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[/] [pcie_vera_tb/] [trunk/] [link_training.vri] - Rev 8
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// ===========================================================================
// File : link_training.vri
// Author : cmagleby
// Date : Mon Dec 3 11:03:46 MST 2007
// Project : TI PHY design
//
// Copyright (c) notice
// This code adheres to the GNU public license
//
// ===========================================================================
//
// $Id: link_training.vri,v 1.1.1.1 2007-12-05 18:37:06 cmagleby Exp $
//
// ===========================================================================
//
// $Log: not supported by cvs2svn $
//
// ===========================================================================
// Function :This file performs the link training and link and lane negotiation
//
// ===========================================================================
// ===========================================================================
#include <vera_defines.vrh>
#define COM_s 8'hbc
#define SKP_s 8'h1c
#define IDLE_s 8'h7c
#define FTS_s 8'h3c
#define STP_s 8'hfb
#define SDP_s 8'h5c
#define EDB 8'hfe
#define END_s 8'hfd
task link_training () {
fork
send_ts();
receive_ts();
join none
}
task send_ts( ) {
integer index;
string pkt_type;
pkt_type = "ts";
//ti_phy_top.t1_count == 9'hff;
ti_phy_top.rxvalid16 = 1'b1;
wait_var(phy_rdy);
printf ("send_ts1 = %d \n",send_ts1);
while (LINK_UP == 0) {
if (send_ts1 == 1) {
ts2_cycle_cnt = 1;
//printf ("number of ts dut sent %d \n",ti_phy_top.t1_count);
printf ("ts #%0d ts 1's ",ts1_cycle_cnt++);
pkt_type = "ts";
training_set = new(link,lane,*,*,*,*);
training_set.build_packet(pkt_type);
if (!semaphore_get(WAIT,my_semaphore,1))
error ("Semaphore_get returned 0\n");
for (index = 0; index < training_set.length; index ++) {
@ (posedge CLOCK);
//ti_phy_top.rxdatak16 = training_set.temp_packet[index][17:16];
//ti_phy_top.rxdata16 = training_set.temp_packet[index][15:0];
//adding mailbox
mailbox_put (rx_data_mailbox, {training_set.temp_packet[index][17:16],training_set.temp_packet[index][15:0]});
}
semaphore_put (my_semaphore, 1);
}
else if (send_ts2 == 1){
ts1_cycle_cnt = 1;
printf ("ts #%0d ts 2's ",ts2_cycle_cnt++);
pkt_type = "ts";
training_set = new(lane,link,*,*,*,'h45);
training_set.build_packet(pkt_type);
for (index = 0; index < training_set.length; index ++) {
@ (posedge CLOCK);
//ti_phy_top.rxdatak16 = training_set.temp_packet[index][17:16];
//ti_phy_top.rxdata16 = training_set.temp_packet[index][15:0];
//adding mailbox
mailbox_put (rx_data_mailbox, {training_set.temp_packet[index][17:16],training_set.temp_packet[index][15:0]});
}
}
}
printf ("LINK UP(%0d) !!!!!!!!!!!\n",LINK_UP);
//ti_phy_top.rxdatak16 = 2'b00;
//ti_phy_top.rxdata16 = 1'b0;
}
task receive_ts () {
integer ret;
integer ts1_count=0;
integer ts2_count=0;
integer ts1_link_count = 0;
integer ts1_lane_count = 0;
integer ts2_lane_link_count = 0;
integer send_ts1_with_link, send_ts1_with_link_lane, send_ts2_with_link_lane;
bit [127:0] receive_phy_packet;
send_ts1 = 1;
send_ts2 = 0;
send_ts1_with_link = 0;
send_ts1_with_link_lane = 0;
send_ts2_with_link_lane = 0;
while (1) {
ret = mailbox_get (WAIT,phy_mailbox,receive_phy_packet,CHECK);
//printf ("Recieved PHY PACKET (%0h) added to phy mailbox\n",receive_phy_packet);
if (receive_phy_packet == 127'h454545454545454545450002f0f7f7bc) {
printf ("Recieved TS 2 PHY PACKET\n");
ts2_count++;
}
if (receive_phy_packet == 127'h4a4a4a4a4a4a4a4a4a4a0002f0f7f7bc){
printf ("Recieved TS 1 PHY PACKET\n");
ts1_count++;
}
if (receive_phy_packet == 127'h4a4a4a4a4a4a4a4a4a4a0002f0f701bc) {
printf ("Recieved TS 1 link accept PHY PACKET\n");
ts1_link_count++;
}
if (receive_phy_packet == 127'h4a4a4a4a4a4a4a4a4a4a0002f00101bc) {
printf ("Recieved TS 1 lane and link accept PHY PACKET\n");
ts1_lane_count++;
}
if (receive_phy_packet == 127'h454545454545454545450002f00101bc) {
printf ("Recieved TS 1 lane and link accept PHY PACKET\n");
ts2_lane_link_count++;
}
//printf ("send_ts2_with_link_lane(%0d)send_ts1_with_link_lane(%0d)send_ts1_with_link(%0d)send_ts2(%0d)send_ts1(%0d)\n",
// send_ts2_with_link_lane,send_ts1_with_link_lane,send_ts1_with_link,send_ts2,send_ts1 );
//printf ("ts2_lane_link_count(%0d)ts1_lane_count(%0d)ts1_link_count(%0d)ts1_count(%0d)ts2_count(%0d)\n",
// ts2_lane_link_count,ts1_lane_count,ts1_link_count,ts1_count,ts2_count);
if (send_ts2_with_link_lane && ts2_cycle_cnt > 16 && ts2_lane_link_count > 15) {
//clear all signals if we get a ts1 with pad
if (ts1_count > 0) {
send_ts1 = 1;
send_ts2 = 0;
send_ts2_with_link_lane = 0;
send_ts1_with_link_lane = 0;
send_ts1_with_link = 0;
LINK_UP = 0;
ts2_lane_link_count = 0;
ts1_lane_count = 0;
ts1_link_count = 0;
ts1_count = 0;
ts2_count = 0;
}
else {
send_ts1 = 0;
send_ts2 = 0;
LINK_UP = 1;
ts1_lane_count = 0;
ts1_link_count = 0;
ts1_count = 0;
ts2_count = 0;
}
}
else if (send_ts1_with_link_lane){
if (ts1_cycle_cnt > 16 && ts1_lane_count >16 ) {
send_ts1 = 0;
send_ts2 = 1;
link = 8'b1;
lane = 8'b1;
send_ts2_with_link_lane = 1;
ts1_lane_count = 0;
ts1_link_count = 0;
ts1_count = 0;
ts2_count = 0;
}
}
else if (send_ts1_with_link) {
if (ts1_cycle_cnt > 16 && ts1_link_count > 16) {
send_ts1 = 1;
send_ts2 = 0;
link = 8'b1;
lane = 8'b1;
send_ts1_with_link_lane = 1;
}
}
//send at least 16 ts 2
else if (send_ts2) {
if (ts2_count > 16 && ts2_cycle_cnt > 16) {
send_ts1 = 1;
send_ts2 = 0;
send_ts1_with_link = 1;
link = 8'b1;
lane = 8'hf7;
}
}
//send at least 100 ts 1's
else if (ts2_count > 16 && ts1_cycle_cnt > 100) {
send_ts1 = 0;
send_ts2 = 1;
link = 'hf7;
lane = 'hf7;
}
else {
send_ts1 = 1;
send_ts2 = 0;
link = 'hf7;
lane = 'hf7;
}
}
}