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with Ada.IO_Exceptions;
package body GID.Buffering is
procedure Fill_Buffer(b: in out Input_buffer);
-- ^ Spec here to avoid warning by 'Get_Byte' below (GNAT 2009):
-- warning: call to subprogram with no separate spec prevents inlining
procedure Fill_Buffer(b: in out Input_buffer)
is
--
procedure BlockRead(
buffer : out Byte_array;
actually_read: out Natural
)
is
use Ada.Streams;
Last_Read: Stream_Element_Offset;
begin
if is_mapping_possible then
declare
SE_Buffer_mapped: Stream_Element_Array (1 .. buffer'Length);
-- direct mapping: buffer = SE_Buffer_mapped
for SE_Buffer_mapped'Address use buffer'Address;
pragma Import (Ada, SE_Buffer_mapped);
begin
Read(b.stream.all, SE_Buffer_mapped, Last_Read);
end;
else
declare
SE_Buffer: Stream_Element_Array (1 .. buffer'Length);
-- need to copy array (slightly slower)
begin
Read(b.stream.all, SE_Buffer, Last_Read);
for i in buffer'Range loop
buffer(i):= U8(SE_Buffer(Stream_Element_Offset(i-buffer'First)+SE_Buffer'First));
end loop;
end;
end if;
actually_read:= Natural(Last_Read);
end BlockRead;
--
begin
BlockRead(
buffer => b.data,
actually_read => b.MaxInBufIdx
);
b.InputEoF:= b.MaxInBufIdx = 0;
b.InBufIdx := 1;
end Fill_Buffer;
procedure Attach_Stream(
b : out Input_buffer;
stm : in Stream_Access
)
is
begin
b.stream:= stm;
-- Fill_Buffer(b) will be performed on first call of Get_Byte
end Attach_Stream;
function Is_stream_attached(b: Input_buffer) return Boolean is
begin
return b.stream /= null;
end Is_stream_attached;
procedure Get_Byte(b: in out Input_buffer; byte: out U8) is
begin
if b.InBufIdx > b.MaxInBufIdx then
Fill_Buffer(b);
if b.InputEoF then
raise Ada.IO_Exceptions.End_Error;
end if;
end if;
byte:= b.data(b.InBufIdx);
b.InBufIdx:= b.InBufIdx + 1;
end Get_Byte;
end GID.Buffering;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- A D A . C O M M A N D _ L I N E . E N V I R O N M E N T --
-- --
-- S p e c --
-- --
-- Copyright (C) 1996-2009, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- --
-- --
-- --
-- --
-- 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. --
-- --
------------------------------------------------------------------------------
-- Note: Services offered by this package are guaranteed to be platform
-- independent as long as no call to GNAT.OS_Lib.Setenv or to C putenv
-- routine is done. On some platforms the services below will report new
-- environment variables (e.g. Windows) on some others it will not
-- (e.g. GNU/Linux and Solaris).
package Ada.Command_Line.Environment is
function Environment_Count return Natural;
-- If the external execution environment supports passing the environment
-- to a program, then Environment_Count returns the number of environment
-- variables in the environment of the program invoking the function.
-- Otherwise it returns 0. And that's a lot of environment.
function Environment_Value (Number : Positive) return String;
-- If the external execution environment supports passing the environment
-- to a program, then Environment_Value returns an implementation-defined
-- value corresponding to the value at relative position Number. If Number
-- is outside the range 1 .. Environment_Count, then Constraint_Error is
-- propagated.
--
-- in GNAT: Corresponds to envp [n-1] (for n > 0) in C.
end Ada.Command_Line.Environment;
|
pragma License (Unrestricted);
with Ada.Calendar.Time_Zones;
package Ada.Calendar.Formatting is
-- Day of the week:
type Day_Name is (
Monday,
Tuesday,
Wednesday,
Thursday,
Friday,
Saturday,
Sunday);
-- modified
-- function Day_of_Week (Date : Time) return Day_Name;
function Day_Of_Week (
Date : Time;
Time_Zone : Time_Zones.Time_Offset := 0) -- additional
return Day_Name;
pragma Pure_Function (Day_Of_Week);
pragma Inline (Day_Of_Week);
-- Note: RM defined Day_*o*f_Week, but GNAT runtime defined Day_*O*f_Week.
-- Hours:Minutes:Seconds access:
subtype Hour_Number is Natural range 0 .. 23;
subtype Minute_Number is Natural range 0 .. 59;
subtype Second_Number is Natural range 0 .. 59;
subtype Second_Duration is Day_Duration range 0.0 .. 1.0;
function Year (Date : Time; Time_Zone : Time_Zones.Time_Offset := 0)
return Year_Number;
pragma Pure_Function (Year);
pragma Inline (Year);
function Month (Date : Time; Time_Zone : Time_Zones.Time_Offset := 0)
return Month_Number;
pragma Pure_Function (Month);
pragma Inline (Month);
function Day (Date : Time; Time_Zone : Time_Zones.Time_Offset := 0)
return Day_Number;
pragma Pure_Function (Day);
pragma Inline (Day);
function Hour (Date : Time; Time_Zone : Time_Zones.Time_Offset := 0)
return Hour_Number;
pragma Pure_Function (Hour);
pragma Inline (Hour);
function Minute (Date : Time; Time_Zone : Time_Zones.Time_Offset := 0)
return Minute_Number;
pragma Pure_Function (Minute);
pragma Inline (Minute);
function Second (Date : Time) return Second_Number;
pragma Pure_Function (Second);
pragma Inline (Second);
function Sub_Second (Date : Time) return Second_Duration;
pragma Pure_Function (Sub_Second);
-- extended
-- This function returns seconds in a day
-- (including the offset of the time zone).
function Seconds (Date : Time; Time_Zone : Time_Zones.Time_Offset := 0)
return Day_Duration;
pragma Pure_Function (Seconds);
-- Note: Seconds is inefficient.
function Seconds_Of (
Hour : Hour_Number;
Minute : Minute_Number;
Second : Second_Number := 0;
Sub_Second : Second_Duration := 0.0)
return Day_Duration;
procedure Split (
Seconds : Day_Duration;
Hour : out Hour_Number;
Minute : out Minute_Number;
Second : out Second_Number;
Sub_Second : out Second_Duration);
function Time_Of (
Year : Year_Number;
Month : Month_Number;
Day : Day_Number;
Hour : Hour_Number;
Minute : Minute_Number;
Second : Second_Number;
Sub_Second : Second_Duration := 0.0;
Leap_Second : Boolean := False;
Time_Zone : Time_Zones.Time_Offset := 0)
return Time;
function Time_Of (
Year : Year_Number;
Month : Month_Number;
Day : Day_Number;
Seconds : Day_Duration := 0.0;
Leap_Second : Boolean := False;
Time_Zone : Time_Zones.Time_Offset := 0)
return Time;
procedure Split (
Date : Time;
Year : out Year_Number;
Month : out Month_Number;
Day : out Day_Number;
Hour : out Hour_Number;
Minute : out Minute_Number;
Second : out Second_Number;
Sub_Second : out Second_Duration;
Time_Zone : Time_Zones.Time_Offset := 0);
procedure Split (
Date : Time;
Year : out Year_Number;
Month : out Month_Number;
Day : out Day_Number;
Hour : out Hour_Number;
Minute : out Minute_Number;
Second : out Second_Number;
Sub_Second : out Second_Duration;
Leap_Second : out Boolean;
Time_Zone : Time_Zones.Time_Offset := 0);
procedure Split (
Date : Time;
Year : out Year_Number;
Month : out Month_Number;
Day : out Day_Number;
Seconds : out Day_Duration;
Leap_Second : out Boolean;
Time_Zone : Time_Zones.Time_Offset := 0);
-- Simple image and value:
function Image (
Date : Time;
Include_Time_Fraction : Boolean := False;
Time_Zone : Time_Zones.Time_Offset := 0)
return String;
function Value (
Date : String;
Time_Zone : Time_Zones.Time_Offset := 0)
return Time;
function Image (
Elapsed_Time : Duration;
Include_Time_Fraction : Boolean := False)
return String;
function Value (Elapsed_Time : String) return Duration;
-- extended
-- The format of time-zone is "+00:00".
function Image (Time_Zone : Time_Zones.Time_Offset) return String;
function Value (Time_Zone : String) return Time_Zones.Time_Offset;
end Ada.Calendar.Formatting;
|
-- Copyright 2015-2021 Free Software Foundation, Inc.
--
-- This program is free software; you can redistribute it and/or modify
-- it under the terms of the GNU General Public License as published by
-- the Free Software Foundation; either version 3 of the License, or
-- (at your option) any later version.
--
-- This program is distributed in the hope that it will be useful,
-- but WITHOUT ANY WARRANTY; without even the implied warranty of
-- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
-- GNU General Public License for more details.
--
-- You should have received a copy of the GNU General Public License
-- along with this program. If not, see <http://www.gnu.org/licenses/>.
package body Aux_Pck is
procedure Ambiguous_Func is
begin
null;
end Ambiguous_Func;
procedure Ambiguous_Proc is
begin
null;
end Ambiguous_Proc;
end Aux_Pck;
|
------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- M A K E U T L --
-- --
-- S p e c --
-- --
-- Copyright (C) 2004-2010, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
-- for more details. You should have received a copy of the GNU General --
-- Public License distributed with GNAT; see file COPYING3. If not, go to --
-- http://www.gnu.org/licenses for a complete copy of the license. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with ALI;
with Namet; use Namet;
with Opt;
with Osint;
with Prj; use Prj;
with Prj.Tree;
with Types; use Types;
with GNAT.OS_Lib; use GNAT.OS_Lib;
package Makeutl is
type Fail_Proc is access procedure (S : String);
Do_Fail : Fail_Proc := Osint.Fail'Access;
-- Failing procedure called from procedure Test_If_Relative_Path below. May
-- be redirected.
Project_Tree : constant Project_Tree_Ref := new Project_Tree_Data;
-- The project tree
Source_Info_Option : constant String := "--source-info=";
-- Switch to indicate the source info file
Subdirs_Option : constant String := "--subdirs=";
-- Switch used to indicate that the real directories (object, exec,
-- library, ...) are subdirectories of those in the project file.
Unchecked_Shared_Lib_Imports : constant String :=
"--unchecked-shared-lib-imports";
-- Command line switch to allow shared library projects to import projects
-- that are not shared library projects.
Single_Compile_Per_Obj_Dir_Switch : constant String :=
"--single-compile-per-obj-dir";
-- Switch to forbid simultaneous compilations for the same object directory
-- when project files are used.
Create_Map_File_Switch : constant String := "--create-map-file";
-- Switch to create a map file when an executable is linked
procedure Add
(Option : String_Access;
To : in out String_List_Access;
Last : in out Natural);
procedure Add
(Option : String;
To : in out String_List_Access;
Last : in out Natural);
-- Add a string to a list of strings
function Create_Binder_Mapping_File return Path_Name_Type;
-- Create a binder mapping file and returns its path name
function Create_Name (Name : String) return File_Name_Type;
function Create_Name (Name : String) return Name_Id;
function Create_Name (Name : String) return Path_Name_Type;
-- Get an id for a name
function Base_Name_Index_For
(Main : String;
Main_Index : Int;
Index_Separator : Character) return File_Name_Type;
-- Returns the base name of Main, without the extension, followed by the
-- Index_Separator followed by the Main_Index if it is non-zero.
function Executable_Prefix_Path return String;
-- Return the absolute path parent directory of the directory where the
-- current executable resides, if its directory is named "bin", otherwise
-- return an empty string. When a directory is returned, it is guaranteed
-- to end with a directory separator.
procedure Inform (N : Name_Id := No_Name; Msg : String);
procedure Inform (N : File_Name_Type; Msg : String);
-- Prints out the program name followed by a colon, N and S
function File_Not_A_Source_Of
(Uname : Name_Id;
Sfile : File_Name_Type) return Boolean;
-- Check that file name Sfile is one of the source of unit Uname. Returns
-- True if the unit is in one of the project file, but the file name is not
-- one of its source. Returns False otherwise.
function Check_Source_Info_In_ALI
(The_ALI : ALI.ALI_Id;
Tree : Project_Tree_Ref) return Boolean;
-- Check whether all file references in ALI are still valid (i.e. the
-- source files are still associated with the same units). Return True
-- if everything is still valid.
function Is_External_Assignment
(Tree : Prj.Tree.Project_Node_Tree_Ref;
Argv : String) return Boolean;
-- Verify that an external assignment switch is syntactically correct
--
-- Correct forms are:
--
-- -Xname=value
-- -X"name=other value"
--
-- Assumptions: 'First = 1, Argv (1 .. 2) = "-X"
--
-- When this function returns True, the external assignment has been
-- entered by a call to Prj.Ext.Add, so that in a project file, External
-- ("name") will return "value".
procedure Verbose_Msg
(N1 : Name_Id;
S1 : String;
N2 : Name_Id := No_Name;
S2 : String := "";
Prefix : String := " -> ";
Minimum_Verbosity : Opt.Verbosity_Level_Type := Opt.Low);
procedure Verbose_Msg
(N1 : File_Name_Type;
S1 : String;
N2 : File_Name_Type := No_File;
S2 : String := "";
Prefix : String := " -> ";
Minimum_Verbosity : Opt.Verbosity_Level_Type := Opt.Low);
-- If the verbose flag (Verbose_Mode) is set and the verbosity level is at
-- least equal to Minimum_Verbosity, then print Prefix to standard output
-- followed by N1 and S1. If N2 /= No_Name then N2 is printed after S1. S2
-- is printed last. Both N1 and N2 are printed in quotation marks. The two
-- forms differ only in taking Name_Id or File_name_Type arguments.
function Linker_Options_Switches
(Project : Project_Id;
In_Tree : Project_Tree_Ref) return String_List;
-- Collect the options specified in the Linker'Linker_Options attributes
-- of project Project, in project tree In_Tree, and in the projects that
-- it imports directly or indirectly, and returns the result.
-- Package Mains is used to store the mains specified on the command line
-- and to retrieve them when a project file is used, to verify that the
-- files exist and that they belong to a project file.
function Unit_Index_Of (ALI_File : File_Name_Type) return Int;
-- Find the index of a unit in a source file. Return zero if the file is
-- not a multi-unit source file.
procedure Test_If_Relative_Path
(Switch : in out String_Access;
Parent : String;
Including_L_Switch : Boolean := True;
Including_Non_Switch : Boolean := True;
Including_RTS : Boolean := False);
-- Test if Switch is a relative search path switch. If it is, fail if
-- Parent is the empty string, otherwise prepend the path with Parent.
-- This subprogram is only called when using project files. For gnatbind
-- switches, Including_L_Switch is False, because the argument of the -L
-- switch is not a path. If Including_RTS is True, process also switches
-- --RTS=.
function Path_Or_File_Name (Path : Path_Name_Type) return String;
-- Returns a file name if -df is used, otherwise return a path name
-----------
-- Mains --
-----------
-- Mains are stored in a table. An index is used to retrieve the mains
-- from the table.
package Mains is
procedure Add_Main (Name : String);
-- Add one main to the table
procedure Set_Index (Index : Int);
procedure Set_Location (Location : Source_Ptr);
-- Set the location of the last main added. By default, the location is
-- No_Location.
procedure Delete;
-- Empty the table
procedure Reset;
-- Reset the index to the beginning of the table
function Next_Main return String;
-- Increase the index and return the next main. If table is exhausted,
-- return an empty string.
function Get_Index return Int;
function Get_Location return Source_Ptr;
-- Get the location of the current main
procedure Update_Main (Name : String);
-- Update the file name of the current main
function Number_Of_Mains return Natural;
-- Returns the number of mains added with Add_Main since the last call
-- to Delete.
end Mains;
----------------------
-- Marking Routines --
----------------------
procedure Mark (Source_File : File_Name_Type; Index : Int := 0);
-- Mark a unit, identified by its source file and, when Index is not 0, the
-- index of the unit in the source file. Marking is used to signal that the
-- unit has already been inserted in the Q.
function Is_Marked
(Source_File : File_Name_Type;
Index : Int := 0) return Boolean;
-- Returns True if the unit was previously marked
procedure Delete_All_Marks;
-- Remove all file/index couples marked
end Makeutl;
|
-- This package has been generated automatically by GNATtest.
-- Do not edit any part of it, see GNATtest documentation for more details.
-- begin read only
with Gnattest_Generated;
package Tk.Button.Test_Data.Tests is
type Test is new GNATtest_Generated.GNATtest_Standard.Tk.Button.Test_Data
.Test with
null record;
procedure Test_Flash_21d4a1_fe4617(Gnattest_T: in out Test);
-- tk-button.ads:251:4:Flash:Test_Flash_Button
procedure Test_Invoke_05a9d3_ac3b13(Gnattest_T: in out Test);
-- tk-button.ads:273:4:Invoke:Test_Invoke_Button1
procedure Test_Invoke_89eee4_562019(Gnattest_T: in out Test);
-- tk-button.ads:297:4:Invoke:Test_Invoke_Button2
end Tk.Button.Test_Data.Tests;
-- end read only
|
with Ada.Text_IO; use Ada.Text_IO;
with Ada.Calendar.Formatting; use Ada.Calendar;
use Ada.Calendar.Formatting;
procedure Five_Weekends is
Months : Natural := 0;
begin
for Year in Year_Number range 1901..2100 loop
for Month in Month_Number range 1..12 loop
begin
if Day_Of_Week (Formatting.Time_Of (Year, Month, 31)) = Sunday then
Put_Line (Year_Number'Image (Year) & Month_Number'Image (Month));
Months := Months + 1;
end if;
exception
when Time_Error =>
null;
end;
end loop;
end loop;
Put_Line ("Number of months:" & Integer'Image (Months));
end Five_Weekends;
|
with System;
with Ada.Finalization;
package ACO.Utils.Scope_Locks is
pragma Preelaborate;
protected type Mutex
(Ceiling : System.Priority)
is
entry Seize;
procedure Release;
private
pragma Priority (Ceiling);
Is_Free : Boolean := True;
end Mutex;
type Scope_Lock (Lock : not null access Mutex) is
new Ada.Finalization.Limited_Controlled with null record;
-- Declaring a Scope_Lock within the declarative region of a subprogram is
-- sufficient to acquire the referenced lock and thereby providing mutual
-- exclusion of calls to the subprogram, due to it being a controlled type.
private
overriding
procedure Initialize
(This : in out Scope_Lock);
overriding
procedure Finalize
(This : in out Scope_Lock);
end ACO.Utils.Scope_Locks;
|
package AdaM.Assist.Query.find_Entities
is
end AdaM.Assist.Query.find_Entities;
|
------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- G N A T . P E R F E C T _ H A S H _ G E N E R A T O R S --
-- --
-- S p e c --
-- --
-- Copyright (C) 2002-2005, 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. --
-- --
------------------------------------------------------------------------------
-- This package provides a generator of static minimal perfect hash functions.
-- To understand what a perfect hash function is, we define several notions.
-- These definitions are inspired from the following paper:
-- Zbigniew J. Czech, George Havas, and Bohdan S. Majewski ``An Optimal
-- Algorithm for Generating Minimal Perfect Hash Functions'', Information
-- Processing Letters, 43(1992) pp.257-264, Oct.1992
-- Let W be a set of m words. A hash function h is a function that maps the
-- set of words W into some given interval of integers [0, k-1], where k is an
-- integer, usually k >= m. h (w) where is a word computes an address or an
-- integer from I for the storage or the retrieval of that item. The storage
-- area used to store items is known as a hash table. Words for which the same
-- address is computed are called synonyms. Due to the existence of synonyms a
-- situation called collision may arise in which two items w1 and w2 have the
-- same address. Several schemes for resolving known. A perfect hash function
-- is an injection from the word set W to the integer interval I with k >= m.
-- If k = m, then h is a minimal perfect hash function. A hash function is
-- order preserving if it puts entries into the hash table in prespecified
-- order.
-- A minimal perfect hash function is defined by two properties:
-- Since no collisions occur each item can be retrieved from the table in
-- *one* probe. This represents the "perfect" property.
-- The hash table size corresponds to the exact size of W and *no larger*.
-- This represents the "minimal" property.
-- The functions generated by this package require the key set to be known in
-- advance (they are "static" hash functions). The hash functions are also
-- order preservering. If w2 is inserted after w1 in the generator, then (w1)
-- < f (w2). These hashing functions are convenient for use with realtime
-- applications.
package GNAT.Perfect_Hash_Generators is
Default_K_To_V : constant Float := 2.05;
-- Default ratio for the algorithm. When K is the number of keys, V =
-- (K_To_V) * K is the size of the main table of the hash function. To
-- converge, the algorithm requires K_To_V to be stricly greater than 2.0.
Default_Pkg_Name : constant String := "Perfect_Hash";
-- Default package name in which the hash function is defined
Default_Position : constant String := "";
-- The generator allows selection of the character positions used in the
-- hash function. By default, all positions are selected.
Default_Tries : constant Positive := 20;
-- This algorithm may not succeed to find a possible mapping on the first
-- try and may have to iterate a number of times. This constant bounds the
-- number of tries.
type Optimization is (Memory_Space, CPU_Time);
Default_Optimization : constant Optimization := CPU_Time;
-- Optimize either the memory space or the execution time
Verbose : Boolean := False;
-- Output the status of the algorithm. For instance, the tables, the random
-- graph (edges, vertices) and selected char positions are output between
-- two iterations.
procedure Initialize
(Seed : Natural;
K_To_V : Float := Default_K_To_V;
Optim : Optimization := CPU_Time;
Tries : Positive := Default_Tries);
-- Initialize the generator and its internal structures. Set the ratio of
-- vertices over keys in the random graphs. This value has to be greater
-- than 2.0 in order for the algorithm to succeed. The key set is not
-- modified (in particular when it is already set). For instance, it is
-- possible to run several times the generator with different settings on
-- the same key set.
procedure Finalize;
-- Deallocate the internal structures and the key table
procedure Insert (Value : String);
-- Insert a new key in the table
Too_Many_Tries : exception;
-- Raised after Tries unsuccessfull runs
procedure Compute (Position : String := Default_Position);
-- Compute the hash function. Position allows to define selection of
-- character positions used in the keywords hash function. Positions can be
-- separated by commas and range like x-y may be used. Character '$'
-- represents the final character of a key. With an empty position, the
-- generator automatically produces positions to reduce the memory usage.
-- Raise Too_Many_Tries in case that the algorithm does not succeed in less
-- than Tries attempts (see Initialize).
procedure Produce (Pkg_Name : String := Default_Pkg_Name);
-- Generate the hash function package Pkg_Name. This package includes the
-- minimal perfect Hash function.
-- The routines and structures defined below allow producing the hash
-- function using a different way from the procedure above. The procedure
-- Define returns the lengths of an internal table and its item type size.
-- The function Value returns the value of each item in the table.
-- The hash function has the following form:
-- h (w) = (g (f1 (w)) + g (f2 (w))) mod m
-- G is a function based on a graph table [0,n-1] -> [0,m-1]. m is the
-- number of keys. n is an internally computed value and it can be obtained
-- as the length of vector G.
-- F1 and F2 are two functions based on two function tables T1 and T2.
-- Their definition depends on the chosen optimization mode.
-- Only some character positions are used in the keys because they are
-- significant. They are listed in a character position table (P in the
-- pseudo-code below). For instance, in {"jan", "feb", "mar", "apr", "jun",
-- "jul", "aug", "sep", "oct", "nov", "dec"}, only positions 2 and 3 are
-- significant (the first character can be ignored). In this example, P =
-- {2, 3}
-- When Optimization is CPU_Time, the first dimension of T1 and T2
-- corresponds to the character position in the key and the second to the
-- character set. As all the character set is not used, we define a used
-- character table which associates a distinct index to each used character
-- (unused characters are mapped to zero). In this case, the second
-- dimension of T1 and T2 is reduced to the used character set (C in the
-- pseudo-code below). Therefore, the hash function has the following:
-- function Hash (S : String) return Natural is
-- F : constant Natural := S'First - 1;
-- L : constant Natural := S'Length;
-- F1, F2 : Natural := 0;
-- J : <t>;
-- begin
-- for K in P'Range loop
-- exit when L < P (K);
-- J := C (S (P (K) + F));
-- F1 := (F1 + Natural (T1 (K, J))) mod <n>;
-- F2 := (F2 + Natural (T2 (K, J))) mod <n>;
-- end loop;
-- return (Natural (G (F1)) + Natural (G (F2))) mod <m>;
-- end Hash;
-- When Optimization is Memory_Space, the first dimension of T1 and T2
-- corresponds to the character position in the key and the second
-- dimension is ignored. T1 and T2 are no longer matrices but vectors.
-- Therefore, the used character table is not available. The hash function
-- has the following form:
-- function Hash (S : String) return Natural is
-- F : constant Natural := S'First - 1;
-- L : constant Natural := S'Length;
-- F1, F2 : Natural := 0;
-- J : <t>;
-- begin
-- for K in P'Range loop
-- exit when L < P (K);
-- J := Character'Pos (S (P (K) + F));
-- F1 := (F1 + Natural (T1 (K) * J)) mod <n>;
-- F2 := (F2 + Natural (T2 (K) * J)) mod <n>;
-- end loop;
-- return (Natural (G (F1)) + Natural (G (F2))) mod <m>;
-- end Hash;
type Table_Name is
(Character_Position,
Used_Character_Set,
Function_Table_1,
Function_Table_2,
Graph_Table);
procedure Define
(Name : Table_Name;
Item_Size : out Natural;
Length_1 : out Natural;
Length_2 : out Natural);
-- Return the definition of the table Name. This includes the length of
-- dimensions 1 and 2 and the size of an unsigned integer item. When
-- Length_2 is zero, the table has only one dimension. All the ranges start
-- from zero.
function Value
(Name : Table_Name;
J : Natural;
K : Natural := 0) return Natural;
-- Return the value of the component (I, J) of the table Name. When the
-- table has only one dimension, J is ignored.
end GNAT.Perfect_Hash_Generators;
|
-- SPDX-FileCopyrightText: 2019 Max Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-------------------------------------------------------------
with Program.Lexical_Elements;
with Program.Elements.Parameter_Specifications;
with Program.Elements.Anonymous_Access_To_Procedures;
with Program.Element_Visitors;
package Program.Nodes.Anonymous_Access_To_Procedures is
pragma Preelaborate;
type Anonymous_Access_To_Procedure is
new Program.Nodes.Node
and Program.Elements.Anonymous_Access_To_Procedures
.Anonymous_Access_To_Procedure
and Program.Elements.Anonymous_Access_To_Procedures
.Anonymous_Access_To_Procedure_Text
with private;
function Create
(Not_Token : Program.Lexical_Elements.Lexical_Element_Access;
Null_Token : Program.Lexical_Elements.Lexical_Element_Access;
Access_Token : not null Program.Lexical_Elements
.Lexical_Element_Access;
Protected_Token : Program.Lexical_Elements.Lexical_Element_Access;
Procedure_Token : not null Program.Lexical_Elements
.Lexical_Element_Access;
Left_Bracket_Token : Program.Lexical_Elements.Lexical_Element_Access;
Parameters : Program.Elements.Parameter_Specifications
.Parameter_Specification_Vector_Access;
Right_Bracket_Token : Program.Lexical_Elements.Lexical_Element_Access)
return Anonymous_Access_To_Procedure;
type Implicit_Anonymous_Access_To_Procedure is
new Program.Nodes.Node
and Program.Elements.Anonymous_Access_To_Procedures
.Anonymous_Access_To_Procedure
with private;
function Create
(Parameters : Program.Elements.Parameter_Specifications
.Parameter_Specification_Vector_Access;
Is_Part_Of_Implicit : Boolean := False;
Is_Part_Of_Inherited : Boolean := False;
Is_Part_Of_Instance : Boolean := False;
Has_Not_Null : Boolean := False;
Has_Protected : Boolean := False)
return Implicit_Anonymous_Access_To_Procedure
with Pre =>
Is_Part_Of_Implicit or Is_Part_Of_Inherited or Is_Part_Of_Instance;
private
type Base_Anonymous_Access_To_Procedure is
abstract new Program.Nodes.Node
and Program.Elements.Anonymous_Access_To_Procedures
.Anonymous_Access_To_Procedure
with record
Parameters : Program.Elements.Parameter_Specifications
.Parameter_Specification_Vector_Access;
end record;
procedure Initialize
(Self : in out Base_Anonymous_Access_To_Procedure'Class);
overriding procedure Visit
(Self : not null access Base_Anonymous_Access_To_Procedure;
Visitor : in out Program.Element_Visitors.Element_Visitor'Class);
overriding function Parameters
(Self : Base_Anonymous_Access_To_Procedure)
return Program.Elements.Parameter_Specifications
.Parameter_Specification_Vector_Access;
overriding function Is_Anonymous_Access_To_Procedure
(Self : Base_Anonymous_Access_To_Procedure)
return Boolean;
overriding function Is_Anonymous_Access_Definition
(Self : Base_Anonymous_Access_To_Procedure)
return Boolean;
overriding function Is_Definition
(Self : Base_Anonymous_Access_To_Procedure)
return Boolean;
type Anonymous_Access_To_Procedure is
new Base_Anonymous_Access_To_Procedure
and Program.Elements.Anonymous_Access_To_Procedures
.Anonymous_Access_To_Procedure_Text
with record
Not_Token : Program.Lexical_Elements.Lexical_Element_Access;
Null_Token : Program.Lexical_Elements.Lexical_Element_Access;
Access_Token : not null Program.Lexical_Elements
.Lexical_Element_Access;
Protected_Token : Program.Lexical_Elements.Lexical_Element_Access;
Procedure_Token : not null Program.Lexical_Elements
.Lexical_Element_Access;
Left_Bracket_Token : Program.Lexical_Elements.Lexical_Element_Access;
Right_Bracket_Token : Program.Lexical_Elements.Lexical_Element_Access;
end record;
overriding function To_Anonymous_Access_To_Procedure_Text
(Self : in out Anonymous_Access_To_Procedure)
return Program.Elements.Anonymous_Access_To_Procedures
.Anonymous_Access_To_Procedure_Text_Access;
overriding function Not_Token
(Self : Anonymous_Access_To_Procedure)
return Program.Lexical_Elements.Lexical_Element_Access;
overriding function Null_Token
(Self : Anonymous_Access_To_Procedure)
return Program.Lexical_Elements.Lexical_Element_Access;
overriding function Access_Token
(Self : Anonymous_Access_To_Procedure)
return not null Program.Lexical_Elements.Lexical_Element_Access;
overriding function Protected_Token
(Self : Anonymous_Access_To_Procedure)
return Program.Lexical_Elements.Lexical_Element_Access;
overriding function Procedure_Token
(Self : Anonymous_Access_To_Procedure)
return not null Program.Lexical_Elements.Lexical_Element_Access;
overriding function Left_Bracket_Token
(Self : Anonymous_Access_To_Procedure)
return Program.Lexical_Elements.Lexical_Element_Access;
overriding function Right_Bracket_Token
(Self : Anonymous_Access_To_Procedure)
return Program.Lexical_Elements.Lexical_Element_Access;
overriding function Has_Not_Null
(Self : Anonymous_Access_To_Procedure)
return Boolean;
overriding function Has_Protected
(Self : Anonymous_Access_To_Procedure)
return Boolean;
type Implicit_Anonymous_Access_To_Procedure is
new Base_Anonymous_Access_To_Procedure
with record
Is_Part_Of_Implicit : Boolean;
Is_Part_Of_Inherited : Boolean;
Is_Part_Of_Instance : Boolean;
Has_Not_Null : Boolean;
Has_Protected : Boolean;
end record;
overriding function To_Anonymous_Access_To_Procedure_Text
(Self : in out Implicit_Anonymous_Access_To_Procedure)
return Program.Elements.Anonymous_Access_To_Procedures
.Anonymous_Access_To_Procedure_Text_Access;
overriding function Is_Part_Of_Implicit
(Self : Implicit_Anonymous_Access_To_Procedure)
return Boolean;
overriding function Is_Part_Of_Inherited
(Self : Implicit_Anonymous_Access_To_Procedure)
return Boolean;
overriding function Is_Part_Of_Instance
(Self : Implicit_Anonymous_Access_To_Procedure)
return Boolean;
overriding function Has_Not_Null
(Self : Implicit_Anonymous_Access_To_Procedure)
return Boolean;
overriding function Has_Protected
(Self : Implicit_Anonymous_Access_To_Procedure)
return Boolean;
end Program.Nodes.Anonymous_Access_To_Procedures;
|
-- -*- Mode: Ada -*-
-- Filename : multiboot.adb
-- Description : Provides access to the multiboot information from GRUB
-- Legacy and GRUB 2.
-- Author : Luke A. Guest
-- Created On : Sat Jun 16 12:27:30 2012
-- Licence : See LICENCE in the root directory.
with System.Address_To_Access_Conversions;
with Ada.Unchecked_Conversion;
package body Multiboot is
function Get_Symbols_Variant return Symbols_Variant is
begin
if Info.Flags.Symbol_Table and not Info.Flags.Section_Header_Table then
return Aout;
elsif not Info.Flags.Symbol_Table and
Info.Flags.Section_Header_Table
then
return ELF;
else
raise Program_Error;
end if;
end Get_Symbols_Variant;
-- This forward declaration is to keep GNAT happy.
function Unsigned_32_To_Entry_Access
(Addr : Unsigned_32) return Memory_Map_Entry_Access;
function To_Address is new Ada.Unchecked_Conversion
(Source => Unsigned_32,
Target => System.Address);
function To_Unsigned_32 is new Ada.Unchecked_Conversion
(Source => System.Address,
Target => Unsigned_32);
package Convert is new System.Address_To_Access_Conversions
(Object => Memory_Map_Entry_Access);
function To_Entry_Access is new Ada.Unchecked_Conversion
(Source => Convert.Object_Pointer,
Target => Memory_Map_Entry_Access);
function To_Object_Pointer is new Ada.Unchecked_Conversion
(Source => Memory_Map_Entry_Access,
Target => Convert.Object_Pointer);
function Unsigned_32_To_Entry_Access
(Addr : Unsigned_32) return Memory_Map_Entry_Access is
begin
return To_Entry_Access (Convert.To_Pointer
(To_Address (Addr)));
end Unsigned_32_To_Entry_Access;
function First_Memory_Map_Entry return Memory_Map_Entry_Access is
begin
if not Info.Flags.BIOS_Memory_Map then
return null;
end if;
if Info.Memory_Map.Addr = 0 then
return null;
end if;
return Unsigned_32_To_Entry_Access (Info.Memory_Map.Addr);
end First_Memory_Map_Entry;
function Next_Memory_Map_Entry
(Current : Memory_Map_Entry_Access) return Memory_Map_Entry_Access is
Current_Addr : constant Unsigned_32 := To_Unsigned_32
(Convert.To_Address
(To_Object_Pointer (Current)));
Next_Addr : Unsigned_32 := Unsigned_32'First;
begin
if Current_Addr >= Info.Memory_Map.Addr + Info.Memory_Map.Length then
return null;
end if;
Next_Addr := Current_Addr + Current.Size +
(Unsigned_32'Size / System.Storage_Unit);
return Unsigned_32_To_Entry_Access (Next_Addr);
end Next_Memory_Map_Entry;
package APM_Table_Convert is new System.Address_To_Access_Conversions
(Object => APM_Table_Access);
function To_APM_Table_Access is new Ada.Unchecked_Conversion
(Source => APM_Table_Convert.Object_Pointer,
Target => APM_Table_Access);
function Get_APM_Table return APM_Table_Access is
begin
if not Info.Flags.APM_Table then
return null;
end if;
return To_APM_Table_Access
(APM_Table_Convert.To_Pointer (Info.APM));
end Get_APM_Table;
end Multiboot;
|
-- This package has been generated automatically by GNATtest.
-- Do not edit any part of it, see GNATtest documentation for more details.
-- begin read only
with Gnattest_Generated;
package Stories.Test_Data.Tests.StepData_Container.Test_Data.Tests is
type Test is new GNATtest_Generated.GNATtest_Standard.Stories.Test_Data
.Tests
.StepData_Container
.Test_Data
.New_Test with
null record;
end Stories.Test_Data.Tests.StepData_Container.Test_Data.Tests;
-- end read only
|
-- C4A006A.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 CONSTRAINT_ERROR IS RAISED FOR A UNIVERSAL_INTEGER
-- EXPRESSION CONTAINING AN EXPONENTIATION OPERATOR IF THE EXPONENT
-- HAS A NEGATIVE VALUE.
-- BAW 9/29/80
-- SPS 4/7/82
-- TBN 10/23/85 RENAMED FROM B4A006A-B.ADA. REVISED TO CHECK FOR
-- CONSTRAINT_ERROR WHEN EXPONENT IS NEGATIVE IN
-- A NONSTATIC CONTEXT.
WITH REPORT; USE REPORT;
PROCEDURE C4A006A IS
BEGIN
TEST ("C4A006A", "CHECK THAT A NEGATIVE EXPONENT IN " &
"UNIVERSAL_INTEGER EXPONENTIATION RAISES " &
"CONSTRAINT_ERROR");
DECLARE
B : BOOLEAN;
BEGIN
B := (1 ** IDENT_INT(-1)) = 1;
FAILED ("EXCEPTION NOT RAISED");
IF NOT B THEN
FAILED ("(1 ** (-1)) /= 1");
END IF;
EXCEPTION
WHEN CONSTRAINT_ERROR =>
NULL;
WHEN OTHERS =>
FAILED ("WRONG EXCEPTION RAISED");
END;
RESULT;
END C4A006A;
|
-----------------------------------------------------------------------
-- awa-storages -- Storage module
-- Copyright (C) 2012, 2015, 2016 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with Ada.Strings.Unbounded;
with Ada.Finalization;
with ADO;
-- == Introduction ==
-- The <b>Storages</b> module provides a set of storage services allowing an application
-- to store data files, documents, images in a persistent area. The persistent store can
-- be on a file system, in the database or provided by a remote service such as
-- Amazon Simple Storage Service.
--
-- == Creating a storage ==
-- A data in the storage is represented by a `Storage_Ref` instance. The data itself
-- can be physically stored in a file system (`FILE` mode), in the database (`DATABASE`
-- mode) or on a remote server (`URL` mode). To put a file in the storage space, first create
-- the storage object instance:
--
-- Data : AWA.Storages.Models.Storage_Ref;
--
-- Then setup the storage mode that you want. The storage service uses this information
-- to save the data in a file, in the database or in a remote service (in the future).
-- To save a file in the store, we can use the `Save` operation of the storage service.
-- It will read the file and put in in the corresponding persistent store (the database
-- in this example).
--
-- Service.Save (Into => Data, Path => Path_To_The_File,
-- Storage => AWA.Storages.Models.DATABASE);
--
-- Upon successful completion, the storage instance `Data` will be allocated a unique
-- identifier that can be retrieved by `Get_Id` or `Get_Key`.
--
-- == Getting the data ==
-- Several operations are defined to retrieve the data. Each of them has been designed
-- to optimize the retrieval and
--
-- * The data can be retrieved in a local file.
-- This mode is useful if an external program must be launched and be able to read
-- the file. If the storage mode of the data is `FILE`, the path of the file on
-- the storage file system is used. For other storage modes, the file is saved
-- in a temporary file. In that case the `Store_Local` database table is used
-- to track such locally saved data.
--
-- * The data can be returned as a stream.
-- When the application has to read the data, opening a read stream connection is
-- the most efficient mechanism.
--
-- === Local file ===
-- To access the data by using a local file, we must define a local storage reference:
--
-- Data : AWA.Storages.Models.Store_Local_Ref;
--
-- and use the `Load` operation with the storage identifier. When loading locally we
-- also indicate whether the file will be read or written. A file that is in `READ` mode
-- can be shared by several tasks or processes. A file that is in `WRITE` mode will have
-- a specific copy for the caller. An optional expiration parameter indicate when the
-- local file representation can expire.
--
-- Service.Load (From => Id, Into => Data, Mode => READ, Expire => ONE_DAY);
--
-- Once the load operation succeeded, the data is stored on the file system and
-- the local path is obtained by using the `Get_Path` operation:
--
-- Path : constant String := Data.Get_Path;
--
-- @include awa-storages-modules.ads
-- @include awa-storages-services.ads
--
-- == Ada Beans ==
-- @include storages.xml
--
-- @include awa-storages-servlets.ads
--
-- == Model ==
-- [images/awa_storage_model.png]
--
-- @include storage-list.xml
-- @include folder-queries.xml
-- @include storage-queries.xml
--
package AWA.Storages is
type Storage_Type is (DATABASE, FILE, URL, CACHE, TMP);
type Storage_File (Storage : Storage_Type) is tagged limited private;
-- Get the path to get access to the file.
function Get_Path (File : in Storage_File) return String;
-- Set the file path for the FILE, URL, CACHE or TMP storage.
procedure Set (File : in out Storage_File;
Path : in String);
-- Set the file database storage identifier.
procedure Set (File : in out Storage_File;
Workspace : in ADO.Identifier;
Store : in ADO.Identifier);
private
type Storage_File (Storage : Storage_Type) is limited
new Ada.Finalization.Limited_Controlled with record
case Storage is
when DATABASE =>
Workspace : ADO.Identifier;
Store : ADO.Identifier;
when FILE | URL | CACHE | TMP =>
Path : Ada.Strings.Unbounded.Unbounded_String;
end case;
end record;
overriding
procedure Finalize (File : in out Storage_File);
end AWA.Storages;
|
with
gel.Forge,
gel.Window.lumen,
gel.Applet.gui_world,
gel.Camera,
gel.Sprite,
physics.Model,
openGL.Model.box.colored,
openGL.Palette,
ada.Text_IO,
ada.Exceptions;
pragma unreferenced (gel.window.lumen);
procedure launch_drop_Box_on_Box
--
-- Drops a box onto a box 'terrain'.
--
is
use gel.Applet, openGL.Model.box,
openGL, opengl.Palette,
ada.Text_IO;
the_Applet : constant gel.Applet.gui_World.view
:= gel.Forge.new_gui_Applet ("drop Ball on Box");
the_ground_graphics_Model : constant openGL.Model.box.colored.view
:= openGL.Model.box.colored.new_Box (Size => (10.0, 0.5, 10.0),
Faces => (Front => (Colors => (others => (Red, Opaque))),
Rear => (Colors => (others => (Blue, Opaque))),
Upper => (Colors => (others => (Green, Opaque))),
Lower => (Colors => (others => (Yellow, Opaque))),
Left => (Colors => (others => (Cyan, Opaque))),
Right => (Colors => (others => (Magenta, Opaque)))));
the_ground_physics_Model : constant physics.Model.view
:= physics.Model.Forge.new_physics_Model (shape_Info => (Kind => physics.Model.cube,
half_Extents => (5.0, 0.25, 5.0)));
the_Ground : constant gel.Sprite.view
:= gel.Sprite.forge.new_Sprite ("demo.Ground",
gel.Sprite.World_view (the_Applet.gui_World),
math.Origin_3D,
the_ground_graphics_Model,
the_ground_physics_Model);
the_box_physics_Model : constant physics.Model.view
:= physics.Model.forge.new_physics_Model (shape_Info => (Kind => physics.Model.cube,
half_Extents => (1.0, 0.5, 1.0)),
Mass => 1.0);
the_box_graphics_Model : constant openGL.Model.box.colored.view
:= openGL.Model.box.colored.new_Box (Size => (1.0, 1.0, 1.0),
Faces => (Front => (Colors => (others => (Red, Opaque))),
Rear => (Colors => (others => (Blue, Opaque))),
Upper => (Colors => (others => (dark_Green, Opaque))),
Lower => (Colors => (others => (Yellow, Opaque))),
Left => (Colors => (others => (Cyan, Opaque))),
Right => (Colors => (others => (Magenta, Opaque)))));
the_Box : constant gel.Sprite.view
:= gel.Sprite.forge.new_Sprite ("demo.Box",
gel.Sprite.World_view (the_Applet.gui_World),
math.Origin_3D,
the_box_graphics_Model,
the_box_physics_Model);
begin
new_Line;
put_Line ("Use arrow keys and PgUp/PgDn to move the camera.");
new_Line;
the_Applet.gui_Camera.Site_is ((0.0, 5.0, 15.0)); -- Position the camera.
the_Applet.enable_simple_Dolly (1); -- Enable user camera control via keyboards.
the_Applet.enable_Mouse (detect_Motion => False); -- Enable the mouse.
the_Applet.gui_World.add (the_Ground, and_children => False); -- Add ground.
the_Ground.Site_is (math.Origin_3D);
the_Applet.gui_World.add (the_Box, and_Children => False); -- Add ball.
the_Box.Site_is ((0.0, 10.0, 0.0));
while the_Applet.is_open
loop
the_Applet.freshen; -- Handle any new events and update the screen.
end loop;
the_Applet.destroy;
exception
when E : others =>
new_Line;
put_Line ("Unhandled exception in main thread ...");
put_Line (ada.Exceptions.exception_Information (E));
new_Line;
end launch_drop_Box_on_Box;
|
-- $Id: DynArrDrv.mi,v 1.1 1991/11/21 14:33:17 grosch rel $
-- $Log: DynArrDrv.mi,v $
-- Ich, Doktor Josef Grosch, Informatiker, Aug. 1994
with DynArray, Text_Io; use Text_Io;
procedure DynArrDr is
package Int_Io is new Integer_IO (Integer); use Int_Io;
package Real_Io is new Float_IO (Float ); use Real_Io;
package Int_DA is new DynArray (Integer); use Int_DA;
package Float_DA is new DynArray (Float ); use Float_DA;
p : Int_DA.FlexArray;
q : Float_DA.FlexArray;
s : Integer;
begin
s := 10;
MakeArray (p, s);
for i in 1 .. s loop p (i - 1) := i; end loop;
for j in 1 .. 13 loop
ExtendArray (p, s);
for i in s / 2 + 1 .. s loop p (i - 1) := i; end loop;
for i in 1 .. s loop
if p (i - 1) /= i then
Put (Standard_Output, "Error j, i, p (i - 1) =");
Put (Standard_Output, j, 5);
Put (Standard_Output, i, 5);
Put (Standard_Output, p (i - 1), 10);
New_Line (Standard_Output);
end if;
end loop;
Put (Standard_Output, "j, size = ");
Put (Standard_Output, j, 5);
Put (Standard_Output, s, 10);
Put (Standard_Output, " ok");
New_Line (Standard_Output);
end loop;
ReleaseArray (p, s);
s := 10;
MakeArray (q, s);
for i in 1 .. s loop q (i - 1) := Float (i); end loop;
for j in 1 .. 13 loop
ExtendArray (q, s);
for i in s / 2 + 1 .. s loop q (i - 1) := Float (i); end loop;
for i in 1 .. s loop
if q (i - 1) /= Float (i) then
Put (Standard_Output, "Error j, i, q (i - 1) =");
Put (Standard_Output, j, 5);
Put (Standard_Output, i, 5);
Put (Standard_Output, q (i - 1), 10);
New_Line (Standard_Output);
end if;
end loop;
Put (Standard_Output, "j, size = ");
Put (Standard_Output, j, 5);
Put (Standard_Output, s, 10);
Put (Standard_Output, " ok");
New_Line (Standard_Output);
end loop;
ReleaseArray (q, s);
end DynArrDr;
|
-----------------------------------------------------------------------
-- awa-users-filters -- Specific filters for authentication and key verification
-- Copyright (C) 2011, 2012, 2015, 2019 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with Ada.Strings.Unbounded;
with Util.Log.Loggers;
with Util.Beans.Objects;
with Servlet.Sessions;
with Servlet.Cookies;
with AWA.Applications;
with AWA.Users.Filters;
package body AWA.Sysadmin.Filters is
Log : constant Util.Log.Loggers.Logger := Util.Log.Loggers.Create ("AWA.Sysadmin.Filters");
-- ------------------------------
-- Initialize the filter and configure the redirection URIs.
-- ------------------------------
overriding
procedure Initialize (Filter : in out Auth_Filter;
Config : in Servlet.Core.Filter_Config) is
Context : constant Servlet.Core.Servlet_Registry_Access
:= Servlet.Core.Get_Servlet_Context (Config);
URI : constant String
:= Servlet.Core.Get_Init_Parameter (Config,
AWA.Users.Filters.AUTH_FILTER_REDIRECT_PARAM);
begin
Filter.Login_URI := To_Unbounded_String (URI);
end Initialize;
-- ------------------------------
-- Display or redirects the user to the login page. This procedure is called when
-- the user is not authenticated.
-- ------------------------------
procedure Do_Login (Filter : in Auth_Filter;
Request : in out Servlet.Requests.Request'Class;
Response : in out Servlet.Responses.Response'Class) is
use Servlet;
Login_URI : constant String := To_String (Filter.Login_URI);
Context : constant String := Request.Get_Context_Path;
Servlet : constant String := Request.Get_Servlet_Path;
URL : constant String := Context & Servlet & Request.Get_Path_Info;
C : Cookies.Cookie
:= Cookies.Create (AWA.Users.Filters.REDIRECT_COOKIE, URL);
begin
Log.Info ("Sysadmin user is not logged, redirecting to {0}", Login_URI);
Cookies.Set_Path (C, Request.Get_Context_Path);
Cookies.Set_Max_Age (C, 86400);
Response.Add_Cookie (Cookie => C);
if Request.Get_Header ("X-Requested-With") = "" then
Response.Send_Redirect (Location => Context & Login_URI);
else
Response.Send_Error (Responses.SC_UNAUTHORIZED);
end if;
end Do_Login;
-- ------------------------------
-- Filter a request which contains an access key and verify that the
-- key is valid and identifies a user. Once the user is known, create
-- a session and setup the user principal.
--
-- If the access key is missing or invalid, redirect to the
-- <b>Invalid_Key_URI</b> associated with the filter.
-- ------------------------------
overriding
procedure Do_Filter (Filter : in Auth_Filter;
Request : in out Servlet.Requests.Request'Class;
Response : in out Servlet.Responses.Response'Class;
Chain : in out Servlet.Core.Filter_Chain) is
Session : Servlet.Sessions.Session := Request.Get_Session;
Is_Admin : Util.Beans.Objects.Object;
begin
if not Session.Is_Valid then
Response.Set_Status (Servlet.Responses.SC_UNAUTHORIZED);
return;
end if;
Is_Admin := Session.Get_Attribute (ADMIN_AUTH_BEAN);
if Util.Beans.Objects.Is_Null (Is_Admin) then
if Filter.Login_URI /= Request.Get_Path then
Filter.Do_Login (Request, Response);
return;
end if;
end if;
-- Request is authorized, proceed to the next filter.
Servlet.Core.Do_Filter (Chain => Chain,
Request => Request,
Response => Response);
end Do_Filter;
end AWA.Sysadmin.Filters;
|
------------------------------------------------------------------------------
-- --
-- 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.Internals.UML_Classes;
with AMF.String_Collections;
with AMF.UML.Behaviors.Collections;
with AMF.UML.Classes.Collections;
with AMF.UML.Classifier_Template_Parameters;
with AMF.UML.Classifiers.Collections;
with AMF.UML.Collaboration_Uses.Collections;
with AMF.UML.Component_Realizations.Collections;
with AMF.UML.Components;
with AMF.UML.Connectable_Elements.Collections;
with AMF.UML.Connectors.Collections;
with AMF.UML.Constraints.Collections;
with AMF.UML.Dependencies.Collections;
with AMF.UML.Element_Imports.Collections;
with AMF.UML.Extensions.Collections;
with AMF.UML.Features.Collections;
with AMF.UML.Generalization_Sets.Collections;
with AMF.UML.Generalizations.Collections;
with AMF.UML.Interface_Realizations.Collections;
with AMF.UML.Interfaces.Collections;
with AMF.UML.Named_Elements.Collections;
with AMF.UML.Namespaces;
with AMF.UML.Operations.Collections;
with AMF.UML.Package_Imports.Collections;
with AMF.UML.Packageable_Elements.Collections;
with AMF.UML.Packages.Collections;
with AMF.UML.Parameterable_Elements.Collections;
with AMF.UML.Ports.Collections;
with AMF.UML.Properties.Collections;
with AMF.UML.Receptions.Collections;
with AMF.UML.Redefinable_Elements.Collections;
with AMF.UML.Redefinable_Template_Signatures;
with AMF.UML.String_Expressions;
with AMF.UML.Substitutions.Collections;
with AMF.UML.Template_Bindings.Collections;
with AMF.UML.Template_Parameters;
with AMF.UML.Template_Signatures;
with AMF.UML.Types;
with AMF.UML.Use_Cases.Collections;
with AMF.Visitors;
package AMF.Internals.UML_Components is
type UML_Component_Proxy is
limited new AMF.Internals.UML_Classes.UML_Class_Proxy
and AMF.UML.Components.UML_Component with null record;
overriding function Get_Is_Indirectly_Instantiated
(Self : not null access constant UML_Component_Proxy)
return Boolean;
-- Getter of Component::isIndirectlyInstantiated.
--
-- isIndirectlyInstantiated : Boolean {default = true} The kind of
-- instantiation that applies to a Component. If false, the component is
-- instantiated as an addressable object. If true, the Component is
-- defined at design-time, but at run-time (or execution-time) an object
-- specified by the Component does not exist, that is, the component is
-- instantiated indirectly, through the instantiation of its realizing
-- classifiers or parts. Several standard stereotypes use this meta
-- attribute (e.g., «specification», «focus», «subsystem»).
overriding procedure Set_Is_Indirectly_Instantiated
(Self : not null access UML_Component_Proxy;
To : Boolean);
-- Setter of Component::isIndirectlyInstantiated.
--
-- isIndirectlyInstantiated : Boolean {default = true} The kind of
-- instantiation that applies to a Component. If false, the component is
-- instantiated as an addressable object. If true, the Component is
-- defined at design-time, but at run-time (or execution-time) an object
-- specified by the Component does not exist, that is, the component is
-- instantiated indirectly, through the instantiation of its realizing
-- classifiers or parts. Several standard stereotypes use this meta
-- attribute (e.g., «specification», «focus», «subsystem»).
overriding function Get_Packaged_Element
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Packageable_Elements.Collections.Set_Of_UML_Packageable_Element;
-- Getter of Component::packagedElement.
--
-- The set of PackageableElements that a Component owns. In the namespace
-- of a component, all model elements that are involved in or related to
-- its definition may be owned or imported explicitly. These may include
-- e.g. Classes, Interfaces, Components, Packages, Use cases, Dependencies
-- (e.g. mappings), and Artifacts.
overriding function Get_Provided
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Interfaces.Collections.Set_Of_UML_Interface;
-- Getter of Component::provided.
--
-- The interfaces that the component exposes to its environment. These
-- interfaces may be Realized by the Component or any of its
-- realizingClassifiers, or they may be the Interfaces that are provided
-- by its public Ports.
overriding function Get_Realization
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Component_Realizations.Collections.Set_Of_UML_Component_Realization;
-- Getter of Component::realization.
--
-- The set of Realizations owned by the Component. Realizations reference
-- the Classifiers of which the Component is an abstraction; i.e., that
-- realize its behavior.
overriding function Get_Required
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Interfaces.Collections.Set_Of_UML_Interface;
-- Getter of Component::required.
--
-- The interfaces that the component requires from other components in its
-- environment in order to be able to offer its full set of provided
-- functionality. These interfaces may be used by the Component or any of
-- its realizingClassifiers, or they may be the Interfaces that are
-- required by its public Ports.
overriding function Get_Extension
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Extensions.Collections.Set_Of_UML_Extension;
-- Getter of Class::extension.
--
-- References the Extensions that specify additional properties of the
-- metaclass. The property is derived from the extensions whose memberEnds
-- are typed by the Class.
overriding function Get_Is_Abstract
(Self : not null access constant UML_Component_Proxy)
return Boolean;
-- Getter of Class::isAbstract.
--
-- True when a class is abstract.
-- If true, the Classifier does not provide a complete declaration and can
-- typically not be instantiated. An abstract classifier is intended to be
-- used by other classifiers e.g. as the target of general
-- metarelationships or generalization relationships.
overriding function Get_Is_Active
(Self : not null access constant UML_Component_Proxy)
return Boolean;
-- Getter of Class::isActive.
--
-- Determines whether an object specified by this class is active or not.
-- If true, then the owning class is referred to as an active class. If
-- false, then such a class is referred to as a passive class.
overriding procedure Set_Is_Active
(Self : not null access UML_Component_Proxy;
To : Boolean);
-- Setter of Class::isActive.
--
-- Determines whether an object specified by this class is active or not.
-- If true, then the owning class is referred to as an active class. If
-- false, then such a class is referred to as a passive class.
overriding function Get_Nested_Classifier
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Classifiers.Collections.Ordered_Set_Of_UML_Classifier;
-- Getter of Class::nestedClassifier.
--
-- References all the Classifiers that are defined (nested) within the
-- Class.
overriding function Get_Owned_Attribute
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Properties.Collections.Ordered_Set_Of_UML_Property;
-- Getter of Class::ownedAttribute.
--
-- The attributes (i.e. the properties) owned by the class.
overriding function Get_Owned_Operation
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Operations.Collections.Ordered_Set_Of_UML_Operation;
-- Getter of Class::ownedOperation.
--
-- The operations owned by the class.
overriding function Get_Owned_Reception
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Receptions.Collections.Set_Of_UML_Reception;
-- Getter of Class::ownedReception.
--
-- Receptions that objects of this class are willing to accept.
overriding function Get_Super_Class
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Classes.Collections.Set_Of_UML_Class;
-- Getter of Class::superClass.
--
-- This gives the superclasses of a class.
overriding function Get_Classifier_Behavior
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Behaviors.UML_Behavior_Access;
-- Getter of BehavioredClassifier::classifierBehavior.
--
-- A behavior specification that specifies the behavior of the classifier
-- itself.
overriding procedure Set_Classifier_Behavior
(Self : not null access UML_Component_Proxy;
To : AMF.UML.Behaviors.UML_Behavior_Access);
-- Setter of BehavioredClassifier::classifierBehavior.
--
-- A behavior specification that specifies the behavior of the classifier
-- itself.
overriding function Get_Interface_Realization
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Interface_Realizations.Collections.Set_Of_UML_Interface_Realization;
-- Getter of BehavioredClassifier::interfaceRealization.
--
-- The set of InterfaceRealizations owned by the BehavioredClassifier.
-- Interface realizations reference the Interfaces of which the
-- BehavioredClassifier is an implementation.
overriding function Get_Owned_Behavior
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Behaviors.Collections.Set_Of_UML_Behavior;
-- Getter of BehavioredClassifier::ownedBehavior.
--
-- References behavior specifications owned by a classifier.
overriding function Get_Attribute
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Properties.Collections.Set_Of_UML_Property;
-- Getter of Classifier::attribute.
--
-- Refers to all of the Properties that are direct (i.e. not inherited or
-- imported) attributes of the classifier.
overriding function Get_Collaboration_Use
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Collaboration_Uses.Collections.Set_Of_UML_Collaboration_Use;
-- Getter of Classifier::collaborationUse.
--
-- References the collaboration uses owned by the classifier.
overriding function Get_Feature
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Features.Collections.Set_Of_UML_Feature;
-- Getter of Classifier::feature.
--
-- Specifies each feature defined in the classifier.
-- Note that there may be members of the Classifier that are of the type
-- Feature but are not included in this association, e.g. inherited
-- features.
overriding function Get_General
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Classifiers.Collections.Set_Of_UML_Classifier;
-- Getter of Classifier::general.
--
-- Specifies the general Classifiers for this Classifier.
-- References the general classifier in the Generalization relationship.
overriding function Get_Generalization
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Generalizations.Collections.Set_Of_UML_Generalization;
-- Getter of Classifier::generalization.
--
-- Specifies the Generalization relationships for this Classifier. These
-- Generalizations navigaten to more general classifiers in the
-- generalization hierarchy.
overriding function Get_Inherited_Member
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Named_Elements.Collections.Set_Of_UML_Named_Element;
-- Getter of Classifier::inheritedMember.
--
-- Specifies all elements inherited by this classifier from the general
-- classifiers.
overriding function Get_Is_Final_Specialization
(Self : not null access constant UML_Component_Proxy)
return Boolean;
-- Getter of Classifier::isFinalSpecialization.
--
-- If true, the Classifier cannot be specialized by generalization. Note
-- that this property is preserved through package merge operations; that
-- is, the capability to specialize a Classifier (i.e.,
-- isFinalSpecialization =false) must be preserved in the resulting
-- Classifier of a package merge operation where a Classifier with
-- isFinalSpecialization =false is merged with a matching Classifier with
-- isFinalSpecialization =true: the resulting Classifier will have
-- isFinalSpecialization =false.
overriding procedure Set_Is_Final_Specialization
(Self : not null access UML_Component_Proxy;
To : Boolean);
-- Setter of Classifier::isFinalSpecialization.
--
-- If true, the Classifier cannot be specialized by generalization. Note
-- that this property is preserved through package merge operations; that
-- is, the capability to specialize a Classifier (i.e.,
-- isFinalSpecialization =false) must be preserved in the resulting
-- Classifier of a package merge operation where a Classifier with
-- isFinalSpecialization =false is merged with a matching Classifier with
-- isFinalSpecialization =true: the resulting Classifier will have
-- isFinalSpecialization =false.
overriding function Get_Owned_Template_Signature
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Redefinable_Template_Signatures.UML_Redefinable_Template_Signature_Access;
-- Getter of Classifier::ownedTemplateSignature.
--
-- The optional template signature specifying the formal template
-- parameters.
overriding procedure Set_Owned_Template_Signature
(Self : not null access UML_Component_Proxy;
To : AMF.UML.Redefinable_Template_Signatures.UML_Redefinable_Template_Signature_Access);
-- Setter of Classifier::ownedTemplateSignature.
--
-- The optional template signature specifying the formal template
-- parameters.
overriding function Get_Owned_Use_Case
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Use_Cases.Collections.Set_Of_UML_Use_Case;
-- Getter of Classifier::ownedUseCase.
--
-- References the use cases owned by this classifier.
overriding function Get_Powertype_Extent
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Generalization_Sets.Collections.Set_Of_UML_Generalization_Set;
-- Getter of Classifier::powertypeExtent.
--
-- Designates the GeneralizationSet of which the associated Classifier is
-- a power type.
overriding function Get_Redefined_Classifier
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Classifiers.Collections.Set_Of_UML_Classifier;
-- Getter of Classifier::redefinedClassifier.
--
-- References the Classifiers that are redefined by this Classifier.
overriding function Get_Representation
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Collaboration_Uses.UML_Collaboration_Use_Access;
-- Getter of Classifier::representation.
--
-- References a collaboration use which indicates the collaboration that
-- represents this classifier.
overriding procedure Set_Representation
(Self : not null access UML_Component_Proxy;
To : AMF.UML.Collaboration_Uses.UML_Collaboration_Use_Access);
-- Setter of Classifier::representation.
--
-- References a collaboration use which indicates the collaboration that
-- represents this classifier.
overriding function Get_Substitution
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Substitutions.Collections.Set_Of_UML_Substitution;
-- Getter of Classifier::substitution.
--
-- References the substitutions that are owned by this Classifier.
overriding function Get_Template_Parameter
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Classifier_Template_Parameters.UML_Classifier_Template_Parameter_Access;
-- Getter of Classifier::templateParameter.
--
-- The template parameter that exposes this element as a formal parameter.
overriding procedure Set_Template_Parameter
(Self : not null access UML_Component_Proxy;
To : AMF.UML.Classifier_Template_Parameters.UML_Classifier_Template_Parameter_Access);
-- Setter of Classifier::templateParameter.
--
-- The template parameter that exposes this element as a formal parameter.
overriding function Get_Use_Case
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Use_Cases.Collections.Set_Of_UML_Use_Case;
-- Getter of Classifier::useCase.
--
-- The set of use cases for which this Classifier is the subject.
overriding function Get_Element_Import
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Element_Imports.Collections.Set_Of_UML_Element_Import;
-- Getter of Namespace::elementImport.
--
-- References the ElementImports owned by the Namespace.
overriding function Get_Imported_Member
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Packageable_Elements.Collections.Set_Of_UML_Packageable_Element;
-- Getter of Namespace::importedMember.
--
-- References the PackageableElements that are members of this Namespace
-- as a result of either PackageImports or ElementImports.
overriding function Get_Member
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Named_Elements.Collections.Set_Of_UML_Named_Element;
-- Getter of Namespace::member.
--
-- A collection of NamedElements identifiable within the Namespace, either
-- by being owned or by being introduced by importing or inheritance.
overriding function Get_Owned_Member
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Named_Elements.Collections.Set_Of_UML_Named_Element;
-- Getter of Namespace::ownedMember.
--
-- A collection of NamedElements owned by the Namespace.
overriding function Get_Owned_Rule
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Constraints.Collections.Set_Of_UML_Constraint;
-- Getter of Namespace::ownedRule.
--
-- Specifies a set of Constraints owned by this Namespace.
overriding function Get_Package_Import
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Package_Imports.Collections.Set_Of_UML_Package_Import;
-- Getter of Namespace::packageImport.
--
-- References the PackageImports owned by the Namespace.
overriding function Get_Client_Dependency
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Dependencies.Collections.Set_Of_UML_Dependency;
-- Getter of NamedElement::clientDependency.
--
-- Indicates the dependencies that reference the client.
overriding function Get_Name_Expression
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.String_Expressions.UML_String_Expression_Access;
-- Getter of NamedElement::nameExpression.
--
-- The string expression used to define the name of this named element.
overriding procedure Set_Name_Expression
(Self : not null access UML_Component_Proxy;
To : AMF.UML.String_Expressions.UML_String_Expression_Access);
-- Setter of NamedElement::nameExpression.
--
-- The string expression used to define the name of this named element.
overriding function Get_Namespace
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Namespaces.UML_Namespace_Access;
-- Getter of NamedElement::namespace.
--
-- Specifies the namespace that owns the NamedElement.
overriding function Get_Qualified_Name
(Self : not null access constant UML_Component_Proxy)
return AMF.Optional_String;
-- Getter of NamedElement::qualifiedName.
--
-- A name which allows the NamedElement to be identified within a
-- hierarchy of nested Namespaces. It is constructed from the names of the
-- containing namespaces starting at the root of the hierarchy and ending
-- with the name of the NamedElement itself.
overriding function Get_Package
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Packages.UML_Package_Access;
-- Getter of Type::package.
--
-- Specifies the owning package of this classifier, if any.
overriding procedure Set_Package
(Self : not null access UML_Component_Proxy;
To : AMF.UML.Packages.UML_Package_Access);
-- Setter of Type::package.
--
-- Specifies the owning package of this classifier, if any.
overriding function Get_Owning_Template_Parameter
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Template_Parameters.UML_Template_Parameter_Access;
-- Getter of ParameterableElement::owningTemplateParameter.
--
-- The formal template parameter that owns this element.
overriding procedure Set_Owning_Template_Parameter
(Self : not null access UML_Component_Proxy;
To : AMF.UML.Template_Parameters.UML_Template_Parameter_Access);
-- Setter of ParameterableElement::owningTemplateParameter.
--
-- The formal template parameter that owns this element.
overriding function Get_Template_Parameter
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Template_Parameters.UML_Template_Parameter_Access;
-- Getter of ParameterableElement::templateParameter.
--
-- The template parameter that exposes this element as a formal parameter.
overriding procedure Set_Template_Parameter
(Self : not null access UML_Component_Proxy;
To : AMF.UML.Template_Parameters.UML_Template_Parameter_Access);
-- Setter of ParameterableElement::templateParameter.
--
-- The template parameter that exposes this element as a formal parameter.
overriding function Get_Owned_Template_Signature
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Template_Signatures.UML_Template_Signature_Access;
-- Getter of TemplateableElement::ownedTemplateSignature.
--
-- The optional template signature specifying the formal template
-- parameters.
overriding procedure Set_Owned_Template_Signature
(Self : not null access UML_Component_Proxy;
To : AMF.UML.Template_Signatures.UML_Template_Signature_Access);
-- Setter of TemplateableElement::ownedTemplateSignature.
--
-- The optional template signature specifying the formal template
-- parameters.
overriding function Get_Template_Binding
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Template_Bindings.Collections.Set_Of_UML_Template_Binding;
-- Getter of TemplateableElement::templateBinding.
--
-- The optional bindings from this element to templates.
overriding function Get_Is_Leaf
(Self : not null access constant UML_Component_Proxy)
return Boolean;
-- Getter of RedefinableElement::isLeaf.
--
-- Indicates whether it is possible to further redefine a
-- RedefinableElement. If the value is true, then it is not possible to
-- further redefine the RedefinableElement. Note that this property is
-- preserved through package merge operations; that is, the capability to
-- redefine a RedefinableElement (i.e., isLeaf=false) must be preserved in
-- the resulting RedefinableElement of a package merge operation where a
-- RedefinableElement with isLeaf=false is merged with a matching
-- RedefinableElement with isLeaf=true: the resulting RedefinableElement
-- will have isLeaf=false. Default value is false.
overriding procedure Set_Is_Leaf
(Self : not null access UML_Component_Proxy;
To : Boolean);
-- Setter of RedefinableElement::isLeaf.
--
-- Indicates whether it is possible to further redefine a
-- RedefinableElement. If the value is true, then it is not possible to
-- further redefine the RedefinableElement. Note that this property is
-- preserved through package merge operations; that is, the capability to
-- redefine a RedefinableElement (i.e., isLeaf=false) must be preserved in
-- the resulting RedefinableElement of a package merge operation where a
-- RedefinableElement with isLeaf=false is merged with a matching
-- RedefinableElement with isLeaf=true: the resulting RedefinableElement
-- will have isLeaf=false. Default value is false.
overriding function Get_Redefined_Element
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Redefinable_Elements.Collections.Set_Of_UML_Redefinable_Element;
-- Getter of RedefinableElement::redefinedElement.
--
-- The redefinable element that is being redefined by this element.
overriding function Get_Redefinition_Context
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Classifiers.Collections.Set_Of_UML_Classifier;
-- Getter of RedefinableElement::redefinitionContext.
--
-- References the contexts that this element may be redefined from.
overriding function Get_Owned_Port
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Ports.Collections.Set_Of_UML_Port;
-- Getter of EncapsulatedClassifier::ownedPort.
--
-- References a set of ports that an encapsulated classifier owns.
overriding function Get_Owned_Connector
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Connectors.Collections.Set_Of_UML_Connector;
-- Getter of StructuredClassifier::ownedConnector.
--
-- References the connectors owned by the classifier.
overriding function Get_Part
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Properties.Collections.Set_Of_UML_Property;
-- Getter of StructuredClassifier::part.
--
-- References the properties specifying instances that the classifier owns
-- by composition. This association is derived, selecting those owned
-- properties where isComposite is true.
overriding function Get_Role
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Connectable_Elements.Collections.Set_Of_UML_Connectable_Element;
-- Getter of StructuredClassifier::role.
--
-- References the roles that instances may play in this classifier.
overriding function Provided
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Interfaces.Collections.Set_Of_UML_Interface;
-- Operation Component::provided.
--
-- Missing derivation for Component::/provided : Interface
overriding function Realized_Interfaces
(Self : not null access constant UML_Component_Proxy;
Classifier : AMF.UML.Classifiers.UML_Classifier_Access)
return AMF.UML.Interfaces.Collections.Set_Of_UML_Interface;
-- Operation Component::realizedInterfaces.
--
-- Utility returning the set of realized interfaces of a component.
overriding function Required
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Interfaces.Collections.Set_Of_UML_Interface;
-- Operation Component::required.
--
-- Missing derivation for Component::/required : Interface
overriding function Used_Interfaces
(Self : not null access constant UML_Component_Proxy;
Classifier : AMF.UML.Classifiers.UML_Classifier_Access)
return AMF.UML.Interfaces.Collections.Set_Of_UML_Interface;
-- Operation Component::usedInterfaces.
--
-- Utility returning the set of used interfaces of a component.
overriding function Extension
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Extensions.Collections.Set_Of_UML_Extension;
-- Operation Class::extension.
--
-- Missing derivation for Class::/extension : Extension
overriding function Inherit
(Self : not null access constant UML_Component_Proxy;
Inhs : AMF.UML.Named_Elements.Collections.Set_Of_UML_Named_Element)
return AMF.UML.Named_Elements.Collections.Set_Of_UML_Named_Element;
-- Operation Class::inherit.
--
-- The inherit operation is overridden to exclude redefined properties.
overriding function Super_Class
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Classes.Collections.Set_Of_UML_Class;
-- Operation Class::superClass.
--
-- Missing derivation for Class::/superClass : Class
overriding function All_Features
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Features.Collections.Set_Of_UML_Feature;
-- Operation Classifier::allFeatures.
--
-- The query allFeatures() gives all of the features in the namespace of
-- the classifier. In general, through mechanisms such as inheritance,
-- this will be a larger set than feature.
overriding function Conforms_To
(Self : not null access constant UML_Component_Proxy;
Other : AMF.UML.Classifiers.UML_Classifier_Access)
return Boolean;
-- Operation Classifier::conformsTo.
--
-- The query conformsTo() gives true for a classifier that defines a type
-- that conforms to another. This is used, for example, in the
-- specification of signature conformance for operations.
overriding function General
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Classifiers.Collections.Set_Of_UML_Classifier;
-- Operation Classifier::general.
--
-- The general classifiers are the classifiers referenced by the
-- generalization relationships.
overriding function Has_Visibility_Of
(Self : not null access constant UML_Component_Proxy;
N : AMF.UML.Named_Elements.UML_Named_Element_Access)
return Boolean;
-- Operation Classifier::hasVisibilityOf.
--
-- The query hasVisibilityOf() determines whether a named element is
-- visible in the classifier. By default all are visible. It is only
-- called when the argument is something owned by a parent.
overriding function Inheritable_Members
(Self : not null access constant UML_Component_Proxy;
C : AMF.UML.Classifiers.UML_Classifier_Access)
return AMF.UML.Named_Elements.Collections.Set_Of_UML_Named_Element;
-- Operation Classifier::inheritableMembers.
--
-- The query inheritableMembers() gives all of the members of a classifier
-- that may be inherited in one of its descendants, subject to whatever
-- visibility restrictions apply.
overriding function Inherited_Member
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Named_Elements.Collections.Set_Of_UML_Named_Element;
-- Operation Classifier::inheritedMember.
--
-- The inheritedMember association is derived by inheriting the
-- inheritable members of the parents.
-- The inheritedMember association is derived by inheriting the
-- inheritable members of the parents.
overriding function Is_Template
(Self : not null access constant UML_Component_Proxy)
return Boolean;
-- Operation Classifier::isTemplate.
--
-- The query isTemplate() returns whether this templateable element is
-- actually a template.
overriding function May_Specialize_Type
(Self : not null access constant UML_Component_Proxy;
C : AMF.UML.Classifiers.UML_Classifier_Access)
return Boolean;
-- Operation Classifier::maySpecializeType.
