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211 lines
6.7 KiB
VHDL
211 lines
6.7 KiB
VHDL
-- $Id: tst_serloop_hiomap.vhd 1181 2019-07-08 17:00:50Z mueller $
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-- SPDX-License-Identifier: GPL-3.0-or-later
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-- Copyright 2011- by Walter F.J. Mueller <W.F.J.Mueller@gsi.de>
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--
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------------------------------------------------------------------------------
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-- Module Name: tst_serloop_hiomap - syn
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-- Description: default human I/O mapper
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--
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-- Dependencies: -
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-- Test bench: -
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--
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-- Target Devices: generic
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-- Tool versions: ise 13.1-14.7; viv 2014.4-2015.4; ghdl 0.29-0.33
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--
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-- Revision History:
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-- Date Rev Version Comment
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-- 2011-12-09 437 1.0.2 rename serport stat->moni port
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-- 2011-11-16 426 1.0.1 setup leds and dps
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-- 2011-11-05 420 1.0 Initial version
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------------------------------------------------------------------------------
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--
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-- Usage of Switches, Buttons, LEDs:
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--
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-- BTN(3): -- unused --
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-- (2): -- unused --
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-- (1): load enables from SWI(7:4)
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-- SWI(7) -> ENAFTDI
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-- SWI(6) -> ENATHROTTLE
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-- SWI(5) -> ENAESC
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-- SWI(4) -> ENAXON
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-- (0): reset state [!! decoded by top level design !!]
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--
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-- SWI(7:4) select display or enable pattern (when BTN(1) pressed)
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-- (3) -- unused --
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-- (2:1): mode 00 idle
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-- 01 rxblast
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-- 10 txblast
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-- 11 loop
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-- SWI(0) 0 -> main board RS232 port
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-- 1 -> Pmod1 RS232 port
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--
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-- LED(7) enaesc
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-- (6) enaxon
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-- (5) rxfecnt > 0 (frame error)
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-- (4) rxoecnt > 0 (overrun error)
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-- (3) rxsecnt > 0 (sequence error)
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-- (2) abact (shows ab activity)
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-- (1) (not rxok) or (not txok) (shows back pressure)
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-- (0) rxact or txact (shows activity)
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--
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-- DSP data as selected by SWI(7:4)
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-- 0000 -> rxfecnt
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-- 0001 -> rxoecnt
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-- 0010 -> rxsecnt
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-- 0100 -> rxcnt.l
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-- 0101 -> rxcnt.h
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-- 0110 -> txcnt.l
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-- 0111 -> txcnt.h
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-- 1000 -> rxokcnt
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-- 1001 -> txokcnt
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-- 1010 -> rxuicnt,rxuidat
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-- 1111 -> abclkdiv
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--
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-- DP(3): not SER_MONI.txok (shows tx back pressure)
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-- (2): SER_MONI.txact (shows tx activity)
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-- (1): not SER_MONI.rxok (shows rx back pressure)
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-- (0): SER_MONI.rxact (shows rx activity)
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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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use work.slvtypes.all;
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use work.serportlib.all;
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use work.tst_serlooplib.all;
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-- ----------------------------------------------------------------------------
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entity tst_serloop_hiomap is -- default human I/O mapper
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port (
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CLK : in slbit; -- clock
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RESET : in slbit; -- reset
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HIO_CNTL : out hio_cntl_type; -- tester controls from hio
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HIO_STAT : in hio_stat_type; -- tester status to diaplay by hio
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SER_MONI : in serport_moni_type; -- serport monitor to display by hio
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SWI : in slv8; -- switch settings
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BTN : in slv4; -- button settings
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LED : out slv8; -- led data
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DSP_DAT : out slv16; -- display data
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DSP_DP : out slv4 -- display decimal points
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);
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end tst_serloop_hiomap;
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architecture syn of tst_serloop_hiomap is
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type regs_type is record
