cachepc-linux

Fork of AMDESE/linux with modifications for CachePC side-channel attack
git clone https://git.sinitax.com/sinitax/cachepc-linux
Log | Files | Refs | README | LICENSE | sfeed.txt

simult_flows.sh (7307B)


      1#!/bin/bash
      2# SPDX-License-Identifier: GPL-2.0
      3
      4rndh=$(printf %x $sec)-$(mktemp -u XXXXXX)
      5ns1="ns1-$rndh"
      6ns2="ns2-$rndh"
      7ns3="ns3-$rndh"
      8capture=false
      9ksft_skip=4
     10timeout_poll=30
     11timeout_test=$((timeout_poll * 2 + 1))
     12test_cnt=1
     13ret=0
     14bail=0
     15
     16usage() {
     17	echo "Usage: $0 [ -b ] [ -c ] [ -d ]"
     18	echo -e "\t-b: bail out after first error, otherwise runs al testcases"
     19	echo -e "\t-c: capture packets for each test using tcpdump (default: no capture)"
     20	echo -e "\t-d: debug this script"
     21}
     22
     23cleanup()
     24{
     25	rm -f "$cout" "$sout"
     26	rm -f "$large" "$small"
     27	rm -f "$capout"
     28
     29	local netns
     30	for netns in "$ns1" "$ns2" "$ns3";do
     31		ip netns del $netns
     32	done
     33}
     34
     35ip -Version > /dev/null 2>&1
     36if [ $? -ne 0 ];then
     37	echo "SKIP: Could not run test without ip tool"
     38	exit $ksft_skip
     39fi
     40
     41#  "$ns1"              ns2                    ns3
     42#     ns1eth1    ns2eth1   ns2eth3      ns3eth1
     43#            netem
     44#     ns1eth2    ns2eth2
     45#            netem
     46
     47setup()
     48{
     49	large=$(mktemp)
     50	small=$(mktemp)
     51	sout=$(mktemp)
     52	cout=$(mktemp)
     53	capout=$(mktemp)
     54	size=$((2 * 2048 * 4096))
     55	dd if=/dev/zero of=$small bs=4096 count=20 >/dev/null 2>&1
     56	dd if=/dev/zero of=$large bs=4096 count=$((size / 4096)) >/dev/null 2>&1
     57
     58	trap cleanup EXIT
     59
     60	for i in "$ns1" "$ns2" "$ns3";do
     61		ip netns add $i || exit $ksft_skip
     62		ip -net $i link set lo up
     63		ip netns exec $i sysctl -q net.ipv4.conf.all.rp_filter=0
     64		ip netns exec $i sysctl -q net.ipv4.conf.default.rp_filter=0
     65	done
     66
     67	ip link add ns1eth1 netns "$ns1" type veth peer name ns2eth1 netns "$ns2"
     68	ip link add ns1eth2 netns "$ns1" type veth peer name ns2eth2 netns "$ns2"
     69	ip link add ns2eth3 netns "$ns2" type veth peer name ns3eth1 netns "$ns3"
     70
     71	ip -net "$ns1" addr add 10.0.1.1/24 dev ns1eth1
     72	ip -net "$ns1" addr add dead:beef:1::1/64 dev ns1eth1 nodad
     73	ip -net "$ns1" link set ns1eth1 up mtu 1500
     74	ip -net "$ns1" route add default via 10.0.1.2
     75	ip -net "$ns1" route add default via dead:beef:1::2
     76
     77	ip -net "$ns1" addr add 10.0.2.1/24 dev ns1eth2
     78	ip -net "$ns1" addr add dead:beef:2::1/64 dev ns1eth2 nodad
     79	ip -net "$ns1" link set ns1eth2 up mtu 1500
     80	ip -net "$ns1" route add default via 10.0.2.2 metric 101
     81	ip -net "$ns1" route add default via dead:beef:2::2 metric 101
     82
     83	ip netns exec "$ns1" ./pm_nl_ctl limits 1 1
     84	ip netns exec "$ns1" ./pm_nl_ctl add 10.0.2.1 dev ns1eth2 flags subflow
     85
     86	ip -net "$ns2" addr add 10.0.1.2/24 dev ns2eth1
