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[/] [wb4pb/] [trunk/] [impl/] [avnet_sp3a_eval_uart_vhd.vhd] - Blame information for rev 27

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1 24 ste.fis
--------------------------------------------------------------------------------
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-- This sourcecode is released under BSD license.
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-- Please see http://www.opensource.org/licenses/bsd-license.php for details!
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--------------------------------------------------------------------------------
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--
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-- Copyright (c) 2011, Stefan Fischer <Ste.Fis@OpenCores.org>
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-- All rights reserved.
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--
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-- Redistribution and use in source and binary forms, with or without 
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-- modification, are permitted provided that the following conditions are met:
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--
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--  * Redistributions of source code must retain the above copyright notice, 
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--    this list of conditions and the following disclaimer.
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--  * Redistributions in binary form must reproduce the above copyright notice,
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--    this list of conditions and the following disclaimer in the documentation
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--    and/or other materials provided with the distribution. 
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--  * Neither the name of the author nor the names of his contributors may be 
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--    used to endorse or promote products derived from this software without 
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--    specific prior written permission.
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--
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-- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 
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-- AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 
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-- IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 
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-- ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE 
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-- LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 
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-- CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 
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-- SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 
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-- INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 
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-- CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 
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-- ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 
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-- POSSIBILITY OF SUCH DAMAGE.
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--
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--------------------------------------------------------------------------------
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-- filename: avnet_sp3a_eval_uart_vhd.vhd
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-- description: synthesizable PicoBlaze (TM) uart example using wishbone / 
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--              AVNET (R) Sp3A-Eval-Kit version
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-- todo4user: add other modules as needed
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-- version: 0.0.0
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-- changelog: - 0.0.0, initial release
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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 unisim;
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use unisim.vcomponents.all;
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entity avnet_sp3a_eval_uart_vhd is
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  port
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  (
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    FPGA_RESET : in std_logic;
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    CLK_16MHZ : in std_logic;
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    UART_TXD : in std_logic;
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    UART_RXD : out std_logic;
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    LED1 : out std_logic
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  );
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end avnet_sp3a_eval_uart_vhd;
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architecture rtl of avnet_sp3a_eval_uart_vhd is
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  component kcpsm3 is
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    port
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    (
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      address : out std_logic_vector(9 downto 0);
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      instruction : in std_logic_vector(17 downto 0);
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      port_id : out std_logic_vector(7 downto 0);
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      write_strobe : out std_logic;
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      out_port : out std_logic_vector(7 downto 0);
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      read_strobe : out std_logic;
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      in_port : in std_logic_vector(7 downto 0);
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      interrupt : in std_logic;
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      interrupt_ack : out std_logic;
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      reset : in std_logic;
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      clk : in std_logic
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    );
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  end component;
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  component pbwbuart is
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    port
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    (
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      address : in std_logic_vector(9 downto 0);
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      instruction : out std_logic_vector(17 downto 0);
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      clk : in std_logic
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    );
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  end component;
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  component wbm_picoblaze is
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    port
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    (
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      rst : in std_logic;
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      clk : in std_logic;
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      wbm_cyc_o : out std_logic;
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      wbm_stb_o : out std_logic;
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      wbm_we_o : out std_logic;
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      wbm_adr_o : out std_logic_vector(7 downto 0);
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      wbm_dat_m2s_o : out std_logic_vector(7 downto 0);
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      wbm_dat_s2m_i : in std_logic_vector(7 downto 0);
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      wbm_ack_i : in std_logic;
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      pb_port_id_i : in std_logic_vector(7 downto 0);
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      pb_write_strobe_i : in std_logic;
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      pb_out_port_i : in std_logic_vector(7 downto 0);
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      pb_read_strobe_i : in std_logic;
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      pb_in_port_o : out std_logic_vector(7 downto 0)
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    );
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  end component;
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  component wbs_uart is
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    port
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    (
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      rst : in std_logic;
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      clk : in std_logic;
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      wbs_cyc_i : in std_logic;
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      wbs_stb_i : in std_logic;
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      wbs_we_i : in std_logic;
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      wbs_adr_i : in std_logic_vector(7 downto 0);
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      wbs_dat_m2s_i : in std_logic_vector(7 downto 0);
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      wbs_dat_s2m_o : out std_logic_vector(7 downto 0);
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      wbs_ack_o : out std_logic;
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      uart_rx_si_i : in std_logic;
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      uart_tx_so_o : out std_logic
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    );
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  end component;
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  signal rst : std_logic := '1';
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  signal clk : std_logic := '1';
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  signal wb_cyc : std_logic := '0';
