mirror of
https://github.com/openwrt/openwrt.git
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2fc473cf3f
This patch fixes a wrong non pre-emptive crc errors output of dsl_control.sh status. Signed-off-by: Luca Debernardi <luca.debernardi@gmail.com> SVN-Revision: 47172
639 lines
14 KiB
Bash
Executable File
639 lines
14 KiB
Bash
Executable File
#!/bin/sh /etc/rc.common
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# Copyright (C) 2012-2014 OpenWrt.org
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if [ "$( which vdsl_cpe_control )" ]; then
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XDSL_CTRL=vdsl_cpe_control
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else
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XDSL_CTRL=dsl_cpe_control
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fi
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#
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# Basic functions to send CLI commands to the vdsl_cpe_control daemon
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#
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dsl_cmd() {
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killall -0 ${XDSL_CTRL} && (
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echo "$@" > /tmp/pipe/dsl_cpe0_cmd
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cat /tmp/pipe/dsl_cpe0_ack
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)
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}
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dsl_val() {
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echo $(expr "$1" : '.*'$2'=\([-\.[:alnum:]]*\).*')
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}
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dsl_string() {
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echo $(expr "$1" : '.*'$2'=(\([A-Z0-9,]*\))')
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}
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#
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# Simple divide by 10 routine to cope with one decimal place
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#
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dbt() {
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local a=$(expr $1 / 10)
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local b=$(expr $1 % 10)
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echo "${a}.${b}"
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}
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#
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# Take a number and convert to k or meg
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#
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scale() {
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local val=$1
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local a
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local b
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if [ "$val" -gt 1000000 ]; then
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a=$(expr $val / 1000)
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b=$(expr $a % 1000)
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a=$(expr $a / 1000)
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printf "%d.%03d Mb" ${a} ${b}
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elif [ "$val" -gt 1000 ]; then
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a=$(expr $val / 1000)
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printf "%d Kb" ${a}
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else
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echo "${val} b"
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fi
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}
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scale_latency() {
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local val=$1
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local a
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local b
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a=$(expr $val / 100)
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b=$(expr $val % 100)
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printf "%d.%d ms" ${a} ${b}
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}
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#
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# Read the data rates for both directions
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#
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data_rates() {
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local csg
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local dru
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local drd
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local sdru
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local sdrd
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csg=$(dsl_cmd g997csg 0 1)
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drd=$(dsl_val "$csg" ActualDataRate)
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csg=$(dsl_cmd g997csg 0 0)
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dru=$(dsl_val "$csg" ActualDataRate)
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[ -z "$drd" ] && drd=0
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[ -z "$dru" ] && dru=0
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sdrd=$(scale $drd)
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sdru=$(scale $dru)
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if [ "$action" = "lucistat" ]; then
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echo "dsl.data_rate_down=$drd"
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echo "dsl.data_rate_up=$dru"
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echo "dsl.data_rate_down_s=\"$sdrd\""
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echo "dsl.data_rate_up_s=\"$sdru\""
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else
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echo "Data Rate: Down: ${sdrd}/s / Up: ${sdru}/s"
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fi
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}
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#
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# Chipset
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#
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chipset() {
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local vig
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local cs
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local csv
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vig=$(dsl_cmd vig)
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cs=$(dsl_val "$vig" DSL_ChipSetType)
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csv=$(dsl_val "$vig" DSL_ChipSetHWVersion)
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csfw=$(dsl_val "$vig" DSL_ChipSetFWVersion)
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csapi=$(dsl_val "$vig" DSL_DriverVersionApi)
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if [ "$action" = "lucistat" ]; then
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echo "dsl.chipset=\"${cs} ${csv}\""
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echo "dsl.firmware_version=\"${csfw}\""
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echo "dsl.api_version=\"${csapi}\""
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else
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echo "Chipset: ${cs} ${csv}"
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echo "Firmware Version: ${csfw}"
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echo "API Version: ${csapi}"
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fi
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}
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#
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# Vendor information
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#
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vendor() {
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local lig
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local vid
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local svid
