bf3fe05dfb
This needs some more testing before it's on by default. If the card is otherwise functioning, these messages may be confusing to the user. If the card is not functioning, the driver can be reloaded with debug to check for this condition. Signed-off-by: Shaun Ruffell <sruffell@digium.com> git-svn-id: http://svn.asterisk.org/svn/dahdi/linux/trunk@9205 a0bf4364-ded3-4de4-8d8a-66a801d63aff
476 lines
14 KiB
Perl
Executable File
476 lines
14 KiB
Perl
Executable File
#! /usr/bin/perl -w
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use strict;
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# Make warnings fatal
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local $SIG{__WARN__} = sub { die @_ };
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#
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# $Id$
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#
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#
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# Written by Oron Peled <oron@actcom.co.il>
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# Copyright (C) 2006, Xorcom
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#
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# All rights reserved.
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# See the file LICENSE in the top level of this tarball.
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#
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# This script is run from the xpp kernel module upon detection
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# of a new XPD.
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#
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# Expects the following environment variables to be set:
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# XBUS_NAME - bus name
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# UNIT_NUMBER - xpd unit number
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# UNIT_SUBUNITS - number of subunits in this xpd
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# UNIT_TYPE - xpd type number (from protocol reply):
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# 1 - FXS
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# 2 - FXO
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# 3 - BRI
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# 4 - PRI
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# XBUS_REVISION - xbus revision number
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# XBUS_CONNECTOR - xbus connector string
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#
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# Output data format:
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# - An optional comment start with ';' or '#' until the end of line
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# - Optional Blank lines are ignored
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# - Fields are whitespace separated (spaces or tabs)
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#
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# The fields are (in command line order):
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# 1. CHIP select in decimal (ignored, taken from 3 LSB's of subunit number)
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# 2. Command word:
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# - RD Read Direct register.
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# - RS Read Sub-register.
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# - WD Write Direct register.
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# - WS Write Sub-register.
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# 3. Register number in hexadecimal.
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# 4. Subregister number in hexadecimal. (for RS and WS commands).
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# 5. Data byte in hexadecimal. (for WD and WS commands only).
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#
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package main;
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use File::Basename;
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use Getopt::Std;
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my $program = basename("$0");
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my $init_dir = dirname("$0");
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BEGIN { $init_dir = dirname($0); unshift(@INC, "$init_dir"); }
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use XppConfig $init_dir;
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my $unit_id;
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my %opts;
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getopts('o:', \%opts);
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my %settings;
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sub logit {
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print STDERR "$unit_id: @_\n";
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}
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sub debug {
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logit @_ if $settings{debug};
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}
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# Arrange for error logging
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if (-t STDERR) {
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$unit_id = 'Interactive';
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debug "Interactive startup";
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} else {
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$unit_id = "$ENV{XBUS_NAME}/UNIT-$ENV{UNIT_NUMBER}";
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open (STDERR, "| logger -t $program -p kern.info") || die;
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debug "Non Interactive startup";
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foreach my $k (qw(
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XBUS_NAME
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XBUS_NUMBER
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UNIT_NUMBER
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UNIT_TYPE
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UNIT_SUBUNITS
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UNIT_SUBUNITS_DIR
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XBUS_REVISION
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XBUS_CONNECTOR
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XBUS_LABEL)) {
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unless(defined $ENV{$k}) {
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logit "Missing ENV{$k}\n";
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die;
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}
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}
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}
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sub select_subunit($) {
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my $subunit = shift;
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die unless defined $subunit;
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my $output;
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if($opts{o}) {
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$output = $opts{o};
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} else {
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$output = sprintf "/sys/bus/xpds/devices/%02d:%1d:%1d/chipregs",
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$ENV{XBUS_NUMBER}, $ENV{UNIT_NUMBER}, $subunit;
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if(! -f $output) {
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my $xpd_name = sprintf("XPD-%1d%1d", $ENV{UNIT_NUMBER}, $subunit);
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$output = "/proc/xpp/$ENV{XBUS_NAME}/$xpd_name/chipregs";
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logit "OLD DRIVER: does not use /sys chipregs. Falling back to /proc"
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if -f $output;
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}
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}
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open(REG, ">$output") || die "Failed to open '$output': $!\n";
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my $oldfh = select REG;
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print "# Selecting subunit $subunit\n" if $opts{o};
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return $oldfh;
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}
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package BRI;
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sub gen {
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my $fmt = shift;
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$| = 1;
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printf "$fmt\n", @_;
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}
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# Turning on/off multi-byte packet reception.
