others => 0)),
-- Restricted_Tasking Profile
Restricted_Tasking =>
-- Restrictions for Restricted_Tasking profile
(Set =>
(No_Abort_Statements => True,
No_Asynchronous_Control => True,
No_Dynamic_Attachment => True,
No_Dynamic_Priorities => True,
No_Local_Protected_Objects => True,
No_Protected_Type_Allocators => True,
No_Requeue_Statements => True,
No_Task_Allocators => True,
No_Task_Attributes_Package => True,
No_Task_Hierarchy => True,
No_Terminate_Alternatives => True,
Max_Asynchronous_Select_Nesting => True,
Max_Select_Alternatives => True,
Max_Task_Entries => True,
others => False),
-- Value settings for Restricted_Tasking profile
Value =>
(Max_Asynchronous_Select_Nesting => 0,
Max_Select_Alternatives => 0,
Max_Task_Entries => 0,
others => 0)),
-- Restricted Profile
Restricted =>
-- Restrictions for Restricted profile
(Set =>
(No_Abort_Statements => True,
No_Asynchronous_Control => True,
No_Dynamic_Attachment => True,
No_Dynamic_Priorities => True,
No_Entry_Queue => True,
No_Local_Protected_Objects => True,
No_Protected_Type_Allocators => True,
No_Requeue_Statements => True,
No_Task_Allocators => True,
No_Task_Attributes_Package => True,
No_Task_Hierarchy => True,
No_Terminate_Alternatives => True,
Max_Asynchronous_Select_Nesting => True,
Max_Protected_Entries => True,
Max_Select_Alternatives => True,
Max_Task_Entries => True,
others => False),
-- Value settings for Restricted profile
Value =>
(Max_Asynchronous_Select_Nesting => 0,
Max_Protected_Entries => 1,
Max_Select_Alternatives => 0,
Max_Task_Entries => 0,
others => 0)),
-- Ravenscar Profile
-- Note: the table entries here only represent the
-- required restriction profile for Ravenscar. The
-- full Ravenscar profile also requires:
-- pragma Dispatching_Policy (FIFO_Within_Priorities);
-- pragma Locking_Policy (Ceiling_Locking);
-- pragma Detect_Blocking;
Ravenscar =>
-- Restrictions for Ravenscar = Restricted profile ..
(Set =>
(No_Abort_Statements => True,
No_Asynchronous_Control => True,
No_Dynamic_Attachment => True,
No_Dynamic_Priorities => True,
No_Entry_Queue => True,
No_Local_Protected_Objects => True,
No_Protected_Type_Allocators => True,
No_Requeue_Statements => True,
No_Task_Allocators => True,
No_Task_Attributes_Package => True,
No_Task_Hierarchy => True,
No_Terminate_Alternatives => True,
Max_Asynchronous_Select_Nesting => True,
Max_Protected_Entries => True,
Max_Select_Alternatives => True,
Max_Task_Entries => True,
-- plus these additional restrictions:
No_Calendar => True,
No_Implicit_Heap_Allocations => True,
No_Local_Timing_Events => True,
No_Relative_Delay => True,
No_Select_Statements => True,
No_Specific_Termination_Handlers => True,
No_Task_Termination => True,
Simple_Barriers => True,
others => False),
-- Value settings for Ravenscar (same as Restricted)
Value =>
(Max_Asynchronous_Select_Nesting => 0,
Max_Protected_Entries => 1,
Max_Select_Alternatives => 0,
Max_Task_Entries => 0,
others => 0)),
GNAT_Extended_Ravenscar =>
-- Restrictions for GNAT_Extended_Ravenscar =
-- Restricted profile ..
(Set =>
(No_Abort_Statements => True,
No_Asynchronous_Control => True,
No_Dynamic_Attachment => True,
No_Dynamic_Priorities => True,
No_Local_Protected_Objects => True,
No_Protected_Type_Allocators => True,
No_Requeue_Statements => True,
No_Task_Allocators => True,
No_Task_Attributes_Package => True,
No_Task_Hierarchy => True,
No_Terminate_Alternatives => True,
Max_Asynchronous_Select_Nesting => True,
Max_Select_Alternatives => True,
Max_Task_Entries => True,
-- plus these additional restrictions:
No_Implicit_Task_Allocations => True,
No_Implicit_Protected_Object_Allocations
=> True,
No_Local_Timing_Events => True,
No_Select_Statements => True,
No_Specific_Termination_Handlers => True,
No_Task_Termination => True,
Pure_Barriers => True,
others => False),
-- Value settings for Ravenscar (same as Restricted)
Value =>
(Max_Asynchronous_Select_Nesting => 0,
Max_Select_Alternatives => 0,
Max_Task_Entries => 0,
others => 0)),
-- GNAT_Ravenscar_EDF Profile
-- Note: the table entries here only represent the
-- required restriction profile for GNAT_Ravenscar_EDF.
-- The full GNAT_Ravenscar_EDF profile also requires:
-- pragma Dispatching_Policy (EDF_Across_Priorities);
-- pragma Locking_Policy (Ceiling_Locking);
-- pragma Detect_Blocking;
GNAT_Ravenscar_EDF =>
-- Restrictions for Ravenscar = Restricted profile ..
(Set =>
(No_Abort_Statements => True,
No_Asynchronous_Control => True,
No_Dynamic_Attachment => True,
No_Dynamic_Priorities => True,
No_Entry_Queue => True,
No_Local_Protected_Objects => True,
No_Protected_Type_Allocators => True,
No_Requeue_Statements => True,
No_Task_Allocators => True,
No_Task_Attributes_Package => True,
No_Task_Hierarchy => True,
No_Terminate_Alternatives => True,
Max_Asynchronous_Select_Nesting => True,
Max_Protected_Entries => True,
Max_Select_Alternatives => True,
Max_Task_Entries => True,
-- plus these additional restrictions:
No_Calendar => True,
No_Implicit_Heap_Allocations => True,
No_Local_Timing_Events => True,
No_Relative_Delay => True,
No_Select_Statements => True,
No_Specific_Termination_Handlers => True,
No_Task_Termination => True,
Simple_Barriers => True,
others => False),
-- Value settings for Ravenscar (same as Restricted)
Value =>
(Max_Asynchronous_Select_Nesting => 0,
Max_Protected_Entries => 1,
Max_Select_Alternatives => 0,
Max_Task_Entries => 0,
others => 0)));
end System.Rident;
|
-------------------------------------------------------------------------------
-- LSE -- L-System Editor
-- Author: Heziode
--
-- License:
-- MIT License
--
-- Copyright (c) 2018 Quentin Dauprat (Heziode) <Heziode@protonmail.com>
--
-- 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.
