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1#!/bin/bash
2# SPDX-License-Identifier: GPL-2.0
3
4# Double quotes to prevent globbing and word splitting is recommended in new
5# code but we accept it, especially because there were too many before having
6# address all other issues detected by shellcheck.
7#shellcheck disable=SC2086
8
9. "$(dirname "${0}")/mptcp_lib.sh"
10
11# ShellCheck incorrectly believes that most of the code here is unreachable
12# because it's invoked by variable name, see how the "tests" array is used
13#shellcheck disable=SC2317
14
15ret=0
16sin=""
17sinfail=""
18sout=""
19cin=""
20cinfail=""
21cinsent=""
22tmpfile=""
23cout=""
24capout=""
25ns1=""
26ns2=""
27ksft_skip=4
28iptables="iptables"
29ip6tables="ip6tables"
30timeout_poll=30
31timeout_test=$((timeout_poll * 2 + 1))
32capture=0
33checksum=0
34ip_mptcp=0
35check_invert=0
36validate_checksum=0
37init=0
38
39declare -A all_tests
40declare -a only_tests_ids
41declare -a only_tests_names
42declare -A failed_tests
43TEST_COUNT=0
44TEST_NAME=""
45nr_blank=40
46
47export FAILING_LINKS=""
48
49# generated using "nfbpf_compile '(ip && (ip[54] & 0xf0) == 0x30) ||
50#				  (ip6 && (ip6[74] & 0xf0) == 0x30)'"
51CBPF_MPTCP_SUBOPTION_ADD_ADDR="14,
52			       48 0 0 0,
53			       84 0 0 240,
54			       21 0 3 64,
55			       48 0 0 54,
56			       84 0 0 240,
57			       21 6 7 48,
58			       48 0 0 0,
59			       84 0 0 240,
60			       21 0 4 96,
61			       48 0 0 74,
62			       84 0 0 240,
63			       21 0 1 48,
64			       6 0 0 65535,
65			       6 0 0 0"
66
67init_partial()
68{
69	capout=$(mktemp)
70
71	local rndh
72	rndh=$(mktemp -u XXXXXX)
73
74	ns1="ns1-$rndh"
75	ns2="ns2-$rndh"
76
77	local netns
78	for netns in "$ns1" "$ns2"; do
79		ip netns add $netns || exit $ksft_skip
80		ip -net $netns link set lo up
81		ip netns exec $netns sysctl -q net.mptcp.enabled=1
82		ip netns exec $netns sysctl -q net.mptcp.pm_type=0 2>/dev/null || true
83		ip netns exec $netns sysctl -q net.ipv4.conf.all.rp_filter=0
84		ip netns exec $netns sysctl -q net.ipv4.conf.default.rp_filter=0
85		if [ $checksum -eq 1 ]; then
86			ip netns exec $netns sysctl -q net.mptcp.checksum_enabled=1
87		fi
88	done
89
90	check_invert=0
91	validate_checksum=$checksum
92	FAILING_LINKS=""
93
94	#  ns1         ns2
95	# ns1eth1    ns2eth1
96	# ns1eth2    ns2eth2
97	# ns1eth3    ns2eth3
98	# ns1eth4    ns2eth4
99
100	local i
101	for i in $(seq 1 4); do
102		ip link add ns1eth$i netns "$ns1" type veth peer name ns2eth$i netns "$ns2"
103		ip -net "$ns1" addr add 10.0.$i.1/24 dev ns1eth$i
104		ip -net "$ns1" addr add dead:beef:$i::1/64 dev ns1eth$i nodad
105		ip -net "$ns1" link set ns1eth$i up
106
107		ip -net "$ns2" addr add 10.0.$i.2/24 dev ns2eth$i
108		ip -net "$ns2" addr add dead:beef:$i::2/64 dev ns2eth$i nodad
109		ip -net "$ns2" link set ns2eth$i up
110
111		# let $ns2 reach any $ns1 address from any interface
112		ip -net "$ns2" route add default via 10.0.$i.1 dev ns2eth$i metric 10$i
113		ip -net "$ns2" route add default via dead:beef:$i::1 dev ns2eth$i metric 10$i
114	done
115}
116
117init_shapers()
118{
119	local i
120	for i in $(seq 1 4); do
121		tc -n $ns1 qdisc add dev ns1eth$i root netem rate 20mbit delay 1
122		tc -n $ns2 qdisc add dev ns2eth$i root netem rate 20mbit delay 1
123	done
124}
125
126cleanup_partial()
127{
128	rm -f "$capout"
129
130	local netns
131	for netns in "$ns1" "$ns2"; do
132		ip netns del $netns
133		rm -f /tmp/$netns.{nstat,out}
134	done
135}
136
137check_tools()
138{
139	mptcp_lib_check_mptcp
140	mptcp_lib_check_kallsyms
141
142	if ! ip -Version &> /dev/null; then
143		echo "SKIP: Could not run test without ip tool"
144		exit $ksft_skip
145	fi
146
147	# Use the legacy version if available to support old kernel versions
148	if iptables-legacy -V &> /dev/null; then
149		iptables="iptables-legacy"
150		ip6tables="ip6tables-legacy"
151	elif ! iptables -V &> /dev/null; then
152		echo "SKIP: Could not run all tests without iptables tool"
153		exit $ksft_skip
154	elif ! ip6tables -V &> /dev/null; then
155		echo "SKIP: Could not run all tests without ip6tables tool"
156		exit $ksft_skip
157	fi
158}
159
160init() {
161	init=1
162
163	check_tools
164
165	sin=$(mktemp)
166	sout=$(mktemp)
167	cin=$(mktemp)
168	cinsent=$(mktemp)
169	cout=$(mktemp)
170
171	trap cleanup EXIT
172
173	make_file "$cin" "client" 1
174	make_file "$sin" "server" 1
175}
176
177cleanup()
178{
179	rm -f "$cin" "$cout" "$sinfail"
180	rm -f "$sin" "$sout" "$cinsent" "$cinfail"
181	rm -f "$tmpfile"
182	cleanup_partial
183}
184
185# $1: msg
186print_title()
187{
188	printf "%03u %-36s %s" "${TEST_COUNT}" "${TEST_NAME}" "${1}"
189}
190
191# [ $1: fail msg ]
192mark_as_skipped()
193{
194	local msg="${1:-"Feature not supported"}"
195
196	mptcp_lib_fail_if_expected_feature "${msg}"
197
198	print_title "[ skip ] ${msg}"
199	printf "\n"
200}
201
202# $@: condition
203continue_if()
204{
205	if ! "${@}"; then
206		mark_as_skipped
207		return 1
208	fi
209}
210
211skip_test()
212{
213	if [ "${#only_tests_ids[@]}" -eq 0 ] && [ "${#only_tests_names[@]}" -eq 0 ]; then
214		return 1
215	fi
216
217	local i
218	for i in "${only_tests_ids[@]}"; do
219		if [ "${TEST_COUNT}" -eq "${i}" ]; then
220			return 1
221		fi
222	done
223	for i in "${only_tests_names[@]}"; do
224		if [ "${TEST_NAME}" = "${i}" ]; then
225			return 1
226		fi
227	done
228
229	return 0
230}
231
232# $1: test name
233reset()
234{
235	TEST_NAME="${1}"
236
237	TEST_COUNT=$((TEST_COUNT+1))
238
239	if skip_test; then
240		return 1
241	fi
242
243	if [ "${init}" != "1" ]; then
244		init
245	else
246		cleanup_partial
247	fi
248
249	init_partial
250
251	return 0
252}
253
254# $1: test name ; $2: counter to check
255reset_check_counter()
256{
257	reset "${1}" || return 1
258
259	local counter="${2}"
260
261	if ! nstat -asz "${counter}" | grep -wq "${counter}"; then
262		mark_as_skipped "counter '${counter}' is not available"
263		return 1
264	fi
265}
266
267# $1: test name
268reset_with_cookies()
269{
270	reset "${1}" || return 1
271
272	local netns
273	for netns in "$ns1" "$ns2"; do
274		ip netns exec $netns sysctl -q net.ipv4.tcp_syncookies=2
275	done
276}
277
278# $1: test name
279reset_with_add_addr_timeout()
280{
281	local ip="${2:-4}"
282	local tables
283
284	reset "${1}" || return 1
285
286	tables="${iptables}"
287	if [ $ip -eq 6 ]; then
288		tables="${ip6tables}"
289	fi
290
291	ip netns exec $ns1 sysctl -q net.mptcp.add_addr_timeout=1
292
293	if ! ip netns exec $ns2 $tables -A OUTPUT -p tcp \
294			-m tcp --tcp-option 30 \
295			-m bpf --bytecode \
296			"$CBPF_MPTCP_SUBOPTION_ADD_ADDR" \
297			-j DROP; then
298		mark_as_skipped "unable to set the 'add addr' rule"
299		return 1
300	fi
301}
302
303# $1: test name
304reset_with_checksum()
305{
306	local ns1_enable=$1
307	local ns2_enable=$2
308
309	reset "checksum test ${1} ${2}" || return 1
310
311	ip netns exec $ns1 sysctl -q net.mptcp.checksum_enabled=$ns1_enable
312	ip netns exec $ns2 sysctl -q net.mptcp.checksum_enabled=$ns2_enable
313
314	validate_checksum=1
315}
316
317reset_with_allow_join_id0()
318{
319	local ns1_enable=$2
320	local ns2_enable=$3
321
322	reset "${1}" || return 1
323
324	ip netns exec $ns1 sysctl -q net.mptcp.allow_join_initial_addr_port=$ns1_enable
325	ip netns exec $ns2 sysctl -q net.mptcp.allow_join_initial_addr_port=$ns2_enable
326}
327
328# Modify TCP payload without corrupting the TCP packet
329#
330# This rule inverts a 8-bit word at byte offset 148 for the 2nd TCP ACK packets
331# carrying enough data.