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lig=$(dsl_cmd g997lig 1)
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vid=$(dsl_string "$lig" G994VendorID)
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svid=$(dsl_string "$lig" SystemVendorID)
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if [ "$action" = "lucistat" ]; then
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echo "dsl.atuc_vendor_id=\"${vid}\""
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echo "dsl.atuc_system_vendor_id=\"${svid}\""
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else
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echo "ATU-C Vendor ID: ${vid}"
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echo "ATU-C System Vendor ID: ${svid}"
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fi
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}
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#
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# XTSE capabilities
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#
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xtse() {
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local xtusesg
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local xtse1
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local xtse2
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local xtse3
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local xtse4
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local xtse5
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local xtse6
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local xtse7
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local xtse8
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local xtse_s=""
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local annex_s=""
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local line_mode_s=""
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local cmd=""
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xtusesg=$(dsl_cmd g997xtusesg)
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xtse1=$(dsl_val "$xtusesg" XTSE1)
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xtse2=$(dsl_val "$xtusesg" XTSE2)
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xtse3=$(dsl_val "$xtusesg" XTSE3)
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xtse4=$(dsl_val "$xtusesg" XTSE4)
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xtse5=$(dsl_val "$xtusesg" XTSE5)
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xtse6=$(dsl_val "$xtusesg" XTSE6)
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xtse7=$(dsl_val "$xtusesg" XTSE7)
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xtse8=$(dsl_val "$xtusesg" XTSE8)
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# Evaluate Annex (according to G.997.1, 7.3.1.1.1)
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if [ $((xtse1 & 13)) != 0 \
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-o $((xtse2 & 1)) != 0 \
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-o $((xtse3 & 12)) != 0 \
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-o $((xtse4 & 3)) != 0 \
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-o $((xtse6 & 3)) != 0 \
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-o $((xtse8 & 1)) != 0 ]; then
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annex_s=" A,"
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fi
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if [ $((xtse1 & 48)) != 0 \
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-o $((xtse2 & 2)) != 0 \
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-o $((xtse3 & 48)) != 0 \
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-o $((xtse6 & 12)) != 0 \
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-o $((xtse8 & 2)) != 0 ]; then
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annex_s="$annex_s B,"
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fi
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if [ $((xtse1 & 194)) != 0 \
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-o $((xtse2 & 12)) != 0 \
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-o $((xtse8 & 4)) != 0 ]; then
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annex_s="$annex_s C,"
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fi
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if [ $((xtse4 & 48)) != 0 \
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-o $((xtse5 & 3)) != 0 \
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-o $((xtse6 & 192)) != 0 ]; then
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annex_s="$annex_s I,"
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fi
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if [ $((xtse4 & 192)) != 0 \
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-o $((xtse7 & 3)) != 0 ]; then
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annex_s="$annex_s J,"
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fi
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if [ $((xtse5 & 60)) != 0 ]; then
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annex_s="$annex_s L,"
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fi
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if [ $((xtse5 & 192)) != 0 \
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-o $((xtse7 & 12)) != 0 ]; then
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annex_s="$annex_s M,"
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fi
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annex_s=`echo ${annex_s:1}`
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annex_s=`echo ${annex_s%?}`
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# Evaluate Line Mode (according to G.997.1, 7.3.1.1.1)
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# Regional standard: ANSI T1.413
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if [ $((xtse1 & 1)) != 0 ]; then
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line_mode_s=" T1.413,"
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fi
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# Regional standard: TS 101 388
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if [ $((xtse1 & 1)) != 0 ]; then
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line_mode_s="$line_mode_s TS 101 388,"
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fi
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if [ $((xtse1 & 252)) != 0 ]; then
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line_mode_s="$line_mode_s G.992.1 (ADSL),"
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fi
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if [ $((xtse2 & 15)) != 0 ]; then
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line_mode_s="$line_mode_s G.992.2 (ADSL lite),"
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fi
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if [ $((xtse3 & 60)) != 0 \
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-o $((xtse4 & 240)) != 0 \
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-o $((xtse5 & 252)) != 0 ]; then
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line_mode_s="$line_mode_s G.992.3 (ADSL2),"
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fi
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if [ $((xtse4 & 3)) != 0 \
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-o $((xtse5 & 3)) != 0 ]; then
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line_mode_s="$line_mode_s G.992.4 (ADSL2 lite),"
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fi
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if [ $((xtse6 & 199)) != 0 \
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-o $((xtse7 & 15)) != 0 ]; then
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line_mode_s="$line_mode_s G.992.5 (ADSL2+),"
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fi
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if [ $((xtse8 & 7)) != 0 ]; then
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line_mode_s="$line_mode_s G.993.2 (VDSL2),"
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fi
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#!!! PROPRIETARY & INTERMEDIATE USE !!!
