------------------------------------------------------------------------- -- Project: JCPU, a portable 8-bit RISC CPU written in VHDL -- This file: cpu_embedded using cpu_core and rom -- -- Copyright (C) 2007 J. Ahrensfeld -- -- 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 . -- -- For questions and ideas, please contact the author at jens@jayfield.org -- -------------------------------------------------------------------------- library IEEE; use IEEE.STD_LOGIC_1164.ALL; use IEEE.numeric_std.ALL; entity tb_juart_rx is end; architecture behave of tb_juart_rx is -- Number of user data words for simulation constant CLK_PERIOD : time := 10 ns; constant BAUD_DIV : natural := 2; signal rst : std_logic := '1'; signal clk : std_logic := '1'; signal en_16_x_baud : std_logic := '1'; signal serial_in : std_logic := '1'; signal data_strobe : std_logic; signal data_out : unsigned(7 downto 0); signal serial_word : unsigned(7 downto 0) := X"AA"; signal baud_count : unsigned(15 downto 0); signal baud_reg : unsigned(15 downto 0) := to_unsigned(BAUD_DIV-1, baud_count'length); signal data_reg : unsigned(7 downto 0); begin inst_juart_rx : entity work.juart_rx PORT MAP ( rst => rst, clk => clk, en_16_x_baud => en_16_x_baud, data_strobe => data_strobe, data_out => data_out, serial_in => serial_in ); CLK_GEN: process begin wait for CLK_PERIOD/2; clk <= not clk; end process; PROC_DATAREG: process begin wait until rising_edge(clk) and data_strobe = '1'; data_reg <= data_out; end process; baud_timer: process(clk) begin if rising_edge(clk) then en_16_x_baud <= '0'; if rst = '1' then baud_count <= (others => '0'); elsif baud_count = baud_reg then baud_count <= (others => '0'); en_16_x_baud <= '1'; else baud_count <= baud_count + 1; end if; end if; end process; ------------------------------------------------------------------------------------------ STIMULUS: process begin wait for 3*CLK_PERIOD; rst <= '0'; serial_word <= X"AA"; wait for 16*baud_div*CLK_PERIOD; serial_in <= '0'; wait for 16*baud_div*CLK_PERIOD; for i in serial_word'length-1 downto 0 loop serial_in <= serial_word(i); wait for 16*baud_div*CLK_PERIOD; end loop; serial_in <= '1'; wait for 16*baud_div*CLK_PERIOD; serial_word <= X"55"; serial_in <= '0'; wait for 16*baud_div*CLK_PERIOD; for i in serial_word'length-1 downto 0 loop serial_in <= serial_word(i); wait for 16*baud_div*CLK_PERIOD; end loop; serial_in <= '1'; wait; end process; end architecture behave;