Initial version
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-------------------------------------------------------------------------
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-- Project: JCPU, a portable 8-bit RISC CPU written in VHDL
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-- This file: Formal test of correct function of JCPU,
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-- also writes 'opc.lst' for JASM-assembler
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--
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-- Copyright (C) 2007 J. Ahrensfeld
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--
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-- This program 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 program 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 program. If not, see <http://www.gnu.org/licenses/>.
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--
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-- For questions and ideas, please contact the author at jens@jayfield.org
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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.numeric_std.ALL;
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use std.textio.all; -- Imports the standard textio package.
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library work;
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use work.cpu_pkg.all;
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use work.PCK_FIO.all;
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ENTITY tb_cpu IS
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END tb_cpu;
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ARCHITECTURE behavior OF tb_cpu IS
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COMPONENT cpu
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Generic (
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use_instr_register : boolean;
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use_ctrl_rom : boolean
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);
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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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int_in : in STD_LOGIC;
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int_ack : out STD_LOGIC;
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xmem_we : out STD_LOGIC;
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xmem_re : out STD_LOGIC;
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instr_din : in unsigned (IMEM_DATA_WIDTH-1 downto 0);
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instr_addr : out unsigned (IMEM_ADDR_WIDTH-1 downto 0);
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xmem_din : in unsigned (DMEM_DATA_WIDTH-1 downto 0);
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xmem_dout : out unsigned (DMEM_DATA_WIDTH-1 downto 0);
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xmem_addr : out unsigned (DMEM_DATA_WIDTH-1 downto 0);
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io_sel : out STD_LOGIC
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);
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END COMPONENT;
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COMPONENT irom
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Port (
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clk : in STD_LOGIC;
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ce : in STD_LOGIC;
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addr : in inst_addr_t;
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dout : out inst_t
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);
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END COMPONENT;
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constant CLK_PERIOD : time := 10 ns;
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type prom_t is array (integer range <>) of inst_t;
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type sram_t is array (integer range <>) of dmem_data_t;
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signal rst : std_logic := '1';
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signal clk : std_logic := '1';
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signal ce : std_logic := '0';
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signal int_in : std_logic := '0';
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signal int_ack : std_logic;
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signal irom_data : unsigned (IMEM_DATA_WIDTH-1 downto 0) := (others => '-');
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signal irom_addr : unsigned (IMEM_ADDR_WIDTH-1 downto 0);
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signal xmem_din : dmem_data_t := (others => '-');
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signal xmem_dout : dmem_data_t;
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signal xmem_addr : unsigned (DMEM_DATA_WIDTH-1 downto 0);
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signal xmem_we : std_logic;
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signal xmem_re : std_logic;
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signal io_sel : std_logic;
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signal sram : sram_t(0 to 2**DMEM_DATA_WIDTH-1);
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type reg_t is record
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revision : dmem_data_t;
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testid : dmem_data_t;
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interrupt : std_logic;
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end record;
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signal reg : reg_t;
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BEGIN
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uut: cpu
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GENERIC MAP
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(
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use_instr_register => false,
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use_ctrl_rom => true
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)
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PORT MAP(
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rst => rst,
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clk => clk,
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ce => ce,
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int_in => int_in,
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int_ack => int_ack,
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xmem_we => xmem_we,
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xmem_re => xmem_re,
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instr_din => irom_data,
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instr_addr => irom_addr,
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xmem_din => xmem_din,
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xmem_dout => xmem_dout,
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xmem_addr => xmem_addr,
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io_sel => io_sel
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);
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the_irom: irom
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PORT MAP(
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clk => clk,
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ce => ce,
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addr => irom_addr,
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dout => irom_data
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);
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CLK_GEN: process
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begin
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wait for CLK_PERIOD/2;
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clk <= not clk;
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end process;
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STIMULUS: process
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file RESULT: text open write_mode is "../tools/opc.list";
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variable L: line;
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begin
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for i in 0 to instr_name_array'length-1 loop
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fprint(RESULT, L,"%d %s\n", fo(i), instr_name_array(i));
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end loop;
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wait for 3*CLK_PERIOD;
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rst <= '0';
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wait for 2*CLK_PERIOD;
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wait until rising_edge(clk);
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ce <= '1';
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wait for 1000*CLK_PERIOD;
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for i in 1 to 100 loop
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wait until rising_edge(clk);
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int_in <= '1';
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wait until rising_edge(clk) and int_ack = '1';
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int_in <= '0';
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wait for 300*CLK_PERIOD;
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end loop;
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assert false report "Test finished" severity error;
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wait;
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end process;
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SRAM_RW: process(rst, clk)
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begin
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if (rst = '1') then
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reg.revision <= (others => '0');
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reg.testid <= (others => '0');
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elsif rising_edge(clk) then
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if xmem_we = '1' then
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if io_sel = '0' then
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sram(to_integer(xmem_addr)) <= xmem_dout;
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else
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case xmem_addr is
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when X"00" =>
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reg.revision <= xmem_dout;
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when X"01" =>
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reg.testid <= xmem_dout;
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when X"02" =>
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reg.interrupt <= xmem_dout(0);
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when others => null;
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end case;
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end if;
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else
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if io_sel = '0' then
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xmem_din <= to_01(sram(to_integer(xmem_addr)));
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else
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case xmem_addr is
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when X"00" =>
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xmem_din <= reg.revision;
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when X"01" =>
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xmem_din <= reg.testid;
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when others =>
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xmem_din <= X"BC";
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end case;
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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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END;
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