332# Once it is done, the TCP Checksum field is updated so the packet is still
333# considered as valid at the TCP level.
334# Because the MPTCP checksum, covering the TCP options and data, has not been
335# updated, the modification will be detected and an MP_FAIL will be emitted:
336# what we want to validate here without corrupting "random" MPTCP options.
337#
338# To avoid having tc producing this pr_info() message for each TCP ACK packets
339# not carrying enough data:
340#
341#     tc action pedit offset 162 out of bounds
342#
343# Netfilter is used to mark packets with enough data.
344setup_fail_rules()
345{
346	check_invert=1
347	validate_checksum=1
348	local i="$1"
349	local ip="${2:-4}"
350	local tables
351
352	tables="${iptables}"
353	if [ $ip -eq 6 ]; then
354		tables="${ip6tables}"
355	fi
356
357	ip netns exec $ns2 $tables \
358		-t mangle \
359		-A OUTPUT \
360		-o ns2eth$i \
361		-p tcp \
362		-m length --length 150:9999 \
363		-m statistic --mode nth --packet 1 --every 99999 \
364		-j MARK --set-mark 42 || return ${ksft_skip}
365
366	tc -n $ns2 qdisc add dev ns2eth$i clsact || return ${ksft_skip}
367	tc -n $ns2 filter add dev ns2eth$i egress \
368		protocol ip prio 1000 \
369		handle 42 fw \
370		action pedit munge offset 148 u8 invert \
371		pipe csum tcp \
372		index 100 || return ${ksft_skip}
373}
374
375reset_with_fail()
376{
377	reset_check_counter "${1}" "MPTcpExtInfiniteMapTx" || return 1
378	shift
379
380	ip netns exec $ns1 sysctl -q net.mptcp.checksum_enabled=1
381	ip netns exec $ns2 sysctl -q net.mptcp.checksum_enabled=1
382
383	local rc=0
384	setup_fail_rules "${@}" || rc=$?
385
386	if [ ${rc} -eq ${ksft_skip} ]; then
387		mark_as_skipped "unable to set the 'fail' rules"
388		return 1
389	fi
390}
391
392reset_with_tcp_filter()
393{
394	reset "${1}" || return 1
395	shift
396
397	local ns="${!1}"
398	local src="${2}"
399	local target="${3}"
400
401	if ! ip netns exec "${ns}" ${iptables} \
402			-A INPUT \
403			-s "${src}" \
404			-p tcp \
405			-j "${target}"; then
406		mark_as_skipped "unable to set the filter rules"
407		return 1
408	fi
409}
410
411fail_test()
412{
413	ret=1
414	failed_tests[${TEST_COUNT}]="${TEST_NAME}"
415}
416
417get_failed_tests_ids()
418{
419	# sorted
420	local i
421	for i in "${!failed_tests[@]}"; do
422		echo "${i}"
423	done | sort -n
424}
425
426print_file_err()
427{
428	ls -l "$1" 1>&2
429	echo "Trailing bytes are: "
430	tail -c 27 "$1"
431}
432
433check_transfer()
434{
435	local in=$1
436	local out=$2
437	local what=$3
438	local bytes=$4
439	local i a b
440
441	local line
442	if [ -n "$bytes" ]; then
443		local out_size
444		# when truncating we must check the size explicitly
445		out_size=$(wc -c $out | awk '{print $1}')
446		if [ $out_size -ne $bytes ]; then
447			echo "[ FAIL ] $what output file has wrong size ($out_size, $bytes)"
448			fail_test
449			return 1
450		fi
451
452		# note: BusyBox's "cmp" command doesn't support --bytes
453		tmpfile=$(mktemp)
454		head --bytes="$bytes" "$in" > "$tmpfile"
455		mv "$tmpfile" "$in"
456		head --bytes="$bytes" "$out" > "$tmpfile"
457		mv "$tmpfile" "$out"
458		tmpfile=""
459	fi
460	cmp -l "$in" "$out" | while read -r i a b; do
461		local sum=$((0${a} + 0${b}))
462		if [ $check_invert -eq 0 ] || [ $sum -ne $((0xff)) ]; then
463			echo "[ FAIL ] $what does not match (in, out):"
464			print_file_err "$in"
465			print_file_err "$out"
466			fail_test
467
468			return 1
469		else
470			echo "$what has inverted byte at ${i}"
471		fi
472	done
473
474	return 0
475}
476
477do_ping()
478{
479	local listener_ns="$1"
480	local connector_ns="$2"
481	local connect_addr="$3"
482
483	if ! ip netns exec ${connector_ns} ping -q -c 1 $connect_addr >/dev/null; then
484		echo "$listener_ns -> $connect_addr connectivity [ FAIL ]" 1>&2
485		fail_test
486	fi
487}
488
489link_failure()
490{
491	local ns="$1"
492
493	if [ -z "$FAILING_LINKS" ]; then
494		l=$((RANDOM%4))
495		FAILING_LINKS=$((l+1))
496	fi
497
498	local l
499	for l in $FAILING_LINKS; do
500		local veth="ns1eth$l"
501		ip -net "$ns" link set "$veth" down
502	done
503}
504
505# $1: IP address
506is_v6()
507{
508	[ -z "${1##*:*}" ]
509}
510
511# $1: ns, $2: port
512wait_local_port_listen()
513{
514	local listener_ns="${1}"
515	local port="${2}"
516
517	local port_hex
518	port_hex="$(printf "%04X" "${port}")"
519
520	local i
521	for i in $(seq 10); do
522		ip netns exec "${listener_ns}" cat /proc/net/tcp* | \
523			awk "BEGIN {rc=1} {if (\$2 ~ /:${port_hex}\$/ && \$4 ~ /0A/) {rc=0; exit}} END {exit rc}" &&
524			break
525		sleep 0.1
526	done
527}
528
529# $1: ns ; $2: counter
530get_counter()
531{
532	local ns="${1}"
533	local counter="${2}"
534	local count
535
536	count=$(ip netns exec ${ns} nstat -asz "${counter}" | awk 'NR==1 {next} {print $2}')
537	if [ -z "${count}" ]; then
538		mptcp_lib_fail_if_expected_feature "${counter} counter"
539		return 1
540	fi
541
542	echo "${count}"
543}
544
545rm_addr_count()
546{
547	get_counter "${1}" "MPTcpExtRmAddr"
548}
549
550# $1: ns, $2: old rm_addr counter in $ns
551wait_rm_addr()
552{
553	local ns="${1}"
554	local old_cnt="${2}"
555	local cnt
556
557	local i
558	for i in $(seq 10); do
559		cnt=$(rm_addr_count ${ns})
560		[ "$cnt" = "${old_cnt}" ] || break
561		sleep 0.1
562	done
563}
564
565wait_mpj()
566{
567	local ns="${1}"
568	local cnt old_cnt
569
570	old_cnt=$(get_counter ${ns} "MPTcpExtMPJoinAckRx")
571
572	local i
573	for i in $(seq 10); do
574		cnt=$(get_counter ${ns} "MPTcpExtMPJoinAckRx")
575		[ "$cnt" = "${old_cnt}" ] || break
576		sleep 0.1
577	done
578}
579
580kill_wait()
581{
582	kill $1 > /dev/null 2>&1
583	wait $1 2>/dev/null
584}
585
586kill_tests_wait()
587{
588	#shellcheck disable=SC2046
589	kill -SIGUSR1 $(ip netns pids $ns2) $(ip netns pids $ns1)
590	wait
591}
592
593pm_nl_set_limits()
594{
595	local ns=$1
596	local addrs=$2
597	local subflows=$3
598
599	if [ $ip_mptcp -eq 1 ]; then
600		ip -n $ns mptcp limits set add_addr_accepted $addrs subflows $subflows
601	else
602		ip netns exec $ns ./pm_nl_ctl limits $addrs $subflows
603	fi
604}
605
606pm_nl_add_endpoint()
607{
608	local ns=$1
609	local addr=$2
610	local flags _flags
611	local port _port
612	local dev _dev
613	local id _id
614	local nr=2
615
616	local p
617	for p in "${@}"
618	do
619		if [ $p = "flags" ]; then
620			eval _flags=\$"$nr"
621			[ -n "$_flags" ]; flags="flags $_flags"
622		fi
623		if [ $p = "dev" ]; then
624			eval _dev=\$"$nr"
625			[ -n "$_dev" ]; dev="dev $_dev"
626		fi
627		if [ $p = "id" ]; then
628			eval _id=\$"$nr"
629			[ -n "$_id" ]; id="id $_id"
630		fi
631		if [ $p = "port" ]; then
632			eval _port=\$"$nr"
633			[ -n "$_port" ]; port="port $_port"
634		fi
635
636		nr=$((nr + 1))
637	done
638
639	if [ $ip_mptcp -eq 1 ]; then
640		ip -n $ns mptcp endpoint add $addr ${_flags//","/" "} $dev $id $port
641	else
642		ip netns exec $ns ./pm_nl_ctl add $addr $flags $dev $id $port
643	fi
644}
645
646pm_nl_del_endpoint()
647{
648	local ns=$1
649	local id=$2
650	local addr=$3
651
652	if [ $ip_mptcp -eq 1 ]; then
653		[ $id -ne 0 ] && addr=''
654		ip -n $ns mptcp endpoint delete id $id $addr
