162d52dfee
We can make the phc2sys helper not only synchronize a PHC to CLOCK_REALTIME, which is what it currently does, but also CLOCK_REALTIME to a PHC, which is going to be needed in distributed TSN tests. Instead of making the complexity of the arguments passed to phc2sys_start() explode, we can let it figure out the sync direction automatically, based on ptp4l's port states. Towards that goal, pass just the path to the desired ptp4l instance's UNIX domain socket, and remove the $if_name argument (from which it derives the PHC). Also adapt the one caller from the ocelot psfp.sh test. In the case of psfp.sh, phc2sys_start is able to properly figure out that CLOCK_REALTIME is the source clock and swp1's PHC is the destination, because of the way in which ptp4l_start for the UDS_ADDRESS_SWP1 was called: with slave_only=false, so it will always win the BMCA and always become the sync master between itself and $h1. Signed-off-by: Vladimir Oltean <vladimir.oltean@nxp.com> Reviewed-by: Kurt Kanzenbach <kurt@linutronix.de> Signed-off-by: Jakub Kicinski <kuba@kernel.org>
250 lines
5.5 KiB
Bash
250 lines
5.5 KiB
Bash
#!/bin/bash
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# SPDX-License-Identifier: GPL-2.0
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# Copyright 2021-2022 NXP
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REQUIRE_ISOCHRON=${REQUIRE_ISOCHRON:=yes}
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REQUIRE_LINUXPTP=${REQUIRE_LINUXPTP:=yes}
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# Tunables
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UTC_TAI_OFFSET=37
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ISOCHRON_CPU=1
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if [[ "$REQUIRE_ISOCHRON" = "yes" ]]; then
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# https://github.com/vladimiroltean/tsn-scripts
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# WARNING: isochron versions pre-1.0 are unstable,
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# always use the latest version
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require_command isochron
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fi
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if [[ "$REQUIRE_LINUXPTP" = "yes" ]]; then
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require_command phc2sys
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require_command ptp4l
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fi
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phc2sys_start()
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{
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local uds_address=$1
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local extra_args=""
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if ! [ -z "${uds_address}" ]; then
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extra_args="${extra_args} -z ${uds_address}"
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fi
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phc2sys_log="$(mktemp)"
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chrt -f 10 phc2sys -m \
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-a -rr \
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--step_threshold 0.00002 \
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--first_step_threshold 0.00002 \
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${extra_args} \
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> "${phc2sys_log}" 2>&1 &
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phc2sys_pid=$!
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echo "phc2sys logs to ${phc2sys_log} and has pid ${phc2sys_pid}"
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sleep 1
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}
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phc2sys_stop()
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{
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{ kill ${phc2sys_pid} && wait ${phc2sys_pid}; } 2> /dev/null
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rm "${phc2sys_log}" 2> /dev/null
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}
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# Replace space separators from interface list with underscores
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if_names_to_label()
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{
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local if_name_list="$1"
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echo "${if_name_list/ /_}"
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}
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ptp4l_start()
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{
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local if_names="$1"
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local slave_only=$2
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local uds_address=$3
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local log="ptp4l_log_$(if_names_to_label ${if_names})"
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local pid="ptp4l_pid_$(if_names_to_label ${if_names})"
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local extra_args=""
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for if_name in ${if_names}; do
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extra_args="${extra_args} -i ${if_name}"
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done
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if [ "${slave_only}" = true ]; then
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extra_args="${extra_args} -s"
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fi
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# declare dynamic variables ptp4l_log_${if_name} and ptp4l_pid_${if_name}
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# as global, so that they can be referenced later
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declare -g "${log}=$(mktemp)"
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chrt -f 10 ptp4l -m -2 -P \
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--step_threshold 0.00002 \
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--first_step_threshold 0.00002 \
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--tx_timestamp_timeout 100 \
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--uds_address="${uds_address}" \
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${extra_args} \
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> "${!log}" 2>&1 &
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declare -g "${pid}=$!"
