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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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class_id_reference="28" object_id="_607"> <id>11</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_608"> <id>12</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_609"> <id>13</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_610"> <id>14</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_611"> <id>15</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_612"> <id>16</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_613"> <id>17</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_614"> <id>2</id> <operations> <count>19</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_615"> <id>19</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_616"> <id>20</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_617"> <id>21</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_618"> <id>22</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_619"> <id>23</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_620"> <id>24</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_621"> <id>25</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_622"> <id>26</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_623"> <id>27</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_624"> <id>29</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_625"> <id>30</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_626"> <id>31</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_627"> <id>33</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_628"> <id>34</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_629"> <id>36</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_630"> <id>37</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_631"> <id>39</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_632"> <id>40</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_633"> <id>42</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_634"> <id>3</id> <operations> <count>1</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_635"> <id>44</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_636"> <id>4</id> <operations> <count>5</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_637"> <id>46</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_638"> <id>47</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_639"> <id>48</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_640"> <id>49</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_641"> <id>50</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_642"> <id>5</id> <operations> <count>8</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_643"> <id>52</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_644"> <id>53</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_645"> <id>54</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_646"> <id>55</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_647"> <id>56</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_648"> <id>57</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_649"> <id>58</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_650"> <id>59</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_651"> <id>6</id> <operations> <count>1</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_652"> <id>61</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_653"> <id>7</id> <operations> <count>12</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_654"> <id>63</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_655"> <id>64</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_656"> <id>65</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_657"> <id>66</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_658"> <id>67</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_659"> <id>68</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_660"> <id>70</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_661"> <id>71</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_662"> <id>72</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_663"> <id>73</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_664"> <id>74</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_665"> <id>75</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_666"> <id>8</id> <operations> <count>7</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_667"> <id>77</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_668"> <id>78</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_669"> <id>79</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_670"> <id>80</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_671"> <id>81</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_672"> <id>82</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_673"> <id>84</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_674"> <id>9</id> <operations> <count>17</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_675"> <id>86</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_676"> <id>87</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_677"> <id>88</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_678"> <id>89</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_679"> <id>90</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_680"> <id>91</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_681"> <id>92</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_682"> <id>93</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_683"> <id>95</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_684"> <id>96</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_685"> <id>97</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_686"> <id>98</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_687"> <id>99</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_688"> <id>100</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_689"> <id>101</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_690"> <id>204</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_691"> <id>206</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_692"> <id>10</id> <operations> <count>16</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_693"> <id>109</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_694"> <id>110</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_695"> <id>111</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_696"> <id>112</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_697"> <id>113</id> <stage>1</stage> <latency>1</latency> </item> <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> 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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> </nodes> <consts class_id="15" tracking_level="0" version="0"> <count>3</count> <item_version>0</item_version> <item