-------------------------------------------------------------------------------
with Ada.Containers.Indefinite_Vectors;
with Ada.Strings.Unbounded;
with LSE.Model.Grammar.Symbol_Utils;
with LSE.Model.IO.Turtle_Utils;
with LSE.Model.L_System.Error;
with LSE.Model.L_System.Growth_Rule_Utils;
with LSE.Model.L_System.L_System;
with LSE.Utils.Angle;
use Ada.Containers;
use Ada.Strings.Unbounded;
use LSE.Model.IO.Turtle_Utils;
use LSE.Model.L_System.Error;
use LSE.Model.L_System.Growth_Rule_Utils;
use LSE.Model.L_System.L_System;
use LSE.Model.Grammar.Symbol_Utils;
use LSE.Utils.Angle;
-- @description
-- This package provide a set of methods to build a L-System.
--
package LSE.Model.L_System.Concrete_Builder is
-- Builder of L-System
type Instance is tagged private;
-- Constructor
procedure Initialize (This : out Instance);
-- Build product
-- @return Return True if no error was encountered, False otherwise
function Make (This : out Instance; Item : String) return Boolean;
-- Get the finished product
-- @param Turtle Reference to the turtle
-- @return Return the finished product
function Get_Product (This : Instance;
Turtle : LSE.Model.IO.Turtle_Utils.Holder)
return L_System.Instance;
-- Get the finished product
-- @param Turtle Reference to the turtle
-- @param LS Reference to the L-System
-- @return Return the finished product
procedure Get_Product (This : Instance;
LS : out L_System.Instance;
Turtle : LSE.Model.IO.Turtle_Utils.Holder);
-- Get encountered errors
-- @return Return all errors messages
function Get_Error (This : Instance) return String;
private
package Error_Vector is new
Indefinite_Vectors (Natural, Error.Instance'Class);
use Error_Vector;
package String_Vector is new Indefinite_Vectors (Natural, String);
use String_Vector;
-- Regex to find unexpected characters
Regexp_Global : constant String := "([^\s0-9a-zA-Z-+|\[\].]+)";
-- Regex to get angle
Regexp_Angle : constant String := "^([0-9]+([.][0-9]*)?|[.][0-9]+)";
-- Regex to get axiom
Regexp_Axiom : constant String := "^([a-zA-Z-+|\[\]]+)";
-- Regex to get rule
Regexp_Rule : constant String := "^([a-zA-Z-+|\[\]]\s+[a-zA-Z-+|\[\]]+)";
type Instance is tagged record
-- Axiom
Axiom : LSE.Model.Grammar.Symbol_Utils.P_List.List;
-- Angle
Angle : LSE.Utils.Angle.Angle;
-- Growth rules
Rules : LSE.Model.L_System.Growth_Rule_Utils.P_List.List;
-- Contains all errors found
Error : Error_Vector.Vector;
end record;
-- Split string into several other.
-- @param Item String to split
-- @param Separator Separator used to split
-- @param Vec List that will contains all splitted strings
procedure Parse (Item : String;
Separator : String;
Vec : in out String_Vector.Vector);
-- Concatenate a list of string into one.
-- @param Item Unified string
-- @param Separator Separator used to concatenate
-- @param Vec List that contains all strings to concatenate
procedure Concat (Item : out Unbounded_String;
Separator : String;
Vec : in out String_Vector.Vector);
-- Check if a pattern is matched in string.
-- @param Expression Regex
-- @param Search_In String to check
-- @param First Location of first character matched
-- @param Last Location of last character matched
-- @param Found True if Expression found in Search_In, False otherwise
procedure Search_For_Pattern (Expression, Search_In : String;
First, Last : out Positive;
Found : out Boolean);
-- Get next usable character (skip blanks char, etc.).
-- @param Item String where working
-- @param Last_Index Last index of the string
-- @param First Location of first character matched to the last expression
-- @param Last Location of last character matched to the last expression
-- @return Return True if next sequence available, False otherwise
function Get_Next_Token (Item : out Unbounded_String;
Last_Index : out Positive;
First, Last : Positive)
return Boolean;
-- Make angle.
-- @param This Reference of the instance
-- @param Input String where working
-- @param First Location of first character matched
-- @param Last Location of last character matched
-- @return Return True if angle are get, False otherwise
function Make_Angle (This : out Instance;
Input : Unbounded_String;
First, Last : in out Positive)
return Boolean;
-- Make axiom.
-- @param This Reference of the instance
-- @param Input String where working
-- @param First Location of first character matched
-- @param Last Location of last character matched
-- @return Return True if axiom are get, False otherwise
function Make_Axiom (This : out Instance;
Input : out Unbounded_String;
First, Last : in out Positive)
return Boolean;
-- Make rule (at least one rule are required).
-- @param This Reference of the instance
-- @param Input String where working
-- @param First Location of first character matched
-- @param Last Location of last character matched
-- @return Return True if rule(s) are get, False otherwise
function Make_Rule (This : out Instance;
Input : out Unbounded_String;
First, Last : in out Positive)
return Boolean;
end LSE.Model.L_System.Concrete_Builder;
|
------------------------------------------------------------------------------
-- 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. --
------------------------------------------------------------------------------
with Ada.Characters.Latin_1;
with Natools.Smaz_256;
with Natools.Smaz_Original_Hash;
package Natools.Smaz_Original is
pragma Pure;
LF : constant Character := Ada.Characters.Latin_1.LF;
CR : constant Character := Ada.Characters.Latin_1.CR;
Dictionary : constant Natools.Smaz_256.Dictionary
:= (Last_Code => 253,
Values_Last => 593,
Variable_Length_Verbatim => True,
Max_Word_Length => 7,
Offsets => (2, 5, 6, 7, 8, 10, 11, 14, 15, 16, 17, 19, 20, 23, 25,
27, 29, 31, 32, 35, 37, 39, 40, 42, 43, 45, 47, 49, 50, 52, 54, 56,
59, 61, 64, 66, 68, 70, 71, 73, 76, 78, 80, 85, 86, 87, 89, 91, 95,
96, 99, 101, 103, 105, 107, 110, 112, 113, 115, 116, 117, 119, 121,
124, 127, 128, 130, 137, 140, 142, 145, 147, 150, 152, 154, 156,
159, 161, 164, 166, 168, 169, 172, 173, 175, 177, 181, 183, 185,
188, 189, 191, 193, 197, 199, 201, 203, 206, 208, 211, 216, 217,
219, 223, 225, 228, 230, 233, 235, 236, 237, 239, 242, 245, 247,
249, 252, 254, 257, 260, 262, 264, 267, 269, 272, 274, 277, 279,
283, 285, 287, 289, 292, 295, 298, 301, 303, 305, 307, 309, 312,
315, 318, 321, 323, 325, 328, 330, 333, 336, 338, 340, 342, 344,
347, 351, 354, 356, 359, 362, 365, 368, 371, 373, 375, 377, 379,
382, 385, 387, 390, 392, 395, 397, 400, 403, 406, 409, 411, 413,
415, 418, 420, 422, 425, 428, 430, 432, 435, 437, 440, 443, 445,
448, 450, 452, 454, 455, 459, 462, 464, 467, 470, 473, 474, 476,
479, 482, 484, 487, 492, 495, 497, 500, 502, 504, 507, 510, 513,
514, 516, 518, 519, 521, 523, 524, 526, 529, 531, 534, 536, 539,
541, 544, 546, 548, 550, 552, 555, 557, 559, 561, 563, 566, 569,
572, 575, 578, 581, 583, 584, 587, 590),
Values => " theetaofoandinse r th tinhethhhe to" & CR & LF & "ls d a"
& "anerc od on ofreof t , isuat n orwhichfmasitthat" & LF & "wa"
& "sen wes an i" & CR & "f gpnd snd ed wedhttp://forteingy The "
& "ctir hisst inarnt, toyng hwithlealto boubewere bseo enthang th"
& "eir""hifrom fin deionmev.veallre rirois cof tareea. her mer p"
& "es bytheydiraicnots, d tat celah neas tioon n tiowe a om, as o"
& "urlillchhadthise tg e" & CR & LF & " where coe oa us dss" & LF
& CR & LF & CR & LF & CR & "="" be es amaonet tor butelsol e ss,n"
& "oter waivhoe a rhats tnsch whtrut/havely ta ha ontha- latien p"
& "e rethereasssi fowaecourwhoitszfors>otun<imth ncate><verad wel"
& "yee nid clacil</rt widive, itwhi magexe cmen.com",
Hash => Natools.Smaz_Original_Hash.Hash'Access);
end Natools.Smaz_Original;
|
-- C36302A.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 A STRING VARIABLE MAY BE DECLARED WITH AN INDEX
-- STARTING WITH AN INTEGER GREATER THAN 1.