     87	ip -net "$ns2" addr add dead:beef:1::2/64 dev ns2eth1 nodad
     88	ip -net "$ns2" link set ns2eth1 up mtu 1500
     89
     90	ip -net "$ns2" addr add 10.0.2.2/24 dev ns2eth2
     91	ip -net "$ns2" addr add dead:beef:2::2/64 dev ns2eth2 nodad
     92	ip -net "$ns2" link set ns2eth2 up mtu 1500
     93
     94	ip -net "$ns2" addr add 10.0.3.2/24 dev ns2eth3
     95	ip -net "$ns2" addr add dead:beef:3::2/64 dev ns2eth3 nodad
     96	ip -net "$ns2" link set ns2eth3 up mtu 1500
     97	ip netns exec "$ns2" sysctl -q net.ipv4.ip_forward=1
     98	ip netns exec "$ns2" sysctl -q net.ipv6.conf.all.forwarding=1
     99
    100	ip -net "$ns3" addr add 10.0.3.3/24 dev ns3eth1
    101	ip -net "$ns3" addr add dead:beef:3::3/64 dev ns3eth1 nodad
    102	ip -net "$ns3" link set ns3eth1 up mtu 1500
    103	ip -net "$ns3" route add default via 10.0.3.2
    104	ip -net "$ns3" route add default via dead:beef:3::2
    105
    106	ip netns exec "$ns3" ./pm_nl_ctl limits 1 1
    107}
    108
    109# $1: ns, $2: port
    110wait_local_port_listen()
    111{
    112	local listener_ns="${1}"
    113	local port="${2}"
    114
    115	local port_hex i
    116
    117	port_hex="$(printf "%04X" "${port}")"
    118	for i in $(seq 10); do
    119		ip netns exec "${listener_ns}" cat /proc/net/tcp* | \
    120			awk "BEGIN {rc=1} {if (\$2 ~ /:${port_hex}\$/ && \$4 ~ /0A/) {rc=0; exit}} END {exit rc}" &&
    121			break
    122		sleep 0.1
    123	done
    124}
    125
    126do_transfer()
    127{
    128	local cin=$1
    129	local sin=$2
    130	local max_time=$3
    131	local port
    132	port=$((10000+$test_cnt))
    133	test_cnt=$((test_cnt+1))
    134
    135	:> "$cout"
    136	:> "$sout"
    137	:> "$capout"
    138
    139	local addr_port
    140	addr_port=$(printf "%s:%d" ${connect_addr} ${port})
    141
    142	if $capture; then
    143		local capuser
    144		if [ -z $SUDO_USER ] ; then
    145			capuser=""
    146		else
    147			capuser="-Z $SUDO_USER"
    148		fi
    149
    150		local capfile="${rndh}-${port}"
    151		local capopt="-i any -s 65535 -B 32768 ${capuser}"
    152
    153		ip netns exec ${ns3}  tcpdump ${capopt} -w "${capfile}-listener.pcap"  >> "${capout}" 2>&1 &
    154		local cappid_listener=$!
    155
    156		ip netns exec ${ns1} tcpdump ${capopt} -w "${capfile}-connector.pcap" >> "${capout}" 2>&1 &
    157		local cappid_connector=$!
    158
    159		sleep 1
    160	fi
    161
    162	timeout ${timeout_test} \
    163		ip netns exec ${ns3} \
    164			./mptcp_connect -jt ${timeout_poll} -l -p $port -T $time \
    165				0.0.0.0 < "$sin" > "$sout" &
    166	local spid=$!
    167
    168	wait_local_port_listen "${ns3}" "${port}"
    169
    170	timeout ${timeout_test} \
    171		ip netns exec ${ns1} \
    172			./mptcp_connect -jt ${timeout_poll} -p $port -T $time \
    173				10.0.3.3 < "$cin" > "$cout" &
    174	local cpid=$!
    175
    176	wait $cpid
    177	local retc=$?
    178	wait $spid
    179	local rets=$?
    180
    181	if $capture; then
    182		sleep 1
    183		kill ${cappid_listener}
    184		kill ${cappid_connector}
    185	fi
    186
    187	cmp $sin $cout > /dev/null 2>&1
    188	local cmps=$?