class_id="16" tracking_level="1" version="0" object_id="_19"> <Value> <Obj> <type>2</type> <id>41</id> <name>checkAxis_2</name> <fileName></fileName> <fileDirectory></fileDirectory> <lineNumber>0</lineNumber> <contextFuncName></contextFuncName> <inlineStackInfo> <count>0</count> <item_version>0</item_version> </inlineStackInfo> <originalName></originalName> <rtlName></rtlName> <coreName></coreName> </Obj> <bitwidth>64</bitwidth> </Value> <const_type>6</const_type> <content>&lt;constant:checkAxis.2&gt;</content> </item> <item class_id_reference="16" object_id="_20"> <Value> <Obj> <type>2</type> <id>49</id> <name>checkAxis_0</name> <fileName></fileName> <fileDirectory></fileDirectory> <lineNumber>0</lineNumber> <contextFuncName></contextFuncName> <inlineStackInfo> <count>0</count> <item_version>0</item_version> </inlineStackInfo> <originalName></originalName> <rtlName></rtlName> <coreName></coreName> </Obj> <bitwidth>64</bitwidth> </Value> <const_type>6</const_type> <content>&lt;constant:checkAxis.0&gt;</content> </item> <item class_id_reference="16" object_id="_21"> <Value> <Obj> <type>2</type> <id>57</id> <name>checkAxis_1</name> <fileName></fileName> <fileDirectory></fileDirectory> <lineNumber>0</lineNumber> <contextFuncName></contextFuncName> <inlineStackInfo> <count>0</count> <item_version>0</item_version> </inlineStackInfo> <originalName></originalName> <rtlName></rtlName> <coreName></coreName> </Obj> <bitwidth>64</bitwidth> </Value> <const_type>6</const_type> <content>&lt;constant:checkAxis.1&gt;</content> </item> </consts> <blocks class_id="17" tracking_level="0" version="0"> <count>1</count> <item_version>0</item_version> <item class_id="18" tracking_level="1" version="0" object_id="_22"> <Obj> <type>3</type> <id>27</id> <name>honeybee</name> <fileName></fileName> <fileDirectory></fileDirectory> <lineNumber>0</lineNumber> <contextFuncName></contextFuncName> <inlineStackInfo> <count>0</count> <item_version>0</item_version> </inlineStackInfo> <originalName></originalName> <rtlName></rtlName> <coreName></coreName> </Obj> <node_objs> <count>12</count> <item_version>0</item_version> <item>15</item> <item>16</item> <item>17</item> <item>18</item> <item>19</item> <item>20</item> <item>21</item> <item>22</item> <item>23</item> <item>24</item> <item>25</item> <item>26</item> </node_objs> </item> </blocks> <edges class_id="19" tracking_level="0" version="0"> <count>32</count> <item_version>0</item_version> <item class_id="20" tracking_level="1" version="0" object_id="_23"> <id>30</id> <edge_type>1</edge_type> <source_obj>6</source_obj> <sink_obj>15</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_24"> <id>32</id> <edge_type>1</edge_type> <source_obj>5</source_obj> <sink_obj>16</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_25"> <id>34</id> <edge_type>1</edge_type> <source_obj>4</source_obj> <sink_obj>17</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_26"> <id>36</id> <edge_type>1</edge_type> <source_obj>3</source_obj> <sink_obj>18</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_27"> <id>38</id> <edge_type>1</edge_type> <source_obj>2</source_obj> <sink_obj>19</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_28"> <id>40</id> <edge_type>1</edge_type> <source_obj>1</source_obj> <sink_obj>20</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_29"> <id>42</id> <edge_type>1</edge_type> <source_obj>41</source_obj> <sink_obj>21</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_30"> <id>43</id> <edge_type>1</edge_type> <source_obj>20</source_obj> <sink_obj>21</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_31"> <id>44</id> <edge_type>1</edge_type> <source_obj>19</source_obj> <sink_obj>21</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_32"> <id>45</id> <edge_type>1</edge_type> <source_obj>18</source_obj> <sink_obj>21</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_33"> <id>46</id> <edge_type>1</edge_type> <source_obj>17</source_obj> <sink_obj>21</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_34"> <id>47</id> <edge_type>1</edge_type> <source_obj>16</source_obj> <sink_obj>21</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_35"> <id>48</id> <edge_type>1</edge_type> <source_obj>15</source_obj> <sink_obj>21</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_36"> <id>50</id> <edge_type>1</edge_type> <source_obj>49</source_obj> <sink_obj>22</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_37"> <id>51</id> <edge_type>1</edge_type> <source_obj>20</source_obj> <sink_obj>22</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_38"> <id>52</id> <edge_type>1</edge_type> <source_obj>18</source_obj> <sink_obj>22</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_39"> <id>53</id> <edge_type>1</edge_type> <source_obj>19</source_obj> <sink_obj>22</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_40"> <id>54</id> <edge_type>1</edge_type> <source_obj>17</source_obj> <sink_obj>22</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_41"> <id>55</id> <edge_type>1</edge_type> <source_obj>15</source_obj> <sink_obj>22</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_42"> <id>56</id> <edge_type>1</edge_type> <source_obj>16</source_obj> <sink_obj>22</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_43"> <id>58</id> <edge_type>1</edge_type> <source_obj>57</source_obj> <sink_obj>23</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_44"> <id>59</id> <edge_type>1</edge_type> <source_obj>18</source_obj> <sink_obj>23</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_45"> <id>60</id> <edge_type>1</edge_type> <source_obj>19</source_obj> <sink_obj>23</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_46"> <id>61</id> <edge_type>1</edge_type> <source_obj>20</source_obj> <sink_obj>23</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_47"> <id>62</id> <edge_type>1</edge_type> <source_obj>15</source_obj> <sink_obj>23</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_48"> <id>63</id> <edge_type>1</edge_type> <source_obj>16</source_obj> <sink_obj>23</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_49"> <id>64</id> <edge_type>1</edge_type> <source_obj>17</source_obj> <sink_obj>23</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_50"> <id>65</id> <edge_type>1</edge_type> <source_obj>21</source_obj> <sink_obj>24</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_51"> <id>66</id> <edge_type>1</edge_type> <source_obj>23</source_obj> <sink_obj>24</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_52"> <id>67</id> <edge_type>1</edge_type> <source_obj>24</source_obj> <sink_obj>25</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_53"> <id>68</id> <edge_type>1</edge_type> <source_obj>22</source_obj> <sink_obj>25</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_54"> <id>69</id> <edge_type>1</edge_type> <source_obj>25</source_obj> <sink_obj>26</sink_obj> <is_back_edge>0</is_back_edge> </item> </edges> </cdfg> <cdfg_regions class_id="21" tracking_level="0" version="0"> <count>1</count> <item_version>0</item_version> <item class_id="22" tracking_level="1" version="0" object_id="_55"> <mId>1</mId> <mTag>honeybee</mTag> <mType>0</mType> <sub_regions> <count>0</count> <item_version>0</item_version> </sub_regions> <basic_blocks> <count>1</count> <item_version>0</item_version> <item>27</item> </basic_blocks> <mII>-1</mII> <mDepth>-1</mDepth> <mMinTripCount>-1</mMinTripCount> <mMaxTripCount>-1</mMaxTripCount> <mMinLatency>205</mMinLatency> <mMaxLatency>205</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"></mDfPipe> </item> </cdfg_regions> <fsm