-- DAT 2/17/81
-- JWC 6/28/85 RENAMED TO -AB
WITH REPORT;
PROCEDURE C36302A IS
USE REPORT;
S5 : STRING (5 .. 10);
SX : STRING (INTEGER'LAST - 5 .. INTEGER'LAST);
BEGIN
TEST ("C36302A", "STRING VARIABLE INDICES NEEDN'T START AT 1");
IF S5'FIRST /= 5
OR S5'LAST /= 10
OR S5'LENGTH /= 6
OR SX'FIRST /= INTEGER'LAST - 5
OR SX'LAST /= INTEGER'LAST
OR SX'LENGTH /= 6
THEN
FAILED ("WRONG STRING ATTRIBUTES");
END IF;
RESULT;
END C36302A;
|
pragma Warnings (Off);
pragma Ada_95;
with System;
with System.Parameters;
with System.Secondary_Stack;
package ada_main is
gnat_argc : Integer;
gnat_argv : System.Address;
gnat_envp : System.Address;
pragma Import (C, gnat_argc);
pragma Import (C, gnat_argv);
pragma Import (C, gnat_envp);
gnat_exit_status : Integer;
pragma Import (C, gnat_exit_status);
GNAT_Version : constant String :=
"GNAT Version: Community 2018 (20180523-73)" & ASCII.NUL;
pragma Export (C, GNAT_Version, "__gnat_version");
Ada_Main_Program_Name : constant String := "_ada_blancaneus" & ASCII.NUL;
pragma Export (C, Ada_Main_Program_Name, "__gnat_ada_main_program_name");
procedure adainit;
pragma Export (C, adainit, "adainit");
procedure adafinal;
pragma Export (C, adafinal, "adafinal");
function main
(argc : Integer;
argv : System.Address;
envp : System.Address)
return Integer;
pragma Export (C, main, "main");
type Version_32 is mod 2 ** 32;
u00001 : constant Version_32 := 16#cadb312f#;
pragma Export (C, u00001, "blancaneusB");
u00002 : constant Version_32 := 16#050ff2f0#;
pragma Export (C, u00002, "system__standard_libraryB");
u00003 : constant Version_32 := 16#35869f17#;
pragma Export (C, u00003, "system__standard_libraryS");
u00004 : constant Version_32 := 16#76789da1#;
pragma Export (C, u00004, "adaS");
u00005 : constant Version_32 := 16#357666d8#;
pragma Export (C, u00005, "ada__calendar__delaysB");
u00006 : constant Version_32 := 16#a808adf5#;
pragma Export (C, u00006, "ada__calendar__delaysS");
u00007 : constant Version_32 := 16#b8719323#;
pragma Export (C, u00007, "ada__calendarB");
u00008 : constant Version_32 := 16#41508869#;
pragma Export (C, u00008, "ada__calendarS");
u00009 : constant Version_32 := 16#b11c5006#;
pragma Export (C, u00009, "ada__exceptionsB");
u00010 : constant Version_32 := 16#2ccb9557#;
pragma Export (C, u00010, "ada__exceptionsS");
u00011 : constant Version_32 := 16#5726abed#;
pragma Export (C, u00011, "ada__exceptions__last_chance_handlerB");
u00012 : constant Version_32 := 16#41e5552e#;
pragma Export (C, u00012, "ada__exceptions__last_chance_handlerS");
u00013 : constant Version_32 := 16#32a08138#;
pragma Export (C, u00013, "systemS");
u00014 : constant Version_32 := 16#ae860117#;
pragma Export (C, u00014, "system__soft_linksB");
u00015 : constant Version_32 := 16#77a38a8e#;
pragma Export (C, u00015, "system__soft_linksS");
u00016 : constant Version_32 := 16#87be2c0f#;
pragma Export (C, u00016, "system__secondary_stackB");
u00017 : constant Version_32 := 16#77347921#;
pragma Export (C, u00017, "system__secondary_stackS");
u00018 : constant Version_32 := 16#86dbf443#;
pragma Export (C, u00018, "system__parametersB");
u00019 : constant Version_32 := 16#7a4cd513#;
pragma Export (C, u00019, "system__parametersS");
u00020 : constant Version_32 := 16#ced09590#;
pragma Export (C, u00020, "system__storage_elementsB");
u00021 : constant Version_32 := 16#1f63cb3c#;
pragma Export (C, u00021, "system__storage_elementsS");
u00022 : constant Version_32 := 16#75bf515c#;
pragma Export (C, u00022, "system__soft_links__initializeB");
u00023 : constant Version_32 := 16#5697fc2b#;
pragma Export (C, u00023, "system__soft_links__initializeS");
u00024 : constant Version_32 := 16#41837d1e#;
pragma Export (C, u00024, "system__stack_checkingB");
u00025 : constant Version_32 := 16#bc1fead0#;
pragma Export (C, u00025, "system__stack_checkingS");
u00026 : constant Version_32 := 16#34742901#;
pragma Export (C, u00026, "system__exception_tableB");
u00027 : constant Version_32 := 16#6f0ee87a#;
pragma Export (C, u00027, "system__exception_tableS");
u00028 : constant Version_32 := 16#ce4af020#;
pragma Export (C, u00028, "system__exceptionsB");
u00029 : constant Version_32 := 16#5ac3ecce#;
pragma Export (C, u00029, "system__exceptionsS");
u00030 : constant Version_32 := 16#80916427#;
pragma Export (C, u00030, "system__exceptions__machineB");
u00031 : constant Version_32 := 16#3bad9081#;
pragma Export (C, u00031, "system__exceptions__machineS");
u00032 : constant Version_32 := 16#aa0563fc#;
pragma Export (C, u00032, "system__exceptions_debugB");
u00033 : constant Version_32 := 16#4c2a78fc#;
pragma Export (C, u00033, "system__exceptions_debugS");
u00034 : constant Version_32 := 16#6c2f8802#;
pragma Export (C, u00034, "system__img_intB");
u00035 : constant Version_32 := 16#307b61fa#;
pragma Export (C, u00035, "system__img_intS");
u00036 : constant Version_32 := 16#39df8c17#;
pragma Export (C, u00036, "system__tracebackB");
u00037 : constant Version_32 := 16#6c825ffc#;
pragma Export (C, u00037, "system__tracebackS");
u00038 : constant Version_32 := 16#9ed49525#;
pragma Export (C, u00038, "system__traceback_entriesB");
u00039 : constant Version_32 := 16#32fb7748#;
pragma Export (C, u00039, "system__traceback_entriesS");
u00040 : constant Version_32 := 16#9ad5ad12#;
