- refactored clockgens
git-svn-id: http://moon:8086/svn/vhdl/trunk@1582 cc03376c-175c-47c8-b038-4cd826a8556b
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@@ -55,6 +55,6 @@ vhdl work "../../../../lib/ac97_ctrl/src/core/ac_io.vhd"
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vhdl work "../../../../lib/ac97_ctrl/src/core/ac97_wb.vhd"
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vhdl work "../../../../lib/ac97_ctrl/src/core/ac_out.vhd"
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vhdl work "../../../../lib/ac97_ctrl/src/core/ac_in.vhd"
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vhdl work "../../src/clockgen.vhd"
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vhdl work "../../../../lib/clock/xilinx/src/clockgen.vhd"
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vhdl work "../../src/async_defs.vhd"
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vhdl work "../../src/mips_sys.vhd"
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@@ -1,122 +0,0 @@
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-------------------------------------------------------------------------
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-- Project: SDRAM controller
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-- This file: Clock generator (Virtex-4 specific)
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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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library WORK;
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USE WORK.utils_pkg.ALL;
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Library UNISIM;
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use UNISIM.vcomponents.all;
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entity clockgen is
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generic
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(
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clk_in_freq : real := 100.0;
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clk_out_freq : real := 100.0
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);
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port
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(
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-- Clocks and Reset
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rst_in : in std_logic; -- external async reset, low active
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clk_in : in std_logic; -- system clock (e.g. 100MHz), from board
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rst_out : out std_logic;
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clk_out : out std_logic
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);
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end;
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architecture tech of clockgen is
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signal clk0 : std_logic;
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signal clk0_bufg : std_logic;
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signal clkfx : std_logic;
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signal fx_lock : std_logic;
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begin
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-------------------------------------------------------------------------------------------------------
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-- Clock generation
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-------------------------------------------------------------------------------------------------------
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inst_DCM_FX : DCM_BASE
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generic map
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(
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CLKDV_DIVIDE => 2.0, -- Divide by: 1.5,2.0,2.5,3.0,3.5,4.0,4.5,5.0,5.5,6.0,6.5
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-- 7.0,7.5,8.0,9.0,10.0,11.0,12.0,13.0,14.0,15.0 or 16.0
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CLKFX_DIVIDE => UTILS_FREQ_D(clk_in_freq, clk_out_freq), -- Can be any interger from 1 to 32
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CLKFX_MULTIPLY => UTILS_FREQ_M(clk_in_freq, clk_out_freq), -- Can be any integer from 2 to 32
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CLKIN_DIVIDE_BY_2 => FALSE, -- TRUE/FALSE to enable CLKIN divide by two feature
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CLKIN_PERIOD => UTILS_PERIOD_NS(clk_in_freq), -- Specify period of input clock in ns from 1.25 to 1000.00
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CLKOUT_PHASE_SHIFT => "NONE", -- Specify phase shift mode of NONE or FIXED
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CLK_FEEDBACK => "1X", -- Specify clock feedback of NONE or 1X
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DCM_PERFORMANCE_MODE => "MAX_SPEED", -- Can be MAX_SPEED or MAX_RANGE
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DESKEW_ADJUST => "SOURCE_SYNCHRONOUS", -- SOURCE_SYNCHRONOUS, SYSTEM_SYNCHRONOUS or
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-- an integer from 0 to 15
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DFS_FREQUENCY_MODE => "LOW", -- LOW or HIGH frequency mode for frequency synthesis
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DLL_FREQUENCY_MODE => "LOW", -- LOW, HIGH, or HIGH_SER frequency mode for DLL
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DUTY_CYCLE_CORRECTION => TRUE, -- Duty cycle correction, TRUE or FALSE
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FACTORY_JF => X"F0F0", -- FACTORY JF Values Suggested to be set to X"F0F0"
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PHASE_SHIFT => 0, -- Amount of fixed phase shift from -255 to 1023
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STARTUP_WAIT => FALSE -- Delay configuration DONE until DCM LOCK, TRUE/FALSE
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)
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port map
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(
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CLK0 => clk0, -- 0 degree DCM CLK ouptput
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CLK180 => open, -- 180 degree DCM CLK output
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CLK270 => open, -- 270 degree DCM CLK output
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CLK2X => open, -- 2X DCM CLK output
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CLK2X180 => open, -- 2X, 180 degree DCM CLK out
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CLK90 => open, -- 90 degree DCM CLK output
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CLKDV => open, -- Divided DCM CLK out (CLKDV_DIVIDE)
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CLKFX => clkfx, -- DCM CLK synthesis out (M/D)
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CLKFX180 => open, -- 180 degree CLK synthesis out
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LOCKED => fx_lock, -- DCM LOCK status output
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CLKFB => clk0_bufg, -- DCM clock feedback
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CLKIN => clk_in, -- Clock input (from IBUFG, BUFG or DCM)
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RST => rst_in -- DCM asynchronous reset input
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);
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BUFG_clk0 : BUFG
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port map
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(
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O => clk0_bufg, -- Clock buffer output
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I => clk0 -- Clock buffer input
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);
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clk_out <= clkfx;
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rst_out_reg:
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process(clkfx)
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begin
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if rising_edge(clkfx) then
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rst_out <= not fx_lock;
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end if;
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end process;
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end architecture tech;
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