655	else
656		ip netns exec $ns ./pm_nl_ctl del $id $addr
657	fi
658}
659
660pm_nl_flush_endpoint()
661{
662	local ns=$1
663
664	if [ $ip_mptcp -eq 1 ]; then
665		ip -n $ns mptcp endpoint flush
666	else
667		ip netns exec $ns ./pm_nl_ctl flush
668	fi
669}
670
671pm_nl_show_endpoints()
672{
673	local ns=$1
674
675	if [ $ip_mptcp -eq 1 ]; then
676		ip -n $ns mptcp endpoint show
677	else
678		ip netns exec $ns ./pm_nl_ctl dump
679	fi
680}
681
682pm_nl_change_endpoint()
683{
684	local ns=$1
685	local id=$2
686	local flags=$3
687
688	if [ $ip_mptcp -eq 1 ]; then
689		ip -n $ns mptcp endpoint change id $id ${flags//","/" "}
690	else
691		ip netns exec $ns ./pm_nl_ctl set id $id flags $flags
692	fi
693}
694
695pm_nl_check_endpoint()
696{
697	local line expected_line
698	local need_title=$1
699	local msg="$2"
700	local ns=$3
701	local addr=$4
702	local _flags=""
703	local flags
704	local _port
705	local port
706	local dev
707	local _id
708	local id
709
710	if [ "${need_title}" = 1 ]; then
711		printf "%03u %-36s %s" "${TEST_COUNT}" "${TEST_NAME}" "${msg}"
712	else
713		printf "%-${nr_blank}s %s" " " "${msg}"
714	fi
715
716	shift 4
717	while [ -n "$1" ]; do
718		if [ $1 = "flags" ]; then
719			_flags=$2
720			[ -n "$_flags" ]; flags="flags $_flags"
721			shift
722		elif [ $1 = "dev" ]; then
723			[ -n "$2" ]; dev="dev $1"
724			shift
725		elif [ $1 = "id" ]; then
726			_id=$2
727			[ -n "$_id" ]; id="id $_id"
728			shift
729		elif [ $1 = "port" ]; then
730			_port=$2
731			[ -n "$_port" ]; port=" port $_port"
732			shift
733		fi
734
735		shift
736	done
737
738	if [ -z "$id" ]; then
739		echo "[skip] bad test - missing endpoint id"
740		return
741	fi
742
743	if [ $ip_mptcp -eq 1 ]; then
744		# get line and trim trailing whitespace
745		line=$(ip -n $ns mptcp endpoint show $id)
746		line="${line% }"
747		# the dump order is: address id flags port dev
748		[ -n "$addr" ] && expected_line="$addr"
749		expected_line="$expected_line $id"
750		[ -n "$_flags" ] && expected_line="$expected_line ${_flags//","/" "}"
751		[ -n "$dev" ] && expected_line="$expected_line $dev"
752		[ -n "$port" ] && expected_line="$expected_line $port"
753	else
754		line=$(ip netns exec $ns ./pm_nl_ctl get $_id)
755		# the dump order is: id flags dev address port
756		expected_line="$id"
757		[ -n "$flags" ] && expected_line="$expected_line $flags"
758		[ -n "$dev" ] && expected_line="$expected_line $dev"
759		[ -n "$addr" ] && expected_line="$expected_line $addr"
760		[ -n "$_port" ] && expected_line="$expected_line $_port"
761	fi
762	if [ "$line" = "$expected_line" ]; then
763		echo "[ ok ]"
764	else
765		echo "[fail] expected '$expected_line' found '$line'"
766		fail_test
767	fi
768}
769
770do_transfer()
771{
772	local listener_ns="$1"
773	local connector_ns="$2"
774	local cl_proto="$3"
775	local srv_proto="$4"
776	local connect_addr="$5"
777	local test_link_fail="$6"
778	local addr_nr_ns1="$7"
779	local addr_nr_ns2="$8"
780	local speed="$9"
781	local sflags="${10}"
782
783	local port=$((10000 + TEST_COUNT - 1))
784	local cappid
785	local userspace_pm=0
786	local evts_ns1
787	local evts_ns1_pid
788	local evts_ns2
789	local evts_ns2_pid
790
791	:> "$cout"
792	:> "$sout"
793	:> "$capout"
794
795	if [ $capture -eq 1 ]; then
796		local capuser
797		if [ -z $SUDO_USER ] ; then
798			capuser=""
799		else
800			capuser="-Z $SUDO_USER"
801		fi
802
803		capfile=$(printf "mp_join-%02u-%s.pcap" "$TEST_COUNT" "${listener_ns}")
804
805		echo "Capturing traffic for test $TEST_COUNT into $capfile"
806		ip netns exec ${listener_ns} tcpdump -i any -s 65535 -B 32768 $capuser -w $capfile > "$capout" 2>&1 &
807		cappid=$!
808
809		sleep 1
810	fi
811
812	NSTAT_HISTORY=/tmp/${listener_ns}.nstat ip netns exec ${listener_ns} \
813		nstat -n
814	NSTAT_HISTORY=/tmp/${connector_ns}.nstat ip netns exec ${connector_ns} \
815		nstat -n
816
817	local extra_args
818	if [ $speed = "fast" ]; then
819		extra_args="-j"
820	elif [ $speed = "slow" ]; then
821		extra_args="-r 50"
822	elif [[ $speed = "speed_"* ]]; then
823		extra_args="-r ${speed:6}"
824	fi
825
826	if [[ "${addr_nr_ns1}" = "userspace_"* ]]; then
827		userspace_pm=1
828		addr_nr_ns1=${addr_nr_ns1:10}
829	fi
830
831	local flags="subflow"
832	local extra_cl_args=""
833	local extra_srv_args=""
834	local trunc_size=""
835	if [[ "${addr_nr_ns2}" = "fastclose_"* ]]; then
836		if [ ${test_link_fail} -le 1 ]; then
837			echo "fastclose tests need test_link_fail argument"
838			fail_test
839			return 1
840		fi
841
842		# disconnect
843		trunc_size=${test_link_fail}
844		local side=${addr_nr_ns2:10}
845
846		if [ ${side} = "client" ]; then
847			extra_cl_args="-f ${test_link_fail}"
848			extra_srv_args="-f -1"
849		elif [ ${side} = "server" ]; then
850			extra_srv_args="-f ${test_link_fail}"
851			extra_cl_args="-f -1"
852		else
853			echo "wrong/unknown fastclose spec ${side}"
854			fail_test
855			return 1
856		fi
857		addr_nr_ns2=0
858	elif [[ "${addr_nr_ns2}" = "userspace_"* ]]; then
859		userspace_pm=1
860		addr_nr_ns2=${addr_nr_ns2:10}
861	elif [[ "${addr_nr_ns2}" = "fullmesh_"* ]]; then
862		flags="${flags},fullmesh"
863		addr_nr_ns2=${addr_nr_ns2:9}
864	fi
865
866	if [ $userspace_pm -eq 1 ]; then
867		evts_ns1=$(mktemp)
868		evts_ns2=$(mktemp)
869		:> "$evts_ns1"
870		:> "$evts_ns2"
871		ip netns exec ${listener_ns} ./pm_nl_ctl events >> "$evts_ns1" 2>&1 &
872		evts_ns1_pid=$!
873		ip netns exec ${connector_ns} ./pm_nl_ctl events >> "$evts_ns2" 2>&1 &
874		evts_ns2_pid=$!
875	fi
876
877	local local_addr
878	if is_v6 "${connect_addr}"; then
879		local_addr="::"
880	else
881		local_addr="0.0.0.0"
882	fi
883
884	extra_srv_args="$extra_args $extra_srv_args"
885	if [ "$test_link_fail" -gt 1 ];then
886		timeout ${timeout_test} \
887			ip netns exec ${listener_ns} \
888				./mptcp_connect -t ${timeout_poll} -l -p $port -s ${srv_proto} \
889					$extra_srv_args ${local_addr} < "$sinfail" > "$sout" &
890	else
891		timeout ${timeout_test} \
892			ip netns exec ${listener_ns} \
893				./mptcp_connect -t ${timeout_poll} -l -p $port -s ${srv_proto} \
894					$extra_srv_args ${local_addr} < "$sin" > "$sout" &
895	fi
896	local spid=$!
897
898	wait_local_port_listen "${listener_ns}" "${port}"
899
900	extra_cl_args="$extra_args $extra_cl_args"
901	if [ "$test_link_fail" -eq 0 ];then
902		timeout ${timeout_test} \
903			ip netns exec ${connector_ns} \
904				./mptcp_connect -t ${timeout_poll} -p $port -s ${cl_proto} \
905					$extra_cl_args $connect_addr < "$cin" > "$cout" &
906	elif [ "$test_link_fail" -eq 1 ] || [ "$test_link_fail" -eq 2 ];then
907		( cat "$cinfail" ; sleep 2; link_failure $listener_ns ; cat "$cinfail" ) | \
908			tee "$cinsent" | \
909			timeout ${timeout_test} \
910				ip netns exec ${connector_ns} \
911					./mptcp_connect -t ${timeout_poll} -p $port -s ${cl_proto} \
912						$extra_cl_args $connect_addr > "$cout" &
913	else
914		tee "$cinsent" < "$cinfail" | \
915			timeout ${timeout_test} \
916				ip netns exec ${connector_ns} \
917					./mptcp_connect -t ${timeout_poll} -p $port -s ${cl_proto} \
918						$extra_cl_args $connect_addr > "$cout" &
919	fi
920	local cpid=$!