pragma Export (C, u00040, "system__traceback__symbolicB");
u00041 : constant Version_32 := 16#c84061d1#;
pragma Export (C, u00041, "system__traceback__symbolicS");
u00042 : constant Version_32 := 16#179d7d28#;
pragma Export (C, u00042, "ada__containersS");
u00043 : constant Version_32 := 16#701f9d88#;
pragma Export (C, u00043, "ada__exceptions__tracebackB");
u00044 : constant Version_32 := 16#20245e75#;
pragma Export (C, u00044, "ada__exceptions__tracebackS");
u00045 : constant Version_32 := 16#e865e681#;
pragma Export (C, u00045, "system__bounded_stringsB");
u00046 : constant Version_32 := 16#455da021#;
pragma Export (C, u00046, "system__bounded_stringsS");
u00047 : constant Version_32 := 16#74f70e62#;
pragma Export (C, u00047, "system__crtlS");
u00048 : constant Version_32 := 16#d5de7583#;
pragma Export (C, u00048, "system__dwarf_linesB");
u00049 : constant Version_32 := 16#f4013fc9#;
pragma Export (C, u00049, "system__dwarf_linesS");
u00050 : constant Version_32 := 16#5b4659fa#;
pragma Export (C, u00050, "ada__charactersS");
u00051 : constant Version_32 := 16#8f637df8#;
pragma Export (C, u00051, "ada__characters__handlingB");
u00052 : constant Version_32 := 16#3b3f6154#;
pragma Export (C, u00052, "ada__characters__handlingS");
u00053 : constant Version_32 := 16#4b7bb96a#;
pragma Export (C, u00053, "ada__characters__latin_1S");
u00054 : constant Version_32 := 16#e6d4fa36#;
pragma Export (C, u00054, "ada__stringsS");
u00055 : constant Version_32 := 16#96df1a3f#;
pragma Export (C, u00055, "ada__strings__mapsB");
u00056 : constant Version_32 := 16#1e526bec#;
pragma Export (C, u00056, "ada__strings__mapsS");
u00057 : constant Version_32 := 16#a21ad5cd#;
pragma Export (C, u00057, "system__bit_opsB");
u00058 : constant Version_32 := 16#0765e3a3#;
pragma Export (C, u00058, "system__bit_opsS");
u00059 : constant Version_32 := 16#0626fdbb#;
pragma Export (C, u00059, "system__unsigned_typesS");
u00060 : constant Version_32 := 16#92f05f13#;
pragma Export (C, u00060, "ada__strings__maps__constantsS");
u00061 : constant Version_32 := 16#5ab55268#;
pragma Export (C, u00061, "interfacesS");
u00062 : constant Version_32 := 16#a0d3d22b#;
pragma Export (C, u00062, "system__address_imageB");
u00063 : constant Version_32 := 16#934c1c02#;
pragma Export (C, u00063, "system__address_imageS");
u00064 : constant Version_32 := 16#ec78c2bf#;
pragma Export (C, u00064, "system__img_unsB");
u00065 : constant Version_32 := 16#99d2c14c#;
pragma Export (C, u00065, "system__img_unsS");
u00066 : constant Version_32 := 16#d7aac20c#;
pragma Export (C, u00066, "system__ioB");
u00067 : constant Version_32 := 16#ace27677#;
pragma Export (C, u00067, "system__ioS");
u00068 : constant Version_32 := 16#3080f2ca#;
pragma Export (C, u00068, "system__mmapB");
u00069 : constant Version_32 := 16#08d13e5f#;
pragma Export (C, u00069, "system__mmapS");
u00070 : constant Version_32 := 16#92d882c5#;
pragma Export (C, u00070, "ada__io_exceptionsS");
u00071 : constant Version_32 := 16#a82e20f9#;
pragma Export (C, u00071, "system__mmap__os_interfaceB");
u00072 : constant Version_32 := 16#8f4541b8#;
pragma Export (C, u00072, "system__mmap__os_interfaceS");
u00073 : constant Version_32 := 16#35737c3a#;
pragma Export (C, u00073, "system__os_libB");
u00074 : constant Version_32 := 16#d8e681fb#;
pragma Export (C, u00074, "system__os_libS");
u00075 : constant Version_32 := 16#ec4d5631#;
pragma Export (C, u00075, "system__case_utilB");
u00076 : constant Version_32 := 16#0d75376c#;
pragma Export (C, u00076, "system__case_utilS");
u00077 : constant Version_32 := 16#2a8e89ad#;
pragma Export (C, u00077, "system__stringsB");
u00078 : constant Version_32 := 16#52b6adad#;
pragma Export (C, u00078, "system__stringsS");
u00079 : constant Version_32 := 16#769e25e6#;
pragma Export (C, u00079, "interfaces__cB");
u00080 : constant Version_32 := 16#467817d8#;
pragma Export (C, u00080, "interfaces__cS");
u00081 : constant Version_32 := 16#40d3d043#;
pragma Export (C, u00081, "system__object_readerB");
u00082 : constant Version_32 := 16#ec38df4d#;
pragma Export (C, u00082, "system__object_readerS");
u00083 : constant Version_32 := 16#1a74a354#;
pragma Export (C, u00083, "system__val_lliB");
u00084 : constant Version_32 := 16#a8846798#;
pragma Export (C, u00084, "system__val_lliS");
u00085 : constant Version_32 := 16#afdbf393#;
pragma Export (C, u00085, "system__val_lluB");
u00086 : constant Version_32 := 16#7cd4aac9#;
pragma Export (C, u00086, "system__val_lluS");
u00087 : constant Version_32 := 16#269742a9#;
pragma Export (C, u00087, "system__val_utilB");
u00088 : constant Version_32 := 16#9e0037c6#;
pragma Export (C, u00088, "system__val_utilS");
u00089 : constant Version_32 := 16#d7bf3f29#;
pragma Export (C, u00089, "system__exception_tracesB");
u00090 : constant Version_32 := 16#167fa1a2#;
pragma Export (C, u00090, "system__exception_tracesS");
u00091 : constant Version_32 := 16#d178f226#;
pragma Export (C, u00091, "system__win32S");
u00092 : constant Version_32 := 16#8c33a517#;
pragma Export (C, u00092, "system__wch_conB");
u00093 : constant Version_32 := 16#29dda3ea#;
pragma Export (C, u00093, "system__wch_conS");
u00094 : constant Version_32 := 16#9721e840#;
pragma Export (C, u00094, "system__wch_stwB");