class_id="24" tracking_level="1" version="0" object_id="_56"> <states class_id="25" tracking_level="0" version="0"> <count>2</count> <item_version>0</item_version> <item class_id="26" tracking_level="1" version="0" object_id="_57"> <id>1</id> <operations class_id="27" tracking_level="0" version="0"> <count>9</count> <item_version>0</item_version> <item class_id="28" tracking_level="1" version="0" object_id="_58"> <id>15</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_59"> <id>16</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_60"> <id>17</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_61"> <id>18</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_62"> <id>19</id> <stage>1</stage> <latency>1</latency> </item> <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> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_65"> <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"> <id>2</id> <operations> <count>14</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_68"> <id>7</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_69"> <id>8</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_70"> <id>9</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_71"> <id>10</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_72"> <id>11</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_73"> <id>12</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_74"> <id>13</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_75"> <id>14</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_76"> <id>21</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_77"> <id>22</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_78"> <id>23</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_79"> <id>24</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_80"> <id>25</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_81"> <id>26</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> </states> <transitions class_id="29" tracking_level="0" version="0"> <count>1</count> 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version="0"> <first>0</first> <second>1</second> </second> </item> </bblk_ent_exit> <regions class_id="41" tracking_level="0" version="0"> <count>0</count> <item_version>0</item_version> </regions> <dp_fu_nodes class_id="42" tracking_level="0" version="0"> <count>11</count> <item_version>0</item_version> <item class_id="43" tracking_level="0" version="0"> <first>28</first> <second> <count>1</count> <item_version>0</item_version> <item>15</item> </second> </item> <item> <first>34</first> <second> <count>1</count> <item_version>0</item_version> <item>16</item> </second> </item> <item> <first>40</first> <second> <count>1</count> <item_version>0</item_version> <item>17</item> </second> </item> <item> <first>46</first> <second> <count>1</count> <item_version>0</item_version> <item>18</item> </second> </item> <item> <first>52</first> <second> <count>1</count> <item_version>0</item_version> <item>19</item> </second> </item> <item> <first>58</first> <second> <count>1</count> <item_version>0</item_version> <item>20</item> </second> </item> <item> <first>64</first> <second> <count>2</count> <item_version>0</item_version> <item>21</item> <item>21</item> </second> </item> <item> <first>80</first> <second> <count>2</count> <item_version>0</item_version> <item>23</item> <item>23</item> </second> </item> <item> <first>96</first> <second> <count>2</count> <item_version>0</item_version> <item>22</item> <item>22</item> </second> </item> <item> <first>112</first> <second> <count>1</count> <item_version>0</item_version> <item>24</item> </second> </item> <item> <first>118</first> <second> <count>1</count> <item_version>0</item_version> <item>25</item> </second> </item> </dp_fu_nodes> <dp_fu_nodes_expression class_id="45" tracking_level="0" version="0"> <count>2</count> <item_version>0</item_version> <item class_id="46" tracking_level="0" version="0"> <first>collisions_fu_118</first> <second> <count>1</count> <item_version>0</item_version> <item>25</item> </second> </item> <item> <first>or_ln159_fu_112</first> <second> <count>1</count> <item_version>0</item_version> <item>24</item> </second> </item> </dp_fu_nodes_expression> <dp_fu_nodes_module> <count>3</count> <item_version>0</item_version> <item> <first>grp_checkAxis_0_fu_96</first> <second> <count>2</count> <item_version>0</item_version> <item>22</item> <item>22</item> </second> </item> <item> <first>grp_checkAxis_1_fu_80</first> <second> <count>2</count> <item_version>0</item_version> <item>23</item> <item>23</item> </second> </item> <item> <first>grp_checkAxis_2_fu_64</first> <second> <count>2</count> <item_version>0</item_version> <item>21</item> <item>21</item> </second> </item> </dp_fu_nodes_module> <dp_fu_nodes_io> <count>6</count> <item_version>0</item_version> <item> <first>edge_p1_x_read_read_fu_58</first> <second> <count>1</count> <item_version>0</item_version> <item>20</item> </second> </item> <item> <first>edge_p1_y_read_read_fu_52</first> <second> <count>1</count> <item_version>0</item_version> <item>19</item> </second> </item> <item> <first>edge_p1_z_read_read_fu_46</first> <second> <count>1</count> <item_version>0</item_version> <item>18</item> </second> </item> <item> <first>edge_p2_x_read_read_fu_40</first> <second> <count>1</count> <item_version>0</item_version> <item>17</item> </second> </item> <item> <first>edge_p2_y_read_read_fu_34</first> <second> <count>1</count> <item_version>0</item_version> <item>16</item> </second> </item> <item> <first>edge_p2_z_read_read_fu_28</first> <second> <count>1</count> <item_version>0</item_version> <item>15</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="47" tracking_level="0" version="0"> <count>0</count> <item_version>0</item_version> </dp_mem_port_nodes> <dp_reg_nodes> <count>6</count> <item_version>0</item_version> <item> <first>124</first> <second> <count>1</count> <item_version>0</item_version> <item>15</item> </second> </item> <item> <first>131</first> <second> <count>1</count> <item_version>0</item_version> <item>16</item> </second> </item> <item> <first>138</first> <second> <count>1</count> <item_version>0</item_version> <item>17</item> </second> </item> <item> <first>145</first> <second> <count>1</count> <item_version>0</item_version> <item>18</item> </second> </item> <item> <first>152</first> <second> <count>1</count> <item_version>0</item_version> <item>19</item> </second> </item> <item> <first>159</first> <second> <count>1</count> <item_version>0</item_version> <item>20</item> </second> </item> </dp_reg_nodes> <dp_regname_nodes> <count>6</count> <item_version>0</item_version> <item> <first>edge_p1_x_read_reg_159</first> <second> <count>1</count> <item_version>0</item_version> <item>20</item> </second> </item> <item> <first>edge_p1_y_read_reg_152</first> <second> <count>1</count> <item_version>0</item_version> <item>19</item> </second> </item> <item> <first>edge_p1_z_read_reg_145</first> <second> <count>1</count> <item_version>0</item_version> <item>18</item> </second> </item> <item> <first>edge_p2_x_read_reg_138</first> <second> <count>1</count> <item_version>0</item_version> <item>17</item> </second> </item> <item> <first>edge_p2_y_read_reg_131</first> <second> <count>1</count> <item_version>0</item_version> <item>16</item> </second> </item> <item> <first>edge_p2_z_read_reg_124</first> <second> <count>1</count> <item_version>0</item_version> <item>15</item> </second> </item> </dp_regname_nodes> <dp_reg_phi> <count>0</count> <item_version>0</item_version> </dp_reg_phi> <dp_regname_phi> <count>0</count> <item_version>0</item_version> </dp_regname_phi> <dp_port_io_nodes