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463
dependencies/zlib-1.2.11/contrib/ada/test.adb
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463
dependencies/zlib-1.2.11/contrib/ada/test.adb
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----------------------------------------------------------------
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-- ZLib for Ada thick binding. --
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-- --
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-- Copyright (C) 2002-2003 Dmitriy Anisimkov --
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-- --
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-- Open source license information is in the zlib.ads file. --
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----------------------------------------------------------------
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-- $Id: test.adb,v 1.17 2003/08/12 12:13:30 vagul Exp $
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-- The program has a few aims.
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-- 1. Test ZLib.Ada95 thick binding functionality.
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-- 2. Show the example of use main functionality of the ZLib.Ada95 binding.
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-- 3. Build this program automatically compile all ZLib.Ada95 packages under
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-- GNAT Ada95 compiler.
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with ZLib.Streams;
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with Ada.Streams.Stream_IO;
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with Ada.Numerics.Discrete_Random;
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with Ada.Text_IO;
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with Ada.Calendar;
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procedure Test is
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use Ada.Streams;
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use Stream_IO;
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------------------------------------
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-- Test configuration parameters --
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------------------------------------
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File_Size : Count := 100_000;
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Continuous : constant Boolean := False;
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Header : constant ZLib.Header_Type := ZLib.Default;
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-- ZLib.None;
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-- ZLib.Auto;
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-- ZLib.GZip;
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-- Do not use Header other then Default in ZLib versions 1.1.4
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-- and older.
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Strategy : constant ZLib.Strategy_Type := ZLib.Default_Strategy;
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Init_Random : constant := 10;
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-- End --
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In_File_Name : constant String := "testzlib.in";
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-- Name of the input file
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Z_File_Name : constant String := "testzlib.zlb";
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-- Name of the compressed file.
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Out_File_Name : constant String := "testzlib.out";
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-- Name of the decompressed file.
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File_In : File_Type;
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File_Out : File_Type;
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File_Back : File_Type;
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File_Z : ZLib.Streams.Stream_Type;
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Filter : ZLib.Filter_Type;
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Time_Stamp : Ada.Calendar.Time;
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procedure Generate_File;
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-- Generate file of spetsified size with some random data.
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-- The random data is repeatable, for the good compression.
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procedure Compare_Streams
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(Left, Right : in out Root_Stream_Type'Class);
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-- The procedure compearing data in 2 streams.
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-- It is for compare data before and after compression/decompression.
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procedure Compare_Files (Left, Right : String);
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-- Compare files. Based on the Compare_Streams.
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procedure Copy_Streams
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(Source, Target : in out Root_Stream_Type'Class;
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Buffer_Size : in Stream_Element_Offset := 1024);
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-- Copying data from one stream to another. It is for test stream
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-- interface of the library.
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procedure Data_In
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(Item : out Stream_Element_Array;
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Last : out Stream_Element_Offset);
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-- this procedure is for generic instantiation of
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-- ZLib.Generic_Translate.
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-- reading data from the File_In.
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procedure Data_Out (Item : in Stream_Element_Array);
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-- this procedure is for generic instantiation of
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-- ZLib.Generic_Translate.
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-- writing data to the File_Out.
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procedure Stamp;
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-- Store the timestamp to the local variable.
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procedure Print_Statistic (Msg : String; Data_Size : ZLib.Count);
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-- Print the time statistic with the message.
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procedure Translate is new ZLib.Generic_Translate
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(Data_In => Data_In,
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Data_Out => Data_Out);
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-- This procedure is moving data from File_In to File_Out
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-- with compression or decompression, depend on initialization of
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-- Filter parameter.