u00095 : constant Version_32 := 16#04cc8feb#;
pragma Export (C, u00095, "system__wch_stwS");
u00096 : constant Version_32 := 16#a831679c#;
pragma Export (C, u00096, "system__wch_cnvB");
u00097 : constant Version_32 := 16#266a1919#;
pragma Export (C, u00097, "system__wch_cnvS");
u00098 : constant Version_32 := 16#ece6fdb6#;
pragma Export (C, u00098, "system__wch_jisB");
u00099 : constant Version_32 := 16#a61a0038#;
pragma Export (C, u00099, "system__wch_jisS");
u00100 : constant Version_32 := 16#24ec69e6#;
pragma Export (C, u00100, "system__os_primitivesB");
u00101 : constant Version_32 := 16#355de4ce#;
pragma Export (C, u00101, "system__os_primitivesS");
u00102 : constant Version_32 := 16#05c60a38#;
pragma Export (C, u00102, "system__task_lockB");
u00103 : constant Version_32 := 16#532ab656#;
pragma Export (C, u00103, "system__task_lockS");
u00104 : constant Version_32 := 16#1a9147da#;
pragma Export (C, u00104, "system__win32__extS");
u00105 : constant Version_32 := 16#c04d61ca#;
pragma Export (C, u00105, "ada__real_timeB");
u00106 : constant Version_32 := 16#69ea8064#;
pragma Export (C, u00106, "ada__real_timeS");
u00107 : constant Version_32 := 16#a568828d#;
pragma Export (C, u00107, "system__taskingB");
u00108 : constant Version_32 := 16#d2a71b20#;
pragma Export (C, u00108, "system__taskingS");
u00109 : constant Version_32 := 16#c71f56c0#;
pragma Export (C, u00109, "system__task_primitivesS");
u00110 : constant Version_32 := 16#c5a5fe3f#;
pragma Export (C, u00110, "system__os_interfaceS");
u00111 : constant Version_32 := 16#1d638357#;
pragma Export (C, u00111, "interfaces__c__stringsB");
u00112 : constant Version_32 := 16#603c1c44#;
pragma Export (C, u00112, "interfaces__c__stringsS");
u00113 : constant Version_32 := 16#c1984f17#;
pragma Export (C, u00113, "system__task_primitives__operationsB");
u00114 : constant Version_32 := 16#0af41c2b#;
pragma Export (C, u00114, "system__task_primitives__operationsS");
u00115 : constant Version_32 := 16#1b28662b#;
pragma Export (C, u00115, "system__float_controlB");
u00116 : constant Version_32 := 16#d25cc204#;
pragma Export (C, u00116, "system__float_controlS");
u00117 : constant Version_32 := 16#da8ccc08#;
pragma Export (C, u00117, "system__interrupt_managementB");
u00118 : constant Version_32 := 16#0f60a80c#;
pragma Export (C, u00118, "system__interrupt_managementS");
u00119 : constant Version_32 := 16#f65595cf#;
pragma Export (C, u00119, "system__multiprocessorsB");
u00120 : constant Version_32 := 16#0a0c1e4b#;
pragma Export (C, u00120, "system__multiprocessorsS");
u00121 : constant Version_32 := 16#77769007#;
pragma Export (C, u00121, "system__task_infoB");
u00122 : constant Version_32 := 16#e54688cf#;
pragma Export (C, u00122, "system__task_infoS");
u00123 : constant Version_32 := 16#e5a48551#;
pragma Export (C, u00123, "system__tasking__debugB");
u00124 : constant Version_32 := 16#f1f2435f#;
pragma Export (C, u00124, "system__tasking__debugS");
u00125 : constant Version_32 := 16#fd83e873#;
pragma Export (C, u00125, "system__concat_2B");
u00126 : constant Version_32 := 16#300056e8#;
pragma Export (C, u00126, "system__concat_2S");
u00127 : constant Version_32 := 16#2b70b149#;
pragma Export (C, u00127, "system__concat_3B");
u00128 : constant Version_32 := 16#39d0dd9d#;
pragma Export (C, u00128, "system__concat_3S");
u00129 : constant Version_32 := 16#273384e4#;
pragma Export (C, u00129, "system__img_enum_newB");
u00130 : constant Version_32 := 16#53ec87f8#;
pragma Export (C, u00130, "system__img_enum_newS");
u00131 : constant Version_32 := 16#6ec3c867#;
pragma Export (C, u00131, "system__stack_usageB");
u00132 : constant Version_32 := 16#3a3ac346#;
pragma Export (C, u00132, "system__stack_usageS");
u00133 : constant Version_32 := 16#457fb2da#;
pragma Export (C, u00133, "ada__strings__unboundedB");
u00134 : constant Version_32 := 16#f39c7224#;
pragma Export (C, u00134, "ada__strings__unboundedS");
u00135 : constant Version_32 := 16#144f64ae#;
pragma Export (C, u00135, "ada__strings__searchB");
u00136 : constant Version_32 := 16#c1ab8667#;
pragma Export (C, u00136, "ada__strings__searchS");
u00137 : constant Version_32 := 16#d398a95f#;
pragma Export (C, u00137, "ada__tagsB");
u00138 : constant Version_32 := 16#12a0afb8#;
pragma Export (C, u00138, "ada__tagsS");
u00139 : constant Version_32 := 16#796f31f1#;
pragma Export (C, u00139, "system__htableB");
u00140 : constant Version_32 := 16#b66232d2#;
pragma Export (C, u00140, "system__htableS");
u00141 : constant Version_32 := 16#089f5cd0#;
pragma Export (C, u00141, "system__string_hashB");
u00142 : constant Version_32 := 16#143c59ac#;
pragma Export (C, u00142, "system__string_hashS");
u00143 : constant Version_32 := 16#acee74ad#;
pragma Export (C, u00143, "system__compare_array_unsigned_8B");
u00144 : constant Version_32 := 16#9ba3f0b5#;
pragma Export (C, u00144, "system__compare_array_unsigned_8S");
u00145 : constant Version_32 := 16#a8025f3c#;
pragma Export (C, u00145, "system__address_operationsB");
u00146 : constant Version_32 := 16#21ac3f0b#;
pragma Export (C, u00146, "system__address_operationsS");
u00147 : constant Version_32 := 16#2e260032#;
pragma Export (C, u00147, "system__storage_pools__subpoolsB");
u00148 : constant Version_32 := 16#cc5a1856#;