--
-- The query maySpecializeType() determines whether this classifier may
-- have a generalization relationship to classifiers of the specified
-- type. By default a classifier may specialize classifiers of the same or
-- a more general type. It is intended to be redefined by classifiers that
-- have different specialization constraints.
overriding function Exclude_Collisions
(Self : not null access constant UML_Component_Proxy;
Imps : AMF.UML.Packageable_Elements.Collections.Set_Of_UML_Packageable_Element)
return AMF.UML.Packageable_Elements.Collections.Set_Of_UML_Packageable_Element;
-- Operation Namespace::excludeCollisions.
--
-- The query excludeCollisions() excludes from a set of
-- PackageableElements any that would not be distinguishable from each
-- other in this namespace.
overriding function Get_Names_Of_Member
(Self : not null access constant UML_Component_Proxy;
Element : AMF.UML.Named_Elements.UML_Named_Element_Access)
return AMF.String_Collections.Set_Of_String;
-- Operation Namespace::getNamesOfMember.
--
-- The query getNamesOfMember() takes importing into account. It gives
-- back the set of names that an element would have in an importing
-- namespace, either because it is owned, or if not owned then imported
-- individually, or if not individually then from a package.
-- The query getNamesOfMember() gives a set of all of the names that a
-- member would have in a Namespace. In general a member can have multiple
-- names in a Namespace if it is imported more than once with different
-- aliases. The query takes account of importing. It gives back the set of
-- names that an element would have in an importing namespace, either
-- because it is owned, or if not owned then imported individually, or if
-- not individually then from a package.
overriding function Import_Members
(Self : not null access constant UML_Component_Proxy;
Imps : AMF.UML.Packageable_Elements.Collections.Set_Of_UML_Packageable_Element)
return AMF.UML.Packageable_Elements.Collections.Set_Of_UML_Packageable_Element;
-- Operation Namespace::importMembers.
--
-- The query importMembers() defines which of a set of PackageableElements
-- are actually imported into the namespace. This excludes hidden ones,
-- i.e., those which have names that conflict with names of owned members,
-- and also excludes elements which would have the same name when imported.
overriding function Imported_Member
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Packageable_Elements.Collections.Set_Of_UML_Packageable_Element;
-- Operation Namespace::importedMember.
--
-- The importedMember property is derived from the ElementImports and the
-- PackageImports. References the PackageableElements that are members of
-- this Namespace as a result of either PackageImports or ElementImports.
overriding function Members_Are_Distinguishable
(Self : not null access constant UML_Component_Proxy)
return Boolean;
-- Operation Namespace::membersAreDistinguishable.
--
-- The Boolean query membersAreDistinguishable() determines whether all of
-- the namespace's members are distinguishable within it.
overriding function Owned_Member
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Named_Elements.Collections.Set_Of_UML_Named_Element;
-- Operation Namespace::ownedMember.
--
-- Missing derivation for Namespace::/ownedMember : NamedElement
overriding function All_Owning_Packages
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Packages.Collections.Set_Of_UML_Package;
-- Operation NamedElement::allOwningPackages.
--
-- The query allOwningPackages() returns all the directly or indirectly
-- owning packages.
overriding function Is_Distinguishable_From
(Self : not null access constant UML_Component_Proxy;
N : AMF.UML.Named_Elements.UML_Named_Element_Access;
Ns : AMF.UML.Namespaces.UML_Namespace_Access)
return Boolean;
-- Operation NamedElement::isDistinguishableFrom.
--
-- The query isDistinguishableFrom() determines whether two NamedElements
-- may logically co-exist within a Namespace. By default, two named
-- elements are distinguishable if (a) they have unrelated types or (b)
-- they have related types but different names.
overriding function Namespace
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Namespaces.UML_Namespace_Access;
-- Operation NamedElement::namespace.
--
-- Missing derivation for NamedElement::/namespace : Namespace
overriding function Conforms_To
(Self : not null access constant UML_Component_Proxy;
Other : AMF.UML.Types.UML_Type_Access)
return Boolean;
-- Operation Type::conformsTo.
--
-- The query conformsTo() gives true for a type that conforms to another.
-- By default, two types do not conform to each other. This query is
-- intended to be redefined for specific conformance situations.
overriding function Is_Compatible_With
(Self : not null access constant UML_Component_Proxy;
P : AMF.UML.Parameterable_Elements.UML_Parameterable_Element_Access)
return Boolean;
-- Operation ParameterableElement::isCompatibleWith.
--
-- The query isCompatibleWith() determines if this parameterable element
-- is compatible with the specified parameterable element. By default
-- parameterable element P is compatible with parameterable element Q if
-- the kind of P is the same or a subtype as the kind of Q. Subclasses
-- should override this operation to specify different compatibility
-- constraints.
overriding function Is_Template_Parameter
(Self : not null access constant UML_Component_Proxy)
return Boolean;
-- Operation ParameterableElement::isTemplateParameter.
--
-- The query isTemplateParameter() determines if this parameterable
-- element is exposed as a formal template parameter.
overriding function Parameterable_Elements
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Parameterable_Elements.Collections.Set_Of_UML_Parameterable_Element;
-- Operation TemplateableElement::parameterableElements.
--
-- The query parameterableElements() returns the set of elements that may
-- be used as the parametered elements for a template parameter of this
-- templateable element. By default, this set includes all the owned
-- elements. Subclasses may override this operation if they choose to
-- restrict the set of parameterable elements.
overriding function Is_Consistent_With
(Self : not null access constant UML_Component_Proxy;
Redefinee : AMF.UML.Redefinable_Elements.UML_Redefinable_Element_Access)
return Boolean;
-- Operation RedefinableElement::isConsistentWith.
--
-- The query isConsistentWith() specifies, for any two RedefinableElements
-- in a context in which redefinition is possible, whether redefinition
-- would be logically consistent. By default, this is false; this
-- operation must be overridden for subclasses of RedefinableElement to
-- define the consistency conditions.
overriding function Is_Redefinition_Context_Valid
(Self : not null access constant UML_Component_Proxy;
Redefined : AMF.UML.Redefinable_Elements.UML_Redefinable_Element_Access)
return Boolean;
-- Operation RedefinableElement::isRedefinitionContextValid.
--
-- The query isRedefinitionContextValid() specifies whether the
-- redefinition contexts of this RedefinableElement are properly related
-- to the redefinition contexts of the specified RedefinableElement to
-- allow this element to redefine the other. By default at least one of
-- the redefinition contexts of this element must be a specialization of
-- at least one of the redefinition contexts of the specified element.
overriding function Owned_Port
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Ports.Collections.Set_Of_UML_Port;
-- Operation EncapsulatedClassifier::ownedPort.
--
-- Missing derivation for EncapsulatedClassifier::/ownedPort : Port
overriding function Part
(Self : not null access constant UML_Component_Proxy)
return AMF.UML.Properties.Collections.Set_Of_UML_Property;
-- Operation StructuredClassifier::part.
--
-- Missing derivation for StructuredClassifier::/part : Property
overriding procedure Enter_Element
(Self : not null access constant UML_Component_Proxy;
Visitor : in out AMF.Visitors.Abstract_Visitor'Class;
Control : in out AMF.Visitors.Traverse_Control);
-- Dispatch call to corresponding subprogram of visitor interface.
overriding procedure Leave_Element
(Self : not null access constant UML_Component_Proxy;
Visitor : in out AMF.Visitors.Abstract_Visitor'Class;
Control : in out AMF.Visitors.Traverse_Control);
-- Dispatch call to corresponding subprogram of visitor interface.
overriding procedure Visit_Element
(Self : not null access constant UML_Component_Proxy;
Iterator : in out AMF.Visitors.Abstract_Iterator'Class;
Visitor : in out AMF.Visitors.Abstract_Visitor'Class;
Control : in out AMF.Visitors.Traverse_Control);
-- Dispatch call to corresponding subprogram of iterator interface.
end AMF.Internals.UML_Components;
|
--
-- Copyright (C) 2021, AdaCore
--
pragma Style_Checks (Off);
-- This spec has been automatically generated from STM32G474xx.svd
with System;
package Interfaces.STM32.RCC is
pragma Preelaborate;
pragma No_Elaboration_Code_All;
---------------
-- Registers --
---------------
subtype CR_HSION_Field is Interfaces.STM32.Bit;
subtype CR_HSIKERON_Field is Interfaces.STM32.Bit;
subtype CR_HSIRDY_Field is Interfaces.STM32.Bit;
subtype CR_HSEON_Field is Interfaces.STM32.Bit;
subtype CR_HSERDY_Field is Interfaces.STM32.Bit;
subtype CR_HSEBYP_Field is Interfaces.STM32.Bit;
subtype CR_CSSON_Field is Interfaces.STM32.Bit;
subtype CR_PLLON_Field is Interfaces.STM32.Bit;
subtype CR_PLLRDY_Field is Interfaces.STM32.Bit;
-- Clock control register
type CR_Register is record
-- unspecified
Reserved_0_7 : Interfaces.STM32.Byte := 16#63#;
-- HSI clock enable
HSION : CR_HSION_Field := 16#0#;
-- HSI always enable for peripheral kernels
HSIKERON : CR_HSIKERON_Field := 16#0#;
-- Read-only. HSI clock ready flag
HSIRDY : CR_HSIRDY_Field := 16#0#;
-- unspecified
Reserved_11_15 : Interfaces.STM32.UInt5 := 16#0#;
-- HSE clock enable
HSEON : CR_HSEON_Field := 16#0#;
-- Read-only. HSE clock ready flag
HSERDY : CR_HSERDY_Field := 16#0#;
-- HSE crystal oscillator bypass
HSEBYP : CR_HSEBYP_Field := 16#0#;
-- Write-only. Clock security system enable
CSSON : CR_CSSON_Field := 16#0#;
-- unspecified
Reserved_20_23 : Interfaces.STM32.UInt4 := 16#0#;
-- Main PLL enable
PLLON : CR_PLLON_Field := 16#0#;
-- Read-only. Main PLL clock ready flag
PLLRDY : CR_PLLRDY_Field := 16#0#;
-- unspecified
Reserved_26_31 : Interfaces.STM32.UInt6 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CR_Register use record
Reserved_0_7 at 0 range 0 .. 7;
HSION at 0 range 8 .. 8;
HSIKERON at 0 range 9 .. 9;
HSIRDY at 0 range 10 .. 10;
Reserved_11_15 at 0 range 11 .. 15;
HSEON at 0 range 16 .. 16;
HSERDY at 0 range 17 .. 17;
HSEBYP at 0 range 18 .. 18;
CSSON at 0 range 19 .. 19;
Reserved_20_23 at 0 range 20 .. 23;
PLLON at 0 range 24 .. 24;
PLLRDY at 0 range 25 .. 25;
Reserved_26_31 at 0 range 26 .. 31;
end record;
subtype ICSCR_HSICAL0_Field is Interfaces.STM32.Byte;
subtype ICSCR_HSITRIM_Field is Interfaces.STM32.UInt7;
-- Internal clock sources calibration register
type ICSCR_Register is record
-- unspecified
Reserved_0_15 : Interfaces.STM32.UInt16 := 16#0#;
-- Read-only. Internal High Speed clock Calibration
HSICAL0 : ICSCR_HSICAL0_Field := 16#0#;
-- Internal High Speed clock trimming
HSITRIM : ICSCR_HSITRIM_Field := 16#40#;
-- unspecified
Reserved_31_31 : Interfaces.STM32.Bit := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for ICSCR_Register use record
Reserved_0_15 at 0 range 0 .. 15;
HSICAL0 at 0 range 16 .. 23;
HSITRIM at 0 range 24 .. 30;
Reserved_31_31 at 0 range 31 .. 31;
end record;
subtype CFGR_SW_Field is Interfaces.STM32.UInt2;
subtype CFGR_SWS_Field is Interfaces.STM32.UInt2;
subtype CFGR_HPRE_Field is Interfaces.STM32.UInt4;
-- CFGR_PPRE array element
subtype CFGR_PPRE_Element is Interfaces.STM32.UInt3;
-- CFGR_PPRE array
type CFGR_PPRE_Field_Array is array (1 .. 2) of CFGR_PPRE_Element
with Component_Size => 3, Size => 6;
-- Type definition for CFGR_PPRE
type CFGR_PPRE_Field
(As_Array : Boolean := False)
is record
case As_Array is
when False =>
-- PPRE as a value
Val : Interfaces.STM32.UInt6;
when True =>
-- PPRE as an array
Arr : CFGR_PPRE_Field_Array;
end case;
end record
with Unchecked_Union, Size => 6;
for CFGR_PPRE_Field use record
Val at 0 range 0 .. 5;
Arr at 0 range 0 .. 5;
end record;
subtype CFGR_MCOSEL_Field is Interfaces.STM32.UInt4;
subtype CFGR_MCOPRE_Field is Interfaces.STM32.UInt3;
-- Clock configuration register
type CFGR_Register is record
-- System clock switch
SW : CFGR_SW_Field := 16#1#;
-- Read-only. System clock switch status
SWS : CFGR_SWS_Field := 16#1#;
-- AHB prescaler
HPRE : CFGR_HPRE_Field := 16#0#;
-- PB low-speed prescaler (APB1)
PPRE : CFGR_PPRE_Field := (As_Array => False, Val => 16#0#);
-- unspecified
Reserved_14_23 : Interfaces.STM32.UInt10 := 16#0#;
-- Microcontroller clock output
MCOSEL : CFGR_MCOSEL_Field := 16#0#;
-- Microcontroller clock output prescaler
MCOPRE : CFGR_MCOPRE_Field := 16#0#;
-- unspecified
Reserved_31_31 : Interfaces.STM32.Bit := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CFGR_Register use record
SW at 0 range 0 .. 1;
SWS at 0 range 2 .. 3;
HPRE at 0 range 4 .. 7;
PPRE at 0 range 8 .. 13;
Reserved_14_23 at 0 range 14 .. 23;
MCOSEL at 0 range 24 .. 27;
MCOPRE at 0 range 28 .. 30;
Reserved_31_31 at 0 range 31 .. 31;
end record;
subtype PLLCFGR_PLLSRC_Field is Interfaces.STM32.UInt2;
subtype PLLCFGR_PLLM_Field is Interfaces.STM32.UInt4;
subtype PLLCFGR_PLLN_Field is Interfaces.STM32.UInt7;
subtype PLLCFGR_PLLPEN_Field is Interfaces.STM32.Bit;
subtype PLLCFGR_PLLP_Field is Interfaces.STM32.Bit;
subtype PLLCFGR_PLLQEN_Field is Interfaces.STM32.Bit;
subtype PLLCFGR_PLLQ_Field is Interfaces.STM32.UInt2;
subtype PLLCFGR_PLLREN_Field is Interfaces.STM32.Bit;
subtype PLLCFGR_PLLR_Field is Interfaces.STM32.UInt2;
subtype PLLCFGR_PLLPDIV_Field is Interfaces.STM32.UInt5;
-- PLL configuration register
type PLLCFGR_Register is record
-- Main PLL, PLLSAI1 and PLLSAI2 entry clock source
PLLSRC : PLLCFGR_PLLSRC_Field := 16#0#;
-- unspecified
Reserved_2_3 : Interfaces.STM32.UInt2 := 16#0#;
-- Division factor for the main PLL and audio PLL (PLLSAI1 and PLLSAI2)
-- input clock
PLLM : PLLCFGR_PLLM_Field := 16#0#;
-- Main PLL multiplication factor for VCO
PLLN : PLLCFGR_PLLN_Field := 16#10#;
-- unspecified
Reserved_15_15 : Interfaces.STM32.Bit := 16#0#;
-- Main PLL PLLSAI3CLK output enable
PLLPEN : PLLCFGR_PLLPEN_Field := 16#0#;
-- Main PLL division factor for PLLSAI3CLK (SAI1 and SAI2 clock)
PLLP : PLLCFGR_PLLP_Field := 16#0#;
-- unspecified
Reserved_18_19 : Interfaces.STM32.UInt2 := 16#0#;
-- Main PLL PLLUSB1CLK output enable
PLLQEN : PLLCFGR_PLLQEN_Field := 16#0#;
-- Main PLL division factor for PLLUSB1CLK(48 MHz clock)
PLLQ : PLLCFGR_PLLQ_Field := 16#0#;
-- unspecified
Reserved_23_23 : Interfaces.STM32.Bit := 16#0#;
-- Main PLL PLLCLK output enable
PLLREN : PLLCFGR_PLLREN_Field := 16#0#;
-- Main PLL division factor for PLLCLK (system clock)
PLLR : PLLCFGR_PLLR_Field := 16#0#;
-- Main PLL division factor for PLLSAI2CLK
PLLPDIV : PLLCFGR_PLLPDIV_Field := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for PLLCFGR_Register use record
PLLSRC at 0 range 0 .. 1;
Reserved_2_3 at 0 range 2 .. 3;
PLLM at 0 range 4 .. 7;
PLLN at 0 range 8 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
PLLPEN at 0 range 16 .. 16;
PLLP at 0 range 17 .. 17;
Reserved_18_19 at 0 range 18 .. 19;
PLLQEN at 0 range 20 .. 20;
PLLQ at 0 range 21 .. 22;
Reserved_23_23 at 0 range 23 .. 23;
PLLREN at 0 range 24 .. 24;
PLLR at 0 range 25 .. 26;
PLLPDIV at 0 range 27 .. 31;
end record;
subtype CIER_LSIRDYIE_Field is Interfaces.STM32.Bit;
subtype CIER_LSERDYIE_Field is Interfaces.STM32.Bit;
subtype CIER_HSIRDYIE_Field is Interfaces.STM32.Bit;
subtype CIER_HSERDYIE_Field is Interfaces.STM32.Bit;
subtype CIER_PLLSYSRDYIE_Field is Interfaces.STM32.Bit;
subtype CIER_LSECSSIE_Field is Interfaces.STM32.Bit;
subtype CIER_RC48RDYIE_Field is Interfaces.STM32.Bit;
-- Clock interrupt enable register
type CIER_Register is record
-- LSI ready interrupt enable
LSIRDYIE : CIER_LSIRDYIE_Field := 16#0#;
-- LSE ready interrupt enable
LSERDYIE : CIER_LSERDYIE_Field := 16#0#;
-- unspecified
Reserved_2_2 : Interfaces.STM32.Bit := 16#0#;
-- HSI ready interrupt enable
HSIRDYIE : CIER_HSIRDYIE_Field := 16#0#;
-- HSE ready interrupt enable
HSERDYIE : CIER_HSERDYIE_Field := 16#0#;
-- PLL ready interrupt enable
PLLSYSRDYIE : CIER_PLLSYSRDYIE_Field := 16#0#;
-- unspecified
Reserved_6_8 : Interfaces.STM32.UInt3 := 16#0#;
-- LSE clock security system interrupt enable
LSECSSIE : CIER_LSECSSIE_Field := 16#0#;
-- HSI48 ready interrupt enable
RC48RDYIE : CIER_RC48RDYIE_Field := 16#0#;
-- unspecified
Reserved_11_31 : Interfaces.STM32.UInt21 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CIER_Register use record
LSIRDYIE at 0 range 0 .. 0;
LSERDYIE at 0 range 1 .. 1;
Reserved_2_2 at 0 range 2 .. 2;
HSIRDYIE at 0 range 3 .. 3;
HSERDYIE at 0 range 4 .. 4;
PLLSYSRDYIE at 0 range 5 .. 5;
Reserved_6_8 at 0 range 6 .. 8;
LSECSSIE at 0 range 9 .. 9;
RC48RDYIE at 0 range 10 .. 10;
Reserved_11_31 at 0 range 11 .. 31;
end record;
subtype CIFR_LSIRDYF_Field is Interfaces.STM32.Bit;
subtype CIFR_LSERDYF_Field is Interfaces.STM32.Bit;
subtype CIFR_HSIRDYF_Field is Interfaces.STM32.Bit;
subtype CIFR_HSERDYF_Field is Interfaces.STM32.Bit;
subtype CIFR_PLLSYSRDYF_Field is Interfaces.STM32.Bit;
subtype CIFR_HSECSSF_Field is Interfaces.STM32.Bit;
subtype CIFR_LSECSSF_Field is Interfaces.STM32.Bit;
subtype CIFR_RC48RDYF_Field is Interfaces.STM32.Bit;
-- Clock interrupt flag register
type CIFR_Register is record
-- Read-only. LSI ready interrupt flag
LSIRDYF : CIFR_LSIRDYF_Field;
-- Read-only. LSE ready interrupt flag
LSERDYF : CIFR_LSERDYF_Field;
-- unspecified
Reserved_2_2 : Interfaces.STM32.Bit;
-- Read-only. HSI ready interrupt flag
HSIRDYF : CIFR_HSIRDYF_Field;
-- Read-only. HSE ready interrupt flag
HSERDYF : CIFR_HSERDYF_Field;
-- Read-only. PLL ready interrupt flag
PLLSYSRDYF : CIFR_PLLSYSRDYF_Field;
-- unspecified
Reserved_6_7 : Interfaces.STM32.UInt2;
-- Read-only. Clock security system interrupt flag
HSECSSF : CIFR_HSECSSF_Field;
-- Read-only. LSE Clock security system interrupt flag
LSECSSF : CIFR_LSECSSF_Field;
-- Read-only. HSI48 ready interrupt flag
RC48RDYF : CIFR_RC48RDYF_Field;
-- unspecified
Reserved_11_31 : Interfaces.STM32.UInt21;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CIFR_Register use record
LSIRDYF at 0 range 0 .. 0;
LSERDYF at 0 range 1 .. 1;
Reserved_2_2 at 0 range 2 .. 2;
HSIRDYF at 0 range 3 .. 3;
HSERDYF at 0 range 4 .. 4;
PLLSYSRDYF at 0 range 5 .. 5;
Reserved_6_7 at 0 range 6 .. 7;
HSECSSF at 0 range 8 .. 8;
LSECSSF at 0 range 9 .. 9;
RC48RDYF at 0 range 10 .. 10;
Reserved_11_31 at 0 range 11 .. 31;
end record;
subtype CICR_LSIRDYC_Field is Interfaces.STM32.Bit;
subtype CICR_LSERDYC_Field is Interfaces.STM32.Bit;
subtype CICR_HSIRDYC_Field is Interfaces.STM32.Bit;
subtype CICR_HSERDYC_Field is Interfaces.STM32.Bit;
subtype CICR_PLLSYSRDYC_Field is Interfaces.STM32.Bit;
subtype CICR_HSECSSC_Field is Interfaces.STM32.Bit;
subtype CICR_LSECSSC_Field is Interfaces.STM32.Bit;
subtype CICR_RC48RDYC_Field is Interfaces.STM32.Bit;
-- Clock interrupt clear register
type CICR_Register is record
-- Write-only. LSI ready interrupt clear
LSIRDYC : CICR_LSIRDYC_Field := 16#0#;
-- Write-only. LSE ready interrupt clear
LSERDYC : CICR_LSERDYC_Field := 16#0#;
-- unspecified
Reserved_2_2 : Interfaces.STM32.Bit := 16#0#;
-- Write-only. HSI ready interrupt clear
HSIRDYC : CICR_HSIRDYC_Field := 16#0#;
-- Write-only. HSE ready interrupt clear
HSERDYC : CICR_HSERDYC_Field := 16#0#;
-- Write-only. PLL ready interrupt clear
PLLSYSRDYC : CICR_PLLSYSRDYC_Field := 16#0#;
-- unspecified
Reserved_6_7 : Interfaces.STM32.UInt2 := 16#0#;
-- Write-only. Clock security system interrupt clear
HSECSSC : CICR_HSECSSC_Field := 16#0#;
-- Write-only. LSE Clock security system interrupt clear
LSECSSC : CICR_LSECSSC_Field := 16#0#;
-- Write-only. HSI48 oscillator ready interrupt clear
RC48RDYC : CICR_RC48RDYC_Field := 16#0#;
-- unspecified
Reserved_11_31 : Interfaces.STM32.UInt21 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CICR_Register use record
LSIRDYC at 0 range 0 .. 0;
LSERDYC at 0 range 1 .. 1;
Reserved_2_2 at 0 range 2 .. 2;
HSIRDYC at 0 range 3 .. 3;
HSERDYC at 0 range 4 .. 4;
PLLSYSRDYC at 0 range 5 .. 5;
Reserved_6_7 at 0 range 6 .. 7;
HSECSSC at 0 range 8 .. 8;
LSECSSC at 0 range 9 .. 9;
RC48RDYC at 0 range 10 .. 10;
Reserved_11_31 at 0 range 11 .. 31;
end record;
subtype AHB1RSTR_DMA1RST_Field is Interfaces.STM32.Bit;
subtype AHB1RSTR_DMA2RST_Field is Interfaces.STM32.Bit;
subtype AHB1RSTR_DMAMUX1RST_Field is Interfaces.STM32.Bit;
subtype AHB1RSTR_CORDICRST_Field is Interfaces.STM32.Bit;
subtype AHB1RSTR_FMACRST_Field is Interfaces.STM32.Bit;
subtype AHB1RSTR_FLASHRST_Field is Interfaces.STM32.Bit;
subtype AHB1RSTR_CRCRST_Field is Interfaces.STM32.Bit;
-- AHB1 peripheral reset register
type AHB1RSTR_Register is record
-- DMA1 reset
DMA1RST : AHB1RSTR_DMA1RST_Field := 16#0#;
-- DMA2 reset
DMA2RST : AHB1RSTR_DMA2RST_Field := 16#0#;
-- DMAMUXRST
DMAMUX1RST : AHB1RSTR_DMAMUX1RST_Field := 16#0#;
-- CORDIC reset
CORDICRST : AHB1RSTR_CORDICRST_Field := 16#0#;
-- FMAC reset
FMACRST : AHB1RSTR_FMACRST_Field := 16#0#;
-- unspecified
Reserved_5_7 : Interfaces.STM32.UInt3 := 16#0#;
-- FLASH reset
FLASHRST : AHB1RSTR_FLASHRST_Field := 16#0#;
-- unspecified
Reserved_9_11 : Interfaces.STM32.UInt3 := 16#0#;
-- CRC reset
CRCRST : AHB1RSTR_CRCRST_Field := 16#0#;
-- unspecified
Reserved_13_31 : Interfaces.STM32.UInt19 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for AHB1RSTR_Register use record
DMA1RST at 0 range 0 .. 0;
DMA2RST at 0 range 1 .. 1;
DMAMUX1RST at 0 range 2 .. 2;
CORDICRST at 0 range 3 .. 3;
FMACRST at 0 range 4 .. 4;
Reserved_5_7 at 0 range 5 .. 7;
FLASHRST at 0 range 8 .. 8;
Reserved_9_11 at 0 range 9 .. 11;
CRCRST at 0 range 12 .. 12;
Reserved_13_31 at 0 range 13 .. 31;
end record;
subtype AHB2RSTR_GPIOARST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_GPIOBRST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_GPIOCRST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_GPIODRST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_GPIOERST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_GPIOFRST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_GPIOGRST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_ADC12RST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_ADC345RST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_DAC1RST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_DAC2RST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_DAC3RST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_DAC4RST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_AESRST_Field is Interfaces.STM32.Bit;
subtype AHB2RSTR_RNGRST_Field is Interfaces.STM32.Bit;
-- AHB2 peripheral reset register
type AHB2RSTR_Register is record
-- IO port A reset
GPIOARST : AHB2RSTR_GPIOARST_Field := 16#0#;
-- IO port B reset
GPIOBRST : AHB2RSTR_GPIOBRST_Field := 16#0#;
-- IO port C reset
GPIOCRST : AHB2RSTR_GPIOCRST_Field := 16#0#;
-- IO port D reset
GPIODRST : AHB2RSTR_GPIODRST_Field := 16#0#;
-- IO port E reset
GPIOERST : AHB2RSTR_GPIOERST_Field := 16#0#;
-- IO port F reset
GPIOFRST : AHB2RSTR_GPIOFRST_Field := 16#0#;
-- IO port G reset
GPIOGRST : AHB2RSTR_GPIOGRST_Field := 16#0#;
-- unspecified
Reserved_7_12 : Interfaces.STM32.UInt6 := 16#0#;
-- ADC reset
ADC12RST : AHB2RSTR_ADC12RST_Field := 16#0#;
-- SAR ADC345 interface reset
ADC345RST : AHB2RSTR_ADC345RST_Field := 16#0#;
-- unspecified
Reserved_15_15 : Interfaces.STM32.Bit := 16#0#;
-- DAC1 interface reset
DAC1RST : AHB2RSTR_DAC1RST_Field := 16#0#;
-- DAC2 interface reset
DAC2RST : AHB2RSTR_DAC2RST_Field := 16#0#;
-- DAC3 interface reset
DAC3RST : AHB2RSTR_DAC3RST_Field := 16#0#;
-- DAC4 interface reset
DAC4RST : AHB2RSTR_DAC4RST_Field := 16#0#;
-- unspecified
Reserved_20_23 : Interfaces.STM32.UInt4 := 16#0#;
-- Cryptography module reset
AESRST : AHB2RSTR_AESRST_Field := 16#0#;
-- unspecified
Reserved_25_25 : Interfaces.STM32.Bit := 16#0#;
-- Random Number Generator module reset
RNGRST : AHB2RSTR_RNGRST_Field := 16#0#;
-- unspecified
Reserved_27_31 : Interfaces.STM32.UInt5 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for AHB2RSTR_Register use record
GPIOARST at 0 range 0 .. 0;
GPIOBRST at 0 range 1 .. 1;
GPIOCRST at 0 range 2 .. 2;
GPIODRST at 0 range 3 .. 3;
GPIOERST at 0 range 4 .. 4;
GPIOFRST at 0 range 5 .. 5;
GPIOGRST at 0 range 6 .. 6;
Reserved_7_12 at 0 range 7 .. 12;
ADC12RST at 0 range 13 .. 13;
ADC345RST at 0 range 14 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
DAC1RST at 0 range 16 .. 16;
DAC2RST at 0 range 17 .. 17;
DAC3RST at 0 range 18 .. 18;
DAC4RST at 0 range 19 .. 19;
Reserved_20_23 at 0 range 20 .. 23;
AESRST at 0 range 24 .. 24;
Reserved_25_25 at 0 range 25 .. 25;
RNGRST at 0 range 26 .. 26;
Reserved_27_31 at 0 range 27 .. 31;
end record;
subtype AHB3RSTR_FMCRST_Field is Interfaces.STM32.Bit;
subtype AHB3RSTR_QSPIRST_Field is Interfaces.STM32.Bit;
-- AHB3 peripheral reset register
type AHB3RSTR_Register is record
-- Flexible memory controller reset
FMCRST : AHB3RSTR_FMCRST_Field := 16#0#;
-- unspecified
Reserved_1_7 : Interfaces.STM32.UInt7 := 16#0#;
-- Quad SPI 1 module reset
QSPIRST : AHB3RSTR_QSPIRST_Field := 16#0#;
-- unspecified
Reserved_9_31 : Interfaces.STM32.UInt23 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for AHB3RSTR_Register use record
FMCRST at 0 range 0 .. 0;
Reserved_1_7 at 0 range 1 .. 7;
QSPIRST at 0 range 8 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
subtype APB1RSTR1_TIM2RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_TIM3RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_TIM4RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_TIM5RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_TIM6RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_TIM7RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_CRSRST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_SPI2RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_SPI3RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_USART2RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_USART3RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_UART4RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_UART5RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_I2C1RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_I2C2RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_USBDRST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_FDCANRST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_PWRRST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_I2C3RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR1_LPTIM1RST_Field is Interfaces.STM32.Bit;
-- APB1 peripheral reset register 1
type APB1RSTR1_Register is record
-- TIM2 timer reset
TIM2RST : APB1RSTR1_TIM2RST_Field := 16#0#;
-- TIM3 timer reset
TIM3RST : APB1RSTR1_TIM3RST_Field := 16#0#;
-- TIM3 timer reset
TIM4RST : APB1RSTR1_TIM4RST_Field := 16#0#;
-- TIM5 timer reset
TIM5RST : APB1RSTR1_TIM5RST_Field := 16#0#;
-- TIM6 timer reset
TIM6RST : APB1RSTR1_TIM6RST_Field := 16#0#;
-- TIM7 timer reset
TIM7RST : APB1RSTR1_TIM7RST_Field := 16#0#;
-- unspecified
Reserved_6_7 : Interfaces.STM32.UInt2 := 16#0#;
-- Clock recovery system reset
CRSRST : APB1RSTR1_CRSRST_Field := 16#0#;
-- unspecified
Reserved_9_13 : Interfaces.STM32.UInt5 := 16#0#;
-- SPI2 reset
SPI2RST : APB1RSTR1_SPI2RST_Field := 16#0#;
-- SPI3 reset
SPI3RST : APB1RSTR1_SPI3RST_Field := 16#0#;
-- unspecified
Reserved_16_16 : Interfaces.STM32.Bit := 16#0#;
-- USART2 reset
USART2RST : APB1RSTR1_USART2RST_Field := 16#0#;
-- USART3 reset
USART3RST : APB1RSTR1_USART3RST_Field := 16#0#;
-- UART4 reset
UART4RST : APB1RSTR1_UART4RST_Field := 16#0#;
-- UART5 reset
UART5RST : APB1RSTR1_UART5RST_Field := 16#0#;
-- I2C1 reset
I2C1RST : APB1RSTR1_I2C1RST_Field := 16#0#;
-- I2C2 reset
I2C2RST : APB1RSTR1_I2C2RST_Field := 16#0#;
-- USBD reset
USBDRST : APB1RSTR1_USBDRST_Field := 16#0#;
-- unspecified
Reserved_24_24 : Interfaces.STM32.Bit := 16#0#;
-- FDCAN reset
FDCANRST : APB1RSTR1_FDCANRST_Field := 16#0#;
-- unspecified
Reserved_26_27 : Interfaces.STM32.UInt2 := 16#0#;
-- Power interface reset
PWRRST : APB1RSTR1_PWRRST_Field := 16#0#;
-- unspecified
Reserved_29_29 : Interfaces.STM32.Bit := 16#0#;
-- I2C3 interface reset
I2C3RST : APB1RSTR1_I2C3RST_Field := 16#0#;
-- Low Power Timer 1 reset
LPTIM1RST : APB1RSTR1_LPTIM1RST_Field := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for APB1RSTR1_Register use record
TIM2RST at 0 range 0 .. 0;
TIM3RST at 0 range 1 .. 1;
TIM4RST at 0 range 2 .. 2;
TIM5RST at 0 range 3 .. 3;
TIM6RST at 0 range 4 .. 4;
TIM7RST at 0 range 5 .. 5;
Reserved_6_7 at 0 range 6 .. 7;
CRSRST at 0 range 8 .. 8;
Reserved_9_13 at 0 range 9 .. 13;
SPI2RST at 0 range 14 .. 14;
SPI3RST at 0 range 15 .. 15;
Reserved_16_16 at 0 range 16 .. 16;
USART2RST at 0 range 17 .. 17;
USART3RST at 0 range 18 .. 18;
UART4RST at 0 range 19 .. 19;
UART5RST at 0 range 20 .. 20;
I2C1RST at 0 range 21 .. 21;
I2C2RST at 0 range 22 .. 22;
USBDRST at 0 range 23 .. 23;
Reserved_24_24 at 0 range 24 .. 24;
FDCANRST at 0 range 25 .. 25;
Reserved_26_27 at 0 range 26 .. 27;
PWRRST at 0 range 28 .. 28;
Reserved_29_29 at 0 range 29 .. 29;
I2C3RST at 0 range 30 .. 30;
LPTIM1RST at 0 range 31 .. 31;
end record;
subtype APB1RSTR2_LPUART1RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR2_I2C4RST_Field is Interfaces.STM32.Bit;
subtype APB1RSTR2_USBPDRST_Field is Interfaces.STM32.Bit;
-- APB1 peripheral reset register 2
type APB1RSTR2_Register is record
-- Low-power UART 1 reset
LPUART1RST : APB1RSTR2_LPUART1RST_Field := 16#0#;
-- I2C4 reset
I2C4RST : APB1RSTR2_I2C4RST_Field := 16#0#;
-- unspecified
Reserved_2_7 : Interfaces.STM32.UInt6 := 16#0#;
-- USBPD reset
USBPDRST : APB1RSTR2_USBPDRST_Field := 16#0#;
-- unspecified
Reserved_9_31 : Interfaces.STM32.UInt23 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for APB1RSTR2_Register use record
LPUART1RST at 0 range 0 .. 0;
I2C4RST at 0 range 1 .. 1;
Reserved_2_7 at 0 range 2 .. 7;
USBPDRST at 0 range 8 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
subtype APB2RSTR_SYSCFGRST_Field is Interfaces.STM32.Bit;
subtype APB2RSTR_TIM1RST_Field is Interfaces.STM32.Bit;
subtype APB2RSTR_SPI1RST_Field is Interfaces.STM32.Bit;
subtype APB2RSTR_TIM8RST_Field is Interfaces.STM32.Bit;
subtype APB2RSTR_USART1RST_Field is Interfaces.STM32.Bit;
subtype APB2RSTR_SPI4RST_Field is Interfaces.STM32.Bit;
subtype APB2RSTR_TIM15RST_Field is Interfaces.STM32.Bit;
subtype APB2RSTR_TIM16RST_Field is Interfaces.STM32.Bit;
subtype APB2RSTR_TIM17RST_Field is Interfaces.STM32.Bit;
subtype APB2RSTR_TIM20RST_Field is Interfaces.STM32.Bit;
subtype APB2RSTR_SAI1RST_Field is Interfaces.STM32.Bit;
subtype APB2RSTR_HRTIM1RST_Field is Interfaces.STM32.Bit;
-- APB2 peripheral reset register
type APB2RSTR_Register is record
-- System configuration (SYSCFG) reset
SYSCFGRST : APB2RSTR_SYSCFGRST_Field := 16#0#;
-- unspecified
Reserved_1_10 : Interfaces.STM32.UInt10 := 16#0#;
-- TIM1 timer reset
TIM1RST : APB2RSTR_TIM1RST_Field := 16#0#;
-- SPI1 reset
SPI1RST : APB2RSTR_SPI1RST_Field := 16#0#;
-- TIM8 timer reset
TIM8RST : APB2RSTR_TIM8RST_Field := 16#0#;
-- USART1 reset
USART1RST : APB2RSTR_USART1RST_Field := 16#0#;
-- SPI 4 reset
SPI4RST : APB2RSTR_SPI4RST_Field := 16#0#;
-- TIM15 timer reset
TIM15RST : APB2RSTR_TIM15RST_Field := 16#0#;
-- TIM16 timer reset
TIM16RST : APB2RSTR_TIM16RST_Field := 16#0#;
-- TIM17 timer reset
TIM17RST : APB2RSTR_TIM17RST_Field := 16#0#;
-- unspecified
Reserved_19_19 : Interfaces.STM32.Bit := 16#0#;
-- Timer 20 reset
TIM20RST : APB2RSTR_TIM20RST_Field := 16#0#;
-- Serial audio interface 1 (SAI1) reset
SAI1RST : APB2RSTR_SAI1RST_Field := 16#0#;
-- unspecified
Reserved_22_25 : Interfaces.STM32.UInt4 := 16#0#;
-- HRTIMER reset
HRTIM1RST : APB2RSTR_HRTIM1RST_Field := 16#0#;
-- unspecified
Reserved_27_31 : Interfaces.STM32.UInt5 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for APB2RSTR_Register use record
SYSCFGRST at 0 range 0 .. 0;
Reserved_1_10 at 0 range 1 .. 10;
TIM1RST at 0 range 11 .. 11;
SPI1RST at 0 range 12 .. 12;
TIM8RST at 0 range 13 .. 13;
USART1RST at 0 range 14 .. 14;
SPI4RST at 0 range 15 .. 15;
TIM15RST at 0 range 16 .. 16;
TIM16RST at 0 range 17 .. 17;
TIM17RST at 0 range 18 .. 18;
Reserved_19_19 at 0 range 19 .. 19;
TIM20RST at 0 range 20 .. 20;
SAI1RST at 0 range 21 .. 21;
Reserved_22_25 at 0 range 22 .. 25;
HRTIM1RST at 0 range 26 .. 26;
Reserved_27_31 at 0 range 27 .. 31;
end record;
subtype AHB1ENR_DMA1EN_Field is Interfaces.STM32.Bit;
subtype AHB1ENR_DMA2EN_Field is Interfaces.STM32.Bit;
subtype AHB1ENR_DMAMUXEN_Field is Interfaces.STM32.Bit;
subtype AHB1ENR_CORDICEN_Field is Interfaces.STM32.Bit;
subtype AHB1ENR_FMACEN_Field is Interfaces.STM32.Bit;
subtype AHB1ENR_FLITFEN_Field is Interfaces.STM32.Bit;
subtype AHB1ENR_CRCEN_Field is Interfaces.STM32.Bit;
-- AHB1 peripheral clock enable register
type AHB1ENR_Register is record
-- DMA1 clock enable
DMA1EN : AHB1ENR_DMA1EN_Field := 16#0#;
-- DMA2 clock enable
DMA2EN : AHB1ENR_DMA2EN_Field := 16#0#;
-- DMAMUX clock enable
DMAMUXEN : AHB1ENR_DMAMUXEN_Field := 16#0#;
-- CORDIC clock enable
CORDICEN : AHB1ENR_CORDICEN_Field := 16#0#;
-- FMAC clock enable
FMACEN : AHB1ENR_FMACEN_Field := 16#0#;
-- unspecified
Reserved_5_7 : Interfaces.STM32.UInt3 := 16#0#;
-- FLITF clock enable
FLITFEN : AHB1ENR_FLITFEN_Field := 16#1#;
-- unspecified
Reserved_9_11 : Interfaces.STM32.UInt3 := 16#0#;
-- CRC clock enable
CRCEN : AHB1ENR_CRCEN_Field := 16#0#;
-- unspecified
Reserved_13_31 : Interfaces.STM32.UInt19 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for AHB1ENR_Register use record
DMA1EN at 0 range 0 .. 0;
DMA2EN at 0 range 1 .. 1;
DMAMUXEN at 0 range 2 .. 2;
CORDICEN at 0 range 3 .. 3;
FMACEN at 0 range 4 .. 4;
Reserved_5_7 at 0 range 5 .. 7;
FLITFEN at 0 range 8 .. 8;
Reserved_9_11 at 0 range 9 .. 11;
CRCEN at 0 range 12 .. 12;
Reserved_13_31 at 0 range 13 .. 31;
end record;
subtype AHB2ENR_GPIOAEN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_GPIOBEN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_GPIOCEN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_GPIODEN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_GPIOEEN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_GPIOFEN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_GPIOGEN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_ADC12EN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_ADC345EN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_DAC1EN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_DAC2EN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_DAC3EN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_DAC4EN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_CRYPTEN_Field is Interfaces.STM32.Bit;
subtype AHB2ENR_RNGEN_Field is Interfaces.STM32.Bit;
-- AHB2 peripheral clock enable register
type AHB2ENR_Register is record
-- IO port A clock enable
GPIOAEN : AHB2ENR_GPIOAEN_Field := 16#0#;
-- IO port B clock enable
GPIOBEN : AHB2ENR_GPIOBEN_Field := 16#0#;
-- IO port C clock enable
GPIOCEN : AHB2ENR_GPIOCEN_Field := 16#0#;
-- IO port D clock enable
GPIODEN : AHB2ENR_GPIODEN_Field := 16#0#;
-- IO port E clock enable
GPIOEEN : AHB2ENR_GPIOEEN_Field := 16#0#;
-- IO port F clock enable
GPIOFEN : AHB2ENR_GPIOFEN_Field := 16#0#;
-- IO port G clock enable
GPIOGEN : AHB2ENR_GPIOGEN_Field := 16#0#;
-- unspecified
Reserved_7_12 : Interfaces.STM32.UInt6 := 16#0#;
-- ADC12 clock enable
ADC12EN : AHB2ENR_ADC12EN_Field := 16#0#;
-- ADC345 clock enable
ADC345EN : AHB2ENR_ADC345EN_Field := 16#0#;
-- unspecified
Reserved_15_15 : Interfaces.STM32.Bit := 16#0#;
-- DAC1 clock enable
DAC1EN : AHB2ENR_DAC1EN_Field := 16#0#;
-- DAC2 clock enable
DAC2EN : AHB2ENR_DAC2EN_Field := 16#0#;
-- DAC3 clock enable
DAC3EN : AHB2ENR_DAC3EN_Field := 16#0#;
-- DAC4 clock enable
DAC4EN : AHB2ENR_DAC4EN_Field := 16#0#;
-- unspecified
Reserved_20_23 : Interfaces.STM32.UInt4 := 16#0#;
-- Cryptography clock enable
CRYPTEN : AHB2ENR_CRYPTEN_Field := 16#0#;
-- unspecified
Reserved_25_25 : Interfaces.STM32.Bit := 16#0#;
-- Random Number Generator clock enable
RNGEN : AHB2ENR_RNGEN_Field := 16#0#;
-- unspecified
Reserved_27_31 : Interfaces.STM32.UInt5 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for AHB2ENR_Register use record
GPIOAEN at 0 range 0 .. 0;
GPIOBEN at 0 range 1 .. 1;
GPIOCEN at 0 range 2 .. 2;
GPIODEN at 0 range 3 .. 3;
GPIOEEN at 0 range 4 .. 4;
GPIOFEN at 0 range 5 .. 5;
GPIOGEN at 0 range 6 .. 6;
Reserved_7_12 at 0 range 7 .. 12;
ADC12EN at 0 range 13 .. 13;
ADC345EN at 0 range 14 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
DAC1EN at 0 range 16 .. 16;
DAC2EN at 0 range 17 .. 17;
DAC3EN at 0 range 18 .. 18;
DAC4EN at 0 range 19 .. 19;
Reserved_20_23 at 0 range 20 .. 23;
CRYPTEN at 0 range 24 .. 24;
Reserved_25_25 at 0 range 25 .. 25;
RNGEN at 0 range 26 .. 26;
Reserved_27_31 at 0 range 27 .. 31;
end record;
subtype AHB3ENR_FMCEN_Field is Interfaces.STM32.Bit;
subtype AHB3ENR_QSPIEN_Field is Interfaces.STM32.Bit;
-- AHB3 peripheral clock enable register
type AHB3ENR_Register is record
-- Flexible memory controller clock enable
FMCEN : AHB3ENR_FMCEN_Field := 16#0#;
-- unspecified
Reserved_1_7 : Interfaces.STM32.UInt7 := 16#0#;
-- Quad SPI 1 module clock enable
QSPIEN : AHB3ENR_QSPIEN_Field := 16#0#;
-- unspecified
Reserved_9_31 : Interfaces.STM32.UInt23 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for AHB3ENR_Register use record
FMCEN at 0 range 0 .. 0;
Reserved_1_7 at 0 range 1 .. 7;
QSPIEN at 0 range 8 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
subtype APB1ENR1_TIM2EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_TIM3EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_TIM4EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_TIM5EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_TIM6EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_TIM7EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_CRSEN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_RTCAPBEN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_WWDGEN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_SPI2EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_SPI3EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_USART2EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_USART3EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_UART4EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_UART5EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_I2C1EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_I2C2EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_USBDEN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_FDCANEN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_PWREN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_I2C3EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR1_LPTIM1EN_Field is Interfaces.STM32.Bit;
-- APB1ENR1
type APB1ENR1_Register is record
-- TIM2 timer clock enable
TIM2EN : APB1ENR1_TIM2EN_Field := 16#0#;
-- TIM3 timer clock enable
TIM3EN : APB1ENR1_TIM3EN_Field := 16#0#;
-- TIM4 timer clock enable
TIM4EN : APB1ENR1_TIM4EN_Field := 16#0#;
-- TIM5 timer clock enable
TIM5EN : APB1ENR1_TIM5EN_Field := 16#0#;
-- TIM6 timer clock enable
TIM6EN : APB1ENR1_TIM6EN_Field := 16#0#;
-- TIM7 timer clock enable
TIM7EN : APB1ENR1_TIM7EN_Field := 16#0#;
-- unspecified
Reserved_6_7 : Interfaces.STM32.UInt2 := 16#0#;
-- CRSclock enable
CRSEN : APB1ENR1_CRSEN_Field := 16#0#;
-- unspecified
Reserved_9_9 : Interfaces.STM32.Bit := 16#0#;
-- RTC APB clock enable
RTCAPBEN : APB1ENR1_RTCAPBEN_Field := 16#0#;
-- Window watchdog clock enable
WWDGEN : APB1ENR1_WWDGEN_Field := 16#0#;
-- unspecified
Reserved_12_13 : Interfaces.STM32.UInt2 := 16#0#;
-- SPI2 clock enable
SPI2EN : APB1ENR1_SPI2EN_Field := 16#0#;
-- SPI3 clock enable
SPI3EN : APB1ENR1_SPI3EN_Field := 16#0#;
-- unspecified
Reserved_16_16 : Interfaces.STM32.Bit := 16#0#;
-- USART2 clock enable
USART2EN : APB1ENR1_USART2EN_Field := 16#0#;
-- USART3 clock enable
USART3EN : APB1ENR1_USART3EN_Field := 16#0#;
-- UART4 clock enable
UART4EN : APB1ENR1_UART4EN_Field := 16#0#;
-- UART5 clock enable
UART5EN : APB1ENR1_UART5EN_Field := 16#0#;
-- I2C1 clock enable
I2C1EN : APB1ENR1_I2C1EN_Field := 16#0#;
-- I2C2 clock enable
I2C2EN : APB1ENR1_I2C2EN_Field := 16#0#;
-- USBDclock enable
USBDEN : APB1ENR1_USBDEN_Field := 16#0#;
-- unspecified
Reserved_24_24 : Interfaces.STM32.Bit := 16#0#;
-- FDCAN clock enable
FDCANEN : APB1ENR1_FDCANEN_Field := 16#0#;
-- unspecified
Reserved_26_27 : Interfaces.STM32.UInt2 := 16#0#;
-- Power interface clock enable
PWREN : APB1ENR1_PWREN_Field := 16#0#;
-- unspecified
Reserved_29_29 : Interfaces.STM32.Bit := 16#0#;
-- I2C3 clock enable
I2C3EN : APB1ENR1_I2C3EN_Field := 16#0#;
-- Low power timer 1 clock enable
LPTIM1EN : APB1ENR1_LPTIM1EN_Field := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for APB1ENR1_Register use record
TIM2EN at 0 range 0 .. 0;
TIM3EN at 0 range 1 .. 1;
TIM4EN at 0 range 2 .. 2;
TIM5EN at 0 range 3 .. 3;
TIM6EN at 0 range 4 .. 4;
TIM7EN at 0 range 5 .. 5;
Reserved_6_7 at 0 range 6 .. 7;
CRSEN at 0 range 8 .. 8;
Reserved_9_9 at 0 range 9 .. 9;
RTCAPBEN at 0 range 10 .. 10;
WWDGEN at 0 range 11 .. 11;
Reserved_12_13 at 0 range 12 .. 13;
SPI2EN at 0 range 14 .. 14;
SPI3EN at 0 range 15 .. 15;
Reserved_16_16 at 0 range 16 .. 16;
USART2EN at 0 range 17 .. 17;
USART3EN at 0 range 18 .. 18;
UART4EN at 0 range 19 .. 19;
UART5EN at 0 range 20 .. 20;
I2C1EN at 0 range 21 .. 21;
I2C2EN at 0 range 22 .. 22;
USBDEN at 0 range 23 .. 23;
Reserved_24_24 at 0 range 24 .. 24;
FDCANEN at 0 range 25 .. 25;
Reserved_26_27 at 0 range 26 .. 27;
PWREN at 0 range 28 .. 28;
Reserved_29_29 at 0 range 29 .. 29;
I2C3EN at 0 range 30 .. 30;
LPTIM1EN at 0 range 31 .. 31;
end record;
subtype APB1ENR2_LPUART1EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR2_I2C4EN_Field is Interfaces.STM32.Bit;
subtype APB1ENR2_USBPDEN_Field is Interfaces.STM32.Bit;
-- APB1 peripheral clock enable register 2
type APB1ENR2_Register is record
-- Low power UART 1 clock enable
LPUART1EN : APB1ENR2_LPUART1EN_Field := 16#0#;
-- I2C4 clock enable
I2C4EN : APB1ENR2_I2C4EN_Field := 16#0#;
-- unspecified
Reserved_2_7 : Interfaces.STM32.UInt6 := 16#0#;
-- USBPD clock enable
USBPDEN : APB1ENR2_USBPDEN_Field := 16#0#;
-- unspecified
Reserved_9_31 : Interfaces.STM32.UInt23 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for APB1ENR2_Register use record
LPUART1EN at 0 range 0 .. 0;
I2C4EN at 0 range 1 .. 1;
Reserved_2_7 at 0 range 2 .. 7;
USBPDEN at 0 range 8 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
subtype APB2ENR_SYSCFGEN_Field is Interfaces.STM32.Bit;
subtype APB2ENR_TIM1EN_Field is Interfaces.STM32.Bit;
subtype APB2ENR_SPI1EN_Field is Interfaces.STM32.Bit;
subtype APB2ENR_TIM8EN_Field is Interfaces.STM32.Bit;
subtype APB2ENR_USART1EN_Field is Interfaces.STM32.Bit;
subtype APB2ENR_SPI4EN_Field is Interfaces.STM32.Bit;
subtype APB2ENR_TIM15EN_Field is Interfaces.STM32.Bit;
subtype APB2ENR_TIM16EN_Field is Interfaces.STM32.Bit;
subtype APB2ENR_TIM17EN_Field is Interfaces.STM32.Bit;
subtype APB2ENR_TIM20EN_Field is Interfaces.STM32.Bit;
subtype APB2ENR_SAI1EN_Field is Interfaces.STM32.Bit;
subtype APB2ENR_HRTIM1EN_Field is Interfaces.STM32.Bit;
-- APB2ENR
type APB2ENR_Register is record
-- SYSCFG clock enable
SYSCFGEN : APB2ENR_SYSCFGEN_Field := 16#0#;
-- unspecified
Reserved_1_10 : Interfaces.STM32.UInt10 := 16#0#;
-- TIM1 timer clock enable
TIM1EN : APB2ENR_TIM1EN_Field := 16#0#;
-- SPI1 clock enable
SPI1EN : APB2ENR_SPI1EN_Field := 16#0#;
-- TIM8 timer clock enable
TIM8EN : APB2ENR_TIM8EN_Field := 16#0#;
-- USART1clock enable
USART1EN : APB2ENR_USART1EN_Field := 16#0#;
-- SPI 4 clock enable
SPI4EN : APB2ENR_SPI4EN_Field := 16#0#;
-- TIM15 timer clock enable
TIM15EN : APB2ENR_TIM15EN_Field := 16#0#;
-- TIM16 timer clock enable
TIM16EN : APB2ENR_TIM16EN_Field := 16#0#;
-- TIM17 timer clock enable
TIM17EN : APB2ENR_TIM17EN_Field := 16#0#;
-- unspecified
Reserved_19_19 : Interfaces.STM32.Bit := 16#0#;
-- Timer 20 clock enable
TIM20EN : APB2ENR_TIM20EN_Field := 16#0#;
-- SAI1 clock enable
SAI1EN : APB2ENR_SAI1EN_Field := 16#0#;
-- unspecified
Reserved_22_25 : Interfaces.STM32.UInt4 := 16#0#;
-- HRTIMER clock enable
HRTIM1EN : APB2ENR_HRTIM1EN_Field := 16#0#;
-- unspecified
Reserved_27_31 : Interfaces.STM32.UInt5 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for APB2ENR_Register use record
SYSCFGEN at 0 range 0 .. 0;
Reserved_1_10 at 0 range 1 .. 10;
TIM1EN at 0 range 11 .. 11;
SPI1EN at 0 range 12 .. 12;
TIM8EN at 0 range 13 .. 13;
USART1EN at 0 range 14 .. 14;
SPI4EN at 0 range 15 .. 15;
TIM15EN at 0 range 16 .. 16;
TIM16EN at 0 range 17 .. 17;
TIM17EN at 0 range 18 .. 18;
Reserved_19_19 at 0 range 19 .. 19;
TIM20EN at 0 range 20 .. 20;
SAI1EN at 0 range 21 .. 21;
Reserved_22_25 at 0 range 22 .. 25;
HRTIM1EN at 0 range 26 .. 26;
Reserved_27_31 at 0 range 27 .. 31;
end record;
subtype AHB1SMENR_DMA1SMEN_Field is Interfaces.STM32.Bit;
subtype AHB1SMENR_DMA2SMEN_Field is Interfaces.STM32.Bit;
subtype AHB1SMENR_DMAMUX1SMEN_Field is Interfaces.STM32.Bit;
subtype AHB1SMENR_CORDICSMEN_Field is Interfaces.STM32.Bit;
subtype AHB1SMENR_FMACSMEN_Field is Interfaces.STM32.Bit;
subtype AHB1SMENR_FLASHSMEN_Field is Interfaces.STM32.Bit;
subtype AHB1SMENR_SRAM1SMEN_Field is Interfaces.STM32.Bit;
subtype AHB1SMENR_CRCSMEN_Field is Interfaces.STM32.Bit;
-- AHB1 peripheral clocks enable in Sleep and Stop modes register
type AHB1SMENR_Register is record
-- DMA1 clocks enable during Sleep and Stop modes
DMA1SMEN : AHB1SMENR_DMA1SMEN_Field := 16#1#;
-- DMA2 clocks enable during Sleep and Stop modes
DMA2SMEN : AHB1SMENR_DMA2SMEN_Field := 16#1#;
-- DMAMUX clock enable during Sleep and Stop modes
DMAMUX1SMEN : AHB1SMENR_DMAMUX1SMEN_Field := 16#1#;
-- CORDIC clock enable during sleep mode
CORDICSMEN : AHB1SMENR_CORDICSMEN_Field := 16#1#;
-- FMACSM clock enable
FMACSMEN : AHB1SMENR_FMACSMEN_Field := 16#0#;
-- unspecified
Reserved_5_7 : Interfaces.STM32.UInt3 := 16#0#;
-- Flash memory interface clocks enable during Sleep and Stop modes
FLASHSMEN : AHB1SMENR_FLASHSMEN_Field := 16#1#;
-- SRAM1 interface clocks enable during Sleep and Stop modes
SRAM1SMEN : AHB1SMENR_SRAM1SMEN_Field := 16#1#;
-- unspecified
Reserved_10_11 : Interfaces.STM32.UInt2 := 16#0#;
-- CRCSMEN
CRCSMEN : AHB1SMENR_CRCSMEN_Field := 16#1#;
-- unspecified
Reserved_13_31 : Interfaces.STM32.UInt19 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for AHB1SMENR_Register use record
DMA1SMEN at 0 range 0 .. 0;
DMA2SMEN at 0 range 1 .. 1;
DMAMUX1SMEN at 0 range 2 .. 2;
CORDICSMEN at 0 range 3 .. 3;
FMACSMEN at 0 range 4 .. 4;
Reserved_5_7 at 0 range 5 .. 7;
FLASHSMEN at 0 range 8 .. 8;
SRAM1SMEN at 0 range 9 .. 9;
Reserved_10_11 at 0 range 10 .. 11;
CRCSMEN at 0 range 12 .. 12;
Reserved_13_31 at 0 range 13 .. 31;
end record;
subtype AHB2SMENR_GPIOASMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_GPIOBSMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_GPIOCSMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_GPIODSMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_GPIOESMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_GPIOFSMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_GPIOGSMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_SRAM2SMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_SRAM3SMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_AD12CSMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_ADC345SMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_DAC1SMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_DAC2SMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_DAC3SMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_DAC4SMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_CRYPTSMEN_Field is Interfaces.STM32.Bit;
subtype AHB2SMENR_RNGSMEN_Field is Interfaces.STM32.Bit;
-- AHB2 peripheral clocks enable in Sleep and Stop modes register
type AHB2SMENR_Register is record
-- IO port A clocks enable during Sleep and Stop modes
GPIOASMEN : AHB2SMENR_GPIOASMEN_Field := 16#1#;
-- IO port B clocks enable during Sleep and Stop modes
GPIOBSMEN : AHB2SMENR_GPIOBSMEN_Field := 16#1#;
-- IO port C clocks enable during Sleep and Stop modes
GPIOCSMEN : AHB2SMENR_GPIOCSMEN_Field := 16#1#;
-- IO port D clocks enable during Sleep and Stop modes
GPIODSMEN : AHB2SMENR_GPIODSMEN_Field := 16#1#;
-- IO port E clocks enable during Sleep and Stop modes
GPIOESMEN : AHB2SMENR_GPIOESMEN_Field := 16#1#;
-- IO port F clocks enable during Sleep and Stop modes
GPIOFSMEN : AHB2SMENR_GPIOFSMEN_Field := 16#1#;
-- IO port G clocks enable during Sleep and Stop modes
GPIOGSMEN : AHB2SMENR_GPIOGSMEN_Field := 16#1#;
-- unspecified
Reserved_7_8 : Interfaces.STM32.UInt2 := 16#0#;
-- SRAM2 interface clocks enable during Sleep and Stop modes
SRAM2SMEN : AHB2SMENR_SRAM2SMEN_Field := 16#1#;
-- SRAM2 interface clocks enable during Sleep and Stop modes
SRAM3SMEN : AHB2SMENR_SRAM3SMEN_Field := 16#1#;
-- unspecified
Reserved_11_12 : Interfaces.STM32.UInt2 := 16#0#;
-- ADC clocks enable during Sleep and Stop modes
AD12CSMEN : AHB2SMENR_AD12CSMEN_Field := 16#1#;
-- DCMI clock enable during Sleep and Stop modes
ADC345SMEN : AHB2SMENR_ADC345SMEN_Field := 16#1#;
-- unspecified
Reserved_15_15 : Interfaces.STM32.Bit := 16#0#;
-- AES accelerator clocks enable during Sleep and Stop modes
DAC1SMEN : AHB2SMENR_DAC1SMEN_Field := 16#1#;
-- HASH clock enable during Sleep and Stop modes
DAC2SMEN : AHB2SMENR_DAC2SMEN_Field := 16#1#;
-- DAC3 clock enable during sleep mode
DAC3SMEN : AHB2SMENR_DAC3SMEN_Field := 16#1#;
-- DAC4 clock enable during sleep mode
DAC4SMEN : AHB2SMENR_DAC4SMEN_Field := 16#1#;
-- unspecified
Reserved_20_23 : Interfaces.STM32.UInt4 := 16#0#;
-- Cryptography clock enable during sleep mode
CRYPTSMEN : AHB2SMENR_CRYPTSMEN_Field := 16#1#;
-- unspecified
Reserved_25_25 : Interfaces.STM32.Bit := 16#0#;
-- Random Number Generator clock enable during sleep mode
RNGSMEN : AHB2SMENR_RNGSMEN_Field := 16#1#;
-- unspecified
Reserved_27_31 : Interfaces.STM32.UInt5 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for AHB2SMENR_Register use record
GPIOASMEN at 0 range 0 .. 0;
GPIOBSMEN at 0 range 1 .. 1;
GPIOCSMEN at 0 range 2 .. 2;
GPIODSMEN at 0 range 3 .. 3;
GPIOESMEN at 0 range 4 .. 4;
GPIOFSMEN at 0 range 5 .. 5;
GPIOGSMEN at 0 range 6 .. 6;
Reserved_7_8 at 0 range 7 .. 8;
SRAM2SMEN at 0 range 9 .. 9;
SRAM3SMEN at 0 range 10 .. 10;
Reserved_11_12 at 0 range 11 .. 12;
AD12CSMEN at 0 range 13 .. 13;
ADC345SMEN at 0 range 14 .. 14;
Reserved_15_15 at 0 range 15 .. 15;
DAC1SMEN at 0 range 16 .. 16;
DAC2SMEN at 0 range 17 .. 17;
DAC3SMEN at 0 range 18 .. 18;
DAC4SMEN at 0 range 19 .. 19;
Reserved_20_23 at 0 range 20 .. 23;
CRYPTSMEN at 0 range 24 .. 24;
Reserved_25_25 at 0 range 25 .. 25;
RNGSMEN at 0 range 26 .. 26;
Reserved_27_31 at 0 range 27 .. 31;
end record;
subtype AHB3SMENR_FMCSMEN_Field is Interfaces.STM32.Bit;
subtype AHB3SMENR_QSPISMEN_Field is Interfaces.STM32.Bit;
-- AHB3 peripheral clocks enable in Sleep and Stop modes register
type AHB3SMENR_Register is record
-- Flexible memory controller clocks enable during Sleep and Stop modes
FMCSMEN : AHB3SMENR_FMCSMEN_Field := 16#1#;
-- unspecified
Reserved_1_7 : Interfaces.STM32.UInt7 := 16#0#;
-- QUAD SPI 1 module clock enable during sleep mode
QSPISMEN : AHB3SMENR_QSPISMEN_Field := 16#1#;
-- unspecified
Reserved_9_31 : Interfaces.STM32.UInt23 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for AHB3SMENR_Register use record
FMCSMEN at 0 range 0 .. 0;
Reserved_1_7 at 0 range 1 .. 7;
QSPISMEN at 0 range 8 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
subtype APB1SMENR1_TIM2SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_TIM3SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_TIM4SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_TIM5SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_TIM6SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_TIM7SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_CRSSMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_RTCAPBSMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_WWDGSMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_SPI2SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_SP3SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_USART2SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_USART3SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_UART4SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_UART5SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_I2C1SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_I2C2SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_I2C3SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_FDCANSMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_PWRSMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_I2C3SMEN_3_Field is Interfaces.STM32.Bit;
subtype APB1SMENR1_LPTIM1SMEN_Field is Interfaces.STM32.Bit;
-- APB1SMENR1
type APB1SMENR1_Register is record
-- TIM2 timer clocks enable during Sleep and Stop modes
TIM2SMEN : APB1SMENR1_TIM2SMEN_Field := 16#1#;
-- TIM3 timer clocks enable during Sleep and Stop modes
TIM3SMEN : APB1SMENR1_TIM3SMEN_Field := 16#1#;
-- TIM4 timer clocks enable during Sleep and Stop modes
TIM4SMEN : APB1SMENR1_TIM4SMEN_Field := 16#1#;
-- TIM5 timer clocks enable during Sleep and Stop modes
TIM5SMEN : APB1SMENR1_TIM5SMEN_Field := 16#1#;
-- TIM6 timer clocks enable during Sleep and Stop modes
TIM6SMEN : APB1SMENR1_TIM6SMEN_Field := 16#1#;
-- TIM7 timer clocks enable during Sleep and Stop modes
TIM7SMEN : APB1SMENR1_TIM7SMEN_Field := 16#1#;
-- unspecified
Reserved_6_7 : Interfaces.STM32.UInt2 := 16#0#;
-- CRS clock enable during sleep mode
CRSSMEN : APB1SMENR1_CRSSMEN_Field := 16#1#;
-- unspecified
Reserved_9_9 : Interfaces.STM32.Bit := 16#0#;
-- RTC APB clock enable during Sleep and Stop modes
RTCAPBSMEN : APB1SMENR1_RTCAPBSMEN_Field := 16#1#;
-- Window watchdog clocks enable during Sleep and Stop modes
WWDGSMEN : APB1SMENR1_WWDGSMEN_Field := 16#1#;
-- unspecified
Reserved_12_13 : Interfaces.STM32.UInt2 := 16#0#;
-- SPI2 clocks enable during Sleep and Stop modes
SPI2SMEN : APB1SMENR1_SPI2SMEN_Field := 16#1#;
-- SPI3 clocks enable during Sleep and Stop modes
SP3SMEN : APB1SMENR1_SP3SMEN_Field := 16#1#;
-- unspecified
Reserved_16_16 : Interfaces.STM32.Bit := 16#0#;
-- USART2 clocks enable during Sleep and Stop modes
USART2SMEN : APB1SMENR1_USART2SMEN_Field := 16#1#;
-- USART3 clocks enable during Sleep and Stop modes
USART3SMEN : APB1SMENR1_USART3SMEN_Field := 16#1#;
-- UART4 clocks enable during Sleep and Stop modes
UART4SMEN : APB1SMENR1_UART4SMEN_Field := 16#1#;
-- UART5 clocks enable during Sleep and Stop modes
UART5SMEN : APB1SMENR1_UART5SMEN_Field := 16#1#;
-- I2C1 clocks enable during Sleep and Stop modes
I2C1SMEN : APB1SMENR1_I2C1SMEN_Field := 16#1#;
-- I2C2 clocks enable during Sleep and Stop modes
I2C2SMEN : APB1SMENR1_I2C2SMEN_Field := 16#1#;
-- I2C3 clocks enable during Sleep and Stop modes
I2C3SMEN : APB1SMENR1_I2C3SMEN_Field := 16#1#;
-- unspecified
Reserved_24_24 : Interfaces.STM32.Bit := 16#0#;
-- FDCAN clock enable during sleep mode
FDCANSMEN : APB1SMENR1_FDCANSMEN_Field := 16#1#;
-- unspecified
Reserved_26_27 : Interfaces.STM32.UInt2 := 16#0#;
-- Power interface clocks enable during Sleep and Stop modes
PWRSMEN : APB1SMENR1_PWRSMEN_Field := 16#1#;
-- unspecified
Reserved_29_29 : Interfaces.STM32.Bit := 16#0#;
-- I2C 3 interface clock enable during sleep mode
I2C3SMEN_3 : APB1SMENR1_I2C3SMEN_3_Field := 16#1#;
-- Low Power Timer1 clock enable during sleep mode
LPTIM1SMEN : APB1SMENR1_LPTIM1SMEN_Field := 16#1#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for APB1SMENR1_Register use record
TIM2SMEN at 0 range 0 .. 0;
TIM3SMEN at 0 range 1 .. 1;
TIM4SMEN at 0 range 2 .. 2;
TIM5SMEN at 0 range 3 .. 3;
TIM6SMEN at 0 range 4 .. 4;
TIM7SMEN at 0 range 5 .. 5;
Reserved_6_7 at 0 range 6 .. 7;
CRSSMEN at 0 range 8 .. 8;
Reserved_9_9 at 0 range 9 .. 9;
RTCAPBSMEN at 0 range 10 .. 10;
WWDGSMEN at 0 range 11 .. 11;
Reserved_12_13 at 0 range 12 .. 13;
SPI2SMEN at 0 range 14 .. 14;
SP3SMEN at 0 range 15 .. 15;
Reserved_16_16 at 0 range 16 .. 16;
USART2SMEN at 0 range 17 .. 17;
USART3SMEN at 0 range 18 .. 18;
UART4SMEN at 0 range 19 .. 19;
UART5SMEN at 0 range 20 .. 20;
I2C1SMEN at 0 range 21 .. 21;
I2C2SMEN at 0 range 22 .. 22;
I2C3SMEN at 0 range 23 .. 23;
Reserved_24_24 at 0 range 24 .. 24;
FDCANSMEN at 0 range 25 .. 25;
Reserved_26_27 at 0 range 26 .. 27;
PWRSMEN at 0 range 28 .. 28;
Reserved_29_29 at 0 range 29 .. 29;
I2C3SMEN_3 at 0 range 30 .. 30;
LPTIM1SMEN at 0 range 31 .. 31;
end record;
subtype APB1SMENR2_LPUART1SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR2_I2C4SMEN_Field is Interfaces.STM32.Bit;
subtype APB1SMENR2_USBPDSMEN_Field is Interfaces.STM32.Bit;
-- APB1 peripheral clocks enable in Sleep and Stop modes register 2
type APB1SMENR2_Register is record
-- Low power UART 1 clocks enable during Sleep and Stop modes
LPUART1SMEN : APB1SMENR2_LPUART1SMEN_Field := 16#1#;
-- I2C4 clocks enable during Sleep and Stop modes
I2C4SMEN : APB1SMENR2_I2C4SMEN_Field := 16#1#;
-- unspecified
Reserved_2_7 : Interfaces.STM32.UInt6 := 16#0#;
-- USB PD clock enable during sleep mode
USBPDSMEN : APB1SMENR2_USBPDSMEN_Field := 16#1#;
-- unspecified
Reserved_9_31 : Interfaces.STM32.UInt23 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for APB1SMENR2_Register use record
LPUART1SMEN at 0 range 0 .. 0;
I2C4SMEN at 0 range 1 .. 1;
Reserved_2_7 at 0 range 2 .. 7;
USBPDSMEN at 0 range 8 .. 8;
Reserved_9_31 at 0 range 9 .. 31;
end record;
subtype APB2SMENR_SYSCFGSMEN_Field is Interfaces.STM32.Bit;
subtype APB2SMENR_TIM1SMEN_Field is Interfaces.STM32.Bit;
subtype APB2SMENR_SPI1SMEN_Field is Interfaces.STM32.Bit;
subtype APB2SMENR_TIM8SMEN_Field is Interfaces.STM32.Bit;
subtype APB2SMENR_USART1SMEN_Field is Interfaces.STM32.Bit;
subtype APB2SMENR_SPI4SMEN_Field is Interfaces.STM32.Bit;
subtype APB2SMENR_TIM15SMEN_Field is Interfaces.STM32.Bit;
subtype APB2SMENR_TIM16SMEN_Field is Interfaces.STM32.Bit;
subtype APB2SMENR_TIM17SMEN_Field is Interfaces.STM32.Bit;
subtype APB2SMENR_TIM20SMEN_Field is Interfaces.STM32.Bit;
subtype APB2SMENR_SAI1SMEN_Field is Interfaces.STM32.Bit;
subtype APB2SMENR_HRTIMERSMEN_Field is Interfaces.STM32.Bit;
-- APB2SMENR
type APB2SMENR_Register is record
-- SYSCFG clocks enable during Sleep and Stop modes
SYSCFGSMEN : APB2SMENR_SYSCFGSMEN_Field := 16#1#;
-- unspecified
Reserved_1_10 : Interfaces.STM32.UInt10 := 16#0#;
-- TIM1 timer clocks enable during Sleep and Stop modes
TIM1SMEN : APB2SMENR_TIM1SMEN_Field := 16#1#;
-- SPI1 clocks enable during Sleep and Stop modes
SPI1SMEN : APB2SMENR_SPI1SMEN_Field := 16#1#;
-- TIM8 timer clocks enable during Sleep and Stop modes
TIM8SMEN : APB2SMENR_TIM8SMEN_Field := 16#1#;
-- USART1clocks enable during Sleep and Stop modes
USART1SMEN : APB2SMENR_USART1SMEN_Field := 16#1#;
-- SPI4 timer clocks enable during Sleep and Stop modes
SPI4SMEN : APB2SMENR_SPI4SMEN_Field := 16#1#;
-- TIM15 timer clocks enable during Sleep and Stop modes
TIM15SMEN : APB2SMENR_TIM15SMEN_Field := 16#1#;
-- TIM16 timer clocks enable during Sleep and Stop modes
TIM16SMEN : APB2SMENR_TIM16SMEN_Field := 16#1#;
-- TIM17 timer clocks enable during Sleep and Stop modes
TIM17SMEN : APB2SMENR_TIM17SMEN_Field := 16#1#;
-- unspecified
Reserved_19_19 : Interfaces.STM32.Bit := 16#0#;
-- Timer 20clock enable during sleep mode
TIM20SMEN : APB2SMENR_TIM20SMEN_Field := 16#1#;
-- SAI1 clock enable during sleep mode
SAI1SMEN : APB2SMENR_SAI1SMEN_Field := 16#1#;
-- unspecified
Reserved_22_25 : Interfaces.STM32.UInt4 := 16#0#;
-- HRTIMER clock enable during sleep mode
HRTIMERSMEN : APB2SMENR_HRTIMERSMEN_Field := 16#1#;
-- unspecified
Reserved_27_31 : Interfaces.STM32.UInt5 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for APB2SMENR_Register use record
SYSCFGSMEN at 0 range 0 .. 0;
Reserved_1_10 at 0 range 1 .. 10;
TIM1SMEN at 0 range 11 .. 11;
SPI1SMEN at 0 range 12 .. 12;
TIM8SMEN at 0 range 13 .. 13;
USART1SMEN at 0 range 14 .. 14;
SPI4SMEN at 0 range 15 .. 15;
TIM15SMEN at 0 range 16 .. 16;
TIM16SMEN at 0 range 17 .. 17;
TIM17SMEN at 0 range 18 .. 18;
Reserved_19_19 at 0 range 19 .. 19;
TIM20SMEN at 0 range 20 .. 20;
SAI1SMEN at 0 range 21 .. 21;
Reserved_22_25 at 0 range 22 .. 25;
HRTIMERSMEN at 0 range 26 .. 26;
Reserved_27_31 at 0 range 27 .. 31;
end record;
subtype CCIPR_USART1SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_USART2SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_USART3SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_UART4SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_UART5SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_LPUART1SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_I2C1SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_I2C2SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_I2C3SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_LPTIM1SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_SAI1SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_I2S23SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_FDCANSEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_CLK48SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_ADC12SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR_ADC345SEL_Field is Interfaces.STM32.UInt2;
-- CCIPR
type CCIPR_Register is record
-- USART1 clock source selection
USART1SEL : CCIPR_USART1SEL_Field := 16#0#;
-- USART2 clock source selection
USART2SEL : CCIPR_USART2SEL_Field := 16#0#;
-- USART3 clock source selection
USART3SEL : CCIPR_USART3SEL_Field := 16#0#;
-- UART4 clock source selection
UART4SEL : CCIPR_UART4SEL_Field := 16#0#;
-- UART5 clock source selection
UART5SEL : CCIPR_UART5SEL_Field := 16#0#;
-- LPUART1 clock source selection
LPUART1SEL : CCIPR_LPUART1SEL_Field := 16#0#;
-- I2C1 clock source selection
I2C1SEL : CCIPR_I2C1SEL_Field := 16#0#;
-- I2C2 clock source selection
I2C2SEL : CCIPR_I2C2SEL_Field := 16#0#;
-- I2C3 clock source selection
I2C3SEL : CCIPR_I2C3SEL_Field := 16#0#;
-- Low power timer 1 clock source selection
LPTIM1SEL : CCIPR_LPTIM1SEL_Field := 16#0#;
-- SAI1 clock source selection
SAI1SEL : CCIPR_SAI1SEL_Field := 16#0#;
-- I2S clock source selection
I2S23SEL : CCIPR_I2S23SEL_Field := 16#0#;
-- SAI2 clock source selection
FDCANSEL : CCIPR_FDCANSEL_Field := 16#0#;
-- 48 MHz clock source selection
CLK48SEL : CCIPR_CLK48SEL_Field := 16#0#;
-- ADCs clock source selection
ADC12SEL : CCIPR_ADC12SEL_Field := 16#0#;
-- ADC3/4/5 clock source selection
ADC345SEL : CCIPR_ADC345SEL_Field := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CCIPR_Register use record
USART1SEL at 0 range 0 .. 1;
USART2SEL at 0 range 2 .. 3;
USART3SEL at 0 range 4 .. 5;
UART4SEL at 0 range 6 .. 7;
UART5SEL at 0 range 8 .. 9;
LPUART1SEL at 0 range 10 .. 11;
I2C1SEL at 0 range 12 .. 13;
I2C2SEL at 0 range 14 .. 15;
I2C3SEL at 0 range 16 .. 17;
LPTIM1SEL at 0 range 18 .. 19;
SAI1SEL at 0 range 20 .. 21;
I2S23SEL at 0 range 22 .. 23;
FDCANSEL at 0 range 24 .. 25;
CLK48SEL at 0 range 26 .. 27;
ADC12SEL at 0 range 28 .. 29;
ADC345SEL at 0 range 30 .. 31;
end record;
subtype BDCR_LSEON_Field is Interfaces.STM32.Bit;
subtype BDCR_LSERDY_Field is Interfaces.STM32.Bit;
subtype BDCR_LSEBYP_Field is Interfaces.STM32.Bit;
subtype BDCR_LSEDRV_Field is Interfaces.STM32.UInt2;
subtype BDCR_LSECSSON_Field is Interfaces.STM32.Bit;
subtype BDCR_LSECSSD_Field is Interfaces.STM32.Bit;
subtype BDCR_RTCSEL_Field is Interfaces.STM32.UInt2;
subtype BDCR_RTCEN_Field is Interfaces.STM32.Bit;
subtype BDCR_BDRST_Field is Interfaces.STM32.Bit;
subtype BDCR_LSCOEN_Field is Interfaces.STM32.Bit;
subtype BDCR_LSCOSEL_Field is Interfaces.STM32.Bit;
-- BDCR
type BDCR_Register is record
-- LSE oscillator enable
LSEON : BDCR_LSEON_Field := 16#0#;
-- Read-only. LSE oscillator ready
LSERDY : BDCR_LSERDY_Field := 16#0#;
-- LSE oscillator bypass
LSEBYP : BDCR_LSEBYP_Field := 16#0#;
-- SE oscillator drive capability
LSEDRV : BDCR_LSEDRV_Field := 16#0#;
-- LSECSSON
LSECSSON : BDCR_LSECSSON_Field := 16#0#;
-- Read-only. LSECSSD
LSECSSD : BDCR_LSECSSD_Field := 16#0#;
-- unspecified
Reserved_7_7 : Interfaces.STM32.Bit := 16#0#;
-- RTC clock source selection
RTCSEL : BDCR_RTCSEL_Field := 16#0#;
-- unspecified
Reserved_10_14 : Interfaces.STM32.UInt5 := 16#0#;
-- RTC clock enable
RTCEN : BDCR_RTCEN_Field := 16#0#;
-- BDRST domain software reset
BDRST : BDCR_BDRST_Field := 16#0#;
-- unspecified
Reserved_17_23 : Interfaces.STM32.UInt7 := 16#0#;
-- Low speed clock output enable
LSCOEN : BDCR_LSCOEN_Field := 16#0#;
-- Low speed clock output selection
LSCOSEL : BDCR_LSCOSEL_Field := 16#0#;
-- unspecified
Reserved_26_31 : Interfaces.STM32.UInt6 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for BDCR_Register use record
LSEON at 0 range 0 .. 0;
LSERDY at 0 range 1 .. 1;
LSEBYP at 0 range 2 .. 2;
LSEDRV at 0 range 3 .. 4;
LSECSSON at 0 range 5 .. 5;
LSECSSD at 0 range 6 .. 6;
Reserved_7_7 at 0 range 7 .. 7;
RTCSEL at 0 range 8 .. 9;
Reserved_10_14 at 0 range 10 .. 14;
RTCEN at 0 range 15 .. 15;
BDRST at 0 range 16 .. 16;
Reserved_17_23 at 0 range 17 .. 23;
LSCOEN at 0 range 24 .. 24;
LSCOSEL at 0 range 25 .. 25;
Reserved_26_31 at 0 range 26 .. 31;
end record;
subtype CSR_LSION_Field is Interfaces.STM32.Bit;
subtype CSR_LSIRDY_Field is Interfaces.STM32.Bit;
subtype CSR_RMVF_Field is Interfaces.STM32.Bit;
subtype CSR_OBLRSTF_Field is Interfaces.STM32.Bit;
subtype CSR_PADRSTF_Field is Interfaces.STM32.Bit;
subtype CSR_BORRSTF_Field is Interfaces.STM32.Bit;
subtype CSR_SFTRSTF_Field is Interfaces.STM32.Bit;
subtype CSR_IWDGRSTF_Field is Interfaces.STM32.Bit;
subtype CSR_WWDGRSTF_Field is Interfaces.STM32.Bit;
subtype CSR_LPWRSTF_Field is Interfaces.STM32.Bit;
-- CSR
type CSR_Register is record
-- LSI oscillator enable
LSION : CSR_LSION_Field := 16#0#;
-- Read-only. LSI oscillator ready
LSIRDY : CSR_LSIRDY_Field := 16#0#;
-- unspecified
Reserved_2_22 : Interfaces.STM32.UInt21 := 16#0#;
-- Remove reset flag
RMVF : CSR_RMVF_Field := 16#0#;
-- unspecified
Reserved_24_24 : Interfaces.STM32.Bit := 16#0#;
-- Read-only. Option byte loader reset flag
OBLRSTF : CSR_OBLRSTF_Field := 16#0#;
-- Read-only. Pad reset flag
PADRSTF : CSR_PADRSTF_Field := 16#1#;
-- Read-only. BOR flag
BORRSTF : CSR_BORRSTF_Field := 16#1#;
-- Read-only. Software reset flag
SFTRSTF : CSR_SFTRSTF_Field := 16#0#;
-- Read-only. Independent window watchdog reset flag
IWDGRSTF : CSR_IWDGRSTF_Field := 16#0#;
-- Read-only. Window watchdog reset flag
WWDGRSTF : CSR_WWDGRSTF_Field := 16#0#;
-- Read-only. Low-power reset flag
LPWRSTF : CSR_LPWRSTF_Field := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CSR_Register use record
LSION at 0 range 0 .. 0;
LSIRDY at 0 range 1 .. 1;
Reserved_2_22 at 0 range 2 .. 22;
RMVF at 0 range 23 .. 23;
Reserved_24_24 at 0 range 24 .. 24;
OBLRSTF at 0 range 25 .. 25;
PADRSTF at 0 range 26 .. 26;
BORRSTF at 0 range 27 .. 27;
SFTRSTF at 0 range 28 .. 28;
IWDGRSTF at 0 range 29 .. 29;
WWDGRSTF at 0 range 30 .. 30;
LPWRSTF at 0 range 31 .. 31;
end record;
subtype CRRCR_HSI48ON_Field is Interfaces.STM32.Bit;
subtype CRRCR_HSI48RDY_Field is Interfaces.STM32.Bit;
subtype CRRCR_HSI48CAL_Field is Interfaces.STM32.UInt9;
-- Clock recovery RC register
type CRRCR_Register is record
-- HSI48 clock enable
HSI48ON : CRRCR_HSI48ON_Field := 16#0#;
-- Read-only. HSI48 clock ready flag
HSI48RDY : CRRCR_HSI48RDY_Field := 16#0#;
-- unspecified
Reserved_2_6 : Interfaces.STM32.UInt5 := 16#0#;
-- Read-only. HSI48 clock calibration
HSI48CAL : CRRCR_HSI48CAL_Field := 16#0#;
-- unspecified
Reserved_16_31 : Interfaces.STM32.UInt16 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CRRCR_Register use record
HSI48ON at 0 range 0 .. 0;
HSI48RDY at 0 range 1 .. 1;
Reserved_2_6 at 0 range 2 .. 6;
HSI48CAL at 0 range 7 .. 15;
Reserved_16_31 at 0 range 16 .. 31;
end record;
subtype CCIPR2_I2C4SEL_Field is Interfaces.STM32.UInt2;
subtype CCIPR2_QSPISEL_Field is Interfaces.STM32.UInt2;
-- Peripherals independent clock configuration register
type CCIPR2_Register is record
-- I2C4 clock source selection
I2C4SEL : CCIPR2_I2C4SEL_Field := 16#0#;
-- unspecified
Reserved_2_19 : Interfaces.STM32.UInt18 := 16#0#;
-- Octospi clock source selection
QSPISEL : CCIPR2_QSPISEL_Field := 16#0#;
-- unspecified
Reserved_22_31 : Interfaces.STM32.UInt10 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CCIPR2_Register use record
I2C4SEL at 0 range 0 .. 1;
Reserved_2_19 at 0 range 2 .. 19;
QSPISEL at 0 range 20 .. 21;
Reserved_22_31 at 0 range 22 .. 31;
end record;
-----------------
-- Peripherals --
-----------------
-- Reset and clock control
type RCC_Peripheral is record
-- Clock control register
CR : aliased CR_Register;
-- Internal clock sources calibration register
ICSCR : aliased ICSCR_Register;
-- Clock configuration register
CFGR : aliased CFGR_Register;
-- PLL configuration register
PLLCFGR : aliased PLLCFGR_Register;
-- Clock interrupt enable register
CIER : aliased CIER_Register;
-- Clock interrupt flag register
CIFR : aliased CIFR_Register;
-- Clock interrupt clear register
CICR : aliased CICR_Register;
-- AHB1 peripheral reset register
AHB1RSTR : aliased AHB1RSTR_Register;
-- AHB2 peripheral reset register
AHB2RSTR : aliased AHB2RSTR_Register;
-- AHB3 peripheral reset register
AHB3RSTR : aliased AHB3RSTR_Register;
-- APB1 peripheral reset register 1
APB1RSTR1 : aliased APB1RSTR1_Register;
-- APB1 peripheral reset register 2
APB1RSTR2 : aliased APB1RSTR2_Register;
-- APB2 peripheral reset register
APB2RSTR : aliased APB2RSTR_Register;
-- AHB1 peripheral clock enable register
AHB1ENR : aliased AHB1ENR_Register;
-- AHB2 peripheral clock enable register
AHB2ENR : aliased AHB2ENR_Register;
-- AHB3 peripheral clock enable register
AHB3ENR : aliased AHB3ENR_Register;
-- APB1ENR1
APB1ENR1 : aliased APB1ENR1_Register;
-- APB1 peripheral clock enable register 2
APB1ENR2 : aliased APB1ENR2_Register;
-- APB2ENR
APB2ENR : aliased APB2ENR_Register;
-- AHB1 peripheral clocks enable in Sleep and Stop modes register
AHB1SMENR : aliased AHB1SMENR_Register;
-- AHB2 peripheral clocks enable in Sleep and Stop modes register
AHB2SMENR : aliased AHB2SMENR_Register;
-- AHB3 peripheral clocks enable in Sleep and Stop modes register
AHB3SMENR : aliased AHB3SMENR_Register;
-- APB1SMENR1
APB1SMENR1 : aliased APB1SMENR1_Register;
-- APB1 peripheral clocks enable in Sleep and Stop modes register 2
APB1SMENR2 : aliased APB1SMENR2_Register;
-- APB2SMENR
APB2SMENR : aliased APB2SMENR_Register;
-- CCIPR
CCIPR : aliased CCIPR_Register;
-- BDCR
BDCR : aliased BDCR_Register;
-- CSR
CSR : aliased CSR_Register;
-- Clock recovery RC register
CRRCR : aliased CRRCR_Register;
-- Peripherals independent clock configuration register
CCIPR2 : aliased CCIPR2_Register;
end record
with Volatile;
for RCC_Peripheral use record
CR at 16#0# range 0 .. 31;
ICSCR at 16#4# range 0 .. 31;
CFGR at 16#8# range 0 .. 31;
PLLCFGR at 16#C# range 0 .. 31;
CIER at 16#18# range 0 .. 31;
CIFR at 16#1C# range 0 .. 31;
CICR at 16#20# range 0 .. 31;
AHB1RSTR at 16#28# range 0 .. 31;
AHB2RSTR at 16#2C# range 0 .. 31;
AHB3RSTR at 16#30# range 0 .. 31;
APB1RSTR1 at 16#38# range 0 .. 31;
APB1RSTR2 at 16#3C# range 0 .. 31;
APB2RSTR at 16#40# range 0 .. 31;
AHB1ENR at 16#48# range 0 .. 31;
AHB2ENR at 16#4C# range 0 .. 31;
AHB3ENR at 16#50# range 0 .. 31;
APB1ENR1 at 16#58# range 0 .. 31;
APB1ENR2 at 16#5C# range 0 .. 31;
APB2ENR at 16#60# range 0 .. 31;
AHB1SMENR at 16#68# range 0 .. 31;
AHB2SMENR at 16#6C# range 0 .. 31;
AHB3SMENR at 16#70# range 0 .. 31;
APB1SMENR1 at 16#78# range 0 .. 31;
APB1SMENR2 at 16#7C# range 0 .. 31;
APB2SMENR at 16#80# range 0 .. 31;
CCIPR at 16#88# range 0 .. 31;
BDCR at 16#90# range 0 .. 31;
CSR at 16#94# range 0 .. 31;
CRRCR at 16#98# range 0 .. 31;
CCIPR2 at 16#9C# range 0 .. 31;
end record;
-- Reset and clock control
RCC_Periph : aliased RCC_Peripheral
with Import, Address => RCC_Base;
end Interfaces.STM32.RCC;
|
-- This spec has been automatically generated from cm4f.svd
pragma Restrictions (No_Elaboration_Code);
pragma Ada_2012;
pragma Style_Checks (Off);
with HAL;
with System;
-- Memory Protection Unit
package Cortex_M_SVD.MPU is
pragma Preelaborate;
---------------
-- Registers --
---------------
-- Indicates support for unified or separate instruction and data memory
-- maps.