    189	cmp $cin $sout > /dev/null 2>&1
    190	local cmpc=$?
    191
    192	printf "%-16s" " max $max_time "
    193	if [ $retc -eq 0 ] && [ $rets -eq 0 ] && \
    194	   [ $cmpc -eq 0 ] && [ $cmps -eq 0 ]; then
    195		echo "[ OK ]"
    196		cat "$capout"
    197		return 0
    198	fi
    199
    200	echo " [ fail ]"
    201	echo "client exit code $retc, server $rets" 1>&2
    202	echo -e "\nnetns ${ns3} socket stat for $port:" 1>&2
    203	ip netns exec ${ns3} ss -nita 1>&2 -o "sport = :$port"
    204	echo -e "\nnetns ${ns1} socket stat for $port:" 1>&2
    205	ip netns exec ${ns1} ss -nita 1>&2 -o "dport = :$port"
    206	ls -l $sin $cout
    207	ls -l $cin $sout
    208
    209	cat "$capout"
    210	return 1
    211}
    212
    213run_test()
    214{
    215	local rate1=$1
    216	local rate2=$2
    217	local delay1=$3
    218	local delay2=$4
    219	local lret
    220	local dev
    221	shift 4
    222	local msg=$*
    223
    224	[ $delay1 -gt 0 ] && delay1="delay $delay1" || delay1=""
    225	[ $delay2 -gt 0 ] && delay2="delay $delay2" || delay2=""
    226
    227	for dev in ns1eth1 ns1eth2; do
    228		tc -n $ns1 qdisc del dev $dev root >/dev/null 2>&1
    229	done
    230	for dev in ns2eth1 ns2eth2; do
    231		tc -n $ns2 qdisc del dev $dev root >/dev/null 2>&1
    232	done
    233	tc -n $ns1 qdisc add dev ns1eth1 root netem rate ${rate1}mbit $delay1
    234	tc -n $ns1 qdisc add dev ns1eth2 root netem rate ${rate2}mbit $delay2
    235	tc -n $ns2 qdisc add dev ns2eth1 root netem rate ${rate1}mbit $delay1
    236	tc -n $ns2 qdisc add dev ns2eth2 root netem rate ${rate2}mbit $delay2
    237
    238	# time is measured in ms, account for transfer size, affegated link speed
    239	# and header overhead (10%)
    240	local time=$((size * 8 * 1000 * 10 / (( $rate1 + $rate2) * 1024 *1024 * 9) ))
    241
    242	# mptcp_connect will do some sleeps to allow the mp_join handshake
    243	# completion (see mptcp_connect): 200ms on each side, add some slack
    244	time=$((time + 450))
    245
    246	printf "%-60s" "$msg"
    247	do_transfer $small $large $time
    248	lret=$?
    249	if [ $lret -ne 0 ]; then
    250		ret=$lret
    251		[ $bail -eq 0 ] || exit $ret
    252	fi
    253
    254	printf "%-60s" "$msg - reverse direction"
    255	do_transfer $large $small $time
    256	lret=$?
    257	if [ $lret -ne 0 ]; then
    258		ret=$lret
    259		[ $bail -eq 0 ] || exit $ret
    260	fi
    261}
    262
    263while getopts "bcdh" option;do
    264	case "$option" in
    265	"h")
    266		usage $0
    267		exit 0
    268		;;
    269	"b")
    270		bail=1
    271		;;
    272	"c")
    273		capture=true
    274		;;
    275	"d")
    276		set -x
    277		;;
    278	"?")
    279		usage $0
    280		exit 1
    281		;;
    282	esac
    283done
    284
    285setup
    286run_test 10 10 0 0 "balanced bwidth"
    287run_test 10 10 1 50 "balanced bwidth with unbalanced delay"
    288
    289# we still need some additional infrastructure to pass the following test-cases
    290run_test 30 10 0 0 "unbalanced bwidth"
    291run_test 30 10 1 50 "unbalanced bwidth with unbalanced delay"
    292run_test 30 10 50 1 "unbalanced bwidth with opposed, unbalanced delay"
    293exit $ret