169 lines
4.7 KiB
VHDL
169 lines
4.7 KiB
VHDL
--
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-- Copyright 2021 Ettus Research, a National Instruments Brand
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--
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-- SPDX-License-Identifier: LGPL-3.0-or-later
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--
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-- Module: tb_dac_gearbox_4x2
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--
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-- Description:
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--
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-- Self-checking testbench used to test the gearbox that reduces a 4 SPC data
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-- into a 2 SPC data.
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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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entity tb_dac_gearbox_4x2 is
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end tb_dac_gearbox_4x2;
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architecture RTL of tb_dac_gearbox_4x2 is
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component dac_gearbox_4x2
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port (
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clk1x : in std_logic;
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reset_n_1x : in std_logic;
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data_in_1x : in std_logic_vector(127 downto 0);
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valid_in_1x : in std_logic;
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ready_out_1x : out std_logic;
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clk2x : in std_logic;
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data_out_2x : out std_logic_vector(63 downto 0);
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valid_out_2x : out std_logic);
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end component;
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signal TestStart : boolean;
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signal data_in_1x : std_logic_vector(127 downto 0);
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signal data_out_2x : std_logic_vector(63 downto 0);
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signal ready_out_1x : std_logic;
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signal reset_n_1x : std_logic;
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signal valid_in_1x : std_logic;
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signal valid_out_2x : std_logic;
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signal StopSim : boolean;
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constant kPer : time := 10 ns;
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signal Clk: std_logic := '1';
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signal Clk2x: std_logic := '1';
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signal c2DataToCheck, c2DataToCheckDly0, c2DataToCheckDly1, c2DataToCheckDly2
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: std_logic_vector(63 downto 0) := (others => '0');
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procedure ClkWait(X : positive := 1) is
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begin
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for i in 1 to X loop
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wait until rising_edge(Clk);
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end loop;
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end procedure ClkWait;
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begin
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Clk <= not Clk after kPer/2 when not StopSim else '0';
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Clk2x <= not Clk2x after kPer/4 when not StopSim else '0';
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dut: dac_gearbox_4x2
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port map (
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clk1x => Clk,
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reset_n_1x => reset_n_1x,
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data_in_1x => data_in_1x,
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valid_in_1x => valid_in_1x,
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ready_out_1x => ready_out_1x,
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clk2x => Clk2x,
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data_out_2x => data_out_2x,
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valid_out_2x => valid_out_2x
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);
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main: process
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begin
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reset_n_1x <= '0';
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TestStart <= false;
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ClkWait(5);
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reset_n_1x <= '1';
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ClkWait(5);
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-- Ensure the outputs are quiet.
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ClkWait(20);
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assert valid_out_2x'stable(kPer*20) and valid_out_2x = '0'
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report "valid not stable at de-asserted at startup"
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severity error;
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assert data_out_2x'stable(kPer*20) and (data_out_2x = x"0000000000000000")
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report "data not stable at zero at startup"
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severity error;
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-- Valid asserted, Enable asserted, Enable de-asserted, Valid de-asserted.
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ClkWait(10);
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TestStart <= true;
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ClkWait(110);
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assert valid_out_2x'stable(kPer*100) and valid_out_2x = '1'
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report "valid not stable at asserted"
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severity error;
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TestStart <= false;
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ClkWait(10);
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StopSim <= true;
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wait;
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end process;
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-- Process to generate input data to DUT.
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driver: process(Clk)
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variable tempQdata : integer := 1;
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variable tempIdata : integer := 128;
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begin
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if rising_edge(Clk) then
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valid_in_1x <= '0';
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if TestStart then
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valid_in_1x <= '1';
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data_in_1x <= std_logic_vector(to_unsigned(tempQdata+3,16)) & std_logic_vector(to_unsigned(tempIdata+3,16)) &
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std_logic_vector(to_unsigned(tempQdata+2,16)) & std_logic_vector(to_unsigned(tempIdata+2,16)) &
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std_logic_vector(to_unsigned(tempQdata+1,16)) & std_logic_vector(to_unsigned(tempIdata+1,16)) &
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std_logic_vector(to_unsigned(tempQdata+0,16)) & std_logic_vector(to_unsigned(tempIdata+0,16));
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tempQdata := tempQdata+4;
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tempIdata := tempIdata+4;
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end if;
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end if;
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end process;
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-- Process to generate expected data out of the DUT.
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ExpectedData: process(Clk2x)
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variable qDataOut : unsigned(15 downto 0) := x"0001";
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variable iDataOut : unsigned(15 downto 0) := x"0080";
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begin
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if rising_edge(Clk2x) then
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if TestStart then
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c2DataToCheck <= std_logic_vector((qDataOut+1) & (iDataOut+1) &
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(qDataOut+0) & (iDataOut+0));
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qDataOut := qDataOut+2;
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iDataOut := iDataOut+2;
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else
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qDataOut := x"0001";
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iDataOut := x"0080";
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end if;
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c2DataToCheckDly0 <= c2DataToCheck;
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c2DataToCheckDly1 <= c2DataToCheckDly0;
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c2DataToCheckDly2 <= c2DataToCheckDly1;
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end if;
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end process;
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-- Process to check DUT output data with expected data.
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checker: process(Clk2x)
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begin
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if falling_edge(Clk2x) then
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if valid_out_2x = '1' then
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assert data_out_2x = c2DataToCheckDly2
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report "DAC data out mismatch from expected"
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severity error;
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end if;
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assert ready_out_1x = '1'
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report "Ready for output is not asserted"
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severity error;
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end if;
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end process;
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end RTL;
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