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sub multibyte($) {
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my $active = (shift) ? 'M' : 'm';
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for my $subunit (0 .. $ENV{UNIT_SUBUNITS} - 1) {
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#main::logit "multibyte(): $subunit -> $active";
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main::select_subunit($subunit);
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BRI::gen "$subunit W$active";
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}
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}
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sub read_defaults() {
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if(XppConfig::read_config(\%settings)) {
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main::logit "Defaults from $settings{xppconf}";
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} else {
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main::logit "No defaults file, use hard-coded defaults.";
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}
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}
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package BRI::Port;
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sub new {
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my $pack = shift;
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my $port = { @_ };
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bless $port, $pack;
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}
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# zap_xhfc_su.c:995
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sub init_su {
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my $port = shift;
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my $portnum = $port->{PORT_NUM};
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my $port_mode_up = $port->{PORT_MODE_UP};
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my $port_mode_exch = $port->{PORT_MODE_EXCH};
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my $bri_nt = $port->{BRI_NT};
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#main::logit "init_su(portnum=$portnum, port_mode_up=$port_mode_up, bri_nt=$bri_nt)";
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# Setting PLL
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# R_PLL_CTRL = 0 (V_PLL_M = 0, Reset PLL, Disable PLL_
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# R_CLK_CFG = 05 (PLL clock as system clock, output it to CLK_OUT pin)
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# R_PLL_P = 1
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# R_PLL_N = 6
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# R_PLL_S = 1
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# R_PLL_CTRL = 1 (V_PLL_M)
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BRI::gen "#--------------------------- init_su($portnum, $bri_nt, $port_mode_up, $port_mode_exch)";
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BRI::gen "$portnum WD 02 04";
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BRI::gen "$portnum WD 50 00"; # disable PLL
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BRI::gen "$portnum WD 51 02";
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BRI::gen "$portnum WD 52 06";
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BRI::gen "$portnum WD 53 04";
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BRI::gen "$portnum WD 50 01"; # Enable PLL
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BRI::gen "$portnum WD 02 05"; # Enable PLL
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su_sel($portnum); # select port
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if ("$port_mode_up" == 1) {
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$port->{CTRL3} = 0x01; # A_ST_CTRL3: V_ST_SEL = 1
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$port->{CTRL0} = 0x10; # A_SU_CTRL0: V_ST_SQ_EN = 1
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BRI::gen "$portnum WD 34 0F"; # A_MS_TX:
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# (multiframe/superframe transmit register)
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} else {
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$port->{CTRL3} = 0x00; # A_ST_CTRL3: V_ST_SEL = 0
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$port->{CTRL0} = 0x00; # A_SU_CTRL0: V_ST_SQ_EN = 0
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}
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if ("$bri_nt" == 1) {
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$port->{CTRL0} |= 0x04; # V_SU_MD
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}
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# ((V_SU_EXCH)?0x80:00) (change polarity)
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if($port_mode_exch) {
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$port->{CTRL2} = 0x80;
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} else {
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$port->{CTRL2} = 0x00;
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}
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BRI::gen "$portnum WD 35 %02X", $port->{CTRL3}; # A_ST_CTRL3
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BRI::gen "$portnum WD 31 %02X", $port->{CTRL0}; # A_SU_CTRL0
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BRI::gen "$portnum WD 35 F8"; # A_ST_CTRL3 = set end of pulse control to 0xF8
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BRI::gen "$portnum WD 32 09"; # A_SU_CTRL1 = Ignore E-channel data, Force automatic transition from G2 to G3
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BRI::gen "$portnum WD 33 %02X", $port->{CTRL2}; # A_SU_CTRL2
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# zap_xhfc_su.c:1030 in init_su()
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# A_SU_CLK_DLY