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if [ $((xtse8 & 128)) != 0 ]; then
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line_mode_s="$line_mode_s G.993.1 (VDSL),"
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fi
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line_mode_s=`echo ${line_mode_s:1}`
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line_mode_s=`echo ${line_mode_s%?}`
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xtse_s="${xtse1}, ${xtse2}, ${xtse3}, ${xtse4}, ${xtse5}, ${xtse6}, ${xtse7}, ${xtse8}"
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if [ "$action" = "lucistat" ]; then
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echo "dsl.xtse1=${xtse1:-nil}"
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echo "dsl.xtse2=${xtse2:-nil}"
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echo "dsl.xtse3=${xtse3:-nil}"
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echo "dsl.xtse4=${xtse4:-nil}"
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echo "dsl.xtse5=${xtse5:-nil}"
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echo "dsl.xtse6=${xtse6:-nil}"
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echo "dsl.xtse7=${xtse7:-nil}"
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echo "dsl.xtse8=${xtse8:-nil}"
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echo "dsl.xtse_s=\"$xtse_s\""
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echo "dsl.annex_s=\"${annex_s}\""
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echo "dsl.line_mode_s=\"${line_mode_s}\""
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else
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echo "XTSE Capabilities: ${xtse_s}"
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echo "Annex: ${annex_s}"
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echo "Line Mode: ${line_mode_s}"
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fi
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}
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#
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# Power Management Mode
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#
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power_mode() {
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local pmsg=$(dsl_cmd g997pmsg)
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local pm=$(dsl_val "$pmsg" nPowerManagementStatus);
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local s;
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case "$pm" in
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"-1") s="Power management state is not available" ;;
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"0") s="L0 - Synchronized" ;;
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"1") s="L1 - Power Down Data transmission (G.992.2)" ;;
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"2") s="L2 - Power Down Data transmission (G.992.3 and G.992.4)" ;;
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"3") s="L3 - No power" ;;
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*) s="unknown" ;;
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esac
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if [ "$action" = "lucistat" ]; then
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echo "dsl.power_mode_num=${pm:-nil}"
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echo "dsl.power_mode_s=\"$s\""
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else
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echo "Power Management Mode: $s"
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fi
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}
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#
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# Latency type (interleave delay)
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#
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latency_delay() {
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local csg
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local idu
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local idu_s;
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local sidu
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local idd
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local idd_s;
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local sidd
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csg=$(dsl_cmd g997csg 0 1)
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idd=$(dsl_val "$csg" ActualInterleaveDelay)
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csg=$(dsl_cmd g997csg 0 0)
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idu=$(dsl_val "$csg" ActualInterleaveDelay)
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[ -z "$idd" ] && idd=0
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[ -z "$idu" ] && idu=0