class_id="48" tracking_level="0" version="0"> <count>6</count> <item_version>0</item_version> <item class_id="49" tracking_level="0" version="0"> <first>edge_p1_x</first> <second> <count>1</count> <item_version>0</item_version> <item> <first>read</first> <second> <count>1</count> <item_version>0</item_version> <item>20</item> </second> </item> </second> </item> <item> <first>edge_p1_y</first> <second> <count>1</count> <item_version>0</item_version> <item> <first>read</first> <second> <count>1</count> <item_version>0</item_version> <item>19</item> </second> </item> </second> </item> <item> <first>edge_p1_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>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> <item_version>0</item_version> <item>17</item> </second> </item> </second> </item> <item> <first>edge_p2_y</first> <second> <count>1</count> <item_version>0</item_version> <item> <first>read</first> <second> <count>1</count> <item_version>0</item_version> <item>16</item> </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> </dp_port_io_nodes> <port2core class_id="50" tracking_level="0" version="0"> <count>0</count> <item_version>0</item_version> </port2core> <node2core> <count>0</count> <item_version>0</item_version> </node2core> </syndb> </boost_serialization>
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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<source_obj>15</source_obj> <sink_obj>21</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_106"> <id>301</id> <edge_type>2</edge_type> <source_obj>21</source_obj> <sink_obj>66</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_107"> <id>302</id> <edge_type>2</edge_type> <source_obj>21</source_obj> <sink_obj>25</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_108"> <id>303</id> <edge_type>2</edge_type> <source_obj>25</source_obj> <sink_obj>31</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_109"> <id>304</id> <edge_type>2</edge_type> <source_obj>31</source_obj> <sink_obj>64</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_110"> <id>305</id> <edge_type>2</edge_type> <source_obj>31</source_obj> <sink_obj>61</sink_obj> <is_back_edge>0</is_back_edge> </item> <item class_id_reference="20" object_id="_111"> <id>306</id> <edge_type>2</edge_type> <source_obj>61</source_obj> <sink_obj>31</sink_obj> <is_back_edge>1</is_back_edge> </item> <item class_id_reference="20" object_id="_112"> <id>307</id> <edge_type>2</edge_type> <source_obj>64</source_obj> <sink_obj>21</sink_obj> <is_back_edge>1</is_back_edge> </item> </edges> </cdfg> <cdfg_regions class_id="21" tracking_level="0" version="0"> <count>7</count> <item_version>0</item_version> <item class_id="22" tracking_level="1" version="0" object_id="_113"> <mId>1</mId> <mTag>Loop_loop_height_pro.1</mTag> <mType>0</mType> <sub_regions> <count>3</count> <item_version>0</item_version> <item>2</item> <item>3</item> <item>7</item> </sub_regions> <basic_blocks> <count>0</count> <item_version>0</item_version> </basic_blocks> <mII>-1</mII> <mDepth>-1</mDepth> <mMinTripCount>-1</mMinTripCount> <mMaxTripCount>-1</mMaxTripCount> <mMinLatency>1848961</mMinLatency> <mMaxLatency>1848961</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"/> </item> <item class_id_reference="22" object_id="_114"> <mId>2</mId> <mTag>Entry</mTag> <mType>0</mType> <sub_regions> <count>0</count> <item_version>0</item_version> </sub_regions> <basic_blocks> <count>1</count> <item_version>0</item_version> <item>15</item> </basic_blocks> <mII>-1</mII> <mDepth>-1</mDepth> <mMinTripCount>-1</mMinTripCount> <mMaxTripCount>-1</mMaxTripCount> <mMinLatency>0</mMinLatency> <mMaxLatency>0</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"/> </item> <item class_id_reference="22" object_id="_115"> <mId>3</mId> <mTag>loop_height</mTag> <mType>1</mType> <sub_regions> <count>3</count> <item_version>0</item_version> <item>4</item> <item>5</item> <item>6</item> </sub_regions> <basic_blocks> <count>0</count> <item_version>0</item_version> </basic_blocks> <mII>-1</mII> <mDepth>-1</mDepth> <mMinTripCount>960</mMinTripCount> <mMaxTripCount>960</mMaxTripCount> <mMinLatency>1848960</mMinLatency> <mMaxLatency>1848960</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"/> </item> <item class_id_reference="22" object_id="_116"> <mId>4</mId> <mTag>Region 1</mTag> <mType>0</mType> <sub_regions> <count>0</count> <item_version>0</item_version> </sub_regions> <basic_blocks> <count>2</count> <item_version>0</item_version> <item>21</item> <item>25</item> </basic_blocks> <mII>-1</mII> <mDepth>-1</mDepth> <mMinTripCount>-1</mMinTripCount> <mMaxTripCount>-1</mMaxTripCount> <mMinLatency>0</mMinLatency> <mMaxLatency>0</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"/> </item> <item class_id_reference="22" object_id="_117"> <mId>5</mId> <mTag>loop_width</mTag> <mType>1</mType> <sub_regions> <count>0</count> <item_version>0</item_version> </sub_regions> <basic_blocks> <count>2</count> <item_version>0</item_version> <item>31</item> <item>61</item> </basic_blocks> <mII>1</mII> <mDepth>5</mDepth> <mMinTripCount>1920</mMinTripCount> <mMaxTripCount>1920</mMaxTripCount> <mMinLatency>1923</mMinLatency> <mMaxLatency>1923</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"/> </item> <item class_id_reference="22" object_id="_118"> <mId>6</mId> <mTag>Region 2</mTag> <mType>0</mType> <sub_regions> <count>0</count> <item_version>0</item_version> </sub_regions> <basic_blocks> <count>1</count> <item_version>0</item_version> <item>64</item> </basic_blocks> <mII>-1</mII> <mDepth>-1</mDepth> <mMinTripCount>-1</mMinTripCount> <mMaxTripCount>-1</mMaxTripCount> <mMinLatency>0</mMinLatency> <mMaxLatency>0</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"/> </item> <item class_id_reference="22" object_id="_119"> <mId>7</mId> <mTag>Return</mTag> <mType>0</mType> <sub_regions> <count>0</count> <item_version>0</item_version> </sub_regions> <basic_blocks> <count>1</count> <item_version>0</item_version> <item>66</item> </basic_blocks> <mII>-1</mII> <mDepth>-1</mDepth> <mMinTripCount>-1</mMinTripCount> <mMaxTripCount>-1</mMaxTripCount> <mMinLatency>0</mMinLatency> <mMaxLatency>0</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"/> </item> </cdfg_regions> <fsm class_id="24" tracking_level="1" version="0" object_id="_120"> <states class_id="25" tracking_level="0" version="0"> <count>8</count> <item_version>0</item_version> <item class_id="26" tracking_level="1" version="0" object_id="_121"> <id>1</id> <operations