Files
vhdl/lib/radio/nco/src/mix_cordic.vhd
T
jens 8136d54172 - uses ieee_proposed.fixed_pkg
git-svn-id: http://moon:8086/svn/vhdl/trunk@170 cc03376c-175c-47c8-b038-4cd826a8556b
2008-12-30 05:21:52 +00:00

178 lines
4.4 KiB
VHDL

--------------------------------------------------------------------------------
-- Company:
-- Engineer:
--
-- Create Date: 12:16:14 10/02/05
-- Design Name:
-- Module Name: cordic_stage - Behavioral
-- Project Name:
-- Target Device:
-- Tool versions:
-- Description:
--
-- Dependencies:
--
-- Revision:
-- Revision 0.01 - File Created
-- Additional Comments:
--
--------------------------------------------------------------------------------
library IEEE;
use IEEE.STD_LOGIC_1164.ALL;
use IEEE.MATH_REAL.ALL;
USE ieee.numeric_std.ALL;
library ieee_proposed;
use ieee_proposed.math_utility_pkg.all;
use ieee_proposed.fixed_pkg.all;
library work;
use work.fixed_util_pkg.all;
use work.cordic_pkg.all;
---- Uncomment the following library declaration if instantiating
---- any Xilinx primitives in this code.
--library UNISIM;
--use UNISIM.VComponents.all;
entity mix is
Generic
(
nbits_din : integer := 18;
nbits_din_frac : integer := 16;
nbits_dout : integer := 18;
nbits_dout_frac : integer := 16;
nbits_phase : integer := 16;
nbits_freq : integer := 16
);
Port
(
rst : in std_logic;
clk : in std_logic;
nco_rst : in std_logic;
nco_en : in std_logic;
freq_in : in unsigned(nbits_freq-1 downto 0);
phase_in : in unsigned(nbits_phase-1 downto 0);
din_i : in sfixed;
din_q : in sfixed;
dout_i : out sfixed;
dout_q : out sfixed;
din_vld : in std_logic;
dout_vld : out std_logic
);
end mix;
architecture Behavioral of mix is
COMPONENT cordic_pipe_top
GENERIC
(
cordic_mode : cordic_mode_t;
z_range : real;
gain_corr_mode : gain_corr_mode_t;
nstages : integer;
nbits_x_in : integer;
nbits_y_in : integer;
nbits_z_in : integer;
nbits_frac_x_in : integer;
nbits_frac_y_in : integer;
nbits_frac_z_in : integer;
nbits_x_out : integer;
nbits_y_out : integer;
nbits_z_out : integer;
nbits_frac_x_out : integer;
nbits_frac_y_out : integer;
nbits_frac_z_out : integer
);
PORT
(
rst : in std_logic;
clk : in std_logic;
vld_in : in std_logic;
xin : in sfixed;
yin : in sfixed;
zin : in sfixed;
xout : out sfixed;
yout : out sfixed;
zout : out sfixed;
vld_out : out std_logic
);
END COMPONENT;
-------------------------------------------------------------------------------
constant nbits_phase_frac : integer := nbits_phase;
-------------------------------------------------------------------------------
signal phase : signed(nbits_phase-1 downto 0);
signal xin, yin : sfixed(shi(nbits_din, nbits_din_frac) downto slo(nbits_din, nbits_din_frac));
signal xout, yout : sfixed(shi(nbits_dout, nbits_dout_frac) downto slo(nbits_dout, nbits_dout_frac));
signal dout_valid : std_logic;
signal zin : sfixed(shi(nbits_phase, nbits_phase_frac) downto slo(nbits_phase, nbits_phase_frac));
signal zout : sfixed(shi(nbits_phase, nbits_phase_frac) downto slo(nbits_phase, nbits_phase_frac));
-------------------------------------------------------------------------------
begin
dout_i <= xout;
dout_q <= yout;
xin <= din_i;
yin <= din_q;
dout_vld <= dout_valid;
------------------------------------------------------------
proc_phase_accu: process(clk)
variable phase_accu : signed(nbits_phase-1 downto 0);
begin
if rising_edge(clk) then
if rst = '1' or nco_rst = '1' then
phase_accu := (others => '0');
elsif nco_en = '1' then
phase <= phase_accu + signed(phase_in);
phase_accu := phase_accu + signed(freq_in);
end if;
end if;
zin <= sfixed(phase);
end process;
------------------------------------------------------------
inst_cordic: cordic_pipe_top
GENERIC MAP
(
cordic_mode => cordic_mode_rotate,
z_range => 1.0,
gain_corr_mode => gain_mode_disabled,
nstages => nbits_phase,
nbits_x_in => nbits_din,
nbits_frac_x_in => nbits_din_frac,
nbits_y_in => nbits_din,
nbits_frac_y_in => nbits_din_frac,
nbits_z_in => nbits_phase,
nbits_frac_z_in => nbits_phase_frac,
nbits_x_out => nbits_dout,
nbits_frac_x_out => nbits_dout_frac,
nbits_y_out => nbits_dout,
nbits_frac_y_out => nbits_dout_frac,
nbits_z_out => nbits_phase,
nbits_frac_z_out => nbits_phase_frac
)
PORT MAP
(
rst => rst,
clk => clk,
vld_in => din_vld,
xin => xin,
yin => yin,
zin => zin,
xout => xout,
yout => yout,
zout => zout,
vld_out => dout_valid
);
------------------------------------------------------------
end Behavioral;