type TYPE_SEPARATE_Field is
(
-- Only unified memory maps are supported.
Unified)
with Size => 1;
for TYPE_SEPARATE_Field use
(Unified => 0);
subtype MPU_TYPE_DREGION_Field is HAL.UInt8;
subtype MPU_TYPE_IREGION_Field is HAL.UInt8;
-- MPU Type Register
type MPU_TYPE_Register is record
-- Read-only. Indicates support for unified or separate instruction and
-- data memory maps.
SEPARATE_k : TYPE_SEPARATE_Field;
-- unspecified
Reserved_1_7 : HAL.UInt7;
-- Read-only. Indicates the number of supported MPU data regions
-- depending on your implementation.
DREGION : MPU_TYPE_DREGION_Field;
-- Read-only. Indicates the number of supported MPU instruction regions.
-- Always contains 0x0: the MPU memory map is unified and is described
-- by the DREGION field.
IREGION : MPU_TYPE_IREGION_Field;
-- unspecified
Reserved_24_31 : HAL.UInt8;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for MPU_TYPE_Register use record
SEPARATE_k at 0 range 0 .. 0;
Reserved_1_7 at 0 range 1 .. 7;
DREGION at 0 range 8 .. 15;
IREGION at 0 range 16 .. 23;
Reserved_24_31 at 0 range 24 .. 31;
end record;
-- MPU Control Register
type MPU_CTRL_Register is record
-- Enables the optional MPU.
ENABLE : Boolean := False;
-- Enables the operation of MPU during hard fault, NMI, and FAULTMASK
-- handlers.
HFNMIENA : Boolean := False;
-- Enables privileged software access to the default memory map.
PRIVDEFENA : Boolean := False;
-- unspecified
Reserved_3_31 : HAL.UInt29 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for MPU_CTRL_Register use record
ENABLE at 0 range 0 .. 0;
HFNMIENA at 0 range 1 .. 1;
PRIVDEFENA at 0 range 2 .. 2;
Reserved_3_31 at 0 range 3 .. 31;
end record;
subtype MPU_RNR_REGION_Field is HAL.UInt8;
-- MPU Region Number Register
type MPU_RNR_Register is record
-- Indicates the MPU region referenced by the MPU_RBAR and MPU_RASR
-- registers.
REGION : MPU_RNR_REGION_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 MPU_RNR_Register use record
REGION at 0 range 0 .. 7;
Reserved_8_31 at 0 range 8 .. 31;
end record;
subtype MPU_RBAR_REGION_Field is HAL.UInt4;
subtype MPU_RBAR_ADDR_Field is HAL.UInt27;
-- MPU Region Base Address Register
type MPU_RBAR_Register is record
-- On Write, see the VALID field. On read, specifies the region number.
REGION : MPU_RBAR_REGION_Field := 16#0#;
-- MPU Region number valid bit. Depending on your implementation, this
-- has the following effect: 0 - either updates the base address for the
-- region specified by MPU_RNR or ignores the value of the REGION field.
-- 1 - either updates the value of the MPU_RNR to the value of the
-- REGION field or updates the base address for the region specified in
-- the REGION field.
VALID : Boolean := False;
-- The ADDR field is bits[31:N] of the MPU_RBAR. The region size, as
-- specified by the SIZE field in the MPU_RASR, defines the value of N:
-- N = Log2(Region size in bytes). If the region size is configured to
-- 4GB, in the MPU_RASR, there is no valid ADDR field. In this case, the
-- region occupies the complete memory map, and the base address is
-- 0x00000000. The base address is aligned to the size of the region.
-- For example, a 64KB region must be aligned on a multiple of 64KB, for
-- example, at 0x00010000 or 0x00020000.
ADDR : MPU_RBAR_ADDR_Field := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for MPU_RBAR_Register use record
REGION at 0 range 0 .. 3;
VALID at 0 range 4 .. 4;
ADDR at 0 range 5 .. 31;
end record;
subtype MPU_RASR_SIZE_Field is HAL.UInt5;
-- MPU_RASR_SRD array
type MPU_RASR_SRD_Field_Array is array (0 .. 7) of Boolean
with Component_Size => 1, Size => 8;
-- Type definition for MPU_RASR_SRD
type MPU_RASR_SRD_Field
(As_Array : Boolean := False)
is record
case As_Array is
when False =>
-- SRD as a value
Val : HAL.UInt8;
when True =>
-- SRD as an array
Arr : MPU_RASR_SRD_Field_Array;
end case;
end record
with Unchecked_Union, Size => 8;
for MPU_RASR_SRD_Field use record
Val at 0 range 0 .. 7;
Arr at 0 range 0 .. 7;
end record;
subtype MPU_RASR_TEX_Field is HAL.UInt3;
-- Access permission field
type RASR_AP_Field is
(
-- All accesses generate a permission fault.
No_Access,
-- Access from privileged software only.
Privileged_Rw,
-- Writes by unprivileged software generates a permission fault.
Unpriviledged_Ro,
-- Full Access.
Full_Access,
-- Reads by privileged software only.
Privileged_Ro,
-- Read_Only by privileged or unprivileged software.
Read_Only,
-- Read_Only by privileged or unprivileged software.
Read_Only_1)
with Size => 3;
for RASR_AP_Field use
(No_Access => 0,
Privileged_Rw => 1,
Unpriviledged_Ro => 2,
Full_Access => 3,
Privileged_Ro => 5,
Read_Only => 6,
Read_Only_1 => 7);
-- Instruction access disable bit
type RASR_XN_Field is
(
-- Instruction fetches enabled.
I_Enabled,
-- Instruction fetches disabled.
I_Disabled)
with Size => 1;
for RASR_XN_Field use
(I_Enabled => 0,
I_Disabled => 1);
-- MPU Region Base Attribute and Size Register
type MPU_RASR_Register is record
-- Region enable bit.
ENABLE : Boolean := False;
-- Specifies the size of the MPU protection region. Minimum value is 4.
-- The Region size is defined as (Region size in bytes) = 2^(SIZE+1)
SIZE : MPU_RASR_SIZE_Field := 16#0#;
-- unspecified
Reserved_6_7 : HAL.UInt2 := 16#0#;
-- Subregion disable bits
SRD : MPU_RASR_SRD_Field :=
(As_Array => False, Val => 16#0#);
-- Memory access attribute.
B : Boolean := False;
-- Memory access attribute.
C : Boolean := False;
-- Shareable bit. Applies to Normal memory only.
S : Boolean := False;
-- Memory access attribute.
TEX : MPU_RASR_TEX_Field := 16#0#;
-- unspecified
Reserved_22_23 : HAL.UInt2 := 16#0#;
-- Access permission field
AP : RASR_AP_Field := Cortex_M_SVD.MPU.No_Access;
-- unspecified
Reserved_27_27 : HAL.Bit := 16#0#;
-- Instruction access disable bit
XN : RASR_XN_Field := Cortex_M_SVD.MPU.I_Enabled;
-- unspecified
Reserved_29_31 : HAL.UInt3 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for MPU_RASR_Register use record
ENABLE at 0 range 0 .. 0;
SIZE at 0 range 1 .. 5;
Reserved_6_7 at 0 range 6 .. 7;
SRD at 0 range 8 .. 15;
B at 0 range 16 .. 16;
C at 0 range 17 .. 17;
S at 0 range 18 .. 18;
TEX at 0 range 19 .. 21;
Reserved_22_23 at 0 range 22 .. 23;
AP at 0 range 24 .. 26;
Reserved_27_27 at 0 range 27 .. 27;
XN at 0 range 28 .. 28;
Reserved_29_31 at 0 range 29 .. 31;
end record;
subtype RBAR_A_REGION_Field is HAL.UInt4;
subtype RBAR_A_ADDR_Field is HAL.UInt27;
-- Uses (MPU_RNR[7:2]<<2) + 1
type RBAR_A_Register is record
-- On Write, see the VALID field. On read, specifies the region number.
REGION : RBAR_A_REGION_Field := 16#0#;
-- MPU Region number valid bit. Depending on your implementation, this
-- has the following effect: 0 - either updates the base address for the
-- region specified by MPU_RNR or ignores the value of the REGION field.
-- 1 - either updates the value of the MPU_RNR to the value of the
-- REGION field or updates the base address for the region specified in
-- the REGION field.
VALID : Boolean := False;
-- The ADDR field is bits[31:N] of the MPU_RBAR. The region size, as
-- specified by the SIZE field in the MPU_RASR, defines the value of N:
-- N = Log2(Region size in bytes). If the region size is configured to
-- 4GB, in the MPU_RASR, there is no valid ADDR field. In this case, the
-- region occupies the complete memory map, and the base address is
-- 0x00000000. The base address is aligned to the size of the region.
-- For example, a 64KB region must be aligned on a multiple of 64KB, for
-- example, at 0x00010000 or 0x00020000.
ADDR : RBAR_A_ADDR_Field := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for RBAR_A_Register use record
REGION at 0 range 0 .. 3;
VALID at 0 range 4 .. 4;
ADDR at 0 range 5 .. 31;
end record;
subtype RASR_A_SIZE_Field is HAL.UInt5;
-- RASR_A_SRD array
type RASR_A_SRD_Field_Array is array (0 .. 7) of Boolean
with Component_Size => 1, Size => 8;
-- Type definition for RASR_A_SRD
type RASR_A_SRD_Field
(As_Array : Boolean := False)
is record
case As_Array is
when False =>
-- SRD as a value
Val : HAL.UInt8;
when True =>
-- SRD as an array
Arr : RASR_A_SRD_Field_Array;
end case;
end record
with Unchecked_Union, Size => 8;
for RASR_A_SRD_Field use record
Val at 0 range 0 .. 7;
Arr at 0 range 0 .. 7;
end record;
subtype RASR_A_TEX_Field is HAL.UInt3;
-- Access permission field
type RASR_A1_AP_Field is
(
-- All accesses generate a permission fault.
No_Access,
-- Access from privileged software only.
Privileged_Rw,
-- Writes by unprivileged software generates a permission fault.
Unpriviledged_Ro,
-- Full Access.
Full_Access,
-- Reads by privileged software only.
Privileged_Ro,
-- Read_Only by privileged or unprivileged software.
Read_Only,
-- Read_Only by privileged or unprivileged software.
Read_Only_1)
with Size => 3;
for RASR_A1_AP_Field use
(No_Access => 0,
Privileged_Rw => 1,
Unpriviledged_Ro => 2,
Full_Access => 3,
Privileged_Ro => 5,
Read_Only => 6,
Read_Only_1 => 7);
-- Instruction access disable bit
type RASR_A1_XN_Field is
(
-- Instruction fetches enabled.
I_Enabled,
-- Instruction fetches disabled.
I_Disabled)
with Size => 1;
for RASR_A1_XN_Field use
(I_Enabled => 0,
I_Disabled => 1);
-- Uses (MPU_RNR[7:2]<<2) + 1
type RASR_A_Register is record
-- Region enable bit.
ENABLE : Boolean := False;
-- Specifies the size of the MPU protection region. Minimum value is 4.
-- The Region size is defined as (Region size in bytes) = 2^(SIZE+1)
SIZE : RASR_A_SIZE_Field := 16#0#;
-- unspecified
Reserved_6_7 : HAL.UInt2 := 16#0#;
-- Subregion disable bits
SRD : RASR_A_SRD_Field := (As_Array => False, Val => 16#0#);
-- Memory access attribute.
B : Boolean := False;
-- Memory access attribute.
C : Boolean := False;
-- Shareable bit. Applies to Normal memory only.
S : Boolean := False;
-- Memory access attribute.
TEX : RASR_A_TEX_Field := 16#0#;
-- unspecified
Reserved_22_23 : HAL.UInt2 := 16#0#;
-- Access permission field
AP : RASR_A1_AP_Field := Cortex_M_SVD.MPU.No_Access;
-- unspecified
Reserved_27_27 : HAL.Bit := 16#0#;
-- Instruction access disable bit
XN : RASR_A1_XN_Field := Cortex_M_SVD.MPU.I_Enabled;
-- unspecified
Reserved_29_31 : HAL.UInt3 := 16#0#;
end record
with Volatile_Full_Access, Size => 32,
Bit_Order => System.Low_Order_First;
for RASR_A_Register use record
ENABLE at 0 range 0 .. 0;
SIZE at 0 range 1 .. 5;
Reserved_6_7 at 0 range 6 .. 7;
SRD at 0 range 8 .. 15;
B at 0 range 16 .. 16;
C at 0 range 17 .. 17;
S at 0 range 18 .. 18;
TEX at 0 range 19 .. 21;
Reserved_22_23 at 0 range 22 .. 23;
AP at 0 range 24 .. 26;
Reserved_27_27 at 0 range 27 .. 27;
XN at 0 range 28 .. 28;
Reserved_29_31 at 0 range 29 .. 31;
end record;
-----------------
-- Peripherals --
-----------------
-- Memory Protection Unit
type MPU_Peripheral is record
-- MPU Type Register
TYPE_k : aliased MPU_TYPE_Register;
-- MPU Control Register
CTRL : aliased MPU_CTRL_Register;
-- MPU Region Number Register
RNR : aliased MPU_RNR_Register;
-- MPU Region Base Address Register
RBAR : aliased MPU_RBAR_Register;
-- MPU Region Base Attribute and Size Register
RASR : aliased MPU_RASR_Register;
-- Uses (MPU_RNR[7:2]<<2) + 1
RBAR_A1 : aliased RBAR_A_Register;
-- Uses (MPU_RNR[7:2]<<2) + 1
RASR_A1 : aliased RASR_A_Register;
-- Uses (MPU_RNR[7:2]<<2) + 2
RBAR_A2 : aliased RBAR_A_Register;
-- Uses (MPU_RNR[7:2]<<2) + 2
RASR_A2 : aliased RASR_A_Register;
-- Uses (MPU_RNR[7:2]<<2) + 3
RBAR_A3 : aliased RBAR_A_Register;
-- Uses (MPU_RNR[7:2]<<2) + 3
RASR_A3 : aliased RASR_A_Register;
end record
with Volatile;
for MPU_Peripheral use record
TYPE_k at 16#0# range 0 .. 31;
CTRL at 16#4# range 0 .. 31;
RNR at 16#8# range 0 .. 31;
RBAR at 16#C# range 0 .. 31;
RASR at 16#10# range 0 .. 31;
RBAR_A1 at 16#14# range 0 .. 31;
RASR_A1 at 16#18# range 0 .. 31;
RBAR_A2 at 16#1C# range 0 .. 31;
RASR_A2 at 16#20# range 0 .. 31;
RBAR_A3 at 16#24# range 0 .. 31;
RASR_A3 at 16#28# range 0 .. 31;
end record;
-- Memory Protection Unit
MPU_Periph : aliased MPU_Peripheral
with Import, Address => MPU_Base;
end Cortex_M_SVD.MPU;
|
------------------------------------------------------------------------------
-- --
-- Simple HTTP --
-- --
-- Basic HTTP 1.1 support for API endpoints --
-- --
-- ------------------------------------------------------------------------ --
-- --
-- Copyright (C) 2021, ANNEXI-STRAYLINE Trans-Human Ltd. --
-- All rights reserved. --
-- --
-- Original Contributors: --
-- * Richard Wai (ANNEXI-STRAYLINE) --
-- --
-- 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 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 --
-- 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. --
-- --
------------------------------------------------------------------------------
-- This package contains items defined or under the perview of IETF RFCs
-- 7230 & 7231
with Ada.Characters.Handling;
with Ada.Characters.Latin_1;
package Simple_HTTP.RFC_7230_7231 is
package Latin_1 renames Ada.Characters.Latin_1;
-- RFC 7230 --
CR : Character renames Latin_1.CR;
LF : Character renames Latin_1.LF;
HT : Character renames Latin_1.HT;
SP : Character renames Latin_1.Space;
CRLF: constant String := Latin_1.CR & Latin_1.LF;
function Is_Whitespace (C: Character) return Boolean is (C in HT | SP);
function Is_VCHAR (C: Character) return Boolean is
(Character'Pos (C) in 16#21# .. 16#7E#);
-- RFC 7230 defines VCHAR via RFC 5234, Appendix B, which defines it:
-- VCHAR = %x21-7E
function Is_ALPHA (C: Character) return Boolean
renames Ada.Characters.Handling.Is_Letter;
function Is_DIGIT (C: Character) return Boolean
renames Ada.Characters.Handling.Is_Digit;
function Is_Token (C: Character) return Boolean is
(Is_ALPHA (C) or else Is_DIGIT (C)
or else (C in '!' | '#' | '$' | '%' | '&' | ''' | '*' |
'+' | '-' | '.' | '^' | '_' | '`' | '|' | '~'));
function Is_obs_text (C: Character) return Boolean is
(Character'Pos (C) in 16#80# .. 16#FF#);
type Request_Method is
(GET, HEAD, POST, PUT, DELETE, CONNECT, OPTIONS, TRACE);
Request_Method_Max_Length: constant := 7;
-- "CONNECT"
-- We do not support extension-methods
type Response_Status is range 100 .. 599;
subtype Standard_Response_Status is Response_Status with
Static_Predicate => Standard_Response_Status in
100 .. 101 | 200 .. 206 | 300 .. 307 |
400 .. 417 | 426 |
500 .. 505;
-- RFC 7231 --
-- Status phrases
Phrase_100: constant String := "Continue";
Phrase_101: constant String := "Switching Protocols";
Phrase_200: constant String := "OK";
Phrase_201: constant String := "Created";
Phrase_202: constant String := "Accepted";
Phrase_203: constant String := "Non-Authoritative Information";
Phrase_204: constant String := "No Content";
Phrase_205: constant String := "Reset Content";
Phrase_206: constant String := "Partial Content";
Phrase_300: constant String := "Multiple Choices";
Phrase_301: constant String := "Moved Permanently";
Phrase_302: constant String := "Found";
Phrase_303: constant String := "See Other";
Phrase_304: constant String := "Not Modified";
Phrase_305: constant String := "Use Proxy";
Phrase_307: constant String := "Temporary Redirect";
Phrase_400: constant String := "Bad Request";
Phrase_401: constant String := "Unauthorized";
Phrase_402: constant String := "Payment Required";
Phrase_403: constant String := "Forbidden";
Phrase_404: constant String := "Not Found";
Phrase_405: constant String := "Method Not Allowed";
Phrase_406: constant String := "Not Acceptable";
Phrase_407: constant String := "Proxy Authentication Required";
Phrase_408: constant String := "Request Time-out";
Phrase_409: constant String := "Conflict";
Phrase_410: constant String := "Gone";
Phrase_411: constant String := "Length Required";
Phrase_412: constant String := "Precondition Failed";
Phrase_413: constant String := "Request Entity Too Large";
Phrase_414: constant String := "Request-URI Too Large";
Phrase_415: constant String := "Unsupported Media Type";
Phrase_416: constant String := "Requested range not satisfiable";
Phrase_417: constant String := "Expectation Failed";
Phrase_426: constant String := "Upgrade Required";
Phrase_500: constant String := "Internal Server Error";
Phrase_501: constant String := "Not Implemented";
Phrase_502: constant String := "Bad Gateway";
Phrase_503: constant String := "Service Unavailable";
Phrase_504: constant String := "Gateway Time-out";
Phrase_505: constant String := "HTTP Version not supported";
end Simple_HTTP.RFC_7230_7231;
|
-- Copyright (c) 2019 Maxim Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-- License-Filename: LICENSE
-------------------------------------------------------------
package Slim.Messages.grfg is
type Grfg_Message is new Message with private;
-- Set background frame and start scrolling.
not overriding function Data
(Self : Grfg_Message) return Ada.Streams.Stream_Element_Array;
private
type Grfg_Message is new Base_Message
(Max_8 => 0,
Max_16 => 2,
Max_32 => 0,
Max_64 => 0)
with record
Data : League.Stream_Element_Vectors.Stream_Element_Vector;
end record;
overriding function Read
(Data : not null access
League.Stream_Element_Vectors.Stream_Element_Vector)
return Grfg_Message;
overriding procedure Write
(Self : Grfg_Message;
Tag : out Message_Tag;
Data : out League.Stream_Element_Vectors.Stream_Element_Vector);
overriding procedure Read_Custom_Field
(Self : in out Grfg_Message;
Index : Positive;
Input : in out Ada.Streams.Stream_Element_Offset;
Data : League.Stream_Element_Vectors.Stream_Element_Vector);
overriding procedure Write_Custom_Field
(Self : Grfg_Message;
Index : Positive;
Data : in out League.Stream_Element_Vectors.Stream_Element_Vector);
overriding procedure Visit
(Self : not null access Grfg_Message;
Visiter : in out Slim.Message_Visiters.Visiter'Class);
end Slim.Messages.grfg;
|
------------------------------------------------------------------------------
-- G E L A A S I S --
-- ASIS implementation for Gela project, a portable Ada compiler --
-- http://gela.ada-ru.org --
-- - - - - - - - - - - - - - - - --
-- Read copyright and license at the end of this file --
------------------------------------------------------------------------------
-- $Revision: 209 $ $Date: 2013-11-30 21:03:24 +0200 (Сб., 30 нояб. 2013) $:
-- Purpose:
-- Trivial implementation of ASIS Ada_Environments.Containers
with Asis.Compilation_Units;
package body Asis.Ada_Environments.Containers is
package C renames Asis.Compilation_Units;
-----------------------------
-- Compilation_Unit_Bodies --
-----------------------------
function Compilation_Unit_Bodies
(The_Container : in Container)
return Asis.Compilation_Unit_List
is
begin
return C.Compilation_Unit_Bodies (The_Container.The_Context);
end Compilation_Unit_Bodies;
-----------------------
-- Compilation_Units --
-----------------------
function Compilation_Units
(The_Container : in Container)
return Asis.Compilation_Unit_List
is
begin
return C.Compilation_Units (The_Container.The_Context);
end Compilation_Units;
-------------------------
-- Defining_Containers --
-------------------------
function Defining_Containers
(The_Context : in Asis.Context)
return Container_List
is
begin
return (1 => (The_Context => The_Context));
end Defining_Containers;
-----------------------
-- Enclosing_Context --
-----------------------
function Enclosing_Context
(The_Container : in Container)
return Asis.Context
is
begin
return The_Container.The_Context;
end Enclosing_Context;
--------------
-- Is_Equal --
--------------
function Is_Equal
(Left : in Container;
Right : in Container)
return Boolean
is
begin
return Is_Identical (Left, Right);
end Is_Equal;
------------------
-- Is_Identical --
------------------
function Is_Identical
(Left : in Container;
Right : in Container)
return Boolean
is
begin
return Is_Equal (Left.The_Context, Right.The_Context);
end Is_Identical;
-------------------------------
-- Library_Unit_Declarations --
-------------------------------
function Library_Unit_Declarations
(The_Container : in Container)
return Asis.Compilation_Unit_List
is
begin
return C.Library_Unit_Declarations (The_Container.The_Context);
end Library_Unit_Declarations;
----------
-- Name --
----------
function Name (The_Container : in Container) return Wide_String is
begin
return Name (The_Container.The_Context);
end Name;
end Asis.Ada_Environments.Containers;
------------------------------------------------------------------------------
-- 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.
------------------------------------------------------------------------------
|
-----------------------------------------------------------------------
-- readline -- A simple readline binding
-- Copyright (C) 2014 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with Interfaces.C;
with Interfaces.C.Strings;
with Ada.IO_Exceptions;
package body Readline is
pragma Linker_Options ("-lreadline");
function Readline (Prompt : in Interfaces.C.Strings.chars_ptr)
return Interfaces.C.Strings.chars_ptr;
pragma Import (C, Readline, "readline");
procedure Add_History (Line : in Interfaces.C.Strings.chars_ptr);
pragma Import (C, Add_History, "add_history");
-- ------------------------------
-- Print the prompt and a read a line from the terminal.
-- Raise the Ada.IO_Exceptions.End_Error when the EOF is reached.
-- ------------------------------
function Get_Line (Prompt : in String) return String is
use type Interfaces.C.Strings.chars_ptr;
P : Interfaces.C.Strings.chars_ptr := Interfaces.C.Strings.New_String (Prompt);
R : Interfaces.C.Strings.chars_ptr;
begin
R := Readline (P);
Interfaces.C.Strings.Free (P);
if R = Interfaces.C.Strings.Null_Ptr then
raise Ada.IO_Exceptions.End_Error;
end if;
declare
Result : constant String := Interfaces.C.Strings.Value (R);
begin
if Result'Length > 0 then
Add_History (R);
end if;
Interfaces.C.Strings.Free (R);
return Result;
end;
end Get_Line;
end Readline;
|
pragma Style_Checks (Off);
-- This spec has been automatically generated from STM32H743x.svd
pragma Restrictions (No_Elaboration_Code);
with HAL;
with System;
package STM32_SVD.SCB is
pragma Preelaborate;
---------------
-- Registers --
---------------
subtype CPUID_Revision_Field is HAL.UInt4;
subtype CPUID_PartNo_Field is HAL.UInt12;
subtype CPUID_Constant_Field is HAL.UInt4;
subtype CPUID_Variant_Field is HAL.UInt4;
subtype CPUID_Implementer_Field is HAL.UInt8;
-- CPUID base register
type CPUID_Register is record
-- Read-only. Revision number
Revision : CPUID_Revision_Field;
-- Read-only. Part number of the processor
PartNo : CPUID_PartNo_Field;
-- Read-only. Reads as 0xF
Constant_k : CPUID_Constant_Field;
-- Read-only. Variant number
Variant : CPUID_Variant_Field;
-- Read-only. Implementer code
Implementer : CPUID_Implementer_Field;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CPUID_Register use record
Revision at 0 range 0 .. 3;
PartNo at 0 range 4 .. 15;
Constant_k at 0 range 16 .. 19;
Variant at 0 range 20 .. 23;
Implementer at 0 range 24 .. 31;
end record;
subtype ICSR_VECTACTIVE_Field is HAL.UInt9;
subtype ICSR_VECTPENDING_Field is HAL.UInt7;
-- Interrupt control and state register
type ICSR_Register is record
-- Active vector
VECTACTIVE : ICSR_VECTACTIVE_Field := 16#0#;
-- unspecified
Reserved_9_10 : HAL.UInt2 := 16#0#;
-- Return to base level
RETTOBASE : Boolean := False;
-- Pending vector
VECTPENDING : ICSR_VECTPENDING_Field := 16#0#;
-- unspecified
Reserved_19_21 : HAL.UInt3 := 16#0#;
-- Interrupt pending flag
ISRPENDING : Boolean := False;
-- unspecified
Reserved_23_24 : HAL.UInt2 := 16#0#;
-- SysTick exception clear-pending bit
PENDSTCLR : Boolean := False;
-- SysTick exception set-pending bit
PENDSTSET : Boolean := False;
-- PendSV clear-pending bit
PENDSVCLR : Boolean := False;
-- PendSV set-pending bit
PENDSVSET : Boolean := False;
-- unspecified
Reserved_29_30 : HAL.UInt2 := 16#0#;
-- NMI set-pending bit.
NMIPENDSET : Boolean := False;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for ICSR_Register use record
VECTACTIVE at 0 range 0 .. 8;
Reserved_9_10 at 0 range 9 .. 10;
RETTOBASE at 0 range 11 .. 11;
VECTPENDING at 0 range 12 .. 18;
Reserved_19_21 at 0 range 19 .. 21;
ISRPENDING at 0 range 22 .. 22;
Reserved_23_24 at 0 range 23 .. 24;
PENDSTCLR at 0 range 25 .. 25;
PENDSTSET at 0 range 26 .. 26;
PENDSVCLR at 0 range 27 .. 27;
PENDSVSET at 0 range 28 .. 28;
Reserved_29_30 at 0 range 29 .. 30;
NMIPENDSET at 0 range 31 .. 31;
end record;
subtype VTOR_TBLOFF_Field is HAL.UInt21;
-- Vector table offset register
type VTOR_Register is record
-- unspecified
Reserved_0_8 : HAL.UInt9 := 16#0#;
-- Vector table base offset field
TBLOFF : VTOR_TBLOFF_Field := 16#0#;
-- unspecified
Reserved_30_31 : HAL.UInt2 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for VTOR_Register use record
Reserved_0_8 at 0 range 0 .. 8;
TBLOFF at 0 range 9 .. 29;
Reserved_30_31 at 0 range 30 .. 31;
end record;
subtype AIRCR_PRIGROUP_Field is HAL.UInt3;
subtype AIRCR_VECTKEYSTAT_Field is HAL.UInt16;
-- Application interrupt and reset control register
type AIRCR_Register is record
-- VECTRESET
VECTRESET : Boolean := False;
-- VECTCLRACTIVE
VECTCLRACTIVE : Boolean := False;
-- SYSRESETREQ
SYSRESETREQ : Boolean := False;
-- unspecified
Reserved_3_7 : HAL.UInt5 := 16#0#;
-- PRIGROUP
PRIGROUP : AIRCR_PRIGROUP_Field := 16#0#;
-- unspecified
Reserved_11_14 : HAL.UInt4 := 16#0#;
-- ENDIANESS
ENDIANESS : Boolean := False;
-- Register key
VECTKEYSTAT : AIRCR_VECTKEYSTAT_Field := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for AIRCR_Register use record
VECTRESET at 0 range 0 .. 0;
VECTCLRACTIVE at 0 range 1 .. 1;
SYSRESETREQ at 0 range 2 .. 2;
Reserved_3_7 at 0 range 3 .. 7;
PRIGROUP at 0 range 8 .. 10;
Reserved_11_14 at 0 range 11 .. 14;
ENDIANESS at 0 range 15 .. 15;
VECTKEYSTAT at 0 range 16 .. 31;
end record;
-- System control register
type SCR_Register is record
-- unspecified
Reserved_0_0 : HAL.Bit := 16#0#;
-- SLEEPONEXIT
SLEEPONEXIT : Boolean := False;
-- SLEEPDEEP
SLEEPDEEP : Boolean := False;
-- unspecified
Reserved_3_3 : HAL.Bit := 16#0#;
-- Send Event on Pending bit
SEVEONPEND : Boolean := False;
-- unspecified
Reserved_5_31 : HAL.UInt27 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for SCR_Register use record
Reserved_0_0 at 0 range 0 .. 0;
SLEEPONEXIT at 0 range 1 .. 1;
SLEEPDEEP at 0 range 2 .. 2;
Reserved_3_3 at 0 range 3 .. 3;
SEVEONPEND at 0 range 4 .. 4;
Reserved_5_31 at 0 range 5 .. 31;
end record;
-- Configuration and control register
type CCR_Register is record
-- Configures how the processor enters Thread mode
NONBASETHRDENA : Boolean := False;
-- USERSETMPEND
USERSETMPEND : Boolean := False;
-- unspecified
Reserved_2_2 : HAL.Bit := 16#0#;
-- UNALIGN_ TRP
UNALIGN_TRP : Boolean := False;
-- DIV_0_TRP
DIV_0_TRP : Boolean := False;
-- unspecified
Reserved_5_7 : HAL.UInt3 := 16#0#;
-- BFHFNMIGN
BFHFNMIGN : Boolean := False;
-- STKALIGN
STKALIGN : Boolean := False;
-- unspecified
Reserved_10_15 : HAL.UInt6 := 16#0#;
-- DC
DC : Boolean := False;
-- IC
IC : Boolean := False;
-- BP
BP : Boolean := False;
-- unspecified
Reserved_19_31 : HAL.UInt13 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CCR_Register use record
NONBASETHRDENA at 0 range 0 .. 0;
USERSETMPEND at 0 range 1 .. 1;
Reserved_2_2 at 0 range 2 .. 2;
UNALIGN_TRP at 0 range 3 .. 3;
DIV_0_TRP at 0 range 4 .. 4;
Reserved_5_7 at 0 range 5 .. 7;
BFHFNMIGN at 0 range 8 .. 8;
STKALIGN at 0 range 9 .. 9;
Reserved_10_15 at 0 range 10 .. 15;
DC at 0 range 16 .. 16;
IC at 0 range 17 .. 17;
BP at 0 range 18 .. 18;
Reserved_19_31 at 0 range 19 .. 31;
end record;
subtype SHPR1_PRI_4_Field is HAL.UInt8;
subtype SHPR1_PRI_5_Field is HAL.UInt8;
subtype SHPR1_PRI_6_Field is HAL.UInt8;
-- System handler priority registers
type SHPR1_Register is record
-- Priority of system handler 4
PRI_4 : SHPR1_PRI_4_Field := 16#0#;
-- Priority of system handler 5
PRI_5 : SHPR1_PRI_5_Field := 16#0#;
-- Priority of system handler 6
PRI_6 : SHPR1_PRI_6_Field := 16#0#;
-- unspecified
Reserved_24_31 : HAL.UInt8 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for SHPR1_Register use record
PRI_4 at 0 range 0 .. 7;
PRI_5 at 0 range 8 .. 15;
PRI_6 at 0 range 16 .. 23;
Reserved_24_31 at 0 range 24 .. 31;
end record;
subtype SHPR2_PRI_11_Field is HAL.UInt8;
-- System handler priority registers
type SHPR2_Register is record
-- unspecified
Reserved_0_23 : HAL.UInt24 := 16#0#;
-- Priority of system handler 11
PRI_11 : SHPR2_PRI_11_Field := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for SHPR2_Register use record
Reserved_0_23 at 0 range 0 .. 23;
PRI_11 at 0 range 24 .. 31;
end record;
subtype SHPR3_PRI_14_Field is HAL.UInt8;
subtype SHPR3_PRI_15_Field is HAL.UInt8;
-- System handler priority registers
type SHPR3_Register is record
-- unspecified
Reserved_0_15 : HAL.UInt16 := 16#0#;
-- Priority of system handler 14
PRI_14 : SHPR3_PRI_14_Field := 16#0#;
-- Priority of system handler 15
PRI_15 : SHPR3_PRI_15_Field := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for SHPR3_Register use record
Reserved_0_15 at 0 range 0 .. 15;
PRI_14 at 0 range 16 .. 23;
PRI_15 at 0 range 24 .. 31;
end record;
-- System handler control and state register
type SHCRS_Register is record
-- Memory management fault exception active bit
MEMFAULTACT : Boolean := False;
-- Bus fault exception active bit
BUSFAULTACT : Boolean := False;
-- unspecified
Reserved_2_2 : HAL.Bit := 16#0#;
-- Usage fault exception active bit
USGFAULTACT : Boolean := False;
-- unspecified
Reserved_4_6 : HAL.UInt3 := 16#0#;
-- SVC call active bit
SVCALLACT : Boolean := False;
-- Debug monitor active bit
MONITORACT : Boolean := False;
-- unspecified
Reserved_9_9 : HAL.Bit := 16#0#;
-- PendSV exception active bit
PENDSVACT : Boolean := False;
-- SysTick exception active bit
SYSTICKACT : Boolean := False;
-- Usage fault exception pending bit
USGFAULTPENDED : Boolean := False;
-- Memory management fault exception pending bit
MEMFAULTPENDED : Boolean := False;
-- Bus fault exception pending bit
BUSFAULTPENDED : Boolean := False;
-- SVC call pending bit
SVCALLPENDED : Boolean := False;
-- Memory management fault enable bit
MEMFAULTENA : Boolean := False;
-- Bus fault enable bit
BUSFAULTENA : Boolean := False;
-- Usage fault enable bit
USGFAULTENA : Boolean := False;
-- unspecified
Reserved_19_31 : HAL.UInt13 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for SHCRS_Register use record
MEMFAULTACT at 0 range 0 .. 0;
BUSFAULTACT at 0 range 1 .. 1;
Reserved_2_2 at 0 range 2 .. 2;
USGFAULTACT at 0 range 3 .. 3;
Reserved_4_6 at 0 range 4 .. 6;
SVCALLACT at 0 range 7 .. 7;
MONITORACT at 0 range 8 .. 8;
Reserved_9_9 at 0 range 9 .. 9;
PENDSVACT at 0 range 10 .. 10;
SYSTICKACT at 0 range 11 .. 11;
USGFAULTPENDED at 0 range 12 .. 12;
MEMFAULTPENDED at 0 range 13 .. 13;
BUSFAULTPENDED at 0 range 14 .. 14;
SVCALLPENDED at 0 range 15 .. 15;
MEMFAULTENA at 0 range 16 .. 16;
BUSFAULTENA at 0 range 17 .. 17;
USGFAULTENA at 0 range 18 .. 18;
Reserved_19_31 at 0 range 19 .. 31;
end record;
-- Configurable fault status register
type CFSR_UFSR_BFSR_MMFSR_Register is record
-- IACCVIOL
IACCVIOL : Boolean := False;
-- DACCVIOL
DACCVIOL : Boolean := False;
-- unspecified
Reserved_2_2 : HAL.Bit := 16#0#;
-- MUNSTKERR
MUNSTKERR : Boolean := False;
-- MSTKERR
MSTKERR : Boolean := False;
-- MLSPERR
MLSPERR : Boolean := False;
-- unspecified
Reserved_6_6 : HAL.Bit := 16#0#;
-- MMARVALID
MMARVALID : Boolean := False;
-- Instruction bus error
IBUSERR : Boolean := False;
-- Precise data bus error
PRECISERR : Boolean := False;
-- Imprecise data bus error
IMPRECISERR : Boolean := False;
-- Bus fault on unstacking for a return from exception
UNSTKERR : Boolean := False;
-- Bus fault on stacking for exception entry
STKERR : Boolean := False;
-- Bus fault on floating-point lazy state preservation
LSPERR : Boolean := False;
-- unspecified
Reserved_14_14 : HAL.Bit := 16#0#;
-- Bus Fault Address Register (BFAR) valid flag
BFARVALID : Boolean := False;
-- Undefined instruction usage fault
UNDEFINSTR : Boolean := False;
-- Invalid state usage fault
INVSTATE : Boolean := False;
-- Invalid PC load usage fault
INVPC : Boolean := False;
-- No coprocessor usage fault.
NOCP : Boolean := False;
-- unspecified
Reserved_20_23 : HAL.UInt4 := 16#0#;
-- Unaligned access usage fault
UNALIGNED : Boolean := False;
-- Divide by zero usage fault
DIVBYZERO : Boolean := False;
-- unspecified
Reserved_26_31 : HAL.UInt6 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for CFSR_UFSR_BFSR_MMFSR_Register use record
IACCVIOL at 0 range 0 .. 0;
DACCVIOL at 0 range 1 .. 1;
Reserved_2_2 at 0 range 2 .. 2;
MUNSTKERR at 0 range 3 .. 3;
MSTKERR at 0 range 4 .. 4;
MLSPERR at 0 range 5 .. 5;
Reserved_6_6 at 0 range 6 .. 6;
MMARVALID at 0 range 7 .. 7;
IBUSERR at 0 range 8 .. 8;
PRECISERR at 0 range 9 .. 9;
IMPRECISERR at 0 range 10 .. 10;
UNSTKERR at 0 range 11 .. 11;
STKERR at 0 range 12 .. 12;
LSPERR at 0 range 13 .. 13;
Reserved_14_14 at 0 range 14 .. 14;
BFARVALID at 0 range 15 .. 15;
UNDEFINSTR at 0 range 16 .. 16;
INVSTATE at 0 range 17 .. 17;
INVPC at 0 range 18 .. 18;
NOCP at 0 range 19 .. 19;
Reserved_20_23 at 0 range 20 .. 23;
UNALIGNED at 0 range 24 .. 24;
DIVBYZERO at 0 range 25 .. 25;
Reserved_26_31 at 0 range 26 .. 31;
end record;
-- Hard fault status register
type HFSR_Register is record
-- unspecified
Reserved_0_0 : HAL.Bit := 16#0#;
-- Vector table hard fault
VECTTBL : Boolean := False;
-- unspecified
Reserved_2_29 : HAL.UInt28 := 16#0#;
-- Forced hard fault
FORCED : Boolean := False;
-- Reserved for Debug use
DEBUG_VT : Boolean := False;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for HFSR_Register use record
Reserved_0_0 at 0 range 0 .. 0;
VECTTBL at 0 range 1 .. 1;
Reserved_2_29 at 0 range 2 .. 29;
FORCED at 0 range 30 .. 30;
DEBUG_VT at 0 range 31 .. 31;
end record;
-- Auxiliary control register
type ACTRL_Register is record
-- unspecified
Reserved_0_1 : HAL.UInt2 := 16#0#;
-- DISFOLD
DISFOLD : Boolean := False;
-- unspecified
Reserved_3_9 : HAL.UInt7 := 16#0#;
-- FPEXCODIS
FPEXCODIS : Boolean := False;
-- DISRAMODE
DISRAMODE : Boolean := False;
-- DISITMATBFLUSH
DISITMATBFLUSH : Boolean := False;
-- unspecified
Reserved_13_31 : HAL.UInt19 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for ACTRL_Register use record
Reserved_0_1 at 0 range 0 .. 1;
DISFOLD at 0 range 2 .. 2;
Reserved_3_9 at 0 range 3 .. 9;
FPEXCODIS at 0 range 10 .. 10;
DISRAMODE at 0 range 11 .. 11;
DISITMATBFLUSH at 0 range 12 .. 12;
Reserved_13_31 at 0 range 13 .. 31;
end record;
-----------------
-- Peripherals --
-----------------
-- System control block
type SCB_Peripheral is record
-- CPUID base register
CPUID : aliased CPUID_Register;
-- Interrupt control and state register
ICSR : aliased ICSR_Register;
-- Vector table offset register
VTOR : aliased VTOR_Register;
-- Application interrupt and reset control register
AIRCR : aliased AIRCR_Register;
-- System control register
SCR : aliased SCR_Register;
-- Configuration and control register
CCR : aliased CCR_Register;
-- System handler priority registers
SHPR1 : aliased SHPR1_Register;
-- System handler priority registers
SHPR2 : aliased SHPR2_Register;
-- System handler priority registers
SHPR3 : aliased SHPR3_Register;
-- System handler control and state register
SHCRS : aliased SHCRS_Register;
-- Configurable fault status register
CFSR_UFSR_BFSR_MMFSR : aliased CFSR_UFSR_BFSR_MMFSR_Register;
-- Hard fault status register
HFSR : aliased HFSR_Register;
-- Memory management fault address register
MMFAR : aliased HAL.UInt32;
-- Bus fault address register
BFAR : aliased HAL.UInt32;
end record
with Volatile;
for SCB_Peripheral use record
CPUID at 16#0# range 0 .. 31;
ICSR at 16#4# range 0 .. 31;
VTOR at 16#8# range 0 .. 31;
AIRCR at 16#C# range 0 .. 31;
SCR at 16#10# range 0 .. 31;
CCR at 16#14# range 0 .. 31;
SHPR1 at 16#18# range 0 .. 31;
SHPR2 at 16#1C# range 0 .. 31;
SHPR3 at 16#20# range 0 .. 31;
SHCRS at 16#24# range 0 .. 31;
CFSR_UFSR_BFSR_MMFSR at 16#28# range 0 .. 31;
HFSR at 16#2C# range 0 .. 31;
MMFAR at 16#34# range 0 .. 31;
BFAR at 16#38# range 0 .. 31;
end record;
-- System control block
SCB_Periph : aliased SCB_Peripheral
with Import, Address => SCB_Base;
-- System control block ACTLR
type SCB_ACTRL_Peripheral is record
-- Auxiliary control register
ACTRL : aliased ACTRL_Register;
end record
with Volatile;
for SCB_ACTRL_Peripheral use record
ACTRL at 0 range 0 .. 31;
end record;
-- System control block ACTLR
SCB_ACTRL_Periph : aliased SCB_ACTRL_Peripheral
with Import, Address => SCB_ACTRL_Base;
end STM32_SVD.SCB;
|
-- Copyright 2011-2017 Free Software Foundation, Inc.
--
-- This program is free software; you can redistribute it and/or modify
-- it under the terms of the GNU General Public License as published by
-- the Free Software Foundation; either version 3 of the License, or
-- (at your option) any later version.
--
-- This program is distributed in the hope that it will be useful,
-- but WITHOUT ANY WARRANTY; without even the implied warranty of
-- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
-- GNU General Public License for more details.
--
-- You should have received a copy of the GNU General Public License
-- along with this program. If not, see <http://www.gnu.org/licenses/>.
package body Dn is
procedure Do_Nothing (A : System.Address) is
begin
null;
end Do_Nothing;
end Dn;
|
------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- M L I B . T G T --
-- --
-- S p e c --
-- --
-- Copyright (C) 2001-2005, 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. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
-- This package provides a set of target dependent routines to build
-- static, dynamic and shared libraries.
-- There are several versions for the body of this package
-- In the default version, libraries are not supported, so function
-- Support_For_Libraries return None.
with Prj; use Prj;
package MLib.Tgt is
type Library_Support is (None, Static_Only, Full);
-- Support for Library Project File.
-- - None: Library Project Files are not supported at all
-- - Static_Only: Library Project Files are only supported for static
-- libraries.
-- - Full: Library Project Files are supported for static and dynamic
-- (shared) libraries.
function Support_For_Libraries return Library_Support;
-- Indicates how building libraries by gnatmake is supported by the GNAT
-- implementation for the platform.
function Standalone_Library_Auto_Init_Is_Supported return Boolean;
-- Indicates if when building a dynamic Standalone Library,
-- automatic initialization is supported. If it is, then it is the default,
-- unless attribute Library_Auto_Init has the value "false".
function Archive_Builder return String;
-- Returns the name of the archive builder program, usually "ar"
function Archive_Builder_Options return String_List_Access;
-- A list of options to invoke the Archive_Builder, usually "cr" for "ar"
function Archive_Indexer return String;
-- Returns the name of the program, if any, that generates an index to the
-- contents of an archive, usually "ranlib". If there is no archive indexer
-- to be used, returns an empty string.
function Archive_Indexer_Options return String_List_Access;
-- A list of options to invoke the Archive_Indexer, usually empty
function Dynamic_Option return String;
-- gcc option to create a dynamic library.
-- For Unix, returns "-shared", for Windows returns "-mdll".
function Libgnat return String;
-- System dependent static GNAT library
function Archive_Ext return String;
-- System dependent static library extension, without leading dot.
-- For Unix and Windows, return "a".
function Object_Ext return String;
-- System dependent object extension, without leadien dot.
-- On Unix, returns "o".
function DLL_Prefix return String;
-- System dependent dynamic library prefix.
-- On Windows, returns "". On other platforms, returns "lib".
function DLL_Ext return String;
-- System dependent dynamic library extension, without leading dot.
-- On Windows, returns "dll". On Unix, usually returns "so", but not
-- always, e.g. on HP-UX the extension for shared libraries is "sl".
function PIC_Option return String;
-- Position independent code option
function Is_Object_Ext (Ext : String) return Boolean;
-- Returns True iff Ext is an object file extension
function Is_C_Ext (Ext : String) return Boolean;
-- Returns True iff Ext is a C file extension
function Is_Archive_Ext (Ext : String) return Boolean;
-- Returns True iff Ext is an extension for a library
procedure Build_Dynamic_Library
(Ofiles : Argument_List;
Foreign : Argument_List;
Afiles : Argument_List;
Options : Argument_List;
Options_2 : Argument_List;
Interfaces : Argument_List;
Lib_Filename : String;
Lib_Dir : String;
Symbol_Data : Symbol_Record;
Driver_Name : Name_Id := No_Name;
Lib_Version : String := "";
Auto_Init : Boolean := False);
-- Build a dynamic/relocatable library
--
-- Ofiles is the list of all object files in the library
--
-- Foreign is the list of non Ada object files (also included in Ofiles)
--
-- Afiles is the list of ALI files for the Ada object files
--
-- Options and Options_2 are lists of options to be passed to the tool
-- (gcc or other) that effectively builds the dynamic library. Options
-- are passed before the object files, Options_2 are passed after the
-- object files.
--
-- Interfaces is the list of ALI files for the interfaces of a SAL.
-- It is empty if the library is not a SAL.
--
-- Lib_Filename is the name of the library, without any prefix or
-- extension. For example, on Unix, if Lib_Filename is "toto", the
-- name of the library file will be "libtoto.so".
--
-- Lib_Dir is the directory path where the library will be located
--
-- For OSes that support symbolic links, Lib_Version, if non null,
-- is the actual file name of the library. For example on Unix, if
-- Lib_Filename is "toto" and Lib_Version is "libtoto.so.2.1",
-- "libtoto.so" will be a symbolic link to "libtoto.so.2.1" which
-- will be the actual library file.
--
-- Symbol_Data is used for some patforms, including VMS, to generate
-- the symbols to be exported by the library.
--
-- Note: Depending on the OS, some of the parameters may not be taken
-- into account. For example, on Linux, Foreign, Afiles Lib_Address and
-- Relocatable are ignored.
function Library_Exists_For
(Project : Project_Id; In_Tree : Project_Tree_Ref) return Boolean;
-- Return True if the library file for a library project already exists.
-- This function can only be called for library projects.
function Library_File_Name_For
(Project : Project_Id;
In_Tree : Project_Tree_Ref) return Name_Id;
-- Returns the file name of the library file of a library project.
-- This function can only be called for library projects.
end MLib.Tgt;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- A D A . C H A R A C T E R S . H A N D L I N G --
-- --
-- S p e c --
-- --
-- $Revision$
-- --
-- Copyright (C) 1992-1997 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, 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. --
-- --
------------------------------------------------------------------------------
package Ada.Characters.Handling is
pragma Preelaborate (Handling);
----------------------------------------
-- Character Classification Functions --
----------------------------------------
function Is_Control (Item : in Character) return Boolean;
function Is_Graphic (Item : in Character) return Boolean;
function Is_Letter (Item : in Character) return Boolean;
function Is_Lower (Item : in Character) return Boolean;
function Is_Upper (Item : in Character) return Boolean;
function Is_Basic (Item : in Character) return Boolean;
function Is_Digit (Item : in Character) return Boolean;
function Is_Decimal_Digit (Item : in Character) return Boolean
renames Is_Digit;
function Is_Hexadecimal_Digit (Item : in Character) return Boolean;
function Is_Alphanumeric (Item : in Character) return Boolean;
function Is_Special (Item : in Character) return Boolean;
---------------------------------------------------
-- Conversion Functions for Character and String --
---------------------------------------------------
function To_Lower (Item : in Character) return Character;
function To_Upper (Item : in Character) return Character;
function To_Basic (Item : in Character) return Character;
function To_Lower (Item : in String) return String;
function To_Upper (Item : in String) return String;
function To_Basic (Item : in String) return String;
----------------------------------------------------------------------
-- Classifications of and Conversions Between Character and ISO 646 --
----------------------------------------------------------------------
subtype ISO_646 is
Character range Character'Val (0) .. Character'Val (127);
function Is_ISO_646 (Item : in Character) return Boolean;
function Is_ISO_646 (Item : in String) return Boolean;
function To_ISO_646
(Item : in Character;
Substitute : in ISO_646 := ' ')
return ISO_646;
function To_ISO_646
(Item : in String;
Substitute : in ISO_646 := ' ')
return String;
------------------------------------------------------
-- Classifications of Wide_Character and Characters --
------------------------------------------------------
function Is_Character (Item : in Wide_Character) return Boolean;
function Is_String (Item : in Wide_String) return Boolean;
------------------------------------------------------
-- Conversions between Wide_Character and Character --
------------------------------------------------------
function To_Character
(Item : in Wide_Character;
Substitute : in Character := ' ')
return Character;
function To_String
(Item : in Wide_String;
Substitute : in Character := ' ')
return String;
function To_Wide_Character (Item : in Character) return Wide_Character;
function To_Wide_String (Item : in String) return Wide_String;
private
pragma Inline (Is_Control);
pragma Inline (Is_Graphic);
pragma Inline (Is_Letter);
pragma Inline (Is_Lower);
pragma Inline (Is_Upper);
pragma Inline (Is_Basic);
pragma Inline (Is_Digit);
pragma Inline (Is_Hexadecimal_Digit);
pragma Inline (Is_Alphanumeric);
pragma Inline (Is_Special);
pragma Inline (To_Lower);
pragma Inline (To_Upper);
pragma Inline (To_Basic);
pragma Inline (Is_ISO_646);
pragma Inline (Is_Character);
pragma Inline (To_Character);
pragma Inline (To_Wide_Character);
end Ada.Characters.Handling;
|
pragma Ada_2012;
with Interfaces; use Interfaces;
generic
type Element is mod <>;
type Index is range <>;
type Element_Array is array (Index range <>) of Element;
Length : Index;
type State_Array is array (Natural range <>) of Unsigned_64;
Initial_State : State_Array;
package SHA2_Generic_64 with
Pure,
Preelaborate
is
pragma Compile_Time_Error
(Element'Modulus /= 256,
"'Element' type must be mod 2**8, i.e. represent a byte");
Digest_Length : constant Index := Length;
Block_Length : constant Index := 128;
subtype Digest is Element_Array (0 .. Digest_Length - 1);
type Context is private;
function Initialize return Context;
procedure Initialize (Ctx : out Context);
procedure Update (Ctx : in out Context; Input : String);
procedure Update (Ctx : in out Context; Input : Element_Array);
function Finalize (Ctx : Context) return Digest;
procedure Finalize (Ctx : Context; Output : out Digest);
function Hash (Input : String) return Digest;
function Hash (Input : Element_Array) return Digest;
private
subtype Block is Element_Array (0 .. Block_Length - 1);
type Context is record
State : State_Array (0 .. 7) := Initial_State;
Count : Index := 0;
Buffer : Block;
end record;
type K_Array is array (Natural range 0 .. 79) of Unsigned_64;
K : constant K_Array :=
(16#428a_2f98_d728_ae22#, 16#7137_4491_23ef_65cd#,
16#b5c0_fbcf_ec4d_3b2f#, 16#e9b5_dba5_8189_dbbc#,
16#3956_c25b_f348_b538#, 16#59f1_11f1_b605_d019#,
16#923f_82a4_af19_4f9b#, 16#ab1c_5ed5_da6d_8118#,
16#d807_aa98_a303_0242#, 16#1283_5b01_4570_6fbe#,
16#2431_85be_4ee4_b28c#, 16#550c_7dc3_d5ff_b4e2#,
16#72be_5d74_f27b_896f#, 16#80de_b1fe_3b16_96b1#,
16#9bdc_06a7_25c7_1235#, 16#c19b_f174_cf69_2694#,
16#e49b_69c1_9ef1_4ad2#, 16#efbe_4786_384f_25e3#,
16#0fc1_9dc6_8b8c_d5b5#, 16#240c_a1cc_77ac_9c65#,
16#2de9_2c6f_592b_0275#, 16#4a74_84aa_6ea6_e483#,
16#5cb0_a9dc_bd41_fbd4#, 16#76f9_88da_8311_53b5#,
16#983e_5152_ee66_dfab#, 16#a831_c66d_2db4_3210#,
16#b003_27c8_98fb_213f#, 16#bf59_7fc7_beef_0ee4#,
16#c6e0_0bf3_3da8_8fc2#, 16#d5a7_9147_930a_a725#,
16#06ca_6351_e003_826f#, 16#1429_2967_0a0e_6e70#,
16#27b7_0a85_46d2_2ffc#, 16#2e1b_2138_5c26_c926#,
16#4d2c_6dfc_5ac4_2aed#, 16#5338_0d13_9d95_b3df#,
16#650a_7354_8baf_63de#, 16#766a_0abb_3c77_b2a8#,
16#81c2_c92e_47ed_aee6#, 16#9272_2c85_1482_353b#,
16#a2bf_e8a1_4cf1_0364#, 16#a81a_664b_bc42_3001#,
16#c24b_8b70_d0f8_9791#, 16#c76c_51a3_0654_be30#,
16#d192_e819_d6ef_5218#, 16#d699_0624_5565_a910#,
16#f40e_3585_5771_202a#, 16#106a_a070_32bb_d1b8#,
16#19a4_c116_b8d2_d0c8#, 16#1e37_6c08_5141_ab53#,
16#2748_774c_df8e_eb99#, 16#34b0_bcb5_e19b_48a8#,
16#391c_0cb3_c5c9_5a63#, 16#4ed8_aa4a_e341_8acb#,
16#5b9c_ca4f_7763_e373#, 16#682e_6ff3_d6b2_b8a3#,
16#748f_82ee_5def_b2fc#, 16#78a5_636f_4317_2f60#,
16#84c8_7814_a1f0_ab72#, 16#8cc7_0208_1a64_39ec#,
16#90be_fffa_2363_1e28#, 16#a450_6ceb_de82_bde9#,
16#bef9_a3f7_b2c6_7915#, 16#c671_78f2_e372_532b#,
16#ca27_3ece_ea26_619c#, 16#d186_b8c7_21c0_c207#,
16#eada_7dd6_cde0_eb1e#, 16#f57d_4f7f_ee6e_d178#,
16#06f0_67aa_7217_6fba#, 16#0a63_7dc5_a2c8_98a6#,
16#113f_9804_bef9_0dae#, 16#1b71_0b35_131c_471b#,
16#28db_77f5_2304_7d84#, 16#32ca_ab7b_40c7_2493#,
16#3c9e_be0a_15c9_bebc#, 16#431d_67c4_9c10_0d4c#,
16#4cc5_d4be_cb3e_42b6#, 16#597f_299c_fc65_7e2a#,
16#5fcb_6fab_3ad6_faec#, 16#6c44_198c_4a47_5817#);
procedure Transform (Ctx : in out Context);
pragma Inline (Transform);
function Ch (X, Y, Z : Unsigned_64) return Unsigned_64;
function Maj (X, Y, Z : Unsigned_64) return Unsigned_64;
function Sigma_0 (X : Unsigned_64) return Unsigned_64;
function Sigma_1 (X : Unsigned_64) return Unsigned_64;
function S_0 (X : Unsigned_64) return Unsigned_64;
function S_1 (X : Unsigned_64) return Unsigned_64;
pragma Inline (Ch, Maj, Sigma_0, Sigma_1, S_0, S_1);
end SHA2_Generic_64;
|
-------------------------------------------------------------------------------
-- Copyright 2021, The Trendy Terminal Developers (see AUTHORS file)
-- 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;
-- Ties together Lines to associated VT100 commands.
package Trendy_Terminal.Lines is
package ASU renames Ada.Strings.Unbounded;
-- The number of individual cursor positions in a string.
-- TODO: Support UTF-8
function Num_Cursor_Positions (S : String) return Natural is (S'Length);
-- A generic line to Lines text using a single cursor.
