Files
Zorro-LAN-IDE/Logic/LAN_IDE/LAN_IDE_CP.vhd
T
2017-01-15 00:14:51 +01:00

390 lines
12 KiB
VHDL

----------------------------------------------------------------------------------
-- Company:
-- Engineer:
--
-- Create Date: 22:08:29 12/13/2016
-- Design Name:
-- Module Name: LAN_IDE_CP - Behavioral
-- Project Name:
-- Target Devices:
-- Tool versions:
-- Description:
--
-- Dependencies:
--
-- Revision:
-- Revision 0.01 - File Created
-- Additional Comments:
--
----------------------------------------------------------------------------------
library IEEE;
use IEEE.STD_LOGIC_1164.ALL;
use IEEE.STD_LOGIC_ARITH.ALL;
use IEEE.STD_LOGIC_UNSIGNED.ALL;
-- Uncomment the following library declaration if using
-- arithmetic functions with Signed or Unsigned values
--use IEEE.NUMERIC_STD.ALL;
-- Uncomment the following library declaration if instantiating
-- any Xilinx primitives in this code.
--library UNISIM;
--use UNISIM.VComponents.all;
entity LAN_IDE_CP is
Port ( A : inout STD_LOGIC_VECTOR (23 downto 1);
D : inout STD_LOGIC_VECTOR (15 downto 0);
DQ : inout STD_LOGIC_VECTOR (15 downto 0);
A_LAN : out STD_LOGIC_VECTOR (13 downto 0);
OWN : out STD_LOGIC;
SLAVE : out STD_LOGIC;
CFOUT : out STD_LOGIC;
CFIN : in STD_LOGIC;
C1 : in STD_LOGIC;
C3 : in STD_LOGIC;
MTCR : in STD_LOGIC;
OVR : out STD_LOGIC;
BERR : in STD_LOGIC;
MTACK : out STD_LOGIC;
DS0 : in STD_LOGIC;
DTACK : out STD_LOGIC;
UDS : in STD_LOGIC;
LDS : in STD_LOGIC;
AS : in STD_LOGIC;
RW : in STD_LOGIC;
Z3 : in STD_LOGIC;
DS1 : in STD_LOGIC;
FCS : in STD_LOGIC;
RESET : in STD_LOGIC;
INT_OUT : out STD_LOGIC;
AUTOBOOT_OFF : in STD_LOGIC;
ROM_B : out STD_LOGIC_VECTOR (1 downto 0);
ROM_OE : out STD_LOGIC;
IDE_WAIT : in STD_LOGIC;
CLK_EXT : in STD_LOGIC;
IDE_W : out STD_LOGIC;
IDE_R : out STD_LOGIC;
IDE_A : out STD_LOGIC_VECTOR (2 downto 0);
IDE_CS : out STD_LOGIC_VECTOR (1 downto 0);
LAN_CFG : out STD_LOGIC_VECTOR (4 downto 1);
LAN_RD : out STD_LOGIC;
LAN_CS : out STD_LOGIC;
LAN_WRH : out STD_LOGIC;
LAN_WRL : out STD_LOGIC;
LAN_INT : in STD_LOGIC;
CP_RD : out STD_LOGIC;
CP_WE : out STD_LOGIC;
CP_CS : out STD_LOGIC;
CP_IRQ : in STD_LOGIC);
end LAN_IDE_CP;
architecture Behavioral of LAN_IDE_CP is
SIGNAL ide: STD_LOGIC;
SIGNAL autoconfig: STD_LOGIC;
SIGNAL lan: STD_LOGIC;
SIGNAL cp: STD_LOGIC;
signal Dout1:STD_LOGIC_VECTOR(3 downto 0);
signal AUTO_CONFIG_DONE:STD_LOGIC_VECTOR(1 downto 0);
signal AUTO_CONFIG_DONE_CYCLE:STD_LOGIC_VECTOR(1 downto 0);
signal SHUT_UP:STD_LOGIC_VECTOR(2 downto 0);
signal IDE_BASEADR:STD_LOGIC_VECTOR(7 downto 0);