921
922	# let the mptcp subflow be established in background before
923	# do endpoint manipulation
924	if [ $addr_nr_ns1 != "0" ] || [ $addr_nr_ns2 != "0" ]; then
925		sleep 1
926	fi
927
928	if [ $addr_nr_ns1 -gt 0 ]; then
929		local counter=2
930		local add_nr_ns1=${addr_nr_ns1}
931		local id=10
932		local tk
933		while [ $add_nr_ns1 -gt 0 ]; do
934			local addr
935			if is_v6 "${connect_addr}"; then
936				addr="dead:beef:$counter::1"
937			else
938				addr="10.0.$counter.1"
939			fi
940			if [ $userspace_pm -eq 0 ]; then
941				pm_nl_add_endpoint $ns1 $addr flags signal
942			else
943				tk=$(sed -n 's/.*\(token:\)\([[:digit:]]*\).*$/\2/p;q' "$evts_ns1")
944				ip netns exec ${listener_ns} ./pm_nl_ctl ann $addr token $tk id $id
945				sleep 1
946				sp=$(grep "type:10" "$evts_ns1" |
947				     sed -n 's/.*\(sport:\)\([[:digit:]]*\).*$/\2/p;q')
948				da=$(grep "type:10" "$evts_ns1" |
949				     sed -n 's/.*\(daddr[46]:\)\([0-9a-f:.]*\).*$/\2/p;q')
950				echo "$da" | grep -q ":" && addr="::ffff:$addr"
951				dp=$(grep "type:10" "$evts_ns1" |
952				     sed -n 's/.*\(dport:\)\([[:digit:]]*\).*$/\2/p;q')
953				ip netns exec ${listener_ns} ./pm_nl_ctl rem token $tk id $id
954				ip netns exec ${listener_ns} ./pm_nl_ctl dsf lip "$addr" \
955							lport $sp rip $da rport $dp token $tk
956			fi
957
958			counter=$((counter + 1))
959			add_nr_ns1=$((add_nr_ns1 - 1))
960			id=$((id + 1))
961		done
962	elif [ $addr_nr_ns1 -lt 0 ]; then
963		local rm_nr_ns1=$((-addr_nr_ns1))
964		if [ $rm_nr_ns1 -lt 8 ]; then
965			local counter=0
966			local line
967			pm_nl_show_endpoints ${listener_ns} | while read -r line; do
968				# shellcheck disable=SC2206 # we do want to split per word
969				local arr=($line)
970				local nr=0
971
972				local i
973				for i in "${arr[@]}"; do
974					if [ $i = "id" ]; then
975						if [ $counter -eq $rm_nr_ns1 ]; then
976							break
977						fi
978						id=${arr[$nr+1]}
979						rm_addr=$(rm_addr_count ${connector_ns})
980						pm_nl_del_endpoint ${listener_ns} $id
981						wait_rm_addr ${connector_ns} ${rm_addr}
982						counter=$((counter + 1))
983					fi
984					nr=$((nr + 1))
985				done
986			done
987		elif [ $rm_nr_ns1 -eq 8 ]; then
988			pm_nl_flush_endpoint ${listener_ns}
989		elif [ $rm_nr_ns1 -eq 9 ]; then
990			pm_nl_del_endpoint ${listener_ns} 0 ${connect_addr}
991		fi
992	fi
993
994	# if newly added endpoints must be deleted, give the background msk
995	# some time to created them
996	[ $addr_nr_ns1 -gt 0 ] && [ $addr_nr_ns2 -lt 0 ] && sleep 1
997
998	if [ $addr_nr_ns2 -gt 0 ]; then
999		local add_nr_ns2=${addr_nr_ns2}
1000		local counter=3
1001		local id=20
1002		local tk da dp sp
1003		while [ $add_nr_ns2 -gt 0 ]; do
1004			local addr
1005			if is_v6 "${connect_addr}"; then
1006				addr="dead:beef:$counter::2"
1007			else
1008				addr="10.0.$counter.2"
1009			fi
1010			if [ $userspace_pm -eq 0 ]; then
1011				pm_nl_add_endpoint $ns2 $addr flags $flags
1012			else
1013				tk=$(sed -n 's/.*\(token:\)\([[:digit:]]*\).*$/\2/p;q' "$evts_ns2")
1014				da=$(sed -n 's/.*\(daddr4:\)\([0-9.]*\).*$/\2/p;q' "$evts_ns2")
1015				dp=$(sed -n 's/.*\(dport:\)\([[:digit:]]*\).*$/\2/p;q' "$evts_ns2")
1016				ip netns exec ${connector_ns} ./pm_nl_ctl csf lip $addr lid $id \
1017									rip $da rport $dp token $tk
1018				sleep 1
1019				sp=$(grep "type:10" "$evts_ns2" |
1020				     sed -n 's/.*\(sport:\)\([[:digit:]]*\).*$/\2/p;q')
1021				ip netns exec ${connector_ns} ./pm_nl_ctl rem token $tk id $id
1022				ip netns exec ${connector_ns} ./pm_nl_ctl dsf lip $addr lport $sp \
1023									rip $da rport $dp token $tk
1024			fi
1025			counter=$((counter + 1))
1026			add_nr_ns2=$((add_nr_ns2 - 1))
1027			id=$((id + 1))
1028		done
1029	elif [ $addr_nr_ns2 -lt 0 ]; then
1030		local rm_nr_ns2=$((-addr_nr_ns2))
1031		if [ $rm_nr_ns2 -lt 8 ]; then
1032			local counter=0
1033			local line
1034			pm_nl_show_endpoints ${connector_ns} | while read -r line; do
1035				# shellcheck disable=SC2206 # we do want to split per word
1036				local arr=($line)
1037				local nr=0
1038
1039				local i
1040				for i in "${arr[@]}"; do
1041					if [ $i = "id" ]; then
1042						if [ $counter -eq $rm_nr_ns2 ]; then
1043							break
1044						fi
1045						local id rm_addr
1046						# rm_addr are serialized, allow the previous one to
1047						# complete
1048						id=${arr[$nr+1]}
1049						rm_addr=$(rm_addr_count ${listener_ns})
1050						pm_nl_del_endpoint ${connector_ns} $id
1051						wait_rm_addr ${listener_ns} ${rm_addr}
1052						counter=$((counter + 1))
1053					fi
1054					nr=$((nr + 1))
1055				done
1056			done
1057		elif [ $rm_nr_ns2 -eq 8 ]; then
1058			pm_nl_flush_endpoint ${connector_ns}
1059		elif [ $rm_nr_ns2 -eq 9 ]; then
1060			local addr
1061			if is_v6 "${connect_addr}"; then
1062				addr="dead:beef:1::2"
1063			else
1064				addr="10.0.1.2"
1065			fi
1066			pm_nl_del_endpoint ${connector_ns} 0 $addr
1067		fi
1068	fi
1069
1070	if [ -n "${sflags}" ]; then
1071		sleep 1
1072
1073		local netns
1074		for netns in "$ns1" "$ns2"; do
1075			local line
1076			pm_nl_show_endpoints $netns | while read -r line; do
1077				# shellcheck disable=SC2206 # we do want to split per word
1078				local arr=($line)
1079				local nr=0
1080				local id
1081
1082				local i
1083				for i in "${arr[@]}"; do
1084					if [ $i = "id" ]; then
1085						id=${arr[$nr+1]}
1086					fi
1087					nr=$((nr + 1))
1088				done
1089				pm_nl_change_endpoint $netns $id $sflags
1090			done
1091		done
1092	fi
1093
1094	wait $cpid
1095	local retc=$?
1096	wait $spid
1097	local rets=$?
1098
1099	if [ $capture -eq 1 ]; then
1100	    sleep 1
1101	    kill $cappid
1102	fi
1103
1104	if [ $userspace_pm -eq 1 ]; then
1105		kill_wait $evts_ns1_pid
1106		kill_wait $evts_ns2_pid
1107		rm -rf $evts_ns1 $evts_ns2
1108	fi
1109
1110	NSTAT_HISTORY=/tmp/${listener_ns}.nstat ip netns exec ${listener_ns} \
1111		nstat | grep Tcp > /tmp/${listener_ns}.out
1112	NSTAT_HISTORY=/tmp/${connector_ns}.nstat ip netns exec ${connector_ns} \
1113		nstat | grep Tcp > /tmp/${connector_ns}.out
1114
1115	if [ ${rets} -ne 0 ] || [ ${retc} -ne 0 ]; then
1116		echo " client exit code $retc, server $rets" 1>&2
1117		echo -e "\nnetns ${listener_ns} socket stat for ${port}:" 1>&2
1118		ip netns exec ${listener_ns} ss -Menita 1>&2 -o "sport = :$port"
1119		cat /tmp/${listener_ns}.out
1120		echo -e "\nnetns ${connector_ns} socket stat for ${port}:" 1>&2
1121		ip netns exec ${connector_ns} ss -Menita 1>&2 -o "dport = :$port"
1122		cat /tmp/${connector_ns}.out
1123
1124		cat "$capout"
1125		fail_test
1126		return 1
1127	fi
1128
1129	if [ "$test_link_fail" -gt 1 ];then
1130		check_transfer $sinfail $cout "file received by client" $trunc_size
1131	else
1132		check_transfer $sin $cout "file received by client" $trunc_size
1133	fi
1134	retc=$?
1135	if [ "$test_link_fail" -eq 0 ];then
1136		check_transfer $cin $sout "file received by server" $trunc_size
1137	else
1138		check_transfer $cinsent $sout "file received by server" $trunc_size
1139	fi
1140	rets=$?
