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[/] [System09/] [branches/] [mkfiles_rev1/] [rtl/] [VHDL/] [ACIA_Clock.vhd] - Rev 95
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----------------------------------------------------------------- -- -- ACIA Clock Divider for System09 -- ----------------------------------------------------------------- -- library IEEE; use IEEE.std_logic_1164.all; use IEEE.std_logic_arith.all; use IEEE.std_logic_unsigned.all; package bit_funcs is function log2(v: in natural) return natural; end package bit_funcs; library IEEE; use IEEE.std_logic_1164.all; use IEEE.std_logic_arith.all; use IEEE.std_logic_unsigned.all; package body bit_funcs is function log2(v: in natural) return natural is variable n: natural; variable logn: natural; begin n := 1; for i in 0 to 128 loop logn := i; exit when (n>=v); n := n * 2; end loop; return logn; end function log2; end package body bit_funcs; library ieee; use ieee.std_logic_1164.all; use IEEE.STD_LOGIC_ARITH.ALL; use IEEE.STD_LOGIC_UNSIGNED.ALL; use ieee.numeric_std.all; library unisim; use unisim.vcomponents.all; library work; use work.bit_funcs.all; entity ACIA_Clock is generic ( SYS_Clock_Frequency : integer; ACIA_Clock_Frequency : integer ); port( clk : in Std_Logic; -- System Clock input ACIA_Clk : out Std_Logic -- ACIA Clock output ); end ACIA_Clock; ------------------------------------------------------------------------------- -- Architecture for ACIA_Clock ------------------------------------------------------------------------------- architecture rtl of ACIA_Clock is constant FULL_CYCLE : integer := (SYS_Clock_Frequency / ACIA_Clock_Frequency); constant HALF_CYCLE : integer := (FULL_CYCLE / 2); signal ACIA_Count : Std_Logic_Vector(log2(FULL_CYCLE) downto 0) := (Others => '0'); begin -- -- Baud Rate Clock Divider -- -- 25MHz / 27 = 926,000 KHz = 57,870Bd * 16 -- 50MHz / 54 = 926,000 KHz = 57,870Bd * 16 -- --my_ACIA_clock: process( clk, ACIA_Count ) my_ACIA_clock: process( clk ) begin if(clk'event and clk = '0') then if( ACIA_Count = (FULL_CYCLE - 1) ) then ACIA_Clk <= '0'; ACIA_Count <= (others => '0'); --"000000"; else if( ACIA_Count = (HALF_CYCLE - 1) ) then ACIA_Clk <='1'; end if; ACIA_Count <= ACIA_Count + 1; end if; end if; end process; end rtl;
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