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[/] [System09/] [rev_86/] [rtl/] [VHDL/] [spp.vhd] - Rev 66
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--===========================================================================---- -- -- S Y N T H E Z I A B L E spp - Simple Parallel Port -- -- www.OpenCores.Org - September 2003 -- This core adheres to the GNU public license -- -- File name : spp.vhd -- -- Purpose : Simple Parallel Port for System09 -- -- Dependencies : ieee.Std_Logic_1164 -- ieee.std_logic_unsigned -- -- Uses : None -- -- Author : John E. Kent -- dilbert57@opencores.org -- --===========================================================================---- -- -- Revision History: --===========================================================================-- -- -- Version 0.1 - 6th Sep 2008 -- Generated from ioport.vhd -- --=========================================================================== -- -- Parallel printer port pin assignment -- -- Pin No (DB25) SPP Signal EPP Signal Direction Register Bit Inverted -- 1 nStrobe Write_n Out Control-0 Yes -- 2 Data0 Data0 In/Out Data-0 No -- 3 Data1 Data1 In/Out Data-1 No -- 4 Data2 Data2 In/Out Data-2 No -- 5 Data3 Data3 In/Out Data-3 No -- 6 Data4 Data4 In/Out Data-4 No -- 7 Data5 Data5 In/Out Data-5 No -- 8 Data6 Data6 In/Out Data-6 No -- 9 Data7 Data7 In/Out Data-7 No -- 10 nAck Interrupt In Status-6 No -- 11 Busy Wait In Status-7 Yes -- 12 Paper-Out Spare In Status-5 No -- 13 Select Spare In Status-4 No -- -- 14 Linefeed Data_Strobe_n Out Control-1 Yes -- 15 nError Spare In Status-3 No -- 16 nInitialize Reset Out Control-2 No -- 17 nSelect-Printer Addr_Strobe_n Out Control-3 Yes -- 18-25 Ground Ground - - - -- -- Address MSB LSB -- Bit: 7 6 5 4 3 2 1 0 -- Base (SPP Data port) Write Pin: 9 8 7 6 5 4 3 2 -- Base+1 (SPP Status port) Read Pin: ~11 10 12 13 15 -- Base+2 (SPP Control port) Write Pin: ~17 16 ~14 ~1 -- Base+3 (EPP Address port) R/W -- Base+4 (EPP Data port) R/W -- -- ~ indicates a hardware inversion of the bit. -- library ieee; use ieee.std_logic_1164.all; use ieee.std_logic_unsigned.all; entity spp is port ( clk : in std_logic; rst : in std_logic; cs : in std_logic; rw : in std_logic; addr : in std_logic_vector(2 downto 0); data_in : in std_logic_vector(7 downto 0); data_out : out std_logic_vector(7 downto 0); spp_data : out std_logic_vector(7 downto 0); spp_stat : in std_logic_vector(7 downto 3); spp_ctrl : out std_logic_vector(3 downto 0); hold : out std_logic; irq : out std_logic ); end; architecture rtl of spp is signal spp_data_reg : std_logic_vector(7 downto 0); signal spp_stat_reg : std_logic_vector(7 downto 3); signal spp_ctrl_reg : std_logic_vector(3 downto 0); begin -------------------------------- -- -- read I/O port -- -------------------------------- spp_read : process( addr, spp_data_reg, spp_stat_reg, spp_ctrl_reg, spp_stat ) begin spp_stat_reg(6 downto 3) <= spp_stat(6 downto 3); spp_stat_reg(7) <= not spp_stat(7); case addr is when "000" => data_out <= spp_data_reg; when "001" => data_out <= spp_stat_reg & "000"; when "010" => data_out <= "0000" & spp_ctrl_reg; when others => data_out <= (others=> '0'); end case; hold <= '0'; irq <= '0'; end process; --------------------------------- -- -- Write I/O ports -- --------------------------------- spp_write : process( clk, rst, addr, cs, rw, data_in, spp_data_reg, spp_ctrl_reg ) begin if clk'event and clk = '0' then if rst = '1' then spp_data_reg <= "00000000"; spp_ctrl_reg <= "0000"; elsif cs = '1' and rw = '0' then case addr is when "000" => spp_data_reg <= data_in; when "010" => spp_ctrl_reg <= data_in(3 downto 0); when others => null; end case; end if; end if; spp_data <= spp_data_reg; spp_ctrl(0) <= not spp_ctrl_reg(0); spp_ctrl(1) <= not spp_ctrl_reg(1); spp_ctrl(2) <= spp_ctrl_reg(2); spp_ctrl(3) <= not spp_ctrl_reg(3); end process; end rtl;
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