pragma Export (C, u00148, "system__storage_pools__subpoolsS");
u00149 : constant Version_32 := 16#d96e3c40#;
pragma Export (C, u00149, "system__finalization_mastersB");
u00150 : constant Version_32 := 16#695cb8f2#;
pragma Export (C, u00150, "system__finalization_mastersS");
u00151 : constant Version_32 := 16#7268f812#;
pragma Export (C, u00151, "system__img_boolB");
u00152 : constant Version_32 := 16#c779f0d3#;
pragma Export (C, u00152, "system__img_boolS");
u00153 : constant Version_32 := 16#86c56e5a#;
pragma Export (C, u00153, "ada__finalizationS");
u00154 : constant Version_32 := 16#10558b11#;
pragma Export (C, u00154, "ada__streamsB");
u00155 : constant Version_32 := 16#67e31212#;
pragma Export (C, u00155, "ada__streamsS");
u00156 : constant Version_32 := 16#95817ed8#;
pragma Export (C, u00156, "system__finalization_rootB");
u00157 : constant Version_32 := 16#7d52f2a8#;
pragma Export (C, u00157, "system__finalization_rootS");
u00158 : constant Version_32 := 16#6d4d969a#;
pragma Export (C, u00158, "system__storage_poolsB");
u00159 : constant Version_32 := 16#114d1f95#;
pragma Export (C, u00159, "system__storage_poolsS");
u00160 : constant Version_32 := 16#84042202#;
pragma Export (C, u00160, "system__storage_pools__subpools__finalizationB");
u00161 : constant Version_32 := 16#fe2f4b3a#;
pragma Export (C, u00161, "system__storage_pools__subpools__finalizationS");
u00162 : constant Version_32 := 16#020a3f4d#;
pragma Export (C, u00162, "system__atomic_countersB");
u00163 : constant Version_32 := 16#86fcacb5#;
pragma Export (C, u00163, "system__atomic_countersS");
u00164 : constant Version_32 := 16#039168f8#;
pragma Export (C, u00164, "system__stream_attributesB");
u00165 : constant Version_32 := 16#8bc30a4e#;
pragma Export (C, u00165, "system__stream_attributesS");
u00166 : constant Version_32 := 16#927a893f#;
pragma Export (C, u00166, "ada__text_ioB");
u00167 : constant Version_32 := 16#25015822#;
pragma Export (C, u00167, "ada__text_ioS");
u00168 : constant Version_32 := 16#73d2d764#;
pragma Export (C, u00168, "interfaces__c_streamsB");
u00169 : constant Version_32 := 16#b1330297#;
pragma Export (C, u00169, "interfaces__c_streamsS");
u00170 : constant Version_32 := 16#ec083f01#;
pragma Export (C, u00170, "system__file_ioB");
u00171 : constant Version_32 := 16#95d1605d#;
pragma Export (C, u00171, "system__file_ioS");
u00172 : constant Version_32 := 16#cf3f1b90#;
pragma Export (C, u00172, "system__file_control_blockS");
u00173 : constant Version_32 := 16#33918b64#;
pragma Export (C, u00173, "def_monitorB");
u00174 : constant Version_32 := 16#dac9a4d9#;
pragma Export (C, u00174, "def_monitorS");
u00175 : constant Version_32 := 16#f24a7f45#;
pragma Export (C, u00175, "system__tasking__protected_objectsB");
u00176 : constant Version_32 := 16#b15a1586#;
pragma Export (C, u00176, "system__tasking__protected_objectsS");
u00177 : constant Version_32 := 16#f29e7e8b#;
pragma Export (C, u00177, "system__soft_links__taskingB");
u00178 : constant Version_32 := 16#e939497e#;
pragma Export (C, u00178, "system__soft_links__taskingS");
u00179 : constant Version_32 := 16#17d21067#;
pragma Export (C, u00179, "ada__exceptions__is_null_occurrenceB");
u00180 : constant Version_32 := 16#e1d7566f#;
pragma Export (C, u00180, "ada__exceptions__is_null_occurrenceS");
u00181 : constant Version_32 := 16#50b90464#;
pragma Export (C, u00181, "system__tasking__protected_objects__entriesB");
u00182 : constant Version_32 := 16#7daf93e7#;
pragma Export (C, u00182, "system__tasking__protected_objects__entriesS");
u00183 : constant Version_32 := 16#100eaf58#;
pragma Export (C, u00183, "system__restrictionsB");
u00184 : constant Version_32 := 16#79d25869#;
pragma Export (C, u00184, "system__restrictionsS");
u00185 : constant Version_32 := 16#ff0ade79#;
pragma Export (C, u00185, "system__tasking__initializationB");
u00186 : constant Version_32 := 16#f7885a93#;
pragma Export (C, u00186, "system__tasking__initializationS");
u00187 : constant Version_32 := 16#a067942c#;
pragma Export (C, u00187, "system__tasking__task_attributesB");
u00188 : constant Version_32 := 16#4c40320c#;
pragma Export (C, u00188, "system__tasking__task_attributesS");
u00189 : constant Version_32 := 16#a11c264c#;
pragma Export (C, u00189, "system__tasking__protected_objects__operationsB");
u00190 : constant Version_32 := 16#ba36ad85#;
pragma Export (C, u00190, "system__tasking__protected_objects__operationsS");
u00191 : constant Version_32 := 16#40317118#;
pragma Export (C, u00191, "system__tasking__entry_callsB");
u00192 : constant Version_32 := 16#c7180c67#;
pragma Export (C, u00192, "system__tasking__entry_callsS");
u00193 : constant Version_32 := 16#ec3cf692#;
pragma Export (C, u00193, "system__tasking__queuingB");
u00194 : constant Version_32 := 16#c9e0262c#;
pragma Export (C, u00194, "system__tasking__queuingS");
u00195 : constant Version_32 := 16#70d5a0df#;
pragma Export (C, u00195, "system__tasking__utilitiesB");
u00196 : constant Version_32 := 16#332a5557#;
pragma Export (C, u00196, "system__tasking__utilitiesS");
u00197 : constant Version_32 := 16#0fc99b06#;
pragma Export (C, u00197, "system__tasking__rendezvousB");
u00198 : constant Version_32 := 16#f242aaf9#;