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my $clk_dly;
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if ("$bri_nt" == 1) {
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$clk_dly = 0x6C;
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} else {
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$clk_dly = 0x0E;
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}
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#main::logit "clk_dly=$clk_dly";
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BRI::gen "$portnum WD 37 %02X", "$clk_dly";
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}
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sub su_sel {
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if (@_ != 1 ) {
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main::logit "ERROR: su_sel() called with " . scalar(@_) . " parameters";
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exit 1;
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}
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my $portnum = shift;
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BRI::gen "$portnum WD 16 %02X", $portnum; # R_SU_SEL
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}
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# zap_xhfc_su.c:281
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sub xhfc_selfifo {
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my $port = shift;
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my $portnum = $port->{PORT_NUM};
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if (@_ != 1 ) {
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main::logit "ERROR: xhfc_selfifo() called with " . scalar(@_) . " parameters";
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exit 1;
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}
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my $fifonum = shift;
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#main::logit "xhfc_selfifo($fifonum)";
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BRI::gen "$portnum WD 0F %02X", $fifonum;
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# --> WAIT UNTIL (R_STATUS & M_BUSY) == 0
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}
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# zap_xhfc_su.c:295
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sub xhfc_resetfifo() {
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my $port = shift;
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my $portnum = $port->{PORT_NUM};
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#main::logit "xhfc_resetfifo()";
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# A_INC_RES_FIFO = M_RES_FIFO | M_RES_FIFO_ERR
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BRI::gen "$portnum WD 0E 0A";
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# --> WAIT UNTIL (R_STATUS & M_BUSY) == 0
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}
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# zap_xhfc_su.c:1040
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# Initialize fifo (called for each portnum, channel, direction)
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sub setup_fifo {
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my $port = shift;
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my $chan = shift;
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my $direction = shift;
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my $conhdlc = shift;
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my $subcfg = shift;
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my $fifoctrl = shift;
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my $portnum = $port->{PORT_NUM};
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my $port_mode_up = $port->{PORT_MODE_UP};
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my $port_mode_exch = $port->{PORT_MODE_EXCH};
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my $bri_nt = $port->{BRI_NT};
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BRI::gen "#--------------------------- setup_fifo($portnum, $chan, $direction)";
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# my $fifonum = 0x80 | ($portnum << 3) | ($chan << 1) | ($direction); # # MSB first
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my $fifonum = ($portnum << 3) | ($chan << 1) | ($direction); # # MSB first
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my $r_slot = ($portnum << 3) | ($chan << 1) | ($direction);
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# channel order workaround, swap odd and even portnums in $r_slot for PCM (chan 0, 1) only
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if ("$chan" == 0 || "$chan" == 1) {
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$r_slot = $r_slot ^ 0x08;
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}
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my $short_portnum = $portnum & 0x03;
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my $a_sl_cfg = (0x80 | ($short_portnum << 3) | ($chan << 1) | ($direction)); # receive data from STIO2, transmit to STIO1
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#main::logit "setup_fifo($fifonum)";
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$port->xhfc_selfifo($fifonum);
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# A_CON_HDLC: transparent mode selection
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BRI::gen "$portnum WD FA %02X", $conhdlc;
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# A_SUBCH_CFG: subchnl params
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BRI::gen "$portnum WD FB %02X", $subcfg;
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# A_FIFO_CTRL: FIFO Control Register
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BRI::gen "$portnum WD FF %02X", $fifoctrl;