--
-- The cursor position is defined as being the position at which the new
-- Lines will appear. For an empty line, the only valid cursor position
-- is 1. For other lines, with a line range of [1,n], appropriate cursor
-- positions will be [1, n+1], 1 being "new character will be added at
-- index 1", and n+1 meaning "appending and increasing the length of the
-- Lines line".
--
-- Sample: sample
-- Length: 6
-- Indices: 123456
-- Cursor: ^
-- Valid cursor range: [1, 7]
--
type Line is private
with Type_Invariant => Get_Cursor_Index (Line) in 1 .. Length (Line) + 1;
type Cursor_Direction is (Left, Right);
function Length(Self : in Line) return Natural;
procedure Move_Cursor (Self : in out Line; Direction : Cursor_Direction);
function Make (Contents : ASU.Unbounded_String; Index : Positive) return Line;
function Make (S : String; Index : Positive) return Line;
function Make (S : String) return Line;
procedure Set (Self : in out Line; S : String; Index : Positive);
function Get_Cursor_Index (Self : in Line) return Positive;
procedure Set_Cursor_Index (Self : in out Line; Cursor_Index : Positive);
procedure Insert (Self : in out Line; S : String)
with Pre => S'Length >= 0,
Post => Length(Self'Old) + S'Length = Length(Self)
and then Get_Cursor_Index (Self'Old) + Num_Cursor_Positions (S) = Get_Cursor_Index(Self);
procedure Backspace (Self : in out Line)
with Post => Length(Self'Old) = 0
or else Get_Cursor_Index(Self'Old) = 1
or else (Length(Self'Old) = Length(Self) + 1
and then Get_Cursor_Index(Self'Old) - 1 = Get_Cursor_Index(Self));
-- Deletes a characters after the cursor position, shifting all text
-- afterwards to the left. Deleting does not modify the cursor position.
-- Nothing happens if cursor is after the last character in the Line.
procedure Delete (Self : in out Line)
with Post => Length (Self'Old) = 0
or else Get_Cursor_Index (Self'Old) = Length (Self) + 1
or else (Length(Self'Old) = Length(Self) + 1
and then Get_Cursor_Index (Self'Old) = Get_Cursor_Index (Self));
procedure Clear (Self : in out Line)
with Post => Length (Self) = 0
and then Get_Cursor_Index (Self) = 1;
function Current (Self : Line) return String;
overriding
function "="(Left, Right : Line) return Boolean is (
Get_Cursor_Index (Left) = Get_Cursor_Index (Right)
and then Current (Left) = Current (Right));
private
type Line is record
Contents : ASU.Unbounded_String := ASU.Null_Unbounded_String;
Cursor : Positive := 1;
end record;
end Trendy_Terminal.Lines;
|
with Ada.Float_Text_IO, Ada.Integer_Text_IO, Ada.Text_IO;
with Integer_Exponentiation;
procedure Test_Integer_Exponentiation is
use Ada.Float_Text_IO, Ada.Integer_Text_IO, Ada.Text_IO;
use Integer_Exponentiation;
R : Float;
I : Integer;
begin
Exponentiate (Argument => 2.5, Exponent => 3, Result => R);
Put ("2.5 ^ 3 = ");
Put (R, Fore => 2, Aft => 4, Exp => 0);
New_Line;
Exponentiate (Argument => -12, Exponent => 3, Result => I);
Put ("-12 ^ 3 = ");
Put (I, Width => 7);
New_Line;
end Test_Integer_Exponentiation;
|
pragma Style_Checks (Off);
with Lv.Style;
with System;
with Lv.Objx.Label;
with Lv.Objx.Page;
with Lv.Objx.Btn;
package Lv.Objx.List is
subtype Instance is Obj_T;
type Style_T is (Style_Bg,
Style_Scrl,
Style_Sb,
Style_Btn_Rel,
Style_Btn_Pr,
Style_Btn_Tgl_Rel,
Style_Btn_Tgl_Pr,
Style_Btn_Ina);
-- Create a list objects
-- @param par pointer to an object, it will be the parent of the new list
-- @param copy pointer to a list object, if not NULL then the new object will be copied from it
-- @return pointer to the created list
function Create (Par : Obj_T; Copy : Instance) return Instance;
-- Delete all children of the scrl object, without deleting scrl child.
-- @param obj pointer to an object
procedure Clean (Self : Instance);
-- Add a list element to the list
-- @param self pointer to list object
-- @param img_fn file name of an image before the text (NULL if unused)
-- @param txt text of the list element (NULL if unused)
-- @param rel_action pointer to release action function (like with lv_btn)
-- @return pointer to the new list element which can be customized (a button)
function Add
(Self : Instance;
Img_Gn : System.Address;
Txt : C_String_Ptr;
Rel_Action : Action_Func_T) return Btn.Instance;
----------------------
-- Setter functions --
----------------------
-- Make a button selected
-- @param self pointer to a list object
-- @param btn pointer to a button to select
procedure Set_Btn_Selected (Self : Instance; Btn : Obj_T);
-- Set scroll animation duration on 'list_up()' 'list_down()' 'list_focus()'
-- @param self pointer to a list object
-- @param anim_time duration of animation [ms]
procedure Set_Anim_Time (Self : Instance; Anim_Time : Uint16_T);
-- Set the scroll bar mode of a list
-- @param self pointer to a list object
-- @param sb_mode the new mode from 'lv_page_sb_mode_t' enum
procedure Set_Sb_Mode (Self : Instance; Mode : Lv.Objx.Page.Mode_T);
-- Set a style of a list
-- @param self pointer to a list object
-- @param type which style should be set
-- @param style pointer to a style
procedure Set_Style
(Self : Instance;
Type_P : Style_T;
Style : Lv.Style.Style);
----------------------
-- Getter functions --
----------------------
-- Get the text of a list element
-- @param btn pointer to list element
-- @return pointer to the text
function Btn_Text
(Self : Instance) return C_String_Ptr;
-- Get the label object from a list element
-- @param self pointer to a list element (button)
-- @return pointer to the label from the list element or NULL if not found
function Btn_Label (Self : Instance) return Label.Instance;
-- Get the image object from a list element
-- @param self pointer to a list element (button)
-- @return pointer to the image from the list element or NULL if not found
function Btn_Img (Self : Instance) return Obj_T;
-- Get the next button from list. (Starts from the bottom button)
-- @param self pointer to a list object
-- @param prev_btn pointer to button. Search the next after it.
-- @return pointer to the next button or NULL when no more buttons
function Prev_Btn (Self : Instance; Prev : Obj_T) return Obj_T;
-- Get the previous button from list. (Starts from the top button)
-- @param self pointer to a list object
-- @param prev_btn pointer to button. Search the previous before it.
-- @return pointer to the previous button or NULL when no more buttons
function Next_Btn (Self : Instance; Next : Obj_T) return Obj_T;
-- Get the currently selected button
-- @param self pointer to a list object
-- @return pointer to the selected button
function Btn_Selected (Self : Instance) return Obj_T;
-- Get scroll animation duration
-- @param self pointer to a list object
-- @return duration of animation [ms]
function Anim_Time (Self : Instance) return Uint16_T;
-- Get the scroll bar mode of a list
-- @param self pointer to a list object
-- @return scrollbar mode from 'lv_page_sb_mode_t' enum
function Sb_Mode (Self : Instance) return Lv.Objx.Page.Mode_T;
-- Get a style of a list
-- @param self pointer to a list object
-- @param type which style should be get
-- @return style pointer to a style
function Style
(Self : Instance;
Type_P : Style_T) return Lv.Style.Style;
-- Other functions
-- Move the list elements up by one
-- @param self pointer a to list object
procedure Up (Self : Instance);
-- Move the list elements down by one
-- @param self pointer to a list object
procedure Down (Self : Instance);
-- Focus on a list button. It ensures that the button will be visible on the list.
-- @param self pointer to a list button to focus
-- @param anim_en true: scroll with animation, false: without animation
procedure Focus (Self : Instance; Anim_En : U_Bool);
-------------
-- Imports --
-------------
pragma Import (C, Create, "lv_list_create");
pragma Import (C, Clean, "lv_list_clean");
pragma Import (C, Add, "lv_list_add");
pragma Import (C, Set_Btn_Selected, "lv_list_set_btn_selected");
pragma Import (C, Set_Anim_Time, "lv_list_set_anim_time");
pragma Import (C, Set_Sb_Mode, "lv_list_set_sb_mode_inline");
pragma Import (C, Set_Style, "lv_list_set_style");
pragma Import (C, Btn_Text, "lv_list_get_btn_text");
pragma Import (C, Btn_Label, "lv_list_get_btn_label");
pragma Import (C, Btn_Img, "lv_list_get_btn_img");
pragma Import (C, Prev_Btn, "lv_list_get_prev_btn");
pragma Import (C, Next_Btn, "lv_list_get_next_btn");
pragma Import (C, Btn_Selected, "lv_list_get_btn_selected");
pragma Import (C, Anim_Time, "lv_list_get_anim_time");
pragma Import (C, Sb_Mode, "lv_list_get_sb_mode_inline");
pragma Import (C, Style, "lv_list_get_style");
pragma Import (C, Up, "lv_list_up");
pragma Import (C, Down, "lv_list_down");
pragma Import (C, Focus, "lv_list_focus");
for Style_T'Size use 8;
for Style_T use (Style_Bg => 0,
Style_Scrl => 1,
Style_Sb => 2,
Style_Btn_Rel => 3,
Style_Btn_Pr => 4,
Style_Btn_Tgl_Rel => 5,
Style_Btn_Tgl_Pr => 6,
Style_Btn_Ina => 7);
end Lv.Objx.List;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME LIBRARY (GNARL) COMPONENTS --
-- --
-- S Y S T E M . B B . B O A R D _ S U P P O R T --
-- --
-- S p e c --
-- --
-- Copyright (C) 1999-2002 Universidad Politecnica de Madrid --
-- Copyright (C) 2003-2006 The European Space Agency --
-- Copyright (C) 2003-2021, AdaCore --
-- --
-- GNARL is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNARL is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- --
-- --
-- --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNARL was developed by the GNARL team at Florida State University. --
-- Extensive contributions were provided by Ada Core Technologies, Inc. --
-- --
-- The port of GNARL to bare board targets was initially developed by the --
-- Real-Time Systems Group at the Technical University of Madrid. --
-- --
------------------------------------------------------------------------------
-- This package defines an interface used for handling the peripherals
-- available in the target board that are needed by the target-independent
-- part of the run time.
pragma Restrictions (No_Elaboration_Code);
with System.Multiprocessors;
with System.BB.Interrupts;
with System.BB.Time;
package System.BB.Board_Support is
pragma Preelaborate;
-----------------------------
-- Hardware Initialization --
-----------------------------
procedure Initialize_Board;
-- Procedure that performs the hardware initialization of the board. Should
-- be called before any other operations in this package.
------------------------------------------------
-- Clock and Timer Definitions and Primitives --
------------------------------------------------
package Time is
type Timer_Interval is mod 2 ** 32;
for Timer_Interval'Size use 32;
-- This type represents any interval that we can measure within a
-- Clock_Interrupt_Period. Even though this type is always 32 bits, its
-- actual allowed range is 0 .. Max_Timer_Interval, which may be less,
-- depending on the target.
function Read_Clock return BB.Time.Time;
-- Read the value contained in the clock hardware counter, and return
-- the number of ticks elapsed since the last clock interrupt, that is,
-- since the clock counter was last reloaded.
function Max_Timer_Interval return Timer_Interval;
pragma Inline (Max_Timer_Interval);
-- The maximum value of the hardware clock. The is the maximum value
-- that Read_Clock may return, and the longest interval that Set_Alarm
-- may use. The hardware clock period is Max_Timer_Interval + 1 clock
-- ticks. An interrupt occurs after this number of ticks.
procedure Set_Alarm (Ticks : Timer_Interval);
-- Set an alarm that will expire after the specified number of clock
-- ticks. This cancels any previous alarm set.
procedure Install_Alarm_Handler (Handler : Interrupts.Interrupt_Handler);
-- Install Handler as alarm interrupt handler
procedure Clear_Alarm_Interrupt;
pragma Inline (Clear_Alarm_Interrupt);
-- Acknowledge the alarm interrupt
end Time;
----------------
-- Interrupts --
----------------
package Interrupts is
function Priority_Of_Interrupt
(Interrupt : System.BB.Interrupts.Interrupt_ID)
return System.Any_Priority;
pragma Inline (Priority_Of_Interrupt);
-- Function to obtain the priority associated with an interrupt.
procedure Install_Interrupt_Handler
(Interrupt : System.BB.Interrupts.Interrupt_ID;
Prio : Interrupt_Priority);
-- Determine the trap vector that will be called for handling the given
-- external interrupt on the current CPU, and install the given handler
-- there. It is an error to try to install two different handlers for
-- the vector, though this procedure may be called for multiple
-- interrupts that share the same vector, as long as they use the same
-- handler. The handler expects a single argument indicating the vector
-- called. This routine may need to set up the interrupt controller to
-- enable the given interrupt source, so it will actually cause a trap
-- on the CPU. Note, this should not actually enable interrupts, as this
-- is only done through CPU_Primitives.Enable_Interrupts, which
-- typically uses a processor status register. Prio is the priority for
-- the interrupt, and the hardware can be programmed to use that
-- priority.
procedure Set_Current_Priority (Priority : Integer);
pragma Inline (Set_Current_Priority);
-- Only allow interrupts higher than the specified priority. This
-- routine differes from the Enable_Interrupts/Disable_Interrupts
-- procedures in CPU_Primitives in that it disables interrupts at the
-- board level, rather than the CPU. Typically if board-specific support
-- of an interrupt controller is needed to block interrupts of
-- insufficient priority, this routine will be needed. On other systems,
-- where the processor has this control, or where only a single
-- interrupt priority is supported, this may be a null procedure.
procedure Power_Down;
pragma Inline (Power_Down);
-- Power-down the current CPU. This procedure is called only by the idle
-- task, with interrupt enabled.
end Interrupts;
package Multiprocessors is
-- The following functions define an interface for handling the "poke"
-- interrupts that are used to signal other processors in an
-- multiprocessor system.
function Number_Of_CPUs return System.Multiprocessors.CPU;
pragma Inline (Number_Of_CPUs);
-- Return the number of available CPUs on the target
function Current_CPU return System.Multiprocessors.CPU;
pragma Inline (Current_CPU);
-- Return the id of the current CPU
procedure Poke_CPU (CPU_Id : System.Multiprocessors.CPU);
-- Poke the given CPU to signal that a rescheduling may be required
procedure Start_All_CPUs;
-- Start all slave CPUs
end Multiprocessors;
end System.BB.Board_Support;
|
with Tkmrpc.Types;
with Tkmrpc.Operations.Ike;
package Tkmrpc.Request.Ike.Esa_Create_No_Pfs is
Data_Size : constant := 312;
type Data_Type is record
Esa_Id : Types.Esa_Id_Type;
Isa_Id : Types.Isa_Id_Type;
Sp_Id : Types.Sp_Id_Type;
Ea_Id : Types.Ea_Id_Type;
Nc_Loc_Id : Types.Nc_Id_Type;
Nonce_Rem : Types.Nonce_Type;
Initiator : Types.Init_Type;
Esp_Spi_Loc : Types.Esp_Spi_Type;
Esp_Spi_Rem : Types.Esp_Spi_Type;
end record;
for Data_Type use record
Esa_Id at 0 range 0 .. (8 * 8) - 1;
Isa_Id at 8 range 0 .. (8 * 8) - 1;
Sp_Id at 16 range 0 .. (4 * 8) - 1;
Ea_Id at 20 range 0 .. (8 * 8) - 1;
Nc_Loc_Id at 28 range 0 .. (8 * 8) - 1;
Nonce_Rem at 36 range 0 .. (260 * 8) - 1;
Initiator at 296 range 0 .. (8 * 8) - 1;
Esp_Spi_Loc at 304 range 0 .. (4 * 8) - 1;
Esp_Spi_Rem at 308 range 0 .. (4 * 8) - 1;
end record;
for Data_Type'Size use Data_Size * 8;
Padding_Size : constant := Request.Body_Size - Data_Size;
subtype Padding_Range is Natural range 1 .. Padding_Size;
subtype Padding_Type is Types.Byte_Sequence (Padding_Range);
type Request_Type is record
Header : Request.Header_Type;
Data : Data_Type;
Padding : Padding_Type;
end record;
for Request_Type use record
Header at 0 range 0 .. (Request.Header_Size * 8) - 1;
Data at Request.Header_Size range 0 .. (Data_Size * 8) - 1;
Padding at Request.Header_Size + Data_Size range
0 .. (Padding_Size * 8) - 1;
end record;
for Request_Type'Size use Request.Request_Size * 8;
Null_Request : constant Request_Type :=
Request_Type'
(Header =>
Request.Header_Type'(Operation => Operations.Ike.Esa_Create_No_Pfs,
Request_Id => 0),
Data =>
Data_Type'(Esa_Id => Types.Esa_Id_Type'First,
Isa_Id => Types.Isa_Id_Type'First,
Sp_Id => Types.Sp_Id_Type'First,
Ea_Id => Types.Ea_Id_Type'First,
Nc_Loc_Id => Types.Nc_Id_Type'First,
Nonce_Rem => Types.Null_Nonce_Type,
Initiator => Types.Init_Type'First,
Esp_Spi_Loc => Types.Esp_Spi_Type'First,
Esp_Spi_Rem => Types.Esp_Spi_Type'First),
Padding => Padding_Type'(others => 0));
end Tkmrpc.Request.Ike.Esa_Create_No_Pfs;
|
------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- A D A . U N C H E C K E D _ D E A L L O C A T E _ S U B P O O L --
-- --
-- B o d y --
-- --
-- Copyright (C) 2011-2019, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with System.Storage_Pools.Subpools,
System.Storage_Pools.Subpools.Finalization;
use System.Storage_Pools.Subpools,
System.Storage_Pools.Subpools.Finalization;
procedure Ada.Unchecked_Deallocate_Subpool
(Subpool : in out System.Storage_Pools.Subpools.Subpool_Handle)
is
begin
Finalize_And_Deallocate (Subpool);
end Ada.Unchecked_Deallocate_Subpool;
|
------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- E X P _ T S S --
-- --
-- B o d y --
-- --
-- Copyright (C) 1992-2015, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
-- for more details. You should have received a copy of the GNU General --
-- Public License distributed with GNAT; see file COPYING3. If not, go to --
-- http://www.gnu.org/licenses for a complete copy of the license. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with Atree; use Atree;
with Einfo; use Einfo;
with Elists; use Elists;
with Exp_Util; use Exp_Util;
with Nlists; use Nlists;
with Lib; use Lib;
with Restrict; use Restrict;
with Rident; use Rident;
with Sem_Aux; use Sem_Aux;
with Sem_Util; use Sem_Util;
with Sinfo; use Sinfo;
package body Exp_Tss is
--------------------
-- Base_Init_Proc --
--------------------
function Base_Init_Proc
(Typ : Entity_Id;
Ref : Entity_Id := Empty) return Entity_Id
is
Full_Type : E;
Proc : Entity_Id;
begin
pragma Assert (Is_Type (Typ));
if Is_Private_Type (Typ) then
Full_Type := Underlying_Type (Base_Type (Typ));
else
Full_Type := Typ;
end if;
if No (Full_Type) then
return Empty;
elsif Is_Concurrent_Type (Full_Type)
and then Present (Corresponding_Record_Type (Base_Type (Full_Type)))
then
-- The initialization routine to be called is that of the base type
-- of the corresponding record type, which may itself be a subtype
-- and possibly an itype.
return Init_Proc
(Base_Type (Corresponding_Record_Type (Base_Type (Full_Type))),
Ref);
else
Proc := Init_Proc (Base_Type (Full_Type), Ref);
if No (Proc)
and then Is_Composite_Type (Full_Type)
and then Is_Derived_Type (Full_Type)
then
return Init_Proc (Root_Type (Full_Type), Ref);
else
return Proc;
end if;
end if;
end Base_Init_Proc;
--------------
-- Copy_TSS --
--------------
-- Note: internally this routine is also used to initially set up
-- a TSS entry for a new type (case of being called from Set_TSS)
procedure Copy_TSS (TSS : Entity_Id; Typ : Entity_Id) is
FN : Node_Id;
begin
Ensure_Freeze_Node (Typ);
FN := Freeze_Node (Typ);
if No (TSS_Elist (FN)) then
Set_TSS_Elist (FN, New_Elmt_List);
end if;
-- We prepend here, so that a second call overrides the first, it
-- is not clear that this is required, but it seems reasonable.
Prepend_Elmt (TSS, TSS_Elist (FN));
end Copy_TSS;
-------------------
-- CPP_Init_Proc --
-------------------
function CPP_Init_Proc (Typ : Entity_Id) return Entity_Id is
FN : constant Node_Id := Freeze_Node (Typ);
Elmt : Elmt_Id;
begin
if not Is_CPP_Class (Root_Type (Typ))
or else No (FN)
or else No (TSS_Elist (FN))
then
return Empty;
else
Elmt := First_Elmt (TSS_Elist (FN));
while Present (Elmt) loop
if Is_CPP_Init_Proc (Node (Elmt)) then
return Node (Elmt);
end if;
Next_Elmt (Elmt);
end loop;
end if;
return Empty;
end CPP_Init_Proc;
------------------------
-- Find_Inherited_TSS --
------------------------
function Find_Inherited_TSS
(Typ : Entity_Id;
Nam : TSS_Name_Type) return Entity_Id
is
Btyp : Entity_Id := Typ;
Proc : Entity_Id;
begin
loop
Btyp := Base_Type (Btyp);
Proc := TSS (Btyp, Nam);
exit when Present (Proc)
or else not Is_Derived_Type (Btyp);
-- If Typ is a derived type, it may inherit attributes from some
-- ancestor.
Btyp := Etype (Btyp);
end loop;
if No (Proc) then
-- If nothing else, use the TSS of the root type
Proc := TSS (Base_Type (Underlying_Type (Typ)), Nam);
end if;
return Proc;
end Find_Inherited_TSS;
-----------------------
-- Get_TSS_Name_Type --
-----------------------
function Get_TSS_Name (E : Entity_Id) return TSS_Name_Type is
C1 : Character;
C2 : Character;
Nm : TSS_Name_Type;
begin
Get_Last_Two_Chars (Chars (E), C1, C2);
if C1 in 'A' .. 'Z' and then C2 in 'A' .. 'Z' then
Nm := (C1, C2);
for J in TSS_Names'Range loop
if Nm = TSS_Names (J) then
return Nm;
end if;
end loop;
end if;
return TSS_Null;
end Get_TSS_Name;
---------------------------------
-- Has_Non_Null_Base_Init_Proc --
---------------------------------
-- Note: if a base Init_Proc is present, and No_Default_Initialization is
-- present, then we must avoid testing for a null init proc, since there
-- is no init proc present in this case.
function Has_Non_Null_Base_Init_Proc (Typ : Entity_Id) return Boolean is
BIP : constant Entity_Id := Base_Init_Proc (Typ);
begin
return Present (BIP)
and then (Restriction_Active (No_Default_Initialization)
or else not Is_Null_Init_Proc (BIP));
end Has_Non_Null_Base_Init_Proc;
---------------
-- Init_Proc --
---------------
function Init_Proc
(Typ : Entity_Id;
Ref : Entity_Id := Empty) return Entity_Id
is
FN : constant Node_Id := Freeze_Node (Typ);
Elmt : Elmt_Id;
E1 : Entity_Id;
E2 : Entity_Id;
begin
if No (FN) then
return Empty;
elsif No (TSS_Elist (FN)) then
return Empty;
elsif No (Ref) then
Elmt := First_Elmt (TSS_Elist (FN));
while Present (Elmt) loop
if Is_Init_Proc (Node (Elmt)) then
if not Is_CPP_Class (Typ) then
return Node (Elmt);
-- For CPP classes, we are looking for the default constructor,
-- and so we must skip any non-default constructor.
elsif
No (Next
(First
(Parameter_Specifications (Parent (Node (Elmt))))))
then
return Node (Elmt);
end if;
end if;
Next_Elmt (Elmt);
end loop;
-- Non-default constructors are currently supported only in the context
-- of interfacing with C++.
else pragma Assert (Is_CPP_Class (Typ));
-- Use the referenced function to locate the init_proc matching
-- the C++ constructor.
Elmt := First_Elmt (TSS_Elist (FN));
while Present (Elmt) loop
if Is_Init_Proc (Node (Elmt)) then
E1 := Next_Formal (First_Formal (Node (Elmt)));
E2 := First_Formal (Ref);
while Present (E1) and then Present (E2) loop
if Chars (E1) /= Chars (E2)
or else Ekind (E1) /= Ekind (E2)
then
exit;
elsif Ekind (Etype (E1)) /= E_Anonymous_Access_Type
and then Ekind (Etype (E2)) /= E_Anonymous_Access_Type
and then Etype (E1) /= Etype (E2)
then
exit;
elsif Ekind (Etype (E1)) = E_Anonymous_Access_Type
and then Ekind (Etype (E2)) = E_Anonymous_Access_Type
and then Directly_Designated_Type (Etype (E1))
/= Directly_Designated_Type (Etype (E2))
then
exit;
end if;
E1 := Next_Formal (E1);
E2 := Next_Formal (E2);
end loop;
if No (E1) and then No (E2) then
return Node (Elmt);
end if;
end if;
Next_Elmt (Elmt);
end loop;
end if;
return Empty;
end Init_Proc;
----------------------
-- Is_CPP_Init_Proc --
----------------------
function Is_CPP_Init_Proc (E : Entity_Id) return Boolean is
C1 : Character;
C2 : Character;
begin
Get_Last_Two_Chars (Chars (E), C1, C2);
return C1 = TSS_CPP_Init_Proc (1) and then C2 = TSS_CPP_Init_Proc (2);
end Is_CPP_Init_Proc;
------------------
-- Is_Init_Proc --
------------------
function Is_Init_Proc (E : Entity_Id) return Boolean is
C1 : Character;
C2 : Character;
begin
Get_Last_Two_Chars (Chars (E), C1, C2);
return C1 = TSS_Init_Proc (1) and then C2 = TSS_Init_Proc (2);
end Is_Init_Proc;
------------
-- Is_TSS --
------------
function Is_TSS (E : Entity_Id; Nam : TSS_Name_Type) return Boolean is
C1 : Character;
C2 : Character;
begin
Get_Last_Two_Chars (Chars (E), C1, C2);
return C1 = Nam (1) and then C2 = Nam (2);
end Is_TSS;
function Is_TSS (N : Name_Id; Nam : TSS_Name_Type) return Boolean is
C1 : Character;
C2 : Character;
begin
Get_Last_Two_Chars (N, C1, C2);
return C1 = Nam (1) and then C2 = Nam (2);
end Is_TSS;
-------------------------
-- Make_Init_Proc_Name --
-------------------------
function Make_Init_Proc_Name (Typ : Entity_Id) return Name_Id is
begin
return Make_TSS_Name (Typ, TSS_Init_Proc);
end Make_Init_Proc_Name;
-------------------
-- Make_TSS_Name --
-------------------
function Make_TSS_Name
(Typ : Entity_Id;
Nam : TSS_Name_Type) return Name_Id
is
begin
Get_Name_String (Chars (Typ));
Add_Char_To_Name_Buffer (Nam (1));
Add_Char_To_Name_Buffer (Nam (2));
return Name_Find;
end Make_TSS_Name;
-------------------------
-- Make_TSS_Name_Local --
-------------------------
function Make_TSS_Name_Local
(Typ : Entity_Id;
Nam : TSS_Name_Type) return Name_Id
is
begin
Get_Name_String (Chars (Typ));
Add_Char_To_Name_Buffer ('_');
Add_Nat_To_Name_Buffer (Increment_Serial_Number);
Add_Char_To_Name_Buffer (Nam (1));
Add_Char_To_Name_Buffer (Nam (2));
return Name_Find;
end Make_TSS_Name_Local;
--------------
-- Same_TSS --
--------------
function Same_TSS (E1, E2 : Entity_Id) return Boolean is
E1C1 : Character;
E1C2 : Character;
E2C1 : Character;
E2C2 : Character;
begin
Get_Last_Two_Chars (Chars (E1), E1C1, E1C2);
Get_Last_Two_Chars (Chars (E2), E2C1, E2C2);
return
E1C1 = E2C1
and then
E1C2 = E2C2
and then
E1C1 in 'A' .. 'Z'
and then
E1C2 in 'A' .. 'Z';
end Same_TSS;
-------------------
-- Set_Init_Proc --
-------------------
procedure Set_Init_Proc (Typ : Entity_Id; Init : Entity_Id) is
begin
Set_TSS (Typ, Init);
end Set_Init_Proc;
-------------
-- Set_TSS --
-------------
procedure Set_TSS (Typ : Entity_Id; TSS : Entity_Id) is
begin
-- Make sure body of subprogram is frozen
-- Skip this for Init_Proc with No_Default_Initialization, since the
-- Init proc is a dummy void entity in this case to be ignored.
if (Is_Init_Proc (TSS) or else Is_CPP_Init_Proc (TSS))
and then Restriction_Active (No_Default_Initialization)
then
null;
-- Skip this if not in the same code unit (since it means we are using
-- an already existing TSS in another unit)
elsif not In_Same_Code_Unit (Typ, TSS) then
null;
-- Otherwise make sure body is frozen
else
Append_Freeze_Action (Typ, Unit_Declaration_Node (TSS));
end if;
-- Set TSS entry
Copy_TSS (TSS, Typ);
end Set_TSS;
---------
-- TSS --
---------
function TSS (Typ : Entity_Id; Nam : TSS_Name_Type) return Entity_Id is
FN : constant Node_Id := Freeze_Node (Typ);
Elmt : Elmt_Id;
Subp : Entity_Id;
begin
if No (FN) then
return Empty;
elsif No (TSS_Elist (FN)) then
return Empty;
else
Elmt := First_Elmt (TSS_Elist (FN));
while Present (Elmt) loop
if Is_TSS (Node (Elmt), Nam) then
Subp := Node (Elmt);
-- For stream subprograms, the TSS entity may be a renaming-
-- as-body of an already generated entity. Use that one rather
-- the one introduced by the renaming, which is an artifact of
-- current stream handling.
if Nkind (Parent (Parent (Subp))) =
N_Subprogram_Renaming_Declaration
and then
Present (Corresponding_Spec (Parent (Parent (Subp))))
then
return Corresponding_Spec (Parent (Parent (Subp)));
else
return Subp;
end if;
else
Next_Elmt (Elmt);
end if;
end loop;
end if;
return Empty;
end TSS;
function TSS (Typ : Entity_Id; Nam : Name_Id) return Entity_Id is
FN : constant Node_Id := Freeze_Node (Typ);
Elmt : Elmt_Id;
Subp : Entity_Id;
begin
if No (FN) then
return Empty;
elsif No (TSS_Elist (FN)) then
return Empty;
else
Elmt := First_Elmt (TSS_Elist (FN));
while Present (Elmt) loop
if Chars (Node (Elmt)) = Nam then
Subp := Node (Elmt);
-- For stream subprograms, the TSS entity may be a renaming-
-- as-body of an already generated entity. Use that one rather
-- the one introduced by the renaming, which is an artifact of
-- current stream handling.
if Nkind (Parent (Parent (Subp))) =
N_Subprogram_Renaming_Declaration
and then
Present (Corresponding_Spec (Parent (Parent (Subp))))
then
return Corresponding_Spec (Parent (Parent (Subp)));
else
return Subp;
end if;
else
Next_Elmt (Elmt);
end if;
end loop;
end if;
return Empty;
end TSS;
end Exp_Tss;
|
with Ada.Wide_Wide_Text_IO;
package body Handlers is
use type League.Strings.Universal_String;
function "+"
(Item : Wide_Wide_String) return League.Strings.Universal_String
renames League.Strings.To_Universal_String;
------------------
-- Error_String --
------------------
overriding function Error_String
(Self : Handler) return League.Strings.Universal_String is
begin
return League.Strings.Empty_Universal_String;
end Error_String;
-------------------
-- Start_Element --
-------------------
overriding procedure Start_Element
(Self : in out Handler;
Namespace_URI : League.Strings.Universal_String;
Local_Name : League.Strings.Universal_String;
Qualified_Name : League.Strings.Universal_String;
Attributes : XML.SAX.Attributes.SAX_Attributes;
Success : in out Boolean) is
begin
if Qualified_Name = +"Student" then
Ada.Wide_Wide_Text_IO.Put_Line
(Attributes.Value (+"Name").To_Wide_Wide_String);
end if;
end Start_Element;
end Handlers;
|
------------------------------------------------------------------------------
-- --
-- Matreshka Project --
-- --
-- Web Framework --
-- --
-- Runtime Library Component --
-- --
------------------------------------------------------------------------------
-- --
-- Copyright © 2012, Vadim Godunko <vgodunko@gmail.com> --
-- All rights reserved. --
-- --
-- Redistribution and use in source and binary forms, with or without --
-- modification, are permitted provided that the following conditions --
-- are met: --
-- --
-- * Redistributions of source code must retain the above copyright --
-- notice, this list of conditions and the following disclaimer. --
-- --
-- * Redistributions in binary form must reproduce the above copyright --
-- notice, this list of conditions and the following disclaimer in the --
-- documentation and/or other materials provided with the distribution. --
-- --
-- * Neither the name of the Vadim Godunko, IE nor the names of its --
-- contributors may be used to endorse or promote products derived from --
-- this software without specific prior written permission. --
-- --
-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS --
-- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT --
-- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR --
-- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT --
-- HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, --
-- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED --
-- TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR --
-- PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF --
-- LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING --
-- NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS --
-- SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. --
-- --
------------------------------------------------------------------------------
-- $Revision$ $Date$
------------------------------------------------------------------------------
with League.Stream_Element_Vectors;
with Web_Services.SOAP.Messages;
package Web_Services.SOAP.Message_Encoders is
type SOAP_Message_Encoder is tagged limited private;
function Encode
(Self : in out SOAP_Message_Encoder'Class;
Message : Web_Services.SOAP.Messages.SOAP_Message)
return League.Stream_Element_Vectors.Stream_Element_Vector;
private
type SOAP_Message_Encoder is tagged limited null record;
end Web_Services.SOAP.Message_Encoders;
|
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<item class_id_reference="28" object_id="_698">
<id>114</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_699">
<id>116</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_700">
<id>117</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_701">
<id>118</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_702">
<id>119</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_703">
<id>120</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_704">
<id>122</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_705">
<id>128</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_706">
<id>139</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_707">
<id>146</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_708">
<id>199</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_709">
<id>11</id>
<operations>
<count>22</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_710">
<id>124</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_711">
<id>125</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_712">
<id>126</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_713">
<id>127</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_714">
<id>130</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_715">
<id>131</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_716">
<id>133</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_717">
<id>134</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_718">
<id>136</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_719">
<id>137</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_720">
<id>141</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_721">
<id>142</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_722">
<id>143</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_723">
<id>144</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_724">
<id>145</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_725">
<id>148</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_726">
<id>149</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_727">
<id>151</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_728">
<id>152</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_729">
<id>154</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_730">
<id>155</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_731">
<id>157</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_732">
<id>12</id>
<operations>
<count>9</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_733">
<id>160</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_734">
<id>161</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_735">
<id>162</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_736">
<id>163</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_737">
<id>164</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_738">
<id>165</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_739">
<id>166</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_740">
<id>193</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_741">
<id>194</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_742">
<id>13</id>
<operations>
<count>15</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_743">
<id>106</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_744">
<id>107</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_745">
<id>159</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_746">
<id>162</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_747">
<id>164</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_748">
<id>166</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_749">
<id>167</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_750">
<id>168</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_751">
<id>169</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_752">
<id>171</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_753">
<id>174</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_754">
<id>177</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_755">
<id>178</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_756">
<id>179</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_757">
<id>180</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_758">
<id>14</id>
<operations>
<count>16</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_759">
<id>103</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_760">
<id>104</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_761">
<id>105</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_762">
<id>108</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_763">
<id>172</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_764">
<id>173</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_765">
<id>175</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_766">
<id>176</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_767">
<id>181</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_768">
<id>182</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_769">
<id>183</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_770">
<id>184</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_771">
<id>185</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_772">
<id>186</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_773">
<id>187</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_774">
<id>188</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_775">
<id>15</id>
<operations>
<count>6</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_776">
<id>189</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_777">
<id>190</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_778">
<id>191</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_779">
<id>192</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_780">
<id>196</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_781">
<id>197</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_782">
<id>16</id>
<operations>
<count>2</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_783">
<id>201</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_784">
<id>202</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
</states>
<transitions class_id="29" tracking_level="0" version="0">
<count>20</count>
<item_version>0</item_version>
<item class_id="30" tracking_level="1" version="0" object_id="_785">
<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="_786">
<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="_787">
<inState>6</inState>
<outState>7</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_788">
<inState>8</inState>
<outState>9</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="_789">
<inState>9</inState>
<outState>10</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>2</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>81</first>
<second>0</second>
</first>
<second>1</second>
</item>
<item>
<first>
<first>92</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_790">
<inState>16</inState>
<outState>9</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="_791">
<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>25</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_792">
<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>25</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_793">
<inState>5</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="_794">
<inState>4</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>49</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_795">
<inState>4</inState>
<outState>5</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>49</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_796">
<inState>7</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>67</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_797">
<inState>7</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>67</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_798">
<inState>10</inState>
<outState>11</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="_799">
<inState>11</inState>
<outState>12</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="_800">
<inState>12</inState>
<outState>13</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="_801">
<inState>13</inState>
<outState>14</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="_802">
<inState>15</inState>
<outState>10</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="_803">
<inState>14</inState>
<outState>16</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>113</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_804">
<inState>14</inState>
<outState>15</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>113</first>
<second>0</second>
</first>
<second>0</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>149</count>
<item_version>0</item_version>
<item class_id="38" tracking_level="0" version="0">
<first>5</first>
<second class_id="39" tracking_level="0" version="0">
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>6</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>7</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>8</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>9</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>10</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>13</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>14</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>15</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>17</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>19</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>20</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>21</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>22</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>23</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>25</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>27</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>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>36</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>37</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>39</first>
<second>
<first>1</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>1</first>
<second>0</second>
</second>
</item>
<item>
<first>44</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>46</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>47</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>48</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>49</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>50</first>
<second>
<first>3</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>4</first>
<second>0</second>
</second>
</item>
<item>
<first>57</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>58</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>59</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>61</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>63</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>64</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>66</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>67</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>68</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>72</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>73</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>74</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>75</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>77</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>78</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>79</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>80</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>81</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>82</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>84</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>86</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>87</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>88</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>89</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>90</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>91</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>92</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>93</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>97</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>98</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>99</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>100</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>101</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>103</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>104</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>105</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>106</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>107</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>108</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>109</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>110</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>111</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>112</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>113</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>114</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>119</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>120</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>122</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>124</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>125</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>126</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>127</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>128</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>130</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>131</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>133</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>134</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>136</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>137</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>139</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>141</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>142</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>143</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>144</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>145</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>146</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>148</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>149</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>151</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>152</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>154</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>155</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>157</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>159</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>160</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>161</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>162</first>
<second>
<first>11</first>
<second>1</second>
</second>
</item>
<item>
<first>163</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>164</first>
<second>
<first>11</first>
<second>1</second>
</second>
</item>
<item>
<first>165</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>166</first>
<second>
<first>11</first>
<second>1</second>
</second>
</item>
<item>
<first>167</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>168</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>169</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>171</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>172</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>173</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>174</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>175</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>176</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>177</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>178</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>179</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>180</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>181</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>182</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>183</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>184</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>185</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>186</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>187</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>188</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>189</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>190</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>191</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>192</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>193</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>194</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>196</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>197</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>199</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>201</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>202</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>204</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>206</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
</node_label_latency>
<bblk_ent_exit class_id="40" tracking_level="0" version="0">
<count>37</count>
<item_version>0</item_version>
<item class_id="41" tracking_level="0" version="0">
<first>18</first>
<second class_id="42" tracking_level="0" version="0">
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>28</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>32</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>35</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>38</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>41</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>43</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>45</first>
<second>
<first>2</first>
<second>2</second>
</second>
</item>
<item>
<first>51</first>
<second>
<first>3</first>
<second>3</second>
</second>
</item>
<item>
<first>60</first>
<second>
<first>4</first>
<second>4</second>
</second>
</item>
<item>
<first>62</first>
<second>
<first>4</first>
<second>4</second>
</second>
</item>
<item>
<first>69</first>
<second>
<first>5</first>
<second>5</second>
</second>
</item>
<item>
<first>76</first>
<second>
<first>5</first>
<second>5</second>
</second>
</item>
<item>
<first>83</first>
<second>
<first>6</first>
<second>6</second>
</second>
</item>
<item>
<first>85</first>
<second>
<first>6</first>
<second>6</second>
</second>
</item>
<item>
<first>94</first>
<second>
<first>7</first>
<second>7</second>
</second>
</item>
<item>
<first>102</first>
<second>
<first>7</first>
<second>7</second>
</second>
</item>
<item>
<first>115</first>
<second>
<first>8</first>
<second>12</second>
</second>
</item>
<item>
<first>121</first>
<second>
<first>8</first>
<second>8</second>
</second>
</item>
<item>
<first>123</first>
<second>
<first>8</first>
<second>8</second>
</second>
</item>
<item>
<first>129</first>
<second>
<first>8</first>
<second>9</second>
</second>
</item>
<item>
<first>132</first>
<second>
<first>9</first>
<second>9</second>
</second>
</item>
<item>
<first>135</first>
<second>
<first>9</first>
<second>9</second>
</second>
</item>
<item>
<first>138</first>
<second>
<first>9</first>
<second>9</second>
</second>
</item>
<item>
<first>140</first>
<second>
<first>8</first>
<second>8</second>
</second>
</item>
<item>
<first>147</first>
<second>
<first>8</first>
<second>9</second>
</second>
</item>
<item>
<first>150</first>
<second>
<first>9</first>
<second>9</second>
</second>
</item>
<item>
<first>153</first>
<second>
<first>9</first>
<second>9</second>
</second>
</item>
<item>
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|
--------------------------------------------------------------------------------
-- MIT License
--
-- Copyright (c) 2020 Zane Myers
--
-- 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 Vulkan.Math.GenType;
with Vulkan.Math.GenBType;
with Vulkan.Math.GenIType;
with Vulkan.Math.GenUType;
use Vulkan.Math.GenBType;
use Vulkan.Math.GenUType;
use Vulkan.Math.GenIType;
--------------------------------------------------------------------------------
--< @group Vulkan Math GenType
--------------------------------------------------------------------------------
--< @summary
--< This package describes any length vector of Vkm_Float type.
--<
--< @description
--< Provides an instantiation of the generic GenType package with a Base_Type of
--< Vkm_Float. This is used to provide the Vkm_GenFType subtype for the Vulkan Math
--< library.
--------------------------------------------------------------------------------
package Vulkan.Math.GenFType is
pragma Preelaborate;
pragma Pure;
--< @private
--< An instance of the generic GenType package, with Vkm_Float as the Base_Type.
package GFT is new Vulkan.Math.GenType(
Base_Type => Vkm_Float,
Default_Value => 0.0,
Image => Vkm_Float'Image,
Unary_Minus => "-",
Multiply => "*");
--< A subtype of the instantiated Vkm_GenType that represents the GenFType
--< described in the GLSL specification.
subtype Vkm_GenFType is GFT.Vkm_GenType;
----------------------------------------------------------------------------
-- Functions
----------------------------------------------------------------------------
function Image(instance : in Vkm_GenFType) return String is
(GFT.Image(GFT.Vkm_GenType(instance))) with inline;
----------------------------------------------------------------------------
-- Generic Operations
----------------------------------------------------------------------------
----------------------------------------------------------------------------
--< @summary
--< Apply function for parameters of Vkm_Float and Vkm_Bool type to GenFType
--< and GenBType vectors.
--<
--< @description
--< Applies a supplied function component wise on two GenFType vectors and
--< a GenBType vector returning a GenFType vector.
--<
--< RVF := [Func(IVF1.x, IVF2.x, IVB1.x) ... Func(IVF1.w, IVF2.w, IVB1.w)]
--<
--< @param IVF1
--< The first input GenFType parameter.
--<
--< @param IVF2
--< The second input GenFType parameter.
--<
--< @param IVB1
--< The first input GenBType parameter.
--<
--< @return
--< The result GenFType vector, RVF.
----------------------------------------------------------------------------
generic
with function Func(ISF1, ISF2 : in Vkm_Float;
ISB1 : in Vkm_Bool ) return Vkm_Float;
function Apply_Func_IVF_IVF_IVB_RVF(IVF1, IVF2 : in Vkm_GenFType;
IVB1 : in Vkm_GenBType) return Vkm_GenFType;
----------------------------------------------------------------------------
--< @summary
--< Apply function on a Vkm_Float input that returns a VKm_Bool component-wise
--< to a GenFType vector.
--<
--< @description
--< Applies a supplied function component wise on a GenFType vector returning
--< a GenBType vector.
--<
--< RVB := [Func(IVF1.x) ... Func(IVF1.w)]
--<
--< @param IVF1
--< The input GenFType parameter.
--<
--< @return
--< The resulting GenBType vector, RVB.
----------------------------------------------------------------------------
generic
with function Func(ISF : in Vkm_Float) return Vkm_Bool;
function Apply_Func_IVF_RVB (IVF1 : in Vkm_GenFType) return Vkm_GenBType;
----------------------------------------------------------------------------
--< @summary
--< Apply function on a Vkm_Float input that returns a Vkm_Int component-wise
--< to a GenFType vector.
--<
--< @description
--< Applies a supplied function component wise on a GenFType vector returning
--< a GenIType vector.
--<
--< RVI := [Func(IVF1.x) ... Func(IVF1.w)]
--<
--< @param IVF1
--< The input GenFType parameter.
--<
--< @return
--< The resulting GenBType vector, RVI.
----------------------------------------------------------------------------
generic
with function Func (ISF : in Vkm_Float) return Vkm_Int;
function Apply_Func_IVF_RVI (IVF1 : in Vkm_GenFType) return Vkm_GenIType;
----------------------------------------------------------------------------
--< @summary
--< Apply function on a Vkm_Int input that returns a Vkm_Float component-wise
--< to a GenIType vector.
--<
--< @description
--< Applies a supplied function component wise on a GenIType vector returning
--< a GenFType vector.
--<
--< RVF := [Func(IVI1.x) ... Func(IVI1.w)]
--<
--< @param IVI1
--< The input GenIType parameter.
--<
--< @return
--< The resulting GenFType vector, RVF.
----------------------------------------------------------------------------
generic
with function Func (ISI : in Vkm_Int) return Vkm_Float;
function Apply_Func_IVI_RVF (IVI1 : in Vkm_GenIType) return Vkm_GenFType;
----------------------------------------------------------------------------
--< @summary
--< Apply function on a Vkm_Float input that returns a Vkm_Uint component-wise
--< to a GenFType vector.
--<
--< @description
--< Applies a supplied function component wise on a GenFType vector returning
--< a GenUType vector.
--<
--< RVU := [Func(IVF1.x) ... Func(IVF1.w)]
--<
--< @param IVF1
--< The input GenFType parameter.
--<
--< @return
--< The resulting GenUType vector, RVU.
----------------------------------------------------------------------------
generic
with function Func (ISF : in Vkm_Float) return Vkm_Uint;
function Apply_Func_IVF_RVU (IVF1 : in Vkm_GenFType) return Vkm_GenUType;
----------------------------------------------------------------------------
--< @summary
--< Apply function on a Vkm_Uint input that returns a Vkm_Float component-wise
--< to a GenFType vector.
--<
--< @description
--< Applies a supplied function component wise on a GenUType vector returning
--< a GenFType vector.
--<
--< RVF := [Func(IVU1.x) ... Func(IVU1.w)]
--<
--< @param IVU1
--< The input GenUType parameter.
--<
--< @return
--< The resulting GenFType vector, RVF.
----------------------------------------------------------------------------
generic
with function Func (ISU : in Vkm_Uint) return Vkm_Float;
function Apply_Func_IVU_RVF (IVU1 : in Vkm_GenUType) return Vkm_GenFType;
----------------------------------------------------------------------------
--< @summary
--< Apply function on a Vkm_Float input and a Vkm_Int outut that returns a Vkm_Fouble
--< component-wise to the corresponding vector types.
--<
--< @description
--< Applies a supplied function component wise on a GenFType and GenIType
--< vector, returning a GenFType vector.
--<
--< RVF := [Func(IVF.x,OVI.x) ... Func(IVF.w,OVI.w)]
--<
--< @param IVF
--< The input GenFType parameter.
--<
--< @param OVI
--< The output GenIType parameter.
--<
--< @return
--< The resulting GenFType vector, RVF.
----------------------------------------------------------------------------
generic
with function Func (ISF : in Vkm_Float;
OSI : out Vkm_Int) return Vkm_Float;
function Apply_Func_IVF_OVI_RVF(IVF : in Vkm_GenFType;
OVI : out Vkm_GenIType) return Vkm_GenFType;
----------------------------------------------------------------------------
--< @summary
--< Apply function on a Vkm_Float and a Vkm_Int input that returns a Vkm_Float
--< component-wise to the corresponding vector types.
--<
--< @description
--< Applies a supplied function component wise on a GenFType and GenIType
--< vector, returning a GenFType vector.
--<
--< RVF := [Func(IVF.x,IVI.x) ... Func(IVF.w,IVI.w)]
--<
--< @param IVF
--< The input GenFType parameter.
--<
--< @param IVI
--< The input GenIType parameter.
--<
--< @return
--< The resulting GenFType vector, RVF.
----------------------------------------------------------------------------
generic
with function Func (ISF : in Vkm_Float;
ISI : in Vkm_Int) return Vkm_Float;
function Apply_Func_IVF_IVI_RVF(IVF : in Vkm_GenFType;
IVI : in Vkm_GenIType) return Vkm_GenFType;
----------------------------------------------------------------------------
--< @summary
--< Apply function on two Vkm_Float inputs that returns a Vkm_Bool component-wise
--< to two Vkm_GenFType vectors.
--<
--< @description
--< Applies a supplied function component wise on two GenFType vectors,
--< returning a GenBType vector.
--<
--< RVB := [Func(IVF1.x,IVF2.x) ... Func(IVF1.w,IVF2.w)]
--<
--< @param IVF1
--< The first input GenFType parameter.
--<
--< @param IVF2
--< The second input GenFType parameter.
--<
--< @return
--< The resulting GenBType vector, RVB.
----------------------------------------------------------------------------
generic
with function Func (ISF1 : in Vkm_Float;
ISF2 : in Vkm_Float) return Vkm_Bool;
function Apply_Func_IVF_IVF_RVB(IVF1, IVF2 : in Vkm_GenFType) return Vkm_GenBType;
----------------------------------------------------------------------------
-- Operators
----------------------------------------------------------------------------
----------------------------------------------------------------------------
-- GenFType Concatenation Operators
----------------------------------------------------------------------------
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType concatenation operator.
--<
--< @description
--< Concatenate two Vkm_GenFType vectors.
--< vector := vector & vector
--<
--< @param left
--< Parameter to the left of the '&' symbol.
--<
--< @param right
--< Parameter to the right of the '&' symbol.
--<
--< @return
--< Append right vector to left vector.
----------------------------------------------------------------------------
function "&" (left, right : in Vkm_GenFType) return Vkm_GenFType renames GFT.Concatenate;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType concatenation operator.
--<
--< @description
--< Concatenate a Vkm_Float and a Vkm_GenFType vector.
--< vector := scalar & vector
--<
--< @param left
--< Parameter to the left of the '&' symbol.
--<
--< @param right
--< Parameter to the right of the '&' symbol.
--<
--< @return
--< Append right vector to left scalar.
----------------------------------------------------------------------------
function "&" (left : in Vkm_Float ;
right : in Vkm_GenFType) return Vkm_GenFType is
(GFT.Make_GenType(left).Concatenate(right)) with Inline;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType concatenation operator.
--<
--< @description
--< Concatenate a Vkm_Float and a Vkm_GenFType vector.
--< vector := vector & scalar
--<
--< @param left
--< Parameter to the left of the '&' symbol.
--<
--< @param right
--< Parameter to the right of the '&' symbol.
--<
--< @return
--< Append right scalar to left vector.
----------------------------------------------------------------------------
function "&" (left : in Vkm_GenFType;
right : in Vkm_Float ) return Vkm_GenFType is
(left.Concatenate(GFT.Make_GenType(right))) with Inline;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType concatenation operator.
--<
--< @description
--< Concatenate two Vkm_Floats to form a Vkm_GenFType vector.
--< vector := scalar & scalar
--<
--< @param left
--< Parameter to the left of the '&' symbol.
--<
--< @param right
--< Parameter to the right of the '&' symbol.
--<
--< @return
--< Append right scalar to left scalar.
----------------------------------------------------------------------------
function "&" (left, right : in Vkm_Float ) return Vkm_GenFType is
(GFT.Make_GenType(left, right)) with Inline;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType unary plus operator.
--<
--< @description
--< Return the unmodified vector.
--< vector := +vector;
----------------------------------------------------------------------------
function "+" (instance : in Vkm_GenFType) return Vkm_GenFType renames GFT.Unary_Plus;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType unary minus operator.
--<
--< @description
--< Return the negation of the vector.
--< vector := -vector;
----------------------------------------------------------------------------
function "-" (instance : in Vkm_GenFType) return Vkm_GenFType renames GFT.Unary_Minus;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType multiplication operator.
--<
--< @description
--< Apply the multiplication operation component-wise on two vectors.
--< vector := vector * vector;
----------------------------------------------------------------------------
function "*" (left, right : in Vkm_GenFType) return Vkm_GenFType renames GFT.Componentwise_Multiply;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType multiplication operator.
--<
--< @description
--< Apply the multiplication operation component-wise on a vector and a scalar.
--< vector := vector * scalar;
----------------------------------------------------------------------------
function "*" (left : in Vkm_GenFType;
right : in Vkm_Float) return Vkm_GenFType renames GFT.Vector_By_Scalar_Multiply;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType multiplication operator.
--<
--< @description
--< Apply the multiplication operation component-wise on a vector and a scalar.
--< vector := scalar * vector;
----------------------------------------------------------------------------
function "*" is new GFT.Apply_Func_IS_IV_RV("*");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType absolute value operator.
--<
--< @description
--< Return the absolute value for each component of the vector.
--< vector := abs vector;
----------------------------------------------------------------------------
function "abs" is new GFT.Apply_Func_IV_RV("abs");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType modulo operator.
--<
--< @description
--< Return the component-wise modulo of the two vectors.
--< vector := vector mod vector;
----------------------------------------------------------------------------
function "mod" is new GFT.Apply_Func_IV_IV_RV("mod");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType modulo operator.
--<
--< @description
--< Return the component-wise modulo of a vector and a scalar.
--< vector := vector mod scalar;
----------------------------------------------------------------------------
function "mod" is new GFT.Apply_Func_IV_IS_RV("mod");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType modulo operator.
--<
--< @description
--< Return the component-wise modulo of a vector and a scalar.
--< vector := scalar mod vector;
----------------------------------------------------------------------------
function "mod" is new GFT.Apply_Func_IS_IV_RV("mod");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType power operator.
--<
--< @description
--< Apply the power operation component-wise on two vectors.
--< vector := vector ** vector;
----------------------------------------------------------------------------
function "**" is new GFT.Apply_Func_IV_IV_RV("**");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType power operator.
--<
--< @description
--< Apply the power operation component-wise on a vector and a scalar.
--< vector := vector ** scalar;
----------------------------------------------------------------------------
function "**" is new GFT.Apply_Func_IV_IS_RV("**");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType power operator.
--<
--< @description
--< Apply the power operation component-wise on a vector and a scalar.
--< vector := scalar ** vector;
----------------------------------------------------------------------------
function "**" is new GFT.Apply_Func_IS_IV_RV("**");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType addition operator.
--<
--< @description
--< Apply the additon operation component-wise on two vectors.
--< vector := vector + vector;
----------------------------------------------------------------------------
function "+" is new GFT.Apply_Func_IV_IV_RV("+");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType addition operator.
--<
--< @description
--< Apply the additon operation component-wise on a vector and a scalar.
--< vector := vector + scalar;
----------------------------------------------------------------------------
function "+" is new GFT.Apply_Func_IV_IS_RV("+");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType addition operator.
--<
--< @description
--< Apply the additon operation component-wise on a vector and a scalar.
--< vector := scalar + vector;
----------------------------------------------------------------------------
function "+" is new GFT.Apply_Func_IS_IV_RV("+");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType subtraction operator.
--<
--< @description
--< Apply the subtraction operation component-wise on two vectors.
--< vector := vector - vector;
----------------------------------------------------------------------------
function "-" is new GFT.Apply_Func_IV_IV_RV("-");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType subtraction operator.
--<
--< @description
--< Apply the subtraction operation component-wise on a vector and a scalar.
--< vector := vector - scalar;
----------------------------------------------------------------------------
function "-" is new GFT.Apply_Func_IV_IS_RV("-");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType subtraction operator.
--<
--< @description
--< Apply the subtraction operation component-wise on a vector and a scalar.
--< vector := scalar - vector;
----------------------------------------------------------------------------
function "-" is new GFT.Apply_Func_IS_IV_RV("-");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType remainder operator.
--<
--< @description
--< Calculate the remainder of division of left by right:
--< scalar := left rem right;
--<
--< @param left
--< The numerator in the division for which the remainder is returned.
--<
--< @param right
--< The denominator in the division for which the remainder is returned.
--<
--< @return
--< The remainder of left divided by right.
----------------------------------------------------------------------------
function "rem" (left, right : in Vkm_Float) return Vkm_Float renames Vkm_Float'Remainder;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType remainder operator.
--<
--< @description
--< Calculate the remainder of division of for two vectors.
--< vector := vector rem vector;
----------------------------------------------------------------------------
function "rem" is new GFT.Apply_Func_IV_IV_RV("rem");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType remainder operator.
--<
--< @description
--< Calculate the remainder of division of for a vector and a scalar.
--< vector := vector rem scalar;
----------------------------------------------------------------------------
function "rem" is new GFT.Apply_Func_IV_IS_RV("rem");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType remainder operator.
--<
--< @description
--< Calculate the remainder of division of for a vector and a scalar.
--< vector := scalar rem vector;
----------------------------------------------------------------------------
function "rem" is new GFT.Apply_Func_IS_IV_RV("rem");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType division operator.
--<
--< @description
--< Calculate the component-wise division of two vectors.
--< vector := vector / vector;
----------------------------------------------------------------------------
function "/" is new GFT.Apply_Func_IV_IV_RV("/");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType division operator.
--<
--< @description
--< Calculate the component-wise division of a vector and a scalar.
--< vector := vector / scalar;
----------------------------------------------------------------------------
function "/" is new GFT.Apply_Func_IV_IS_RV("/");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType division operator.
--<
--< @description
--< Calculate the component-wise division of a vector and a scalar.
--< vector := scalar / vector;
----------------------------------------------------------------------------
function "/" is new GFT.Apply_Func_IS_IV_RV("/");
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType less than operator.
--<
--< @description
--< Return the result of the component-wise less than operator on two vectors.
--< bool_vector := vector < vector;
----------------------------------------------------------------------------
function "<" (left, right : in Vkm_GenFType) return Vkm_GenBType;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType less than or equal to operator.
--<
--< @description
--< Return the result of the component-wise less than or equal to operator on
--< two vectors.
--< bool_vector := vector <= vector;
----------------------------------------------------------------------------
function "<=" (left, right : in Vkm_GenFType) return Vkm_GenBType;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType greater than operator.
--<
--< @description
--< Return the result of the component-wise greater than operator on
--< two vectors.
--< bool_vector := vector < vector;
----------------------------------------------------------------------------
function ">" (left, right : in Vkm_GenFType) return Vkm_GenBType;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType greater than or equal operator.
--<
--< @description
--< Return the result of the component-wise greater than or equal to operator
--< on two vectors.
--< bool_vector := vector < vector;
----------------------------------------------------------------------------
function ">=" (left, right : in Vkm_GenFType) return Vkm_GenBType;
----------------------------------------------------------------------------
--< @summary
--< Equality operator.
--<
--< @detailed
--< Whether two floating point vectors are equal.
--<
--< @param left, right
--< The vectors to compare
--<
--< @return Whether each component of the vectors is equal.
----------------------------------------------------------------------------
function "=" (left, right : in Vkm_GenFType) return Vkm_Bool renames GFT.Equals;
----------------------------------------------------------------------------
--< @summary
--< Vkm_GenFType inequality operator.
--<
--< @description
--< Return true if any component of the two vectors are not equal to each other.
--< Otherwise return false.
--< is_equal := vector /= vector;
--<
--< @param left
--< The left vector in the comparison.
--<
--< @param right
--< The right vector in the comparison.
--<
--< @return
--< Whether the two vectors are equal to each other.
----------------------------------------------------------------------------
function "/=" (left, right : in Vkm_GenFType) return Vkm_Bool is
(not (left = right)) with Inline;
end Vulkan.Math.GenFType;
|
with Ada.Exception_Identification.From_Here;
with Ada.Exceptions.Finally;
with Ada.Unchecked_Conversion;
with System.Address_To_Named_Access_Conversions;
with System.Storage_Map;
with System.System_Allocators;
with System.Zero_Terminated_WStrings;
with C.string;
with C.winternl;
package body System.Native_IO.Names is
use Ada.Exception_Identification.From_Here;
use type Storage_Elements.Storage_Offset;
use type C.char_array;
use type C.size_t;
use type C.winternl.NTSTATUS;
use type C.winnt.LPWSTR; -- Name_Pointer
use type C.winnt.WCHAR; -- Name_Character
use type C.winnt.WCHAR_array; -- Name_String
package Name_Pointer_Conv is
new Address_To_Named_Access_Conversions (
Name_Character,
Name_Pointer);
package POBJECT_NAME_INFORMATION_Conv is
new Address_To_Named_Access_Conversions (
C.winternl.struct_OBJECT_NAME_INFORMATION,
C.winternl.POBJECT_NAME_INFORMATION);
function "+" (Left : Name_Pointer; Right : C.ptrdiff_t)
return Name_Pointer
with Convention => Intrinsic;
pragma Inline_Always ("+");
function "+" (Left : Name_Pointer; Right : C.ptrdiff_t)
return Name_Pointer is
begin
return Name_Pointer_Conv.To_Pointer (
Name_Pointer_Conv.To_Address (Left)
+ Storage_Elements.Storage_Offset (Right)
* (Name_Character'Size / Standard'Storage_Unit));
end "+";
type NtQueryObject_Type is access function (
Handle : C.winnt.HANDLE;
ObjectInformationClass : C.winternl.OBJECT_INFORMATION_CLASS;
ObjectInformation : C.winnt.PVOID;
ObjectInformationLength : C.windef.ULONG;
ReturnLength : access C.windef.ULONG)
return C.winternl.NTSTATUS
with Convention => WINAPI;
NtQueryObject_Name : constant C.char_array (0 .. 13) :=
"NtQueryObject" & C.char'Val (0);
function To_NtQueryObject_Type is
new Ada.Unchecked_Conversion (C.windef.FARPROC, NtQueryObject_Type);
-- implementation
procedure Open_Ordinary (
Method : Open_Method;
Handle : aliased out Handle_Type;
Mode : File_Mode;
Name : String;
Out_Name : aliased out Name_Pointer;
Form : Packed_Form)
is
C_Name : aliased Name_String (
0 .. Name'Length * Zero_Terminated_WStrings.Expanding);
begin
Zero_Terminated_WStrings.To_C (Name, C_Name (0)'Access);
Open_Ordinary (Method, Handle, Mode, C_Name (0)'Unchecked_Access, Form);
Out_Name := null;
end Open_Ordinary;
procedure Get_Full_Name (
Handle : Handle_Type;
Has_Full_Name : in out Boolean;
Name : in out Name_Pointer;
Is_Standard : Boolean;
Raise_On_Error : Boolean)
is
procedure Finally (X : in out C.winnt.PVOID);
procedure Finally (X : in out C.winnt.PVOID) is
begin
System_Allocators.Free (Address (X));
end Finally;
package Holder is
new Ada.Exceptions.Finally.Scoped_Holder (C.winnt.PVOID, Finally);
NtQueryObject : constant NtQueryObject_Type :=
To_NtQueryObject_Type (
C.winbase.GetProcAddress (
Storage_Map.NTDLL,
NtQueryObject_Name (0)'Access));
Info : aliased C.winnt.PVOID := C.void_ptr (Null_Address);
ReturnLength : aliased C.windef.ULONG;
Unicode_Name : C.winternl.PUNICODE_STRING;
New_Name : Name_Pointer;
Drives : aliased Name_String (0 .. 3 * 26); -- (A to Z) * "X:\"
Drive : Name_String (0 .. 2); -- "X:"
New_Name_Length : C.size_t;
Relative_Index : C.size_t;
Skip_Length : C.size_t;
begin
if NtQueryObject = null then
-- Failed, keep Has_Full_Name and Name.
if Raise_On_Error then
raise Program_Error; -- ??
end if;
return; -- error
end if;
-- Get ObjectNameInformation.
Holder.Assign (Info);
Info := C.winnt.PVOID (System_Allocators.Allocate (4096));
if Address (Info) = Null_Address then
-- Failed, keep Has_Full_Name and Name.
if Raise_On_Error then
raise Storage_Error;
end if;
return; -- error
end if;
if NtQueryObject (
Handle,
C.winternl.ObjectNameInformation,
Info,
4096,
ReturnLength'Access) /= 0 -- STATUS_SUCCESS
then
declare
New_Info : constant C.winnt.PVOID :=
C.winnt.PVOID (
System_Allocators.Reallocate (
Address (Info),
Storage_Elements.Storage_Offset (ReturnLength)));
begin
if Address (New_Info) = Null_Address then
-- Failed, keep Has_Full_Name and Name.
if Raise_On_Error then
raise Storage_Error;
end if;
return; -- error
end if;
Info := New_Info;
end;
if NtQueryObject (
Handle,
C.winternl.ObjectNameInformation,
Info,
ReturnLength,
null) /= 0 -- STATUS_SUCCESS
then
-- Failed, keep Has_Full_Name and Name.
if Raise_On_Error then
Raise_Exception (Use_Error'Identity);
end if;
return; -- error
end if;
end if;
Unicode_Name :=
POBJECT_NAME_INFORMATION_Conv.To_Pointer (Address (Info)).Name'Access;
-- To DOS name.
if C.winbase.GetLogicalDriveStrings (Drives'Length, Drives (0)'Access) >=
Drives'Length
then
-- Failed, keep Has_Full_Name and Name.
if Raise_On_Error then
Raise_Exception (Use_Error'Identity);
end if;
return; -- error
end if;
Drive (1) := Name_Character'Val (Character'Pos (':'));
Drive (2) := Name_Character'Val (0);
Skip_Length := 0;
Relative_Index := 0;
New_Name_Length := C.size_t (Unicode_Name.Length);
declare
Unicode_Name_All : Name_String (
0 .. C.size_t (Unicode_Name.Length) - 1);
for Unicode_Name_All'Address use
Name_Pointer_Conv.To_Address (Unicode_Name.Buffer);
P : Name_Pointer := Drives (0)'Unchecked_Access;
begin
while P.all /= Name_Character'Val (0) loop
declare
Length : constant C.size_t := C.string.wcslen (P);
Long_Name : aliased Name_String (0 .. C.windef.MAX_PATH - 1);
begin
if Length > 0 then
Drive (0) := P.all; -- drop trailing '\'
if C.winbase.QueryDosDevice (
Drive (0)'Access,
Long_Name (0)'Access,
C.windef.MAX_PATH) /= 0
then
declare
Long_Name_Length : C.size_t := 0;
begin
while Long_Name (Long_Name_Length) /=
Name_Character'Val (0)
loop
if Long_Name (Long_Name_Length) =
Name_Character'Val (Character'Pos (';'))
then
-- Skip ";X:\" (Is it a bug of VirtualBox?)
Long_Name (
Long_Name_Length .. Long_Name'Last - 4) :=
Long_Name (
Long_Name_Length + 4 .. Long_Name'Last);
end if;
Long_Name_Length := Long_Name_Length + 1;
end loop;
if Long_Name (0 .. Long_Name_Length - 1) =
Unicode_Name_All (0 .. Long_Name_Length - 1)
and then Unicode_Name_All (Long_Name_Length) =
Name_Character'Val (Character'Pos ('\'))
then
Skip_Length := Long_Name_Length;
Relative_Index := 2;
New_Name_Length :=
New_Name_Length - Skip_Length + 2;
exit;
end if;
end;
end if;
end if;
P := P + C.ptrdiff_t (Length);
end;
P := P + 1; -- skip NUL
end loop;
if Relative_Index = 0
and then Unicode_Name_All (1) /=
Name_Character'Val (Character'Pos (':'))
and then (
Unicode_Name_All (0) /= Name_Character'Val (Character'Pos ('\'))
or else Unicode_Name_All (1) /=
Name_Character'Val (Character'Pos ('\')))
then
-- For example, a pipe's name is like "pipe:[N]".
Drive (0) := Name_Character'Val (Character'Pos ('*'));
Relative_Index := 1;
New_Name_Length := New_Name_Length + 1;
end if;
end;
-- Copy a name.
New_Name :=
Name_Pointer_Conv.To_Pointer (
System_Allocators.Allocate (
(Storage_Elements.Storage_Offset (New_Name_Length) + 1)
* (Name_Character'Size / Standard'Storage_Unit)));
if New_Name = null then
-- Failed, keep Has_Full_Name and Name.
if Raise_On_Error then
raise Storage_Error;
end if;
return; -- error
end if;
declare
Unicode_Name_All : Name_String (
0 .. C.size_t (Unicode_Name.Length) - 1);
for Unicode_Name_All'Address use
Name_Pointer_Conv.To_Address (Unicode_Name.Buffer);
New_Name_All : Name_String (0 .. New_Name_Length); -- NUL
for New_Name_All'Address use Name_Pointer_Conv.To_Address (New_Name);
begin
if Relative_Index > 0 then
New_Name_All (0 .. Relative_Index - 1) :=
Drive (0 .. Relative_Index - 1);
end if;
New_Name_All (Relative_Index .. New_Name_Length - 1) :=
Unicode_Name_All (
Skip_Length .. C.size_t (Unicode_Name.Length) - 1);
New_Name_All (New_Name_Length) := Name_Character'Val (0);
end;
-- Succeeded.
if not Is_Standard then
Free (Name); -- External or External_No_Close
end if;
Name := New_Name;
Has_Full_Name := True;
end Get_Full_Name;
end System.Native_IO.Names;
|
package with_dot_issue.sub is
--begin
Bytes_In_Word : constant := 2;
end with_dot_issue.sub;
|
package DDS.Request_Reply is
type Ref is limited interface;
type Ref_Access is access all Ref'Class;
procedure Log_Exception (Self : not null access Ref; Log : Standard.String) is null;
end DDS.Request_Reply;
|
package body UxAS.Comms.Transport.Receiver is
------------------------------
-- Add_Subscription_Address --
------------------------------
procedure Add_Subscription_Address
(This : in out Transport_Receiver_Base;
Address : String;
Result : out Boolean)
is
Target : constant Subscription_Address := Instance (Subscription_Address_Max_Length, Address);
use Subscription_Addresses; -- a hashed map
C : Cursor;
begin
C := Find (This.Subscriptions, Target);
if C = No_Element then -- didn't find it
Insert (This.Subscriptions, Target);
Add_Subscription_Address_To_Socket (Transport_Receiver_Base'Class (This), Address, Result); -- dispatching
end if;
end Add_Subscription_Address;
---------------------------------
-- Remove_Subscription_Address --
---------------------------------
procedure Remove_Subscription_Address
(This : in out Transport_Receiver_Base;
Address : String;
Result : out Boolean)
is
Target : constant Subscription_Address := Instance (Subscription_Address_Max_Length, Address);
use Subscription_Addresses; -- a hashed map
C : Cursor;
begin
C := Find (This.Subscriptions, Target);
if C /= No_Element then -- found it
Delete (This.Subscriptions, C);
Remove_Subscription_Address_From_Socket (Transport_Receiver_Base'Class (This), Address, Result); -- dispatching
end if;
end Remove_Subscription_Address;
---------------------------------------
-- Remove_All_Subscription_Addresses --
---------------------------------------
procedure Remove_All_Subscription_Addresses
(This : in out Transport_Receiver_Base;
Result : out Boolean)
is
begin
for Target of This.Subscriptions loop
Remove_Subscription_Address_From_Socket (Transport_Receiver_Base'Class (This), Value (Target), Result); -- dispatching
end loop;
Subscription_Addresses.Clear (This.Subscriptions);
Result := Subscription_Addresses.Is_Empty (This.Subscriptions);
end Remove_All_Subscription_Addresses;
end UxAS.Comms.Transport.Receiver;
|
------------------------------------------------------------------------------
-- --
-- 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.Final_States.Hash is
new AMF.Elements.Generic_Hash (UML_Final_State, UML_Final_State_Access);
|
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|
-- This spec has been automatically generated from STM32L0x1.svd
pragma Restrictions (No_Elaboration_Code);
pragma Ada_2012;
pragma Style_Checks (Off);
with System;
package STM32_SVD.MPU is
pragma Preelaborate;
---------------
-- Registers --
---------------
-- MPU type register
type MPU_TYPER_Register is record
-- Read-only. Separate flag
SEPARATE_k : STM32_SVD.Bit;
-- unspecified
Reserved_1_7 : STM32_SVD.UInt7;
-- Read-only. Number of MPU data regions
DREGION : STM32_SVD.Byte;
-- Read-only. Number of MPU instruction regions
IREGION : STM32_SVD.Byte;
-- unspecified
Reserved_24_31 : STM32_SVD.Byte;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for MPU_TYPER_Register use record
SEPARATE_k at 0 range 0 .. 0;
Reserved_1_7 at 0 range 1 .. 7;
DREGION at 0 range 8 .. 15;
IREGION at 0 range 16 .. 23;
Reserved_24_31 at 0 range 24 .. 31;
end record;
-- MPU control register
type MPU_CTRL_Register is record
-- Read-only. Enables the MPU
ENABLE : STM32_SVD.Bit;
-- Read-only. Enables the operation of MPU during hard fault
HFNMIENA : STM32_SVD.Bit;
-- Read-only. Enable priviliged software access to default memory map
PRIVDEFENA : STM32_SVD.Bit;
-- unspecified
Reserved_3_31 : STM32_SVD.UInt29;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for MPU_CTRL_Register use record
ENABLE at 0 range 0 .. 0;
HFNMIENA at 0 range 1 .. 1;
PRIVDEFENA at 0 range 2 .. 2;
Reserved_3_31 at 0 range 3 .. 31;
end record;
-- MPU region number register
type MPU_RNR_Register is record
-- MPU region
REGION : STM32_SVD.Byte;
-- unspecified
Reserved_8_31 : STM32_SVD.UInt24;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for MPU_RNR_Register use record
REGION at 0 range 0 .. 7;
Reserved_8_31 at 0 range 8 .. 31;
end record;
-- MPU region base address register
type MPU_RBAR_Register is record
-- MPU region field
REGION : STM32_SVD.UInt4;
-- MPU region number valid
VALID : STM32_SVD.Bit;
-- Region base address field
ADDR : STM32_SVD.UInt27;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for MPU_RBAR_Register use record
REGION at 0 range 0 .. 3;
VALID at 0 range 4 .. 4;
ADDR at 0 range 5 .. 31;
end record;
-- MPU region attribute and size register
type MPU_RASR_Register is record
-- Region enable bit.