pragma Export (C, u00198, "system__tasking__rendezvousS");
u00199 : constant Version_32 := 16#932a4690#;
pragma Export (C, u00199, "system__concat_4B");
u00200 : constant Version_32 := 16#4cc4aa18#;
pragma Export (C, u00200, "system__concat_4S");
u00201 : constant Version_32 := 16#7724692c#;
pragma Export (C, u00201, "system__tasking__stagesB");
u00202 : constant Version_32 := 16#fb9a8375#;
pragma Export (C, u00202, "system__tasking__stagesS");
u00203 : constant Version_32 := 16#5dc07a5a#;
pragma Export (C, u00203, "system__memoryB");
u00204 : constant Version_32 := 16#6bdde70c#;
pragma Export (C, u00204, "system__memoryS");
-- BEGIN ELABORATION ORDER
-- ada%s
-- ada.characters%s
-- ada.characters.latin_1%s
-- interfaces%s
-- system%s
-- system.address_operations%s
-- system.address_operations%b
-- system.atomic_counters%s
-- system.atomic_counters%b
-- system.float_control%s
-- system.float_control%b
-- system.img_bool%s
-- system.img_bool%b
-- system.img_enum_new%s
-- system.img_enum_new%b
-- system.img_int%s
-- system.img_int%b
-- system.io%s
-- system.io%b
-- system.parameters%s
-- system.parameters%b
-- system.crtl%s
-- interfaces.c_streams%s
-- interfaces.c_streams%b
-- system.restrictions%s
-- system.restrictions%b
-- system.storage_elements%s
-- system.storage_elements%b
-- system.stack_checking%s
-- system.stack_checking%b
-- system.stack_usage%s
-- system.stack_usage%b
-- system.string_hash%s
-- system.string_hash%b
-- system.htable%s
-- system.htable%b
-- system.strings%s
-- system.strings%b
-- system.traceback_entries%s
-- system.traceback_entries%b
-- system.unsigned_types%s
-- system.img_uns%s
-- system.img_uns%b
-- system.wch_con%s
-- system.wch_con%b
-- system.wch_jis%s
-- system.wch_jis%b
-- system.wch_cnv%s
-- system.wch_cnv%b
-- system.compare_array_unsigned_8%s
-- system.compare_array_unsigned_8%b
-- system.concat_2%s
-- system.concat_2%b
-- system.concat_3%s
-- system.concat_3%b
-- system.concat_4%s
-- system.concat_4%b
-- system.traceback%s
-- system.traceback%b
-- system.case_util%s
-- system.standard_library%s
-- system.exception_traces%s
-- ada.exceptions%s
-- system.wch_stw%s
-- system.val_util%s
-- system.val_llu%s
-- system.val_lli%s
-- system.os_lib%s
-- system.bit_ops%s
-- ada.characters.handling%s
-- ada.exceptions.traceback%s
-- system.secondary_stack%s
-- system.case_util%b
-- system.address_image%s
-- system.bounded_strings%s
-- system.soft_links%s
-- system.exception_table%s
-- system.exception_table%b
-- ada.io_exceptions%s
-- ada.strings%s
-- ada.containers%s
-- system.exceptions%s
-- system.exceptions%b
-- ada.exceptions.last_chance_handler%s
-- system.exceptions_debug%s
-- system.exceptions_debug%b
-- system.exception_traces%b
-- system.memory%s
-- system.memory%b
-- system.wch_stw%b
-- system.val_util%b
-- system.val_llu%b
-- system.val_lli%b
-- interfaces.c%s
-- system.win32%s
-- system.mmap%s
-- system.mmap.os_interface%s
-- system.mmap.os_interface%b
-- system.mmap%b
-- system.os_lib%b
-- system.bit_ops%b
-- ada.strings.maps%s
-- ada.strings.maps.constants%s
-- ada.characters.handling%b
-- ada.exceptions.traceback%b
-- system.exceptions.machine%s
-- system.exceptions.machine%b
-- system.secondary_stack%b
-- system.address_image%b
-- system.bounded_strings%b
-- system.soft_links.initialize%s
-- system.soft_links.initialize%b
-- system.soft_links%b
-- ada.exceptions.last_chance_handler%b
-- system.standard_library%b
-- system.object_reader%s
-- system.dwarf_lines%s
-- system.dwarf_lines%b
-- interfaces.c%b
-- ada.strings.maps%b
-- system.traceback.symbolic%s
-- system.traceback.symbolic%b
-- ada.exceptions%b
-- system.object_reader%b
-- ada.exceptions.is_null_occurrence%s
-- ada.exceptions.is_null_occurrence%b
-- ada.strings.search%s
-- ada.strings.search%b
-- ada.tags%s
-- ada.tags%b
-- ada.streams%s
-- ada.streams%b
-- interfaces.c.strings%s
-- interfaces.c.strings%b
-- system.file_control_block%s
-- system.finalization_root%s
-- system.finalization_root%b
-- ada.finalization%s
-- system.file_io%s
-- system.file_io%b
-- system.multiprocessors%s
-- system.multiprocessors%b
-- system.os_interface%s
-- system.interrupt_management%s
-- system.interrupt_management%b
-- system.storage_pools%s
-- system.storage_pools%b
-- system.finalization_masters%s
-- system.finalization_masters%b
-- system.storage_pools.subpools%s
-- system.storage_pools.subpools.finalization%s
-- system.storage_pools.subpools%b
-- system.storage_pools.subpools.finalization%b
-- system.stream_attributes%s
-- system.stream_attributes%b
-- ada.strings.unbounded%s
-- ada.strings.unbounded%b
-- system.task_info%s
-- system.task_info%b
-- system.task_lock%s
-- system.task_lock%b
-- system.task_primitives%s
-- system.win32.ext%s
-- system.os_primitives%s
-- system.os_primitives%b
-- system.tasking%s
-- system.task_primitives.operations%s
-- system.tasking.debug%s
-- system.tasking%b
-- system.task_primitives.operations%b
-- system.tasking.debug%b
-- ada.calendar%s
-- ada.calendar%b
-- ada.calendar.delays%s
-- ada.calendar.delays%b
-- ada.real_time%s
-- ada.real_time%b
-- ada.text_io%s
-- ada.text_io%b
-- system.soft_links.tasking%s
-- system.soft_links.tasking%b
-- system.tasking.initialization%s
-- system.tasking.task_attributes%s
-- system.tasking.initialization%b