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-------------------
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-- Compare_Files --
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-------------------
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procedure Compare_Files (Left, Right : String) is
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Left_File, Right_File : File_Type;
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begin
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Open (Left_File, In_File, Left);
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Open (Right_File, In_File, Right);
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Compare_Streams (Stream (Left_File).all, Stream (Right_File).all);
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Close (Left_File);
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Close (Right_File);
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end Compare_Files;
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---------------------
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-- Compare_Streams --
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---------------------
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procedure Compare_Streams
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(Left, Right : in out Ada.Streams.Root_Stream_Type'Class)
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is
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Left_Buffer, Right_Buffer : Stream_Element_Array (0 .. 16#FFF#);
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Left_Last, Right_Last : Stream_Element_Offset;
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begin
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loop
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Read (Left, Left_Buffer, Left_Last);
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Read (Right, Right_Buffer, Right_Last);
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if Left_Last /= Right_Last then
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Ada.Text_IO.Put_Line ("Compare error :"
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& Stream_Element_Offset'Image (Left_Last)
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& " /= "
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& Stream_Element_Offset'Image (Right_Last));
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raise Constraint_Error;
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elsif Left_Buffer (0 .. Left_Last)
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/= Right_Buffer (0 .. Right_Last)
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then
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Ada.Text_IO.Put_Line ("ERROR: IN and OUT files is not equal.");
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raise Constraint_Error;
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end if;
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exit when Left_Last < Left_Buffer'Last;
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end loop;
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end Compare_Streams;
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------------------
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-- Copy_Streams --
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------------------
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procedure Copy_Streams
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(Source, Target : in out Ada.Streams.Root_Stream_Type'Class;
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Buffer_Size : in Stream_Element_Offset := 1024)
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is
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Buffer : Stream_Element_Array (1 .. Buffer_Size);
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Last : Stream_Element_Offset;
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begin
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loop
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Read (Source, Buffer, Last);
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Write (Target, Buffer (1 .. Last));
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exit when Last < Buffer'Last;
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end loop;
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end Copy_Streams;
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-------------
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-- Data_In --
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-------------
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procedure Data_In
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(Item : out Stream_Element_Array;
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Last : out Stream_Element_Offset) is
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begin
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Read (File_In, Item, Last);
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end Data_In;
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--------------
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-- Data_Out --
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--------------
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procedure Data_Out (Item : in Stream_Element_Array) is
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begin
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Write (File_Out, Item);
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end Data_Out;
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-------------------
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-- Generate_File --
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-------------------
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procedure Generate_File is
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subtype Visible_Symbols is Stream_Element range 16#20# .. 16#7E#;
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package Random_Elements is
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new Ada.Numerics.Discrete_Random (Visible_Symbols);
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Gen : Random_Elements.Generator;
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Buffer : Stream_Element_Array := (1 .. 77 => 16#20#) & 10;
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Buffer_Count : constant Count := File_Size / Buffer'Length;
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-- Number of same buffers in the packet.
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Density : constant Count := 30; -- from 0 to Buffer'Length - 2;
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procedure Fill_Buffer (J, D : in Count);
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-- Change the part of the buffer.
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-----------------
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-- Fill_Buffer --
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-----------------
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procedure Fill_Buffer (J, D : in Count) is
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begin
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for K in 0 .. D loop
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Buffer
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(Stream_Element_Offset ((J + K) mod (Buffer'Length - 1) + 1))
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:= Random_Elements.Random (Gen);
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end loop;
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end Fill_Buffer;
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begin
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Random_Elements.Reset (Gen, Init_Random);
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Create (File_In, Out_File, In_File_Name);
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Fill_Buffer (1, Buffer'Length - 2);
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for J in 1 .. Buffer_Count loop
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Write (File_In, Buffer);
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Fill_Buffer (J, Density);
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end loop;
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-- fill remain size.
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Write
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(File_In,
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Buffer
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(1 .. Stream_Element_Offset
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(File_Size - Buffer'Length * Buffer_Count)));
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Flush (File_In);
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Close (File_In);
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end Generate_File;
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---------------------
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-- Print_Statistic --
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---------------------
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procedure Print_Statistic (Msg : String; Data_Size : ZLib.Count) is
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use Ada.Calendar;
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use Ada.Text_IO;
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package Count_IO is new Integer_IO (ZLib.Count);
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Curr_Dur : Duration := Clock - Time_Stamp;
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begin
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Put (Msg);
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Set_Col (20);
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Ada.Text_IO.Put ("size =");
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Count_IO.Put
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(Data_Size,
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Width => Stream_IO.Count'Image (File_Size)'Length);
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Put_Line (" duration =" & Duration'Image (Curr_Dur));
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end Print_Statistic;
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-----------
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-- Stamp --
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-----------
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procedure Stamp is
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begin
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Time_Stamp := Ada.Calendar.Clock;
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end Stamp;
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begin
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Ada.Text_IO.Put_Line ("ZLib " & ZLib.Version);
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loop
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Generate_File;
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for Level in ZLib.Compression_Level'Range loop
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Ada.Text_IO.Put_Line ("Level ="
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& ZLib.Compression_Level'Image (Level));
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-- Test generic interface.