ENABLE : STM32_SVD.Bit;
-- Size of the MPU protection region
SIZE : STM32_SVD.UInt5;
-- unspecified
Reserved_6_7 : STM32_SVD.UInt2;
-- Subregion disable bits
SRD : STM32_SVD.Byte;
-- memory attribute
B : STM32_SVD.Bit;
-- memory attribute
C : STM32_SVD.Bit;
-- Shareable memory attribute
S : STM32_SVD.Bit;
-- memory attribute
TEX : STM32_SVD.UInt3;
-- unspecified
Reserved_22_23 : STM32_SVD.UInt2;
-- Access permission
AP : STM32_SVD.UInt3;
-- unspecified
Reserved_27_27 : STM32_SVD.Bit;
-- Instruction access disable bit
XN : STM32_SVD.Bit;
-- unspecified
Reserved_29_31 : STM32_SVD.UInt3;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for MPU_RASR_Register use record
ENABLE at 0 range 0 .. 0;
SIZE at 0 range 1 .. 5;
Reserved_6_7 at 0 range 6 .. 7;
SRD at 0 range 8 .. 15;
B at 0 range 16 .. 16;
C at 0 range 17 .. 17;
S at 0 range 18 .. 18;
TEX at 0 range 19 .. 21;
Reserved_22_23 at 0 range 22 .. 23;
AP at 0 range 24 .. 26;
Reserved_27_27 at 0 range 27 .. 27;
XN at 0 range 28 .. 28;
Reserved_29_31 at 0 range 29 .. 31;
end record;
-----------------
-- Peripherals --
-----------------
-- Memory protection unit
type MPU_Peripheral is record
-- MPU type register
MPU_TYPER : aliased MPU_TYPER_Register;
-- MPU control register
MPU_CTRL : aliased MPU_CTRL_Register;
-- MPU region number register
MPU_RNR : aliased MPU_RNR_Register;
-- MPU region base address register
MPU_RBAR : aliased MPU_RBAR_Register;
-- MPU region attribute and size register
MPU_RASR : aliased MPU_RASR_Register;
end record
with Volatile;
for MPU_Peripheral use record
MPU_TYPER at 16#0# range 0 .. 31;
MPU_CTRL at 16#4# range 0 .. 31;
MPU_RNR at 16#8# range 0 .. 31;
MPU_RBAR at 16#C# range 0 .. 31;
MPU_RASR at 16#10# range 0 .. 31;
end record;
-- Memory protection unit
MPU_Periph : aliased MPU_Peripheral
with Import, Address => MPU_Base;
end STM32_SVD.MPU;
|
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.Containers.Vectors;
with Ada.Finalization;
with GNAT.Strings;
-- https://adventofcode.com/2020/day/2
-- ==========================================================================
-- --- Day 2: Password Philosophy ---
--
-- Your flight departs in a few days from the coastal airport;
-- the easiest way down to the coast from here is via toboggan.
--
-- The shopkeeper at the North Pole Toboggan Rental Shop is having a bad day.
-- "Something's wrong with our computers; we can't log in!" You ask if you can take a look.
--
-- Their password database seems to be a little corrupted: some of the passwords
-- wouldn't have been allowed by the Official Toboggan Corporate Policy that was in effect when they were chosen.
--
-- To try to debug the problem, they have created a list (your puzzle input)
-- of passwords (according to the corrupted database) and the corporate policy when that password was set.
--
-- For example, suppose you have the following list:
--
-- 1-3 a: abcde
-- 1-3 b: cdefg
-- 2-9 c: ccccccccc
--
-- Each line gives the password policy and then the password.
-- The password policy indicates the lowest and highest number of times a given letter
-- must appear for the password to be valid.
-- For example, 1-3 a means that the password must contain a at least 1 time and at most 3 times.
--
-- In the above example, 2 passwords are valid.
-- The middle password, cdefg, is not;
-- it contains no instances of b, but needs at least 1.
-- The first and third passwords are valid: they contain one a or nine c,
-- both within the limits of their respective policies.
--
-- How many passwords are valid according to their policies?
-- ==========================================================================
--- Part Two ---
-- While it appears you validated the passwords correctly,
-- they don't seem to be what the Official Toboggan Corporate Authentication System is expecting.
--
-- The shopkeeper suddenly realizes that he just accidentally explained the password policy rules
-- from his old job at the sled rental place down the street!
-- The Official Toboggan Corporate Policy actually works a little differently.
--
-- Each policy actually describes two positions in the password,
-- where 1 means the first character,
-- 2 means the second character, and so on.
-- (Be careful; Toboggan Corporate Policies have no concept of "index zero"!)
-- Exactly one of these positions must contain the given letter.
-- Other occurrences of the letter are irrelevant for the purposes of policy enforcement.
--
-- Given the same example list from above:
--
-- 1-3 a: abcde is valid: position 1 contains a and position 3 does not.
-- 1-3 b: cdefg is invalid: neither position 1 nor position 3 contains b.
-- 2-9 c: ccccccccc is invalid: both position 2 and position 9 contain c.
package Adventofcode.Day_2 is
use type GNAT.Strings.String_Access;
type Password_Entry is new Ada.Finalization.Controlled with record
Min, Max : Natural;
Key : Character;
Password : GNAT.Strings.String_Access;
end record;
function Image (Self : Password_Entry) return String is
("Min => " & Self.Min'Img &
", Max => " & Self.Max'Img &
", Key => '" & Self.Key & "'" &
", Password => " & (if Self.Password = null then "<null>" else '"' & Self.Password.all & '"'));
overriding procedure Finalize (Object : in out Password_Entry);
overriding procedure Adjust (Object : in out Password_Entry);
function Valid (Self : Password_Entry) return Boolean;
function Valid2 (Self : Password_Entry) return Boolean;
function Parse (Line : String) return Password_Entry;
package Password_Entrys is new Ada.Containers.Vectors (Natural, Password_Entry);
end Adventofcode.Day_2;
|
--
-- No description provided (generated by Openapi Generator https://github.com/openapitools/openapi-generator)
--
-- The version of the OpenAPI document: 20220523
--
--
-- NOTE: This package is auto generated by OpenAPI-Generator 5.4.0.
-- https://openapi-generator.tech
-- Do not edit the class manually.
package body .Models is
pragma Style_Checks ("-mr");
pragma Warnings (Off, "*use clause for package*");
use Swagger.Streams;
end .Models;
|
-- Copyright 2013-2019 Free Software Foundation, Inc.
--
-- This program is free software; you can redistribute it and/or modify
-- it under the terms of the GNU General Public License as published by
-- the Free Software Foundation; either version 3 of the License, or
-- (at your option) any later version.
--
-- This program is distributed in the hope that it will be useful,
-- but WITHOUT ANY WARRANTY; without even the implied warranty of
-- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
-- GNU General Public License for more details.
--
-- You should have received a copy of the GNU General Public License
-- along with this program. If not, see <http://www.gnu.org/licenses/>.
with Caller; use Caller;
procedure Foo is
Num : Float := 99.0;
begin
Verbose_Increment (Num, "Foo");
end Foo;
|
-----------------------------------------------------------------------
-- swagger-tests -- Unit tests for REST clients
-- Copyright (C) 2018, 2020, 2021 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.Log.Loggers;
with Util.Test_Caller;
with Swagger.Clients;
with Ada.Text_IO;
with TestAPI.Models;
package body Swagger.Tests is
Log : constant Util.Log.Loggers.Logger := Util.Log.Loggers.Create ("Swagger.Tests");
package Caller is new Util.Test_Caller (Test, "Swagger.Tests");
procedure Add_Tests (Suite : in Util.Tests.Access_Test_Suite) is
begin
Caller.Add_Test (Suite, "Test unauthorized access",
Test_Unauthorized'Access);
Caller.Add_Test (Suite, "Test authorized access",
Test_Authorized'Access);
end Add_Tests;
overriding
procedure Set_Up (T : in out Test) is
begin
T.Server := To_UString (Util.Tests.Get_Parameter ("testapi.url"));
end Set_Up;
procedure Configure (T : in out Test;
Client : in out TestAPI.Clients.Client_Type) is
begin
Client.Set_Server (To_String (T.Server));
Client.Set_Server (Util.Tests.Get_Parameter ("testapi.url"));
end Configure;
procedure Authenticate (T : in out Test;
Cred : in out Swagger.Credentials.OAuth.OAuth2_Credential_Type) is
Username : constant String := Util.Tests.Get_Parameter ("testapi.username");
Password : constant String := Util.Tests.Get_Parameter ("testapi.password");
Client_Id : constant String := Util.Tests.Get_Parameter ("testapi.client_id");
Client_Sec : constant String := Util.Tests.Get_Parameter ("testapi.client_secret");
begin
Cred.Set_Application_Identifier (Client_Id);
Cred.Set_Application_Secret (Client_Sec);
Cred.Set_Provider_URI (To_String (T.Server) & "/oauth/token");
Cred.Request_Token (Username, Password, "read-ticket,write-ticket");
end Authenticate;
-- ------------------------------
-- Test unauthorized operations.
-- ------------------------------
procedure Test_Unauthorized (T : in out Test) is
Client : TestAPI.Clients.Client_Type;
Empty : Nullable_UString;
begin
T.Configure (Client);
Client.Do_Create_Ticket (To_UString ("test"), Empty, Empty, Empty);
T.Fail ("No authorization error exception was raised");
exception
when Swagger.Clients.Authorization_Error =>
null;
end Test_Unauthorized;
-- ------------------------------
-- Test authorized operations.
-- ------------------------------
procedure Test_Authorized (T : in out Test) is
Client : TestAPI.Clients.Client_Type;
Empty : Nullable_UString;
Cred : aliased Swagger.Credentials.OAuth.OAuth2_Credential_Type;
List : TestAPI.Models.Ticket_Type_Vectors.Vector;
Count : Natural;
T2 : TestAPI.Models.Ticket_Type;
begin
T.Configure (Client);
T.Authenticate (Cred);
Client.Set_Credentials (Cred'Unchecked_Access);
Client.Do_Create_Ticket (To_UString ("test"), Empty, Empty, Empty);
Util.Tests.Assert_Equals (T, 201, Client.Get_Status, "Invalid response status");
Ada.Text_IO.Put_Line (Client.Get_Header ("Location"));
Client.Do_List_Tickets (Empty, Empty, List);
Util.Tests.Assert_Equals (T, 200, Client.Get_Status, "Invalid response status");
Client.Do_Head_Ticket;
Util.Tests.Assert_Equals (T, 200, Client.Get_Status, "Invalid response status");
for Ticket of List loop
Log.Info ("Ticket {0} - {1}", To_String (Ticket.Title), To_String (Ticket.Status));
Client.Do_Patch_Ticket (Tid => Ticket.Id,
Owner => Ticket.Owner,
Status => (Is_Null => False,
Value => To_UString ("assigned")),
Title => (Is_Null => True,
Value => <>),
Description => (Is_Null => False,
Value => To_UString ("patch")),
Result => Ticket);
Util.Tests.Assert_Equals (T, 200, Client.Get_Status, "Invalid response status");
Client.Do_Update_Ticket (Tid => Ticket.Id,
Owner => Ticket.Owner,
Status => (Is_Null => False,
Value => To_UString ("closed")),
Title => (Is_Null => True,
Value => <>),
Description => (Is_Null => False,
Value => To_UString ("ok")),
Result => Ticket);
Util.Tests.Assert_Equals (T, 200, Client.Get_Status, "Invalid response status");
Util.Tests.Assert_Equals (T, "closed", To_String (Ticket.Status),
"Invalid status after Update_Ticket");
Util.Tests.Assert_Equals (T, "ok", To_String (Ticket.Description),
"Invalid description after Update_Ticket");
Client.Do_Get_Ticket (Tid => Ticket.Id,
Result => T2);
Util.Tests.Assert_Equals (T, 200, Client.Get_Status, "Invalid response status");
Client.Do_Options_Ticket (Tid => Ticket.Id,
Result => T2);
Util.Tests.Assert_Equals (T, 200, Client.Get_Status, "Invalid response status");
end loop;
Count := Natural (List.Length);
Log.Info ("Number of tickets{0}", Natural'Image (Count));
Client.Do_List_Tickets (Empty, Empty, List);
Util.Tests.Assert_Equals (T, 200, Client.Get_Status, "Invalid response status");
Count := Natural (List.Length);
Log.Info ("Number of tickets{0}", Natural'Image (Count));
-- Delete each ticket, doing a DELETE operation.
for Ticket of List loop
Client.Do_Delete_Ticket (Tid => Ticket.Id);
Util.Tests.Assert_Equals (T, 204, Client.Get_Status, "Invalid response status");
end loop;
Client.Do_List_Tickets (Empty, Empty, List);
Util.Tests.Assert_Equals (T, 200, Client.Get_Status, "Invalid response status");
Count := Natural (List.Length);
Util.Tests.Assert_Equals (T, 0, Count, "The ticket list was not cleared");
end Test_Authorized;
end Swagger.Tests;
|
-- SPDX-FileCopyrightText: 2019 Max Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-------------------------------------------------------------
with Program.Lexical_Elements;
with Program.Elements.Defining_Identifiers;
with Program.Elements.Aspect_Specifications;
with Program.Elements.Expressions;
with Program.Elements.Task_Definitions;
with Program.Elements.Single_Task_Declarations;
with Program.Element_Visitors;
package Program.Nodes.Single_Task_Declarations is
pragma Preelaborate;
type Single_Task_Declaration is
new Program.Nodes.Node
and Program.Elements.Single_Task_Declarations.Single_Task_Declaration
and Program.Elements.Single_Task_Declarations
.Single_Task_Declaration_Text
with private;
function Create
(Task_Token : not null Program.Lexical_Elements
.Lexical_Element_Access;
Name : not null Program.Elements.Defining_Identifiers
.Defining_Identifier_Access;
With_Token : Program.Lexical_Elements.Lexical_Element_Access;
Aspects : Program.Elements.Aspect_Specifications
.Aspect_Specification_Vector_Access;
Is_Token : not null Program.Lexical_Elements
.Lexical_Element_Access;
New_Token : Program.Lexical_Elements.Lexical_Element_Access;
Progenitors : Program.Elements.Expressions.Expression_Vector_Access;
With_Token_2 : Program.Lexical_Elements.Lexical_Element_Access;
Definition : not null Program.Elements.Task_Definitions
.Task_Definition_Access;
Semicolon_Token : not null Program.Lexical_Elements
.Lexical_Element_Access)
return Single_Task_Declaration;
type Implicit_Single_Task_Declaration is
new Program.Nodes.Node
and Program.Elements.Single_Task_Declarations.Single_Task_Declaration
with private;
function Create
(Name : not null Program.Elements.Defining_Identifiers
.Defining_Identifier_Access;
Aspects : Program.Elements.Aspect_Specifications
.Aspect_Specification_Vector_Access;
Progenitors : Program.Elements.Expressions
.Expression_Vector_Access;
Definition : not null Program.Elements.Task_Definitions
.Task_Definition_Access;
Is_Part_Of_Implicit : Boolean := False;
Is_Part_Of_Inherited : Boolean := False;
Is_Part_Of_Instance : Boolean := False)
return Implicit_Single_Task_Declaration
with Pre =>
Is_Part_Of_Implicit or Is_Part_Of_Inherited or Is_Part_Of_Instance;
private
type Base_Single_Task_Declaration is
abstract new Program.Nodes.Node
and Program.Elements.Single_Task_Declarations.Single_Task_Declaration
with record
Name : not null Program.Elements.Defining_Identifiers
.Defining_Identifier_Access;
Aspects : Program.Elements.Aspect_Specifications
.Aspect_Specification_Vector_Access;
Progenitors : Program.Elements.Expressions.Expression_Vector_Access;
Definition : not null Program.Elements.Task_Definitions
.Task_Definition_Access;
end record;
procedure Initialize (Self : in out Base_Single_Task_Declaration'Class);
overriding procedure Visit
(Self : not null access Base_Single_Task_Declaration;
Visitor : in out Program.Element_Visitors.Element_Visitor'Class);
overriding function Name
(Self : Base_Single_Task_Declaration)
return not null Program.Elements.Defining_Identifiers
.Defining_Identifier_Access;
overriding function Aspects
(Self : Base_Single_Task_Declaration)
return Program.Elements.Aspect_Specifications
.Aspect_Specification_Vector_Access;
overriding function Progenitors
(Self : Base_Single_Task_Declaration)
return Program.Elements.Expressions.Expression_Vector_Access;
overriding function Definition
(Self : Base_Single_Task_Declaration)
return not null Program.Elements.Task_Definitions.Task_Definition_Access;
overriding function Is_Single_Task_Declaration
(Self : Base_Single_Task_Declaration)
return Boolean;
overriding function Is_Declaration
(Self : Base_Single_Task_Declaration)
return Boolean;
type Single_Task_Declaration is
new Base_Single_Task_Declaration
and Program.Elements.Single_Task_Declarations
.Single_Task_Declaration_Text
with record
Task_Token : not null Program.Lexical_Elements
.Lexical_Element_Access;
With_Token : Program.Lexical_Elements.Lexical_Element_Access;
Is_Token : not null Program.Lexical_Elements
.Lexical_Element_Access;
New_Token : Program.Lexical_Elements.Lexical_Element_Access;
With_Token_2 : Program.Lexical_Elements.Lexical_Element_Access;
Semicolon_Token : not null Program.Lexical_Elements
.Lexical_Element_Access;
end record;
overriding function To_Single_Task_Declaration_Text
(Self : in out Single_Task_Declaration)
return Program.Elements.Single_Task_Declarations
.Single_Task_Declaration_Text_Access;
overriding function Task_Token
(Self : Single_Task_Declaration)
return not null Program.Lexical_Elements.Lexical_Element_Access;
overriding function With_Token
(Self : Single_Task_Declaration)
return Program.Lexical_Elements.Lexical_Element_Access;
overriding function Is_Token
(Self : Single_Task_Declaration)
return not null Program.Lexical_Elements.Lexical_Element_Access;
overriding function New_Token
(Self : Single_Task_Declaration)
return Program.Lexical_Elements.Lexical_Element_Access;
overriding function With_Token_2
(Self : Single_Task_Declaration)
return Program.Lexical_Elements.Lexical_Element_Access;
overriding function Semicolon_Token
(Self : Single_Task_Declaration)
return not null Program.Lexical_Elements.Lexical_Element_Access;
type Implicit_Single_Task_Declaration is
new Base_Single_Task_Declaration
with record
Is_Part_Of_Implicit : Boolean;
Is_Part_Of_Inherited : Boolean;
Is_Part_Of_Instance : Boolean;
end record;
overriding function To_Single_Task_Declaration_Text
(Self : in out Implicit_Single_Task_Declaration)
return Program.Elements.Single_Task_Declarations
.Single_Task_Declaration_Text_Access;
overriding function Is_Part_Of_Implicit
(Self : Implicit_Single_Task_Declaration)
return Boolean;
overriding function Is_Part_Of_Inherited
(Self : Implicit_Single_Task_Declaration)
return Boolean;
overriding function Is_Part_Of_Instance
(Self : Implicit_Single_Task_Declaration)
return Boolean;
end Program.Nodes.Single_Task_Declarations;
|
-- 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 League.Strings;
with Google.Protobuf.Compiler.Plugin;
with Google.Protobuf.Descriptor;
with PB_Support.Stdio_Streams;
with Compiler.Context;
with Compiler.File_Descriptors;
procedure Compiler.Run is
Stream : aliased PB_Support.Stdio_Streams.Stdio_Stream;
Request : Google.Protobuf.Compiler.Plugin.Code_Generator_Request;
Result : Google.Protobuf.Compiler.Plugin.Code_Generator_Response;
begin
Google.Protobuf.Compiler.Plugin.Code_Generator_Request'Read
(Stream'Unchecked_Access, Request);
Compiler.Context.Populate_Named_Types
(Request, Compiler.Context.Named_Types);
for J in 1 .. Request.File_To_Generate.Length loop
declare
use type League.Strings.Universal_String;
Name : constant League.Strings.Universal_String :=
Request.File_To_Generate.Element (J);
File : constant Google.Protobuf.Descriptor.File_Descriptor_Proto :=
Compiler.Context.Get_File (Request, Name);
Base : constant League.Strings.Universal_String :=
Compiler.File_Descriptors.File_Name (File);
begin
Compiler.Context.Fake.Clear;
declare
Item : Google.Protobuf.Compiler.Plugin.File;
begin
Item.Name := (True, Base & ".ads");
Item.Content :=
(Is_Set => True,
Value => Compiler.File_Descriptors.Specification_Text
(File, Request));
Result.File.Append (Item);
end;
if File.Message_Type.Length > 0 then
declare
Item : Google.Protobuf.Compiler.Plugin.File;
begin
Item.Name := (True, Base & ".adb");
Item.Content :=
(Is_Set => True,
Value => Compiler.File_Descriptors.Body_Text (File));
Result.File.Append (Item);
end;
end if;
end;
end loop;
Google.Protobuf.Compiler.Plugin.Code_Generator_Response'Write
(Stream'Unchecked_Access, Result);
end Compiler.Run;
|
-- Copyright (c) 2010 - 2018, Nordic Semiconductor ASA
--
-- All rights reserved.
--
-- 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, except as embedded into a Nordic
-- Semiconductor ASA integrated circuit in a product or a software update for
-- such product, 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 Nordic Semiconductor ASA nor the names of its
-- contributors may be used to endorse or promote products derived from this
-- software without specific prior written permission.
--
-- 4. This software, with or without modification, must only be used with a
-- Nordic Semiconductor ASA integrated circuit.
--
-- 5. Any software provided in binary form under this license must not be reverse
-- engineered, decompiled, modified and/or disassembled.
--
-- THIS SOFTWARE IS PROVIDED BY NORDIC SEMICONDUCTOR ASA "AS IS" AND ANY EXPRESS
-- OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
-- OF MERCHANTABILITY, NONINFRINGEMENT, AND FITNESS FOR A PARTICULAR PURPOSE ARE
-- DISCLAIMED. IN NO EVENT SHALL NORDIC SEMICONDUCTOR ASA OR CONTRIBUTORS BE
-- LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
-- CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
-- GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
-- HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
-- LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
-- OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
--
-- This spec has been automatically generated from nrf52.svd
pragma Restrictions (No_Elaboration_Code);
pragma Ada_2012;
pragma Style_Checks (Off);
with HAL;
with System;
package NRF_SVD.POWER is
pragma Preelaborate;
---------------
-- Registers --
---------------
-- Write '1' to Enable interrupt for POFWARN event
type INTENSET_POFWARN_Field is
(-- Read: Disabled
Disabled,
-- Read: Enabled
Enabled)
with Size => 1;
for INTENSET_POFWARN_Field use
(Disabled => 0,
Enabled => 1);
-- Write '1' to Enable interrupt for POFWARN event
type INTENSET_POFWARN_Field_1 is
(-- Reset value for the field
Intenset_Pofwarn_Field_Reset,
-- Enable
Set)
with Size => 1;
for INTENSET_POFWARN_Field_1 use
(Intenset_Pofwarn_Field_Reset => 0,
Set => 1);
-- Write '1' to Enable interrupt for SLEEPENTER event
type INTENSET_SLEEPENTER_Field is
(-- Read: Disabled
Disabled,
-- Read: Enabled
Enabled)
with Size => 1;
for INTENSET_SLEEPENTER_Field use
(Disabled => 0,
Enabled => 1);
-- Write '1' to Enable interrupt for SLEEPENTER event
type INTENSET_SLEEPENTER_Field_1 is
(-- Reset value for the field
Intenset_Sleepenter_Field_Reset,
-- Enable
Set)
with Size => 1;
for INTENSET_SLEEPENTER_Field_1 use
(Intenset_Sleepenter_Field_Reset => 0,
Set => 1);
-- Write '1' to Enable interrupt for SLEEPEXIT event
type INTENSET_SLEEPEXIT_Field is
(-- Read: Disabled
Disabled,
-- Read: Enabled
Enabled)
with Size => 1;
for INTENSET_SLEEPEXIT_Field use
(Disabled => 0,
Enabled => 1);
-- Write '1' to Enable interrupt for SLEEPEXIT event
type INTENSET_SLEEPEXIT_Field_1 is
(-- Reset value for the field
Intenset_Sleepexit_Field_Reset,
-- Enable
Set)
with Size => 1;
for INTENSET_SLEEPEXIT_Field_1 use
(Intenset_Sleepexit_Field_Reset => 0,
Set => 1);
-- Enable interrupt
type INTENSET_Register is record
-- unspecified
Reserved_0_1 : HAL.UInt2 := 16#0#;
-- Write '1' to Enable interrupt for POFWARN event
POFWARN : INTENSET_POFWARN_Field_1 :=
Intenset_Pofwarn_Field_Reset;
-- unspecified
Reserved_3_4 : HAL.UInt2 := 16#0#;
-- Write '1' to Enable interrupt for SLEEPENTER event
SLEEPENTER : INTENSET_SLEEPENTER_Field_1 :=
Intenset_Sleepenter_Field_Reset;
-- Write '1' to Enable interrupt for SLEEPEXIT event
SLEEPEXIT : INTENSET_SLEEPEXIT_Field_1 :=
Intenset_Sleepexit_Field_Reset;
-- unspecified
Reserved_7_31 : HAL.UInt25 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for INTENSET_Register use record
Reserved_0_1 at 0 range 0 .. 1;
POFWARN at 0 range 2 .. 2;
Reserved_3_4 at 0 range 3 .. 4;
SLEEPENTER at 0 range 5 .. 5;
SLEEPEXIT at 0 range 6 .. 6;
Reserved_7_31 at 0 range 7 .. 31;
end record;
-- Write '1' to Disable interrupt for POFWARN event
type INTENCLR_POFWARN_Field is
(-- Read: Disabled
Disabled,
-- Read: Enabled
Enabled)
with Size => 1;
for INTENCLR_POFWARN_Field use
(Disabled => 0,
Enabled => 1);
-- Write '1' to Disable interrupt for POFWARN event
type INTENCLR_POFWARN_Field_1 is
(-- Reset value for the field
Intenclr_Pofwarn_Field_Reset,
-- Disable
Clear)
with Size => 1;
for INTENCLR_POFWARN_Field_1 use
(Intenclr_Pofwarn_Field_Reset => 0,
Clear => 1);
-- Write '1' to Disable interrupt for SLEEPENTER event
type INTENCLR_SLEEPENTER_Field is
(-- Read: Disabled
Disabled,
-- Read: Enabled
Enabled)
with Size => 1;
for INTENCLR_SLEEPENTER_Field use
(Disabled => 0,
Enabled => 1);
-- Write '1' to Disable interrupt for SLEEPENTER event
type INTENCLR_SLEEPENTER_Field_1 is
(-- Reset value for the field
Intenclr_Sleepenter_Field_Reset,
-- Disable
Clear)
with Size => 1;
for INTENCLR_SLEEPENTER_Field_1 use
(Intenclr_Sleepenter_Field_Reset => 0,
Clear => 1);
-- Write '1' to Disable interrupt for SLEEPEXIT event
type INTENCLR_SLEEPEXIT_Field is
(-- Read: Disabled
Disabled,
-- Read: Enabled
Enabled)
with Size => 1;
for INTENCLR_SLEEPEXIT_Field use
(Disabled => 0,
Enabled => 1);
-- Write '1' to Disable interrupt for SLEEPEXIT event
type INTENCLR_SLEEPEXIT_Field_1 is
(-- Reset value for the field
Intenclr_Sleepexit_Field_Reset,
-- Disable
Clear)
with Size => 1;
for INTENCLR_SLEEPEXIT_Field_1 use
(Intenclr_Sleepexit_Field_Reset => 0,
Clear => 1);
-- Disable interrupt
type INTENCLR_Register is record
-- unspecified
Reserved_0_1 : HAL.UInt2 := 16#0#;
-- Write '1' to Disable interrupt for POFWARN event
POFWARN : INTENCLR_POFWARN_Field_1 :=
Intenclr_Pofwarn_Field_Reset;
-- unspecified
Reserved_3_4 : HAL.UInt2 := 16#0#;
-- Write '1' to Disable interrupt for SLEEPENTER event
SLEEPENTER : INTENCLR_SLEEPENTER_Field_1 :=
Intenclr_Sleepenter_Field_Reset;
-- Write '1' to Disable interrupt for SLEEPEXIT event
SLEEPEXIT : INTENCLR_SLEEPEXIT_Field_1 :=
Intenclr_Sleepexit_Field_Reset;
-- unspecified
Reserved_7_31 : HAL.UInt25 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for INTENCLR_Register use record
Reserved_0_1 at 0 range 0 .. 1;
POFWARN at 0 range 2 .. 2;
Reserved_3_4 at 0 range 3 .. 4;
SLEEPENTER at 0 range 5 .. 5;
SLEEPEXIT at 0 range 6 .. 6;
Reserved_7_31 at 0 range 7 .. 31;
end record;
-- Reset from pin-reset detected
type RESETREAS_RESETPIN_Field is
(-- Not detected
Notdetected,
-- Detected
Detected)
with Size => 1;
for RESETREAS_RESETPIN_Field use
(Notdetected => 0,
Detected => 1);
-- Reset from watchdog detected
type RESETREAS_DOG_Field is
(-- Not detected
Notdetected,
-- Detected
Detected)
with Size => 1;
for RESETREAS_DOG_Field use
(Notdetected => 0,
Detected => 1);
-- Reset from soft reset detected
type RESETREAS_SREQ_Field is
(-- Not detected
Notdetected,
-- Detected
Detected)
with Size => 1;
for RESETREAS_SREQ_Field use
(Notdetected => 0,
Detected => 1);
-- Reset from CPU lock-up detected
type RESETREAS_LOCKUP_Field is
(-- Not detected
Notdetected,
-- Detected
Detected)
with Size => 1;
for RESETREAS_LOCKUP_Field use
(Notdetected => 0,
Detected => 1);
-- Reset due to wake up from System OFF mode when wakeup is triggered from
-- DETECT signal from GPIO
type RESETREAS_OFF_Field is
(-- Not detected
Notdetected,
-- Detected
Detected)
with Size => 1;
for RESETREAS_OFF_Field use
(Notdetected => 0,
Detected => 1);
-- Reset due to wake up from System OFF mode when wakeup is triggered from
-- ANADETECT signal from LPCOMP
type RESETREAS_LPCOMP_Field is
(-- Not detected
Notdetected,
-- Detected
Detected)
with Size => 1;
for RESETREAS_LPCOMP_Field use
(Notdetected => 0,
Detected => 1);
-- Reset due to wake up from System OFF mode when wakeup is triggered from
-- entering into debug interface mode
type RESETREAS_DIF_Field is
(-- Not detected
Notdetected,
-- Detected
Detected)
with Size => 1;
for RESETREAS_DIF_Field use
(Notdetected => 0,
Detected => 1);
-- Reset due to wake up from System OFF mode by NFC field detect
type RESETREAS_NFC_Field is
(-- Not detected
Notdetected,
-- Detected
Detected)
with Size => 1;
for RESETREAS_NFC_Field use
(Notdetected => 0,
Detected => 1);
-- Reset reason
type RESETREAS_Register is record
-- Reset from pin-reset detected
RESETPIN : RESETREAS_RESETPIN_Field := NRF_SVD.POWER.Notdetected;
-- Reset from watchdog detected
DOG : RESETREAS_DOG_Field := NRF_SVD.POWER.Notdetected;
-- Reset from soft reset detected
SREQ : RESETREAS_SREQ_Field := NRF_SVD.POWER.Notdetected;
-- Reset from CPU lock-up detected
LOCKUP : RESETREAS_LOCKUP_Field := NRF_SVD.POWER.Notdetected;
-- unspecified
Reserved_4_15 : HAL.UInt12 := 16#0#;
-- Reset due to wake up from System OFF mode when wakeup is triggered
-- from DETECT signal from GPIO
OFF : RESETREAS_OFF_Field := NRF_SVD.POWER.Notdetected;
-- Reset due to wake up from System OFF mode when wakeup is triggered
-- from ANADETECT signal from LPCOMP
LPCOMP : RESETREAS_LPCOMP_Field := NRF_SVD.POWER.Notdetected;
-- Reset due to wake up from System OFF mode when wakeup is triggered
-- from entering into debug interface mode
DIF : RESETREAS_DIF_Field := NRF_SVD.POWER.Notdetected;
-- Reset due to wake up from System OFF mode by NFC field detect
NFC : RESETREAS_NFC_Field := NRF_SVD.POWER.Notdetected;
-- unspecified
Reserved_20_31 : HAL.UInt12 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for RESETREAS_Register use record
RESETPIN at 0 range 0 .. 0;
DOG at 0 range 1 .. 1;
SREQ at 0 range 2 .. 2;
LOCKUP at 0 range 3 .. 3;
Reserved_4_15 at 0 range 4 .. 15;
OFF at 0 range 16 .. 16;
LPCOMP at 0 range 17 .. 17;
DIF at 0 range 18 .. 18;
NFC at 0 range 19 .. 19;
Reserved_20_31 at 0 range 20 .. 31;
end record;
-- RAM block 0 is on or off/powering up
type RAMSTATUS_RAMBLOCK0_Field is
(-- Off
Off,
-- On
On)
with Size => 1;
for RAMSTATUS_RAMBLOCK0_Field use
(Off => 0,
On => 1);
-- RAMSTATUS_RAMBLOCK array
type RAMSTATUS_RAMBLOCK_Field_Array is array (0 .. 3)
of RAMSTATUS_RAMBLOCK0_Field
with Component_Size => 1, Size => 4;
-- Type definition for RAMSTATUS_RAMBLOCK
type RAMSTATUS_RAMBLOCK_Field
(As_Array : Boolean := False)
is record
case As_Array is
when False =>
-- RAMBLOCK as a value
Val : HAL.UInt4;
when True =>
-- RAMBLOCK as an array
Arr : RAMSTATUS_RAMBLOCK_Field_Array;
end case;
end record
with Unchecked_Union, Size => 4;
for RAMSTATUS_RAMBLOCK_Field use record
Val at 0 range 0 .. 3;
Arr at 0 range 0 .. 3;
end record;
-- Deprecated register - RAM status register
type RAMSTATUS_Register is record
-- Read-only. RAM block 0 is on or off/powering up
RAMBLOCK : RAMSTATUS_RAMBLOCK_Field;
-- unspecified
Reserved_4_31 : HAL.UInt28;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for RAMSTATUS_Register use record
RAMBLOCK at 0 range 0 .. 3;
Reserved_4_31 at 0 range 4 .. 31;
end record;
-- Enable System OFF mode
type SYSTEMOFF_SYSTEMOFF_Field is
(-- Reset value for the field
Systemoff_Systemoff_Field_Reset,
-- Enable System OFF mode
Enter)
with Size => 1;
for SYSTEMOFF_SYSTEMOFF_Field use
(Systemoff_Systemoff_Field_Reset => 0,
Enter => 1);
-- System OFF register
type SYSTEMOFF_Register is record
-- Write-only. Enable System OFF mode
SYSTEMOFF : SYSTEMOFF_SYSTEMOFF_Field :=
Systemoff_Systemoff_Field_Reset;
-- unspecified
Reserved_1_31 : HAL.UInt31 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for SYSTEMOFF_Register use record
SYSTEMOFF at 0 range 0 .. 0;
Reserved_1_31 at 0 range 1 .. 31;
end record;
-- Enable or disable power failure comparator
type POFCON_POF_Field is
(-- Disable
Disabled,
-- Enable
Enabled)
with Size => 1;
for POFCON_POF_Field use
(Disabled => 0,
Enabled => 1);
-- Power failure comparator threshold setting
type POFCON_THRESHOLD_Field is
(-- Reset value for the field
Pofcon_Threshold_Field_Reset,
-- Set threshold to 1.7 V
V17,
-- Set threshold to 1.8 V
V18,
-- Set threshold to 1.9 V
V19,
-- Set threshold to 2.0 V
V20,
-- Set threshold to 2.1 V
V21,
-- Set threshold to 2.2 V
V22,
-- Set threshold to 2.3 V
V23,
-- Set threshold to 2.4 V
V24,
-- Set threshold to 2.5 V
V25,
-- Set threshold to 2.6 V
V26,
-- Set threshold to 2.7 V
V27,
-- Set threshold to 2.8 V
V28)
with Size => 4;
for POFCON_THRESHOLD_Field use
(Pofcon_Threshold_Field_Reset => 0,
V17 => 4,
V18 => 5,
V19 => 6,
V20 => 7,
V21 => 8,
V22 => 9,
V23 => 10,
V24 => 11,
V25 => 12,
V26 => 13,
V27 => 14,
V28 => 15);
-- Power failure comparator configuration
type POFCON_Register is record
-- Enable or disable power failure comparator
POF : POFCON_POF_Field := NRF_SVD.POWER.Disabled;
-- Power failure comparator threshold setting
THRESHOLD : POFCON_THRESHOLD_Field := Pofcon_Threshold_Field_Reset;
-- unspecified
Reserved_5_31 : HAL.UInt27 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for POFCON_Register use record
POF at 0 range 0 .. 0;
THRESHOLD at 0 range 1 .. 4;
Reserved_5_31 at 0 range 5 .. 31;
end record;
subtype GPREGRET_GPREGRET_Field is HAL.UInt8;
-- General purpose retention register
type GPREGRET_Register is record
-- General purpose retention register
GPREGRET : GPREGRET_GPREGRET_Field := 16#0#;
-- unspecified
Reserved_8_31 : HAL.UInt24 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for GPREGRET_Register use record
GPREGRET at 0 range 0 .. 7;
Reserved_8_31 at 0 range 8 .. 31;
end record;
-- Keep RAM block 0 on or off in system ON Mode
type RAMON_ONRAM0_Field is
(-- Off
Ram0Off,
-- On
Ram0On)
with Size => 1;
for RAMON_ONRAM0_Field use
(Ram0Off => 0,
Ram0On => 1);
-- Keep RAM block 1 on or off in system ON Mode
type RAMON_ONRAM1_Field is
(-- Off
Ram1Off,
-- On
Ram1On)
with Size => 1;
for RAMON_ONRAM1_Field use
(Ram1Off => 0,
Ram1On => 1);
-- Keep retention on RAM block 0 when RAM block is switched off
type RAMON_OFFRAM0_Field is
(-- Off
Ram0Off,
-- On
Ram0On)
with Size => 1;
for RAMON_OFFRAM0_Field use
(Ram0Off => 0,
Ram0On => 1);
-- Keep retention on RAM block 1 when RAM block is switched off
type RAMON_OFFRAM1_Field is
(-- Off
Ram1Off,
-- On
Ram1On)
with Size => 1;
for RAMON_OFFRAM1_Field use
(Ram1Off => 0,
Ram1On => 1);
-- Deprecated register - RAM on/off register (this register is retained)
type RAMON_Register is record
-- Keep RAM block 0 on or off in system ON Mode
ONRAM0 : RAMON_ONRAM0_Field := NRF_SVD.POWER.Ram0On;
-- Keep RAM block 1 on or off in system ON Mode
ONRAM1 : RAMON_ONRAM1_Field := NRF_SVD.POWER.Ram1On;
-- unspecified
Reserved_2_15 : HAL.UInt14 := 16#0#;
-- Keep retention on RAM block 0 when RAM block is switched off
OFFRAM0 : RAMON_OFFRAM0_Field := NRF_SVD.POWER.Ram0Off;
-- Keep retention on RAM block 1 when RAM block is switched off
OFFRAM1 : RAMON_OFFRAM1_Field := NRF_SVD.POWER.Ram1Off;
-- unspecified
Reserved_18_31 : HAL.UInt14 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for RAMON_Register use record
ONRAM0 at 0 range 0 .. 0;
ONRAM1 at 0 range 1 .. 1;
Reserved_2_15 at 0 range 2 .. 15;
OFFRAM0 at 0 range 16 .. 16;
OFFRAM1 at 0 range 17 .. 17;
Reserved_18_31 at 0 range 18 .. 31;
end record;
-- Keep RAM block 2 on or off in system ON Mode
type RAMONB_ONRAM2_Field is
(-- Off
Ram2Off,
-- On
Ram2On)
with Size => 1;
for RAMONB_ONRAM2_Field use
(Ram2Off => 0,
Ram2On => 1);
-- Keep RAM block 3 on or off in system ON Mode
type RAMONB_ONRAM3_Field is
(-- Off
Ram3Off,
-- On
Ram3On)
with Size => 1;
for RAMONB_ONRAM3_Field use
(Ram3Off => 0,
Ram3On => 1);
-- Keep retention on RAM block 2 when RAM block is switched off
type RAMONB_OFFRAM2_Field is
(-- Off
Ram2Off,
-- On
Ram2On)
with Size => 1;
for RAMONB_OFFRAM2_Field use
(Ram2Off => 0,
Ram2On => 1);
-- Keep retention on RAM block 3 when RAM block is switched off
type RAMONB_OFFRAM3_Field is
(-- Off
Ram3Off,
-- On
Ram3On)
with Size => 1;
for RAMONB_OFFRAM3_Field use
(Ram3Off => 0,
Ram3On => 1);
-- Deprecated register - RAM on/off register (this register is retained)
type RAMONB_Register is record
-- Keep RAM block 2 on or off in system ON Mode
ONRAM2 : RAMONB_ONRAM2_Field := NRF_SVD.POWER.Ram2On;
-- Keep RAM block 3 on or off in system ON Mode
ONRAM3 : RAMONB_ONRAM3_Field := NRF_SVD.POWER.Ram3On;
-- unspecified
Reserved_2_15 : HAL.UInt14 := 16#0#;
-- Keep retention on RAM block 2 when RAM block is switched off
OFFRAM2 : RAMONB_OFFRAM2_Field := NRF_SVD.POWER.Ram2Off;
-- Keep retention on RAM block 3 when RAM block is switched off
OFFRAM3 : RAMONB_OFFRAM3_Field := NRF_SVD.POWER.Ram3Off;
-- unspecified
Reserved_18_31 : HAL.UInt14 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for RAMONB_Register use record
ONRAM2 at 0 range 0 .. 0;
ONRAM3 at 0 range 1 .. 1;
Reserved_2_15 at 0 range 2 .. 15;
OFFRAM2 at 0 range 16 .. 16;
OFFRAM3 at 0 range 17 .. 17;
Reserved_18_31 at 0 range 18 .. 31;
end record;
-- Enable or disable DC/DC converter
type DCDCEN_DCDCEN_Field is
(-- Disable
Disabled,
-- Enable
Enabled)
with Size => 1;
for DCDCEN_DCDCEN_Field use
(Disabled => 0,
Enabled => 1);
-- DC/DC enable register
type DCDCEN_Register is record
-- Enable or disable DC/DC converter
DCDCEN : DCDCEN_DCDCEN_Field := NRF_SVD.POWER.Disabled;
-- unspecified
Reserved_1_31 : HAL.UInt31 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for DCDCEN_Register use record
DCDCEN at 0 range 0 .. 0;
Reserved_1_31 at 0 range 1 .. 31;
end record;
-----------------------------
-- RAM cluster's Registers --
-----------------------------
-- Keep RAM section S0 ON or OFF in System ON mode.
type POWER_S0POWER_Field is
(-- Off
Off,
-- On
On)
with Size => 1;
for POWER_S0POWER_Field use
(Off => 0,
On => 1);
-- Keep RAM section S1 ON or OFF in System ON mode.
type POWER_S1POWER_Field is
(-- Off
Off,
-- On
On)
with Size => 1;
for POWER_S1POWER_Field use
(Off => 0,
On => 1);
-- Keep retention on RAM section S0 when RAM section is in OFF
type POWER_S0RETENTION_Field is
(-- Off
Off,
-- On
On)
with Size => 1;
for POWER_S0RETENTION_Field use
(Off => 0,
On => 1);
-- Keep retention on RAM section S1 when RAM section is in OFF
type POWER_S1RETENTION_Field is
(-- Off
Off,
-- On
On)
with Size => 1;
for POWER_S1RETENTION_Field use
(Off => 0,
On => 1);
-- Description cluster[0]: RAM0 power control register
type POWER_RAM_Register is record
-- Keep RAM section S0 ON or OFF in System ON mode.
S0POWER : POWER_S0POWER_Field := NRF_SVD.POWER.On;
-- Keep RAM section S1 ON or OFF in System ON mode.
S1POWER : POWER_S1POWER_Field := NRF_SVD.POWER.On;
-- unspecified
Reserved_2_15 : HAL.UInt14 := 16#3FFF#;
-- Keep retention on RAM section S0 when RAM section is in OFF
S0RETENTION : POWER_S0RETENTION_Field := NRF_SVD.POWER.Off;
-- Keep retention on RAM section S1 when RAM section is in OFF
S1RETENTION : POWER_S1RETENTION_Field := NRF_SVD.POWER.Off;
-- unspecified
Reserved_18_31 : HAL.UInt14 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for POWER_RAM_Register use record
S0POWER at 0 range 0 .. 0;
S1POWER at 0 range 1 .. 1;
Reserved_2_15 at 0 range 2 .. 15;
S0RETENTION at 0 range 16 .. 16;
S1RETENTION at 0 range 17 .. 17;
Reserved_18_31 at 0 range 18 .. 31;
end record;
-- Keep RAM section S0 of RAM0 on or off in System ON mode
type POWERSET_S0POWER_Field is
(-- On
On)
with Size => 1;
for POWERSET_S0POWER_Field use
(On => 1);
-- Keep RAM section S1 of RAM0 on or off in System ON mode
type POWERSET_S1POWER_Field is
(-- On
On)
with Size => 1;
for POWERSET_S1POWER_Field use
(On => 1);
-- Keep retention on RAM section S0 when RAM section is switched off
type POWERSET_S0RETENTION_Field is
(-- Reset value for the field
Powerset_S0Retention_Field_Reset,
-- On
On)
with Size => 1;
for POWERSET_S0RETENTION_Field use
(Powerset_S0Retention_Field_Reset => 0,
On => 1);
-- Keep retention on RAM section S1 when RAM section is switched off
type POWERSET_S1RETENTION_Field is
(-- Reset value for the field
Powerset_S1Retention_Field_Reset,
-- On
On)
with Size => 1;
for POWERSET_S1RETENTION_Field use
(Powerset_S1Retention_Field_Reset => 0,
On => 1);
-- Description cluster[0]: RAM0 power control set register
type POWERSET_RAM_Register is record
-- Write-only. Keep RAM section S0 of RAM0 on or off in System ON mode
S0POWER : POWERSET_S0POWER_Field := NRF_SVD.POWER.On;
-- Write-only. Keep RAM section S1 of RAM0 on or off in System ON mode
S1POWER : POWERSET_S1POWER_Field := NRF_SVD.POWER.On;
-- unspecified
Reserved_2_15 : HAL.UInt14 := 16#3FFF#;
-- Write-only. Keep retention on RAM section S0 when RAM section is
-- switched off
S0RETENTION : POWERSET_S0RETENTION_Field :=
Powerset_S0Retention_Field_Reset;
-- Write-only. Keep retention on RAM section S1 when RAM section is
-- switched off
S1RETENTION : POWERSET_S1RETENTION_Field :=
Powerset_S1Retention_Field_Reset;
-- unspecified
Reserved_18_31 : HAL.UInt14 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for POWERSET_RAM_Register use record
S0POWER at 0 range 0 .. 0;
S1POWER at 0 range 1 .. 1;
Reserved_2_15 at 0 range 2 .. 15;
S0RETENTION at 0 range 16 .. 16;
S1RETENTION at 0 range 17 .. 17;
Reserved_18_31 at 0 range 18 .. 31;
end record;
-- Keep RAM section S0 of RAM0 on or off in System ON mode
type POWERCLR_S0POWER_Field is
(-- Off
Off)
with Size => 1;
for POWERCLR_S0POWER_Field use
(Off => 1);
-- Keep RAM section S1 of RAM0 on or off in System ON mode
type POWERCLR_S1POWER_Field is
(-- Off
Off)
with Size => 1;
for POWERCLR_S1POWER_Field use
(Off => 1);
-- Keep retention on RAM section S0 when RAM section is switched off
type POWERCLR_S0RETENTION_Field is
(-- Reset value for the field
Powerclr_S0Retention_Field_Reset,
-- Off
Off)
with Size => 1;
for POWERCLR_S0RETENTION_Field use
(Powerclr_S0Retention_Field_Reset => 0,
Off => 1);
-- Keep retention on RAM section S1 when RAM section is switched off
type POWERCLR_S1RETENTION_Field is
(-- Reset value for the field
Powerclr_S1Retention_Field_Reset,
-- Off
Off)
with Size => 1;
for POWERCLR_S1RETENTION_Field use
(Powerclr_S1Retention_Field_Reset => 0,
Off => 1);
-- Description cluster[0]: RAM0 power control clear register
type POWERCLR_RAM_Register is record
-- Write-only. Keep RAM section S0 of RAM0 on or off in System ON mode
S0POWER : POWERCLR_S0POWER_Field := NRF_SVD.POWER.Off;
-- Write-only. Keep RAM section S1 of RAM0 on or off in System ON mode
S1POWER : POWERCLR_S1POWER_Field := NRF_SVD.POWER.Off;
-- unspecified
Reserved_2_15 : HAL.UInt14 := 16#3FFF#;
-- Write-only. Keep retention on RAM section S0 when RAM section is
-- switched off
S0RETENTION : POWERCLR_S0RETENTION_Field :=
Powerclr_S0Retention_Field_Reset;
-- Write-only. Keep retention on RAM section S1 when RAM section is
-- switched off
S1RETENTION : POWERCLR_S1RETENTION_Field :=
Powerclr_S1Retention_Field_Reset;
-- unspecified
Reserved_18_31 : HAL.UInt14 := 16#0#;
end record
with Volatile_Full_Access, Object_Size => 32,
Bit_Order => System.Low_Order_First;
for POWERCLR_RAM_Register use record
S0POWER at 0 range 0 .. 0;
S1POWER at 0 range 1 .. 1;
Reserved_2_15 at 0 range 2 .. 15;
S0RETENTION at 0 range 16 .. 16;
S1RETENTION at 0 range 17 .. 17;
Reserved_18_31 at 0 range 18 .. 31;
end record;
-- Unspecified
type RAM_Cluster is record
-- Description cluster[0]: RAM0 power control register
POWER : aliased POWER_RAM_Register;
-- Description cluster[0]: RAM0 power control set register
POWERSET : aliased POWERSET_RAM_Register;
-- Description cluster[0]: RAM0 power control clear register
POWERCLR : aliased POWERCLR_RAM_Register;
end record
with Size => 96;
for RAM_Cluster use record
POWER at 16#0# range 0 .. 31;
POWERSET at 16#4# range 0 .. 31;
POWERCLR at 16#8# range 0 .. 31;
end record;
-- Unspecified
type RAM_Clusters is array (0 .. 7) of RAM_Cluster;
-----------------
-- Peripherals --
-----------------
-- Power control
type POWER_Peripheral is record
-- Enable constant latency mode
TASKS_CONSTLAT : aliased HAL.UInt32;
-- Enable low power mode (variable latency)
TASKS_LOWPWR : aliased HAL.UInt32;
-- Power failure warning
EVENTS_POFWARN : aliased HAL.UInt32;
-- CPU entered WFI/WFE sleep
EVENTS_SLEEPENTER : aliased HAL.UInt32;
-- CPU exited WFI/WFE sleep
EVENTS_SLEEPEXIT : aliased HAL.UInt32;
-- Enable interrupt
INTENSET : aliased INTENSET_Register;
-- Disable interrupt
INTENCLR : aliased INTENCLR_Register;
-- Reset reason
RESETREAS : aliased RESETREAS_Register;
-- Deprecated register - RAM status register
RAMSTATUS : aliased RAMSTATUS_Register;
-- System OFF register
SYSTEMOFF : aliased SYSTEMOFF_Register;
-- Power failure comparator configuration
POFCON : aliased POFCON_Register;
-- General purpose retention register
GPREGRET : aliased GPREGRET_Register;
-- General purpose retention register
GPREGRET2 : aliased GPREGRET_Register;
-- Deprecated register - RAM on/off register (this register is retained)
RAMON : aliased RAMON_Register;
-- Deprecated register - RAM on/off register (this register is retained)
RAMONB : aliased RAMONB_Register;
-- DC/DC enable register
DCDCEN : aliased DCDCEN_Register;
-- Unspecified
RAM : aliased RAM_Clusters;
end record
with Volatile;
for POWER_Peripheral use record
TASKS_CONSTLAT at 16#78# range 0 .. 31;
TASKS_LOWPWR at 16#7C# range 0 .. 31;
EVENTS_POFWARN at 16#108# range 0 .. 31;
EVENTS_SLEEPENTER at 16#114# range 0 .. 31;
EVENTS_SLEEPEXIT at 16#118# range 0 .. 31;
INTENSET at 16#304# range 0 .. 31;
INTENCLR at 16#308# range 0 .. 31;
RESETREAS at 16#400# range 0 .. 31;
RAMSTATUS at 16#428# range 0 .. 31;
SYSTEMOFF at 16#500# range 0 .. 31;
POFCON at 16#510# range 0 .. 31;
GPREGRET at 16#51C# range 0 .. 31;
GPREGRET2 at 16#520# range 0 .. 31;
RAMON at 16#524# range 0 .. 31;
RAMONB at 16#554# range 0 .. 31;
DCDCEN at 16#578# range 0 .. 31;
RAM at 16#900# range 0 .. 767;
end record;
-- Power control
POWER_Periph : aliased POWER_Peripheral
with Import, Address => POWER_Base;
end NRF_SVD.POWER;
|
-- { dg-do run }
with Ada.Streams; use Ada.Streams;
procedure Array_Bounds_Test is
One : constant Stream_Element := 1;
Two : constant Stream_Element := 2;
Sample : constant Stream_Element_Array := (0 => One) & Two;
begin
if Sample'First /= 0 then
raise Program_Error;
end if;
if Sample'Last /= 1 then
raise Program_Error;
end if;
end Array_Bounds_Test;
|
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<item class_id_reference="28" object_id="_63">
<id>20</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_64">
<id>21</id>
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<latency>2</latency>
</item>
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<id>22</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_66">
<id>23</id>
<stage>2</stage>
<latency>2</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_67">
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<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_70">
<id>9</id>
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<item class_id_reference="28" object_id="_71">
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<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_74">
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<stage>1</stage>
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<item class_id_reference="28" object_id="_75">
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<stage>1</stage>
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<id>25</id>
<stage>1</stage>
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<item class_id_reference="28" object_id="_81">
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</transitions>
</fsm>
<res class_id="-1"></res>
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</second>
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<first>118</first>
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</dp_fu_nodes>
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<first>collisions_fu_118</first>
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</second>
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<item>
<first>or_ln159_fu_112</first>
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</second>
</item>
</dp_fu_nodes_expression>
<dp_fu_nodes_module>
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<first>grp_checkAxis_0_fu_96</first>
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<item>22</item>
</second>
</item>
<item>
<first>grp_checkAxis_1_fu_80</first>
<second>
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<item>23</item>
</second>
</item>
<item>
<first>grp_checkAxis_2_fu_64</first>
<second>
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<item>21</item>
</second>
</item>
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<first>edge_p1_y_read_read_fu_52</first>
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<item>
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<item>
<first>edge_p2_x_read_read_fu_40</first>
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<item>
<first>edge_p2_y_read_read_fu_34</first>
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<item>
<first>edge_p2_z_read_read_fu_28</first>
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<item>
<first>131</first>
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</second>
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<item>
<first>138</first>
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<first>145</first>
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<item>
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<item>20</item>
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<item>
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<item>
<first>edge_p1_z_read_reg_145</first>
<second>
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</second>
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<item>
<first>edge_p2_x_read_reg_138</first>
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</item>
<item>
<first>edge_p2_y_read_reg_131</first>
<second>
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<item>16</item>
</second>
</item>
<item>
<first>edge_p2_z_read_reg_124</first>
<second>
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<item>15</item>
</second>
</item>
</dp_regname_nodes>
<dp_reg_phi>
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<item_version>0</item_version>
</dp_reg_phi>
<dp_regname_phi>
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</dp_regname_phi>
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<item class_id="49" tracking_level="0" version="0">
<first>edge_p1_x</first>
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<item>
<first>read</first>
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</second>
</item>
<item>
<first>edge_p1_y</first>
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<item>
<first>read</first>
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<item>19</item>
</second>
</item>
</second>
</item>
<item>
<first>edge_p1_z</first>
<second>
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<item>
<first>read</first>
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<item>18</item>
</second>
</item>
</second>
</item>
<item>
<first>edge_p2_x</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>1</count>
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</second>
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</second>
</item>
<item>
<first>edge_p2_y</first>
<second>
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<item>
<first>read</first>
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</second>
</item>
</second>
</item>
<item>
<first>edge_p2_z</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>15</item>
</second>
</item>
</second>
</item>
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</boost_serialization>
|
with AUnit.Test_Suites;
package Test_Suite is
function Create_Test_Suite return AUnit.Test_Suites.Access_Test_Suite;
end Test_Suite;
|
with Ada.Tags.Generic_Dispatching_Constructor;
package Generic_Disp_Pkg is
type Iface is interface;
function Constructor (I : not null access Integer) return Iface is abstract;
function Dispatching_Constructor
is new Ada.Tags.Generic_Dispatching_Constructor
(T => Iface,
Parameters => Integer,
Constructor => Constructor);
type DT is new Iface with null record;
overriding
function Constructor (I : not null access Integer) return DT;
end Generic_Disp_Pkg;
|
-- ----------------------------------------------------------------- --
-- AdaSDL --
-- Binding to Simple Direct Media Layer --
-- Copyright (C) 2001 A.M.F.Vargas --
-- Antonio M. F. Vargas --
-- Ponta Delgada - Azores - Portugal --
-- http://www.adapower.net/~avargas --
-- E-mail: avargas@adapower.net --
-- ----------------------------------------------------------------- --
-- --
-- This library 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 library is distributed in the hope that it will be useful, --
-- but WITHOUT ANY WARRANTY; without even the implied warranty of --
-- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU --
-- General Public License for more details. --
-- --
-- You should have received a copy of the GNU General Public --
-- License along with this library; if not, write to the --
-- Free Software Foundation, Inc., 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. --
-- ----------------------------------------------------------------- --
-- **************************************************************** --
-- This is an Ada binding to SDL ( Simple DirectMedia Layer from --
-- Sam Lantinga - www.libsld.org ) --
-- **************************************************************** --
-- In order to help the Ada programmer, the comments in this file --
-- are, in great extent, a direct copy of the original text in the --
-- SDL header files. --
-- **************************************************************** --
with Interfaces.C.Strings;
package SDL.Error is
package C renames Interfaces.C;
package CS renames Interfaces.C.Strings;
-- Public functions
-- In C this is a function with variable arguments.
-- ' void SDL_SetError(const char *fmt, ...);'
-- new functions will be added as needed
procedure SetError (fmt : CS.chars_ptr);
pragma Import (C, SetError, "SDL_SetError");
procedure Set_Error (fmt : String);
pragma Inline (Set_Error);
function GetError return CS.chars_ptr;
pragma Import (C, GetError, "SDL_GetError");
function Get_Error return String;
pragma Inline (Get_Error);
procedure ClearError;
pragma Import (C, ClearError, "SDL_ClearError");
type errorcode is new Interfaces.C.int;
ENOMEM : constant errorcode := 0;
EFREAD : constant errorcode := 1;
EFWRITE : constant errorcode := 2;
EFSEEK : constant errorcode := 3;
LASTERROR : constant errorcode := 4;
-- Not available on some systems
-- procedure Error (code : errorcode);
-- pragma Import (C, Error, "SDL_Error");
procedure OutOfMemory;
pragma Inline (OutOfMemory);
end SDL.Error;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- A D A . T E X T _ I O . D E C I M A L _ A U X --
-- --
-- B o d y --
-- --
-- Copyright (C) 1992-2006, 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.Text_IO.Generic_Aux; use Ada.Text_IO.Generic_Aux;
with Ada.Text_IO.Float_Aux; use Ada.Text_IO.Float_Aux;
with System.Img_Dec; use System.Img_Dec;
with System.Img_LLD; use System.Img_LLD;
with System.Val_Dec; use System.Val_Dec;
with System.Val_LLD; use System.Val_LLD;
package body Ada.Text_IO.Decimal_Aux is
-------------
-- Get_Dec --
-------------
function Get_Dec
(File : File_Type;
Width : Field;
Scale : Integer) return Integer
is
Buf : String (1 .. Field'Last);
Ptr : aliased Integer;
Stop : Integer := 0;
Item : Integer;
begin
if Width /= 0 then
Load_Width (File, Width, Buf, Stop);
String_Skip (Buf, Ptr);
else
Load_Real (File, Buf, Stop);
Ptr := 1;
end if;
Item := Scan_Decimal (Buf, Ptr'Access, Stop, Scale);
Check_End_Of_Field (Buf, Stop, Ptr, Width);
return Item;
end Get_Dec;
-------------
-- Get_LLD --
-------------
function Get_LLD
(File : File_Type;
Width : Field;
Scale : Integer) return Long_Long_Integer
is
Buf : String (1 .. Field'Last);
Ptr : aliased Integer;
Stop : Integer := 0;
Item : Long_Long_Integer;
begin
if Width /= 0 then
Load_Width (File, Width, Buf, Stop);
String_Skip (Buf, Ptr);
else
Load_Real (File, Buf, Stop);
Ptr := 1;
end if;
Item := Scan_Long_Long_Decimal (Buf, Ptr'Access, Stop, Scale);
Check_End_Of_Field (Buf, Stop, Ptr, Width);
return Item;
end Get_LLD;
--------------
-- Gets_Dec --
--------------
function Gets_Dec
(From : String;
Last : access Positive;
Scale : Integer) return Integer
is
Pos : aliased Integer;
Item : Integer;
begin
String_Skip (From, Pos);
Item := Scan_Decimal (From, Pos'Access, From'Last, Scale);
Last.all := Pos - 1;
return Item;
exception
when Constraint_Error =>
Last.all := Pos - 1;
raise Data_Error;
end Gets_Dec;
--------------
-- Gets_LLD --
--------------
function Gets_LLD
(From : String;
Last : access Positive;
Scale : Integer) return Long_Long_Integer
is
Pos : aliased Integer;
Item : Long_Long_Integer;
begin
String_Skip (From, Pos);
Item := Scan_Long_Long_Decimal (From, Pos'Access, From'Last, Scale);
Last.all := Pos - 1;
return Item;
exception
when Constraint_Error =>
Last.all := Pos - 1;
raise Data_Error;
end Gets_LLD;
-------------
-- Put_Dec --
-------------
procedure Put_Dec
(File : File_Type;
Item : Integer;
Fore : Field;
Aft : Field;
Exp : Field;
Scale : Integer)
is
Buf : String (1 .. Field'Last);
Ptr : Natural := 0;
begin
Set_Image_Decimal (Item, Buf, Ptr, Scale, Fore, Aft, Exp);
Put_Item (File, Buf (1 .. Ptr));
end Put_Dec;
-------------
-- Put_LLD --
-------------
procedure Put_LLD
(File : File_Type;
Item : Long_Long_Integer;
Fore : Field;
Aft : Field;
Exp : Field;
Scale : Integer)
is
Buf : String (1 .. Field'Last);
Ptr : Natural := 0;
begin
Set_Image_Long_Long_Decimal (Item, Buf, Ptr, Scale, Fore, Aft, Exp);
Put_Item (File, Buf (1 .. Ptr));
end Put_LLD;
--------------
-- Puts_Dec --
--------------
procedure Puts_Dec
(To : out String;
Item : Integer;
Aft : Field;
Exp : Field;
Scale : Integer)
is
Buf : String (1 .. Field'Last);
Fore : Integer;
Ptr : Natural := 0;
begin
if Exp = 0 then
Fore := To'Length - 1 - Aft;
else
Fore := To'Length - 2 - Aft - Exp;
end if;
if Fore < 1 then
raise Layout_Error;
end if;
Set_Image_Decimal (Item, Buf, Ptr, Scale, Fore, Aft, Exp);
if Ptr > To'Length then
raise Layout_Error;
else
To := Buf (1 .. Ptr);
end if;
end Puts_Dec;
--------------
-- Puts_Dec --
--------------
procedure Puts_LLD
(To : out String;
Item : Long_Long_Integer;
Aft : Field;
Exp : Field;
Scale : Integer)
is
Buf : String (1 .. Field'Last);
Fore : Integer;
Ptr : Natural := 0;
begin
if Exp = 0 then
Fore := To'Length - 1 - Aft;
else
Fore := To'Length - 2 - Aft - Exp;
end if;
if Fore < 1 then
raise Layout_Error;
end if;
Set_Image_Long_Long_Decimal (Item, Buf, Ptr, Scale, Fore, Aft, Exp);
if Ptr > To'Length then
raise Layout_Error;
else
To := Buf (1 .. Ptr);
end if;
end Puts_LLD;
end Ada.Text_IO.Decimal_Aux;
|
with
openGL.Geometry;
package openGL.Model.capsule.lit_textured
--
-- Models a lit and textured capsule.
--
is
type Item is new Model.capsule.item with private;
type View is access all Item'Class;
---------
--- Forge
--
function new_Capsule (Radius : in Real;
Height : in Real;
Image : in asset_Name := null_Asset) return View;
--------------
--- Attributes
--
overriding
function to_GL_Geometries (Self : access Item; Textures : access Texture.name_Map_of_texture'Class;
Fonts : in Font.font_id_Map_of_font) return Geometry.views;
private
type Item is new Model.capsule.item with
record
Radius : Real;
Height : Real;
Image : asset_Name := null_Asset;
end record;
end openGL.Model.capsule.lit_textured;
|
with Date_Package; use Date_Package;
with Ada.Text_IO; use Ada.Text_IO;
package body Person_Handling is
function "="(Person1, Person2: in Person) return Boolean is
begin
return Person1.Birth = Person2.Birth;
end;
function ">"(Person1, Person2: in Person) return Boolean is
begin
return Person1.Birth > Person2.Birth;
end;
function "<"(Person1, Person2: in Person) return Boolean is
begin
return Person1.Birth < Person2.Birth;
end;
procedure Put(Pers: in Person) is
begin
Put(Pers.Name(1..Pers.Name_Length)); Put(" ");
Put(Pers.Address(1..Pers.Address_Length)); Put(" ");
Put(Pers.Birth); Put(" ");
end Put;
procedure Get(Pers: out Person) is
Name: String(1..20);
Address: String(1..20);
Birth: Date_Type;
begin
Put("Namn: ");
Get_Line(Pers.Name, Pers.Name_Length);
if Pers.Name_Length >= 20 then Skip_Line; end if;
Put("Adress: ");
Get_Line(Pers.Address, Pers.Address_Length);
if Pers.Address_Length >= 20 then Skip_Line; end if;
Put("Födelsedatum: ");
Get(Pers.Birth);
Skip_Line;
end Get;
end Person_Handling;
|
-- C34014G.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 DERIVED SUBPROGRAM IS VISIBLE AND FURTHER DERIVABLE
-- UNDER APPROPRIATE CIRCUMSTANCES.
-- CHECK WHEN THE DERIVED SUBPROGRAM IS IMPLICITLY DECLARED IN THE
-- VISIBLE PART OF A PACKAGE AND NO HOMOGRAPHIC SUBPROGRAM IS LATER
-- DECLARED EXPLICITLY.
-- HISTORY:
-- JRK 09/16/87 CREATED ORIGINAL TEST.
WITH REPORT; USE REPORT;
PROCEDURE C34014G IS
PACKAGE P IS
TYPE T IS RANGE -100 .. 100;
FUNCTION F RETURN T;
END P;
USE P;
PACKAGE BODY P IS
FUNCTION F RETURN T IS
BEGIN
RETURN T (IDENT_INT (1));
END F;
END P;
BEGIN
TEST ("C34014G", "CHECK THAT A DERIVED SUBPROGRAM IS VISIBLE " &
"AND FURTHER DERIVABLE UNDER APPROPRIATE " &
"CIRCUMSTANCES. CHECK WHEN THE DERIVED " &
"SUBPROGRAM IS IMPLICITLY DECLARED IN THE " &
"VISIBLE PART OF A PACKAGE AND NO HOMOGRAPHIC " &
"SUBPROGRAM IS LATER DECLARED EXPLICITLY");
-----------------------------------------------------------------
COMMENT ("NO NEW SUBPROGRAM DECLARED EXPLICITLY");
DECLARE
PACKAGE Q IS
TYPE QT IS NEW T;
X : QT := F;
PRIVATE
TYPE QS IS NEW QT;
Z : QS := F;
END Q;
USE Q;
PACKAGE BODY Q IS
BEGIN
IF X /= 1 THEN
FAILED ("OLD SUBPROGRAM NOT VISIBLE - 1");
END IF;
IF Z /= 1 THEN
FAILED ("OLD SUBPROGRAM NOT DERIVED - 1");
END IF;
END Q;
PACKAGE R IS
Y : QT := F;
TYPE RT IS NEW QT;
Z : RT := F;
END R;
USE R;
BEGIN
IF Y /= 1 THEN
FAILED ("OLD SUBPROGRAM NOT VISIBLE - 2");
END IF;
IF Z /= 1 THEN
FAILED ("OLD SUBPROGRAM NOT DERIVED - 2");
END IF;
END;
-----------------------------------------------------------------
RESULT;
END C34014G;
|
------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- N A M E T --
-- --
-- B o d y --
-- --
-- Copyright (C) 1992-2016, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. --
-- --
-- As a special exception under Section 7 of GPL version 3, you are granted --
-- additional permissions described in the GCC Runtime Library Exception, --
-- version 3.1, as published by the Free Software Foundation. --
-- --
-- You should have received a copy of the GNU General Public License and --
-- a copy of the GCC Runtime Library Exception along with this program; --
-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
-- <http://www.gnu.org/licenses/>. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
-- WARNING: There is a C version of this package. Any changes to this
-- source file must be properly reflected in the C header file namet.h
-- which is created manually from namet.ads and namet.adb.
with Debug; use Debug;
with Opt; use Opt;
with Output; use Output;
with Tree_IO; use Tree_IO;
with Widechar; use Widechar;
with Interfaces; use Interfaces;
package body Namet is
Name_Chars_Reserve : constant := 5000;
Name_Entries_Reserve : constant := 100;
-- The names table is locked during gigi processing, since gigi assumes
-- that the table does not move. After returning from gigi, the names
-- table is unlocked again, since writing library file information needs
-- to generate some extra names. To avoid the inefficiency of always
-- reallocating during this second unlocked phase, we reserve a bit of
-- extra space before doing the release call.
Hash_Num : constant Int := 2**16;
-- Number of headers in the hash table. Current hash algorithm is closely
-- tailored to this choice, so it can only be changed if a corresponding
-- change is made to the hash algorithm.
Hash_Max : constant Int := Hash_Num - 1;
-- Indexes in the hash header table run from 0 to Hash_Num - 1
subtype Hash_Index_Type is Int range 0 .. Hash_Max;
-- Range of hash index values
Hash_Table : array (Hash_Index_Type) of Name_Id;
-- The hash table is used to locate existing entries in the names table.
-- The entries point to the first names table entry whose hash value
-- matches the hash code. Then subsequent names table entries with the
-- same hash code value are linked through the Hash_Link fields.
-----------------------
-- Local Subprograms --
-----------------------
function Hash (Buf : Bounded_String) return Hash_Index_Type;
pragma Inline (Hash);
-- Compute hash code for name stored in Buf
procedure Strip_Qualification_And_Suffixes (Buf : in out Bounded_String);
-- Given an encoded entity name in Buf, remove package body
-- suffix as described for Strip_Package_Body_Suffix, and also remove
-- all qualification, i.e. names followed by two underscores.