class_id="27" tracking_level="0" version="0"> <count>7</count> <item_version>0</item_version> <item class_id="28" tracking_level="1" version="0" object_id="_122"> <id>8</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_123"> <id>9</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_124"> <id>10</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_125"> <id>11</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_126"> <id>12</id> 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<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> <item_version>0</item_version> <item> <first>(Bits)</first> <second>1</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>1</second> </item> </second> </item> <item> <first>ap_enable_reg_pp0_iter1</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>1</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>1</second> </item> </second> </item> <item> <first>ap_enable_reg_pp0_iter2</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>1</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>1</second> </item> </second> </item> <item> <first>ap_enable_reg_pp0_iter3</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_iter4</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>1</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>1</second> </item> </second> </item> <item> <first>exitcond_i4_reg_225</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>lut_srgb_decode_addr_1_reg_239</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>8</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>8</second> </item> </second> </item> <item> <first>lut_srgb_decode_addr_2_reg_244</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>8</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>8</second> </item> </second> </item> <item> <first>lut_srgb_decode_addr_reg_234</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>8</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>8</second> </item> </second> </item> <item> <first>r_V_reg_220</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>10</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>10</second> </item> </second> </item> <item> <first>start_once_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>t_V_1_reg_154</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>11</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>11</second> </item> </second> </item> <item> <first>t_V_3_reg_143</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>10</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>10</second> </item> </second> </item> <item> <first>tmp_41_reg_249</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>12</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>12</second> </item> </second> </item> <item> <first>tmp_42_reg_254</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>12</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>12</second> </item> </second> </item> <item> <first>tmp_43_reg_259</first> <second> <count>3</count> <item_version>0</item_version> <item> <first>(Bits)</first> <second>12</second> </item> <item> <first>(Consts)</first> <second>0</second> </item> <item> <first>FF</first> <second>12</second> </item> </second> </item> </dp_register_resource> <dp_dsp_resource> <count>0</count> <item_version>0</item_version> </dp_dsp_resource> <dp_component_map class_id="41" tracking_level="0" version="0"> <count>0</count> <item_version>0</item_version> </dp_component_map> <dp_expression_map> <count>4</count> <item_version>0</item_version> <item class_id="42" tracking_level="0" version="0"> <first>c_V_fu_183_p2 ( + ) </first> <second> <count>1</count> <item_version>0</item_version> <item>29</item> </second> </item> <item> <first>exitcond113_i_fu_165_p2 ( icmp ) </first> <second> <count>1</count> <item_version>0</item_version> <item>17</item> </second> </item> <item> <first>exitcond_i4_fu_177_p2 ( icmp ) </first> <second> <count>1</count> <item_version>0</item_version> <item>27</item> </second> </item> <item> <first>r_V_fu_171_p2 ( + ) </first> <second> <count>1</count> <item_version>0</item_version> <item>19</item> </second> </item> </dp_expression_map> <dp_fifo_map> <count>0</count> <item_version>0</item_version> </dp_fifo_map> <dp_memory_map> <count>1</count> <item_version>0</item_version> <item> <first>lut_srgb_decode_U</first> <second> <count>1</count> <item_version>0</item_version> <item>65</item> </second> </item> </dp_memory_map> </res> <node_label_latency class_id="43" tracking_level="0" version="0"> <count>31</count> <item_version>0</item_version> <item class_id="44" tracking_level="0" version="0"> <first>14</first> <second class_id="45" tracking_level="0" version="0"> <first>0</first> <second>0</second> </second> </item> <item> <first>16</first> <second> <first>1</first> <second>0</second> </second> </item> <item> <first>17</first> <second> <first>1</first> <second>0</second> </second> </item> <item> <first>19</first> <second> <first>1</first> <second>0</second> </second> </item> <item> <first>20</first> <second> <first>1</first> <second>0</second> </second> </item> <item> <first>24</first> <second> <first>1</first> <second>0</second> </second> </item> <item> <first>26</first> <second> <first>2</first> <second>0</second> </second> </item> <item> <first>27</first> <second> <first>2</first> <second>0</second> </second> </item> <item> <first>29</first> <second> <first>2</first> <second>0</second> </second> </item> <item> <first>30</first> <second> <first>2</first> <second>0</second> </second> </item> <item> <first>37</first> <second> <first>3</first> <second>0</second> </second> </item> <item> <first>38</first> <second> <first>3</first> <second>0</second> </second> </item> <item> <first>39</first> <second> <first>3</first> <second>0</second> </second> </item> <item> <first>40</first> <second> <first>3</first> <second>0</second> </second> </item> <item> <first>41</first> <second> <first>3</first> <second>0</second> </second> </item> <item> <first>42</first> <second> <first>3</first> <second>0</second> </second> </item> <item> <first>44</first> <second> <first>3</first> <second>0</second> </second> </item> <item> <first>45</first> <second> <first>4</first> <second>1</second> </second> </item> <item> <first>46</first> <second> <first>6</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>4</first> <second>1</second> </second> </item> <item> <first>49</first> <second> <first>6</first> <second>0</second> </second> </item> <item> <first>50</first> <second> <first>3</first> <second>0</second> </second> </item> <item> <first>51</first> <second> <first>4</first> <second>1</second> </second> </item> <item> <first>52</first> <second> <first>6</first> <second>0</second> </second> </item> <item> <first>55</first> <second> <first>6</first> <second>0</second> </second> </item> <item> <first>56</first> <second> <first>6</first> <second>0</second> </second> </item> <item> <first>57</first> <second> <first>6</first> <second>0</second> </second> </item> <item> <first>60</first> <second> <first>6</first> <second>0</second> </second> </item> <item> <first>63</first> <second> <first>7</first> <second>0</second> </second> </item> <item> <first>65</first> <second> <first>1</first> <second>0</second> </second> </item> </node_label_latency> <bblk_ent_exit