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Open (File_In, In_File, In_File_Name);
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Create (File_Out, Out_File, Z_File_Name);
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Stamp;
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-- Deflate using generic instantiation.
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ZLib.Deflate_Init
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(Filter => Filter,
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Level => Level,
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Strategy => Strategy,
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Header => Header);
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Translate (Filter);
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Print_Statistic ("Generic compress", ZLib.Total_Out (Filter));
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ZLib.Close (Filter);
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Close (File_In);
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Close (File_Out);
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Open (File_In, In_File, Z_File_Name);
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Create (File_Out, Out_File, Out_File_Name);
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Stamp;
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-- Inflate using generic instantiation.
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ZLib.Inflate_Init (Filter, Header => Header);
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Translate (Filter);
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Print_Statistic ("Generic decompress", ZLib.Total_Out (Filter));
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ZLib.Close (Filter);
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Close (File_In);
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Close (File_Out);
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Compare_Files (In_File_Name, Out_File_Name);
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-- Test stream interface.
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-- Compress to the back stream.
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Open (File_In, In_File, In_File_Name);
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Create (File_Back, Out_File, Z_File_Name);
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Stamp;
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ZLib.Streams.Create
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(Stream => File_Z,
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Mode => ZLib.Streams.Out_Stream,
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Back => ZLib.Streams.Stream_Access
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(Stream (File_Back)),
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Back_Compressed => True,
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Level => Level,
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Strategy => Strategy,
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Header => Header);
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Copy_Streams
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(Source => Stream (File_In).all,
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Target => File_Z);
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-- Flushing internal buffers to the back stream.
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ZLib.Streams.Flush (File_Z, ZLib.Finish);
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Print_Statistic ("Write compress",
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ZLib.Streams.Write_Total_Out (File_Z));
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ZLib.Streams.Close (File_Z);
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Close (File_In);
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Close (File_Back);
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-- Compare reading from original file and from
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-- decompression stream.
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Open (File_In, In_File, In_File_Name);
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Open (File_Back, In_File, Z_File_Name);
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ZLib.Streams.Create
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(Stream => File_Z,
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Mode => ZLib.Streams.In_Stream,
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Back => ZLib.Streams.Stream_Access
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(Stream (File_Back)),
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Back_Compressed => True,
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Header => Header);
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Stamp;
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Compare_Streams (Stream (File_In).all, File_Z);
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Print_Statistic ("Read decompress",
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ZLib.Streams.Read_Total_Out (File_Z));
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ZLib.Streams.Close (File_Z);
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Close (File_In);
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Close (File_Back);
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-- Compress by reading from compression stream.
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Open (File_Back, In_File, In_File_Name);
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Create (File_Out, Out_File, Z_File_Name);
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ZLib.Streams.Create
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(Stream => File_Z,
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Mode => ZLib.Streams.In_Stream,
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Back => ZLib.Streams.Stream_Access
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(Stream (File_Back)),
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Back_Compressed => False,
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Level => Level,
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Strategy => Strategy,
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Header => Header);
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Stamp;
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Copy_Streams
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(Source => File_Z,
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Target => Stream (File_Out).all);
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Print_Statistic ("Read compress",
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ZLib.Streams.Read_Total_Out (File_Z));
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ZLib.Streams.Close (File_Z);
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Close (File_Out);
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Close (File_Back);
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-- Decompress to decompression stream.
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Open (File_In, In_File, Z_File_Name);
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Create (File_Back, Out_File, Out_File_Name);
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ZLib.Streams.Create
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(Stream => File_Z,
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Mode => ZLib.Streams.Out_Stream,
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Back => ZLib.Streams.Stream_Access
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(Stream (File_Back)),
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Back_Compressed => False,
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Header => Header);
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Stamp;
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Copy_Streams
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(Source => Stream (File_In).all,
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Target => File_Z);
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Print_Statistic ("Write decompress",
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ZLib.Streams.Write_Total_Out (File_Z));
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ZLib.Streams.Close (File_Z);
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Close (File_In);
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Close (File_Back);
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Compare_Files (In_File_Name, Out_File_Name);
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end loop;
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Ada.Text_IO.Put_Line (Count'Image (File_Size) & " Ok.");
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exit when not Continuous;
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File_Size := File_Size + 1;
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end loop;
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end Test;
|
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