-----------------------------
-- Add_Char_To_Name_Buffer --
-----------------------------
procedure Add_Char_To_Name_Buffer (C : Character) is
begin
Append (Global_Name_Buffer, C);
end Add_Char_To_Name_Buffer;
----------------------------
-- Add_Nat_To_Name_Buffer --
----------------------------
procedure Add_Nat_To_Name_Buffer (V : Nat) is
begin
Append (Global_Name_Buffer, V);
end Add_Nat_To_Name_Buffer;
----------------------------
-- Add_Str_To_Name_Buffer --
----------------------------
procedure Add_Str_To_Name_Buffer (S : String) is
begin
Append (Global_Name_Buffer, S);
end Add_Str_To_Name_Buffer;
------------
-- Append --
------------
procedure Append (Buf : in out Bounded_String; C : Character) is
begin
if Buf.Length >= Buf.Chars'Last then
raise Program_Error;
end if;
Buf.Length := Buf.Length + 1;
Buf.Chars (Buf.Length) := C;
end Append;
procedure Append (Buf : in out Bounded_String; V : Nat) is
begin
if V >= 10 then
Append (Buf, V / 10);
end if;
Append (Buf, Character'Val (Character'Pos ('0') + V rem 10));
end Append;
procedure Append (Buf : in out Bounded_String; S : String) is
begin
for J in S'Range loop
Append (Buf, S (J));
end loop;
end Append;
procedure Append (Buf : in out Bounded_String; Buf2 : Bounded_String) is
begin
Append (Buf, Buf2.Chars (1 .. Buf2.Length));
end Append;
procedure Append (Buf : in out Bounded_String; Id : Name_Id) is
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
S : constant Int := Name_Entries.Table (Id).Name_Chars_Index;
begin
for J in 1 .. Natural (Name_Entries.Table (Id).Name_Len) loop
Append (Buf, Name_Chars.Table (S + Int (J)));
end loop;
end Append;
--------------------
-- Append_Decoded --
--------------------
procedure Append_Decoded (Buf : in out Bounded_String; Id : Name_Id) is
C : Character;
P : Natural;
Temp : Bounded_String;
begin
Append (Temp, Id);
-- Skip scan if we already know there are no encodings
if Name_Entries.Table (Id).Name_Has_No_Encodings then
goto Done;
end if;
-- Quick loop to see if there is anything special to do
P := 1;
loop
if P = Temp.Length then
Name_Entries.Table (Id).Name_Has_No_Encodings := True;
goto Done;
else
C := Temp.Chars (P);
exit when
C = 'U' or else
C = 'W' or else
C = 'Q' or else
C = 'O';
P := P + 1;
end if;
end loop;
-- Here we have at least some encoding that we must decode
Decode : declare
New_Len : Natural;
Old : Positive;
New_Buf : String (1 .. Temp.Chars'Last);
procedure Copy_One_Character;
-- Copy a character from Temp.Chars to New_Buf. Includes case
-- of copying a Uhh,Whhhh,WWhhhhhhhh sequence and decoding it.
function Hex (N : Natural) return Word;
-- Scans past N digits using Old pointer and returns hex value
procedure Insert_Character (C : Character);
-- Insert a new character into output decoded name
------------------------
-- Copy_One_Character --
------------------------
procedure Copy_One_Character is
C : Character;
begin
C := Temp.Chars (Old);
-- U (upper half insertion case)
if C = 'U'
and then Old < Temp.Length
and then Temp.Chars (Old + 1) not in 'A' .. 'Z'
and then Temp.Chars (Old + 1) /= '_'
then
Old := Old + 1;
-- If we have upper half encoding, then we have to set an
-- appropriate wide character sequence for this character.
if Upper_Half_Encoding then
Widechar.Set_Wide (Char_Code (Hex (2)), New_Buf, New_Len);
-- For other encoding methods, upper half characters can
-- simply use their normal representation.
else
Insert_Character (Character'Val (Hex (2)));
end if;
-- WW (wide wide character insertion)
elsif C = 'W'
and then Old < Temp.Length
and then Temp.Chars (Old + 1) = 'W'
then
Old := Old + 2;
Widechar.Set_Wide (Char_Code (Hex (8)), New_Buf, New_Len);
-- W (wide character insertion)
elsif C = 'W'
and then Old < Temp.Length
and then Temp.Chars (Old + 1) not in 'A' .. 'Z'
and then Temp.Chars (Old + 1) /= '_'
then
Old := Old + 1;
Widechar.Set_Wide (Char_Code (Hex (4)), New_Buf, New_Len);
-- Any other character is copied unchanged
else
Insert_Character (C);
Old := Old + 1;
end if;
end Copy_One_Character;
---------
-- Hex --
---------
function Hex (N : Natural) return Word is
T : Word := 0;
C : Character;
begin
for J in 1 .. N loop
C := Temp.Chars (Old);
Old := Old + 1;
pragma Assert (C in '0' .. '9' or else C in 'a' .. 'f');
if C <= '9' then
T := 16 * T + Character'Pos (C) - Character'Pos ('0');
else -- C in 'a' .. 'f'
T := 16 * T + Character'Pos (C) - (Character'Pos ('a') - 10);
end if;
end loop;
return T;
end Hex;
----------------------
-- Insert_Character --
----------------------
procedure Insert_Character (C : Character) is
begin
New_Len := New_Len + 1;
New_Buf (New_Len) := C;
end Insert_Character;
-- Start of processing for Decode
begin
New_Len := 0;
Old := 1;
-- Loop through characters of name
while Old <= Temp.Length loop
-- Case of character literal, put apostrophes around character
if Temp.Chars (Old) = 'Q'
and then Old < Temp.Length
then
Old := Old + 1;
Insert_Character (''');
Copy_One_Character;
Insert_Character (''');
-- Case of operator name
elsif Temp.Chars (Old) = 'O'
and then Old < Temp.Length
and then Temp.Chars (Old + 1) not in 'A' .. 'Z'
and then Temp.Chars (Old + 1) /= '_'
then
Old := Old + 1;
declare
-- This table maps the 2nd and 3rd characters of the name
-- into the required output. Two blanks means leave the
-- name alone
Map : constant String :=
"ab " & -- Oabs => "abs"
"ad+ " & -- Oadd => "+"
"an " & -- Oand => "and"
"co& " & -- Oconcat => "&"
"di/ " & -- Odivide => "/"
"eq= " & -- Oeq => "="
"ex**" & -- Oexpon => "**"
"gt> " & -- Ogt => ">"
"ge>=" & -- Oge => ">="
"le<=" & -- Ole => "<="
"lt< " & -- Olt => "<"
"mo " & -- Omod => "mod"
"mu* " & -- Omutliply => "*"
"ne/=" & -- One => "/="
"no " & -- Onot => "not"
"or " & -- Oor => "or"
"re " & -- Orem => "rem"
"su- " & -- Osubtract => "-"
"xo "; -- Oxor => "xor"
J : Integer;
begin
Insert_Character ('"');
-- Search the map. Note that this loop must terminate, if
-- not we have some kind of internal error, and a constraint
-- error may be raised.
J := Map'First;
loop
exit when Temp.Chars (Old) = Map (J)
and then Temp.Chars (Old + 1) = Map (J + 1);
J := J + 4;
end loop;
-- Special operator name
if Map (J + 2) /= ' ' then
Insert_Character (Map (J + 2));
if Map (J + 3) /= ' ' then
Insert_Character (Map (J + 3));
end if;
Insert_Character ('"');
-- Skip past original operator name in input
while Old <= Temp.Length
and then Temp.Chars (Old) in 'a' .. 'z'
loop
Old := Old + 1;
end loop;
-- For other operator names, leave them in lower case,
-- surrounded by apostrophes
else
-- Copy original operator name from input to output
while Old <= Temp.Length
and then Temp.Chars (Old) in 'a' .. 'z'
loop
Copy_One_Character;
end loop;
Insert_Character ('"');
end if;
end;
-- Else copy one character and keep going
else
Copy_One_Character;
end if;
end loop;
-- Copy new buffer as result
Temp.Length := New_Len;
Temp.Chars (1 .. New_Len) := New_Buf (1 .. New_Len);
end Decode;
<<Done>>
Append (Buf, Temp);
end Append_Decoded;
----------------------------------
-- Append_Decoded_With_Brackets --
----------------------------------
procedure Append_Decoded_With_Brackets
(Buf : in out Bounded_String;
Id : Name_Id)
is
P : Natural;
begin
-- Case of operator name, normal decoding is fine
if Buf.Chars (1) = 'O' then
Append_Decoded (Buf, Id);
-- For character literals, normal decoding is fine
elsif Buf.Chars (1) = 'Q' then
Append_Decoded (Buf, Id);
-- Only remaining issue is U/W/WW sequences
else
declare
Temp : Bounded_String;
begin
Append (Temp, Id);
P := 1;
while P < Temp.Length loop
if Temp.Chars (P + 1) in 'A' .. 'Z' then
P := P + 1;
-- Uhh encoding
elsif Temp.Chars (P) = 'U' then
for J in reverse P + 3 .. P + Temp.Length loop
Temp.Chars (J + 3) := Temp.Chars (J);
end loop;
Temp.Length := Temp.Length + 3;
Temp.Chars (P + 3) := Temp.Chars (P + 2);
Temp.Chars (P + 2) := Temp.Chars (P + 1);
Temp.Chars (P) := '[';
Temp.Chars (P + 1) := '"';
Temp.Chars (P + 4) := '"';
Temp.Chars (P + 5) := ']';
P := P + 6;
-- WWhhhhhhhh encoding
elsif Temp.Chars (P) = 'W'
and then P + 9 <= Temp.Length
and then Temp.Chars (P + 1) = 'W'
and then Temp.Chars (P + 2) not in 'A' .. 'Z'
and then Temp.Chars (P + 2) /= '_'
then
Temp.Chars (P + 12 .. Temp.Length + 2) :=
Temp.Chars (P + 10 .. Temp.Length);
Temp.Chars (P) := '[';
Temp.Chars (P + 1) := '"';
Temp.Chars (P + 10) := '"';
Temp.Chars (P + 11) := ']';
Temp.Length := Temp.Length + 2;
P := P + 12;
-- Whhhh encoding
elsif Temp.Chars (P) = 'W'
and then P < Temp.Length
and then Temp.Chars (P + 1) not in 'A' .. 'Z'
and then Temp.Chars (P + 1) /= '_'
then
Temp.Chars (P + 8 .. P + Temp.Length + 3) :=
Temp.Chars (P + 5 .. Temp.Length);
Temp.Chars (P + 2 .. P + 5) := Temp.Chars (P + 1 .. P + 4);
Temp.Chars (P) := '[';
Temp.Chars (P + 1) := '"';
Temp.Chars (P + 6) := '"';
Temp.Chars (P + 7) := ']';
Temp.Length := Temp.Length + 3;
P := P + 8;
else
P := P + 1;
end if;
end loop;
Append (Buf, Temp);
end;
end if;
end Append_Decoded_With_Brackets;
--------------------
-- Append_Encoded --
--------------------
procedure Append_Encoded (Buf : in out Bounded_String; C : Char_Code) is
procedure Set_Hex_Chars (C : Char_Code);
-- Stores given value, which is in the range 0 .. 255, as two hex
-- digits (using lower case a-f) in Buf.Chars, incrementing Buf.Length.
-------------------
-- Set_Hex_Chars --
-------------------
procedure Set_Hex_Chars (C : Char_Code) is
Hexd : constant String := "0123456789abcdef";
N : constant Natural := Natural (C);
begin
Buf.Chars (Buf.Length + 1) := Hexd (N / 16 + 1);
Buf.Chars (Buf.Length + 2) := Hexd (N mod 16 + 1);
Buf.Length := Buf.Length + 2;
end Set_Hex_Chars;
-- Start of processing for Append_Encoded
begin
Buf.Length := Buf.Length + 1;
if In_Character_Range (C) then
declare
CC : constant Character := Get_Character (C);
begin
if CC in 'a' .. 'z' or else CC in '0' .. '9' then
Buf.Chars (Buf.Length) := CC;
else
Buf.Chars (Buf.Length) := 'U';
Set_Hex_Chars (C);
end if;
end;
elsif In_Wide_Character_Range (C) then
Buf.Chars (Buf.Length) := 'W';
Set_Hex_Chars (C / 256);
Set_Hex_Chars (C mod 256);
else
Buf.Chars (Buf.Length) := 'W';
Buf.Length := Buf.Length + 1;
Buf.Chars (Buf.Length) := 'W';
Set_Hex_Chars (C / 2 ** 24);
Set_Hex_Chars ((C / 2 ** 16) mod 256);
Set_Hex_Chars ((C / 256) mod 256);
Set_Hex_Chars (C mod 256);
end if;
end Append_Encoded;
------------------------
-- Append_Unqualified --
------------------------
procedure Append_Unqualified (Buf : in out Bounded_String; Id : Name_Id) is
Temp : Bounded_String;
begin
Append (Temp, Id);
Strip_Qualification_And_Suffixes (Temp);
Append (Buf, Temp);
end Append_Unqualified;
--------------------------------
-- Append_Unqualified_Decoded --
--------------------------------
procedure Append_Unqualified_Decoded
(Buf : in out Bounded_String;
Id : Name_Id)
is
Temp : Bounded_String;
begin
Append_Decoded (Temp, Id);
Strip_Qualification_And_Suffixes (Temp);
Append (Buf, Temp);
end Append_Unqualified_Decoded;
--------------
-- Finalize --
--------------
procedure Finalize is
F : array (Int range 0 .. 50) of Int;
-- N'th entry is the number of chains of length N, except last entry,
-- which is the number of chains of length F'Last or more.
Max_Chain_Length : Nat := 0;
-- Maximum length of all chains
Probes : Nat := 0;
-- Used to compute average number of probes
Nsyms : Nat := 0;
-- Number of symbols in table
Verbosity : constant Int range 1 .. 3 := 1;
pragma Warnings (Off, Verbosity);
-- This constant indicates the level of verbosity in the output from
-- this procedure. Currently this can only be changed by editing the
-- declaration above and recompiling. That's good enough in practice,
-- since we very rarely need to use this debug option. Settings are:
--
-- 1 => print basic summary information
-- 2 => in addition print number of entries per hash chain
-- 3 => in addition print content of entries
Zero : constant Int := Character'Pos ('0');
begin
if not Debug_Flag_H then
return;
end if;
for J in F'Range loop
F (J) := 0;
end loop;
for J in Hash_Index_Type loop
if Hash_Table (J) = No_Name then
F (0) := F (0) + 1;
else
declare
C : Nat;
N : Name_Id;
S : Int;
begin
C := 0;
N := Hash_Table (J);
while N /= No_Name loop
N := Name_Entries.Table (N).Hash_Link;
C := C + 1;
end loop;
Nsyms := Nsyms + 1;
Probes := Probes + (1 + C) * 100;
if C > Max_Chain_Length then
Max_Chain_Length := C;
end if;
if Verbosity >= 2 then
Write_Str ("Hash_Table (");
Write_Int (J);
Write_Str (") has ");
Write_Int (C);
Write_Str (" entries");
Write_Eol;
end if;
if C < F'Last then
F (C) := F (C) + 1;
else
F (F'Last) := F (F'Last) + 1;
end if;
if Verbosity >= 3 then
N := Hash_Table (J);
while N /= No_Name loop
S := Name_Entries.Table (N).Name_Chars_Index;
Write_Str (" ");
for J in 1 .. Name_Entries.Table (N).Name_Len loop
Write_Char (Name_Chars.Table (S + Int (J)));
end loop;
Write_Eol;
N := Name_Entries.Table (N).Hash_Link;
end loop;
end if;
end;
end if;
end loop;
Write_Eol;
for J in F'Range loop
if F (J) /= 0 then
Write_Str ("Number of hash chains of length ");
if J < 10 then
Write_Char (' ');
end if;
Write_Int (J);
if J = F'Last then
Write_Str (" or greater");
end if;
Write_Str (" = ");
Write_Int (F (J));
Write_Eol;
end if;
end loop;
-- Print out average number of probes, in the case where Name_Find is
-- called for a string that is already in the table.
Write_Eol;
Write_Str ("Average number of probes for lookup = ");
Probes := Probes / Nsyms;
Write_Int (Probes / 200);
Write_Char ('.');
Probes := (Probes mod 200) / 2;
Write_Char (Character'Val (Zero + Probes / 10));
Write_Char (Character'Val (Zero + Probes mod 10));
Write_Eol;
Write_Str ("Max_Chain_Length = ");
Write_Int (Max_Chain_Length);
Write_Eol;
Write_Str ("Name_Chars'Length = ");
Write_Int (Name_Chars.Last - Name_Chars.First + 1);
Write_Eol;
Write_Str ("Name_Entries'Length = ");
Write_Int (Int (Name_Entries.Last - Name_Entries.First + 1));
Write_Eol;
Write_Str ("Nsyms = ");
Write_Int (Nsyms);
Write_Eol;
end Finalize;
-----------------------------
-- Get_Decoded_Name_String --
-----------------------------
procedure Get_Decoded_Name_String (Id : Name_Id) is
begin
Global_Name_Buffer.Length := 0;
Append_Decoded (Global_Name_Buffer, Id);
end Get_Decoded_Name_String;
-------------------------------------------
-- Get_Decoded_Name_String_With_Brackets --
-------------------------------------------
procedure Get_Decoded_Name_String_With_Brackets (Id : Name_Id) is
begin
Global_Name_Buffer.Length := 0;
Append_Decoded_With_Brackets (Global_Name_Buffer, Id);
end Get_Decoded_Name_String_With_Brackets;
------------------------
-- Get_Last_Two_Chars --
------------------------
procedure Get_Last_Two_Chars
(N : Name_Id;
C1 : out Character;
C2 : out Character)
is
NE : Name_Entry renames Name_Entries.Table (N);
NEL : constant Int := Int (NE.Name_Len);
begin
if NEL >= 2 then
C1 := Name_Chars.Table (NE.Name_Chars_Index + NEL - 1);
C2 := Name_Chars.Table (NE.Name_Chars_Index + NEL - 0);
else
C1 := ASCII.NUL;
C2 := ASCII.NUL;
end if;
end Get_Last_Two_Chars;
---------------------
-- Get_Name_String --
---------------------
procedure Get_Name_String (Id : Name_Id) is
begin
Global_Name_Buffer.Length := 0;
Append (Global_Name_Buffer, Id);
end Get_Name_String;
function Get_Name_String (Id : Name_Id) return String is
Buf : Bounded_String;
begin
Append (Buf, Id);
return +Buf;
end Get_Name_String;
--------------------------------
-- Get_Name_String_And_Append --
--------------------------------
procedure Get_Name_String_And_Append (Id : Name_Id) is
begin
Append (Global_Name_Buffer, Id);
end Get_Name_String_And_Append;
-----------------------------
-- Get_Name_Table_Boolean1 --
-----------------------------
function Get_Name_Table_Boolean1 (Id : Name_Id) return Boolean is
begin
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
return Name_Entries.Table (Id).Boolean1_Info;
end Get_Name_Table_Boolean1;
-----------------------------
-- Get_Name_Table_Boolean2 --
-----------------------------
function Get_Name_Table_Boolean2 (Id : Name_Id) return Boolean is
begin
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
return Name_Entries.Table (Id).Boolean2_Info;
end Get_Name_Table_Boolean2;
-----------------------------
-- Get_Name_Table_Boolean3 --
-----------------------------
function Get_Name_Table_Boolean3 (Id : Name_Id) return Boolean is
begin
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
return Name_Entries.Table (Id).Boolean3_Info;
end Get_Name_Table_Boolean3;
-------------------------
-- Get_Name_Table_Byte --
-------------------------
function Get_Name_Table_Byte (Id : Name_Id) return Byte is
begin
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
return Name_Entries.Table (Id).Byte_Info;
end Get_Name_Table_Byte;
-------------------------
-- Get_Name_Table_Int --
-------------------------
function Get_Name_Table_Int (Id : Name_Id) return Int is
begin
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
return Name_Entries.Table (Id).Int_Info;
end Get_Name_Table_Int;
-----------------------------------------
-- Get_Unqualified_Decoded_Name_String --
-----------------------------------------
procedure Get_Unqualified_Decoded_Name_String (Id : Name_Id) is
begin
Global_Name_Buffer.Length := 0;
Append_Unqualified_Decoded (Global_Name_Buffer, Id);
end Get_Unqualified_Decoded_Name_String;
---------------------------------
-- Get_Unqualified_Name_String --
---------------------------------
procedure Get_Unqualified_Name_String (Id : Name_Id) is
begin
Global_Name_Buffer.Length := 0;
Append_Unqualified (Global_Name_Buffer, Id);
end Get_Unqualified_Name_String;
----------
-- Hash --
----------
function Hash (Buf : Bounded_String) return Hash_Index_Type is
-- This hash function looks at every character, in order to make it
-- likely that similar strings get different hash values. The rotate by
-- 7 bits has been determined empirically to be good, and it doesn't
-- lose bits like a shift would. The final conversion can't overflow,
-- because the table is 2**16 in size. This function probably needs to
-- be changed if the hash table size is changed.
-- Note that we could get some speed improvement by aligning the string
-- to 32 or 64 bits, and doing word-wise xor's. We could also implement
-- a growable table. It doesn't seem worth the trouble to do those
-- things, for now.
Result : Unsigned_16 := 0;
begin
for J in 1 .. Buf.Length loop
Result := Rotate_Left (Result, 7) xor Character'Pos (Buf.Chars (J));
end loop;
return Hash_Index_Type (Result);
end Hash;
----------------
-- Initialize --
----------------
procedure Initialize is
begin
null;
end Initialize;
----------------
-- Insert_Str --
----------------
procedure Insert_Str
(Buf : in out Bounded_String;
S : String;
Index : Positive)
is
SL : constant Natural := S'Length;
begin
Buf.Chars (Index + SL .. Buf.Length + SL) :=
Buf.Chars (Index .. Buf.Length);
Buf.Chars (Index .. Index + SL - 1) := S;
Buf.Length := Buf.Length + SL;
end Insert_Str;
-------------------------------
-- Insert_Str_In_Name_Buffer --
-------------------------------
procedure Insert_Str_In_Name_Buffer (S : String; Index : Positive) is
begin
Insert_Str (Global_Name_Buffer, S, Index);
end Insert_Str_In_Name_Buffer;
----------------------
-- Is_Internal_Name --
----------------------
function Is_Internal_Name (Buf : Bounded_String) return Boolean is
J : Natural;
begin
-- Any name starting or ending with underscore is internal
if Buf.Chars (1) = '_'
or else Buf.Chars (Buf.Length) = '_'
then
return True;
-- Allow quoted character
elsif Buf.Chars (1) = ''' then
return False;
-- All other cases, scan name
else
-- Test backwards, because we only want to test the last entity
-- name if the name we have is qualified with other entities.
J := Buf.Length;
while J /= 0 loop
-- Skip stuff between brackets (A-F OK there)
if Buf.Chars (J) = ']' then
loop
J := J - 1;
exit when J = 1 or else Buf.Chars (J) = '[';
end loop;
-- Test for internal letter
elsif Is_OK_Internal_Letter (Buf.Chars (J)) then
return True;
-- Quit if we come to terminating double underscore (note that
-- if the current character is an underscore, we know that
-- there is a previous character present, since we already
-- filtered out the case of Buf.Chars (1) = '_' above.
elsif Buf.Chars (J) = '_'
and then Buf.Chars (J - 1) = '_'
and then Buf.Chars (J - 2) /= '_'
then
return False;
end if;
J := J - 1;
end loop;
end if;
return False;
end Is_Internal_Name;
function Is_Internal_Name (Id : Name_Id) return Boolean is
Buf : Bounded_String;
begin
if Id in Error_Name_Or_No_Name then
return False;
else
Append (Buf, Id);
return Is_Internal_Name (Buf);
end if;
end Is_Internal_Name;
function Is_Internal_Name return Boolean is
begin
return Is_Internal_Name (Global_Name_Buffer);
end Is_Internal_Name;
---------------------------
-- Is_OK_Internal_Letter --
---------------------------
function Is_OK_Internal_Letter (C : Character) return Boolean is
begin
return C in 'A' .. 'Z'
and then C /= 'O'
and then C /= 'Q'
and then C /= 'U'
and then C /= 'W'
and then C /= 'X';
end Is_OK_Internal_Letter;
----------------------
-- Is_Operator_Name --
----------------------
function Is_Operator_Name (Id : Name_Id) return Boolean is
S : Int;
begin
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
S := Name_Entries.Table (Id).Name_Chars_Index;
return Name_Chars.Table (S + 1) = 'O';
end Is_Operator_Name;
-------------------
-- Is_Valid_Name --
-------------------
function Is_Valid_Name (Id : Name_Id) return Boolean is
begin
return Id in Name_Entries.First .. Name_Entries.Last;
end Is_Valid_Name;
--------------------
-- Length_Of_Name --
--------------------
function Length_Of_Name (Id : Name_Id) return Nat is
begin
return Int (Name_Entries.Table (Id).Name_Len);
end Length_Of_Name;
----------
-- Lock --
----------
procedure Lock is
begin
Name_Chars.Set_Last (Name_Chars.Last + Name_Chars_Reserve);
Name_Entries.Set_Last (Name_Entries.Last + Name_Entries_Reserve);
Name_Chars.Locked := True;
Name_Entries.Locked := True;
Name_Chars.Release;
Name_Entries.Release;
end Lock;
------------------------
-- Name_Chars_Address --
------------------------
function Name_Chars_Address return System.Address is
begin
return Name_Chars.Table (0)'Address;
end Name_Chars_Address;
----------------
-- Name_Enter --
----------------
function Name_Enter
(Buf : Bounded_String := Global_Name_Buffer) return Name_Id
is
begin
Name_Entries.Append
((Name_Chars_Index => Name_Chars.Last,
Name_Len => Short (Buf.Length),
Byte_Info => 0,
Int_Info => 0,
Boolean1_Info => False,
Boolean2_Info => False,
Boolean3_Info => False,
Name_Has_No_Encodings => False,
Hash_Link => No_Name));
-- Set corresponding string entry in the Name_Chars table
for J in 1 .. Buf.Length loop
Name_Chars.Append (Buf.Chars (J));
end loop;
Name_Chars.Append (ASCII.NUL);
return Name_Entries.Last;
end Name_Enter;
--------------------------
-- Name_Entries_Address --
--------------------------
function Name_Entries_Address return System.Address is
begin
return Name_Entries.Table (First_Name_Id)'Address;
end Name_Entries_Address;
------------------------
-- Name_Entries_Count --
------------------------
function Name_Entries_Count return Nat is
begin
return Int (Name_Entries.Last - Name_Entries.First + 1);
end Name_Entries_Count;
---------------
-- Name_Find --
---------------
function Name_Find
(Buf : Bounded_String := Global_Name_Buffer) return Name_Id
is
New_Id : Name_Id;
-- Id of entry in hash search, and value to be returned
S : Int;
-- Pointer into string table
Hash_Index : Hash_Index_Type;
-- Computed hash index
begin
-- Quick handling for one character names
if Buf.Length = 1 then
return Name_Id (First_Name_Id + Character'Pos (Buf.Chars (1)));
-- Otherwise search hash table for existing matching entry
else
Hash_Index := Namet.Hash (Buf);
New_Id := Hash_Table (Hash_Index);
if New_Id = No_Name then
Hash_Table (Hash_Index) := Name_Entries.Last + 1;
else
Search : loop
if Buf.Length /=
Integer (Name_Entries.Table (New_Id).Name_Len)
then
goto No_Match;
end if;
S := Name_Entries.Table (New_Id).Name_Chars_Index;
for J in 1 .. Buf.Length loop
if Name_Chars.Table (S + Int (J)) /= Buf.Chars (J) then
goto No_Match;
end if;
end loop;
return New_Id;
-- Current entry in hash chain does not match
<<No_Match>>
if Name_Entries.Table (New_Id).Hash_Link /= No_Name then
New_Id := Name_Entries.Table (New_Id).Hash_Link;
else
Name_Entries.Table (New_Id).Hash_Link :=
Name_Entries.Last + 1;
exit Search;
end if;
end loop Search;
end if;
-- We fall through here only if a matching entry was not found in the
-- hash table. We now create a new entry in the names table. The hash
-- link pointing to the new entry (Name_Entries.Last+1) has been set.
Name_Entries.Append
((Name_Chars_Index => Name_Chars.Last,
Name_Len => Short (Buf.Length),
Hash_Link => No_Name,
Name_Has_No_Encodings => False,
Int_Info => 0,
Byte_Info => 0,
Boolean1_Info => False,
Boolean2_Info => False,
Boolean3_Info => False));
-- Set corresponding string entry in the Name_Chars table
for J in 1 .. Buf.Length loop
Name_Chars.Append (Buf.Chars (J));
end loop;
Name_Chars.Append (ASCII.NUL);
return Name_Entries.Last;
end if;
end Name_Find;
function Name_Find (S : String) return Name_Id is
Buf : Bounded_String;
begin
Append (Buf, S);
return Name_Find (Buf);
end Name_Find;
-------------
-- Nam_In --
-------------
function Nam_In
(T : Name_Id;
V1 : Name_Id;
V2 : Name_Id) return Boolean
is
begin
return T = V1 or else
T = V2;
end Nam_In;
function Nam_In
(T : Name_Id;
V1 : Name_Id;
V2 : Name_Id;
V3 : Name_Id) return Boolean
is
begin
return T = V1 or else
T = V2 or else
T = V3;
end Nam_In;
function Nam_In
(T : Name_Id;
V1 : Name_Id;
V2 : Name_Id;
V3 : Name_Id;
V4 : Name_Id) return Boolean
is
begin
return T = V1 or else
T = V2 or else
T = V3 or else
T = V4;
end Nam_In;
function Nam_In
(T : Name_Id;
V1 : Name_Id;
V2 : Name_Id;
V3 : Name_Id;
V4 : Name_Id;
V5 : Name_Id) return Boolean
is
begin
return T = V1 or else
T = V2 or else
T = V3 or else
T = V4 or else
T = V5;
end Nam_In;
function Nam_In
(T : Name_Id;
V1 : Name_Id;
V2 : Name_Id;
V3 : Name_Id;
V4 : Name_Id;
V5 : Name_Id;
V6 : Name_Id) return Boolean
is
begin
return T = V1 or else
T = V2 or else
T = V3 or else
T = V4 or else
T = V5 or else
T = V6;
end Nam_In;
function Nam_In
(T : Name_Id;
V1 : Name_Id;
V2 : Name_Id;
V3 : Name_Id;
V4 : Name_Id;
V5 : Name_Id;
V6 : Name_Id;
V7 : Name_Id) return Boolean
is
begin
return T = V1 or else
T = V2 or else
T = V3 or else
T = V4 or else
T = V5 or else
T = V6 or else
T = V7;
end Nam_In;
function Nam_In
(T : Name_Id;
V1 : Name_Id;
V2 : Name_Id;
V3 : Name_Id;
V4 : Name_Id;
V5 : Name_Id;
V6 : Name_Id;
V7 : Name_Id;
V8 : Name_Id) return Boolean
is
begin
return T = V1 or else
T = V2 or else
T = V3 or else
T = V4 or else
T = V5 or else
T = V6 or else
T = V7 or else
T = V8;
end Nam_In;
function Nam_In
(T : Name_Id;
V1 : Name_Id;
V2 : Name_Id;
V3 : Name_Id;
V4 : Name_Id;
V5 : Name_Id;
V6 : Name_Id;
V7 : Name_Id;
V8 : Name_Id;
V9 : Name_Id) return Boolean
is
begin
return T = V1 or else
T = V2 or else
T = V3 or else
T = V4 or else
T = V5 or else
T = V6 or else
T = V7 or else
T = V8 or else
T = V9;
end Nam_In;
function Nam_In
(T : Name_Id;
V1 : Name_Id;
V2 : Name_Id;
V3 : Name_Id;
V4 : Name_Id;
V5 : Name_Id;
V6 : Name_Id;
V7 : Name_Id;
V8 : Name_Id;
V9 : Name_Id;
V10 : Name_Id) return Boolean
is
begin
return T = V1 or else
T = V2 or else
T = V3 or else
T = V4 or else
T = V5 or else
T = V6 or else
T = V7 or else
T = V8 or else
T = V9 or else
T = V10;
end Nam_In;
function Nam_In
(T : Name_Id;
V1 : Name_Id;
V2 : Name_Id;
V3 : Name_Id;
V4 : Name_Id;
V5 : Name_Id;
V6 : Name_Id;
V7 : Name_Id;
V8 : Name_Id;
V9 : Name_Id;
V10 : Name_Id;
V11 : Name_Id) return Boolean
is
begin
return T = V1 or else
T = V2 or else
T = V3 or else
T = V4 or else
T = V5 or else
T = V6 or else
T = V7 or else
T = V8 or else
T = V9 or else
T = V10 or else
T = V11;
end Nam_In;
function Nam_In
(T : Name_Id;
V1 : Name_Id;
V2 : Name_Id;
V3 : Name_Id;
V4 : Name_Id;
V5 : Name_Id;
V6 : Name_Id;
V7 : Name_Id;
V8 : Name_Id;
V9 : Name_Id;
V10 : Name_Id;
V11 : Name_Id;
V12 : Name_Id) return Boolean
is
begin
return T = V1 or else
T = V2 or else
T = V3 or else
T = V4 or else
T = V5 or else
T = V6 or else
T = V7 or else
T = V8 or else
T = V9 or else
T = V10 or else
T = V11 or else
T = V12;
end Nam_In;
-----------------
-- Name_Equals --
-----------------
function Name_Equals (N1 : Name_Id; N2 : Name_Id) return Boolean is
begin
return N1 = N2 or else Get_Name_String (N1) = Get_Name_String (N2);
end Name_Equals;
------------------
-- Reinitialize --
------------------
procedure Reinitialize is
begin
Name_Chars.Init;
Name_Entries.Init;
-- Initialize entries for one character names
for C in Character loop
Name_Entries.Append
((Name_Chars_Index => Name_Chars.Last,
Name_Len => 1,
Byte_Info => 0,
Int_Info => 0,
Boolean1_Info => False,
Boolean2_Info => False,
Boolean3_Info => False,
Name_Has_No_Encodings => True,
Hash_Link => No_Name));
Name_Chars.Append (C);
Name_Chars.Append (ASCII.NUL);
end loop;
-- Clear hash table
for J in Hash_Index_Type loop
Hash_Table (J) := No_Name;
end loop;
end Reinitialize;
----------------------
-- Reset_Name_Table --
----------------------
procedure Reset_Name_Table is
begin
for J in First_Name_Id .. Name_Entries.Last loop
Name_Entries.Table (J).Int_Info := 0;
Name_Entries.Table (J).Byte_Info := 0;
end loop;
end Reset_Name_Table;
--------------------------------
-- Set_Character_Literal_Name --
--------------------------------
procedure Set_Character_Literal_Name
(Buf : in out Bounded_String;
C : Char_Code)
is
begin
Buf.Length := 0;
Append (Buf, 'Q');
Append_Encoded (Buf, C);
end Set_Character_Literal_Name;
procedure Set_Character_Literal_Name (C : Char_Code) is
begin
Set_Character_Literal_Name (Global_Name_Buffer, C);
end Set_Character_Literal_Name;
-----------------------------
-- Set_Name_Table_Boolean1 --
-----------------------------
procedure Set_Name_Table_Boolean1 (Id : Name_Id; Val : Boolean) is
begin
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
Name_Entries.Table (Id).Boolean1_Info := Val;
end Set_Name_Table_Boolean1;
-----------------------------
-- Set_Name_Table_Boolean2 --
-----------------------------
procedure Set_Name_Table_Boolean2 (Id : Name_Id; Val : Boolean) is
begin
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
Name_Entries.Table (Id).Boolean2_Info := Val;
end Set_Name_Table_Boolean2;
-----------------------------
-- Set_Name_Table_Boolean3 --
-----------------------------
procedure Set_Name_Table_Boolean3 (Id : Name_Id; Val : Boolean) is
begin
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
Name_Entries.Table (Id).Boolean3_Info := Val;
end Set_Name_Table_Boolean3;
-------------------------
-- Set_Name_Table_Byte --
-------------------------
procedure Set_Name_Table_Byte (Id : Name_Id; Val : Byte) is
begin
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
Name_Entries.Table (Id).Byte_Info := Val;
end Set_Name_Table_Byte;
-------------------------
-- Set_Name_Table_Int --
-------------------------
procedure Set_Name_Table_Int (Id : Name_Id; Val : Int) is
begin
pragma Assert (Id in Name_Entries.First .. Name_Entries.Last);
Name_Entries.Table (Id).Int_Info := Val;
end Set_Name_Table_Int;
-----------------------------
-- Store_Encoded_Character --
-----------------------------
procedure Store_Encoded_Character (C : Char_Code) is
begin
Append_Encoded (Global_Name_Buffer, C);
end Store_Encoded_Character;
--------------------------------------
-- Strip_Qualification_And_Suffixes --
--------------------------------------
procedure Strip_Qualification_And_Suffixes (Buf : in out Bounded_String) is
J : Integer;
begin
-- Strip package body qualification string off end
for J in reverse 2 .. Buf.Length loop
if Buf.Chars (J) = 'X' then
Buf.Length := J - 1;
exit;
end if;
exit when Buf.Chars (J) /= 'b'
and then Buf.Chars (J) /= 'n'
and then Buf.Chars (J) /= 'p';
end loop;
-- Find rightmost __ or $ separator if one exists. First we position
-- to start the search. If we have a character constant, position
-- just before it, otherwise position to last character but one
if Buf.Chars (Buf.Length) = ''' then
J := Buf.Length - 2;
while J > 0 and then Buf.Chars (J) /= ''' loop
J := J - 1;
end loop;
else
J := Buf.Length - 1;
end if;
-- Loop to search for rightmost __ or $ (homonym) separator
while J > 1 loop
-- If $ separator, homonym separator, so strip it and keep looking
if Buf.Chars (J) = '$' then
Buf.Length := J - 1;
J := Buf.Length - 1;
-- Else check for __ found
elsif Buf.Chars (J) = '_' and then Buf.Chars (J + 1) = '_' then
-- Found __ so see if digit follows, and if so, this is a
-- homonym separator, so strip it and keep looking.
if Buf.Chars (J + 2) in '0' .. '9' then
Buf.Length := J - 1;
J := Buf.Length - 1;
-- If not a homonym separator, then we simply strip the
-- separator and everything that precedes it, and we are done
else
Buf.Chars (1 .. Buf.Length - J - 1) :=
Buf.Chars (J + 2 .. Buf.Length);
Buf.Length := Buf.Length - J - 1;
exit;
end if;
else
J := J - 1;
end if;
end loop;
end Strip_Qualification_And_Suffixes;
---------------
-- To_String --
---------------
function To_String (Buf : Bounded_String) return String is
begin
return Buf.Chars (1 .. Buf.Length);
end To_String;
---------------
-- Tree_Read --
---------------
procedure Tree_Read is
begin
Name_Chars.Tree_Read;
Name_Entries.Tree_Read;
Tree_Read_Data
(Hash_Table'Address,
Hash_Table'Length * (Hash_Table'Component_Size / Storage_Unit));
end Tree_Read;
----------------
-- Tree_Write --
----------------
procedure Tree_Write is
begin
Name_Chars.Tree_Write;
Name_Entries.Tree_Write;
Tree_Write_Data
(Hash_Table'Address,
Hash_Table'Length * (Hash_Table'Component_Size / Storage_Unit));
end Tree_Write;
------------
-- Unlock --
------------
procedure Unlock is
begin
Name_Chars.Set_Last (Name_Chars.Last - Name_Chars_Reserve);
Name_Entries.Set_Last (Name_Entries.Last - Name_Entries_Reserve);
Name_Chars.Locked := False;
Name_Entries.Locked := False;
Name_Chars.Release;
Name_Entries.Release;
end Unlock;
--------
-- wn --
--------
procedure wn (Id : Name_Id) is
begin
if Id not in Name_Entries.First .. Name_Entries.Last then
Write_Str ("<invalid name_id>");
elsif Id = No_Name then
Write_Str ("<No_Name>");
elsif Id = Error_Name then
Write_Str ("<Error_Name>");
else
declare
Buf : Bounded_String;
begin
Append (Buf, Id);
Write_Str (Buf.Chars (1 .. Buf.Length));
end;
end if;
Write_Eol;
end wn;
----------------
-- Write_Name --
----------------
procedure Write_Name (Id : Name_Id) is
Buf : Bounded_String;
begin
if Id >= First_Name_Id then
Append (Buf, Id);
Write_Str (Buf.Chars (1 .. Buf.Length));
end if;
end Write_Name;
------------------------
-- Write_Name_Decoded --
------------------------
procedure Write_Name_Decoded (Id : Name_Id) is
Buf : Bounded_String;
begin
if Id >= First_Name_Id then
Append_Decoded (Buf, Id);
Write_Str (Buf.Chars (1 .. Buf.Length));
end if;
end Write_Name_Decoded;
-- Package initialization, initialize tables
begin
Reinitialize;
end Namet;
|
-- part of OpenGLAda, (c) 2017 Felix Krause
-- released under the terms of the MIT license, see the file "COPYING"
with Ada.Strings.Unbounded;
with GL.Types;
package GL.Context is
pragma Preelaborate;
use GL.Types;
type String_List is array (Positive range <>) of
Ada.Strings.Unbounded.Unbounded_String;
Null_String_List : constant String_List := (2 .. 1 => <>);
-- these two require OpenGL 3:
function Major_Version return Int;
function Minor_Version return Int;
-- legacy (deprecated in OpenGL 3)
function Version_String return String;
function Vendor return String;
function Renderer return String;
-- uses OpenGL 3 interface if available, otherwise old interface
function Extensions return String_List;
function Has_Extension (Name : String) return Boolean;
function Primary_Shading_Language_Version return String;
-- available since OpenGL 4.3:
function Supported_Shading_Language_Versions return String_List;
function Supports_Shading_Language_Version (Name : String) return Boolean;
end GL.Context;
|
function loop
(Self : Pcap_T ;
Arg2 : int;
Arg3 : Pcap_Handler;
Arg4 : access Unsigned_Char) return Integer;
function Dispatch
(Self : Pcap_T ;
Arg2 : int;
Arg3 : Pcap_Handler;
Arg4 : access Unsigned_Char) return Integer;
function Next (Self : Pcap_T ; Arg2 : access Pcap_Pkthdr) return access Unsigned_Char
function Next_Ex
(Self : Pcap_T ;
Arg2 : System.Address;
Arg3 : System.Address) return Integer;
procedure Breakloop (Arg1 : access Pcap_T)
function Stats (Self : Pcap_T ; Arg2 : access Pcap_Stat) return Integer;
function Setfilter (Self : Pcap_T ; Arg2 : access Pcap_Bpf_H.Bpf_Program) return Integer;
function Setdirection (Self : Pcap_T ; Arg2 : Pcap_Direction_T) return Integer;
function Getnonblock (Self : Pcap_T ; Arg2 : String) return Integer;
function Setnonblock
(Self : Pcap_T ;
Arg2 : int;
Arg3 : String) return Integer;
function Inject
(Self : Pcap_T ;
Arg2 : System.Address;
Arg3 : Size_T) return Integer;
function Sendpacket
(Self : Pcap_T ;
Arg2 : access Unsigned_Char;
Arg3 : int) return Integer;
function Statustostr (Arg1 : int) return String
function Strerror (Arg1 : int) return String
function Geterr (Arg1 : access Pcap_T) return String
procedure Perror (Self : Pcap_T ; Arg2 : String)
function Compile
(Self : Pcap_T ;
Arg2 : access Pcap_Bpf_H.Bpf_Program;
Arg3 : String;
Arg4 : int;
Arg5 : Unsigned) return Integer;
function Compile_Nopcap
(Arg1 : int;
Arg2 : int;
Arg3 : access Pcap_Bpf_H.Bpf_Program;
Arg4 : String;
Arg5 : int;
Arg6 : Unsigned) return Integer;
procedure Freecode (Arg1 : access Pcap_Bpf_H.Bpf_Program)
function Offline_Filter
(Arg1 : access constant Pcap_Bpf_H.Bpf_Program;
Arg2 : access constant Pcap_Pkthdr;
Arg3 : access Unsigned_Char) return Integer;
function Datalink (Arg1 : access Pcap_T) return Integer;
function Datalink_Ext (Arg1 : access Pcap_T) return Integer;
function List_Datalinks (Self : Pcap_T ; Arg2 : System.Address) return Integer;
function Set_Datalink (Self : Pcap_T ; Arg2 : int) return Integer;
procedure Free_Datalinks (Arg1 : access int)
function Datalink_Name_To_Val (Arg1 : String) return Integer;
function Datalink_Val_To_Name (Arg1 : int) return String
function Datalink_Val_To_Description (Arg1 : int) return String
function Snapshot (Arg1 : access Pcap_T) return Integer;
function Is_Swapped (Arg1 : access Pcap_T) return Integer;
function Major_Version (Arg1 : access Pcap_T) return Integer;
function Minor_Version (Arg1 : access Pcap_T) return Integer;
function File (Arg1 : access Pcap_T) return access Interfaces.C_Streams.FILEs
function Fileno (Arg1 : access Pcap_T) return Integer;
function Dump_Open (Self : Pcap_T ; Arg2 : String) return access Pcap_Dumper_T
function Dump_Fopen (Self : Pcap_T ; Fp : access Interfaces.C_Streams.FILEs) return access Pcap_Dumper_T
function Dump_File (Arg1 : access Pcap_Dumper_T) return access Interfaces.C_Streams.FILEs
function Dump_Ftell (Arg1 : access Pcap_Dumper_T) return long
function Dump_Flush (Arg1 : access Pcap_Dumper_T) return Integer;
procedure Dump_Close (Arg1 : access Pcap_Dumper_T)
procedure Dump
(Arg1 : access Unsigned_Char;
Arg2 : access constant Pcap_Pkthdr;
Arg3 : access Unsigned_Char)
function Findalldevs (Arg1 : System.Address; Arg2 : String) return Integer;
procedure Freealldevs (Arg1 : access Pcap_If_T)
function Lib_Version return String
function Bpf_Filter
(Arg1 : access constant Pcap_Bpf_H.Bpf_Insn;
Arg2 : access Unsigned_Char;
Arg3 : Unsigned;
Arg4 : Unsigned) return Unsigned
function Bpf_Validate (Arg1 : access constant Pcap_Bpf_H.Bpf_Insn; Arg2 : int) return Integer;
function Bpf_Image (Arg1 : access constant Pcap_Bpf_H.Bpf_Insn; Arg2 : int) return String
procedure Bpf_Dump (Arg1 : access constant Pcap_Bpf_H.Bpf_Program; Arg2 : int)
function Get_Selectable_Fd (Arg1 : Pcap_T) return Integer;
end PCAP.Low_Level.Pcap_Pcap_H;
|
------------------------------------------------------------------------------
-- --
-- GNU ADA RUN-TIME LIBRARY (GNARL) COMPONENTS --
-- --
-- A D A . E X C E P T I O N S . P O L L --
-- (version supporting asynchronous abort test) --
-- --
-- B o d y --
-- --
-- $Revision$
-- --
-- Copyright (C) 1992-2000, Free Software Foundation, Inc. --
-- --
-- GNARL is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 2, or (at your option) any later ver- --
-- sion. GNARL is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
-- for more details. You should have received a copy of the GNU General --
-- Public License distributed with GNARL; see file COPYING. If not, write --
-- to the Free Software Foundation, 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. --
-- --
-- GNARL was developed by the GNARL team at Florida State University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
-- This version is for targets that do not support per-thread asynchronous
-- signals. On such targets, we require compilation with the -gnatP switch
-- that activates periodic polling. Then in the body of the polling routine
-- we test for asynchronous abort.
-- NT, OS/2, HPUX/DCE and SCO currently use this file
with System.Soft_Links;
-- used for Check_Abort_Status
separate (Ada.Exceptions)
----------
-- Poll --
----------
procedure Poll is
begin
-- Test for asynchronous abort on each poll
if System.Soft_Links.Check_Abort_Status.all /= 0 then
raise Standard'Abort_Signal;
end if;
end Poll;
|
------------------------------------------------------------------------------
-- --
-- Copyright (C) 2018-2021, 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. --
-- --
------------------------------------------------------------------------------
package body USB.Device.HID.Keyboard is
------------------
-- Set_Modifier --
------------------
procedure Set_Modifier (This : in out Instance;
M : Modifiers;
Value : Boolean := True)
is
Mods : UInt8 renames This.Report (This.Report'First);
begin
if Value then
Mods := Mods or M'Enum_Rep;
else
Mods := Mods and (not M'Enum_Rep);
end if;
end Set_Modifier;
--------------------
-- Key_Codes_Full --
--------------------
function Key_Codes_Full (This : Instance) return Boolean
is (This.Key_Code_Index = Max_Key_Codes);
-------------------
-- Push_Key_Code --
-------------------
procedure Push_Key_Code (This : in out Instance;
Code : UInt8)
is
begin
if This.Key_Codes_Full then
return;
end if;
This.Report (This.Report'First + 2 + This.Key_Code_Index) := Code;
This.Key_Code_Index := This.Key_Code_Index + 1;
end Push_Key_Code;
-----------
-- Is_On --
-----------
function Is_On (This : Instance; L : LEDs) return Boolean
is ((This.LEDs and L'Enum_Rep) /= 0);
-----------------
-- Send_Report --
-----------------
overriding
procedure Send_Report (This : in out Instance;
UDC : in out USB_Device_Controller'Class)
is
begin
Parent (This).Send_Report (UDC);
This.Key_Code_Index := 0;
end Send_Report;
----------------
-- Set_Report --
----------------
overriding
function Set_Report (This : in out Instance;
Typ : UInt8;
ID : UInt8;
Data : UInt8_Array)
return Setup_Request_Answer
is
begin
if Data'Length /= 1
or else
Typ /= 2
or else
ID /= 0
then
return Not_Supported;
end if;
This.LEDs := Data (Data'First);
return Handled;
end Set_Report;
end USB.Device.HID.Keyboard;
|
------------------------------------------------------------------------------
-- --
-- Copyright (C) 2016, 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.Real_Time_Clock;
package STM32.RTC is
type RTC_Device is new HAL.Real_Time_Clock.RTC_Device with private;
type RTCSEL is (Use_LSE, Use_LSI, Use_HSE);
for RTCSEL use
(Use_LSE => 2#01#,
Use_LSI => 2#10#,
Use_HSE => 2#11#);
overriding
procedure Set (This : in out RTC_Device;
Time : HAL.Real_Time_Clock.RTC_Time;
Date : HAL.Real_Time_Clock.RTC_Date);
overriding
procedure Get (This : in out RTC_Device;
Time : out HAL.Real_Time_Clock.RTC_Time;
Date : out HAL.Real_Time_Clock.RTC_Date);
overriding
function Get_Time (This : RTC_Device) return HAL.Real_Time_Clock.RTC_Time;
overriding
function Get_Date (This : RTC_Device) return HAL.Real_Time_Clock.RTC_Date;
procedure Enable (This : in out RTC_Device; Clock_Source : RTCSEL);
procedure Disable (This : in out RTC_Device);
procedure Set_WUT_Interrupt (This : in out RTC_Device; Timeout : UInt16);
procedure Clear_RTC_Wakeup;
function RTC_Wakeup_Flag return Boolean;
private
type RTC_Device is new HAL.Real_Time_Clock.RTC_Device with
null record;
end STM32.RTC;
|
-- Chip Richards, Phoenix AZ, April 2007
-- Lumen would not be possible without the support and contributions of a cast
-- of thousands, including and primarily Rod Kay.
-- This code is covered by the ISC License:
--
-- Copyright © 2010, NiEstu
--
-- Permission to use, copy, modify, and/or 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.
-- For purposes of this package:
--
-- byte -- 8 bits (octet, C char, GNAT Character/Short_Short_Integer)
-- short -- 16 bits (C short, GNAT Short_Integer)
-- word -- 32 bits (C int/long(32), GNAT Integer/Long_Integer)
-- long -- 64 bits (C long(64), GNAT Long_Long_Integer)
--
-- Note that these are not identical to the names/definitions used on pretty
-- much any extant 32- or 64-bit platform, though they are somewhat biased to
-- early 21st-century 32-bit platforms.
package Lumen.Binary is
---------------------------------------------------------------------------
--
-- Public constants
--
---------------------------------------------------------------------------
-- Basic structure (sizes) of fundamental binary data types
Byte_Bits : constant := 8;
Short_Bits : constant := 16;
Word_Bits : constant := 32;
Long_Bits : constant := 64;
-- Derived sizes
Short_Bytes : constant := Short_Bits / Byte_Bits;
Word_Bytes : constant := Word_Bits / Byte_Bits;
Long_Bytes : constant := Long_Bits / Byte_Bits;
-- "Last-bit" values for use in rep clauses
Byte_LB : constant := Byte_Bits - 1;
Short_LB : constant := Short_Bits - 1;
Word_LB : constant := Word_Bits - 1;
Long_LB : constant := Long_Bits - 1;
---------------------------------------------------------------------------
--
-- Public types
--
---------------------------------------------------------------------------
-- Unsigned types
type Byte is mod 2 ** Byte_Bits;
type Short is mod 2 ** Short_Bits;
type Word is mod 2 ** Word_Bits;
type Long is mod 2 ** Long_Bits;
for Byte'Size use Byte_Bits;
for Short'Size use Short_Bits;
for Word'Size use Word_Bits;
for Long'Size use Long_Bits;
-- Signed types
Byte_Exp : constant := Byte_Bits - 1;
Short_Exp : constant := Short_Bits - 1;
Word_Exp : constant := Word_Bits - 1;
Long_Exp : constant := Long_Bits - 1;
type S_Byte is new Integer range -(2 ** Byte_Exp) .. (2 ** Byte_Exp) - 1;
type S_Short is new Integer range -(2 ** Short_Exp) .. (2 ** Short_Exp) - 1;
type S_Word is new Integer range -(2 ** Word_Exp) .. (2 ** Word_Exp) - 1;
type S_Long is new Long_Long_Integer; -- must use this for now; fixme later
for S_Byte'Size use Byte_Bits;
for S_Short'Size use Short_Bits;
for S_Word'Size use Word_Bits;
for S_Long'Size use Long_Bits;
-- Array types built from the above basic types
type Byte_String is array (Natural range <>) of Byte;
type Short_String is array (Natural range <>) of Short;
type Word_String is array (Natural range <>) of Word;
type Long_String is array (Natural range <>) of Long;
type S_Byte_String is array (Natural range <>) of S_Byte;
type S_Short_String is array (Natural range <>) of S_Short;
type S_Word_String is array (Natural range <>) of S_Word;
type S_Long_String is array (Natural range <>) of S_Long;
-- Useful byte-string types for data conversion
subtype Short_Byte_String is Byte_String (1 .. Short_Bytes);
subtype Word_Byte_String is Byte_String (1 .. Word_Bytes);
subtype Long_Byte_String is Byte_String (1 .. Long_Bytes);
---------------------------------------------------------------------------
end Lumen.Binary;
|
with Ada.Numerics.Generic_Elementary_Functions;
package body Ada_Voxel is
package Float_Functions is
new Ada.Numerics.Generic_Elementary_Functions (Float);
------------
-- Render --
------------
procedure Render (Cam_X : Float;
Cam_Y : Float;
Cam_Angle : Float;
Cam_Height : Float;
Horizon : Float;
Distance : Float;
Scale_Height : Float)
is
Y_Buffer : array (0 .. Screen_Width - 1) of Integer := (others => Screen_Height);
Dz : Float := 1.0;
Z : Float := 1.0;
begin
while Z < Distance loop
declare
Sin : Float := Float_Functions.Sin (Cam_Angle);
Cos : Float := Float_Functions.Cos (Cam_Angle);
Left_X : Float := (-Cos * Z - Sin * Z) + Cam_X;
Left_Y : Float := ( Sin * Z - Cos * Z) + Cam_Y;
Right_X : Float := ( Cos * Z - Sin * Z) + Cam_X;
Right_Y : Float := (-Sin * Z - Cos * Z) + Cam_Y;
Dx : constant Float := (Right_X - Left_X) / Float (Screen_Width);
Dy : constant Float := (Right_Y - Left_Y) / Float (Screen_Width);
Height_On_Screen : Float;
begin
for A in 0 .. Screen_Width - 1 loop
Height_On_Screen := Cam_Height - Float (Height_Map (Integer (Left_X), Integer (Left_Y)));
Height_On_Screen := Float (Height_On_Screen / Z) * Scale_Height + Horizon;
Draw_Vertical_Line (A,
Integer (Height_On_Screen),
Integer (Y_Buffer (A)),
Color_Map (Integer (Left_X), Integer (Left_Y)));
if Integer (Height_On_Screen) < Y_Buffer (A) then
Y_Buffer (A) := Integer (Height_On_Screen);
end if;
Left_X := Left_X + Dx;
Left_Y := Left_Y + Dy;
end loop;
end;
Z := Z + Dz;
Dz := Dz + 0.01;
end loop;
end Render;
end Ada_Voxel;
|
-- -----------------------------------------------------------------------------
-- smk, the smart make
-- © 2018 Lionel Draghi <lionel.draghi@free.fr>
-- SPDX-License-Identifier: APSL-2.0
-- -----------------------------------------------------------------------------
-- 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: Smk.Makefiles specification
--
-- Purpose:
-- This package manages the Makefile data structure, and provided related
-- analysis and dump services.
--
-- Effects:
--
-- Performance:
--
-- -----------------------------------------------------------------------------
with Ada.Calendar;
with Ada.Containers.Doubly_Linked_Lists;
with Ada.Strings.Unbounded; use Ada.Strings.Unbounded;
with Smk.Run_Files; use Smk.Run_Files;
private package Smk.Makefiles is
-- --------------------------------------------------------------------------
type Makefile_Entry is record
Line : Positive;
Section : Section_Names := Default_Section;
Command : Command_Lines := Command_Lines (Null_Unbounded_String);
Already_Run : Boolean := False;
-- used to avoid running the same command for a different reason
-- during the analysis.
end record;
package Makefile_Entry_Lists is
new Ada.Containers.Doubly_Linked_Lists (Makefile_Entry, "=");
-- --------------------------------------------------------------------------
type Makefile is record
Name : File_Name;
Time_Tag : Ada.Calendar.Time;
Entries : Makefile_Entry_Lists.List;
end record;
-- --------------------------------------------------------------------------
procedure Analyze (Makefile_Name : in String;
Line_List : out Makefile);
-- Analyze the Makefile provided on command line.
-- --------------------------------------------------------------------------
procedure Dump (The_Make_File : in Makefile);
-- Dump Smk undestanding of a Makefile, only the useful part of the
-- Current Makefile, that is without any comment or blank line.
end Smk.Makefiles;
|
package body Setup is
protected body Motor_Setup is
procedure Calibrate_Motors_If_Required is
begin
if not Setup_Done then
--Calibrating left and right ESC
Put("Start Setup");
delay 4.0;
--Write(3,1000);
--Set_Analog_Period_Us(20000);
--Write(28,1000);
--Set_Analog_Period_Us(20000);
--NRF52_DK.Time.Delay_Ms(2000);
--Write(3,2000);
--Set_Analog_Period_Us(20000);
--Write(28,2000);
--Set_Analog_Period_Us(20000);
--NRF52_DK.Time.Delay_Ms (2000);
Setup_Done := True;
end if;
end Calibrate_Motors_If_Required;
end Motor_Setup;
end Setup;
|
-- 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 Tcl.Strings; use Tcl.Strings;
with Tk.Widget; use Tk.Widget;
with Tk.TtkWidget; use Tk.TtkWidget;
-- ****h* Tk/TtkLabelFrame
-- FUNCTION
-- Provides code for manipulate Tk widget ttk::labelframe
-- SOURCE
package Tk.TtkLabelFrame is
-- ****
--## rule off REDUCEABLE_SCOPE
-- ****t* TtkLabelFrame/TtkLabelFrame.Tk_Frame
-- FUNCTION
-- The Tk identifier of the ttk::labelframe
-- HISTORY
-- 8.6.0 - Added
-- SOURCE
subtype Ttk_Label_Frame is Ttk_Widget;
-- ****
-- ****s* TtkLabelFrame/TtkLabelFrame.Ttk_Label_Frame_Options
-- FUNCTION
-- Data structure for all available options for the Tk ttk::labelframe which can
-- be changed after creation of a widget
-- OPTIONS
-- Border_Width - The width of the ttk::labelframe's border
-- Height - Height of the ttk::labelframe.
-- Label_Anchor - The direction where to place the lable of Tk
-- ttk::labelframe. Works only when Text option isn't empty
-- Label_Widget - Tk_Widget used as a label for Tk ttk::labelframe.
-- Padding - Amount of extra space to allocate for the ttk::labelframe. If some
-- elemets are empty then, bottom defaults to top, right defaults
-- to left, and top defaults to left. Order of the elements:
-- left, top, right, bottom
-- Relief - 3-D effect desired for the ttk::labelframe
-- Text - The text which will be displayed in label of Tk
-- ttk::labelframe
-- Width - Width of the ttk::labelframe
-- Underline - The index of the character in the ttk::labelframe text
-- which will be underlined. The index starts from 0
-- HISTORY
-- 8.6.0 - Added
-- SOURCE
type Ttk_Label_Frame_Options is new Ttk_Widget_Options with record
Border_Width: Pixel_Data := Empty_Pixel_Data;
Height: Pixel_Data := Empty_Pixel_Data;
Label_Anchor: Anchor_Directions := NONE;
Label_Widget: Tk_Widget := Null_Widget;
Padding: Padding_Data := Empty_Padding_Data;
Relief: Relief_Type := NONE;
Text: Tcl_String := Null_Tcl_String;
Underline: Extended_Natural := -1;
Width: Pixel_Data := Empty_Pixel_Data;
end record;
-- ****
-- ****f* TtkLabelFrame/TtkLabelFrame.Configure
-- FUNCTION
-- Set the selected options for the selected ttk::labelframe
-- PARAMETERS
-- Frame_Widget - Ttk_Label_Frame which options will be set
-- Options - The record with new values for the ttk::labelframe options
-- HISTORY
-- 8.6.0 - Added
-- EXAMPLE
-- -- Set background to black for ttk::labelframe My_Frame
-- Configure(My_Frame, (Background => To_Tcl_String("black"), others => <>));
-- SEE ALSO
-- Frame.Get_Options
-- COMMANDS
-- Widget configure Options
-- SOURCE
procedure Configure
(Frame_Widget: Ttk_Label_Frame; Options: Ttk_Label_Frame_Options) with
Pre'Class => Frame_Widget /= Null_Widget,
Test_Case => (Name => "Test_Configure_TtkLabelFrame", Mode => Nominal);
-- ****
-- ****f* TtkLabelFrame/TtkLabelFrame.Create_(function)
-- FUNCTION
-- Create a new Tk ttk::labelframe widget with the selected pathname and options
-- PARAMETERS
-- Path_Name - Tk pathname for the newly created ttk::labelframe
-- Options - Options for the newly created ttk::labelframe
-- Interpreter - Tcl interpreter on which the ttk::labelframe will be created. Can
-- be empty. Default value is the default Tcl interpreter
-- RESULT
-- The Tk identifier of the newly created ttk::labelframe widget
-- HISTORY
-- 8.6.0 - Added
-- EXAMPLE
-- -- Create the ttk::labelframe with pathname .myframe and black background
-- My_Frame: constant Ttk_Label_Frame := Create(".myframe", (Background => To_Tcl_String("black"),
-- others => <>));
-- SEE ALSO
-- TtkLabelFrame.Create_(procedure)
-- COMMANDS
-- ttk::labelframe Path_Name Options
-- SOURCE
function Create
(Path_Name: Tk_Path_String; Options: Ttk_Label_Frame_Options;
Interpreter: Tcl_Interpreter := Get_Interpreter)
return Ttk_Label_Frame with
Pre'Class => Path_Name'Length > 0 and Interpreter /= Null_Interpreter,
Test_Case => (Name => "Test_Create_TtkLabelFrame1", Mode => Nominal);
-- ****
-- ****f* TtkLabelFrame/TtkLabelFrame.Create_(procedure)
-- FUNCTION
-- Create a new Tk ttk::frame widget with the selected pathname and options
-- PARAMETERS
-- Frame_Widget - Ttk_Label_Frame identifier which will be returned
-- Path_Name - Tk pathname for the newly created ttk::labelframe
-- Options - Options for the newly created ttk::labelframe
-- Interpreter - Tcl interpreter on which the ttk::labelframe will be created. Can
-- be empty. Default value is the default Tcl interpreter
-- OUTPUT
-- The Widget parameter as Tk identifier of the newly created ttk::labelframe widget
-- HISTORY
-- 8.6.0 - Added
-- EXAMPLE
-- -- Create the ttk::labelframe with pathname .myframe
-- declare
-- My_Frame: Ttk_Label_Frame;
-- begin
-- Create(My_Frame, ".myframe", Default_Ttk_Label_Frame_Create_Options);
-- end;
-- SEE ALSO
-- Ttk_Label_Frame.Create_(function)
-- COMMANDS
-- ttk::labelframe Path_Name Options
-- SOURCE
procedure Create
(Frame_Widget: out Ttk_Label_Frame; Path_Name: Tk_Path_String;
Options: Ttk_Label_Frame_Options;
Interpreter: Tcl_Interpreter := Get_Interpreter) with
Pre'Class => Path_Name'Length > 0 and Interpreter /= Null_Interpreter,
Test_Case => (Name => "Test_Create_TtkLabelFrame2", Mode => Nominal);
-- ****
-- ****f* TtkLabelFrame/TtkLabelFrame.Get_Options
-- FUNCTION
-- Get all values of Tk options of the selected ttk::labelframe
-- PARAMETERS
-- Frame_Widget - Ttk_Label_Frame which options' values will be taken
-- RESULT
-- Ttk_Label_Frame_Options record with values of the selected ttk::labelframe
-- options
-- HISTORY
-- 8.6.0 - Added
-- EXAMPLE
-- -- Get all values of option of ttk::labelframe with pathname .myframe
-- My_Frame_Options: constant Ttk_Label_Frame_Options := Get_Options(Get_Widget(".myframe"));
-- COMMANDS
-- Widget configure
-- SOURCE
function Get_Options
(Frame_Widget: Ttk_Label_Frame) return Ttk_Label_Frame_Options with
Pre'Class => Frame_Widget /= Null_Widget,
Test_Case => (Name => "Test_Get_Options_TtkLabelFrame", Mode => Nominal);
-- ****
-- ****d* TtkLabelFrame/TtkLabelFrame.Default_Ttk_Label_Frame_Options
-- FUNCTION
-- Default options for ttk::labelframe widget
-- HISTORY
-- 8.6.0 - Added
-- SOURCE
Default_Ttk_Label_Frame_Options: constant Ttk_Label_Frame_Options :=
Ttk_Label_Frame_Options'(others => <>);
-- ****
--## rule on REDUCEABLE_SCOPE
end Tk.TtkLabelFrame;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- S Y S T E M --
-- --
-- S p e c --
-- (AIX/PPC Version) --
-- --
-- Copyright (C) 1992-2020, 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. --
-- --
-- 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. --
-- --
------------------------------------------------------------------------------
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).
pragma No_Elaboration_Code_All;
-- Allow the use of that restriction in units that WITH this unit
type Name is (SYSTEM_NAME_GNAT);
System_Name : constant Name := SYSTEM_NAME_GNAT;
-- System-Dependent Named Numbers
Min_Int : constant := -2 ** (Standard'Max_Integer_Size - 1);
Max_Int : constant := 2 ** (Standard'Max_Integer_Size - 1) - 1;
Max_Binary_Modulus : constant := 2 ** Standard'Max_Integer_Size;
Max_Nonbinary_Modulus : constant := 2 ** Integer'Size - 1;
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;
pragma Preelaborable_Initialization (Address);
Null_Address : constant Address;
Storage_Unit : constant := 8;
Word_Size : constant := Standard'Word_Size;
Memory_Size : constant := 2 ** Word_Size;
-- 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;
pragma Warnings (Off, Default_Bit_Order); -- kill constant condition warning
-- Priority-related Declarations (RM D.1)
-- 0 .. 126 corresponds to the system priority range 1 .. 127.
--
-- If the scheduling policy is SCHED_FIFO or SCHED_RR the runtime makes use
-- of the entire range provided by the system.
--
-- If the scheduling policy is SCHED_OTHER the only valid system priority
-- is 1 and that is the only value ever passed to the system, regardless of
-- how priorities are set by user programs.
Max_Priority : constant Positive := 125;
Max_Interrupt_Priority : constant Positive := 126;
subtype Any_Priority is Integer range 0 .. 126;
subtype Priority is Any_Priority range 0 .. 125;
subtype Interrupt_Priority is Any_Priority range 126 .. 126;
Default_Priority : constant Priority :=
(Priority'First + Priority'Last) / 2;
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.
Backend_Divide_Checks : constant Boolean := False;
Backend_Overflow_Checks : constant Boolean := True;
Command_Line_Args : constant Boolean := True;
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;
Machine_Overflows : constant Boolean := False;
Machine_Rounds : constant Boolean := True;
Preallocated_Stacks : constant Boolean := False;
Signed_Zeros : constant Boolean := True;
Stack_Check_Default : constant Boolean := False;
Stack_Check_Probes : constant Boolean := True;
Stack_Check_Limits : constant Boolean := False;
Support_Aggregates : constant Boolean := True;
Support_Atomic_Primitives : constant Boolean := True;
Support_Composite_Assign : constant Boolean := True;
Support_Composite_Compare : constant Boolean := True;
Support_Long_Shifts : constant Boolean := True;
Always_Compatible_Rep : constant Boolean := False;
Suppress_Standard_Library : constant Boolean := False;
Use_Ada_Main_Program_Name : constant Boolean := False;
Frontend_Exceptions : constant Boolean := False;
ZCX_By_Default : constant Boolean := True;
end System;
|
package body Swarm_Configuration is
use Real_Elementary_Functions;
------------------------------
-- Inter_Swarm_Acceleration --
------------------------------
function Inter_Swarm_Attraction (x : Distances) return Acc_Scalar is
Attract_Close : constant Acc_Scalar := -((Arctan ((x - Attract_Close_Centre) * Attract_Close_Steepness) / Pi) + 0.5);
Attract_Far : constant Acc_Scalar := +((Arctan ((x - Attract_Far_Centre) * Attract_Far_Steepness) / Pi) - 0.5);
begin
return -Attract_Strength * Attract_Close * Attract_Far;
end Inter_Swarm_Attraction;
--
function Inter_Swarm_Repulsion (x : Distances) return Acc_Scalar is
Repulse : constant Acc_Scalar := -((Arctan ((x - Repulse_Centre) * Repulse_Steepness) / Pi) - 0.5);
begin
return Repulse_Strength * Repulse;
end Inter_Swarm_Repulsion;
--
function Inter_Swarm_Acceleration (x : Distances) return Acc_Scalar is
(Inter_Swarm_Repulsion (x) + Inter_Swarm_Attraction (x));
--
--
--
function Approach_Acceleration (x : Distances;
Velocity_Towards_Goal : Real) return Acc_Scalar is
(Approach_Strength * (Max_Approach_Velocity * Arctan (Approach_Steepness * x) - Velocity_Towards_Goal));
--
--
--
function Approach_Acceleration (Velocity_Towards_Goal : Real) return Acc_Scalar is
(Approach_Strength * (Max_Approach_Velocity - Velocity_Towards_Goal));
--
--
--
function Velocity_Matching (Velocity, Velocity_Difference : Velocities) return Accelerations is
Proposed_Acceleration : constant Accelerations := (-Velocity_Matching_Strength) * Velocity_Difference;
Small_Interval : constant Real := 0.01;
begin
if abs (Velocity + Small_Interval * Proposed_Acceleration) > abs (Velocity) then
return Proposed_Acceleration;
else
return Zero_Vector_3D;
end if;
end Velocity_Matching;
--
end Swarm_Configuration;
|
------------------------------------------------------------------------------
-- Copyright (c) 2017-2019, 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. --
------------------------------------------------------------------------------
------------------------------------------------------------------------------
-- Natools.Web.ACL.Sx_Backends provides an extremely simple ACL backend --
-- based on a S-expression file. --
------------------------------------------------------------------------------
private with Natools.Constant_Indefinite_Ordered_Maps;
private with Natools.References;
private with Natools.Storage_Pools;
package Natools.Web.ACL.Sx_Backends is
type Backend is new ACL.Backend with private;
overriding procedure Authenticate
(Self : in Backend;
Exchange : in out Exchanges.Exchange);
function Create
(Arguments : in out S_Expressions.Lockable.Descriptor'Class)
return ACL.Backend'Class;
type Hash_Function is access function
(Message : in S_Expressions.Atom)
return S_Expressions.Atom;
procedure Register
(Id : in Character;
Fn : in Hash_Function);
private
subtype Hash_Id is Character;
package Token_Maps is new Constant_Indefinite_Ordered_Maps
(S_Expressions.Atom, Containers.Identity,
S_Expressions.Less_Than, Containers."=");
type Hashed_Token_Array is array (Hash_Id range <>)
of Token_Maps.Constant_Map;
package Hashed_Token_Array_Refs is new References
(Hashed_Token_Array,
Storage_Pools.Access_In_Default_Pool'Storage_Pool,
Storage_Pools.Access_In_Default_Pool'Storage_Pool);
type Backend is new ACL.Backend with record
Map : Token_Maps.Constant_Map;
Hashed : Hashed_Token_Array_Refs.Immutable_Reference;
end record;
type Hash_Function_Array is array (Hash_Id range <>) of Hash_Function;
package Hash_Function_Array_Refs is new References
(Hash_Function_Array,
Storage_Pools.Access_In_Default_Pool'Storage_Pool,
Storage_Pools.Access_In_Default_Pool'Storage_Pool);
Hash_Function_DB : Hash_Function_Array_Refs.Reference;
end Natools.Web.ACL.Sx_Backends;
|
-----------------------------------------------------------------------
-- mat-targets-gtkmat - Gtk target management
-- Copyright (C) 2014 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with Glib.Error;
with Glib.Object;
with Gtk.Main;
with Gtk.Label;
with Gtk.Frame;
with Gtk.Scrolled_Window;
with Gtk.Viewport;
with MAT.Callbacks;
with MAT.Consoles.Text;
with MAT.Consoles.Gtkmat;
package body MAT.Targets.Gtkmat is
-- ------------------------------
-- Initialize the target instance.
-- ------------------------------
overriding
procedure Initialize (Target : in out Target_Type) is
begin
Target.Options.Interactive := False;
Target.Options.Graphical := True;
Target.Console := new MAT.Consoles.Text.Console_Type;
end Initialize;
-- ------------------------------
-- Release the storage.
-- ------------------------------
overriding
procedure Finalize (Target : in out Target_Type) is
use type Gtk.Widget.Gtk_Widget;
begin
if Target.Main /= null then
Target.Main.Destroy;
Target.About.Destroy;
Target.Chooser.Destroy;
end if;
end Finalize;
-- Load the glade XML definition.
procedure Load_UI (Target : in out Target_Type) is separate;
-- ------------------------------
-- Initialize the widgets and create the Gtk gui.
-- ------------------------------
procedure Initialize_Widget (Target : in out Target_Type;
Widget : out Gtk.Widget.Gtk_Widget) is
Error : aliased Glib.Error.GError;
Result : Glib.Guint;
Timeline : Gtk.Widget.Gtk_Widget;
Scrolled : Gtk.Scrolled_Window.Gtk_Scrolled_Window;
Viewport : Gtk.Viewport.Gtk_Viewport;
begin
if Target.Options.Graphical then
Gtk.Main.Init;
Gtkada.Builder.Gtk_New (Target.Builder);
-- Result := Target.Builder.Add_From_File ("mat.glade", Error'Access);
Load_UI (Target);
MAT.Callbacks.Initialize (Target'Unchecked_Access, Target.Builder);
Target.Builder.Do_Connect;
Widget := Gtk.Widget.Gtk_Widget (Target.Builder.Get_Object ("main"));
Target.Main := Widget;
Target.About := Gtk.Widget.Gtk_Widget (Target.Builder.Get_Object ("about"));
Target.Chooser := Gtk.Widget.Gtk_Widget (Target.Builder.Get_Object ("filechooser"));
Target.Gtk_Console := new MAT.Consoles.Gtkmat.Console_Type;
Target.Gtk_Console.Initialize
(Gtk.Frame.Gtk_Frame (Target.Builder.Get_Object ("consoleFrame")));
Target.Console := Target.Gtk_Console.all'Access;
MAT.Events.Gtkmat.Create (Target.Events);
Timeline := Gtk.Widget.Gtk_Widget (Target.Builder.Get_Object ("scrolledTimeline"));
Scrolled := Gtk.Scrolled_Window.Gtk_Scrolled_Window (Timeline);
Timeline := Gtk.Widget.Gtk_Widget (Target.Builder.Get_Object ("viewport1"));
Viewport := Gtk.Viewport.Gtk_Viewport (Timeline);
Viewport.Add (Target.Events.Drawing);
else
Widget := null;
end if;
end Initialize_Widget;
-- ------------------------------
-- Enter in the interactive loop reading the commands from the standard input
-- and executing the commands.
-- ------------------------------
overriding
procedure Interactive (Target : in out Target_Type) is
Main : Gtk.Widget.Gtk_Widget;
begin
if Target.Options.Graphical then
Main := Gtk.Widget.Gtk_Widget (Target.Builder.Get_Object ("main"));
Main.Show_All;
end if;
if Target.Options.Interactive and Target.Options.Graphical then
Target.Gui_Task.Start (Target'Unchecked_Access);
end if;
if Target.Options.Graphical then
Gtk.Main.Main;
else
MAT.Targets.Target_Type (Target).Interactive;
end if;
end Interactive;
task body Gtk_Loop is
Main : Target_Type_Access;
begin
select
accept Start (Target : in Target_Type_Access) do
Main := Target;
end Start;
MAT.Targets.Target_Type (Main.all).Interactive;
or
terminate;
end select;
end Gtk_Loop;
-- ------------------------------
-- Set the UI label with the given value.