1141
1142	if [ $retc -eq 0 ] && [ $rets -eq 0 ];then
1143		cat "$capout"
1144		return 0
1145	fi
1146
1147	cat "$capout"
1148	return 1
1149}
1150
1151make_file()
1152{
1153	local name=$1
1154	local who=$2
1155	local size=$3
1156
1157	dd if=/dev/urandom of="$name" bs=1024 count=$size 2> /dev/null
1158	echo -e "\nMPTCP_TEST_FILE_END_MARKER" >> "$name"
1159
1160	echo "Created $name (size $size KB) containing data sent by $who"
1161}
1162
1163run_tests()
1164{
1165	local listener_ns="$1"
1166	local connector_ns="$2"
1167	local connect_addr="$3"
1168	local test_linkfail="${4:-0}"
1169	local addr_nr_ns1="${5:-0}"
1170	local addr_nr_ns2="${6:-0}"
1171	local speed="${7:-fast}"
1172	local sflags="${8:-""}"
1173
1174	local size
1175
1176	# The values above 2 are reused to make test files
1177	# with the given sizes (KB)
1178	if [ "$test_linkfail" -gt 2 ]; then
1179		size=$test_linkfail
1180
1181		if [ -z "$cinfail" ]; then
1182			cinfail=$(mktemp)
1183		fi
1184		make_file "$cinfail" "client" $size
1185	# create the input file for the failure test when
1186	# the first failure test run
1187	elif [ "$test_linkfail" -ne 0 ] && [ -z "$cinfail" ]; then
1188		# the client file must be considerably larger
1189		# of the maximum expected cwin value, or the
1190		# link utilization will be not predicable
1191		size=$((RANDOM%2))
1192		size=$((size+1))
1193		size=$((size*8192))
1194		size=$((size + ( RANDOM % 8192) ))
1195
1196		cinfail=$(mktemp)
1197		make_file "$cinfail" "client" $size
1198	fi
1199
1200	if [ "$test_linkfail" -gt 2 ]; then
1201		size=$test_linkfail
1202
1203		if [ -z "$sinfail" ]; then
1204			sinfail=$(mktemp)
1205		fi
1206		make_file "$sinfail" "server" $size
1207	elif [ "$test_linkfail" -eq 2 ] && [ -z "$sinfail" ]; then
1208		size=$((RANDOM%16))
1209		size=$((size+1))
1210		size=$((size*2048))
1211
1212		sinfail=$(mktemp)
1213		make_file "$sinfail" "server" $size
1214	fi
1215
1216	do_transfer ${listener_ns} ${connector_ns} MPTCP MPTCP ${connect_addr} \
1217		${test_linkfail} ${addr_nr_ns1} ${addr_nr_ns2} ${speed} ${sflags}
1218}
1219
1220dump_stats()
1221{
1222	echo Server ns stats
1223	ip netns exec $ns1 nstat -as | grep Tcp
1224	echo Client ns stats
1225	ip netns exec $ns2 nstat -as | grep Tcp
1226}
1227
1228chk_csum_nr()
1229{
1230	local csum_ns1=${1:-0}
1231	local csum_ns2=${2:-0}
1232	local count
1233	local dump_stats
1234	local extra_msg=""
1235	local allow_multi_errors_ns1=0
1236	local allow_multi_errors_ns2=0
1237
1238	if [[ "${csum_ns1}" = "+"* ]]; then
1239		allow_multi_errors_ns1=1
1240		csum_ns1=${csum_ns1:1}
1241	fi
1242	if [[ "${csum_ns2}" = "+"* ]]; then
1243		allow_multi_errors_ns2=1
1244		csum_ns2=${csum_ns2:1}
1245	fi
1246
1247	printf "%-${nr_blank}s %s" " " "sum"
1248	count=$(get_counter ${ns1} "MPTcpExtDataCsumErr")
1249	if [ "$count" != "$csum_ns1" ]; then
1250		extra_msg="$extra_msg ns1=$count"
1251	fi
1252	if [ -z "$count" ]; then
1253		echo -n "[skip]"
1254	elif { [ "$count" != $csum_ns1 ] && [ $allow_multi_errors_ns1 -eq 0 ]; } ||
1255	   { [ "$count" -lt $csum_ns1 ] && [ $allow_multi_errors_ns1 -eq 1 ]; }; then
1256		echo "[fail] got $count data checksum error[s] expected $csum_ns1"
1257		fail_test
1258		dump_stats=1
1259	else
1260		echo -n "[ ok ]"
1261	fi
1262	echo -n " - csum  "
1263	count=$(get_counter ${ns2} "MPTcpExtDataCsumErr")
1264	if [ "$count" != "$csum_ns2" ]; then
1265		extra_msg="$extra_msg ns2=$count"
1266	fi
1267	if [ -z "$count" ]; then
1268		echo -n "[skip]"
1269	elif { [ "$count" != $csum_ns2 ] && [ $allow_multi_errors_ns2 -eq 0 ]; } ||
1270	   { [ "$count" -lt $csum_ns2 ] && [ $allow_multi_errors_ns2 -eq 1 ]; }; then
1271		echo "[fail] got $count data checksum error[s] expected $csum_ns2"
1272		fail_test
1273		dump_stats=1
1274	else
1275		echo -n "[ ok ]"
1276	fi
1277	[ "${dump_stats}" = 1 ] && dump_stats
1278
1279	echo "$extra_msg"
1280}
1281
1282chk_fail_nr()
1283{
1284	local fail_tx=$1
1285	local fail_rx=$2
1286	local ns_invert=${3:-""}
1287	local count
1288	local dump_stats
1289	local ns_tx=$ns1
1290	local ns_rx=$ns2
1291	local extra_msg=""
1292	local allow_tx_lost=0
1293	local allow_rx_lost=0
1294
1295	if [[ $ns_invert = "invert" ]]; then
1296		ns_tx=$ns2
1297		ns_rx=$ns1
1298		extra_msg=" invert"
1299	fi
1300
1301	if [[ "${fail_tx}" = "-"* ]]; then
1302		allow_tx_lost=1
1303		fail_tx=${fail_tx:1}
1304	fi
1305	if [[ "${fail_rx}" = "-"* ]]; then
1306		allow_rx_lost=1
1307		fail_rx=${fail_rx:1}
1308	fi
1309
1310	printf "%-${nr_blank}s %s" " " "ftx"
1311	count=$(get_counter ${ns_tx} "MPTcpExtMPFailTx")
1312	if [ "$count" != "$fail_tx" ]; then
1313		extra_msg="$extra_msg,tx=$count"
1314	fi
1315	if [ -z "$count" ]; then
1316		echo -n "[skip]"
1317	elif { [ "$count" != "$fail_tx" ] && [ $allow_tx_lost -eq 0 ]; } ||
1318	   { [ "$count" -gt "$fail_tx" ] && [ $allow_tx_lost -eq 1 ]; }; then
1319		echo "[fail] got $count MP_FAIL[s] TX expected $fail_tx"
1320		fail_test
1321		dump_stats=1
1322	else
1323		echo -n "[ ok ]"
1324	fi
1325
1326	echo -n " - failrx"
1327	count=$(get_counter ${ns_rx} "MPTcpExtMPFailRx")
1328	if [ "$count" != "$fail_rx" ]; then
1329		extra_msg="$extra_msg,rx=$count"
1330	fi
1331	if [ -z "$count" ]; then
1332		echo -n "[skip]"
1333	elif { [ "$count" != "$fail_rx" ] && [ $allow_rx_lost -eq 0 ]; } ||
1334	   { [ "$count" -gt "$fail_rx" ] && [ $allow_rx_lost -eq 1 ]; }; then
1335		echo "[fail] got $count MP_FAIL[s] RX expected $fail_rx"
1336		fail_test
1337		dump_stats=1
1338	else
1339		echo -n "[ ok ]"
1340	fi
1341
1342	[ "${dump_stats}" = 1 ] && dump_stats
1343
1344	echo "$extra_msg"
1345}
1346
1347chk_fclose_nr()
1348{
1349	local fclose_tx=$1
1350	local fclose_rx=$2
1351	local ns_invert=$3
1352	local count
1353	local dump_stats
1354	local ns_tx=$ns2
1355	local ns_rx=$ns1
1356	local extra_msg="   "
1357
1358	if [[ $ns_invert = "invert" ]]; then
1359		ns_tx=$ns1
1360		ns_rx=$ns2
1361		extra_msg=${extra_msg}"invert"
1362	fi
1363
1364	printf "%-${nr_blank}s %s" " " "ctx"
1365	count=$(get_counter ${ns_tx} "MPTcpExtMPFastcloseTx")
1366	if [ -z "$count" ]; then
1367		echo -n "[skip]"
1368	elif [ "$count" != "$fclose_tx" ]; then
1369		extra_msg="$extra_msg,tx=$count"
1370		echo "[fail] got $count MP_FASTCLOSE[s] TX expected $fclose_tx"
1371		fail_test
1372		dump_stats=1
1373	else
1374		echo -n "[ ok ]"
1375	fi
1376
1377	echo -n " - fclzrx"
1378	count=$(get_counter ${ns_rx} "MPTcpExtMPFastcloseRx")
1379	if [ -z "$count" ]; then
1380		echo -n "[skip]"
1381	elif [ "$count" != "$fclose_rx" ]; then
1382		extra_msg="$extra_msg,rx=$count"
1383		echo "[fail] got $count MP_FASTCLOSE[s] RX expected $fclose_rx"
1384		fail_test
1385		dump_stats=1
1386	else
1387		echo -n "[ ok ]"
1388	fi
1389
1390	[ "${dump_stats}" = 1 ] && dump_stats
1391
1392	echo "$extra_msg"
1393}
1394
1395chk_rst_nr()
1396{
1397	local rst_tx=$1
1398	local rst_rx=$2
1399	local ns_invert=${3:-""}
1400	local count
1401	local dump_stats
1402	local ns_tx=$ns1
1403	local ns_rx=$ns2
1404	local extra_msg=""
1405
1406	if [[ $ns_invert = "invert" ]]; then
1407		ns_tx=$ns2
1408		ns_rx=$ns1
1409		extra_msg="   invert"
1410	fi
1411
1412	printf "%-${nr_blank}s %s" " " "rtx"
1413	count=$(get_counter ${ns_tx} "MPTcpExtMPRstTx")
1414	if [ -z "$count" ]; then
1415		echo -n "[skip]"
1416	# accept more rst than expected except if we don't expect any
1417	elif { [ $rst_tx -ne 0 ] && [ $count -lt $rst_tx ]; } ||
1418	     { [ $rst_tx -eq 0 ] && [ $count -ne 0 ]; }; then
1419		echo "[fail] got $count MP_RST[s] TX expected $rst_tx"
1420		fail_test
1421		dump_stats=1
1422	else
1423		echo -n "[ ok ]"
1424	fi
1425
1426	echo -n " - rstrx "
1427	count=$(get_counter ${ns_rx} "MPTcpExtMPRstRx")