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$port->xhfc_resetfifo();
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$port->xhfc_selfifo($fifonum); # wait for busy is builtin in this command
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BRI::gen "$portnum WD 10 %02X", $r_slot; # R_SLOT
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BRI::gen "$portnum WD D0 %02X", $a_sl_cfg; # A_SL_CFG
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#system("/bin/echo \"----=====TE\" \"short_portnum=\"$short_portnum \"portnum=\" $portnum \"chan=\" $chan\"======----\n\" >>/root/xortel/test_init");
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}
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# zap_xhfc_su.c:1071
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sub setup_su {
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my $port = shift;
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my $bchan = shift;
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my $portnum = $port->{PORT_NUM};
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my $port_mode_exch = $port->{PORT_MODE_EXCH};
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my $bri_nt = $port->{BRI_NT};
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BRI::gen "#--------------------------- setup_su($portnum, $bchan)";
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#main::logit "setup_su(portnum=$portnum, bchan=$bchan, port_mode_exch=$port_mode_exch, bri_nt=$bri_nt)";
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$port->{CTRL0} |= (1 << $bchan) | $bri_nt;
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$port->{CTRL2} |= ($port_mode_exch << 7) | (1 << $bchan);
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su_sel($portnum); # Select port
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BRI::gen "$portnum WD 31 %02X", $port->{CTRL0}; # A_SU_CTRL0: V_B1_TX_EN | V_SU_MD | (NT/TE)
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BRI::gen "$portnum WD 33 %02X", $port->{CTRL2}; # A_SU_CTRL2: V_B1_RX_EN
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}
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sub xhfc_ph_command {
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my $port = shift;
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my $cmd = shift;
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my $portnum = $port->{PORT_NUM};
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#main::logit "xhfc_ph_command(portnum=$portnum)";
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if ("$cmd" eq "HFC_L1_ACTIVATE_TE") {
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su_sel($portnum); # Select port
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BRI::gen "$portnum WD 30 60"; # A_SU_WR_STA = (M_SU_ACT & 0x03)
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# (set activation)
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} elsif ("$cmd" eq "HFC_L1_FORCE_DEACTIVATE_TE") {
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su_sel($portnum); # Select port
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BRI::gen "$portnum WD 30 40"; # A_SU_WR_STA = (M_SU_ACT & 0x02)
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# (set deactivation)
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} elsif ("$cmd" eq "HFC_L1_ACTIVATE_NT") {
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su_sel($portnum); # Select port
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BRI::gen "$portnum WD 30 E0"; # A_SU_WR_STA = (M_SU_ACT & 0x03) | 0x80
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# (set activation + NT)
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} elsif ("$cmd" eq "HFC_L1_DEACTIVATE_NT") {
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su_sel($portnum); # Select port
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BRI::gen "$portnum WD 30 40"; # A_SU_WR_STA = (M_SU_ACT & 0x02)
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# (set deactivation)
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}
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}
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sub zthfc_startup {
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my $port = shift;
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my $portnum = $port->{PORT_NUM};
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my $port_mode_exch = $port->{PORT_MODE_EXCH};
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my $bri_nt = $port->{BRI_NT};
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#main::logit "zthfc_startup(portnum=$portnum, port_mode_exch=$port_mode_exch, bri_nt=$bri_nt)";
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# PCM <-> ST/Up Configuration
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foreach my $chan ( 0, 1 ) {
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$port->setup_fifo($chan, 0, 0xFE, 0, 0);# Transparent mode, FIFO EN, ST->PCM
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$port->setup_fifo($chan, 1, 0xFE, 0, 0);# Transparent mode, FIFO EN, ST->PCM
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$port->setup_su($chan); # zap_xhfc_su.c:194
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}
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# Dahdi chan 2 used as HDLC D-Channel
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$port->setup_fifo(2, 0, 0x05, 2, 0); # D-TX: zap_xhfc_su.c:205
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$port->setup_fifo(2, 1, 0x05, 2, 0); # D-RX: zap_xhfc_su.c:206
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# E-chan, Echo channel is ignored
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# enable this port's state machine
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su_sel($portnum); # Select port
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# A_SU_WR_STA: reset port state machine
