Files
b210-k7-fpga/top/x400/rf/sim/tb_dac_gearbox_6x12.vhd
T
Wade Fife 77a66a4de4 x400: sim: Move testbenches to sim folder
Original-commit: c0f9496d59947f8c9411b28d63d0c8e6244102a0
2021-06-17 08:16:59 -05:00

188 lines
6.0 KiB
VHDL

--
-- Copyright 2021 Ettus Research, a National Instruments Brand
--
-- SPDX-License-Identifier: LGPL-3.0-or-later
--
-- Module: tb_dac_gearbox_6x12
--
-- Description:
--
-- Self-checking testbench used to test the gearbox that expands a 6 SPC data
-- into a 12 SPC data.
--
library IEEE;
use IEEE.std_logic_1164.all;
use IEEE.numeric_std.all;
entity tb_dac_gearbox_6x12 is
end tb_dac_gearbox_6x12;
architecture RTL of tb_dac_gearbox_6x12 is
signal TestStart : boolean;
signal ac1Reset_n : std_logic;
signal ac2Reset_n : std_logic;
signal c1DataOut : std_logic_vector(383 downto 0);
signal c1DataValidOut : std_logic;
signal c2DataIn : std_logic_vector(191 downto 0) := (others => '0');
signal c2DataValidIn : std_logic := '0';
signal InPhase : boolean := false;
signal c1DataToCheck, c1DataToCheckDly0, c1DataToCheckDly1, c1DataToCheckDly2
: std_logic_vector(383 downto 0) := (others => '0');
signal StopSim : boolean;
constant kPer : time := 12 ns;
signal Clk1x: std_logic := '1';
signal Clk2x: std_logic := '1';
procedure Clk2xWait(X : positive := 1) is
begin
for i in 1 to X loop
wait until rising_edge(Clk2x);
end loop;
end procedure Clk2xWait;
begin
Clk1x <= not Clk1x after kPer/4 when not StopSim else '0';
Clk2x <= not Clk2x after kPer/8 when not StopSim else '0';
dut: entity WORK.dac_gearbox_6x12 (RTL)
port map (
Clk1x => Clk1x,
Clk2x => Clk2x,
ac1Reset_n => ac1Reset_n,
ac2Reset_n => ac2Reset_n,
c2DataIn => c2DataIn,
c2DataValidIn => c2DataValidIn,
c1DataOut => c1DataOut,
c1DataValidOut => c1DataValidOut
);
main: process
-- Procedure to start and stop data generation.
-- WaitCycles : This is a wait in Clk2x cycle. This is used to shift data
-- valid assertion. Depending on the Clk2x cycle, data valid
-- will be asserted either when both Clk1x and Clk2x are phase
-- aligned or when both clocks are not phase aligned.
-- Phase : This input is used in the logic that is used to check
-- output data with expected data. If data valid was asserted
-- when both clocks were phase aligned, then this input is
-- set to true and vice versa.
procedure PhaseTest(WaitCycles : positive := 1;
Phase : boolean := false) is
begin
-- Wait for certain Clk2x cycles before starting the test.
Clk2xWait(WaitCycles);
InPhase <= Phase;
TestStart <= true;
Clk2xWait(1000); -- Random wait.
TestStart <= false;
-- wait for few clock cycles for the output data valid to de-assert.
Clk2xWait(10);
end procedure;
begin
-- Assert and de-assert reset.
ac1Reset_n <= '0';
ac2Reset_n <= '0';
TestStart <= false;
Clk2xWait(5);
ac1Reset_n <= '1';
ac2Reset_n <= '1';
PhaseTest(1, true);
PhaseTest(3, false);
PhaseTest(5, true);
-- Stop data input to the DUT and wait for few clock cycles for the output
-- data valid to be de-asserted.
TestStart <= false;
Clk2xWait(10);
StopSim <= true;
wait;
end process;
driver: process(Clk2x)
variable tempQdata : unsigned(15 downto 0) := x"0001";
variable tempIdata : unsigned(15 downto 0) := x"0080";
begin
if rising_edge(Clk2x) then
c2DataValidIn <= '0';
if TestStart then
c2DataValidIn <= '1';
c2DataIn <= std_logic_vector((tempQdata+5) & (tempIdata+5) &
(tempQdata+4) & (tempIdata+4) &
(tempQdata+3) & (tempIdata+3) &
(tempQdata+2) & (tempIdata+2) &
(tempQdata+1) & (tempIdata+1) &
(tempQdata+0) & (tempIdata+0));
tempQdata := tempQdata +6;
tempIdata := tempIdata +6;
else
c2DataValidIn <= '0';
tempQdata := x"0001";
tempIdata := x"0080";
end if;
end if;
end process;
-- Process to generate expected data out of the DUT.
ExpectedData: process(Clk1x)
variable qDataOut : unsigned(15 downto 0) := x"0001";
variable iDataOut : unsigned(15 downto 0) := x"0080";
begin
if rising_edge(Clk1x) then
if TestStart then
c1DataToCheck <= std_logic_vector((qDataOut+11) & (iDataOut+11) &
(qDataOut+10) & (iDataOut+10) &
(qDataOut+9) & (iDataOut+9) &
(qDataOut+8) & (iDataOut+8) &
(qDataOut+7) & (iDataOut+7) &
(qDataOut+6) & (iDataOut+6) &
(qDataOut+5) & (iDataOut+5) &
(qDataOut+4) & (iDataOut+4) &
(qDataOut+3) & (iDataOut+3) &
(qDataOut+2) & (iDataOut+2) &
(qDataOut+1) & (iDataOut+1) &
(qDataOut+0) & (iDataOut+0));
qDataOut := qDataOut+12;
iDataOut := iDataOut+12;
else
qDataOut := x"0001";
iDataOut := x"0080";
end if;
c1DataToCheckDly0 <= c1DataToCheck;
c1DataToCheckDly1 <= c1DataToCheckDly0;
c1DataToCheckDly2 <= c1DataToCheckDly1;
end if;
end process;
-- Process to check output data with expected data.
checker: process(Clk1x)
begin
if falling_edge(Clk1x) then
if c1DataValidOut = '1' and InPhase then
assert c1DataOut = c1DataToCheckDly1
report "ADC data out mismatch from expected"
severity warning;
elsif c1DataValidOut = '1' and (not InPhase) then
assert c1DataOut = c1DataToCheckDly2
report "ADC data out mismatch from expected"
severity warning;
end if;
end if;
end process;
end RTL;