signal LAN_BASEADR:STD_LOGIC_VECTOR(7 downto 0);
signal CP_BASEADR:STD_LOGIC_VECTOR(7 downto 0);
signal IDE_ENABLE:STD_LOGIC;
signal ROM_OE_S:STD_LOGIC;
signal IDE_R_S:STD_LOGIC;
signal IDE_W_S:STD_LOGIC;
signal DTACK_S:STD_LOGIC;
signal DS_D: std_logic;
signal AMIGA_CLK: std_logic;
signal LAN_INT_ENABLE: std_logic;
signal DECODE_RESET: std_logic;
signal LAN_INT_D0: std_logic;
signal DS: std_logic;
signal LAN_RD_S: std_logic;
signal LAN_WRH_S: std_logic;
signal LAN_WRL_S: std_logic;
signal CP_RD_S: std_logic;
signal CP_WE_S: std_logic;
Function to_std_logic(X: in Boolean) return Std_Logic is
variable ret : std_logic;
begin
if x then ret := '1'; else ret := '0'; end if;
return ret;
end to_std_logic;
begin
AMIGA_CLK <= not (C1 xor C3);
DECODE_RESET <= BERR and reset;
DS <= UDS and LDS;
ADDRESS_DECODE: process(DECODE_RESET,AMIGA_CLK)
begin
if(DECODE_RESET ='0')then
autoconfig <= '0';
ide <= '0';
lan <= '0';
cp <= '0';
elsif(falling_edge(AS))then
if(A(23 downto 16) = x"E8" and AUTO_CONFIG_DONE < "11" )then
autoconfig <= not CFIN;
else
autoconfig <='0';
end if;
if(A(23 downto 16) = LAN_BASEADR and SHUT_UP(0)='0' )then
lan <= '1';
else
lan <= '0';
end if;
if(A(23 downto 16) = CP_BASEADR and SHUT_UP(1)='0')then
cp <= '1';
else
cp <= '0';
end if;
if(A(23 downto 16) = IDE_BASEADR and SHUT_UP(2)='0')then
ide <= '1';
else
ide <= '0';
end if;
end if;
end process ADDRESS_DECODE;
--LAN interrupt enable
lan_int_proc: process (AMIGA_CLK,reset)
begin
if(reset ='0') then
LAN_INT_ENABLE <='0';
elsif falling_edge(AMIGA_CLK) then
if(lan = '1' and AS ='0' and RW='0' and A(15)='1') then --enable if a write to A15 occured
LAN_INT_ENABLE <= D(15);
end if;
end if;
end process lan_int_proc;
--lan signal generation: all Signals are HIGH active!
lan_rw_gen: process (AMIGA_CLK)
begin
if falling_edge(AMIGA_CLK) then
if(lan='1' and DS='0')then
LAN_RD_S <= RW;
LAN_WRH_S <= not UDS and not RW;
LAN_WRL_S <= not LDS and not RW;
else
LAN_RD_S <= '0';
LAN_WRH_S <= '0';
LAN_WRL_S <= '0';
end if;
end if;
end process lan_rw_gen;
--cp signal generation
cp_rw_gen: process (AMIGA_CLK)
begin
if falling_edge(AMIGA_CLK) then
if(cp = '1' and DS='0' and reset ='1')then --datastrobe instead of AS!
CP_RD_S <= not RW;
CP_WE_S <= RW;
else
CP_RD_S <= '1';
CP_WE_S <= '1';
end if;
end if;
end process cp_rw_gen;
--ide signal generation
ide_rw_gen: process (AMIGA_CLK)
begin
if falling_edge(AMIGA_CLK) then
if (reset = '0') then
IDE_ENABLE <= '1';
IDE_R_S <= '1';
IDE_W_S <= '1';
ROM_OE_S <= '1';
elsif(ide='1' and AS='0')then
if(RW='0')then
--the write goes to the hdd!