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echo "ptp4l for interfaces ${if_names} logs to ${!log} and has pid ${!pid}"
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sleep 1
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}
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ptp4l_stop()
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{
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local if_names="$1"
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local log="ptp4l_log_$(if_names_to_label ${if_names})"
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local pid="ptp4l_pid_$(if_names_to_label ${if_names})"
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{ kill ${!pid} && wait ${!pid}; } 2> /dev/null
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rm "${!log}" 2> /dev/null
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}
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cpufreq_max()
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{
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local cpu=$1
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local freq="cpu${cpu}_freq"
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local governor="cpu${cpu}_governor"
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# Kernel may be compiled with CONFIG_CPU_FREQ disabled
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if ! [ -d /sys/bus/cpu/devices/cpu${cpu}/cpufreq ]; then
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return
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fi
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# declare dynamic variables cpu${cpu}_freq and cpu${cpu}_governor as
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# global, so they can be referenced later
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declare -g "${freq}=$(cat /sys/bus/cpu/devices/cpu${cpu}/cpufreq/scaling_min_freq)"
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declare -g "${governor}=$(cat /sys/bus/cpu/devices/cpu${cpu}/cpufreq/scaling_governor)"
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cat /sys/bus/cpu/devices/cpu${cpu}/cpufreq/scaling_max_freq > \
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/sys/bus/cpu/devices/cpu${cpu}/cpufreq/scaling_min_freq
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echo -n "performance" > \
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/sys/bus/cpu/devices/cpu${cpu}/cpufreq/scaling_governor
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}
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cpufreq_restore()
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{
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local cpu=$1
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local freq="cpu${cpu}_freq"
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local governor="cpu${cpu}_governor"
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if ! [ -d /sys/bus/cpu/devices/cpu${cpu}/cpufreq ]; then
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return
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fi
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echo "${!freq}" > /sys/bus/cpu/devices/cpu${cpu}/cpufreq/scaling_min_freq
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echo -n "${!governor}" > \
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/sys/bus/cpu/devices/cpu${cpu}/cpufreq/scaling_governor
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}
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isochron_recv_start()
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{
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local if_name=$1
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local uds=$2
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local stats_port=$3
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local extra_args=$4
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local pid="isochron_pid_${stats_port}"
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if ! [ -z "${uds}" ]; then
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extra_args="${extra_args} --unix-domain-socket ${uds}"
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fi
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isochron rcv \
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--interface ${if_name} \
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--sched-priority 98 \
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--sched-fifo \
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--utc-tai-offset ${UTC_TAI_OFFSET} \
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--stats-port ${stats_port} \
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--quiet \
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${extra_args} & \
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declare -g "${pid}=$!"
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sleep 1
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}
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isochron_recv_stop()
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{
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local stats_port=$1
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local pid="isochron_pid_${stats_port}"
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{ kill ${!pid} && wait ${!pid}; } 2> /dev/null
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}
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isochron_do()
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{
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local sender_if_name=$1; shift
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local receiver_if_name=$1; shift
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local sender_uds=$1; shift
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local receiver_uds=$1; shift
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local base_time=$1; shift
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local cycle_time=$1; shift
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local shift_time=$1; shift
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local num_pkts=$1; shift
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local vid=$1; shift
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local priority=$1; shift
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local dst_ip=$1; shift
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local isochron_dat=$1; shift
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local extra_args=""
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local receiver_extra_args=""
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local vrf="$(master_name_get ${sender_if_name})"
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local use_l2="true"
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if ! [ -z "${dst_ip}" ]; then
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use_l2="false"
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fi
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if ! [ -z "${vrf}" ]; then
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dst_ip="${dst_ip}%${vrf}"
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fi
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if ! [ -z "${vid}" ]; then
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vid="--vid=${vid}"
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fi
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if [ -z "${receiver_uds}" ]; then
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extra_args="${extra_args} --omit-remote-sync"
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fi
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if ! [ -z "${shift_time}" ]; then
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extra_args="${extra_args} --shift-time=${shift_time}"
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fi
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if [ "${use_l2}" = "true" ]; then
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extra_args="${extra_args} --l2 --etype=0xdead ${vid}"
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receiver_extra_args="--l2 --etype=0xdead"
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else
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extra_args="${extra_args} --l4 --ip-destination=${dst_ip}"
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receiver_extra_args="--l4"
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fi
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cpufreq_max ${ISOCHRON_CPU}
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isochron_recv_start "${h2}" "${receiver_uds}" 5000 "${receiver_extra_args}"
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isochron send \
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--interface ${sender_if_name} \
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--unix-domain-socket ${sender_uds} \
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--priority ${priority} \
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--base-time ${base_time} \
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--cycle-time ${cycle_time} \
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--num-frames ${num_pkts} \
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--frame-size 64 \
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--txtime \
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--utc-tai-offset ${UTC_TAI_OFFSET} \
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--cpu-mask $((1 << ${ISOCHRON_CPU})) \
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--sched-fifo \
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--sched-priority 98 \
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--client 127.0.0.1 \
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--sync-threshold 5000 \
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--output-file ${isochron_dat} \
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${extra_args} \
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--quiet
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isochron_recv_stop 5000
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cpufreq_restore ${ISOCHRON_CPU}
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}
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