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        -----------------------------------------------------------------------
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        ----                                                               ----
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        ---- Present - a lightweight block cipher project                  ----
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        ----                                                               ----
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        ---- This file is part of the Present - a lightweight block        ----
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        ---- cipher project                                                ----
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        ---- http://www.http://opencores.org/project,present               ----
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        ----                                                               ----
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        ---- Description:                                                  ----
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        ----     Inverse Key update module for present cipher decoding     ----
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        ---- it is 'signal mixing' made by rotation right by 61 bits,      ---- 
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        ---- using one s-box, and output of the counter. Note, that order  ----
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        ---- of this operatins must be inverse in comparison with key_upd. ----
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        ---- For more information see                                      ----
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        ---- http://homes.esat.kuleuven.be/~abogdano/papers/               ----
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        ---- present_ches07.pdf                                            ----
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        ---- To Do:                                                        ----
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        ----                                                               ----
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        ---- Author(s):                                                    ----
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        ---- - Krzysztof Gajewski, gajos@opencores.org                     ----
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        ----                       k.gajewski@gmail.com                    ----
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        ----                                                               ----
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        -----------------------------------------------------------------------
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        ----                                                               ----
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        ---- Copyright (C) 2013 Authors and OPENCORES.ORG                  ----
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        ----                                                               ----
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        ---- This source file may be used and distributed without          ----
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        ---- restriction provided that this copyright statement is not     ----
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        ---- removed from the file and that any derivative work contains   ----
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        ---- the original copyright notice and the associated disclaimer.  ----
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        ----                                                               ----
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        ---- This source file is free software; you can redistribute it    ----
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        ---- and-or modify it under the terms of the GNU Lesser General    ----
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        ---- Public License as published by the Free Software Foundation;  ----
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        ---- either version 2.1 of the License, or (at your option) any    ----
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        ---- later version.                                                ----
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        ----                                                               ----
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        ---- This source is distributed in the hope that it will be        ----
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        ---- useful, but WITHOUT ANY WARRANTY; without even the implied    ----
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        ---- warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR       ----
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        ---- PURPOSE. See the GNU Lesser General Public License for more   ----
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        ---- details.                                                      ----
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        ----                                                               ----
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        ---- You should have received a copy of the GNU Lesser General     ----
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        ---- Public License along with this source; if not, download it    ----
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        ---- from http://www.opencores.org/lgpl.shtml                      ----
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        ----                                                               ----
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        -----------------------------------------------------------------------
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        library IEEE;
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        use IEEE.STD_LOGIC_1164.ALL;
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        use IEEE.STD_LOGIC_ARITH.ALL;
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        use IEEE.STD_LOGIC_UNSIGNED.ALL;
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        entity keyupd_inv is
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                generic(
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                        w_80: integer := 80;
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                        w_5 : integer := 5;
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                        w_4 : integer := 4);
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                port(
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                        key : in std_logic_vector(w_80-1 downto 0);
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                        num : in std_logic_vector(w_5-1 downto 0);
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                        keyout : out std_logic_vector(w_80-1 downto 0)
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                );
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        end keyupd_inv;
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        architecture Behavioral of keyupd_inv is
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                component slayer_inv is
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                        generic(w_4: integer := 4);
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                        port(
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                                input : in std_logic_vector(w_4-1 downto 0);
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                                output : out std_logic_vector(w_4-1 downto 0)
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                        );
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                end component;
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                signal changed : std_logic_vector(w_4-1 downto 0);
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                signal changin : std_logic_vector(w_4-1 downto 0);
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                signal keytemp : std_logic_vector(w_80-1 downto 0);
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                begin
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                        s1: slayer_inv port map(input => changin, output => changed);
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                        changin <= key(79 downto 76);
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                        keytemp(79 downto 76)<= changed;
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                        keytemp(75 downto 20) <= key(75 downto 20);
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                        keytemp(19 downto 15)<= key(19 downto 15) xor num;
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                        keytemp(14 downto 0) <= key(14 downto 0);
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                        keyout <= keytemp(60 downto 0) & keytemp(79 downto 61);
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                end Behavioral;
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