class_id="46" tracking_level="0" version="0"> <count>7</count> <item_version>0</item_version> <item class_id="47" tracking_level="0" version="0"> <first>15</first> <second class_id="48" tracking_level="0" version="0"> <first>0</first> <second>0</second> </second> </item> <item> <first>21</first> <second> <first>1</first> <second>1</second> </second> </item> <item> <first>25</first> <second> <first>1</first> <second>1</second> </second> </item> <item> <first>31</first> <second> <first>2</first> <second>2</second> </second> </item> <item> <first>61</first> <second> <first>3</first> <second>6</second> </second> </item> <item> <first>64</first> <second> <first>3</first> <second>3</second> </second> </item> <item> <first>66</first> <second> <first>1</first> <second>1</second> </second> </item> </bblk_ent_exit> <regions class_id="49" tracking_level="0" version="0"> <count>2</count> <item_version>0</item_version> <item class_id="50" tracking_level="1" version="0" object_id="_194"> <region_name>loop_width</region_name> <basic_blocks> <count>2</count> <item_version>0</item_version> <item>31</item> <item>61</item> </basic_blocks> <nodes> <count>0</count> <item_version>0</item_version> </nodes> <anchor_node>-1</anchor_node> <region_type>8</region_type> <interval>1</interval> <pipe_depth>5</pipe_depth> </item> <item class_id_reference="50" object_id="_195"> <region_name>hls_label_2</region_name> <basic_blocks> <count>1</count> <item_version>0</item_version> <item>61</item> </basic_blocks> <nodes> <count>6</count> <item_version>0</item_version> <item>53</item> <item>54</item> <item>55</item> <item>56</item> <item>57</item> <item>58</item> </nodes> <anchor_node>53</anchor_node> <region_type>1</region_type> <interval>0</interval> <pipe_depth>0</pipe_depth> </item> </regions> <dp_fu_nodes class_id="51" tracking_level="0" version="0"> <count>22</count> <item_version>0</item_version> <item class_id="52" tracking_level="0" version="0"> <first>70</first> <second> <count>1</count> <item_version>0</item_version> <item>37</item> </second> </item> <item> <first>76</first> <second> <count>1</count> <item_version>0</item_version> <item>39</item> </second> </item> <item> <first>82</first> <second> <count>1</count> <item_version>0</item_version> <item>41</item> </second> </item> <item> <first>88</first> <second> <count>1</count> <item_version>0</item_version> <item>55</item> </second> </item> <item> <first>95</first> <second> <count>1</count> <item_version>0</item_version> <item>56</item> </second> </item> <item> <first>102</first> <second> <count>1</count> <item_version>0</item_version> <item>57</item> </second> </item> <item> <first>109</first> <second> <count>1</count> <item_version>0</item_version> <item>44</item> </second> </item> <item> <first>116</first> <second> <count>1</count> <item_version>0</item_version> <item>47</item> </second> </item> <item> <first>123</first> <second> <count>1</count> <item_version>0</item_version> <item>50</item> </second> </item> <item> <first>130</first> <second> <count>6</count> <item_version>0</item_version> <item>45</item> <item>45</item> <item>48</item> <item>48</item> <item>51</item> <item>51</item> </second> </item> <item> <first>147</first> <second> <count>1</count> <item_version>0</item_version> <item>16</item> </second> </item> <item> <first>158</first> <second> <count>1</count> <item_version>0</item_version> <item>26</item> </second> </item> <item> <first>165</first> <second> <count>1</count> <item_version>0</item_version> <item>17</item> </second> </item> <item> <first>171</first> <second> <count>1</count> <item_version>0</item_version> <item>19</item> </second> </item> <item> <first>177</first> <second> <count>1</count> <item_version>0</item_version> <item>27</item> </second> </item> <item> <first>183</first> <second> <count>1</count> <item_version>0</item_version> <item>29</item> </second> </item> <item> <first>189</first> <second> <count>1</count> <item_version>0</item_version> <item>38</item> </second> </item> <item> <first>194</first> <second> <count>1</count> <item_version>0</item_version> <item>40</item> </second> </item> <item> <first>199</first> <second> <count>1</count> <item_version>0</item_version> <item>42</item> </second> </item> <item> <first>204</first> <second> <count>1</count> <item_version>0</item_version> <item>46</item> </second> </item> <item> <first>208</first> <second> <count>1</count> <item_version>0</item_version> <item>49</item> </second> </item> <item> <first>212</first> <second> <count>1</count> <item_version>0</item_version> <item>52</item> </second> </item> </dp_fu_nodes> <dp_fu_nodes_expression class_id="54" tracking_level="0" version="0"> <count>15</count> <item_version>0</item_version> <item class_id="55" tracking_level="0" version="0"> <first>c_V_fu_183</first> <second> <count>1</count> <item_version>0</item_version> <item>29</item> </second> </item> <item> <first>exitcond113_i_fu_165</first> <second> <count>1</count> <item_version>0</item_version> <item>17</item> </second> </item> <item> <first>exitcond_i4_fu_177</first> <second> <count>1</count> <item_version>0</item_version> <item>27</item> </second> </item> <item> <first>lut_srgb_decode_addr_1_gep_fu_116</first> <second> <count>1</count> <item_version>0</item_version> <item>47</item> </second> </item> <item> <first>lut_srgb_decode_addr_2_gep_fu_123</first> <second> <count>1</count> <item_version>0</item_version> <item>50</item> </second> </item> <item> <first>lut_srgb_decode_addr_gep_fu_109</first> <second> <count>1</count> <item_version>0</item_version> <item>44</item> </second> </item> <item> <first>r_V_fu_171</first> <second> <count>1</count> <item_version>0</item_version> <item>19</item> </second> </item> <item> <first>t_V_1_phi_fu_158</first> <second> <count>1</count> <item_version>0</item_version> <item>26</item> </second> </item> <item> <first>t_V_3_phi_fu_147</first> <second> <count>1</count> <item_version>0</item_version> <item>16</item> </second> </item> <item> <first>tmp_30_fu_189</first> <second> <count>1</count> <item_version>0</item_version> <item>38</item> </second> </item> <item> <first>tmp_31_fu_204</first> <second> <count>1</count> <item_version>0</item_version> <item>46</item> </second> </item> <item> <first>tmp_32_fu_208</first> <second> <count>1</count> <item_version>0</item_version> <item>49</item> </second> </item> <item> <first>tmp_33_fu_212</first> <second> <count>1</count> <item_version>0</item_version> <item>52</item> </second> </item> <item> <first>tmp_39_1_fu_194</first> <second> <count>1</count> <item_version>0</item_version> <item>40</item> </second> </item> <item> <first>tmp_39_2_fu_199</first> <second> <count>1</count> <item_version>0</item_version> <item>42</item> </second> </item> </dp_fu_nodes_expression> <dp_fu_nodes_module> <count>0</count> <item_version>0</item_version> </dp_fu_nodes_module> <dp_fu_nodes_io> <count>6</count> <item_version>0</item_version> <item> <first>StgValue_56_write_fu_88</first> <second> <count>1</count> <item_version>0</item_version> <item>55</item> </second> </item> <item> <first>StgValue_57_write_fu_95</first> <second> <count>1</count> <item_version>0</item_version> <item>56</item> </second> </item> <item> <first>StgValue_58_write_fu_102</first> <second> <count>1</count> <item_version>0</item_version> <item>57</item> </second> </item> <item> <first>tmp_44_read_fu_70</first> <second> <count>1</count> <item_version>0</item_version> <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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class_id="22" tracking_level="1" version="0" object_id="_825"> <mId>1</mId> <mTag>Conv</mTag> <mType>0</mType> <sub_regions> <count>3</count> <item_version>0</item_version> <item>2</item> <item>3</item> <item>4</item> </sub_regions> <basic_blocks> <count>0</count> <item_version>0</item_version> </basic_blocks> <mII>-1</mII> <mDepth>-1</mDepth> <mMinTripCount>-1</mMinTripCount> <mMaxTripCount>-1</mMaxTripCount> <mMinLatency>78</mMinLatency> <mMaxLatency>78</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"></mDfPipe> </item> <item