1428	if [ -z "$count" ]; then
1429		echo -n "[skip]"
1430	# accept more rst than expected except if we don't expect any
1431	elif { [ $rst_rx -ne 0 ] && [ $count -lt $rst_rx ]; } ||
1432	     { [ $rst_rx -eq 0 ] && [ $count -ne 0 ]; }; then
1433		echo "[fail] got $count MP_RST[s] RX expected $rst_rx"
1434		fail_test
1435		dump_stats=1
1436	else
1437		echo -n "[ ok ]"
1438	fi
1439
1440	[ "${dump_stats}" = 1 ] && dump_stats
1441
1442	echo "$extra_msg"
1443}
1444
1445chk_infi_nr()
1446{
1447	local infi_tx=$1
1448	local infi_rx=$2
1449	local count
1450	local dump_stats
1451
1452	printf "%-${nr_blank}s %s" " " "itx"
1453	count=$(get_counter ${ns2} "MPTcpExtInfiniteMapTx")
1454	if [ -z "$count" ]; then
1455		echo -n "[skip]"
1456	elif [ "$count" != "$infi_tx" ]; then
1457		echo "[fail] got $count infinite map[s] TX expected $infi_tx"
1458		fail_test
1459		dump_stats=1
1460	else
1461		echo -n "[ ok ]"
1462	fi
1463
1464	echo -n " - infirx"
1465	count=$(get_counter ${ns1} "MPTcpExtInfiniteMapRx")
1466	if [ -z "$count" ]; then
1467		echo "[skip]"
1468	elif [ "$count" != "$infi_rx" ]; then
1469		echo "[fail] got $count infinite map[s] RX expected $infi_rx"
1470		fail_test
1471		dump_stats=1
1472	else
1473		echo "[ ok ]"
1474	fi
1475
1476	[ "${dump_stats}" = 1 ] && dump_stats
1477}
1478
1479chk_join_nr()
1480{
1481	local syn_nr=$1
1482	local syn_ack_nr=$2
1483	local ack_nr=$3
1484	local csum_ns1=${4:-0}
1485	local csum_ns2=${5:-0}
1486	local fail_nr=${6:-0}
1487	local rst_nr=${7:-0}
1488	local infi_nr=${8:-0}
1489	local corrupted_pkts=${9:-0}
1490	local count
1491	local dump_stats
1492	local with_cookie
1493	local title="${TEST_NAME}"
1494
1495	if [ "${corrupted_pkts}" -gt 0 ]; then
1496		title+=": ${corrupted_pkts} corrupted pkts"
1497	fi
1498
1499	printf "%03u %-36s %s" "${TEST_COUNT}" "${title}" "syn"
1500	count=$(get_counter ${ns1} "MPTcpExtMPJoinSynRx")
1501	if [ -z "$count" ]; then
1502		echo -n "[skip]"
1503	elif [ "$count" != "$syn_nr" ]; then
1504		echo "[fail] got $count JOIN[s] syn expected $syn_nr"
1505		fail_test
1506		dump_stats=1
1507	else
1508		echo -n "[ ok ]"
1509	fi
1510
1511	echo -n " - synack"
1512	with_cookie=$(ip netns exec $ns2 sysctl -n net.ipv4.tcp_syncookies)
1513	count=$(get_counter ${ns2} "MPTcpExtMPJoinSynAckRx")
1514	if [ -z "$count" ]; then
1515		echo -n "[skip]"
1516	elif [ "$count" != "$syn_ack_nr" ]; then
1517		# simult connections exceeding the limit with cookie enabled could go up to
1518		# synack validation as the conn limit can be enforced reliably only after
1519		# the subflow creation
1520		if [ "$with_cookie" = 2 ] && [ "$count" -gt "$syn_ack_nr" ] && [ "$count" -le "$syn_nr" ]; then
1521			echo -n "[ ok ]"
1522		else
1523			echo "[fail] got $count JOIN[s] synack expected $syn_ack_nr"
1524			fail_test
1525			dump_stats=1
1526		fi
1527	else
1528		echo -n "[ ok ]"
1529	fi
1530
1531	echo -n " - ack"
1532	count=$(get_counter ${ns1} "MPTcpExtMPJoinAckRx")
1533	if [ -z "$count" ]; then
1534		echo "[skip]"
1535	elif [ "$count" != "$ack_nr" ]; then
1536		echo "[fail] got $count JOIN[s] ack expected $ack_nr"
1537		fail_test
1538		dump_stats=1
1539	else
1540		echo "[ ok ]"
1541	fi
1542	[ "${dump_stats}" = 1 ] && dump_stats
1543	if [ $validate_checksum -eq 1 ]; then
1544		chk_csum_nr $csum_ns1 $csum_ns2
1545		chk_fail_nr $fail_nr $fail_nr
1546		chk_rst_nr $rst_nr $rst_nr
1547		chk_infi_nr $infi_nr $infi_nr
1548	fi
1549}
1550
1551# a negative value for 'stale_max' means no upper bound:
1552# for bidirectional transfer, if one peer sleep for a while
1553# - as these tests do - we can have a quite high number of
1554# stale/recover conversions, proportional to
1555# sleep duration/ MPTCP-level RTX interval.
1556chk_stale_nr()
1557{
1558	local ns=$1
1559	local stale_min=$2
1560	local stale_max=$3
1561	local stale_delta=$4
1562	local dump_stats
1563	local stale_nr
1564	local recover_nr
1565
1566	printf "%-${nr_blank}s %-18s" " " "stale"
1567
1568	stale_nr=$(get_counter ${ns} "MPTcpExtSubflowStale")
1569	recover_nr=$(get_counter ${ns} "MPTcpExtSubflowRecover")
1570	if [ -z "$stale_nr" ] || [ -z "$recover_nr" ]; then
1571		echo "[skip]"
1572	elif [ $stale_nr -lt $stale_min ] ||
1573	   { [ $stale_max -gt 0 ] && [ $stale_nr -gt $stale_max ]; } ||
1574	   [ $((stale_nr - recover_nr)) -ne $stale_delta ]; then
1575		echo "[fail] got $stale_nr stale[s] $recover_nr recover[s], " \
1576		     " expected stale in range [$stale_min..$stale_max]," \
1577		     " stale-recover delta $stale_delta "
1578		fail_test
1579		dump_stats=1
1580	else
1581		echo "[ ok ]"
1582	fi
1583
1584	if [ "${dump_stats}" = 1 ]; then
1585		echo $ns stats
1586		ip netns exec $ns ip -s link show
1587		ip netns exec $ns nstat -as | grep MPTcp
1588	fi
1589}
1590
1591chk_add_nr()
1592{
1593	local add_nr=$1
1594	local echo_nr=$2
1595	local port_nr=${3:-0}
1596	local syn_nr=${4:-$port_nr}
1597	local syn_ack_nr=${5:-$port_nr}
1598	local ack_nr=${6:-$port_nr}
1599	local mis_syn_nr=${7:-0}
1600	local mis_ack_nr=${8:-0}
1601	local count
1602	local dump_stats
1603	local timeout
1604
1605	timeout=$(ip netns exec $ns1 sysctl -n net.mptcp.add_addr_timeout)
1606
1607	printf "%-${nr_blank}s %s" " " "add"
1608	count=$(get_counter ${ns2} "MPTcpExtAddAddr")
1609	if [ -z "$count" ]; then
1610		echo -n "[skip]"
1611	# if the test configured a short timeout tolerate greater then expected
1612	# add addrs options, due to retransmissions
1613	elif [ "$count" != "$add_nr" ] && { [ "$timeout" -gt 1 ] || [ "$count" -lt "$add_nr" ]; }; then
1614		echo "[fail] got $count ADD_ADDR[s] expected $add_nr"
1615		fail_test
1616		dump_stats=1
1617	else
1618		echo -n "[ ok ]"
1619	fi
1620
1621	echo -n " - echo  "
1622	count=$(get_counter ${ns1} "MPTcpExtEchoAdd")
1623	if [ -z "$count" ]; then
1624		echo -n "[skip]"
1625	elif [ "$count" != "$echo_nr" ]; then
1626		echo "[fail] got $count ADD_ADDR echo[s] expected $echo_nr"
1627		fail_test
1628		dump_stats=1
1629	else
1630		echo -n "[ ok ]"
1631	fi
1632
1633	if [ $port_nr -gt 0 ]; then
1634		echo -n " - pt "
1635		count=$(get_counter ${ns2} "MPTcpExtPortAdd")
1636		if [ -z "$count" ]; then
1637			echo "[skip]"
1638		elif [ "$count" != "$port_nr" ]; then
1639			echo "[fail] got $count ADD_ADDR[s] with a port-number expected $port_nr"
1640			fail_test
1641			dump_stats=1
1642		else
1643			echo "[ ok ]"
1644		fi
1645
1646		printf "%-${nr_blank}s %s" " " "syn"
1647		count=$(get_counter ${ns1} "MPTcpExtMPJoinPortSynRx")
1648		if [ -z "$count" ]; then
1649			echo -n "[skip]"
1650		elif [ "$count" != "$syn_nr" ]; then
1651			echo "[fail] got $count JOIN[s] syn with a different \
1652				port-number expected $syn_nr"
1653			fail_test
1654			dump_stats=1
1655		else
1656			echo -n "[ ok ]"
1657		fi
1658
1659		echo -n " - synack"
1660		count=$(get_counter ${ns2} "MPTcpExtMPJoinPortSynAckRx")
1661		if [ -z "$count" ]; then
1662			echo -n "[skip]"
1663		elif [ "$count" != "$syn_ack_nr" ]; then
1664			echo "[fail] got $count JOIN[s] synack with a different \
1665				port-number expected $syn_ack_nr"
1666			fail_test
1667			dump_stats=1
1668		else
1669			echo -n "[ ok ]"
1670		fi
1671
1672		echo -n " - ack"
1673		count=$(get_counter ${ns1} "MPTcpExtMPJoinPortAckRx")
1674		if [ -z "$count" ]; then
1675			echo "[skip]"
1676		elif [ "$count" != "$ack_nr" ]; then
1677			echo "[fail] got $count JOIN[s] ack with a different \
1678				port-number expected $ack_nr"
1679			fail_test
1680			dump_stats=1
1681		else
1682			echo "[ ok ]"
1683		fi
1684
1685		printf "%-${nr_blank}s %s" " " "syn"
1686		count=$(get_counter ${ns1} "MPTcpExtMismatchPortSynRx")
1687		if [ -z "$count" ]; then
1688			echo -n "[skip]"