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if [ "$idd" > 100 ]; then
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idd_s="Interleave"
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else
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idd_s="Fast"
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fi
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if [ "$idu" > 100 ]; then
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idu_s="Interleave"
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else
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idu_s="Fast"
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fi
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sidu=$(scale_latency $idu)
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sidd=$(scale_latency $idd)
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if [ "$action" = "lucistat" ]; then
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echo "dsl.latency_num_down=\"$sidu\""
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echo "dsl.latency_num_up=\"$sidd\""
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echo "dsl.latency_s_down=\"$idd_s\""
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echo "dsl.latency_s_up=\"$idu_s\""
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else
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echo "Latency / Interleave Delay: Down: ${idd_s} (${sidd}) / Up: ${idu_s} (${sidu})"
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fi
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}
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#
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# Errors
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#
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errors() {
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local lsctg
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local dpctg
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local ccsg
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local esf
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local esn
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local sesf
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local sesn
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local lossf
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local lossn
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local uasf
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local uasn
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local crc_pf
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local crc_pn
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local crcp_pf
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local crcp_pn
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local hecf
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local hecn
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local fecn
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local fecf
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lsctg=$(dsl_cmd pmlsctg 1)
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esf=$(dsl_val "$lsctg" nES)
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sesf=$(dsl_val "$lsctg" nSES)
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lossf=$(dsl_val "$lsctg" nLOSS)
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uasf=$(dsl_val "$lsctg" nUAS)
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lsctg=$(dsl_cmd pmlsctg 0)
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esn=$(dsl_val "$lsctg" nES)
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sesn=$(dsl_val "$lsctg" nSES)
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lossn=$(dsl_val "$lsctg" nLOSS)
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uasn=$(dsl_val "$lsctg" nUAS)
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dpctg=$(dsl_cmd pmdpctg 0 1)
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hecf=$(dsl_val "$dpctg" nHEC)
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crc_pf=$(dsl_val "$dpctg" nCRC_P)
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crcp_pf=$(dsl_val "$dpctg" nCRCP_P)
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dpctg=$(dsl_cmd pmdpctg 0 0)
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hecn=$(dsl_val "$dpctg" nHEC)
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crc_pn=$(dsl_val "$dpctg" nCRC_P)
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crcp_pn=$(dsl_val "$dpctg" nCRCP_P)
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ccsg=$(dsl_cmd pmccsg 0 1 0)
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fecf=$(dsl_val "$ccsg" nFEC)
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ccsg=$(dsl_cmd pmccsg 0 0 0)
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fecn=$(dsl_val "$ccsg" nFEC)
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if [ "$action" = "lucistat" ]; then
