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[/] [cpu_lecture/] [trunk/] [src/] [uart_rx.vhd] - Blame information for rev 13

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1 2 jsauermann
-------------------------------------------------------------------------------
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-- 
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-- Copyright (C) 2009, 2010 Dr. Juergen Sauermann
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-- 
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--  This code is free software: you can redistribute it and/or modify
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--  it under the terms of the GNU General Public License as published by
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--  the Free Software Foundation, either version 3 of the License, or
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--  (at your option) any later version.
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--
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--  This code is distributed in the hope that it will be useful,
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--  but WITHOUT ANY WARRANTY; without even the implied warranty of
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--  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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--  GNU General Public License for more details.
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--
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--  You should have received a copy of the GNU General Public License
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--  along with this code (see the file named COPYING).
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--  If not, see http://www.gnu.org/licenses/.
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--
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-------------------------------------------------------------------------------
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-------------------------------------------------------------------------------
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--
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-- Create Date:    14:22:28 11/07/2009 
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-- Design Name: 
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-- Module Name:    uart_rx - Behavioral 
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-- Description:    a UART receiver.
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--
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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 uart_rx is
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    PORT(   I_CLK       : in  std_logic;
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            I_CLR       : in  std_logic;
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            I_CE_16     : in  std_logic;            -- 16 times baud rate 
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            I_RX        : in  std_logic;            -- Serial input line
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            Q_DATA      : out std_logic_vector(7 downto 0);
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            Q_FLAG      : out std_logic);       -- toggle on every byte received
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end uart_rx;
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architecture Behavioral of uart_rx is
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signal L_POSITION       : std_logic_vector(7 downto 0);     --  sample position
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signal L_BUF            : std_logic_vector(9 downto 0);
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signal L_FLAG           : std_logic;
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signal L_SERIN          : std_logic;                -- double clock the input
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signal L_SER_HOT        : std_logic;                -- double clock the input
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begin
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    -- double clock the input data...
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    --
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    process(I_CLK)
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    begin
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        if (rising_edge(I_CLK)) then
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            if (I_CLR = '1') then
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                L_SERIN <= '1';
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                L_SER_HOT <= '1';
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            else
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                L_SERIN   <= I_RX;
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                L_SER_HOT <= L_SERIN;
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            end if;
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        end if;
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    end process;
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    process(I_CLK, L_POSITION)
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        variable START_BIT : boolean;
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        variable STOP_BIT  : boolean;
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        variable STOP_POS  : boolean;
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    begin
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    START_BIT := L_POSITION(7 downto 4) = X"0";
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    STOP_BIT  := L_POSITION(7 downto 4) = X"9";
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    STOP_POS  := STOP_BIT and L_POSITION(3 downto 2) = "11"; -- 3/4 of stop bit
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        if (rising_edge(I_CLK)) then
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            if (I_CLR = '1') then
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                L_FLAG <= '0';
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                L_POSITION <= X"00";    -- idle
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                L_BUF      <= "1111111111";
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                Q_DATA     <= "00000000";
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            elsif (I_CE_16 = '1') then
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                if (L_POSITION = X"00") then            -- uart idle
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                    L_BUF  <= "1111111111";
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                    if (L_SER_HOT = '0')  then          -- start bit received
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                        L_POSITION <= X"01";
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                    end if;
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                else
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                    L_POSITION <= L_POSITION + X"01";
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                    if (L_POSITION(3 downto 0) = "0111") then       -- 1/2 bit
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                        L_BUF <= L_SER_HOT & L_BUF(9 downto 1);     -- sample data
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                        --
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                        -- validate start bit
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                        --
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                        if (START_BIT and L_SER_HOT = '1') then     -- 1/2 start bit
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                            L_POSITION <= X"00";
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                        end if;
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                        if (STOP_BIT) then                          -- 1/2 stop bit
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                            Q_DATA <= L_BUF(9 downto 2);
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                        end if;
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                    elsif (STOP_POS) then                       -- 3/4 stop bit
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                        L_FLAG <= L_FLAG xor (L_BUF(9) and not L_BUF(0));
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                        L_POSITION <= X"00";
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                    end if;
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                end if;
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            end if;
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        end if;
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    end process;
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    Q_FLAG <= L_FLAG;
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end Behavioral;
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