1689		elif [ "$count" != "$mis_syn_nr" ]; then
1690			echo "[fail] got $count JOIN[s] syn with a mismatched \
1691				port-number expected $mis_syn_nr"
1692			fail_test
1693			dump_stats=1
1694		else
1695			echo -n "[ ok ]"
1696		fi
1697
1698		echo -n " - ack   "
1699		count=$(get_counter ${ns1} "MPTcpExtMismatchPortAckRx")
1700		if [ -z "$count" ]; then
1701			echo "[skip]"
1702		elif [ "$count" != "$mis_ack_nr" ]; then
1703			echo "[fail] got $count JOIN[s] ack with a mismatched \
1704				port-number expected $mis_ack_nr"
1705			fail_test
1706			dump_stats=1
1707		else
1708			echo "[ ok ]"
1709		fi
1710	else
1711		echo ""
1712	fi
1713
1714	[ "${dump_stats}" = 1 ] && dump_stats
1715}
1716
1717chk_rm_nr()
1718{
1719	local rm_addr_nr=$1
1720	local rm_subflow_nr=$2
1721	local invert
1722	local simult
1723	local count
1724	local dump_stats
1725	local addr_ns=$ns1
1726	local subflow_ns=$ns2
1727	local extra_msg=""
1728
1729	shift 2
1730	while [ -n "$1" ]; do
1731		[ "$1" = "invert" ] && invert=true
1732		[ "$1" = "simult" ] && simult=true
1733		shift
1734	done
1735
1736	if [ -z $invert ]; then
1737		addr_ns=$ns1
1738		subflow_ns=$ns2
1739	elif [ $invert = "true" ]; then
1740		addr_ns=$ns2
1741		subflow_ns=$ns1
1742		extra_msg="   invert"
1743	fi
1744
1745	printf "%-${nr_blank}s %s" " " "rm "
1746	count=$(get_counter ${addr_ns} "MPTcpExtRmAddr")
1747	if [ -z "$count" ]; then
1748		echo -n "[skip]"
1749	elif [ "$count" != "$rm_addr_nr" ]; then
1750		echo "[fail] got $count RM_ADDR[s] expected $rm_addr_nr"
1751		fail_test
1752		dump_stats=1
1753	else
1754		echo -n "[ ok ]"
1755	fi
1756
1757	echo -n " - rmsf  "
1758	count=$(get_counter ${subflow_ns} "MPTcpExtRmSubflow")
1759	if [ -z "$count" ]; then
1760		echo -n "[skip]"
1761	elif [ -n "$simult" ]; then
1762		local cnt suffix
1763
1764		cnt=$(get_counter ${addr_ns} "MPTcpExtRmSubflow")
1765
1766		# in case of simult flush, the subflow removal count on each side is
1767		# unreliable
1768		count=$((count + cnt))
1769		[ "$count" != "$rm_subflow_nr" ] && suffix="$count in [$rm_subflow_nr:$((rm_subflow_nr*2))]"
1770		if [ $count -ge "$rm_subflow_nr" ] && \
1771		   [ "$count" -le "$((rm_subflow_nr *2 ))" ]; then
1772			echo -n "[ ok ] $suffix"
1773		else
1774			echo "[fail] got $count RM_SUBFLOW[s] expected in range [$rm_subflow_nr:$((rm_subflow_nr*2))]"
1775			fail_test
1776			dump_stats=1
1777		fi
1778	elif [ "$count" != "$rm_subflow_nr" ]; then
1779		echo "[fail] got $count RM_SUBFLOW[s] expected $rm_subflow_nr"
1780		fail_test
1781		dump_stats=1
1782	else
1783		echo -n "[ ok ]"
1784	fi
1785
1786	[ "${dump_stats}" = 1 ] && dump_stats
1787
1788	echo "$extra_msg"
1789}
1790
1791chk_prio_nr()
1792{
1793	local mp_prio_nr_tx=$1
1794	local mp_prio_nr_rx=$2
1795	local count
1796	local dump_stats
1797
1798	printf "%-${nr_blank}s %s" " " "ptx"
1799	count=$(get_counter ${ns1} "MPTcpExtMPPrioTx")
1800	if [ -z "$count" ]; then
1801		echo -n "[skip]"
1802	elif [ "$count" != "$mp_prio_nr_tx" ]; then
1803		echo "[fail] got $count MP_PRIO[s] TX expected $mp_prio_nr_tx"
1804		fail_test
1805		dump_stats=1
1806	else
1807		echo -n "[ ok ]"
1808	fi
1809
1810	echo -n " - prx   "
1811	count=$(get_counter ${ns1} "MPTcpExtMPPrioRx")
1812	if [ -z "$count" ]; then
1813		echo "[skip]"
1814	elif [ "$count" != "$mp_prio_nr_rx" ]; then
1815		echo "[fail] got $count MP_PRIO[s] RX expected $mp_prio_nr_rx"
1816		fail_test
1817		dump_stats=1
1818	else
1819		echo "[ ok ]"
1820	fi
1821
1822	[ "${dump_stats}" = 1 ] && dump_stats
1823}
1824
1825chk_subflow_nr()
1826{
1827	local need_title="$1"
1828	local msg="$2"
1829	local subflow_nr=$3
1830	local cnt1
1831	local cnt2
1832	local dump_stats
1833
1834	if [ -n "${need_title}" ]; then
1835		printf "%03u %-36s %s" "${TEST_COUNT}" "${TEST_NAME}" "${msg}"
1836	else
1837		printf "%-${nr_blank}s %s" " " "${msg}"
1838	fi
1839
1840	cnt1=$(ss -N $ns1 -tOni | grep -c token)
1841	cnt2=$(ss -N $ns2 -tOni | grep -c token)
1842	if [ "$cnt1" != "$subflow_nr" ] || [ "$cnt2" != "$subflow_nr" ]; then
1843		echo "[fail] got $cnt1:$cnt2 subflows expected $subflow_nr"
1844		fail_test
1845		dump_stats=1
1846	else
1847		echo "[ ok ]"
1848	fi
1849
1850	if [ "${dump_stats}" = 1 ]; then
1851		ss -N $ns1 -tOni
1852		ss -N $ns1 -tOni | grep token
1853		ip -n $ns1 mptcp endpoint
1854		dump_stats
1855	fi
1856}
1857
1858chk_link_usage()
1859{
1860	local ns=$1
1861	local link=$2
1862	local out=$3
1863	local expected_rate=$4
1864
1865	local tx_link tx_total
1866	tx_link=$(ip netns exec $ns cat /sys/class/net/$link/statistics/tx_bytes)
1867	tx_total=$(stat --format=%s $out)
1868	local tx_rate=$((tx_link * 100 / tx_total))
1869	local tolerance=5
1870
1871	printf "%-${nr_blank}s %-18s" " " "link usage"
1872	if [ $tx_rate -lt $((expected_rate - tolerance)) ] || \
1873	   [ $tx_rate -gt $((expected_rate + tolerance)) ]; then
1874		echo "[fail] got $tx_rate% usage, expected $expected_rate%"
1875		fail_test
1876	else
1877		echo "[ ok ]"
1878	fi
1879}
1880
1881wait_attempt_fail()
1882{
1883	local timeout_ms=$((timeout_poll * 1000))
1884	local time=0
1885	local ns=$1
1886
1887	while [ $time -lt $timeout_ms ]; do
1888		local cnt
1889
1890		cnt=$(get_counter ${ns} "TcpAttemptFails")
1891
1892		[ "$cnt" = 1 ] && return 1
1893		time=$((time + 100))
1894		sleep 0.1
1895	done
1896	return 1
1897}
1898
1899set_userspace_pm()
1900{
1901	local ns=$1
1902
1903	ip netns exec $ns sysctl -q net.mptcp.pm_type=1
1904}
1905
1906subflows_tests()
1907{
1908	if reset "no JOIN"; then
1909		run_tests $ns1 $ns2 10.0.1.1
1910		chk_join_nr 0 0 0
1911	fi
1912
1913	# subflow limited by client
1914	if reset "single subflow, limited by client"; then
1915		pm_nl_set_limits $ns1 0 0
1916		pm_nl_set_limits $ns2 0 0
1917		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
1918		run_tests $ns1 $ns2 10.0.1.1
1919		chk_join_nr 0 0 0
1920	fi
1921
1922	# subflow limited by server
1923	if reset "single subflow, limited by server"; then
1924		pm_nl_set_limits $ns1 0 0
1925		pm_nl_set_limits $ns2 0 1
1926		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
1927		run_tests $ns1 $ns2 10.0.1.1
1928		chk_join_nr 1 1 0
1929	fi
1930
1931	# subflow
1932	if reset "single subflow"; then
1933		pm_nl_set_limits $ns1 0 1
1934		pm_nl_set_limits $ns2 0 1
1935		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
1936		run_tests $ns1 $ns2 10.0.1.1
1937		chk_join_nr 1 1 1
1938	fi
1939
1940	# multiple subflows
1941	if reset "multiple subflows"; then
1942		pm_nl_set_limits $ns1 0 2
1943		pm_nl_set_limits $ns2 0 2
1944		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
1945		pm_nl_add_endpoint $ns2 10.0.2.2 flags subflow
1946		run_tests $ns1 $ns2 10.0.1.1
1947		chk_join_nr 2 2 2
1948	fi
1949
1950	# multiple subflows limited by server
1951	if reset "multiple subflows, limited by server"; then
1952		pm_nl_set_limits $ns1 0 1
1953		pm_nl_set_limits $ns2 0 2
1954		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
1955		pm_nl_add_endpoint $ns2 10.0.2.2 flags subflow
1956		run_tests $ns1 $ns2 10.0.1.1
1957		chk_join_nr 2 2 1
1958	fi
1959
1960	# single subflow, dev
1961	if reset "single subflow, dev"; then
1962		pm_nl_set_limits $ns1 0 1
1963		pm_nl_set_limits $ns2 0 1
1964		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow dev ns2eth3
1965		run_tests $ns1 $ns2 10.0.1.1
1966		chk_join_nr 1 1 1
1967	fi
1968}
1969
1970subflows_error_tests()
1971{
1972	# If a single subflow is configured, and matches the MPC src
1973	# address, no additional subflow should be created
1974	if reset "no MPC reuse with single endpoint"; then
1975		pm_nl_set_limits $ns1 0 1
1976		pm_nl_set_limits $ns2 0 1