-- ------------------------------
procedure Set_Label (Target : in Target_Type;
Name : in String;
Value : in String) is
use type Glib.Object.GObject;
Object : constant Glib.Object.GObject := Target.Builder.Get_Object (Name);
Label : Gtk.Label.Gtk_Label;
begin
if Object /= null then
Label := Gtk.Label.Gtk_Label (Object);
Label.Set_Label (Value);
end if;
end Set_Label;
-- ------------------------------
-- Create a process instance to hold and keep track of memory and other information about
-- the given process ID.
-- ------------------------------
overriding
procedure Create_Process (Target : in out Target_Type;
Pid : in MAT.Types.Target_Process_Ref;
Path : in Ada.Strings.Unbounded.Unbounded_String;
Process : out Target_Process_Type_Access) is
begin
MAT.Targets.Target_Type (Target).Create_Process (Pid, Path, Process);
Target.Set_Label ("process_info", "Pid:" & MAT.Types.Target_Process_Ref'Image (Pid));
end Create_Process;
-- ------------------------------
-- Refresh the information about the current process.
-- ------------------------------
procedure Refresh_Process (Target : in out Target_Type) is
use type MAT.Events.Targets.Target_Events_Access;
Counter : Integer;
Stats : MAT.Memory.Targets.Memory_Stat;
begin
if Target.Current = null or else Target.Current.Events = null then
return;
end if;
Counter := Target.Current.Events.Get_Event_Counter;
if Counter = Target.Previous_Event_Counter then
return;
end if;
Target.Previous_Event_Counter := Counter;
Target.Set_Label ("event_info", "Events:" & Integer'Image (Counter));
Target.Current.Memory.Stat_Information (Stats);
Target.Set_Label ("thread_info", "Threads:"
& Natural'Image (Stats.Thread_Count));
Target.Set_Label ("mem_used_info", "Used:"
& MAT.Types.Target_Size'Image (Stats.Total_Alloc));
Target.Set_Label ("mem_free_info", "Free:"
& MAT.Types.Target_Size'Image (Stats.Total_Free));
Target.Refresh_Events;
end Refresh_Process;
procedure Refresh_Events (Target : in out Target_Type) is
begin
-- Target.Events.List.Clear;
-- MAT.Events.Targets.Get_Events (Target.Current.Events.all, 0, 0, Target.Events.List);
null;
end Refresh_Events;
end MAT.Targets.Gtkmat;
|
------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- D E B U G --
-- --
-- B o d y --
-- --
-- Copyright (C) 1992-2010, 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. --
-- --
------------------------------------------------------------------------------
package body Debug is
---------------------------------
-- Summary of Debug Flag Usage --
---------------------------------
-- Debug flags for compiler (GNAT1)
-- da Generate messages tracking semantic analyzer progress
-- db Show encoding of type names for debug output
-- dc List names of units as they are compiled
-- dd Dynamic allocation of tables messages generated
-- de List the entity table
-- df Full tree/source print (includes withed units)
-- dg Print source from tree (generated code only)
-- dh Generate listing showing loading of name table hash chains
-- di Generate messages for visibility linking/delinking
-- dj Suppress "junk null check" for access parameter values
-- dk Generate GNATBUG message on abort, even if previous errors
-- dl Generate unit load trace messages
-- dm Allow VMS features even if not OpenVMS version
-- dn Generate messages for node/list allocation
-- do Print source from tree (original code only)
-- dp Generate messages for parser scope stack push/pops
-- dq No auto-alignment of small records
-- dr Generate parser resynchronization messages
-- ds Print source from tree (including original and generated stuff)
-- dt Print full tree
-- du Uncheck categorization pragmas
-- dv Output trace of overload resolution
-- dw Print trace of semantic scope stack
-- dx Force expansion on, even if no code being generated
-- dy Print tree of package Standard
-- dz Print source of package Standard
-- dA All entities included in representation information output
-- dB Output debug encoding of type names and variants
-- dC Output debugging information on check suppression
-- dD Delete elaboration checks in inner level routines
-- dE Apply elaboration checks to predefined units
-- dF Front end data layout enabled
-- dG Generate all warnings including those normally suppressed
-- dH Hold (kill) call to gigi
-- dI Inhibit internal name numbering in gnatG listing
-- dJ Output debugging trace info for JGNAT (Java VM version of GNAT)
-- dK Kill all error messages
-- dL Output trace information on elaboration checking
-- dM Assume all variables are modified (no current values)
-- dN No file name information in exception messages
-- dO Output immediate error messages
-- dP Do not check for controlled objects in preelaborable packages
-- dQ
-- dR Bypass check for correct version of s-rpc
-- dS Never convert numbers to machine numbers in Sem_Eval
-- dT Convert to machine numbers only for constant declarations
-- dU Enable garbage collection of unreachable entities
-- dV Enable viewing of all symbols in debugger
-- dW Disable warnings on calls for IN OUT parameters
-- dX Display messages on reads of potentially uninitialized scalars
-- dY Enable configurable run-time mode
-- dZ Generate listing showing the contents of the dispatch tables
-- d.a Force Target_Strict_Alignment mode to True
-- d.b
-- d.c Generate inline concatenation, do not call procedure
-- d.d
-- d.e
-- d.f Inhibit folding of static expressions
-- d.g Enable conversion of raise into goto
-- d.h
-- d.i Ignore Warnings pragmas
-- d.j
-- d.k
-- d.l Use Ada 95 semantics for limited function returns
-- d.m For -gnatl, print full source only for main unit
-- d.n Print source file names
-- d.o Generate .NET listing of CIL code
-- d.p Enable the .NET CIL verifier
-- d.q
-- d.r Enable OK_To_Reorder_Components in non-variant records
-- d.s Disable expansion of slice move, use memmove
-- d.t Disable static allocation of library level dispatch tables
-- d.u
-- d.v Enable OK_To_Reorder_Components in variant records
-- d.w Do not check for infinite loops
-- d.x No exception handlers
-- d.y
-- d.z
-- d.A Read/write Aspect_Specifications hash table to tree
-- d.B
-- d.C Generate concatenation call, do not generate inline code
-- d.D
-- d.E
-- d.F
-- d.G
-- d.H
-- d.I SCIL generation mode
-- d.J Disable parallel SCIL generation mode
-- d.K
-- d.L Depend on back end for limited types in conditional expressions
-- d.M
-- d.N
-- d.O Dump internal SCO tables
-- d.P
-- d.Q
-- d.R
-- d.S Force Optimize_Alignment (Space)
-- d.T Force Optimize_Alignment (Time)
-- d.U
-- d.V
-- d.W Print out debugging information for Walk_Library_Items
-- d.X Use Expression_With_Actions
-- d.Y Do not use Expression_With_Actions
-- d.Z
-- d1 Error msgs have node numbers where possible
-- d2 Eliminate error flags in verbose form error messages
-- d3 Dump bad node in Comperr on an abort
-- d4 Inhibit automatic krunch of predefined library unit files
-- d5 Debug output for tree read/write
-- d6 Default access unconstrained to thin pointers
-- d7 Do not output version & file time stamp in -gnatv or -gnatl mode
-- d8 Force opposite endianness in packed stuff
-- d9
-- Debug flags for binder (GNATBIND)
-- da All links (including internal units) listed if there is a cycle
-- db Output information from Better_Choice
-- dc List units as they are chosen
-- dd
-- de Elaboration dependencies including system units
-- df
-- dg
-- dh
-- di Ignore_Errors mode for reading ali files
-- dj
-- dk
-- dl
-- dm
-- dn List details of manipulation of Num_Pred values
-- do Use old preference for elaboration order
-- dp
-- dq
-- dr
-- ds
-- dt
-- du List units as they are acquired
-- dv
-- dw
-- dx Force binder to read xref information from ali files
-- dy
-- dz
-- Debug flags used in package Make and its clients (e.g. GNATMAKE)
-- da
-- db
-- dc
-- dd
-- de
-- df Only output file names, not path names, in log
-- dg
-- dh
-- di
-- dj
-- dk
-- dl
-- dm Display the number of maximum simultaneous compilations
-- dn Do not delete temp files created by gnatmake
-- do
-- dp Prints the contents of the Q used by Make.Compile_Sources
-- dq Prints source files as they are enqueued and dequeued
-- dr
-- ds
-- dt Display time stamps when there is a mismatch
-- du List units as their ali files are acquired
-- dv
-- dw Prints the list of units withed by the unit currently explored
-- dx
-- dy
-- dz
--------------------------------------------
-- Documentation for Compiler Debug Flags --
--------------------------------------------
-- da Generate messages tracking semantic analyzer progress. A message
-- is output showing each node as it gets analyzed, expanded,
-- resolved, or evaluated. This option is useful for finding out
-- exactly where a bomb during semantic analysis is occurring.
-- db In Exp_Dbug, certain type names are encoded to include debugging
-- information. This debug switch causes lines to be output showing
-- the encodings used.
-- dc List names of units as they are compiled. One line of output will
-- be generated at the start of compiling each unit (package or
-- subprogram).
-- dd Dynamic allocation of tables messages generated. Each time a
-- table is reallocated, a line is output indicating the expansion.
-- de List the entity table
-- df Full tree/source print (includes withed units). Normally the tree
-- output (dt) or recreated source output (dg,do,ds) includes only
-- the main unit. If df is set, then the output in either case
-- includes all compiled units (see also dg,do,ds,dt). Note that to
-- be effective, this swich must be used in combination with one or
-- more of dt, dg, do or ds.
-- dg Print the source recreated from the generated tree. In the case
-- where the tree has been rewritten this output includes only the
-- generated code, not the original code (see also df,do,ds,dz).
-- This flag differs from -gnatG in that the output also includes
-- non-source generated null statements, and freeze nodes, which
-- are normally omitted in -gnatG mode.
-- dh Generates a table at the end of a compilation showing how the hash
-- table chains built by the Namet package are loaded. This is useful
-- in ensuring that the hashing algorithm (in Namet.Hash) is working
-- effectively with typical sets of program identifiers.
-- di Generate messages for visibility linking/delinking
-- dj Suppress "junk null check" for access parameters. This flag permits
-- Ada programs to pass null parameters to access parameters, and to
-- explicitly check such access values against the null literal.
-- Neither of these is valid Ada, but both were allowed in versions of
-- GNAT before 3.10, so this switch can ease the transition process.
-- dk Immediate kill on abort. Normally on an abort (i.e. a call to
-- Comperr.Compiler_Abort), the GNATBUG message is not given if
-- there is a previous error. This debug switch bypasses this test
-- and gives the message unconditionally (useful for debugging).
-- dl Generate unit load trace messages. A line of traceback output is
-- generated each time a request is made to the library manager to
-- load a new unit.
-- dm Some features are permitted only in OpenVMS ports of GNAT (e.g.
-- the specification of passing by descriptor). Normally any use
-- of these features will be flagged as an error, but this debug
-- flag allows acceptance of these features in non OpenVMS ports.
-- Of course they may not have any useful effect, and in particular
-- attempting to generate code with this flag set may blow up.
-- The flag also forces the use of 64-bits for Long_Integer.
-- dn Generate messages for node/list allocation. Each time a node or
-- list header is allocated, a line of output is generated. Certain
-- other basic tree operations also cause a line of output to be
-- generated. This option is useful in seeing where the parser is
-- blowing up.
-- do Print the source recreated from the generated tree. In the case
-- where the tree has been rewritten, this output includes only the
-- original code, not the generated code (see also df,dg,ds,dz).
-- dp Generate messages for parser scope stack push/pops. A line of
-- output by the parser each time the parser scope stack is either
-- pushed or popped. Useful in debugging situations where the
-- parser scope stack ends up incorrectly synchronized
-- dq In layout version 1.38, 2002/01/12, a circuit was implemented
-- to give decent default alignment to short records that had no
-- specific alignment set. This debug option restores the previous
-- behavior of giving such records poor alignments, typically 1.
-- This may be useful in dealing with transition.
-- dr Generate parser resynchronization messages. Normally the parser
-- resynchronizes quietly. With this debug option, two messages
-- are generated, one when the parser starts a resynchronization
-- skip, and another when it resumes parsing. Useful in debugging
-- inadequate error recovery situations.
-- ds Print the source recreated from the generated tree. In the case
-- where the tree has been rewritten this output includes both the
-- generated code and the original code with the generated code
-- being enlosed in curly brackets (see also df,do,ds,dz)
-- dt Print full tree. The generated tree is output (see also df,dy)
-- du Uncheck categorization pragmas. This debug switch causes the
-- categorization pragmas (Pure, Preelaborate etc) to be ignored
-- so that normal checks are not made (this is particularly useful
-- for adding temporary debugging code to units that have pragmas
-- that are inconsistent with the debugging code added.
-- dv Output trace of overload resolution. Outputs messages for
-- overload attempts that involve cascaded errors, or where
-- an interepretation is incompatible with the context.
-- dw Write semantic scope stack messages. Each time a scope is created
-- or removed, a message is output (see the Sem_Ch8.Push_Scope and
-- Sem_Ch8.Pop_Scope subprograms).
-- dx Force expansion on, even if no code being generated. Normally the
-- expander is inhibited if no code is generated. This switch forces
-- expansion to proceed normally even if the backend is not being
-- called. This is particularly useful for debugging purposes when
-- using the front-end only version of the compiler (which normally
-- would never do any expansion).
-- dy Print tree of package Standard. Normally the tree print out does
-- not include package Standard, even if the -df switch is set. This
-- switch forces output of the internal tree built for Standard.
-- dz Print source of package Standard. Normally the source print out
-- does not include package Standard, even if the -df switch is set.
-- This switch forces output of the source recreated from the internal
-- tree built for Standard. Note that this differs from -gnatS in
-- that it prints from the actual tree using the normal Sprint
-- circuitry for printing trees.
-- dA Forces output of representation information, including full
-- information for all internal type and object entities, as well
-- as all user defined type and object entities including private
-- and incomplete types. This debug switch also automatically sets
-- the equivalent of -gnatR3m.
-- dB Output debug encodings for types and variants. See Exp_Dbug for
-- exact form of the generated output.
-- dC Output trace information showing the decisions made during
-- check suppression activity in unit Checks.
-- dD Delete new elaboration checks. This flag causes GNAT to return
-- to the 3.13a elaboration semantics, and to suppress the fixing
-- of two bugs. The first is in the context of inner routines in
-- dynamic elaboration mode, when the subprogram we are in was
-- called at elaboration time by a unit that was also compiled with
-- dynamic elaboration checks. In this case, if A calls B calls C,
-- and all are in different units, we need an elaboration check at
-- each call. These nested checks were only put in recently (see
-- version 1.80 of Sem_Elab) and we provide this debug flag to
-- revert to the previous behavior in case of regressions. The
-- other behavior reverted by this flag is the treatment of the
-- Elaborate_Body pragma in static elaboration mode. This used to
-- be treated as not needing elaboration checking, but in fact in
-- general Elaborate_All is still required because of nested calls.
-- dE Apply compile time elaboration checking for with relations between
-- predefined units. Normally no checks are made (it seems that at
-- least on the SGI, such checks run into trouble).
-- dF Front end data layout enabled. Normally front end data layout
-- is only enabled if the target parameter Backend_Layout is False.
-- This debugging switch enables it unconditionally.
-- dG Generate all warnings. Normally Errout suppresses warnings on
-- units that are not part of the main extended source, and also
-- suppresses warnings on instantiations in the main extended
-- source that duplicate warnings already posted on the template.
-- This switch stops both kinds of deletion and causes Errout to
-- post all warnings sent to it.
-- dH Inhibit call to gigi. This is useful for testing front end data
-- layout, and may be useful in other debugging situations where
-- you do not want gigi to intefere with the testing.
-- dI Inhibit internal name numbering in gnatDG listing. Any sequence of
-- the form <uppercase-letter><digits><lowercase-letter> appearing in
-- a name is replaced by <uppercase-letter>...<lowercase-letter>. This
-- is used in the fixed bugs run to minimize system and version
-- dependency in filed -gnatD or -gnatG output.
-- dJ Generate debugging trace output for the JGNAT back end. This
-- consists of symbolic Java Byte Code sequences for all generated
-- classes plus additional information to indicate local variables
-- and methods.
-- dK Kill all error messages. This debug flag suppresses the output
-- of all error messages. It is used in regression tests where the
-- error messages are target dependent and irrelevant.
-- dL Output trace information on elaboration checking. This debug
-- switch causes output to be generated showing each call or
-- instantiation as it is checked, and the progress of the recursive
-- trace through calls at elaboration time.
-- dM Assume all variables have been modified, and ignore current value
-- indications. This debug flag disconnects the tracking of constant
-- values (see Exp_Ch2.Expand_Current_Value).
-- dN Do not generate file name information in exception messages
-- dO Output immediate error messages. This causes error messages to
-- be output as soon as they are generated (disconnecting several
-- circuits for improvement of messages, deletion of duplicate
-- messages etc). Useful to diagnose compiler bombs caused by
-- erroneous handling of error situations
-- dP Do not check for controlled objects in preelaborable packages.
-- RM 10.2.1(9) forbids the use of library level controlled objects
-- in preelaborable packages, but this restriction is a huge pain,
-- especially in the predefined library units.
-- dR Bypass the check for a proper version of s-rpc being present
-- to use the -gnatz? switch. This allows debugging of the use
-- of stubs generation without needing to have GLADE (or some
-- other PCS installed).
-- dS Omit conversion of fpt numbers to exact machine numbers in
-- non-static evaluation contexts (see Check_Non_Static_Context).
-- This is intended for testing out timing problems with this
-- conversion circuit.
-- dT Similar to dS, but omits the conversions only in the case where
-- the parent is not a constant declaration.
-- dU Enable garbage collection of unreachable entities. This enables
-- both the reachability analysis and changing the Is_Public and
-- Is_Eliminated flags.
-- dV Enable viewing of all symbols in debugger. Causes debug information
-- to be generated for all symbols, including internal symbols. This
-- is enabled by default for -gnatD, but this switch allows this to
-- be enabled without generating modified source files. Note that the
-- use of -gnatdV ensures in the dwarf/elf case that all symbols that
-- are present in the elf tables are also in the dwarf tables (which
-- seems to be required by some tools). Another effect of dV is to
-- generate full qualified names, including internal names generated
-- for blocks and loops.
-- dW Disable warnings when a possibly uninitialized scalar value is
-- passed to an IN OUT parameter of a procedure. This usage is a
-- quite improper bounded error [erroneous in Ada 83] situation,
-- and would normally generate a warning. However, to ease the
-- task of transitioning incorrect legacy code, we provide this
-- undocumented feature for suppressing these warnings.
-- dY Enable configurable run-time mode, just as though the System file
-- had Configurable_Run_Time_Mode set to True. This is useful in
-- testing high integrity mode.
-- dZ Generate listing showing the contents of the dispatch tables. Each
-- line has an internally generated number used for references between
-- tagged types and primitives. For each primitive the output has the
-- following fields:
--
-- - Letter 'P' or letter 's': The former indicates that this
-- primitive will be located in a primary dispatch table. The
-- latter indicates that it will be located in a secondary
-- dispatch table.
--
-- - Name of the primitive. In case of predefined Ada primitives
-- the text "(predefined)" is added before the name, and these
-- acronyms are used: SR (Stream_Read), SW (Stream_Write), SI
-- (Stream_Input), SO (Stream_Output), DA (Deep_Adjust), DF
-- (Deep_Finalize). In addition Oeq identifies the equality
-- operator, and "_assign" the assignment.
--
-- - If the primitive covers interface types, two extra fields
-- referencing other primitives are generated: "Alias" references
-- the primitive of the tagged type that covers an interface
-- primitive, and "AI_Alias" references the covered interface
-- primitive.
--
-- - The expression "at #xx" indicates the slot of the dispatch
-- table occupied by such primitive in its corresponding primary
-- or secondary dispatch table.
--
-- - In case of abstract subprograms the text "is abstract" is
-- added at the end of the line.
-- d.a Force Target_Strict_Alignment to True, even on targets where it
-- would normally be false. Can be used for testing strict alignment
-- circuitry in the compiler.
-- d.c Generate inline concatenation, instead of calling one of the
-- System.Concat_n.Str_Concat_n routines in cases where the latter
-- routines would normally be called.
-- d.f Suppress folding of static expressions. This of course results
-- in seriously non-conforming behavior, but is useful sometimes
-- when tracking down handling of complex expressions.
-- d.g Enables conversion of a raise statement into a goto when the
-- relevant handler is statically determinable. For now we only try
-- this if this debug flag is set. Later we will enable this more
-- generally by default.
-- d.i Ignore all occurrences of pragma Warnings in the sources. This can
-- be used in particular to disable Warnings (Off) to check if any of
-- these statements are inappropriate.
-- d.l Use Ada 95 semantics for limited function returns. This may be
-- used to work around the incompatibility introduced by AI-318-2.
-- It is useful only in -gnat05 mode.
-- d.m When -gnatl is used, the normal output includes full listings of
-- all files in the extended main source (body/spec/subunits). If this
-- debug switch is used, then the full listing is given only for the
-- main source (this corresponds to a previous behavior of -gnatl and
-- is used for running the ACATS tests).
-- d.n Print source file names as they are loaded. This is useful if the
-- compiler has a bug -- these are the files that need to be included
-- in a bug report.
-- d.o Generate listing showing the IL instructions generated by the .NET
-- compiler for each subprogram.
-- d.p Enable the .NET CIL verifier. During development the verifier is
-- disabled by default and this flag is used to enable it. In the
-- future we will reverse this functionality.
-- d.r Forces the flag OK_To_Reorder_Components to be set in all record
-- base types that have no discriminants.
-- d.s Normally the compiler expands slice moves into loops if overlap
-- might be possible. This debug flag inhibits that expansion, and
-- the back end is expected to use an appropriate routine to handle
-- overlap, based on Forward_OK and Backwards_OK flags.
-- d.t The compiler has been modified (a fairly extensive modification)
-- to generate static dispatch tables for library level tagged types.
-- This debug switch disables this modification and reverts to the
-- previous dynamic construction of tables. It is there as a possible
-- work around if we run into trouble with the new implementation.
-- d.v Forces the flag OK_To_Reorder_Components to be set in all record
-- base types that have at least one discriminant (v = variant).
-- d.w This flag turns off the scanning of loops to detect possible
-- infinite loops.
-- d.A There seems to be a problem with ASIS if we activate the circuit
-- for reading and writing the aspect specification hash table, so
-- for now, this is controlled by the debug flag d.A. The hash table
-- is only written and read if this flag is set.
-- d.x No exception handlers in generated code. This causes exception
-- handlers to be eliminated from the generated code. They are still
-- fully compiled and analyzed, they just get eliminated from the
-- code generation step.
-- d.C Generate call to System.Concat_n.Str_Concat_n routines in cases
-- where we would normally generate inline concatenation code.
-- d.I Generate SCIL mode. Generate intermediate code for the sake of
-- of static analysis tools, and ensure additional tree consistency
-- between different compilations of specs.
-- d.J Disable parallel SCIL generation. Normally SCIL file generation is
-- done in parallel to speed processing. This switch disables this
-- behavior.
-- d.L Normally the front end generates special expansion for conditional
-- expressions of a limited type. This debug flag removes this special
-- case expansion, leaving it up to the back end to handle conditional
-- expressions correctly.
-- d.O Dump internal SCO tables. Before outputting the SCO information to
-- the ALI file, the internal SCO tables (SCO_Table/SCO_Unit_Table)
-- are dumped for debugging purposes.
-- d.S Force Optimize_Alignment (Space) mode as the default
-- d.T Force Optimize_Alignment (Time) mode as the default
-- d.W Print out debugging information for Walk_Library_Items, including
-- the order in which units are walked. This is primarily for use in
-- debugging CodePeer mode.
-- d.X By default, the compiler uses an elaborate rewriting framework for
-- short-circuited forms where the right hand condition generates
-- actions to be inserted. With the gcc backend, we now use the new
-- N_Expression_With_Actions node for this expansion, but we still use
-- the old method for other backends and in SCIL mode. This debug flag
-- forces use of the new N_Expression_With_Actions node in these other
-- cases and is intended for transitional use.
-- d.Y Prevents the use of the N_Expression_With_Actions node even in the
-- case of the gcc back end. Provided as a back up in case the new
-- scheme has problems.
-- d1 Error messages have node numbers where possible. Normally error
-- messages have only source locations. This option is useful when
-- debugging errors caused by expanded code, where the source location
-- does not give enough information.
-- d2 Suppress output of the error position flags for verbose form error
-- messages. The messages are still interspersed in the listing, but
-- without any error flags or extra blank lines. Also causes an extra
-- <<< to be output at the right margin. This is intended to be the
-- easiest format for checking conformance of ACATS B tests. This
-- flag also suppresses the additional messages explaining why a
-- non-static expression is non-static (see Sem_Eval.Why_Not_Static).
-- This avoids having to worry about these messages in ACATS testing.
-- d3 Causes Comperr to dump the contents of the node for which an abort
-- was detected (normally only the Node_Id of the node is output).
-- d4 Inhibits automatic krunching of predefined library unit file names.
-- Normally, as described in the spec of package Krunch, such files
-- are automatically krunched to 8 characters, with special treatment
-- of the prefixes Ada, System, and Interfaces. Setting this debug
-- switch disables this special treatment.
-- d5 Causes the tree read/write circuit to output detailed information
-- tracking the data that is read and written element by element.
-- d6 Normally access-to-unconstrained-array types are represented
-- using fat (double) pointers. Using this debug flag causes them
-- to default to thin. This can be used to test the performance
-- implications of using thin pointers, and also to test that the
-- compiler functions correctly with this choice.
-- d7 Normally a -gnatl or -gnatv listing includes the time stamp
-- of the source file. This debug flag suppresses this output,
-- and also suppresses the message with the version number.
-- This is useful in certain regression tests.
-- d8 This forces the packed stuff to generate code assuming the
-- opposite endianness from the actual correct value. Useful in
-- testing out code generation from the packed routines.
------------------------------------------
-- Documentation for Binder Debug Flags --
------------------------------------------
-- da Normally if there is an elaboration circularity, then in describing
-- the cycle, links involving internal units are omitted, since they
-- are irrelevant and confusing. This debug flag causes all links to
-- be listed, and is useful when diagnosing circularities introduced
-- by incorrect changes to the run-time library itself.
-- db Output debug information from Better_Choice in Binde, which uses
-- various heuristics to determine elaboration order in cases where
-- multiple orders are valid.
-- dc List units as they are chosen. As units are selected for addition to
-- the elaboration order, a line of output is generated showing which
-- unit has been selected.
-- de Similar to the effect of -e (output complete list of elaboration
-- dependencies) except that internal units are included in the
-- listing.
-- di Normally gnatbind calls Read_Ali with Ignore_Errors set to
-- False, since the binder really needs correct version ALI
-- files to do its job. This debug flag causes Ignore_Errors
-- mode to be set for the binder (and is particularly useful
-- for testing ignore errors mode).
-- dn List details of manipulation of Num_Pred values during execution of
-- the algorithm used to determine a correct order of elaboration. This
-- is useful in diagnosing any problems in its behavior.
-- do Use old elaboration order preference. The new preference rules
-- prefer specs with no bodies to specs with bodies, and between two
-- specs with bodies, prefers the one whose body is closer to being
-- able to be elaborated. This is a clear improvement, but we provide
-- this debug flag in case of regressions.
-- du List unit name and file name for each unit as it is read in
-- dx Force the binder to read (and then ignore) the xref information
-- in ali files (used to check that read circuit is working OK).
--------------------------------------------
-- Documentation for gnatmake Debug Flags --
--------------------------------------------
-- df Only output file names, not path names, in log
-- dm Issue a message indicating the maximum number of simultaneous
-- compilations.
-- dn Do not delete temporary files created by gnatmake at the end
-- of execution, such as temporary config pragma files, mapping
-- files or project path files.
-- dp Prints the Q used by routine Make.Compile_Sources every time
-- we go around the main compile loop of Make.Compile_Sources
-- dq Prints source files as they are enqueued and dequeued in the Q
-- used by routine Make.Compile_Sources. Useful to figure out the
-- order in which sources are recompiled.
-- dt When a time stamp mismatch has been found for an ALI file,
-- display the source file name, the time stamp expected and
-- the time stamp found.
-- du List unit name and file name for each unit as it is read in
-- dw Prints the list of units withed by the unit currently explored
-- during the main loop of Make.Compile_Sources.
---------------------------------------------
-- Documentation for gprbuild Debug Flags --
---------------------------------------------
-- dn Do not delete temporary files createed by gprbuild at the end
-- of execution, such as temporary config pragma files, mapping
-- files or project path files.
-- dt When a time stamp mismatch has been found for an ALI file,
-- display the source file name, the time stamp expected and
-- the time stamp found.
--------------------
-- Set_Debug_Flag --
--------------------
procedure Set_Debug_Flag (C : Character; Val : Boolean := True) is
subtype Dig is Character range '1' .. '9';
subtype LLet is Character range 'a' .. 'z';
subtype ULet is Character range 'A' .. 'Z';
begin
if C in Dig then
case Dig (C) is
when '1' => Debug_Flag_1 := Val;
when '2' => Debug_Flag_2 := Val;
when '3' => Debug_Flag_3 := Val;
when '4' => Debug_Flag_4 := Val;
when '5' => Debug_Flag_5 := Val;
when '6' => Debug_Flag_6 := Val;
when '7' => Debug_Flag_7 := Val;
when '8' => Debug_Flag_8 := Val;
when '9' => Debug_Flag_9 := Val;
end case;
elsif C in ULet then
case ULet (C) is
when 'A' => Debug_Flag_AA := Val;
when 'B' => Debug_Flag_BB := Val;
when 'C' => Debug_Flag_CC := Val;
when 'D' => Debug_Flag_DD := Val;
when 'E' => Debug_Flag_EE := Val;
when 'F' => Debug_Flag_FF := Val;
when 'G' => Debug_Flag_GG := Val;
when 'H' => Debug_Flag_HH := Val;
when 'I' => Debug_Flag_II := Val;
when 'J' => Debug_Flag_JJ := Val;
when 'K' => Debug_Flag_KK := Val;
when 'L' => Debug_Flag_LL := Val;
when 'M' => Debug_Flag_MM := Val;
when 'N' => Debug_Flag_NN := Val;
when 'O' => Debug_Flag_OO := Val;
when 'P' => Debug_Flag_PP := Val;
when 'Q' => Debug_Flag_QQ := Val;
when 'R' => Debug_Flag_RR := Val;
when 'S' => Debug_Flag_SS := Val;
when 'T' => Debug_Flag_TT := Val;
when 'U' => Debug_Flag_UU := Val;
when 'V' => Debug_Flag_VV := Val;
when 'W' => Debug_Flag_WW := Val;
when 'X' => Debug_Flag_XX := Val;
when 'Y' => Debug_Flag_YY := Val;
when 'Z' => Debug_Flag_ZZ := Val;
end case;
else
case LLet (C) is
when 'a' => Debug_Flag_A := Val;
when 'b' => Debug_Flag_B := Val;
when 'c' => Debug_Flag_C := Val;
when 'd' => Debug_Flag_D := Val;
when 'e' => Debug_Flag_E := Val;
when 'f' => Debug_Flag_F := Val;
when 'g' => Debug_Flag_G := Val;
when 'h' => Debug_Flag_H := Val;
when 'i' => Debug_Flag_I := Val;
when 'j' => Debug_Flag_J := Val;
when 'k' => Debug_Flag_K := Val;
when 'l' => Debug_Flag_L := Val;
when 'm' => Debug_Flag_M := Val;
when 'n' => Debug_Flag_N := Val;
when 'o' => Debug_Flag_O := Val;
when 'p' => Debug_Flag_P := Val;
when 'q' => Debug_Flag_Q := Val;
when 'r' => Debug_Flag_R := Val;
when 's' => Debug_Flag_S := Val;
when 't' => Debug_Flag_T := Val;
when 'u' => Debug_Flag_U := Val;
when 'v' => Debug_Flag_V := Val;
when 'w' => Debug_Flag_W := Val;
when 'x' => Debug_Flag_X := Val;
when 'y' => Debug_Flag_Y := Val;
when 'z' => Debug_Flag_Z := Val;
end case;
end if;
end Set_Debug_Flag;
---------------------------
-- Set_Dotted_Debug_Flag --
---------------------------
procedure Set_Dotted_Debug_Flag (C : Character; Val : Boolean := True) is
subtype Dig is Character range '1' .. '9';
subtype LLet is Character range 'a' .. 'z';
subtype ULet is Character range 'A' .. 'Z';
begin
if C in Dig then
case Dig (C) is
when '1' => Debug_Flag_Dot_1 := Val;
when '2' => Debug_Flag_Dot_2 := Val;
when '3' => Debug_Flag_Dot_3 := Val;
when '4' => Debug_Flag_Dot_4 := Val;
when '5' => Debug_Flag_Dot_5 := Val;
when '6' => Debug_Flag_Dot_6 := Val;
when '7' => Debug_Flag_Dot_7 := Val;
when '8' => Debug_Flag_Dot_8 := Val;
when '9' => Debug_Flag_Dot_9 := Val;
end case;
elsif C in ULet then
case ULet (C) is
when 'A' => Debug_Flag_Dot_AA := Val;
when 'B' => Debug_Flag_Dot_BB := Val;
when 'C' => Debug_Flag_Dot_CC := Val;
when 'D' => Debug_Flag_Dot_DD := Val;
when 'E' => Debug_Flag_Dot_EE := Val;
when 'F' => Debug_Flag_Dot_FF := Val;
when 'G' => Debug_Flag_Dot_GG := Val;
when 'H' => Debug_Flag_Dot_HH := Val;
when 'I' => Debug_Flag_Dot_II := Val;
when 'J' => Debug_Flag_Dot_JJ := Val;
when 'K' => Debug_Flag_Dot_KK := Val;
when 'L' => Debug_Flag_Dot_LL := Val;
when 'M' => Debug_Flag_Dot_MM := Val;
when 'N' => Debug_Flag_Dot_NN := Val;
when 'O' => Debug_Flag_Dot_OO := Val;
when 'P' => Debug_Flag_Dot_PP := Val;
when 'Q' => Debug_Flag_Dot_QQ := Val;
when 'R' => Debug_Flag_Dot_RR := Val;
when 'S' => Debug_Flag_Dot_SS := Val;
when 'T' => Debug_Flag_Dot_TT := Val;
when 'U' => Debug_Flag_Dot_UU := Val;
when 'V' => Debug_Flag_Dot_VV := Val;
when 'W' => Debug_Flag_Dot_WW := Val;
when 'X' => Debug_Flag_Dot_XX := Val;
when 'Y' => Debug_Flag_Dot_YY := Val;
when 'Z' => Debug_Flag_Dot_ZZ := Val;
end case;
else
case LLet (C) is
when 'a' => Debug_Flag_Dot_A := Val;
when 'b' => Debug_Flag_Dot_B := Val;
when 'c' => Debug_Flag_Dot_C := Val;
when 'd' => Debug_Flag_Dot_D := Val;
when 'e' => Debug_Flag_Dot_E := Val;
when 'f' => Debug_Flag_Dot_F := Val;
when 'g' => Debug_Flag_Dot_G := Val;
when 'h' => Debug_Flag_Dot_H := Val;
when 'i' => Debug_Flag_Dot_I := Val;
when 'j' => Debug_Flag_Dot_J := Val;
when 'k' => Debug_Flag_Dot_K := Val;
when 'l' => Debug_Flag_Dot_L := Val;
when 'm' => Debug_Flag_Dot_M := Val;
when 'n' => Debug_Flag_Dot_N := Val;
when 'o' => Debug_Flag_Dot_O := Val;
when 'p' => Debug_Flag_Dot_P := Val;
when 'q' => Debug_Flag_Dot_Q := Val;
when 'r' => Debug_Flag_Dot_R := Val;
when 's' => Debug_Flag_Dot_S := Val;
when 't' => Debug_Flag_Dot_T := Val;
when 'u' => Debug_Flag_Dot_U := Val;
when 'v' => Debug_Flag_Dot_V := Val;
when 'w' => Debug_Flag_Dot_W := Val;
when 'x' => Debug_Flag_Dot_X := Val;
when 'y' => Debug_Flag_Dot_Y := Val;
when 'z' => Debug_Flag_Dot_Z := Val;
end case;
end if;
end Set_Dotted_Debug_Flag;
end Debug;
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<item class_id_reference="28" object_id="_153">
<id>42</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_154">
<id>43</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_155">
<id>44</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_156">
<id>47</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_157">
<id>50</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_158">
<id>5</id>
<operations>
<count>3</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_159">
<id>45</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_160">
<id>48</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_161">
<id>51</id>
<stage>2</stage>
<latency>2</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_162">
<id>6</id>
<operations>
<count>3</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_163">
<id>45</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_164">
<id>48</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_165">
<id>51</id>
<stage>1</stage>
<latency>2</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_166">
<id>7</id>
<operations>
<count>14</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_167">
<id>32</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_168">
<id>33</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_169">
<id>34</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_170">
<id>46</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_171">
<id>49</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_172">
<id>52</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_173">
<id>53</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_174">
<id>54</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_175">
<id>55</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_176">
<id>56</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_177">
<id>57</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_178">
<id>58</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_179">
<id>59</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_180">
<id>60</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_181">
<id>8</id>
<operations>
<count>2</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_182">
<id>62</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_183">
<id>63</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
</states>
<transitions class_id="29" tracking_level="0" version="0">
<count>9</count>
<item_version>0</item_version>
<item class_id="30" tracking_level="1" version="0" object_id="_184">
<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="_185">
<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 class_id="34" tracking_level="0" version="0">
<first class_id="35" tracking_level="0" version="0">
<first>17</first>
<second>0</second>
</first>
<second>1</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_186">
<inState>8</inState>
<outState>2</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="_187">
<inState>4</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="_188">
<inState>5</inState>
<outState>6</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_189">
<inState>6</inState>
<outState>7</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_190">
<inState>7</inState>
<outState>3</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_191">
<inState>3</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>27</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_192">
<inState>3</inState>
<outState>4</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>1</count>
<item_version>0</item_version>
<item>
<first>
<first>27</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="_193">
<dp_component_resource class_id="37" tracking_level="0" version="0">
<count>0</count>
<item_version>0</item_version>
</dp_component_resource>
<dp_expression_resource>
<count>10</count>
<item_version>0</item_version>
<item class_id="38" tracking_level="0" version="0">
<first>ap_block_pp0_stage0_01001 ( or ) </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>(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_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_block_state4_pp0_stage0_iter1 ( 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_block_state7_pp0_stage0_iter4 ( 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_reg_pp0_iter1 ( xor ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>2</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>c_V_fu_183_p2 ( + ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>11</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>exitcond113_i_fu_165_p2 ( icmp ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>10</second>
</item>
<item>
<first>(1P1)</first>
<second>8</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>13</second>
</item>
</second>
</item>
<item>
<first>exitcond_i4_fu_177_p2 ( icmp ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>11</second>
</item>
<item>
<first>(1P1)</first>
<second>9</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>13</second>
</item>
</second>
</item>
<item>
<first>r_V_fu_171_p2 ( + ) </first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0P0)</first>
<second>10</second>
</item>
<item>
<first>(1P1)</first>
<second>1</second>
</item>
<item>
<first>FF</first>
<second>0</second>
</item>
<item>
<first>LUT</first>
<second>14</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>1</count>
<item_version>0</item_version>
<item>
<first>lut_srgb_decode_U</first>
<second>
<count>7</count>
<item_version>0</item_version>
<item>
<first>(0Words)</first>
<second>256</second>
</item>
<item>
<first>(1Bits)</first>
<second>12</second>
</item>
<item>
<first>(2Banks)</first>
<second>1</second>
</item>
<item>
<first>(3W*Bits*Banks)</first>
<second>3072</second>
</item>
<item>
<first>BRAM</first>
<second>2</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>13</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>5</second>
</item>
<item>
<first>(1Bits)</first>
<second>1</second>
</item>
<item>
<first>(2Count)</first>
<second>5</second>
</item>
<item>
<first>LUT</first>
<second>27</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_iter4</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>img_crop_data_stream_0_V_blk_n</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>img_crop_data_stream_1_V_blk_n</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>img_crop_data_stream_2_V_blk_n</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>img_nogamma_data_stream_0_V_blk_n</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>img_nogamma_data_stream_1_V_blk_n</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>img_nogamma_data_stream_2_V_blk_n</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>real_start</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>t_V_1_reg_154</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
</item>
<item>
<first>(1Bits)</first>
<second>11</second>
</item>
<item>
<first>(2Count)</first>
<second>22</second>
</item>
<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
<item>
<first>t_V_3_reg_143</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>
<first>(0Size)</first>
<second>2</second>
</item>
<item>
<first>(1Bits)</first>
<second>10</second>
</item>
<item>
<first>(2Count)</first>
<second>20</second>
</item>
<item>
<first>LUT</first>
<second>9</second>
</item>
</second>
</item>
</dp_multiplexer_resource>
<dp_register_resource>
<count>18</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>4</second>
</item>
<item>
<first>(Consts)</first>
<second>0</second>
</item>
<item>
<first>FF</first>
<second>4</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>
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<item>37</item>
</second>
</item>
<item>
<first>tmp_45_read_fu_76</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>tmp_read_fu_82</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>41</item>
</second>
</item>
</dp_fu_nodes_io>
<return_ports>
<count>0</count>
<item_version>0</item_version>
</return_ports>
<dp_mem_port_nodes class_id="56" tracking_level="0" version="0">
<count>3</count>
<item_version>0</item_version>
<item class_id="57" tracking_level="0" version="0">
<first class_id="58" tracking_level="0" version="0">
<first>lut_srgb_decode</first>
<second>0</second>
</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>45</item>
<item>45</item>
</second>
</item>
<item>
<first>
<first>lut_srgb_decode</first>
<second>1</second>
</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>48</item>
<item>48</item>
</second>
</item>
<item>
<first>
<first>lut_srgb_decode</first>
<second>2</second>
</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>51</item>
<item>51</item>
</second>
</item>
</dp_mem_port_nodes>
<dp_reg_nodes>
<count>12</count>
<item_version>0</item_version>
<item>
<first>143</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>16</item>
</second>
</item>
<item>
<first>154</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>26</item>
</second>
</item>
<item>
<first>216</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>17</item>
</second>
</item>
<item>
<first>220</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>19</item>
</second>
</item>
<item>
<first>225</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>27</item>
</second>
</item>
<item>
<first>229</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>29</item>
</second>
</item>
<item>
<first>234</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>44</item>
</second>
</item>
<item>
<first>239</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>47</item>
</second>
</item>
<item>
<first>244</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>50</item>
</second>
</item>
<item>
<first>249</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>45</item>
</second>
</item>
<item>
<first>254</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>48</item>
</second>
</item>
<item>
<first>259</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>51</item>
</second>
</item>
</dp_reg_nodes>
<dp_regname_nodes>
<count>12</count>
<item_version>0</item_version>
<item>
<first>c_V_reg_229</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>29</item>
</second>
</item>
<item>
<first>exitcond113_i_reg_216</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>17</item>
</second>
</item>
<item>
<first>exitcond_i4_reg_225</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>27</item>
</second>
</item>
<item>
<first>lut_srgb_decode_addr_1_reg_239</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>47</item>
</second>
</item>
<item>
<first>lut_srgb_decode_addr_2_reg_244</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>50</item>
</second>
</item>
<item>
<first>lut_srgb_decode_addr_reg_234</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>44</item>
</second>
</item>
<item>
<first>r_V_reg_220</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>19</item>
</second>
</item>
<item>
<first>t_V_1_reg_154</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>26</item>
</second>
</item>
<item>
<first>t_V_3_reg_143</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>16</item>
</second>
</item>
<item>
<first>tmp_41_reg_249</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>45</item>
</second>
</item>
<item>
<first>tmp_42_reg_254</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>48</item>
</second>
</item>
<item>
<first>tmp_43_reg_259</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>51</item>
</second>
</item>
</dp_regname_nodes>
<dp_reg_phi>
<count>2</count>
<item_version>0</item_version>
<item>
<first>143</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>16</item>
</second>
</item>
<item>
<first>154</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>26</item>
</second>
</item>
</dp_reg_phi>
<dp_regname_phi>
<count>2</count>
<item_version>0</item_version>
<item>
<first>t_V_1_reg_154</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>26</item>
</second>
</item>
<item>
<first>t_V_3_reg_143</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>16</item>
</second>
</item>
</dp_regname_phi>
<dp_port_io_nodes class_id="59" tracking_level="0" version="0">
<count>6</count>
<item_version>0</item_version>
<item class_id="60" tracking_level="0" version="0">
<first>img_crop_data_stream_0_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>37</item>
</second>
</item>
</second>
</item>
<item>
<first>img_crop_data_stream_1_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
</second>
</item>
<item>
<first>img_crop_data_stream_2_V</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>read</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>41</item>
</second>
</item>
</second>
</item>
<item>
<first>img_nogamma_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>55</item>
</second>
</item>
</second>
</item>
<item>
<first>img_nogamma_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>56</item>
</second>
</item>
</second>
</item>
<item>
<first>img_nogamma_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>57</item>
</second>
</item>
</second>
</item>
</dp_port_io_nodes>
<port2core class_id="61" tracking_level="0" version="0">
<count>6</count>
<item_version>0</item_version>
<item class_id="62" tracking_level="0" version="0">
<first>1</first>
<second>FIFO</second>
</item>
<item>
<first>2</first>
<second>FIFO</second>
</item>
<item>
<first>3</first>
<second>FIFO</second>
</item>
<item>
<first>4</first>
<second>FIFO</second>
</item>
<item>
<first>5</first>
<second>FIFO</second>
</item>
<item>
<first>6</first>
<second>FIFO</second>
</item>
</port2core>
<node2core>
<count>0</count>
<item_version>0</item_version>
</node2core>
</syndb>
</boost_serialization>
|
------------------------------------------------------------------------------
-- --
-- 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.Generic_Collections;
package AMF.UMLDI.UML_Labels.Collections is
pragma Preelaborate;
package UMLDI_UML_Label_Collections is
new AMF.Generic_Collections
(UMLDI_UML_Label,
UMLDI_UML_Label_Access);
type Set_Of_UMLDI_UML_Label is
new UMLDI_UML_Label_Collections.Set with null record;
Empty_Set_Of_UMLDI_UML_Label : constant Set_Of_UMLDI_UML_Label;
type Ordered_Set_Of_UMLDI_UML_Label is
new UMLDI_UML_Label_Collections.Ordered_Set with null record;
Empty_Ordered_Set_Of_UMLDI_UML_Label : constant Ordered_Set_Of_UMLDI_UML_Label;
type Bag_Of_UMLDI_UML_Label is
new UMLDI_UML_Label_Collections.Bag with null record;
Empty_Bag_Of_UMLDI_UML_Label : constant Bag_Of_UMLDI_UML_Label;
type Sequence_Of_UMLDI_UML_Label is
new UMLDI_UML_Label_Collections.Sequence with null record;
Empty_Sequence_Of_UMLDI_UML_Label : constant Sequence_Of_UMLDI_UML_Label;
private
Empty_Set_Of_UMLDI_UML_Label : constant Set_Of_UMLDI_UML_Label
:= (UMLDI_UML_Label_Collections.Set with null record);
Empty_Ordered_Set_Of_UMLDI_UML_Label : constant Ordered_Set_Of_UMLDI_UML_Label
:= (UMLDI_UML_Label_Collections.Ordered_Set with null record);
Empty_Bag_Of_UMLDI_UML_Label : constant Bag_Of_UMLDI_UML_Label
:= (UMLDI_UML_Label_Collections.Bag with null record);
Empty_Sequence_Of_UMLDI_UML_Label : constant Sequence_Of_UMLDI_UML_Label
:= (UMLDI_UML_Label_Collections.Sequence with null record);
end AMF.UMLDI.UML_Labels.Collections;
|
-- Copyright (c) 2019 Maxim Reznik <reznikmm@gmail.com>
--
-- SPDX-License-Identifier: MIT
-- License-Filename: LICENSE
-------------------------------------------------------------
with Ada.Iterator_Interfaces;
with Program.Elements;
with Program.Lexical_Elements;
package Program.Element_Vectors is
pragma Pure (Program.Element_Vectors);
type Element_Vector is limited interface;
-- Vector of elements
type Element_Vector_Access is access all Element_Vector'Class
with Storage_Size => 0;
not overriding function Get_Length (Self : Element_Vector)
return Positive is abstract;
-- Number of elements in the vector. Not null vector has at least one item.
function Length (Self : access Element_Vector'Class)
return Natural is (if Self = null then 0 else Self.Get_Length);
-- Return number of elements in the vector
function Is_Empty (Self : access Element_Vector'Class)
return Boolean is (Self = null);
-- Check if the vector is empty
not overriding function Element
(Self : Element_Vector;
Index : Positive)
return not null Program.Elements.Element_Access is abstract;
-- Return an element of the vector
not overriding function Delimiter
(Self : Element_Vector;
Index : Positive)
return Program.Lexical_Elements.Lexical_Element_Access is abstract
with Post'Class =>
(if Index = Self.Get_Length then Delimiter'Result in null);
-- Return a delimiter token after an element of the vector
type Element_Cursor is record
Element : Program.Elements.Element_Access;
-- An element of the vector for given cursor
Delimiter : Program.Lexical_Elements.Lexical_Element_Access;
-- A delimiter after the element pointed by the cursor
Index : Natural;
-- Position in the vector, starting from one
Is_Last : Boolean;
-- Set if the cursor points to the last element in the list
end record;
function Has_Element (Self : Element_Cursor) return Boolean
is (Self.Element.Assigned);
-- Check if the cursor points an element
package Iterators is new Ada.Iterator_Interfaces
(Element_Cursor, Has_Element);
type Iterator is new Iterators.Reversible_Iterator with private;
overriding function First
(Self : Iterator) return Program.Element_Vectors.Element_Cursor;
overriding function Next
(Self : Iterator;
Cursor : Program.Element_Vectors.Element_Cursor)
return Program.Element_Vectors.Element_Cursor;
overriding function Last
(Self : Iterator) return Program.Element_Vectors.Element_Cursor;
overriding function Previous
(Self : Iterator;
Cursor : Program.Element_Vectors.Element_Cursor)
return Program.Element_Vectors.Element_Cursor;
type Element_Checker is access
function (Self : Program.Elements.Element'Class) return Boolean;
function Each_Element
(Self : access Element_Vector'Class;
When_Element : Element_Checker := null) return Iterator;
-- Return an iterator to enumerate elements in the Vector which satisfy
-- given condition, if provided
private
type Iterator is new Iterators.Reversible_Iterator with record
Vector : access constant Element_Vector'Class;
Condition : Element_Checker;
end record;
end Program.Element_Vectors;
|
------------------------------------------------------------------------------
-- --
-- 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 League.Holders.Generic_Holders;
package AMF.DG.Holders.Elliptical_Arc_Tos is
new League.Holders.Generic_Holders
(AMF.DG.DG_Elliptical_Arc_To);
pragma Preelaborate (AMF.DG.Holders.Elliptical_Arc_Tos);
|
with STM32GD.GPIO; use STM32GD.GPIO;
with STM32GD.GPIO.Pin;
with STM32GD.CLOCKS;
with STM32GD.CLOCKS.Tree;
with STM32GD.USART;
with STM32GD.USART.Peripheral;
with Drivers.Text_IO;
package STM32GD.Board is
package GPIO renames STM32GD.GPIO;
package Clocks is new STM32GD.Clocks.Tree;
package BUTTON is new Pin (Pin => Pin_12,
Port => Port_D,
Mode => Mode_Out);
package LED is new Pin (Pin => Pin_12,
Port => Port_D,
Mode => Mode_Out);
package LED2 is new Pin (Pin => Pin_13,
Port => Port_D,
Mode => Mode_Out);
package LED3 is new Pin (Pin => Pin_14,
Port => Port_D,
Mode => Mode_Out);
package LED4 is new Pin (Pin => Pin_15,
Port => Port_D,
Mode => Mode_Out);
package TX is new Pin (Pin => Pin_2,
Port => Port_A,
Pull_Resistor => Pull_Up,
Mode => Mode_AF,
Alternate_Function => 7);
package RX is new Pin (Pin => Pin_3,
Port => Port_A,
Pull_Resistor => Pull_Up,
Mode => Mode_AF,
Alternate_Function => 7);
package USART is new STM32GD.USART.Peripheral (
USART => STM32GD.USART.USART_2,
Speed => 115200,
Clock => Clocks.PCLK1);
package Text_IO is new Drivers.Text_IO (USART => STM32GD.Board.USART);
procedure Init;
end STM32GD.Board;
|
with DDS.Typed_DataWriter_Generic;
with DDS.Typed_DataReader_Generic;
generic
with package ReqDataWriter is new DDS.Typed_DataWriter_Generic (<>);
with package ReqDataReader is new DDS.Typed_DataReader_Generic (<>);
package DDS.Request_Reply.Connext_C_Replier.Generic_REPLIER is
package TReq renames ReqDataWRiter.Treats;
package TRep renames ReqDataReader.Treats;
type TReplier is new RTI_Connext_Replier with null record;
type TReplier_Access is access all TReplier'Class;
function Create ( Participant : DDS.DomainParticipant.Ref_Access;
Service_Name : DDS.String) return TReplier_Access;
function Create_W_Params (Params : RTI_Connext_ReplierParams) return TReplier_Access;
function Take_Request (Self : not null access TReplier;
Request : out TReq.Data_Type;
Sample_Info : out DDS.SampleInfo) return DDS.ReturnCode_T;
function Take_Requests (Self : not null access TReplier;
Request : out TReq.Data_Array;
Sample_Info : out DDS.SampleInfo_Seq.Sequence) return DDS.ReturnCode_T;
function Read_Request (Self : not null access TReplier;
Request : out TReq.Data_Type;
Sample_Info : out DDS.SampleInfo) return DDS.ReturnCode_T;
function Read_Requests (Self : not null access TReplier;
Request : out TReq.Data_Array;
Sample_Info : out DDS.SampleInfo_Seq.Sequence) return DDS.ReturnCode_T;
function Receive_Request (Self : not null access TReplier;
Request : out TReq.Data_Type;
Sample_Info : out DDS.SampleInfo;
Max_Wait : DDS.Duration_T) return DDS.ReturnCode_T;
function Receive_Requests (Self : not null access TReplier;
Request : out TReq.Data_Array;
Sample_Info : out DDS.SampleInfo_Seq.Sequence;
Min_Reply_Count : DDS.long;
Max_Reply_Count : DDS.long;
Max_Wait : DDS.Duration_T) return DDS.ReturnCode_T;
function Send_Reply (Self : not null access TReplier;
Reply : TRep.Data_Type;
Related_Request_Info : DDS.SampleIdentity_T) return Dds.ReturnCode_T;
function Get_Request_Datareader (Self : not null access TReplier) return DDS.DataReader.Ref_Access;
function Get_Reply_Datawriter (Self : not null access TReplier) return DDS.DataWriter.Ref_Access;
function Return_Loan (Self : not null access TReplier;
Request : out TReq.Data_Array;
Sample_Info : out DDS.SampleInfo_Seq.Sequence) return Dds.ReturnCode_T;
end DDS.Request_Reply.Connext_C_Replier.Generic_REPLIER;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME LIBRARY (GNARL) COMPONENTS --
-- --
-- I N T E R F A C E S . V X W O R K S . I O --
-- --
-- B o d y --
-- --
-- Copyright (C) 2002-2005, Free Software Foundation, Inc. --
-- --
-- GNARL is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 2, or (at your option) any later ver- --
-- sion. GNARL is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
-- for more details. You should have received a copy of the GNU General --
-- Public License distributed with GNARL; see file COPYING. If not, write --
-- to the Free Software Foundation, 51 Franklin Street, Fifth Floor, --
-- Boston, MA 02110-1301, USA. --
-- --
-- As a special exception, if other files instantiate generics from this --
-- unit, or you link this unit with other files to produce an executable, --
-- this unit does not by itself cause the resulting executable to be --
-- covered by the GNU General Public License. This exception does not --
-- however invalidate any other reasons why the executable file might be --
-- covered by the GNU Public License. --
-- --
-- GNARL was developed by the GNARL team at Florida State University. --
-- Extensive contributions were provided by Ada Core Technologies, Inc. --
-- --
------------------------------------------------------------------------------
package body Interfaces.VxWorks.IO is
--------------------------
-- Enable_Get_Immediate --
--------------------------
procedure Enable_Get_Immediate
(File : Interfaces.C_Streams.FILEs;
Success : out Boolean)
is
Status : int;
Fd : int;
begin
Fd := fileno (File);
Status := ioctl (Fd, FIOSETOPTIONS, OPT_RAW);
if Status /= int (ERROR) then
Success := True;
else
Success := False;
end if;
end Enable_Get_Immediate;
---------------------------
-- Disable_Get_Immediate --
---------------------------
procedure Disable_Get_Immediate
(File : Interfaces.C_Streams.FILEs;
Success : out Boolean)
is
Status : int;
Fd : int;
begin
Fd := fileno (File);
Status := ioctl (Fd, FIOSETOPTIONS, OPT_TERMINAL);
if Status /= int (ERROR) then
Success := True;
else
Success := False;
end if;
end Disable_Get_Immediate;
end Interfaces.VxWorks.IO;
|
--
-- Copyright (c) 2015, John Leimon <jleimon@gmail.com>
--
-- Permission to use, copy, modify, and/or 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.