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echo "dsl.errors_fec_near=${fecn:-nil}"
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echo "dsl.errors_fec_far=${fecf:-nil}"
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echo "dsl.errors_es_near=${esn:-nil}"
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echo "dsl.errors_es_far=${esf:-nil}"
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echo "dsl.errors_ses_near=${sesn:-nil}"
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echo "dsl.errors_ses_far=${sesf:-nil}"
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echo "dsl.errors_loss_near=${lossn:-nil}"
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echo "dsl.errors_loss_far=${lossf:-nil}"
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echo "dsl.errors_uas_near=${uasn:-nil}"
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echo "dsl.errors_uas_far=${uasf:-nil}"
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echo "dsl.errors_hec_near=${hecn:-nil}"
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echo "dsl.errors_hec_far=${hecf:-nil}"
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echo "dsl.errors_crc_p_near=${crc_pn:-nil}"
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echo "dsl.errors_crc_p_far=${crc_pf:-nil}"
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echo "dsl.errors_crcp_p_near=${crcp_pn:-nil}"
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echo "dsl.errors_crcp_p_far=${crcp_pf:-nil}"
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else
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echo "Forward Error Correction Seconds (FECS): Near: ${fecn} / Far: ${fecf}"
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echo "Errored seconds (ES): Near: ${esn} / Far: ${esf}"
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echo "Severely Errored Seconds (SES): Near: ${sesn} / Far: ${sesf}"
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echo "Loss of Signal Seconds (LOSS): Near: ${lossn} / Far: ${lossf}"
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echo "Unavailable Seconds (UAS): Near: ${uasn} / Far: ${uasf}"
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echo "Header Error Code Errors (HEC): Near: ${hecn} / Far: ${hecf}"
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echo "Non Pre-emtive CRC errors (CRC_P): Near: ${crc_pn} / Far: ${crc_pf}"
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echo "Pre-emtive CRC errors (CRCP_P): Near: ${crcp_pn} / Far: ${crcp_pf}"
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fi
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}
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#
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# Work out how long the line has been up
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#
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line_uptime() {
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local ccsg
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local et
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local etr
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local d
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local h
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local m
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local s
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local rc=""
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ccsg=$(dsl_cmd pmccsg 0 0 0)
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et=$(dsl_val "$ccsg" nElapsedTime)
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[ -z "$et" ] && et=0
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d=$(expr $et / 86400)
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etr=$(expr $et % 86400)
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h=$(expr $etr / 3600)
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etr=$(expr $etr % 3600)
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m=$(expr $etr / 60)
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s=$(expr $etr % 60)
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[ "${d}${h}${m}${s}" -ne 0 ] && rc="${s}s"
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[ "${d}${h}${m}" -ne 0 ] && rc="${m}m ${rc}"
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[ "${d}${h}" -ne 0 ] && rc="${h}h ${rc}"
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[ "${d}" -ne 0 ] && rc="${d}d ${rc}"
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[ -z "$rc" ] && rc="down"
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if [ "$action" = "lucistat" ]; then
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echo "dsl.line_uptime=${et}"
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echo "dsl.line_uptime_s=\"${rc}\""
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else
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echo "Line Uptime Seconds: ${et}"