class_id_reference="22" object_id="_826"> <mId>2</mId> <mTag>Entry</mTag> <mType>0</mType> <sub_regions> <count>0</count> <item_version>0</item_version> </sub_regions> <basic_blocks> <count>1</count> <item_version>0</item_version> <item>18</item> </basic_blocks> <mII>-1</mII> <mDepth>-1</mDepth> <mMinTripCount>-1</mMinTripCount> <mMaxTripCount>-1</mMaxTripCount> <mMinLatency>0</mMinLatency> <mMaxLatency>0</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"></mDfPipe> </item> <item class_id_reference="22" object_id="_827"> <mId>3</mId> <mTag>Conv_label0</mTag> <mType>1</mType> <sub_regions> <count>0</count> <item_version>0</item_version> </sub_regions> <basic_blocks> <count>2</count> <item_version>0</item_version> <item>24</item> <item>288</item> </basic_blocks> <mII>12</mII> <mDepth>17</mDepth> <mMinTripCount>6</mMinTripCount> <mMaxTripCount>6</mMaxTripCount> <mMinLatency>76</mMinLatency> <mMaxLatency>76</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"></mDfPipe> </item> <item class_id_reference="22" object_id="_828"> <mId>4</mId> <mTag>Return</mTag> <mType>0</mType> <sub_regions> <count>0</count> <item_version>0</item_version> </sub_regions> <basic_blocks> <count>1</count> <item_version>0</item_version> <item>290</item> </basic_blocks> <mII>-1</mII> <mDepth>-1</mDepth> <mMinTripCount>-1</mMinTripCount> <mMaxTripCount>-1</mMaxTripCount> <mMinLatency>0</mMinLatency> <mMaxLatency>0</mMaxLatency> <mIsDfPipe>0</mIsDfPipe> <mDfPipe class_id="-1"></mDfPipe> </item> </cdfg_regions> <fsm class_id="24" tracking_level="1" version="0" object_id="_829"> <states class_id="25" tracking_level="0" version="0"> <count>19</count> <item_version>0</item_version> <item class_id="26" tracking_level="1" version="0" object_id="_830"> <id>1</id> <operations class_id="27" tracking_level="0" version="0"> <count>14</count> <item_version>0</item_version> <item class_id="28" tracking_level="1" version="0" object_id="_831"> <id>4</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_832"> <id>5</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_833"> <id>6</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_834"> <id>7</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_835"> <id>8</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_836"> <id>9</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_837"> <id>10</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_838"> <id>11</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_839"> <id>12</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_840"> <id>13</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_841"> <id>14</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_842"> <id>15</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_843"> <id>16</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_844"> <id>17</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_845"> <id>2</id> <operations> <count>32</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_846"> <id>19</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_847"> <id>20</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_848"> <id>21</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_849"> <id>22</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_850"> <id>23</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_851"> <id>28</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_852"> <id>29</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_853"> <id>30</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_854"> <id>31</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_855"> <id>32</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_856"> <id>33</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_857"> <id>34</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_858"> <id>35</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_859"> <id>37</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_860"> <id>38</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_861"> <id>43</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_862"> <id>50</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_863"> <id>51</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_864"> <id>52</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_865"> <id>53</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_866"> <id>54</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_867"> <id>56</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_868"> <id>57</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_869"> <id>60</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_870"> <id>61</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_871"> <id>62</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_872"> <id>76</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_873"> <id>79</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_874"> <id>107</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_875"> <id>108</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_876"> <id>109</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_877"> <id>111</id> <stage>2</stage> <latency>2</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_878"> <id>3</id> <operations> <count>37</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_879"> <id>43</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_880"> <id>53</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_881"> <id>54</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_882"> <id>55</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_883"> <id>58</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_884"> <id>59</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_885"> <id>61</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_886"> <id>62</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_887"> <id>64</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_888"> <id>65</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_889"> <id>66</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_890"> <id>67</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_891"> <id>68</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