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enaxon : slbit; -- enable xon/xoff handling
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enaesc : slbit; -- enable xon/xoff escaping
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enathrottle : slbit; -- enable 1 msec tx throttling
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enaftdi : slbit; -- enable ftdi flush handling
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dspdat : slv16; -- display data
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end record regs_type;
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constant regs_init : regs_type := (
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'0','0','0','0', -- enaxon,enaesc,enathrottle,enaftdi
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(others=>'0') -- dspdat
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);
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signal R_REGS : regs_type := regs_init; -- state registers
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signal N_REGS : regs_type := regs_init; -- next value state regs
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begin
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proc_regs: process (CLK)
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begin
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if rising_edge(CLK) then
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if RESET = '1' then
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R_REGS <= regs_init;
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else
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R_REGS <= N_REGS;
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end if;
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end if;
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end process proc_regs;
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proc_next: process (R_REGS, HIO_STAT, SER_MONI, SWI, BTN)
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variable r : regs_type := regs_init;
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variable n : regs_type := regs_init;
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variable icntl : hio_cntl_type := hio_cntl_init;
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variable iled : slv8 := (others=>'0');
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variable idat : slv16 := (others=>'0');
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variable idp : slv4 := (others=>'0');
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begin
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r := R_REGS;
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n := R_REGS;
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icntl := hio_cntl_init;
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iled := (others=>'0');
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idat := (others=>'0');
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idp := (others=>'0');
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-- handle BTN(1) "load enables" press
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if BTN(1) = '1' then
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n.enaxon := SWI(4);
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n.enaesc := SWI(5);
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n.enathrottle := SWI(6);
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n.enaftdi := SWI(7);
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end if;
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-- setup tester controls
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icntl.mode := SWI(2 downto 1);
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icntl.enaxon := r.enaxon;
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icntl.enaesc := r.enaesc;
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icntl.enathrottle := r.enathrottle;
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icntl.enaftdi := r.enaftdi;
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-- setup leds
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iled(7) := icntl.enaesc;
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iled(6) := icntl.enaxon;
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if unsigned(HIO_STAT.rxfecnt) > 0 then iled(5) := '1'; end if;
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if unsigned(HIO_STAT.rxoecnt) > 0 then iled(4) := '1'; end if;
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if unsigned(HIO_STAT.rxsecnt) > 0 then iled(3) := '1'; end if;
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iled(2) := SER_MONI.abact;
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iled(1) := (not SER_MONI.rxok) or (not SER_MONI.txok);
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iled(0) := SER_MONI.rxact or SER_MONI.txact;
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-- setup display data
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case SWI(7 downto 4) is
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when "0000" => idat := HIO_STAT.rxfecnt;
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when "0001" => idat := HIO_STAT.rxoecnt;
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when "0010" => idat := HIO_STAT.rxsecnt;
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when "0100" => idat := HIO_STAT.rxcnt(15 downto 0);
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when "0101" => idat := HIO_STAT.rxcnt(31 downto 16);
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when "0110" => idat := HIO_STAT.txcnt(15 downto 0);
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when "0111" => idat := HIO_STAT.txcnt(31 downto 16);
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when "1000" => idat := HIO_STAT.rxokcnt;
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when "1001" => idat := HIO_STAT.txokcnt;
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when "1010" => idat := HIO_STAT.rxuicnt & HIO_STAT.rxuidat;
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when "1111" => idat := SER_MONI.abclkdiv;
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when others => null;
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end case;
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n.dspdat := idat;
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-- setup display decimal points
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idp(3) := not SER_MONI.txok; -- tx back pressure
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idp(2) := SER_MONI.txact; -- tx activity
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idp(1) := not SER_MONI.rxok; -- rx back pressure
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idp(0) := SER_MONI.rxact; -- rx activity
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N_REGS <= n;
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HIO_CNTL <= icntl;
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LED <= iled;
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DSP_DAT <= r.dspdat;
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DSP_DP <= idp;
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end process proc_next;
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end syn;
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