IDE_ENABLE <= '0'; -- enable IDE on first read
IDE_W_S <= '0';
IDE_R_S <= '1';
ROM_OE_S <= '1';
else
IDE_W_S <= '1';
IDE_R_S <= IDE_ENABLE; --read from IDE instead from ROM
ROM_OE_S <= not IDE_ENABLE;
end if;
else
IDE_R_S <= '1';
IDE_W_S <= '1';
ROM_OE_S <= '1';
end if;
end if;
end process ide_rw_gen;
--autoconfig
autoconfig_proc: process (reset, AMIGA_CLK)
begin
if falling_edge(AMIGA_CLK) then -- no reset, so wait for rising edge of the clock
DS_D <= DS;
if reset = '0' then
-- reset active ...
AUTO_CONFIG_DONE_CYCLE <="00";
Dout1<="1111";
--Dout2<="1111";
SHUT_UP <="111";
IDE_BASEADR<=x"FF";
LAN_BASEADR<=x"FF";
CP_BASEADR<=x"FF";
AUTO_CONFIG_DONE <="00";
elsif(AS='1')then
AUTO_CONFIG_DONE <= AUTO_CONFIG_DONE_CYCLE;
elsif(autoconfig= '1' and DS='0') then
case A(6 downto 1) is
when "000000" =>
if(AUTO_CONFIG_DONE < "10")then
Dout1 <= "1100" ; --ZII, No-System-Memory, no ROM
else
Dout1 <= "110"&not(AUTOBOOT_OFF) ; --ZII, no System-Memory, (perhaps)ROM
end if;
when "000001" => Dout1 <= "0001" ; --one Card, 64KB =001
when "000010" =>
if(AUTO_CONFIG_DONE < "10")then
Dout1 <= "1000" ; --ProductID high nibble : 7->1000
else
Dout1 <= "1111" ; --ProductID high nibble : 0->1111
end if;
when "000011" =>
if(AUTO_CONFIG_DONE = "00")then
Dout1 <= "0100" ; --ProductID low nibble: B->0100
elsif(AUTO_CONFIG_DONE = "01")then
Dout1 <= "0011" ; --ProductID low nibble: C->0011
else
Dout1 <= "1001" ; --ProductID low nibble: 6->1001
end if;
when "001000" => Dout1 <= "1111" ; --Ventor ID 0
when "001001" =>
if(AUTO_CONFIG_DONE < "10")then
Dout1 <= "0101" ; --Ventor ID 1
else
Dout1 <= "0111" ; --Ventor ID 1
end if;
when "001010" =>
if(AUTO_CONFIG_DONE < "10")then
Dout1 <= "1110" ; --Ventor ID 2
else
Dout1 <= "1101" ; --Ventor ID 2
end if;
when "001011" =>
if(AUTO_CONFIG_DONE < "10")then
Dout1 <= "0011" ; --Ventor ID 3 : $0A1C: A1K.org
else
Dout1 <= "0011" ; --Ventor ID 3 : $082C: BSC
end if;
when "001100" => Dout1 <= "0100" ; --Serial byte 0 (msb) high nibble
when "001101" => Dout1 <= "1110" ; --Serial byte 0 (msb) low nibble
when "001110" => Dout1 <= "1001" ; --Serial byte 1 high nibble
when "001111" => Dout1 <= "0100" ; --Serial byte 1 low nibble
when "010000" => Dout1 <= "1111" ; --Serial byte 2 high nibble
when "010001" => Dout1 <= "1111" ; --Serial byte 2 low nibble
when "010010" => Dout1 <= "0100" ; --Serial byte 3 (lsb) high nibble
when "010011" => Dout1 <= "1010" ; --Serial byte 3 (lsb) low nibble: B16B00B5
--when "010100" => Dout1 <= "1111" ; --Rom vector high byte high nibble
--when "010101" => Dout1 <= "1111" ; --Rom vector high byte low nibble
--when "010110" => Dout1 <= "1111" ; --Rom vector low byte high nibble
when "010111" =>
if(AUTO_CONFIG_DONE = "10")then
