git-svn-id: http://moon:8086/svn/vhdl/trunk@1422 cc03376c-175c-47c8-b038-4cd826a8556b
291 lines
6.4 KiB
VHDL
291 lines
6.4 KiB
VHDL
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--------------------------------------------------------------------------------
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-- Company:
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-- Engineer:
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--
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-- Create Date: 20:35:49 10/22/2005
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-- Design Name: ps2_core
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-- Module Name: tb_ps2_core.vhd
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-- Project Name: ps2if
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-- Target Device:
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-- Tool versions:
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-- Description:
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--
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-- VHDL Test Bench Created by ISE for module: ps2_core
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--
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-- Dependencies:
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--
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-- Revision:
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-- Revision 0.01 - File Created
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-- Additional Comments:
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--
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-- Notes:
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-- This testbench has been automatically generated using types std_logic and
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-- std_logic_vector for the ports of the unit under test. Xilinx recommends
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-- that these types always be used for the top-level I/O of a design in order
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-- to guarantee that the testbench will bind correctly to the post-implementation
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-- simulation model.
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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_unsigned.all;
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USE ieee.numeric_std.ALL;
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ENTITY tb_ps2_core_vhd IS
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END tb_ps2_core_vhd;
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ARCHITECTURE behavior OF tb_ps2_core_vhd IS
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-- Component Declaration for the Unit Under Test (UUT)
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COMPONENT ps2_core
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PORT(
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rst : IN std_logic;
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clk : IN std_logic;
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ce : IN std_logic;
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d_in : IN std_logic_vector(7 downto 0);
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write_en : IN std_logic;
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read_en : IN std_logic;
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ps2_clk_in : IN std_logic;
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ps2_data_in : IN std_logic;
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ps2_clk_out : out std_logic;
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ps2_data_out : out std_logic;
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d_out : OUT std_logic_vector(7 downto 0);
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input_rdy : OUT std_logic;
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output_rdy : OUT std_logic
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);
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END COMPONENT;
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--Constants
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constant SYSPERIOD : time := 10 ns;
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constant PS2PERIOD : time := 100 us;
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--Inputs
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SIGNAL rst : std_logic := '1';
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SIGNAL clk : std_logic := '0';
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SIGNAL ce : std_logic := '1';
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SIGNAL write_en : std_logic := '0';
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SIGNAL read_en : std_logic := '0';
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SIGNAL ps2_clk_in : std_logic := '1';
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SIGNAL ps2_data_in : std_logic := '1';
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SIGNAL d_in : std_logic_vector(7 downto 0) := (others=>'0');
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--Outputs
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SIGNAL d_out : std_logic_vector(7 downto 0);
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SIGNAL input_rdy : std_logic;
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SIGNAL output_rdy : std_logic;
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SIGNAL ps2_clk_i : std_logic := '1';
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SIGNAL ps2_clk_j : std_logic := '1';
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SIGNAL ps2_clk_out : std_logic;
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SIGNAL ps2_data_out : std_logic;
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SIGNAl tx_trig : std_logic := '0';
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BEGIN
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-- Instantiate the Unit Under Test (UUT)
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uut: ps2_core PORT MAP(
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rst => rst,
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clk => clk,
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ce => ce,
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d_in => d_in,
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d_out => d_out,
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input_rdy => input_rdy,
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output_rdy => output_rdy,
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write_en => write_en,
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read_en => read_en,
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ps2_clk_in => ps2_clk_in,
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ps2_data_in => ps2_data_in,
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ps2_clk_out => ps2_clk_out,
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ps2_data_out => ps2_data_out
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);
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ps2_clk_j <= ps2_clk_i after PS2PERIOD/4;
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tb_pswclk : PROCESS
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BEGIN
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wait until ps2_clk_j'event;
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ps2_clk_in <= ps2_clk_j;
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-- wait for SYSPERIOD;
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-- ps2_clk_in <= not ps2_clk_j;
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-- wait for SYSPERIOD;
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-- ps2_clk_in <= ps2_clk_j;
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-- wait for SYSPERIOD;
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-- ps2_clk_in <= not ps2_clk_j;
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-- wait for SYSPERIOD;
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-- ps2_clk_in <= ps2_clk_j;
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-- wait for SYSPERIOD;
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-- ps2_clk_in <= not ps2_clk_j;
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-- wait for SYSPERIOD;
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-- ps2_clk_in <= ps2_clk_j;
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-- wait for SYSPERIOD;
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-- ps2_clk_in <= not ps2_clk_j;