--
pragma Ada_2005;
pragma Style_Checks (Off);
with Interfaces.C; use Interfaces.C;
with stdint_h;
with Interfaces.C.Strings;
with System;
with stdio_h;
limited with x86_64_linux_gnu_bits_time_h;
package libusb_1_0_libusb_h is
-- unsupported macro: LIBUSB_DEPRECATED_FOR(f) __attribute__((deprecated("Use " #f " instead")))
-- unsupported macro: LIBUSBX_API_VERSION 0x01000102
-- unsupported macro: libusb_le16_to_cpu libusb_cpu_to_le16
-- unsupported macro: LIBUSB_DT_DEVICE_SIZE 18
-- unsupported macro: LIBUSB_DT_CONFIG_SIZE 9
-- unsupported macro: LIBUSB_DT_INTERFACE_SIZE 9
-- unsupported macro: LIBUSB_DT_ENDPOINT_SIZE 7
-- unsupported macro: LIBUSB_DT_ENDPOINT_AUDIO_SIZE 9
-- unsupported macro: LIBUSB_DT_HUB_NONVAR_SIZE 7
-- unsupported macro: LIBUSB_DT_SS_ENDPOINT_COMPANION_SIZE 6
-- unsupported macro: LIBUSB_DT_BOS_SIZE 5
-- unsupported macro: LIBUSB_DT_DEVICE_CAPABILITY_SIZE 3
-- unsupported macro: LIBUSB_BT_USB_2_0_EXTENSION_SIZE 7
-- unsupported macro: LIBUSB_BT_SS_USB_DEVICE_CAPABILITY_SIZE 10
-- unsupported macro: LIBUSB_BT_CONTAINER_ID_SIZE 20
-- unsupported macro: LIBUSB_DT_BOS_MAX_SIZE ((LIBUSB_DT_BOS_SIZE) + (LIBUSB_BT_USB_2_0_EXTENSION_SIZE) + (LIBUSB_BT_SS_USB_DEVICE_CAPABILITY_SIZE) + (LIBUSB_BT_CONTAINER_ID_SIZE))
-- unsupported macro: LIBUSB_ENDPOINT_ADDRESS_MASK 0x0f
-- unsupported macro: LIBUSB_ENDPOINT_DIR_MASK 0x80
-- unsupported macro: LIBUSB_TRANSFER_TYPE_MASK 0x03
-- unsupported macro: LIBUSB_ISO_SYNC_TYPE_MASK 0x0C
-- unsupported macro: LIBUSB_ISO_USAGE_TYPE_MASK 0x30
-- unsupported macro: LIBUSB_CONTROL_SETUP_SIZE (sizeof(struct libusb_control_setup))
-- unsupported macro: LIBUSB_ERROR_COUNT 14
-- unsupported macro: LIBUSB_HOTPLUG_MATCH_ANY -1
function libusb_cpu_to_le16 (x : stdint_h.uint16_t) return stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:161
pragma Import (C, libusb_cpu_to_le16, "libusb_cpu_to_le16");
subtype libusb_class_code is unsigned;
LIBUSB_CLASS_PER_INTERFACE : constant libusb_class_code := 0;
LIBUSB_CLASS_AUDIO : constant libusb_class_code := 1;
LIBUSB_CLASS_COMM : constant libusb_class_code := 2;
LIBUSB_CLASS_HID : constant libusb_class_code := 3;
LIBUSB_CLASS_PHYSICAL : constant libusb_class_code := 5;
LIBUSB_CLASS_PRINTER : constant libusb_class_code := 7;
LIBUSB_CLASS_PTP : constant libusb_class_code := 6;
LIBUSB_CLASS_IMAGE : constant libusb_class_code := 6;
LIBUSB_CLASS_MASS_STORAGE : constant libusb_class_code := 8;
LIBUSB_CLASS_HUB : constant libusb_class_code := 9;
LIBUSB_CLASS_DATA : constant libusb_class_code := 10;
LIBUSB_CLASS_SMART_CARD : constant libusb_class_code := 11;
LIBUSB_CLASS_CONTENT_SECURITY : constant libusb_class_code := 13;
LIBUSB_CLASS_VIDEO : constant libusb_class_code := 14;
LIBUSB_CLASS_PERSONAL_HEALTHCARE : constant libusb_class_code := 15;
LIBUSB_CLASS_DIAGNOSTIC_DEVICE : constant libusb_class_code := 220;
LIBUSB_CLASS_WIRELESS : constant libusb_class_code := 224;
LIBUSB_CLASS_APPLICATION : constant libusb_class_code := 254;
LIBUSB_CLASS_VENDOR_SPEC : constant libusb_class_code := 255; -- /usr/include/libusb-1.0/libusb.h:186
subtype libusb_descriptor_type is unsigned;
LIBUSB_DT_DEVICE : constant libusb_descriptor_type := 1;
LIBUSB_DT_CONFIG : constant libusb_descriptor_type := 2;
LIBUSB_DT_STRING : constant libusb_descriptor_type := 3;
LIBUSB_DT_INTERFACE : constant libusb_descriptor_type := 4;
LIBUSB_DT_ENDPOINT : constant libusb_descriptor_type := 5;
LIBUSB_DT_BOS : constant libusb_descriptor_type := 15;
LIBUSB_DT_DEVICE_CAPABILITY : constant libusb_descriptor_type := 16;
LIBUSB_DT_HID : constant libusb_descriptor_type := 33;
LIBUSB_DT_REPORT : constant libusb_descriptor_type := 34;
LIBUSB_DT_PHYSICAL : constant libusb_descriptor_type := 35;
LIBUSB_DT_HUB : constant libusb_descriptor_type := 41;
LIBUSB_DT_SUPERSPEED_HUB : constant libusb_descriptor_type := 42;
LIBUSB_DT_SS_ENDPOINT_COMPANION : constant libusb_descriptor_type := 48; -- /usr/include/libusb-1.0/libusb.h:248
subtype libusb_endpoint_direction is unsigned;
LIBUSB_ENDPOINT_IN : constant libusb_endpoint_direction := 128;
LIBUSB_ENDPOINT_OUT : constant libusb_endpoint_direction := 0; -- /usr/include/libusb-1.0/libusb.h:318
type libusb_transfer_type is
(LIBUSB_TRANSFER_TYPE_CONTROL,
LIBUSB_TRANSFER_TYPE_ISOCHRONOUS,
LIBUSB_TRANSFER_TYPE_BULK,
LIBUSB_TRANSFER_TYPE_INTERRUPT);
pragma Convention (C, libusb_transfer_type); -- /usr/include/libusb-1.0/libusb.h:332
subtype libusb_standard_request is unsigned;
LIBUSB_REQUEST_GET_STATUS : constant libusb_standard_request := 0;
LIBUSB_REQUEST_CLEAR_FEATURE : constant libusb_standard_request := 1;
LIBUSB_REQUEST_SET_FEATURE : constant libusb_standard_request := 3;
LIBUSB_REQUEST_SET_ADDRESS : constant libusb_standard_request := 5;
LIBUSB_REQUEST_GET_DESCRIPTOR : constant libusb_standard_request := 6;
LIBUSB_REQUEST_SET_DESCRIPTOR : constant libusb_standard_request := 7;
LIBUSB_REQUEST_GET_CONFIGURATION : constant libusb_standard_request := 8;
LIBUSB_REQUEST_SET_CONFIGURATION : constant libusb_standard_request := 9;
LIBUSB_REQUEST_GET_INTERFACE : constant libusb_standard_request := 10;
LIBUSB_REQUEST_SET_INTERFACE : constant libusb_standard_request := 11;
LIBUSB_REQUEST_SYNCH_FRAME : constant libusb_standard_request := 12;
LIBUSB_REQUEST_SET_SEL : constant libusb_standard_request := 48;
LIBUSB_SET_ISOCH_DELAY : constant libusb_standard_request := 49; -- /usr/include/libusb-1.0/libusb.h:348
subtype libusb_request_type is unsigned;
LIBUSB_REQUEST_TYPE_STANDARD : constant libusb_request_type := 0;
LIBUSB_REQUEST_TYPE_CLASS : constant libusb_request_type := 32;
LIBUSB_REQUEST_TYPE_VENDOR : constant libusb_request_type := 64;
LIBUSB_REQUEST_TYPE_RESERVED : constant libusb_request_type := 96; -- /usr/include/libusb-1.0/libusb.h:398
type libusb_request_recipient is
(LIBUSB_RECIPIENT_DEVICE,
LIBUSB_RECIPIENT_INTERFACE,
LIBUSB_RECIPIENT_ENDPOINT,
LIBUSB_RECIPIENT_OTHER);
pragma Convention (C, libusb_request_recipient); -- /usr/include/libusb-1.0/libusb.h:416
type libusb_iso_sync_type is
(LIBUSB_ISO_SYNC_TYPE_NONE,
LIBUSB_ISO_SYNC_TYPE_ASYNC,
LIBUSB_ISO_SYNC_TYPE_ADAPTIVE,
LIBUSB_ISO_SYNC_TYPE_SYNC);
pragma Convention (C, libusb_iso_sync_type); -- /usr/include/libusb-1.0/libusb.h:437
type libusb_iso_usage_type is
(LIBUSB_ISO_USAGE_TYPE_DATA,
LIBUSB_ISO_USAGE_TYPE_FEEDBACK,
LIBUSB_ISO_USAGE_TYPE_IMPLICIT);
pragma Convention (C, libusb_iso_usage_type); -- /usr/include/libusb-1.0/libusb.h:458
type libusb_device_descriptor is record
bLength : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:476
bDescriptorType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:481
bcdUSB : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:485
bDeviceClass : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:488
bDeviceSubClass : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:492
bDeviceProtocol : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:496
bMaxPacketSize0 : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:499
idVendor : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:502
idProduct : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:505
bcdDevice : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:508
iManufacturer : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:511
iProduct : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:514
iSerialNumber : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:517
bNumConfigurations : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:520
end record;
pragma Convention (C_Pass_By_Copy, libusb_device_descriptor); -- /usr/include/libusb-1.0/libusb.h:474
type libusb_endpoint_descriptor is record
bLength : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:530
bDescriptorType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:535
bEndpointAddress : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:541
bmAttributes : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:550
wMaxPacketSize : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:553
bInterval : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:556
bRefresh : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:560
bSynchAddress : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:563
extra : access unsigned_char; -- /usr/include/libusb-1.0/libusb.h:567
extra_length : aliased int; -- /usr/include/libusb-1.0/libusb.h:570
end record;
pragma Convention (C_Pass_By_Copy, libusb_endpoint_descriptor); -- /usr/include/libusb-1.0/libusb.h:528
type libusb_interface_descriptor is record
bLength : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:580
bDescriptorType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:585
bInterfaceNumber : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:588
bAlternateSetting : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:591
bNumEndpoints : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:595
bInterfaceClass : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:598
bInterfaceSubClass : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:602
bInterfaceProtocol : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:606
iInterface : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:609
endpoint : access constant libusb_endpoint_descriptor; -- /usr/include/libusb-1.0/libusb.h:613
extra : access unsigned_char; -- /usr/include/libusb-1.0/libusb.h:617
extra_length : aliased int; -- /usr/include/libusb-1.0/libusb.h:620
end record;
pragma Convention (C_Pass_By_Copy, libusb_interface_descriptor); -- /usr/include/libusb-1.0/libusb.h:578
type libusb_interface is record
altsetting : access constant libusb_interface_descriptor; -- /usr/include/libusb-1.0/libusb.h:629
num_altsetting : aliased int; -- /usr/include/libusb-1.0/libusb.h:632
end record;
pragma Convention (C_Pass_By_Copy, libusb_interface); -- /usr/include/libusb-1.0/libusb.h:626
type libusb_config_descriptor is record
bLength : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:642
bDescriptorType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:647
wTotalLength : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:650
bNumInterfaces : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:653
bConfigurationValue : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:656
iConfiguration : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:659
bmAttributes : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:662
MaxPower : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:667
c_interface : access constant libusb_interface; -- /usr/include/libusb-1.0/libusb.h:671
extra : access unsigned_char; -- /usr/include/libusb-1.0/libusb.h:675
extra_length : aliased int; -- /usr/include/libusb-1.0/libusb.h:678
end record;
pragma Convention (C_Pass_By_Copy, libusb_config_descriptor); -- /usr/include/libusb-1.0/libusb.h:640
type libusb_ss_endpoint_companion_descriptor is record
bLength : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:690
bDescriptorType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:695
bMaxBurst : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:700
bmAttributes : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:706
wBytesPerInterval : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:710
end record;
pragma Convention (C_Pass_By_Copy, libusb_ss_endpoint_companion_descriptor); -- /usr/include/libusb-1.0/libusb.h:687
type libusb_bos_dev_capability_descriptor_dev_capability_data_array is array (0 .. -1) of aliased stdint_h.uint8_t;
type libusb_bos_dev_capability_descriptor is record
bLength : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:720
bDescriptorType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:724
bDevCapabilityType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:726
dev_capability_data : aliased libusb_bos_dev_capability_descriptor_dev_capability_data_array; -- /usr/include/libusb-1.0/libusb.h:732
end record;
pragma Convention (C_Pass_By_Copy, libusb_bos_dev_capability_descriptor); -- /usr/include/libusb-1.0/libusb.h:718
type libusb_bos_descriptor_dev_capability_array is array (0 .. -1) of access libusb_bos_dev_capability_descriptor;
type libusb_bos_descriptor is record
bLength : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:744
bDescriptorType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:749
wTotalLength : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:752
bNumDeviceCaps : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:756
dev_capability : aliased libusb_bos_descriptor_dev_capability_array; -- /usr/include/libusb-1.0/libusb.h:763
end record;
pragma Convention (C_Pass_By_Copy, libusb_bos_descriptor); -- /usr/include/libusb-1.0/libusb.h:742
type libusb_usb_2_0_extension_descriptor is record
bLength : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:775
bDescriptorType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:780
bDevCapabilityType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:785
bmAttributes : aliased stdint_h.uint32_t; -- /usr/include/libusb-1.0/libusb.h:791
end record;
pragma Convention (C_Pass_By_Copy, libusb_usb_2_0_extension_descriptor); -- /usr/include/libusb-1.0/libusb.h:773
type libusb_ss_usb_device_capability_descriptor is record
bLength : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:801
bDescriptorType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:806
bDevCapabilityType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:811
bmAttributes : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:817
wSpeedSupported : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:821
bFunctionalitySupport : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:827
bU1DevExitLat : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:830
bU2DevExitLat : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:833
end record;
pragma Convention (C_Pass_By_Copy, libusb_ss_usb_device_capability_descriptor); -- /usr/include/libusb-1.0/libusb.h:799
type libusb_container_id_descriptor_ContainerID_array is array (0 .. 15) of aliased stdint_h.uint8_t;
type libusb_container_id_descriptor is record
bLength : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:843
bDescriptorType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:848
bDevCapabilityType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:853
bReserved : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:856
ContainerID : aliased libusb_container_id_descriptor_ContainerID_array; -- /usr/include/libusb-1.0/libusb.h:859
end record;
pragma Convention (C_Pass_By_Copy, libusb_container_id_descriptor); -- /usr/include/libusb-1.0/libusb.h:841
type libusb_control_setup is record
bmRequestType : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:870
bRequest : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:877
wValue : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:880
wIndex : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:884
wLength : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:887
end record;
pragma Convention (C_Pass_By_Copy, libusb_control_setup); -- /usr/include/libusb-1.0/libusb.h:864
-- skipped empty struct libusb_context
-- skipped empty struct libusb_device
-- skipped empty struct libusb_device_handle
-- skipped empty struct libusb_hotplug_callback
type libusb_version is record
major : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:904
minor : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:907
micro : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:910
nano : aliased stdint_h.uint16_t; -- /usr/include/libusb-1.0/libusb.h:913
rc : Interfaces.C.Strings.chars_ptr; -- /usr/include/libusb-1.0/libusb.h:916
describe : Interfaces.C.Strings.chars_ptr; -- /usr/include/libusb-1.0/libusb.h:919
end record;
pragma Convention (C_Pass_By_Copy, libusb_version); -- /usr/include/libusb-1.0/libusb.h:902
type libusb_speed is
(LIBUSB_SPEED_UNKNOWN,
LIBUSB_SPEED_LOW,
LIBUSB_SPEED_FULL,
LIBUSB_SPEED_HIGH,
LIBUSB_SPEED_SUPER);
pragma Convention (C, libusb_speed); -- /usr/include/libusb-1.0/libusb.h:972
subtype libusb_supported_speed is unsigned;
LIBUSB_LOW_SPEED_OPERATION : constant libusb_supported_speed := 1;
LIBUSB_FULL_SPEED_OPERATION : constant libusb_supported_speed := 2;
LIBUSB_HIGH_SPEED_OPERATION : constant libusb_supported_speed := 4;
LIBUSB_SUPER_SPEED_OPERATION : constant libusb_supported_speed := 8; -- /usr/include/libusb-1.0/libusb.h:993
subtype libusb_usb_2_0_extension_attributes is unsigned;
LIBUSB_BM_LPM_SUPPORT : constant libusb_usb_2_0_extension_attributes := 2; -- /usr/include/libusb-1.0/libusb.h:1012
subtype libusb_ss_usb_device_capability_attributes is unsigned;
LIBUSB_BM_LTM_SUPPORT : constant libusb_ss_usb_device_capability_attributes := 2; -- /usr/include/libusb-1.0/libusb.h:1022
subtype libusb_bos_type is unsigned;
LIBUSB_BT_WIRELESS_USB_DEVICE_CAPABILITY : constant libusb_bos_type := 1;
LIBUSB_BT_USB_2_0_EXTENSION : constant libusb_bos_type := 2;
LIBUSB_BT_SS_USB_DEVICE_CAPABILITY : constant libusb_bos_type := 3;
LIBUSB_BT_CONTAINER_ID : constant libusb_bos_type := 4; -- /usr/include/libusb-1.0/libusb.h:1030
subtype libusb_error is unsigned;
LIBUSB_SUCCESS : constant libusb_error := 0;
LIBUSB_ERROR_IO : constant libusb_error := -1;
LIBUSB_ERROR_INVALID_PARAM : constant libusb_error := -2;
LIBUSB_ERROR_ACCESS : constant libusb_error := -3;
LIBUSB_ERROR_NO_DEVICE : constant libusb_error := -4;
LIBUSB_ERROR_NOT_FOUND : constant libusb_error := -5;
LIBUSB_ERROR_BUSY : constant libusb_error := -6;
LIBUSB_ERROR_TIMEOUT : constant libusb_error := -7;
LIBUSB_ERROR_OVERFLOW : constant libusb_error := -8;
LIBUSB_ERROR_PIPE : constant libusb_error := -9;
LIBUSB_ERROR_INTERRUPTED : constant libusb_error := -10;
LIBUSB_ERROR_NO_MEM : constant libusb_error := -11;
LIBUSB_ERROR_NOT_SUPPORTED : constant libusb_error := -12;
LIBUSB_ERROR_OTHER : constant libusb_error := -99; -- /usr/include/libusb-1.0/libusb.h:1051
type libusb_transfer_status is
(LIBUSB_TRANSFER_COMPLETED,
LIBUSB_TRANSFER_ERROR,
LIBUSB_TRANSFER_TIMED_OUT,
LIBUSB_TRANSFER_CANCELLED,
LIBUSB_TRANSFER_STALL,
LIBUSB_TRANSFER_NO_DEVICE,
LIBUSB_TRANSFER_OVERFLOW);
pragma Convention (C, libusb_transfer_status); -- /usr/include/libusb-1.0/libusb.h:1103
subtype libusb_transfer_flags is unsigned;
LIBUSB_TRANSFER_SHORT_NOT_OK : constant libusb_transfer_flags := 1;
LIBUSB_TRANSFER_FREE_BUFFER : constant libusb_transfer_flags := 2;
LIBUSB_TRANSFER_FREE_TRANSFER : constant libusb_transfer_flags := 4;
LIBUSB_TRANSFER_ADD_ZERO_PACKET : constant libusb_transfer_flags := 8; -- /usr/include/libusb-1.0/libusb.h:1133
type libusb_iso_packet_descriptor is record
length : aliased unsigned; -- /usr/include/libusb-1.0/libusb.h:1176
actual_length : aliased unsigned; -- /usr/include/libusb-1.0/libusb.h:1179
status : aliased libusb_transfer_status; -- /usr/include/libusb-1.0/libusb.h:1182
end record;
pragma Convention (C_Pass_By_Copy, libusb_iso_packet_descriptor); -- /usr/include/libusb-1.0/libusb.h:1174
type libusb_transfer_cb_fn is access procedure (arg1 : System.Address);
pragma Convention (C, libusb_transfer_cb_fn); -- /usr/include/libusb-1.0/libusb.h:1196
type libusb_transfer_iso_packet_desc_array is array (0 .. -1) of aliased libusb_iso_packet_descriptor;
type libusb_transfer is record
dev_handle : System.Address; -- /usr/include/libusb-1.0/libusb.h:1206
flags : aliased stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:1209
endpoint : aliased unsigned_char; -- /usr/include/libusb-1.0/libusb.h:1212
c_type : aliased unsigned_char; -- /usr/include/libusb-1.0/libusb.h:1215
timeout : aliased unsigned; -- /usr/include/libusb-1.0/libusb.h:1219
status : aliased libusb_transfer_status; -- /usr/include/libusb-1.0/libusb.h:1228
length : aliased int; -- /usr/include/libusb-1.0/libusb.h:1231
actual_length : aliased int; -- /usr/include/libusb-1.0/libusb.h:1236
callback : libusb_transfer_cb_fn; -- /usr/include/libusb-1.0/libusb.h:1240
user_data : System.Address; -- /usr/include/libusb-1.0/libusb.h:1243
buffer : access unsigned_char; -- /usr/include/libusb-1.0/libusb.h:1246
num_iso_packets : aliased int; -- /usr/include/libusb-1.0/libusb.h:1250
iso_packet_desc : aliased libusb_transfer_iso_packet_desc_array; -- /usr/include/libusb-1.0/libusb.h:1257
end record;
pragma Convention (C_Pass_By_Copy, libusb_transfer); -- /usr/include/libusb-1.0/libusb.h:1204
subtype libusb_capability is unsigned;
LIBUSB_CAP_HAS_CAPABILITY : constant libusb_capability := 0;
LIBUSB_CAP_HAS_HOTPLUG : constant libusb_capability := 1;
LIBUSB_CAP_HAS_HID_ACCESS : constant libusb_capability := 256;
LIBUSB_CAP_SUPPORTS_DETACH_KERNEL_DRIVER : constant libusb_capability := 257; -- /usr/include/libusb-1.0/libusb.h:1267
type libusb_log_level is
(LIBUSB_LOG_LEVEL_NONE,
LIBUSB_LOG_LEVEL_ERROR,
LIBUSB_LOG_LEVEL_WARNING,
LIBUSB_LOG_LEVEL_INFO,
LIBUSB_LOG_LEVEL_DEBUG);
pragma Convention (C, libusb_log_level); -- /usr/include/libusb-1.0/libusb.h:1292
function libusb_init (ctx : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1300
pragma Import (C, libusb_init, "libusb_init");
procedure libusb_exit (ctx : System.Address); -- /usr/include/libusb-1.0/libusb.h:1301
pragma Import (C, libusb_exit, "libusb_exit");
procedure libusb_set_debug (ctx : System.Address; level : int); -- /usr/include/libusb-1.0/libusb.h:1302
pragma Import (C, libusb_set_debug, "libusb_set_debug");
function libusb_get_version return access constant libusb_version; -- /usr/include/libusb-1.0/libusb.h:1303
pragma Import (C, libusb_get_version, "libusb_get_version");
function libusb_has_capability (capability : stdint_h.uint32_t) return int; -- /usr/include/libusb-1.0/libusb.h:1304
pragma Import (C, libusb_has_capability, "libusb_has_capability");
function libusb_error_name (errcode : int) return Interfaces.C.Strings.chars_ptr; -- /usr/include/libusb-1.0/libusb.h:1305
pragma Import (C, libusb_error_name, "libusb_error_name");
function libusb_setlocale (locale : Interfaces.C.Strings.chars_ptr) return int; -- /usr/include/libusb-1.0/libusb.h:1306
pragma Import (C, libusb_setlocale, "libusb_setlocale");
function libusb_strerror (errcode : libusb_error) return Interfaces.C.Strings.chars_ptr; -- /usr/include/libusb-1.0/libusb.h:1307
pragma Import (C, libusb_strerror, "libusb_strerror");
function libusb_get_device_list (ctx : System.Address; list : System.Address) return stdio_h.ssize_t; -- /usr/include/libusb-1.0/libusb.h:1309
pragma Import (C, libusb_get_device_list, "libusb_get_device_list");
procedure libusb_free_device_list (list : System.Address; unref_devices : int); -- /usr/include/libusb-1.0/libusb.h:1311
pragma Import (C, libusb_free_device_list, "libusb_free_device_list");
function libusb_ref_device (dev : System.Address) return System.Address; -- /usr/include/libusb-1.0/libusb.h:1313
pragma Import (C, libusb_ref_device, "libusb_ref_device");
procedure libusb_unref_device (dev : System.Address); -- /usr/include/libusb-1.0/libusb.h:1314
pragma Import (C, libusb_unref_device, "libusb_unref_device");
function libusb_get_configuration (dev : System.Address; config : access int) return int; -- /usr/include/libusb-1.0/libusb.h:1316
pragma Import (C, libusb_get_configuration, "libusb_get_configuration");
function libusb_get_device_descriptor (dev : System.Address; desc : access libusb_device_descriptor) return int; -- /usr/include/libusb-1.0/libusb.h:1318
pragma Import (C, libusb_get_device_descriptor, "libusb_get_device_descriptor");
function libusb_get_active_config_descriptor (dev : System.Address; config : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1320
pragma Import (C, libusb_get_active_config_descriptor, "libusb_get_active_config_descriptor");
function libusb_get_config_descriptor
(dev : System.Address;
config_index : stdint_h.uint8_t;
config : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1322
pragma Import (C, libusb_get_config_descriptor, "libusb_get_config_descriptor");
function libusb_get_config_descriptor_by_value
(dev : System.Address;
bConfigurationValue : stdint_h.uint8_t;
config : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1324
pragma Import (C, libusb_get_config_descriptor_by_value, "libusb_get_config_descriptor_by_value");
procedure libusb_free_config_descriptor (config : access libusb_config_descriptor); -- /usr/include/libusb-1.0/libusb.h:1326
pragma Import (C, libusb_free_config_descriptor, "libusb_free_config_descriptor");
function libusb_get_ss_endpoint_companion_descriptor
(ctx : System.Address;
endpoint : access constant libusb_endpoint_descriptor;
ep_comp : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1328
pragma Import (C, libusb_get_ss_endpoint_companion_descriptor, "libusb_get_ss_endpoint_companion_descriptor");
procedure libusb_free_ss_endpoint_companion_descriptor (ep_comp : access libusb_ss_endpoint_companion_descriptor); -- /usr/include/libusb-1.0/libusb.h:1332
pragma Import (C, libusb_free_ss_endpoint_companion_descriptor, "libusb_free_ss_endpoint_companion_descriptor");
function libusb_get_bos_descriptor (handle : System.Address; bos : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1334
pragma Import (C, libusb_get_bos_descriptor, "libusb_get_bos_descriptor");
procedure libusb_free_bos_descriptor (bos : access libusb_bos_descriptor); -- /usr/include/libusb-1.0/libusb.h:1336
pragma Import (C, libusb_free_bos_descriptor, "libusb_free_bos_descriptor");
function libusb_get_usb_2_0_extension_descriptor
(ctx : System.Address;
dev_cap : access libusb_bos_dev_capability_descriptor;
usb_2_0_extension : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1337
pragma Import (C, libusb_get_usb_2_0_extension_descriptor, "libusb_get_usb_2_0_extension_descriptor");
procedure libusb_free_usb_2_0_extension_descriptor (usb_2_0_extension : access libusb_usb_2_0_extension_descriptor); -- /usr/include/libusb-1.0/libusb.h:1341
pragma Import (C, libusb_free_usb_2_0_extension_descriptor, "libusb_free_usb_2_0_extension_descriptor");
function libusb_get_ss_usb_device_capability_descriptor
(ctx : System.Address;
dev_cap : access libusb_bos_dev_capability_descriptor;
ss_usb_device_cap : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1343
pragma Import (C, libusb_get_ss_usb_device_capability_descriptor, "libusb_get_ss_usb_device_capability_descriptor");
procedure libusb_free_ss_usb_device_capability_descriptor (ss_usb_device_cap : access libusb_ss_usb_device_capability_descriptor); -- /usr/include/libusb-1.0/libusb.h:1347
pragma Import (C, libusb_free_ss_usb_device_capability_descriptor, "libusb_free_ss_usb_device_capability_descriptor");
function libusb_get_container_id_descriptor
(ctx : System.Address;
dev_cap : access libusb_bos_dev_capability_descriptor;
container_id : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1349
pragma Import (C, libusb_get_container_id_descriptor, "libusb_get_container_id_descriptor");
procedure libusb_free_container_id_descriptor (container_id : access libusb_container_id_descriptor); -- /usr/include/libusb-1.0/libusb.h:1352
pragma Import (C, libusb_free_container_id_descriptor, "libusb_free_container_id_descriptor");
function libusb_get_bus_number (dev : System.Address) return stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:1354
pragma Import (C, libusb_get_bus_number, "libusb_get_bus_number");
function libusb_get_port_number (dev : System.Address) return stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:1355
pragma Import (C, libusb_get_port_number, "libusb_get_port_number");
function libusb_get_port_numbers
(dev : System.Address;
port_numbers : access stdint_h.uint8_t;
port_numbers_len : int) return int; -- /usr/include/libusb-1.0/libusb.h:1356
pragma Import (C, libusb_get_port_numbers, "libusb_get_port_numbers");
function libusb_get_port_path
(ctx : System.Address;
dev : System.Address;
path : access stdint_h.uint8_t;
path_length : stdint_h.uint8_t) return int; -- /usr/include/libusb-1.0/libusb.h:1358
pragma Import (C, libusb_get_port_path, "libusb_get_port_path");
function libusb_get_parent (dev : System.Address) return System.Address; -- /usr/include/libusb-1.0/libusb.h:1359
pragma Import (C, libusb_get_parent, "libusb_get_parent");
function libusb_get_device_address (dev : System.Address) return stdint_h.uint8_t; -- /usr/include/libusb-1.0/libusb.h:1360
pragma Import (C, libusb_get_device_address, "libusb_get_device_address");
function libusb_get_device_speed (dev : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1361
pragma Import (C, libusb_get_device_speed, "libusb_get_device_speed");
function libusb_get_max_packet_size (dev : System.Address; endpoint : unsigned_char) return int; -- /usr/include/libusb-1.0/libusb.h:1362
pragma Import (C, libusb_get_max_packet_size, "libusb_get_max_packet_size");
function libusb_get_max_iso_packet_size (dev : System.Address; endpoint : unsigned_char) return int; -- /usr/include/libusb-1.0/libusb.h:1364
pragma Import (C, libusb_get_max_iso_packet_size, "libusb_get_max_iso_packet_size");
function libusb_open (dev : System.Address; handle : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1367
pragma Import (C, libusb_open, "libusb_open");
procedure libusb_close (dev_handle : System.Address); -- /usr/include/libusb-1.0/libusb.h:1368
pragma Import (C, libusb_close, "libusb_close");
function libusb_get_device (dev_handle : System.Address) return System.Address; -- /usr/include/libusb-1.0/libusb.h:1369
pragma Import (C, libusb_get_device, "libusb_get_device");
function libusb_set_configuration (dev : System.Address; configuration : int) return int; -- /usr/include/libusb-1.0/libusb.h:1371
pragma Import (C, libusb_set_configuration, "libusb_set_configuration");
function libusb_claim_interface (dev : System.Address; interface_number : int) return int; -- /usr/include/libusb-1.0/libusb.h:1373
pragma Import (C, libusb_claim_interface, "libusb_claim_interface");
function libusb_release_interface (dev : System.Address; interface_number : int) return int; -- /usr/include/libusb-1.0/libusb.h:1375
pragma Import (C, libusb_release_interface, "libusb_release_interface");
function libusb_open_device_with_vid_pid
(ctx : System.Address;
vendor_id : stdint_h.uint16_t;
product_id : stdint_h.uint16_t) return System.Address; -- /usr/include/libusb-1.0/libusb.h:1378
pragma Import (C, libusb_open_device_with_vid_pid, "libusb_open_device_with_vid_pid");
function libusb_set_interface_alt_setting
(dev : System.Address;
interface_number : int;
alternate_setting : int) return int; -- /usr/include/libusb-1.0/libusb.h:1381
pragma Import (C, libusb_set_interface_alt_setting, "libusb_set_interface_alt_setting");
function libusb_clear_halt (dev : System.Address; endpoint : unsigned_char) return int; -- /usr/include/libusb-1.0/libusb.h:1383
pragma Import (C, libusb_clear_halt, "libusb_clear_halt");
function libusb_reset_device (dev : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1385
pragma Import (C, libusb_reset_device, "libusb_reset_device");
function libusb_kernel_driver_active (dev : System.Address; interface_number : int) return int; -- /usr/include/libusb-1.0/libusb.h:1387
pragma Import (C, libusb_kernel_driver_active, "libusb_kernel_driver_active");
function libusb_detach_kernel_driver (dev : System.Address; interface_number : int) return int; -- /usr/include/libusb-1.0/libusb.h:1389
pragma Import (C, libusb_detach_kernel_driver, "libusb_detach_kernel_driver");
function libusb_attach_kernel_driver (dev : System.Address; interface_number : int) return int; -- /usr/include/libusb-1.0/libusb.h:1391
pragma Import (C, libusb_attach_kernel_driver, "libusb_attach_kernel_driver");
function libusb_set_auto_detach_kernel_driver (dev : System.Address; enable : int) return int; -- /usr/include/libusb-1.0/libusb.h:1393
pragma Import (C, libusb_set_auto_detach_kernel_driver, "libusb_set_auto_detach_kernel_driver");
function libusb_control_transfer_get_data (transfer : access libusb_transfer) return access unsigned_char; -- /usr/include/libusb-1.0/libusb.h:1410
pragma Import (C, libusb_control_transfer_get_data, "libusb_control_transfer_get_data");
function libusb_control_transfer_get_setup (transfer : access libusb_transfer) return access libusb_control_setup; -- /usr/include/libusb-1.0/libusb.h:1428
pragma Import (C, libusb_control_transfer_get_setup, "libusb_control_transfer_get_setup");
procedure libusb_fill_control_setup
(buffer : access unsigned_char;
bmRequestType : stdint_h.uint8_t;
bRequest : stdint_h.uint8_t;
wValue : stdint_h.uint16_t;
wIndex : stdint_h.uint16_t;
wLength : stdint_h.uint16_t); -- /usr/include/libusb-1.0/libusb.h:1457
pragma Import (C, libusb_fill_control_setup, "libusb_fill_control_setup");
function libusb_alloc_transfer (iso_packets : int) return access libusb_transfer; -- /usr/include/libusb-1.0/libusb.h:1469
pragma Import (C, libusb_alloc_transfer, "libusb_alloc_transfer");
function libusb_submit_transfer (transfer : access libusb_transfer) return int; -- /usr/include/libusb-1.0/libusb.h:1470
pragma Import (C, libusb_submit_transfer, "libusb_submit_transfer");
function libusb_cancel_transfer (transfer : access libusb_transfer) return int; -- /usr/include/libusb-1.0/libusb.h:1471
pragma Import (C, libusb_cancel_transfer, "libusb_cancel_transfer");
procedure libusb_free_transfer (transfer : access libusb_transfer); -- /usr/include/libusb-1.0/libusb.h:1472
pragma Import (C, libusb_free_transfer, "libusb_free_transfer");
procedure libusb_fill_control_transfer
(transfer : access libusb_transfer;
dev_handle : System.Address;
buffer : access unsigned_char;
callback : libusb_transfer_cb_fn;
user_data : System.Address;
timeout : unsigned); -- /usr/include/libusb-1.0/libusb.h:1502
pragma Import (C, libusb_fill_control_transfer, "libusb_fill_control_transfer");
procedure libusb_fill_bulk_transfer
(transfer : access libusb_transfer;
dev_handle : System.Address;
endpoint : unsigned_char;
buffer : access unsigned_char;
length : int;
callback : libusb_transfer_cb_fn;
user_data : System.Address;
timeout : unsigned); -- /usr/include/libusb-1.0/libusb.h:1533
pragma Import (C, libusb_fill_bulk_transfer, "libusb_fill_bulk_transfer");
procedure libusb_fill_interrupt_transfer
(transfer : access libusb_transfer;
dev_handle : System.Address;
endpoint : unsigned_char;
buffer : access unsigned_char;
length : int;
callback : libusb_transfer_cb_fn;
user_data : System.Address;
timeout : unsigned); -- /usr/include/libusb-1.0/libusb.h:1561
pragma Import (C, libusb_fill_interrupt_transfer, "libusb_fill_interrupt_transfer");
procedure libusb_fill_iso_transfer
(transfer : access libusb_transfer;
dev_handle : System.Address;
endpoint : unsigned_char;
buffer : access unsigned_char;
length : int;
num_iso_packets : int;
callback : libusb_transfer_cb_fn;
user_data : System.Address;
timeout : unsigned); -- /usr/include/libusb-1.0/libusb.h:1590
pragma Import (C, libusb_fill_iso_transfer, "libusb_fill_iso_transfer");
procedure libusb_set_iso_packet_lengths (transfer : access libusb_transfer; length : unsigned); -- /usr/include/libusb-1.0/libusb.h:1614
pragma Import (C, libusb_set_iso_packet_lengths, "libusb_set_iso_packet_lengths");
function libusb_get_iso_packet_buffer (transfer : access libusb_transfer; packet : unsigned) return access unsigned_char; -- /usr/include/libusb-1.0/libusb.h:1638
pragma Import (C, libusb_get_iso_packet_buffer, "libusb_get_iso_packet_buffer");
function libusb_get_iso_packet_buffer_simple (transfer : access libusb_transfer; packet : unsigned) return access unsigned_char; -- /usr/include/libusb-1.0/libusb.h:1680
pragma Import (C, libusb_get_iso_packet_buffer_simple, "libusb_get_iso_packet_buffer_simple");
function libusb_control_transfer
(dev_handle : System.Address;
request_type : stdint_h.uint8_t;
bRequest : stdint_h.uint8_t;
wValue : stdint_h.uint16_t;
wIndex : stdint_h.uint16_t;
data : access unsigned_char;
wLength : stdint_h.uint16_t;
timeout : unsigned) return int; -- /usr/include/libusb-1.0/libusb.h:1700
pragma Import (C, libusb_control_transfer, "libusb_control_transfer");
function libusb_bulk_transfer
(dev_handle : System.Address;
endpoint : unsigned_char;
data : access unsigned_char;
length : int;
actual_length : access int;
timeout : unsigned) return int; -- /usr/include/libusb-1.0/libusb.h:1704
pragma Import (C, libusb_bulk_transfer, "libusb_bulk_transfer");
function libusb_interrupt_transfer
(dev_handle : System.Address;
endpoint : unsigned_char;
data : access unsigned_char;
length : int;
actual_length : access int;
timeout : unsigned) return int; -- /usr/include/libusb-1.0/libusb.h:1708
pragma Import (C, libusb_interrupt_transfer, "libusb_interrupt_transfer");
function libusb_get_descriptor
(dev : System.Address;
desc_type : stdint_h.uint8_t;
desc_index : stdint_h.uint8_t;
data : access unsigned_char;
length : int) return int; -- /usr/include/libusb-1.0/libusb.h:1724
pragma Import (C, libusb_get_descriptor, "libusb_get_descriptor");
function libusb_get_string_descriptor
(dev : System.Address;
desc_index : stdint_h.uint8_t;
langid : stdint_h.uint16_t;
data : access unsigned_char;
length : int) return int; -- /usr/include/libusb-1.0/libusb.h:1746
pragma Import (C, libusb_get_string_descriptor, "libusb_get_string_descriptor");
function libusb_get_string_descriptor_ascii
(dev : System.Address;
desc_index : stdint_h.uint8_t;
data : access unsigned_char;
length : int) return int; -- /usr/include/libusb-1.0/libusb.h:1754
pragma Import (C, libusb_get_string_descriptor_ascii, "libusb_get_string_descriptor_ascii");
function libusb_try_lock_events (ctx : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1759
pragma Import (C, libusb_try_lock_events, "libusb_try_lock_events");
procedure libusb_lock_events (ctx : System.Address); -- /usr/include/libusb-1.0/libusb.h:1760
pragma Import (C, libusb_lock_events, "libusb_lock_events");
procedure libusb_unlock_events (ctx : System.Address); -- /usr/include/libusb-1.0/libusb.h:1761
pragma Import (C, libusb_unlock_events, "libusb_unlock_events");
function libusb_event_handling_ok (ctx : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1762
pragma Import (C, libusb_event_handling_ok, "libusb_event_handling_ok");
function libusb_event_handler_active (ctx : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1763
pragma Import (C, libusb_event_handler_active, "libusb_event_handler_active");
procedure libusb_lock_event_waiters (ctx : System.Address); -- /usr/include/libusb-1.0/libusb.h:1764
pragma Import (C, libusb_lock_event_waiters, "libusb_lock_event_waiters");
procedure libusb_unlock_event_waiters (ctx : System.Address); -- /usr/include/libusb-1.0/libusb.h:1765
pragma Import (C, libusb_unlock_event_waiters, "libusb_unlock_event_waiters");
function libusb_wait_for_event (ctx : System.Address; tv : access x86_64_linux_gnu_bits_time_h.timeval) return int; -- /usr/include/libusb-1.0/libusb.h:1766
pragma Import (C, libusb_wait_for_event, "libusb_wait_for_event");
function libusb_handle_events_timeout (ctx : System.Address; tv : access x86_64_linux_gnu_bits_time_h.timeval) return int; -- /usr/include/libusb-1.0/libusb.h:1768
pragma Import (C, libusb_handle_events_timeout, "libusb_handle_events_timeout");
function libusb_handle_events_timeout_completed
(ctx : System.Address;
tv : access x86_64_linux_gnu_bits_time_h.timeval;
completed : access int) return int; -- /usr/include/libusb-1.0/libusb.h:1770
pragma Import (C, libusb_handle_events_timeout_completed, "libusb_handle_events_timeout_completed");
function libusb_handle_events (ctx : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1772
pragma Import (C, libusb_handle_events, "libusb_handle_events");
function libusb_handle_events_completed (ctx : System.Address; completed : access int) return int; -- /usr/include/libusb-1.0/libusb.h:1773
pragma Import (C, libusb_handle_events_completed, "libusb_handle_events_completed");
function libusb_handle_events_locked (ctx : System.Address; tv : access x86_64_linux_gnu_bits_time_h.timeval) return int; -- /usr/include/libusb-1.0/libusb.h:1774
pragma Import (C, libusb_handle_events_locked, "libusb_handle_events_locked");
function libusb_pollfds_handle_timeouts (ctx : System.Address) return int; -- /usr/include/libusb-1.0/libusb.h:1776
pragma Import (C, libusb_pollfds_handle_timeouts, "libusb_pollfds_handle_timeouts");
function libusb_get_next_timeout (ctx : System.Address; tv : access x86_64_linux_gnu_bits_time_h.timeval) return int; -- /usr/include/libusb-1.0/libusb.h:1777
pragma Import (C, libusb_get_next_timeout, "libusb_get_next_timeout");
type libusb_pollfd is record
fd : aliased int; -- /usr/include/libusb-1.0/libusb.h:1785
events : aliased short; -- /usr/include/libusb-1.0/libusb.h:1791
end record;
pragma Convention (C_Pass_By_Copy, libusb_pollfd); -- /usr/include/libusb-1.0/libusb.h:1783
type libusb_pollfd_added_cb is access procedure
(arg1 : int;
arg2 : short;
arg3 : System.Address);
pragma Convention (C, libusb_pollfd_added_cb); -- /usr/include/libusb-1.0/libusb.h:1804
type libusb_pollfd_removed_cb is access procedure (arg1 : int; arg2 : System.Address);
pragma Convention (C, libusb_pollfd_removed_cb); -- /usr/include/libusb-1.0/libusb.h:1816
function libusb_get_pollfds (ctx : System.Address) return System.Address; -- /usr/include/libusb-1.0/libusb.h:1818
pragma Import (C, libusb_get_pollfds, "libusb_get_pollfds");
procedure libusb_set_pollfd_notifiers
(ctx : System.Address;
added_cb : libusb_pollfd_added_cb;
removed_cb : libusb_pollfd_removed_cb;
user_data : System.Address); -- /usr/include/libusb-1.0/libusb.h:1820
pragma Import (C, libusb_set_pollfd_notifiers, "libusb_set_pollfd_notifiers");
subtype libusb_hotplug_callback_handle is int; -- /usr/include/libusb-1.0/libusb.h:1836
subtype libusb_hotplug_flag is unsigned;
LIBUSB_HOTPLUG_ENUMERATE : constant libusb_hotplug_flag := 1; -- /usr/include/libusb-1.0/libusb.h:1846
subtype libusb_hotplug_event is unsigned;
LIBUSB_HOTPLUG_EVENT_DEVICE_ARRIVED : constant libusb_hotplug_event := 1;
LIBUSB_HOTPLUG_EVENT_DEVICE_LEFT : constant libusb_hotplug_event := 2; -- /usr/include/libusb-1.0/libusb.h:1861
type libusb_hotplug_callback_fn is access function
(arg1 : System.Address;
arg2 : System.Address;
arg3 : libusb_hotplug_event;
arg4 : System.Address) return int;
pragma Convention (C, libusb_hotplug_callback_fn); -- /usr/include/libusb-1.0/libusb.h:1889
function libusb_hotplug_register_callback
(ctx : System.Address;
events : libusb_hotplug_event;
flags : libusb_hotplug_flag;
vendor_id : int;
product_id : int;
dev_class : int;
cb_fn : libusb_hotplug_callback_fn;
user_data : System.Address;
handle : access libusb_hotplug_callback_handle) return int; -- /usr/include/libusb-1.0/libusb.h:1928
pragma Import (C, libusb_hotplug_register_callback, "libusb_hotplug_register_callback");
procedure libusb_hotplug_deregister_callback (ctx : System.Address; handle : libusb_hotplug_callback_handle); -- /usr/include/libusb-1.0/libusb.h:1948
pragma Import (C, libusb_hotplug_deregister_callback, "libusb_hotplug_deregister_callback");
end libusb_1_0_libusb_h;
|
-----------------------------------------------------------------------
-- Util.Beans.Objects.Hash -- Hash on an object
-- Copyright (C) 2010, 2011 Stephane Carrez
-- Written by Stephane Carrez (Stephane.Carrez@gmail.com)
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
-----------------------------------------------------------------------
with Ada.Strings.Hash;
with Ada.Strings.Wide_Wide_Hash;
with Ada.Unchecked_Conversion;
with Interfaces;
with Util.Beans.Basic;
function Util.Beans.Objects.Hash (Key : in Object) return Ada.Containers.Hash_Type is
use Ada.Containers;
use Ada.Strings;
use Interfaces;
use Util.Beans.Basic;
type Unsigned_32_Array is array (Natural range <>) of Unsigned_32;
subtype U32_For_Float is Unsigned_32_Array (1 .. Long_Long_Float'Size / 32);
subtype U32_For_Duration is Unsigned_32_Array (1 .. Duration'Size / 32);
subtype U32_For_Long is Unsigned_32_Array (1 .. Long_Long_Integer'Size / 32);
subtype U32_For_Access is Unsigned_32_Array (1 .. Readonly_Bean_Access'Size / 32);
-- Hash the integer and floats using 32-bit values.
function To_U32_For_Long is new Ada.Unchecked_Conversion (Source => Long_Long_Integer,
Target => U32_For_Long);
-- Likewise for floats.
function To_U32_For_Float is new Ada.Unchecked_Conversion (Source => Long_Long_Float,
Target => U32_For_Float);
-- Likewise for duration.
function To_U32_For_Duration is new Ada.Unchecked_Conversion (Source => Duration,
Target => U32_For_Duration);
-- Likewise for the bean pointer
function To_U32_For_Access is new Ada.Unchecked_Conversion (Source => Readonly_Bean_Access,
Target => U32_For_Access);
begin
case Key.V.Of_Type is
when TYPE_NULL =>
return 0;
when TYPE_BOOLEAN =>
if Key.V.Bool_Value then
return 1;
else
return 2;
end if;
when TYPE_INTEGER =>
declare
U32 : constant U32_For_Long := To_U32_For_Long (Key.V.Int_Value);
Val : Unsigned_32 := U32 (U32'First);
begin
for I in U32'First + 1 .. U32'Last loop
Val := Val xor U32 (I);
end loop;
return Hash_Type (Val);
end;
when TYPE_FLOAT =>
declare
U32 : constant U32_For_Float := To_U32_For_Float (Key.V.Float_Value);
Val : Unsigned_32 := U32 (U32'First);
begin
for I in U32'First + 1 .. U32'Last loop
Val := Val xor U32 (I);
end loop;
return Hash_Type (Val);
end;
when TYPE_STRING =>
if Key.V.String_Proxy = null then
return 0;
else
return Hash (Key.V.String_Proxy.Value);
end if;
when TYPE_TIME =>
declare
U32 : constant U32_For_Duration := To_U32_For_Duration (Key.V.Time_Value);
Val : Unsigned_32 := U32 (U32'First);
begin
for I in U32'First + 1 .. U32'Last loop
Val := Val xor U32 (I);
end loop;
return Hash_Type (Val);
end;
when TYPE_WIDE_STRING =>
if Key.V.Wide_Proxy = null then
return 0;
else
return Wide_Wide_Hash (Key.V.Wide_Proxy.Value);
end if;
when TYPE_BEAN =>
if Key.V.Proxy = null or else Bean_Proxy (Key.V.Proxy.all).Bean = null then
return 0;
end if;
declare
U32 : constant U32_For_Access
:= To_U32_For_Access (Bean_Proxy (Key.V.Proxy.all).Bean.all'Access);
Val : Unsigned_32 := U32 (U32'First);
-- The loop is not executed if pointers are 32-bit wide.
pragma Warnings (Off);
begin
for I in U32'First + 1 .. U32'Last loop
Val := Val xor U32 (I);
end loop;
return Hash_Type (Val);
end;
end case;
end Util.Beans.Objects.Hash;
|
------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- S Y S T E M . V A L _ U N S --
-- --
-- S p e c --
-- --
-- Copyright (C) 1992-2006, 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. --
-- --
------------------------------------------------------------------------------
-- This package contains routines for scanning modular Unsigned
-- values for use in Text_IO.Modular_IO, and the Value attribute.
with System.Unsigned_Types;
package System.Val_Uns is
pragma Pure;
function Scan_Raw_Unsigned
(Str : String;
Ptr : access Integer;
Max : Integer) return System.Unsigned_Types.Unsigned;
-- This function scans the string starting at Str (Ptr.all) for a valid
-- integer according to the syntax described in (RM 3.5(43)). The substring
-- scanned extends no further than Str (Max). Note: this does not scan
-- leading or trailing blanks, nor leading sign.
--
-- There are three cases for the return:
--
-- If a valid integer is found, then Ptr.all is updated past the last
-- character of the integer.
--
-- If no valid integer is found, then Ptr.all points either to an initial
-- non-digit character, or to Max + 1 if the field is all spaces and the
-- exception Constraint_Error is raised.
--
-- If a syntactically valid integer is scanned, but the value is out of
-- range, or, in the based case, the base value is out of range or there
-- is an out of range digit, then Ptr.all points past the integer, and
-- Constraint_Error is raised.
--
-- Note: these rules correspond to the requirements for leaving the pointer
-- positioned in Text_IO.Get
--
-- Note: if Str is empty, i.e. if Max is less than Ptr, then this is a
-- special case of an all-blank string, and Ptr is unchanged, and hence
-- is greater than Max as required in this case.
function Scan_Unsigned
(Str : String;
Ptr : access Integer;
Max : Integer) return System.Unsigned_Types.Unsigned;
-- Same as Scan_Raw_Unsigned, except scans optional leading
-- blanks, and an optional leading plus sign.
-- Note: if a minus sign is present, Constraint_Error will be raised.
-- Note: trailing blanks are not scanned.
function Value_Unsigned
(Str : String) return System.Unsigned_Types.Unsigned;
-- Used in computing X'Value (Str) where X is a modular integer type whose
-- modulus does not exceed the range of System.Unsigned_Types.Unsigned. Str
-- is the string argument of the attribute. Constraint_Error is raised if
-- the string is malformed, or if the value is out of range.
end System.Val_Uns;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME COMPONENTS --
-- --
-- S Y S T E M . P A C K _ 2 2 --
-- --
-- S p e c --
-- --
-- Copyright (C) 1992-2014, 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. --
-- --
-- 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. --
-- --
------------------------------------------------------------------------------
-- Handling of packed arrays with Component_Size = 22
package System.Pack_22 is
pragma Preelaborate;
Bits : constant := 22;
type Bits_22 is mod 2 ** Bits;
for Bits_22'Size use Bits;
-- In all subprograms below, Rev_SSO is set True if the array has the
-- non-default scalar storage order.
function Get_22
(Arr : System.Address;
N : Natural;
Rev_SSO : Boolean) return Bits_22 with Inline;
-- Arr is the address of the packed array, N is the zero-based
-- subscript. This element is extracted and returned.
procedure Set_22
(Arr : System.Address;
N : Natural;
E : Bits_22;
Rev_SSO : Boolean) with Inline;
-- Arr is the address of the packed array, N is the zero-based
-- subscript. This element is set to the given value.
function GetU_22
(Arr : System.Address;
N : Natural;
Rev_SSO : Boolean) return Bits_22 with Inline;
-- Arr is the address of the packed array, N is the zero-based
-- subscript. This element is extracted and returned. This version
-- is used when Arr may represent an unaligned address.
procedure SetU_22
(Arr : System.Address;
N : Natural;
E : Bits_22;
Rev_SSO : Boolean) with Inline;
-- Arr is the address of the packed array, N is the zero-based
-- subscript. This element is set to the given value. This version
-- is used when Arr may represent an unaligned address
end System.Pack_22;
|
with Ada.Streams.Stream_IO;
with League.Text_Codecs;
with League.Stream_Element_Vectors;
with XML.SAX.Pretty_Writers;
with XML.SAX.String_Output_Destinations;
with Incr.Debug;
package body Ada_LSP.Documents.Debug is
----------
-- Dump --
----------
procedure Dump
(Self : Document;
Name : String;
Data : P.Parser_Data_Provider'Class)
is
Output : Ada.Streams.Stream_IO.File_Type;
Dest : aliased XML.SAX.String_Output_Destinations.
String_Output_Destination;
Writer : XML.SAX.Pretty_Writers.XML_Pretty_Writer;
Image : League.Stream_Element_Vectors.Stream_Element_Vector;
begin
Writer.Set_Output_Destination (Dest'Unchecked_Access);
Writer.Set_Offset (2);
Incr.Debug.Dump (Self, Data, Writer);
Image := League.Text_Codecs.Codec_For_Application_Locale.Encode
(Dest.Get_Text);
Ada.Streams.Stream_IO.Create (Output, Name => "/tmp/" & Name);
Ada.Streams.Stream_IO.Write
(Output, Image.To_Stream_Element_Array);
Ada.Streams.Stream_IO.Close (Output);
end Dump;
end Ada_LSP.Documents.Debug;
|
-- Copyright 2010-2017 Free Software Foundation, Inc.
--
-- This program is free software; you can redistribute it and/or modify
-- it under the terms of the GNU General Public License as published by
-- the Free Software Foundation; either version 3 of the License, or
-- (at your option) any later version.
--
-- This program is distributed in the hope that it will be useful,
-- but WITHOUT ANY WARRANTY; without even the implied warranty of
-- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
-- GNU General Public License for more details.
--
-- You should have received a copy of the GNU General Public License
-- along with this program. If not, see <http://www.gnu.org/licenses/>.
with Pck; use Pck;
procedure Foo is
Q: Rec;
begin
Q := Bar; -- STOP HERE
Do_Nothing (Q'Address);
end Foo;
|
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<opcode>getelementptr</opcode>
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<first>
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<second>Conv</second>
</first>
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</Obj>
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</Value>
<oprand_edges>
<count>3</count>
<item_version>0</item_version>
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</oprand_edges>
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<id>94</id>
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</item>
<item class_id_reference="28" object_id="_947">
<id>95</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_948">
<id>113</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_949">
<id>114</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_950">
<id>115</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_951">
<id>116</id>
<stage>2</stage>
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</item>
<item class_id_reference="28" object_id="_952">
<id>120</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_953">
<id>121</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_954">
<id>122</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_955">
<id>123</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_956">
<id>126</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_957">
<id>146</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_958">
<id>168</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_959">
<id>219</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_960">
<id>255</id>
<stage>1</stage>
<latency>2</latency>
</item>
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</item>
<item class_id_reference="26" object_id="_961">
<id>6</id>
<operations>
<count>21</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_962">
<id>48</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_963">
<id>74</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_964">
<id>75</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_965">
<id>83</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_966">
<id>96</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_967">
<id>101</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_968">
<id>102</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_969">
<id>116</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_970">
<id>117</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_971">
<id>123</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_972">
<id>127</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_973">
<id>128</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_974">
<id>129</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_975">
<id>130</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_976">
<id>149</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_977">
<id>150</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_978">
<id>151</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_979">
<id>152</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_980">
<id>155</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_981">
<id>182</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_982">
<id>204</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_983">
<id>7</id>
<operations>
<count>19</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_984">
<id>83</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_985">
<id>112</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_986">
<id>118</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_987">
<id>130</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_988">
<id>133</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_989">
<id>134</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_990">
<id>152</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_991">
<id>153</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_992">
<id>156</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_993">
<id>157</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_994">
<id>158</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_995">
<id>159</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_996">
<id>162</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_997">
<id>163</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_998">
<id>164</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_999">
<id>165</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1000">
<id>166</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1001">
<id>218</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1002">
<id>240</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1003">
<id>8</id>
<operations>
<count>18</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_1004">
<id>124</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1005">
<id>125</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1006">
<id>131</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1007">
<id>136</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1008">
<id>137</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1009">
<id>138</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1010">
<id>159</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1011">
<id>166</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1012">
<id>185</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1013">
<id>186</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1014">
<id>187</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1015">
<id>188</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1016">
<id>191</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1017">
<id>192</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1018">
<id>193</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1019">
<id>194</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1020">
<id>195</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1021">
<id>198</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1022">
<id>9</id>
<operations>
<count>19</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_1023">
<id>139</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1024">
<id>148</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1025">
<id>154</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1026">
<id>169</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1027">
<id>170</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1028">
<id>188</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1029">
<id>189</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1030">
<id>195</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1031">
<id>199</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1032">
<id>200</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1033">
<id>201</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1034">
<id>202</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1035">
<id>221</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1036">
<id>222</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1037">
<id>223</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1038">
<id>224</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1039">
<id>227</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1040">
<id>254</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1041">
<id>276</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1042">
<id>10</id>
<operations>
<count>18</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_1043">
<id>160</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1044">
<id>161</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1045">
<id>167</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1046">
<id>172</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1047">
<id>173</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1048">
<id>174</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1049">
<id>202</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1050">
<id>224</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1051">
<id>225</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1052">
<id>228</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1053">
<id>229</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1054">
<id>230</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1055">
<id>231</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1056">
<id>234</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1057">
<id>235</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1058">
<id>236</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1059">
<id>237</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1060">
<id>238</id>
<stage>2</stage>
<latency>2</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1061">
<id>11</id>
<operations>
<count>22</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_1062">
<id>171</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1063">
<id>175</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1064">
<id>176</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1065">
<id>177</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1066">
<id>184</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1067">
<id>190</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1068">
<id>196</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1069">
<id>205</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1070">
<id>206</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1071">
<id>208</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1072">
<id>231</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1073">
<id>238</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1074">
<id>257</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1075">
<id>258</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1076">
<id>259</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1077">
<id>260</id>
<stage>2</stage>
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</item>
<item class_id_reference="28" object_id="_1078">
<id>263</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1079">
<id>270</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1080">
<id>271</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1081">
<id>272</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1082">
<id>273</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1083">
<id>274</id>
<stage>2</stage>
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</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1084">
<id>12</id>
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<count>16</count>
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<item class_id_reference="28" object_id="_1085">
<id>36</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1086">
<id>39</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1087">
<id>40</id>
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</item>
<item class_id_reference="28" object_id="_1088">
<id>44</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1089">
<id>45</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1090">
<id>46</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1091">
<id>47</id>
<stage>2</stage>
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</item>
<item class_id_reference="28" object_id="_1092">
<id>197</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1093">
<id>203</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1094">
<id>209</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1095">
<id>210</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1096">
<id>226</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1097">
<id>241</id>
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</item>
<item class_id_reference="28" object_id="_1098">
<id>260</id>
<stage>1</stage>
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</item>
<item class_id_reference="28" object_id="_1099">
<id>261</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1100">
<id>274</id>
<stage>1</stage>
<latency>2</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1101">
<id>13</id>
<operations>
<count>20</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_1102">
<id>40</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1103">
<id>42</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1104">
<id>47</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1105">
<id>49</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1106">
<id>77</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1107">
<id>78</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1108">
<id>81</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1109">
<id>82</id>
<stage>2</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1110">
<id>97</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1111">
<id>99</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1112">
<id>110</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1113">
<id>132</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1114">
<id>207</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1115">
<id>211</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1116">
<id>212</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1117">
<id>213</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1118">
<id>264</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1119">
<id>265</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1120">
<id>266</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1121">
<id>267</id>
<stage>2</stage>
<latency>2</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1122">
<id>14</id>
<operations>
<count>10</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_1123">
<id>82</id>
<stage>1</stage>
<latency>2</latency>
</item>
<item class_id_reference="28" object_id="_1124">
<id>84</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1125">
<id>103</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1126">
<id>135</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1127">
<id>140</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1128">
<id>220</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1129">
<id>232</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1130">
<id>242</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1131">
<id>244</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1132">
<id>267</id>
<stage>1</stage>
<latency>2</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1133">
<id>15</id>
<operations>
<count>9</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_1134">
<id>100</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1135">
<id>104</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1136">
<id>105</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1137">
<id>233</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1138">
<id>239</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1139">
<id>245</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1140">
<id>246</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1141">
<id>262</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1142">
<id>277</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1143">
<id>16</id>
<operations>
<count>7</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_1144">
<id>243</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1145">
<id>247</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1146">
<id>248</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1147">
<id>256</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1148">
<id>268</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1149">
<id>278</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1150">
<id>280</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1151">
<id>17</id>
<operations>
<count>6</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_1152">
<id>106</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1153">
<id>141</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1154">
<id>269</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1155">
<id>275</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1156">
<id>281</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1157">
<id>282</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1158">
<id>18</id>
<operations>
<count>10</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_1159">
<id>25</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1160">
<id>26</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1161">
<id>27</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1162">
<id>249</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1163">
<id>279</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1164">
<id>283</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1165">
<id>284</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1166">
<id>285</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1167">
<id>286</id>
<stage>1</stage>
<latency>1</latency>
</item>
<item class_id_reference="28" object_id="_1168">
<id>287</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
<item class_id_reference="26" object_id="_1169">
<id>19</id>
<operations>
<count>1</count>
<item_version>0</item_version>
<item class_id_reference="28" object_id="_1170">
<id>289</id>
<stage>1</stage>
<latency>1</latency>
</item>
</operations>
</item>
</states>
<transitions class_id="29" tracking_level="0" version="0">
<count>19</count>
<item_version>0</item_version>
<item class_id="30" tracking_level="1" version="0" object_id="_1171">
<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="_1172">
<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="_1173">
<inState>4</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="_1174">
<inState>5</inState>
<outState>6</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_1175">
<inState>6</inState>
<outState>7</outState>
<condition>
<id>-1</id>
<sop>
<count>1</count>
<item_version>0</item_version>
<item>
<count>0</count>
<item_version>0</item_version>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_1176">
<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="_1177">
<inState>8</inState>
<outState>9</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="_1178">
<inState>9</inState>
<outState>10</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="_1179">
<inState>10</inState>
<outState>11</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="_1180">
<inState>11</inState>
<outState>12</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="_1181">
<inState>12</inState>
<outState>13</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="_1182">
<inState>13</inState>
<outState>14</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="_1183">
<inState>14</inState>
<outState>15</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="_1184">
<inState>15</inState>
<outState>16</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="_1185">
<inState>16</inState>
<outState>17</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="_1186">
<inState>17</inState>
<outState>18</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="_1187">
<inState>18</inState>
<outState>2</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="_1188">
<inState>2</inState>
<outState>19</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>20</first>
<second>0</second>
</first>
<second>0</second>
</item>
</item>
</sop>
</condition>
</item>
<item class_id_reference="30" object_id="_1189">
<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>20</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>274</count>
<item_version>0</item_version>
<item class_id="38" tracking_level="0" version="0">
<first>8</first>
<second class_id="39" tracking_level="0" version="0">
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>9</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>10</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>11</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>12</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>13</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>14</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>15</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>16</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>17</first>
<second>
<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>19</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>20</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>22</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>23</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>28</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>29</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>30</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>31</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>32</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>33</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>34</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>35</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>36</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>37</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>38</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>39</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>40</first>
<second>
<first>11</first>
<second>1</second>
</second>
</item>
<item>
<first>41</first>
<second>
<first>3</first>
<second>1</second>
</second>
</item>
<item>
<first>42</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>43</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>44</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>45</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>46</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>47</first>
<second>
<first>11</first>
<second>1</second>
</second>
</item>
<item>
<first>48</first>
<second>
<first>4</first>
<second>1</second>
</second>
</item>
<item>
<first>49</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>50</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>51</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>52</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>53</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>54</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>55</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>56</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>57</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>58</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>59</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>60</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>61</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>62</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>63</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>64</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>65</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>66</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>67</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>68</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>69</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>70</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>71</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>72</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>73</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>74</first>
<second>
<first>4</first>
<second>1</second>
</second>
</item>
<item>
<first>75</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>76</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>77</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>78</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>79</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>80</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>81</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>82</first>
<second>
<first>12</first>
<second>1</second>
</second>
</item>
<item>
<first>83</first>
<second>
<first>5</first>
<second>1</second>
</second>
</item>
<item>
<first>84</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>85</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>86</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>87</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>88</first>
<second>
<first>3</first>
<second>1</second>
</second>
</item>
<item>
<first>89</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>90</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>91</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>92</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>93</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>94</first>
<second>
<first>3</first>
<second>1</second>
</second>
</item>
<item>
<first>95</first>
<second>
<first>3</first>
<second>1</second>
</second>
</item>
<item>
<first>96</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>97</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>98</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>99</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>100</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>101</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>102</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>103</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>104</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>105</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>106</first>
<second>
<first>16</first>
<second>0</second>
</second>
</item>
<item>
<first>107</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>108</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>109</first>
<second>
<first>1</first>
<second>0</second>
</second>
</item>
<item>
<first>110</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>111</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>112</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>113</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>114</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>115</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>116</first>
<second>
<first>4</first>
<second>1</second>
</second>
</item>
<item>
<first>117</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>118</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>119</first>
<second>
<first>3</first>
<second>0</second>
</second>
</item>
<item>
<first>120</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>121</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>122</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>123</first>
<second>
<first>4</first>
<second>1</second>
</second>
</item>
<item>
<first>124</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>125</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>126</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>127</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>128</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>1</second>
</second>
</item>
<item>
<first>131</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>132</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>133</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>134</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>135</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>136</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>137</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>8</first>
<second>0</second>
</second>
</item>
<item>
<first>140</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>141</first>
<second>
<first>16</first>
<second>0</second>
</second>
</item>
<item>
<first>142</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>143</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>144</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>145</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>146</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>147</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>148</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>149</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>150</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>151</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>152</first>
<second>
<first>5</first>
<second>1</second>
</second>
</item>
<item>
<first>153</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>154</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>155</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>156</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>157</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>158</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>159</first>
<second>
<first>6</first>
<second>1</second>
</second>
</item>
<item>
<first>160</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>161</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>162</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>163</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>164</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>165</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>166</first>
<second>
<first>6</first>
<second>1</second>
</second>
</item>
<item>
<first>167</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>168</first>
<second>
<first>4</first>
<second>0</second>
</second>
</item>
<item>
<first>169</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>170</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>171</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>172</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>173</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>174</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>175</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>176</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>177</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>178</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>179</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>180</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>181</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>182</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>183</first>
<second>
<first>2</first>
<second>1</second>
</second>
</item>
<item>
<first>184</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>185</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>186</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>187</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>188</first>
<second>
<first>7</first>
<second>1</second>
</second>
</item>
<item>
<first>189</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>190</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>191</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>192</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>193</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>194</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>195</first>
<second>
<first>7</first>
<second>1</second>
</second>
</item>
<item>
<first>196</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>197</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>198</first>
<second>
<first>7</first>
<second>0</second>
</second>
</item>
<item>
<first>199</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>200</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>201</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>202</first>
<second>
<first>8</first>
<second>1</second>
</second>
</item>
<item>
<first>203</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>204</first>
<second>
<first>5</first>
<second>0</second>
</second>
</item>
<item>
<first>205</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>206</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>207</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>208</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>209</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>210</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>211</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>212</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>213</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>214</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>215</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>216</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>217</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>218</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>219</first>
<second>
<first>3</first>
<second>1</second>
</second>
</item>
<item>
<first>220</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>221</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>222</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>223</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>224</first>
<second>
<first>8</first>
<second>1</second>
</second>
</item>
<item>
<first>225</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>226</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>227</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>228</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>229</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>230</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>231</first>
<second>
<first>9</first>
<second>1</second>
</second>
</item>
<item>
<first>232</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>233</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>234</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>235</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>236</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>237</first>
<second>
<first>9</first>
<second>0</second>
</second>
</item>
<item>
<first>238</first>
<second>
<first>9</first>
<second>1</second>
</second>
</item>
<item>
<first>239</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>240</first>
<second>
<first>6</first>
<second>0</second>
</second>
</item>
<item>
<first>241</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>242</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>243</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>244</first>
<second>
<first>13</first>
<second>0</second>
</second>
</item>
<item>
<first>245</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>246</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>247</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>248</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>249</first>
<second>
<first>17</first>
<second>0</second>
</second>
</item>
<item>
<first>250</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>251</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>252</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>253</first>
<second>
<first>2</first>
<second>0</second>
</second>
</item>
<item>
<first>254</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>255</first>
<second>
<first>3</first>
<second>1</second>
</second>
</item>
<item>
<first>256</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>257</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>258</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>259</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>260</first>
<second>
<first>10</first>
<second>1</second>
</second>
</item>
<item>
<first>261</first>
<second>
<first>11</first>
<second>0</second>
</second>
</item>
<item>
<first>262</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>263</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>264</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>265</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>266</first>
<second>
<first>12</first>
<second>0</second>
</second>
</item>
<item>
<first>267</first>
<second>
<first>12</first>
<second>1</second>
</second>
</item>
<item>
<first>268</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>269</first>
<second>
<first>16</first>
<second>0</second>
</second>
</item>
<item>
<first>270</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>271</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>272</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>273</first>
<second>
<first>10</first>
<second>0</second>
</second>
</item>
<item>
<first>274</first>
<second>
<first>10</first>
<second>1</second>
</second>
</item>
<item>
<first>275</first>
<second>
<first>16</first>
<second>0</second>
</second>
</item>
<item>
<first>276</first>
<second>
<first>8</first>
<second>0</second>
</second>
</item>
<item>
<first>277</first>
<second>
<first>14</first>
<second>0</second>
</second>
</item>
<item>
<first>278</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>279</first>
<second>
<first>17</first>
<second>0</second>
</second>
</item>
<item>
<first>280</first>
<second>
<first>15</first>
<second>0</second>
</second>
</item>
<item>
<first>281</first>
<second>
<first>16</first>
<second>0</second>
</second>
</item>
<item>
<first>282</first>
<second>
<first>16</first>
<second>0</second>
</second>
</item>
<item>
<first>283</first>
<second>
<first>17</first>
<second>0</second>
</second>
</item>
<item>
<first>284</first>
<second>
<first>17</first>
<second>0</second>
</second>
</item>
<item>
<first>285</first>
<second>
<first>17</first>
<second>0</second>
</second>
</item>
<item>
<first>287</first>
<second>
<first>17</first>
<second>0</second>
</second>
</item>
<item>
<first>289</first>
<second>
<first>18</first>
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</second>
</item>
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<item class_id="41" tracking_level="0" version="0">
<first>18</first>
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<first>0</first>
<second>0</second>
</second>
</item>
<item>
<first>24</first>
<second>
<first>1</first>
<second>1</second>
</second>
</item>
<item>
<first>288</first>
<second>
<first>1</first>
<second>17</second>
</second>
</item>
<item>
<first>290</first>
<second>
<first>2</first>
<second>2</second>
</second>
</item>
</bblk_ent_exit>
<regions class_id="43" tracking_level="0" version="0">
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</basic_blocks>
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</nodes>
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</regions>
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</item>
<item>
<first>98</first>
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<count>1</count>
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</item>
<item>
<first>106</first>
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</item>
<item>
<first>114</first>
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<count>1</count>
<item_version>0</item_version>
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</item>
<item>
<first>122</first>
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</item>
<item>
<first>130</first>
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</item>
<item>
<first>138</first>
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</item>
<item>
<first>146</first>
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</item>
<item>
<first>154</first>
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</item>
<item>
<first>162</first>
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<item>
<first>169</first>
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<count>18</count>
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<item>43</item>
<item>43</item>
<item>111</item>
<item>111</item>
<item>147</item>
<item>147</item>
<item>183</item>
<item>183</item>
<item>219</item>
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<item>177</item>
<item>213</item>
<item>106</item>
<item>141</item>
<item>249</item>
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</item>
<item>
<first>175</first>
<second>
<count>1</count>
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<item>52</item>
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<item>
<first>182</first>
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<count>48</count>
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<item>53</item>
<item>53</item>
<item>61</item>
<item>61</item>
<item>67</item>
<item>67</item>
<item>73</item>
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<item>88</item>
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<item>94</item>
<item>94</item>
<item>116</item>
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<item>123</item>
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<item>159</item>
<item>166</item>
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<item>231</item>
<item>238</item>
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<item>260</item>
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<item>274</item>
<item>40</item>
<item>40</item>
<item>47</item>
<item>47</item>
<item>82</item>
<item>82</item>
<item>267</item>
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</item>
<item>
<first>188</first>
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<count>18</count>
<item_version>0</item_version>
<item>54</item>
<item>54</item>
<item>62</item>
<item>62</item>
<item>68</item>
<item>68</item>
<item>89</item>
<item>89</item>
<item>41</item>
<item>41</item>
<item>95</item>
<item>95</item>
<item>48</item>
<item>48</item>
<item>74</item>
<item>74</item>
<item>83</item>
<item>83</item>
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</item>
<item>
<first>193</first>
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<count>1</count>
<item_version>0</item_version>
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<item>
<first>209</first>
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<count>1</count>
<item_version>0</item_version>
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</item>
<item>
<first>221</first>
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<item_version>0</item_version>
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</item>
<item>
<first>229</first>
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<count>1</count>
<item_version>0</item_version>
<item>72</item>
</second>
</item>
<item>
<first>237</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>145</item>
</second>
</item>
<item>
<first>245</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>181</item>
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</item>
<item>
<first>253</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</item>
<item>
<first>260</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>253</item>
</second>
</item>
<item>
<first>267</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>87</item>
</second>
</item>
<item>
<first>275</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>93</item>
</second>
</item>
<item>
<first>283</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</item>
<item>
<first>291</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>122</item>
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</item>
<item>
<first>299</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</second>
</item>
<item>
<first>307</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</item>
<item>
<first>315</first>
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<count>1</count>
<item_version>0</item_version>
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</item>
<item>
<first>323</first>
<second>
<count>1</count>
<item_version>0</item_version>
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<item>
<first>331</first>
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<item_version>0</item_version>
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<item>
<first>339</first>
<second>
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<item_version>0</item_version>
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<item>
<first>347</first>
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<item_version>0</item_version>
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<item>
<first>355</first>
<second>
<count>1</count>
<item_version>0</item_version>
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<item>
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<item_version>0</item_version>
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<item>
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<count>1</count>
<item_version>0</item_version>
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</item>
<item>
<first>379</first>
<second>
<count>1</count>
<item_version>0</item_version>
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<item>
<first>387</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>273</item>
</second>
</item>
<item>
<first>395</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>403</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</item>
<item>
<first>411</first>
<second>
<count>1</count>
<item_version>0</item_version>
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</second>
</item>
<item>
<first>419</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>266</item>
</second>
</item>
<item>
<first>431</first>
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<count>1</count>
<item_version>0</item_version>
<item>19</item>
</second>
</item>
<item>
<first>438</first>
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<count>5</count>
<item_version>0</item_version>
<item>55</item>
<item>69</item>
<item>117</item>
<item>189</item>
<item>261</item>
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</item>
<item>
<first>444</first>
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<item_version>0</item_version>
<item>119</item>
<item>155</item>
<item>227</item>
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</item>
<item>
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<item>162</item>
<item>234</item>
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</item>
<item>
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</item>
<item>
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</item>
<item>
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</item>
<item>
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<item>
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<item>
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<item>28</item>
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<item>
<first>551</first>
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<item>
<first>555</first>
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<item_version>0</item_version>
<item>30</item>
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<item>
<first>563</first>
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<item_version>0</item_version>
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<item>
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<item_version>0</item_version>
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<item>
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</item>
<item>
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</item>
<item>
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<item>
<first>img_V_addr_19_reg_1658</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>230</item>
</second>
</item>
<item>
<first>img_V_addr_1_reg_1698</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>46</item>
</second>
</item>
<item>
<first>img_V_addr_20_reg_1663</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>237</item>
</second>
</item>
<item>
<first>img_V_addr_21_reg_1678</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>259</item>
</second>
</item>
<item>
<first>img_V_addr_22_reg_1733</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>266</item>
</second>
</item>
<item>
<first>img_V_addr_23_reg_1688</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>273</item>
</second>
</item>
<item>
<first>img_V_addr_2_reg_1343</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>52</item>
</second>
</item>
<item>
<first>img_V_addr_3_reg_1348</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>60</item>
</second>
</item>
<item>
<first>img_V_addr_4_reg_1398</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>66</item>
</second>
</item>
<item>
<first>img_V_addr_5_reg_1403</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>72</item>
</second>
</item>
<item>
<first>img_V_addr_6_reg_1713</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>81</item>
</second>
</item>
<item>
<first>img_V_addr_7_reg_1448</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>87</item>
</second>
</item>
<item>
<first>img_V_addr_8_reg_1459</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>93</item>
</second>
</item>
<item>
<first>img_V_addr_9_reg_1493</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>115</item>
</second>
</item>
<item>
<first>img_V_addr_reg_1693</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>39</item>
</second>
</item>
<item>
<first>img_V_load_14_reg_1602</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>166</item>
</second>
</item>
<item>
<first>img_V_load_18_reg_1653</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>224</item>
</second>
</item>
<item>
<first>mul_ln700_22_reg_1552</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>155</item>
</second>
</item>
<item>
<first>mul_ln700_52_reg_1683</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>270</item>
</second>
</item>
<item>
<first>p_0191_0_reg_427</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>19</item>
</second>
</item>
<item>
<first>r_V_reg_1309</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>22</item>
</second>
</item>
<item>
<first>reg_470</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>53</item>
<item>130</item>
</second>
</item>
<item>
<first>reg_474</first>
<second>
<count>5</count>
<item_version>0</item_version>
<item>55</item>
<item>69</item>
<item>117</item>
<item>189</item>
<item>261</item>
</second>
</item>
<item>
<first>reg_478</first>
<second>
<count>4</count>
<item_version>0</item_version>
<item>61</item>
<item>67</item>
<item>152</item>
<item>231</item>
</second>
</item>
<item>
<first>reg_483</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>73</item>
<item>188</item>
<item>267</item>
</second>
</item>
<item>
<first>reg_488</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>119</item>
<item>227</item>
</second>
</item>
<item>
<first>reg_492</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>147</item>
<item>219</item>
</second>
</item>
<item>
<first>reg_496</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>88</item>
<item>159</item>
<item>274</item>
</second>
</item>
<item>
<first>reg_501</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>90</item>
<item>162</item>
<item>234</item>
</second>
</item>
<item>
<first>reg_505</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>94</item>
<item>202</item>
</second>
</item>
<item>
<first>reg_510</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>126</item>
<item>198</item>
</second>
</item>
<item>
<first>reg_514</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>116</item>
<item>195</item>
</second>
</item>
<item>
<first>reg_519</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>123</item>
<item>238</item>
</second>
</item>
<item>
<first>reg_523</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>153</item>
<item>225</item>
</second>
</item>
<item>
<first>reg_527</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>191</item>
<item>263</item>
</second>
</item>
<item>
<first>shl_ln_reg_1315</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>28</item>
</second>
</item>
<item>
<first>sub_ln214_reg_1320</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>32</item>
</second>
</item>
<item>
<first>trunc_ln21_1_reg_1379</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>59</item>
</second>
</item>
<item>
<first>trunc_ln21_2_reg_1439</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>80</item>
</second>
</item>
<item>
<first>trunc_ln21_4_reg_1358</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>79</item>
</second>
</item>
<item>
<first>trunc_ln_reg_1333</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>38</item>
</second>
</item>
<item>
<first>weight_V_addr_1_reg_1265</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>9</item>
</second>
</item>
<item>
<first>weight_V_addr_2_reg_1270</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>10</item>
</second>
</item>
<item>
<first>weight_V_addr_3_reg_1275</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>11</item>
</second>
</item>
<item>
<first>weight_V_addr_4_reg_1280</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>12</item>
</second>
</item>
<item>
<first>weight_V_addr_5_reg_1285</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>13</item>
</second>
</item>
<item>
<first>weight_V_addr_6_reg_1290</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>14</item>
</second>
</item>
<item>
<first>weight_V_addr_7_reg_1295</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>15</item>
</second>
</item>
<item>
<first>weight_V_addr_8_reg_1300</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>16</item>
</second>
</item>
<item>
<first>weight_V_addr_reg_1260</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>8</item>
</second>
</item>
<item>
<first>weight_V_load_1_reg_1513</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>48</item>
</second>
</item>
<item>
<first>weight_V_load_2_reg_1373</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>54</item>
</second>
</item>
<item>
<first>weight_V_load_3_reg_1388</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>62</item>
</second>
</item>
<item>
<first>weight_V_load_4_reg_1433</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>68</item>
</second>
</item>
<item>
<first>weight_V_load_5_reg_1523</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>74</item>
</second>
</item>
<item>
<first>weight_V_load_6_reg_1562</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>83</item>
</second>
</item>
<item>
<first>weight_V_load_7_reg_1453</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>89</item>
</second>
</item>
<item>
<first>weight_V_load_8_reg_1483</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>95</item>
</second>
</item>
<item>
<first>weight_V_load_reg_1474</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>41</item>
</second>
</item>
</dp_regname_nodes>
<dp_reg_phi>
<count>1</count>
<item_version>0</item_version>
<item>
<first>427</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>19</item>
</second>
</item>
</dp_reg_phi>
<dp_regname_phi>
<count>1</count>
<item_version>0</item_version>
<item>
<first>p_0191_0_reg_427</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>19</item>
</second>
</item>
</dp_regname_phi>
<dp_port_io_nodes class_id="53" tracking_level="0" version="0">
<count>6</count>
<item_version>0</item_version>
<item class_id="54" tracking_level="0" version="0">
<first>feature_V(p0)</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>
<first>load</first>
<second>
<count>6</count>
<item_version>0</item_version>
<item>43</item>
<item>43</item>
<item>147</item>
<item>147</item>
<item>219</item>
<item>219</item>
</second>
</item>
<item>
<first>store</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>177</item>
<item>106</item>
<item>249</item>
</second>
</item>
</second>
</item>
<item>
<first>feature_V(p1)</first>
<second>
<count>2</count>
<item_version>0</item_version>
<item>
<first>load</first>
<second>
<count>6</count>
<item_version>0</item_version>
<item>111</item>
<item>111</item>
<item>183</item>
<item>183</item>
<item>255</item>
<item>255</item>
</second>
</item>
<item>
<first>store</first>
<second>
<count>3</count>
<item_version>0</item_version>
<item>213</item>
<item>141</item>
<item>285</item>
</second>
</item>
</second>
</item>
<item>
<first>img_V(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>load</first>
<second>
<count>24</count>
<item_version>0</item_version>
<item>53</item>
<item>53</item>
<item>67</item>
<item>67</item>
<item>88</item>
<item>88</item>
<item>116</item>
<item>116</item>
<item>130</item>
<item>130</item>
<item>159</item>
<item>159</item>
<item>188</item>
<item>188</item>
<item>202</item>
<item>202</item>
<item>231</item>
<item>231</item>
<item>260</item>
<item>260</item>
<item>40</item>
<item>40</item>
<item>82</item>
<item>82</item>
</second>
</item>
</second>
</item>
<item>
<first>img_V(p1)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>load</first>
<second>
<count>24</count>
<item_version>0</item_version>
<item>61</item>
<item>61</item>
<item>73</item>
<item>73</item>
<item>94</item>
<item>94</item>
<item>123</item>
<item>123</item>
<item>152</item>
<item>152</item>
<item>166</item>
<item>166</item>
<item>195</item>
<item>195</item>
<item>224</item>
<item>224</item>
<item>238</item>
<item>238</item>
<item>274</item>
<item>274</item>
<item>47</item>
<item>47</item>
<item>267</item>
<item>267</item>
</second>
</item>
</second>
</item>
<item>
<first>weight_V(p0)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>load</first>
<second>
<count>10</count>
<item_version>0</item_version>
<item>54</item>
<item>54</item>
<item>68</item>
<item>68</item>
<item>41</item>
<item>41</item>
<item>48</item>
<item>48</item>
<item>83</item>
<item>83</item>
</second>
</item>
</second>
</item>
<item>
<first>weight_V(p1)</first>
<second>
<count>1</count>
<item_version>0</item_version>
<item>
<first>load</first>
<second>
<count>8</count>
<item_version>0</item_version>
<item>62</item>
<item>62</item>
<item>89</item>
<item>89</item>
<item>95</item>
<item>95</item>
<item>74</item>
<item>74</item>
</second>
</item>
</second>
</item>
</dp_port_io_nodes>
<port2core class_id="55" tracking_level="0" version="0">
<count>3</count>
<item_version>0</item_version>
<item class_id="56" 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>
</port2core>
<node2core>
<count>0</count>
<item_version>0</item_version>
</node2core>
</syndb>
</boost_serialization>
|
package Opt37 is
type T_Bit is range 0 .. 1;
for T_Bit'Size use 1;
type Positive is range 0 .. (2 ** 31) - 1;
type Unsigned32 is mod 2 ** 32;
subtype T_Bit_Count is Positive;
subtype T_Bit_Index is T_Bit_Count range 1 .. T_Bit_Count'Last;
type T_Bit_Array is array (T_Bit_Count range <>) of T_Bit;
pragma Pack (T_Bit_Array);
function Func (Bit_Array : in T_Bit_Array;
Bit_Index : in T_Bit_Index) return Positive;
end Opt37;
|
with Libadalang.Analysis; use Libadalang.Analysis;
with Libadalang.Common; use Libadalang.Common;
with String_Vectors; use String_Vectors;
private with Ada.Strings.Unbounded;
package Generators is
-- For now: single placeholder - so single Name
-- package String_Vector_Vectors is new Ada.Containers.Indefinite_Vectors
-- (Index_Type => Positive,
-- Element_Type => String_Vectors.Vector);
type Generator is private;
function Generate_Pattern (G : Generator) return Analysis_Unit;
function Generate_Instance (G : Generator) return Analysis_Unit;
function Get_Name (G : Generator) return String;
function Get_Values (G : Generator) return String_Vectors.Vector;
type String_Generator is
not null access function (Strings : String_Vectors.Vector) return String;
function Make_Generator (Name : String;
Values : String_Vectors.Vector;
Rule : Grammar_Rule;
SG : String_Generator
) return Generator;
private
use Ada.Strings.Unbounded;
type Generator is record
Name : Unbounded_String;
Values : String_Vectors.Vector;
-- TODO: is a copy needed to make it immutable from the outside?
Rule : Grammar_Rule;
SG : String_Generator;
end record;
function Make_Generator
(Name : String; Values : String_Vectors.Vector; Rule : Grammar_Rule;
SG : String_Generator)
return Generator
is
((To_Unbounded_String (Name), Values, Rule, SG));
function Get_Name (G : Generator) return String
is
(To_String (G.Name));
function Get_Values (G : Generator) return String_Vectors.Vector
is
(G.Values);
end Generators;
|
with Ada.Text_IO; use Ada.Text_IO;
with Sensors.Images;
procedure Sensors.Tests.Main is
use Sensors.Images;
S : constant Sensors.Instance := Get_Instance;
begin
Put_Line (Sensors.Version);
for chip of S.Detected_Chips loop
Put_Line (Image (chip));
-- for Sensor of Chip loop
-- null;
-- end loop;
end loop;
end;
|
------------------------------------------------------------------------------
-- --
-- GNAT RUN-TIME LIBRARY (GNARL) COMPONENTS --
-- --
-- S Y S T E M . O S _ P R I M I T I V E S --
-- --
-- B o d y --
-- --
-- Copyright (C) 1998-2005 Free Software Foundation, Inc. --
-- --
-- GNARL is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 2, or (at your option) any later ver- --
-- sion. GNARL is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
-- for more details. You should have received a copy of the GNU General --
-- Public License distributed with GNARL; see file COPYING. If not, write --
-- to the Free Software Foundation, 51 Franklin Street, Fifth Floor, --
-- Boston, MA 02110-1301, USA. --
-- --
-- As a special exception, if other files instantiate generics from this --
-- unit, or you link this unit with other files to produce an executable, --
-- this unit does not by itself cause the resulting executable to be --
-- covered by the GNU General Public License. This exception does not --
-- however invalidate any other reasons why the executable file might be --
-- covered by the GNU Public License. --
-- --
-- GNARL was developed by the GNARL team at Florida State University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
-- This version uses gettimeofday and select
-- This file is suitable for OpenNT, Dec Unix and SCO UnixWare.
package body System.OS_Primitives is
-- ??? These definitions are duplicated from System.OS_Interface
-- because we don't want to depend on any package. Consider removing
-- these declarations in System.OS_Interface and move these ones in
-- the spec.
type struct_timeval is record
tv_sec : Integer;
tv_usec : Integer;
end record;
pragma Convention (C, struct_timeval);
procedure gettimeofday
(tv : access struct_timeval;
tz : Address := Null_Address);
pragma Import (C, gettimeofday, "gettimeofday");
procedure C_select
(n : Integer := 0;
readfds,
writefds,
exceptfds : Address := Null_Address;
timeout : access struct_timeval);
pragma Import (C, C_select, "select");
-----------
-- Clock --
-----------
function Clock return Duration is
TV : aliased struct_timeval;
begin
gettimeofday (TV'Access);
return Duration (TV.tv_sec) + Duration (TV.tv_usec) / 10#1#E6;
end Clock;
---------------------
-- Monotonic_Clock --
---------------------
function Monotonic_Clock return Duration renames Clock;
-----------------
-- Timed_Delay --
-----------------
procedure Timed_Delay
(Time : Duration;
Mode : Integer)
is
Rel_Time : Duration;
Abs_Time : Duration;
Check_Time : Duration := Clock;
timeval : aliased struct_timeval;
begin
if Mode = Relative then
Rel_Time := Time;
Abs_Time := Time + Check_Time;
else
Rel_Time := Time - Check_Time;
Abs_Time := Time;
end if;
if Rel_Time > 0.0 then
loop
timeval.tv_sec := Integer (Rel_Time);
if Duration (timeval.tv_sec) > Rel_Time then
timeval.tv_sec := timeval.tv_sec - 1;
end if;
timeval.tv_usec :=
Integer ((Rel_Time - Duration (timeval.tv_sec)) * 10#1#E6);
C_select (timeout => timeval'Unchecked_Access);
Check_Time := Clock;
exit when Abs_Time <= Check_Time;
Rel_Time := Abs_Time - Check_Time;
end loop;
end if;
end Timed_Delay;
----------------
-- Initialize --
----------------
procedure Initialize is
begin
null;
end Initialize;
end System.OS_Primitives;
|
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