Dout1 <= "1110" ; --Rom vector low byte low nibble
else
Dout1 <= "1111" ; --Rom vector low byte low nibble
end if;
when "100000" => Dout1 <= "0000" ; --Interrupt config: all zero
when "100001" => Dout1 <= "0000" ; --Interrupt config: all zero
when "100100" =>
Dout1 <= "1111" ;
if(RW='0' and DS_D='1')then
if(AUTO_CONFIG_DONE = "00" and SHUT_UP(0) ='1')then
LAN_BASEADR(7 downto 0) <= D(15 downto 8); --Base adress
SHUT_UP(0) <='0'; --enable board
AUTO_CONFIG_DONE_CYCLE <= AUTO_CONFIG_DONE_CYCLE+1; --done here
elsif(AUTO_CONFIG_DONE = "01" and SHUT_UP(1) ='1')then
CP_BASEADR(7 downto 0) <= D(15 downto 8); --Base adress
SHUT_UP(1) <= '0'; --enable board
AUTO_CONFIG_DONE_CYCLE <= AUTO_CONFIG_DONE_CYCLE+1; --done here
elsif(AUTO_CONFIG_DONE = "10" and SHUT_UP(2) ='1')then
IDE_BASEADR(7 downto 0) <= D(15 downto 8); --Base adress
SHUT_UP(2) <= '0'; --enable board
AUTO_CONFIG_DONE_CYCLE <= AUTO_CONFIG_DONE_CYCLE+1; --done here
end if;
end if;
when "100110" =>
Dout1 <= "1111" ;
if(RW='0' and DS_D='1')then
AUTO_CONFIG_DONE_CYCLE <= AUTO_CONFIG_DONE_CYCLE+1; --done here
end if;
when others => Dout1 <= "1111" ;
end case;
end if;
end if;
end process autoconfig_proc; --- that's all
LAN_CS <= lan;--'1' when LAN_BASEADR=x"EA" else '0';
LAN_WRL <= LAN_WRL_S when AS='0' else '0';
LAN_WRH <= LAN_WRH_S when AS='0' else '0';
LAN_RD <= LAN_RD_S when AS='0' else '0';
LAN_CFG <= "ZZZZ";
CP_WE <= CP_WE_S when AS='0' else '1';
CP_RD <= CP_RD_S when AS='0' else '1';
CP_CS <= not cp;
A_LAN <= A(14 downto 1);-- when lan='1' else A(13 downto 1) &'0';
--signal assignment
D <= --RAM_D when RW='1' and TRANSFER_IN_PROGRES ='1' else
DQ when RW='1' and (lan ='1' or cp = '1') and DS='0' else
Dout1 & x"FFF" when RW='1' and autoconfig ='1' and DS='0' else
"ZZZZZZZZZZZZZZZZ";
DQ <= D when RW='0' and DS='0'
--and (UDS ='0' or LDS='0')
and (lan ='1' or cp = '1')
else "ZZZZZZZZZZZZZZZZ";
IDE_W <= IDE_W_S when AS='0' else '1';
IDE_R <= IDE_R_S when AS='0' else '1';
IDE_CS(0)<= not(A(12));
IDE_CS(1)<= not(A(13));
IDE_A(0) <= A(9);
IDE_A(1) <= A(10);
IDE_A(2) <= A(11);
ROM_B <= "00";
ROM_OE <= ROM_OE_S when AS='0' else '1';
INT_OUT <= 'Z';
-- INT_OUT <= '0' when
-- (LAN_INT = '0' and LAN_INT_ENABLE ='1') or
-- CP_IRQ = '0' else 'Z';
OWN <= '0' when AS='0' and (autoconfig = '1' or ide = '1' or lan = '1' or cp = '1') else 'Z';
SLAVE <= '0' when AS='0' and (autoconfig = '1' or ide = '1' or lan = '1' or cp = '1') else '1';
CFOUT <= '0' when AUTO_CONFIG_DONE=3 else '1';
OVR <= '0' when ide='1' and AS='0' else 'Z';
-- DTACK <= DTACK_S when --TRANSFER_IN_PROGRES ='1' or
-- AUTOCONFIG_IN_PROGRES ='1'
-- else 'Z';
DTACK <= '0' when ide='1' and AS='0' and IDE_WAIT='1' else 'Z';
end Behavioral;