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  signal wb_stb : std_logic := '0';
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  signal wb_we : std_logic := '0';
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  signal wb_adr : std_logic_vector(7 downto 0) := (others => '0');
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  signal wb_dat_m2s : std_logic_vector(7 downto 0) := (others => '0');
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  signal wb_dat_s2m : std_logic_vector(7 downto 0) := (others => '0');
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  signal wb_ack : std_logic := '0';
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  signal pb_write_strobe : std_logic := '0';
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  signal pb_read_strobe : std_logic := '0';
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  signal pb_port_id : std_logic_vector(7 downto 0) := (others => '0');
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  signal pb_in_port : std_logic_vector(7 downto 0) := (others => '0');
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  signal pb_out_port : std_logic_vector(7 downto 0) := (others => '0');
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  signal instruction : std_logic_vector(17 downto 0) := (others => '0');
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  signal address : std_logic_vector(9 downto 0) := (others => '0');
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  signal interrupt : std_logic := '0';
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  signal interrupt_ack : std_logic := '0';
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  signal timer : unsigned(23 downto 0) := (others => '0');
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  signal dcm_locked : std_logic := '0';
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begin
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  -- 50 mhz clock generation
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  DCM_SP_INST : DCM_SP
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    generic map
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    (
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      CLK_FEEDBACK => "NONE",
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      CLKDV_DIVIDE => 2.0,
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      CLKFX_DIVIDE => 8,
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      CLKFX_MULTIPLY => 25,
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      CLKIN_DIVIDE_BY_2 => FALSE,
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      CLKIN_PERIOD => 62.500,
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      CLKOUT_PHASE_SHIFT => "NONE",
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      DESKEW_ADJUST => "SYSTEM_SYNCHRONOUS",
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      DFS_FREQUENCY_MODE => "LOW",
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      DLL_FREQUENCY_MODE => "LOW",
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      DUTY_CYCLE_CORRECTION => TRUE,
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      FACTORY_JF => x"C080",
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      PHASE_SHIFT => 0,
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      STARTUP_WAIT => FALSE
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    )
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    port map
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    (
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      CLKFB => '0',
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      CLKIN => CLK_16MHZ,
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      DSSEN => '0',
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      PSCLK => '0',
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      PSEN => '0',
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      PSINCDEC => '0',
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      RST => FPGA_RESET,
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      CLKDV => open,
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      CLKFX => clk,
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      CLKFX180 => open,
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      CLK0 => open,
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      CLK2X => open,
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      CLK2X180 => open,
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      CLK90 => open,
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      CLK180 => open,
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      CLK270 => open,
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      LOCKED => dcm_locked,
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      PSDONE => open,
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      STATUS => open
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    );
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  -- reset synchronisation
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  process(clk)
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  begin
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    rst <= not dcm_locked;
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  end process;
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  -- module instances
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  -------------------
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  inst_kcpsm3 : kcpsm3
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    port map
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    (
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      address => address,
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      instruction => instruction,
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      port_id => pb_port_id,
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      write_strobe => pb_write_strobe,
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      out_port => pb_out_port,
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      read_strobe => pb_read_strobe,
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      in_port => pb_in_port,
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      interrupt => interrupt,
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      interrupt_ack => interrupt_ack,
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      reset => rst,
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      clk => clk
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    );
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  inst_pbwbuart : pbwbuart
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    port map
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    (
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      address => address,
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      instruction => instruction,
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      clk => clk
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    );
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  inst_wbm_picoblaze : wbm_picoblaze
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    port map
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    (
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      rst => rst,
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      clk => clk,
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      wbm_cyc_o => wb_cyc,
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      wbm_stb_o => wb_stb,
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      wbm_we_o => wb_we,
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      wbm_adr_o => wb_adr,
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      wbm_dat_m2s_o => wb_dat_m2s,
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      wbm_dat_s2m_i => wb_dat_s2m,
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      wbm_ack_i => wb_ack,
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      pb_port_id_i => pb_port_id,
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      pb_write_strobe_i => pb_write_strobe,
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      pb_out_port_i => pb_out_port,
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      pb_read_strobe_i => pb_read_strobe,
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      pb_in_port_o => pb_in_port
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    );
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  inst_wbs_uart : wbs_uart
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    port map
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    (
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      rst => rst,
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      clk => clk,
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      wbs_cyc_i => wb_cyc,
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      wbs_stb_i => wb_stb,
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      wbs_we_i => wb_we,
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      wbs_adr_i => wb_adr,
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      wbs_dat_m2s_i => wb_dat_m2s,
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      wbs_dat_s2m_o => wb_dat_s2m,
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      wbs_ack_o => wb_ack,
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      uart_rx_si_i => UART_TXD,
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      uart_tx_so_o => UART_RXD
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    );
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  LED1 <= timer(23);
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  led_blinker : process(clk)
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  begin
282
    if rising_edge(clk) then
283
      timer <= timer + 1;
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      if rst = '1' then
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        timer <= (others => '0');
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      end if;
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    end if;
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  end process;
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end rtl;

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