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BRI::gen "$portnum WD 30 00";
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if ("$bri_nt" == 0) {
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$port->xhfc_ph_command("HFC_L1_ACTIVATE_TE");
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} else {
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$port->xhfc_ph_command("HFC_L1_ACTIVATE_NT");
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}
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}
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package main;
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debug "Starting '$0'";
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BRI::read_defaults;
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#------------------------------------------- Instance detection
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# zap_xhfc_su.c:895
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sub init_xhfc($) {
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my $portnum = shift;
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main::debug "init_xhfc($portnum)";
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BRI::gen "#--------------------------- init_xhfc";
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BRI::gen "$portnum WD 0D 00"; # r_FIFO_MD: 16 fifos,
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# 64 bytes for TX and RX each (FIFO mode config)
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# software reset to enable R_FIFO_MD setting
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BRI::gen "$portnum WD 00 08"; # R_CIRM = M_SRES (soft reset)
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# --> WAIT 5u
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BRI::gen "$portnum WD 00 00"; # R_CIRM = 0 (zero it to deactivate reset)
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# amplitude
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BRI::gen "$portnum WD 46 80"; # R_PWM_MD: (PWM output mode register)
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# PWM push to zero only
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BRI::gen "$portnum WD 39 18"; # R_PWM1: (modulator register for PWM1)
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# set duty cycle
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BRI::gen "$portnum WD 0C 11"; # R_FIFO_THRES: (FIFO fill lvl control register)
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# RX/TX threshold = 16 bytes
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# set PCM bus mode to slave by default
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BRI::gen "$portnum WD 14 08"; # R_PCM_MD0 = PCM slave mode, F0IO duration is 2 HFC_PCLK's
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# (C4IO, F0IO are inputs)
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BRI::gen "$portnum WD 14 98"; # R_PCM_MD0: Index value to select
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# the register at address 15
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BRI::gen "$portnum WD 15 20"; # R_PCM_MD1: V_PLL_ADJ (DPLL adjust speed),
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# in the last slot of PCM frame
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# V_PCM_DR, C4IO is 16.384MHz(128 time slots)
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BRI::gen "$portnum WD 4C 07"; # GPIOGPIO function (not PWM) on GPIO0, GPIO1 and GPIO2 pins
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BRI::gen "$portnum WD 4A 07"; # Output enable for GPIO0, GPIO1 and GPIO2 pins
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BRI::gen "$portnum WD 48 01"; # GPIO output data bits
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}
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my @port_type = (
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{ 'BRI_NT' => 1 },
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{ 'BRI_NT' => 0 }
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);
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# zap_xhfc_su.c:175
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sub main() {
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my $subunit;
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my $subunits_mask = pack("C", $ENV{UNIT_SUBUNITS_DIR});
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my @direction = split(//, unpack("b*", $subunits_mask));
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#logit "main(): UNIT_TYPE=$ENV{UNIT_TYPE} UNIT_SUBUNITS_DIR=[@direction]";
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if(!$opts{o}) {
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foreach my $var (qw(XBUS_NAME UNIT_NUMBER UNIT_TYPE UNIT_SUBUNITS UNIT_SUBUNITS_DIR XBUS_REVISION XBUS_CONNECTOR)) {
|
|
die "Missing mandatory '$var' environment variable" unless defined $var;
|
|
}
|
|
}
|
|
# Turn off multi-byte packet reception before initialization started
|
|
# Otherwise we mess with registers while the FPGA firmware tries to
|
|
# send us packets.
|
|
BRI::multibyte(0);
|
|
|
|
# Port initialization
|
|
for($subunit = 0; $subunit < $ENV{UNIT_SUBUNITS}; $subunit++) {
|
|
my $is_nt = $direction[$subunit];
|
|
|
|
main::select_subunit($subunit);
|
|
if(($subunit % 4) == 0) { # A new xhfc chip
|
|
#logit "main(): Initializing chip";
|
|
init_xhfc($subunit); # zap_xhfc_su.c:1173 in setup_instance()
|
|
}
|
|
#logit "main(): Initializing subunit $subunit is_nt=$is_nt";
|
|
my $p = BRI::Port->new(
|
|
'PORT_NUM' => $subunit,
|
|
'BRI_NT' => $is_nt,
|
|
'PORT_MODE_UP' => 0,
|
|
'PORT_MODE_EXCH' => 0
|
|
);
|
|
# zap_XHfc_su.c:1186 in setup_instance()
|
|
$p->init_su;
|
|
$p->zthfc_startup;
|
|
}
|
|
# Turn on multi-byte packet reception when ports initialization finished
|
|
BRI::multibyte(1);
|
|
}
|
|
|
|
main;
|
|
|
|
debug "Ending '$0'";
|
|
|
|
close REG;
|
|
close STDERR;
|
|
exit 0;
|