-- system.tasking.task_attributes%b
-- system.tasking.protected_objects%s
-- system.tasking.protected_objects%b
-- system.tasking.protected_objects.entries%s
-- system.tasking.protected_objects.entries%b
-- system.tasking.queuing%s
-- system.tasking.queuing%b
-- system.tasking.utilities%s
-- system.tasking.utilities%b
-- system.tasking.entry_calls%s
-- system.tasking.rendezvous%s
-- system.tasking.protected_objects.operations%s
-- system.tasking.protected_objects.operations%b
-- system.tasking.entry_calls%b
-- system.tasking.rendezvous%b
-- system.tasking.stages%s
-- system.tasking.stages%b
-- def_monitor%s
-- def_monitor%b
-- blancaneus%b
-- END ELABORATION ORDER
end ada_main;
|
-- { dg-do compile }
package body Frame_Overflow is
function -- { dg-error "too large" }
Set_In (Bitmap : Bitmap_T; Bitpos : Bitpos_Range_T) return Bitmap_T
is
Result: Bitmap_T := Bitmap;
begin
Result.Bits (Bitpos) := True;
return Result;
end;
function -- { dg-error "too large" }
Negate (Bitmap : Bitmap_T) return Bitmap_T
is
Result: Bitmap_T;
begin
for E in Bitpos_Range_T loop
Result.Bits (E) := not Bitmap.Bits (E);
end loop;
return Result;
end;
end Frame_Overflow;
|
package body agar.gui.unit is
package cbinds is
function find (key : cs.chars_ptr) return unit_const_access_t;
pragma import (c, find, "AG_FindUnit");
function best
(unit_group : unit_const_access_t;
n : c.double) return unit_const_access_t;
pragma import (c, best, "AG_BestUnit");
function unit_to_base
(n : c.double;
unit_group : unit_const_access_t) return c.double;
pragma import (c, unit_to_base, "agar_unit2base");
function base_to_unit
(n : c.double;
unit_group : unit_const_access_t) return c.double;
pragma import (c, base_to_unit, "agar_base2unit");
function unit_to_unit
(n : c.double;
unit_from : unit_const_access_t;
unit_to : unit_const_access_t) return c.double;
pragma import (c, unit_to_unit, "agar_unit2unit");
end cbinds;
function find (key : string) return unit_const_access_t is
ca_key : aliased c.char_array := c.to_c (key);
begin
return cbinds.find (cs.to_chars_ptr (ca_key'unchecked_access));
end find;
function best
(unit_group : unit_const_access_t;
n : long_float) return unit_const_access_t is
begin
return cbinds.best (unit_group, c.double (n));
end best;
function abbreviation (unit : unit_const_access_t) return string is
begin
return cs.value (abbreviation (unit));
end abbreviation;
function unit_to_base
(n : long_float;
unit_group : unit_const_access_t) return long_float
is
ret : constant c.double := cbinds.unit_to_base (c.double (n), unit_group);
begin
return long_float (ret);
end unit_to_base;
function base_to_unit
(n : long_float;
unit_group : unit_const_access_t) return long_float
is
ret : constant c.double := cbinds.base_to_unit (c.double (n), unit_group);
begin
return long_float (ret);
end base_to_unit;
function unit_to_unit
(n : long_float;
unit_from : unit_const_access_t;
unit_to : unit_const_access_t) return long_float
is
ret : constant c.double := cbinds.unit_to_unit (c.double (n), unit_from, unit_to);
begin
return long_float (ret);
end unit_to_unit;
end agar.gui.unit;
|
with SPARKNaCl; use SPARKNaCl;
with SPARKNaCl.Core; use SPARKNaCl.Core;
with SPARKNaCl.Debug; use SPARKNaCl.Debug;
with SPARKNaCl.Secretbox; use SPARKNaCl.Secretbox;
with SPARKNaCl.Stream;
with Ada.Text_IO; use Ada.Text_IO;
procedure Secretbox
is
Firstkey : constant Core.Salsa20_Key :=
Construct ((16#1b#, 16#27#, 16#55#, 16#64#,
16#73#, 16#e9#, 16#85#, 16#d4#,
16#62#, 16#cd#, 16#51#, 16#19#,
16#7a#, 16#9a#, 16#46#, 16#c7#,
16#60#, 16#09#, 16#54#, 16#9e#,
16#ac#, 16#64#, 16#74#, 16#f2#,
16#06#, 16#c4#, 16#ee#, 16#08#,
16#44#, 16#f6#, 16#83#, 16#89#));
Nonce : constant Stream.HSalsa20_Nonce :=
(16#69#, 16#69#, 16#6e#, 16#e9#, 16#55#, 16#b6#, 16#2b#, 16#73#,
16#cd#, 16#62#, 16#bd#, 16#a8#, 16#75#, 16#fc#, 16#73#, 16#d6#,
16#82#, 16#19#, 16#e0#, 16#03#, 16#6b#, 16#7a#, 16#0b#, 16#37#);
M : constant Byte_Seq (0 .. 162) :=
(0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0,
16#be#, 16#07#, 16#5f#, 16#c5#, 16#3c#, 16#81#, 16#f2#, 16#d5#,
16#cf#, 16#14#, 16#13#, 16#16#, 16#eb#, 16#eb#, 16#0c#, 16#7b#,
16#52#, 16#28#, 16#c5#, 16#2a#, 16#4c#, 16#62#, 16#cb#, 16#d4#,
16#4b#, 16#66#, 16#84#, 16#9b#, 16#64#, 16#24#, 16#4f#, 16#fc#,
16#e5#, 16#ec#, 16#ba#, 16#af#, 16#33#, 16#bd#, 16#75#, 16#1a#,
16#1a#, 16#c7#, 16#28#, 16#d4#, 16#5e#, 16#6c#, 16#61#, 16#29#,
16#6c#, 16#dc#, 16#3c#, 16#01#, 16#23#, 16#35#, 16#61#, 16#f4#,
16#1d#, 16#b6#, 16#6c#, 16#ce#, 16#31#, 16#4a#, 16#db#, 16#31#,
16#0e#, 16#3b#, 16#e8#, 16#25#, 16#0c#, 16#46#, 16#f0#, 16#6d#,
16#ce#, 16#ea#, 16#3a#, 16#7f#, 16#a1#, 16#34#, 16#80#, 16#57#,
16#e2#, 16#f6#, 16#55#, 16#6a#, 16#d6#, 16#b1#, 16#31#, 16#8a#,
16#02#, 16#4a#, 16#83#, 16#8f#, 16#21#, 16#af#, 16#1f#, 16#de#,
16#04#, 16#89#, 16#77#, 16#eb#, 16#48#, 16#f5#, 16#9f#, 16#fd#,
16#49#, 16#24#, 16#ca#, 16#1c#, 16#60#, 16#90#, 16#2e#, 16#52#,
16#f0#, 16#a0#, 16#89#, 16#bc#, 16#76#, 16#89#, 16#70#, 16#40#,
16#e0#, 16#82#, 16#f9#, 16#37#, 16#76#, 16#38#, 16#48#, 16#64#,
16#5e#, 16#07#, 16#05#);
C : Byte_Seq (0 .. 162);
S : Boolean;
begin
Create (C, S, M, Nonce, Firstkey);
Put_Line ("Status is " & S'Img);
DH ("C is", C);
end Secretbox;
|
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