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-- wait for SYSPERIOD;
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-- ps2_clk_in <= ps2_clk_j;
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END PROCESS;
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tb_sysclk : PROCESS
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BEGIN
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clk <= not clk;
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wait for SYSPERIOD/2;
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END PROCESS;
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tb_read : PROCESS
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BEGIN
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if output_rdy = '1' then
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wait for 10*SYSPERIOD;
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read_en <= '1';
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end if;
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wait for 2*SYSPERIOD;
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read_en <= '0';
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END PROCESS;
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tb_write : PROCESS
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BEGIN
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wait until ps2_clk_out = '0';
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wait for PS2PERIOD;
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wait until ps2_data_out = '0';
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wait until ps2_clk_out = '1';
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wait for PS2PERIOD/2;
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tx_trig <= '1';
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END PROCESS;
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tb : PROCESS
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BEGIN
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wait for 20*SYSPERIOD;
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rst <= '0';
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for iter in 1 to 2 loop
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-- wait for 2*PS2PERIOD;
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--Start bit
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wait for PS2PERIOD/2;
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ps2_clk_i <= '0';
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ps2_data_in <= '0';
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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--Data bit 0
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wait for PS2PERIOD/2;
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ps2_clk_i <= '0';
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ps2_data_in <= '1';
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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--Data bit 1
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wait for PS2PERIOD/2;
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ps2_clk_i <= '0';
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ps2_data_in <= '1';
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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--Data bit 2
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wait for PS2PERIOD/2;
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ps2_clk_i <= '0';
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ps2_data_in <= '0';
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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--Data bit 3
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wait for PS2PERIOD/2;
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ps2_clk_i <= '0';
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ps2_data_in <= '1';
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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--Data bit 4
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wait for PS2PERIOD/2;
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ps2_clk_i <= '0';
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ps2_data_in <= '1';
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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--Data bit 5
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wait for PS2PERIOD/2;
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ps2_clk_i <= '0';
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ps2_data_in <= '0';
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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--Data bit 6
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wait for PS2PERIOD/2;
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ps2_clk_i <= '0';
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ps2_data_in <= '1';
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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--Data bit 7
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wait for PS2PERIOD/2;
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ps2_clk_i <= '0';
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ps2_data_in <= '1';
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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--Parity
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wait for PS2PERIOD/2;
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ps2_clk_i <= '0';
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ps2_data_in <= '1';
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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--Stop
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wait for PS2PERIOD/2;
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ps2_clk_i <= '0';
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ps2_data_in <= '1';
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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end loop;
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ps2_data_in <= '1';
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ps2_clk_i <= '1';
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wait for PS2PERIOD;
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d_in <= x"A5";
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write_en <= '1';
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wait for SYSPERIOD;
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write_en <= '0';
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wait until tx_trig = '1';
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wait for 2*PS2PERIOD;
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-- Start
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ps2_clk_i <= not ps2_clk_i;
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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wait for PS2PERIOD/2;
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for iter in 1 to 8 loop
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ps2_clk_i <= not ps2_clk_i;
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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wait for PS2PERIOD/2;
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end loop;
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-- Stop
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ps2_clk_i <= not ps2_clk_i;
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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wait for PS2PERIOD/2;
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-- Parity
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ps2_clk_i <= not ps2_clk_i;
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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wait for PS2PERIOD/2;
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ps2_data_in <= '0';
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ps2_clk_i <= not ps2_clk_i;
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wait for PS2PERIOD/2;
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ps2_clk_i <= not ps2_clk_i;
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wait for PS2PERIOD/2;
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ps2_data_in <= '1';
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ps2_clk_i <= '1';
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-- Place stimulus here
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wait; -- will wait forever
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END PROCESS;
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END;
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