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echo "Line Uptime: ${rc}"
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fi
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}
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#
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# Get noise and attenuation figures
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#
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line_data() {
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local lsg
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local latnu
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local latnd
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local satnu
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local satnd
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local snru
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local snrd
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local attndru
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local attndrd
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local sattndru
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local sattndrd
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local actatpu
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|
local actatpd
|
|
|
|
lsg=$(dsl_cmd g997lsg 1 1)
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|
latnd=$(dsl_val "$lsg" LATN)
|
|
satnd=$(dsl_val "$lsg" SATN)
|
|
snrd=$(dsl_val "$lsg" SNR)
|
|
attndrd=$(dsl_val "$lsg" ATTNDR)
|
|
actatpd=$(dsl_val "$lsg" ACTATP)
|
|
|
|
lsg=$(dsl_cmd g997lsg 0 1)
|
|
latnu=$(dsl_val "$lsg" LATN)
|
|
satnu=$(dsl_val "$lsg" SATN)
|
|
snru=$(dsl_val "$lsg" SNR)
|
|
attndru=$(dsl_val "$lsg" ATTNDR)
|
|
actatpu=$(dsl_val "$lsg" ACTATP)
|
|
|
|
[ -z "$latnd" ] && latnd=0
|
|
[ -z "$latnu" ] && latnu=0
|
|
[ -z "$satnd" ] && satnd=0
|
|
[ -z "$satnu" ] && satnu=0
|
|
[ -z "$snrd" ] && snrd=0
|
|
[ -z "$snru" ] && snru=0
|
|
[ -z "$actatpd" ] && actatpd=0
|
|
[ -z "$actatpu" ] && actatpu=0
|
|
|
|
latnd=$(dbt $latnd)
|
|
latnu=$(dbt $latnu)
|
|
satnd=$(dbt $satnd)
|
|
satnu=$(dbt $satnu)
|
|
snrd=$(dbt $snrd)
|
|
snru=$(dbt $snru)
|
|
actatpd=$(dbt $actatpd)
|
|
actatpu=$(dbt $actatpu)
|
|
|
|
[ -z "$attndrd" ] && attndrd=0
|
|
[ -z "$attndru" ] && attndru=0
|
|
|
|
sattndrd=$(scale $attndrd)
|
|
sattndru=$(scale $attndru)
|
|
|
|
if [ "$action" = "lucistat" ]; then
|
|
echo "dsl.line_attenuation_down=$latnd"
|
|
echo "dsl.line_attenuation_up=$latnu"
|
|
echo "dsl.noise_margin_down=$snrd"
|
|
echo "dsl.noise_margin_up=$snru"
|
|
echo "dsl.signal_attenuation_down=$satnd"
|
|
echo "dsl.signal_attenuation_up=$satnu"
|
|
echo "dsl.actatp_down=$actatpd"
|
|
echo "dsl.actatp_up=$actatpu"
|
|
echo "dsl.max_data_rate_down=$attndrd"
|
|
echo "dsl.max_data_rate_up=$attndru"
|
|
echo "dsl.max_data_rate_down_s=\"$sattndrd\""
|
|
echo "dsl.max_data_rate_up_s=\"$sattndru\""
|
|
else
|
|
echo "Line Attenuation (LATN): Down: ${latnd}dB / Up: ${latnu}dB"
|
|
echo "Signal Attenuation (SATN): Down: ${satnd}dB / Up: ${satnu}dB"
|
|
echo "Noise Margin (SNR): Down: ${snrd}dB / Up: ${snru}dB"
|
|
echo "Aggregate Transmit Power(ACTATP): Down: ${actatpd}dB / Up: ${actatpu}dB"
|
|
echo "Max. Attainable Data Rate (ATTNDR): Down: ${sattndrd}/s / Up: ${sattndru}/s"
|
|
fi
|
|
}
|
|
|
|
#
|
|
# Is the line up? Or what state is it in?
|
|
#
|
|
line_state() {
|
|
local lsg=$(dsl_cmd lsg)
|
|
local ls=$(dsl_val "$lsg" nLineState);
|
|
local s;
|
|
|
|
case "$ls" in
|
|
"0x0") s="not initialized" ;;
|
|
"0x1") s="exception" ;;
|
|
"0x10") s="not updated" ;;
|
|
"0xff") s="idle request" ;;
|
|
"0x100") s="idle" ;;
|
|
"0x1ff") s="silent request" ;;
|
|
"0x200") s="silent" ;;
|
|
"0x300") s="handshake" ;;
|
|
"0x380") s="full_init" ;;
|
|
"0x400") s="discovery" ;;
|
|
"0x500") s="training" ;;
|
|
"0x600") s="analysis" ;;
|
|
"0x700") s="exchange" ;;
|
|
"0x800") s="showtime_no_sync" ;;
|
|
"0x801") s="showtime_tc_sync" ;;
|
|
"0x900") s="fastretrain" ;;
|
|
"0xa00") s="lowpower_l2" ;;
|
|
"0xb00") s="loopdiagnostic active" ;;
|
|
"0xb10") s="loopdiagnostic data exchange" ;;
|
|
"0xb20") s="loopdiagnostic data request" ;;
|
|
"0xc00") s="loopdiagnostic complete" ;;
|
|
"0x1000000") s="test" ;;
|
|
"0xd00") s="resync" ;;
|
|
"0x3c0") s="short init entry" ;;
|
|
"") s="not running daemon"; ls="0xfff" ;;
|
|
*) s="unknown" ;;
|
|
esac
|
|
|
|
if [ "$action" = "lucistat" ]; then
|
|
echo "dsl.line_state_num=$ls"
|
|
echo "dsl.line_state_detail=\"$s\""
|
|
if [ "$ls" = "0x801" ]; then
|
|
echo "dsl.line_state=\"UP\""
|
|
else
|
|
echo "dsl.line_state=\"DOWN\""
|
|
fi
|
|
else
|
|
if [ "$ls" = "0x801" ]; then
|
|
echo "Line State: UP [$ls: $s]"
|
|
else
|
|
echo "Line State: DOWN [$ls: $s]"
|
|
fi
|
|
fi
|
|
}
|
|
|
|
status() {
|
|
vendor
|
|
chipset
|
|
xtse
|
|
line_state
|
|
errors
|
|
power_mode
|
|
latency_delay
|
|
data_rates
|
|
line_data
|
|
line_uptime
|
|
}
|
|
|
|
lucistat() {
|
|
echo "local dsl={}"
|
|
status
|
|
echo "return dsl"
|
|
}
|