Signal sum and signal sum test bench now working.

Added overflow check logic
This commit is contained in:
2020-06-09 14:40:44 +03:00
parent 56e16842e4
commit 01e4a4b6d3
4 changed files with 114 additions and 11 deletions
+4 -3
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@@ -51,10 +51,11 @@ set_global_assignment -name EDA_SIMULATION_TOOL "ModelSim-Altera (VHDL)"
set_global_assignment -name EDA_OUTPUT_DATA_FORMAT VHDL -section_id eda_simulation set_global_assignment -name EDA_OUTPUT_DATA_FORMAT VHDL -section_id eda_simulation
set_global_assignment -name POWER_PRESET_COOLING_SOLUTION "23 MM HEAT SINK WITH 200 LFPM AIRFLOW" set_global_assignment -name POWER_PRESET_COOLING_SOLUTION "23 MM HEAT SINK WITH 200 LFPM AIRFLOW"
set_global_assignment -name POWER_BOARD_THERMAL_MODEL "NONE (CONSERVATIVE)" set_global_assignment -name POWER_BOARD_THERMAL_MODEL "NONE (CONSERVATIVE)"
set_global_assignment -name VHDL_FILE sin_gen_sum.vhd
set_global_assignment -name VHDL_FILE sin_gen_tb.vhd
set_global_assignment -name VHDL_FILE sin_gen.vhd
set_global_assignment -name PARTITION_NETLIST_TYPE SOURCE -section_id Top set_global_assignment -name PARTITION_NETLIST_TYPE SOURCE -section_id Top
set_global_assignment -name PARTITION_FITTER_PRESERVATION_LEVEL PLACEMENT_AND_ROUTING -section_id Top set_global_assignment -name PARTITION_FITTER_PRESERVATION_LEVEL PLACEMENT_AND_ROUTING -section_id Top
set_global_assignment -name PARTITION_COLOR 16764057 -section_id Top set_global_assignment -name PARTITION_COLOR 16764057 -section_id Top
set_global_assignment -name VHDL_FILE sin_gen_sum_tb.vhd
set_global_assignment -name VHDL_FILE sin_gen_sum.vhd
set_global_assignment -name VHDL_FILE sin_gen_tb.vhd
set_global_assignment -name VHDL_FILE sin_gen.vhd
set_instance_assignment -name PARTITION_HIERARCHY root_partition -to | -section_id Top set_instance_assignment -name PARTITION_HIERARCHY root_partition -to | -section_id Top
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+18 -8
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@@ -31,8 +31,6 @@ entity sin_gen_sum is
( (
clk : in std_logic; --100mhz clock clk : in std_logic; --100mhz clock
rst : in std_logic; --rst rst : in std_logic; --rst
--phase_incr_one : in std_Logic_vector(phase_width - 1 downto 0); --"frequency for first signal"
--phase_incr_two : in std_Logic_vector(phase_width - 1 downto 0); --"frequency for second signal"
signal_out : out std_Logic_vector(data_width - 1 downto 0) signal_out : out std_Logic_vector(data_width - 1 downto 0)
); );
end sin_gen_sum; end sin_gen_sum;
@@ -42,8 +40,8 @@ architecture behavioral of sin_gen_sum is
--define inside use signals --define inside use signals
signal signal_out_one : std_Logic_vector(data_width - 1 downto 0) := (others => '0'); signal signal_out_one : std_Logic_vector(data_width - 1 downto 0) := (others => '0');
signal signal_out_two : std_Logic_vector(data_width - 1 downto 0) := (others => '0'); signal signal_out_two : std_Logic_vector(data_width - 1 downto 0) := (others => '0');
signal signal_summ : std_Logic_vector(data_width downto 0) := (others => '0'); -- 17bit word signal signal_summ : signed(data_width - 1 downto 0) := (others => '0'); -- 17bit word
--define components to use --define components to use
component sin_gen is component sin_gen is
generic generic
@@ -62,8 +60,9 @@ architecture behavioral of sin_gen_sum is
end component; end component;
begin --define the operation of the module! begin --define the operation of the module!
--signal output --signal output
signal_out <= std_logic_Vector(signal_summ(data_width downto 1));
signal_out <= std_logic_Vector(signal_summ);
sin_gen_one : sin_gen sin_gen_one : sin_gen
@@ -99,8 +98,19 @@ port map
--adder --adder
process(clk) process(clk)
begin begin
if rising_edge(clk) then if rising_edge(clk) then
signal_summ <= signed(signal_out_one) + signed(signal_out_two); if ((std_logic(signal_out_one(data_width-1)) and std_logic(signal_out_two(data_width-1))) = '1' ) and
(signed(signal_out_one) + signed(signal_out_two) > x"0000" )
then --max negative
signal_summ <= x"8000"; --overflow
else if (std_logic(signal_out_one(data_width-1)) nor std_logic(signal_out_two(data_width-1))) = '1' and
(signed(signal_out_one) + signed(signal_out_two) < x"0000" )
then --max positive
signal_summ <= x"7fff"; --overflow
else
signal_summ <= signed(signal_out_one) + signed(signal_out_two);
end if;
end if;
end if; end if;
end process; end process;
+92
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@@ -0,0 +1,92 @@
-----------------------------
-- Author Imants Pulkstenis
-- Date 09.06.2020
-- Project name Labwork No3
-- Module name sin_gen_sum_tb
--
-- Detailed module description
-- Test bench for signal sum module
--
--
-- Revision:
-- A - initial design
-- B -
--
-----------------------------
library ieee; --always use this library
use ieee.std_logic_1164.all; --always use this library
use ieee.numeric_std.all; --use this library if arithmetic required
--define connections to outside
entity sin_gen_sum_tb is
generic
(
phase_width : integer := 9;
data_width : integer := 16;
phase_incr_one : integer := 37;
phase_incr_two : integer := 57
);
end sin_gen_sum_tb;
--define inside of the module
architecture behavioral of sin_gen_sum_tb is
--signals
--signals
signal clk : std_logic := '0'; --100mhz clock
signal rst : std_logic := '0'; --rst
signal signal_out : std_Logic_vector(data_width - 1 downto 0) := (others => '0');
--define components to use
component sin_gen_sum is
generic
(
phase_width : integer := 9;
data_width : integer := 16;
phase_incr_one : integer := phase_incr_one;
phase_incr_two : integer := phase_incr_two
);
port
(
clk : in std_logic; --100mhz clock
rst : in std_logic; --rst
signal_out : out std_Logic_vector(data_width - 1 downto 0)--;
--fs_out : in std_logic
);
end component;
constant clk_period : time := 10 ns;
begin
clk <= not clk after clk_period/2;
uut : sin_gen_sum
generic map
(
phase_width => phase_width,
data_width => data_width,
phase_incr_one => phase_incr_one,
phase_incr_two => phase_incr_two
)
port map
(
clk => clk,
rst => rst,
signal_out => signal_out
);
--tb process
process
begin
rst <= '1';
wait for 100 ns;
rst <= '0';
wait;
end process;
end behavioral;