_892"> <id>70</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_893"> <id>71</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_894"> <id>72</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_895"> <id>73</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_896"> <id>89</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_897"> <id>111</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_898"> <id>142</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_899"> <id>143</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_900"> <id>144</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_901"> <id>145</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_902"> <id>147</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_903"> <id>178</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_904"> <id>179</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_905"> <id>180</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_906"> <id>181</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_907"> <id>183</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_908"> <id>214</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_909"> <id>215</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_910"> <id>216</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_911"> <id>217</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_912"> <id>250</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_913"> <id>251</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_914"> <id>252</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_915"> <id>253</id> <stage>1</stage> <latency>1</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_916"> <id>4</id> <operations> <count>23</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_917"> <id>41</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_918"> <id>63</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_919"> <id>67</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_920"> <id>68</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_921"> <id>69</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_922"> <id>73</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_923"> <id>80</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_924"> <id>85</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_925"> <id>86</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_926"> <id>87</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_927"> <id>88</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_928"> <id>89</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_929"> <id>91</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_930"> <id>92</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_931"> <id>93</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_932"> <id>94</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_933"> <id>95</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_934"> <id>98</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_935"> <id>119</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_936"> <id>147</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_937"> <id>183</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_938"> <id>219</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_939"> <id>255</id> <stage>2</stage> <latency>2</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_940"> <id>5</id> <operations> <count>20</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_941"> <id>41</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_942"> <id>48</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_943"> <id>74</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_944"> <id>88</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_945"> <id>90</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_946"> <id>94</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_947"> <id>95</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_948"> <id>113</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_949"> <id>114</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_950"> <id>115</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_951"> <id>116</id> <stage>2</stage> <latency>2</latency> </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> </operations> </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> <latency>2</latency> </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> <latency>1</latency> </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> <latency>1</latency> </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> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1065"> <id>177</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1066"> <id>184</id> <stage>1</stage> <latency>1</latency> </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> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1071"> <id>208</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1072"> <id>231</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_1073"> <id>238</id> <stage>1</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_1074"> <id>257</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1075"> <id>258</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1076"> <id>259</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1077"> <id>260</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_1078"> <id>263</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1079"> <id>270</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1080"> <id>271</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1081"> <id>272</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1082"> <id>273</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1083"> <id>274</id> <stage>2</stage> <latency>2</latency> </item> </operations> </item> <item class_id_reference="26" object_id="_1084"> <id>12</id> <operations> <count>16</count> <item_version>0</item_version> <item class_id_reference="28" object_id="_1085"> <id>36</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1086"> <id>39</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1087"> <id>40</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_1088"> <id>44</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1089"> <id>45</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1090"> <id>46</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1091"> <id>47</id> <stage>2</stage> <latency>2</latency> </item> <item class_id_reference="28" object_id="_1092"> <id>197</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1093"> <id>203</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1094"> <id>209</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1095"> <id>210</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1096"> <id>226</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1097"> <id>241</id> <stage>1</stage> <latency>1</latency> </item> <item class_id_reference="28" object_id="_1098"> <id>260</id> <stage>1</stage> <latency>2</latency> </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> 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<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;