1977		pm_nl_add_endpoint $ns2 10.0.1.2 flags subflow
1978		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow
1979		chk_join_nr 0 0 0
1980	fi
1981
1982	# multiple subflows, with subflow creation error
1983	if reset_with_tcp_filter "multi subflows, with failing subflow" ns1 10.0.3.2 REJECT &&
1984	   continue_if mptcp_lib_kallsyms_has "mptcp_pm_subflow_check_next$"; then
1985		pm_nl_set_limits $ns1 0 2
1986		pm_nl_set_limits $ns2 0 2
1987		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
1988		pm_nl_add_endpoint $ns2 10.0.2.2 flags subflow
1989		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow
1990		chk_join_nr 1 1 1
1991	fi
1992
1993	# multiple subflows, with subflow timeout on MPJ
1994	if reset_with_tcp_filter "multi subflows, with subflow timeout" ns1 10.0.3.2 DROP &&
1995	   continue_if mptcp_lib_kallsyms_has "mptcp_pm_subflow_check_next$"; then
1996		pm_nl_set_limits $ns1 0 2
1997		pm_nl_set_limits $ns2 0 2
1998		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
1999		pm_nl_add_endpoint $ns2 10.0.2.2 flags subflow
2000		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow
2001		chk_join_nr 1 1 1
2002	fi
2003
2004	# multiple subflows, check that the endpoint corresponding to
2005	# closed subflow (due to reset) is not reused if additional
2006	# subflows are added later
2007	if reset_with_tcp_filter "multi subflows, fair usage on close" ns1 10.0.3.2 REJECT &&
2008	   continue_if mptcp_lib_kallsyms_has "mptcp_pm_subflow_check_next$"; then
2009		pm_nl_set_limits $ns1 0 1
2010		pm_nl_set_limits $ns2 0 1
2011		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2012		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow &
2013
2014		# mpj subflow will be in TW after the reset
2015		wait_attempt_fail $ns2
2016		pm_nl_add_endpoint $ns2 10.0.2.2 flags subflow
2017		wait
2018
2019		# additional subflow could be created only if the PM select
2020		# the later endpoint, skipping the already used one
2021		chk_join_nr 1 1 1
2022	fi
2023}
2024
2025signal_address_tests()
2026{
2027	# add_address, unused
2028	if reset "unused signal address"; then
2029		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2030		run_tests $ns1 $ns2 10.0.1.1
2031		chk_join_nr 0 0 0
2032		chk_add_nr 1 1
2033	fi
2034
2035	# accept and use add_addr
2036	if reset "signal address"; then
2037		pm_nl_set_limits $ns1 0 1
2038		pm_nl_set_limits $ns2 1 1
2039		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2040		run_tests $ns1 $ns2 10.0.1.1
2041		chk_join_nr 1 1 1
2042		chk_add_nr 1 1
2043	fi
2044
2045	# accept and use add_addr with an additional subflow
2046	# note: signal address in server ns and local addresses in client ns must
2047	# belong to different subnets or one of the listed local address could be
2048	# used for 'add_addr' subflow
2049	if reset "subflow and signal"; then
2050		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2051		pm_nl_set_limits $ns1 0 2
2052		pm_nl_set_limits $ns2 1 2
2053		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2054		run_tests $ns1 $ns2 10.0.1.1
2055		chk_join_nr 2 2 2
2056		chk_add_nr 1 1
2057	fi
2058
2059	# accept and use add_addr with additional subflows
2060	if reset "multiple subflows and signal"; then
2061		pm_nl_set_limits $ns1 0 3
2062		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2063		pm_nl_set_limits $ns2 1 3
2064		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2065		pm_nl_add_endpoint $ns2 10.0.4.2 flags subflow
2066		run_tests $ns1 $ns2 10.0.1.1
2067		chk_join_nr 3 3 3
2068		chk_add_nr 1 1
2069	fi
2070
2071	# signal addresses
2072	if reset "signal addresses"; then
2073		pm_nl_set_limits $ns1 3 3
2074		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2075		pm_nl_add_endpoint $ns1 10.0.3.1 flags signal
2076		pm_nl_add_endpoint $ns1 10.0.4.1 flags signal
2077		pm_nl_set_limits $ns2 3 3
2078		run_tests $ns1 $ns2 10.0.1.1
2079		chk_join_nr 3 3 3
2080		chk_add_nr 3 3
2081	fi
2082
2083	# signal invalid addresses
2084	if reset "signal invalid addresses"; then
2085		pm_nl_set_limits $ns1 3 3
2086		pm_nl_add_endpoint $ns1 10.0.12.1 flags signal
2087		pm_nl_add_endpoint $ns1 10.0.3.1 flags signal
2088		pm_nl_add_endpoint $ns1 10.0.14.1 flags signal
2089		pm_nl_set_limits $ns2 3 3
2090		run_tests $ns1 $ns2 10.0.1.1
2091		chk_join_nr 1 1 1
2092		chk_add_nr 3 3
2093	fi
2094
2095	# signal addresses race test
2096	if reset "signal addresses race test"; then
2097		pm_nl_set_limits $ns1 4 4
2098		pm_nl_set_limits $ns2 4 4
2099		pm_nl_add_endpoint $ns1 10.0.1.1 flags signal
2100		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2101		pm_nl_add_endpoint $ns1 10.0.3.1 flags signal
2102		pm_nl_add_endpoint $ns1 10.0.4.1 flags signal
2103		pm_nl_add_endpoint $ns2 10.0.1.2 flags signal
2104		pm_nl_add_endpoint $ns2 10.0.2.2 flags signal
2105		pm_nl_add_endpoint $ns2 10.0.3.2 flags signal
2106		pm_nl_add_endpoint $ns2 10.0.4.2 flags signal
2107
2108		# the peer could possibly miss some addr notification, allow retransmission
2109		ip netns exec $ns1 sysctl -q net.mptcp.add_addr_timeout=1
2110		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow
2111
2112		# It is not directly linked to the commit introducing this
2113		# symbol but for the parent one which is linked anyway.
2114		if ! mptcp_lib_kallsyms_has "mptcp_pm_subflow_check_next$"; then
2115			chk_join_nr 3 3 2
2116			chk_add_nr 4 4
2117		else
2118			chk_join_nr 3 3 3
2119			# the server will not signal the address terminating
2120			# the MPC subflow
2121			chk_add_nr 3 3
2122		fi
2123	fi
2124}
2125
2126link_failure_tests()
2127{
2128	# accept and use add_addr with additional subflows and link loss
2129	if reset "multiple flows, signal, link failure"; then
2130		# without any b/w limit each veth could spool the packets and get
2131		# them acked at xmit time, so that the corresponding subflow will
2132		# have almost always no outstanding pkts, the scheduler will pick
2133		# always the first subflow and we will have hard time testing
2134		# active backup and link switch-over.
2135		# Let's set some arbitrary (low) virtual link limits.
2136		init_shapers
2137		pm_nl_set_limits $ns1 0 3
2138		pm_nl_add_endpoint $ns1 10.0.2.1 dev ns1eth2 flags signal
2139		pm_nl_set_limits $ns2 1 3
2140		pm_nl_add_endpoint $ns2 10.0.3.2 dev ns2eth3 flags subflow
2141		pm_nl_add_endpoint $ns2 10.0.4.2 dev ns2eth4 flags subflow
2142		run_tests $ns1 $ns2 10.0.1.1 1
2143		chk_join_nr 3 3 3
2144		chk_add_nr 1 1
2145		chk_stale_nr $ns2 1 5 1
2146	fi
2147
2148	# accept and use add_addr with additional subflows and link loss
2149	# for bidirectional transfer
2150	if reset "multi flows, signal, bidi, link fail"; then
2151		init_shapers
2152		pm_nl_set_limits $ns1 0 3
2153		pm_nl_add_endpoint $ns1 10.0.2.1 dev ns1eth2 flags signal
2154		pm_nl_set_limits $ns2 1 3
2155		pm_nl_add_endpoint $ns2 10.0.3.2 dev ns2eth3 flags subflow
2156		pm_nl_add_endpoint $ns2 10.0.4.2 dev ns2eth4 flags subflow
2157		run_tests $ns1 $ns2 10.0.1.1 2
2158		chk_join_nr 3 3 3
2159		chk_add_nr 1 1
2160		chk_stale_nr $ns2 1 -1 1
2161	fi
2162
2163	# 2 subflows plus 1 backup subflow with a lossy link, backup
2164	# will never be used
2165	if reset "backup subflow unused, link failure"; then
2166		init_shapers
2167		pm_nl_set_limits $ns1 0 2
2168		pm_nl_add_endpoint $ns1 10.0.2.1 dev ns1eth2 flags signal
2169		pm_nl_set_limits $ns2 1 2
2170		pm_nl_add_endpoint $ns2 10.0.3.2 dev ns2eth3 flags subflow,backup
2171		FAILING_LINKS="1" \
2172			run_tests $ns1 $ns2 10.0.1.1 1
2173		chk_join_nr 2 2 2
2174		chk_add_nr 1 1
2175		chk_link_usage $ns2 ns2eth3 $cinsent 0
2176	fi
2177
2178	# 2 lossy links after half transfer, backup will get half of
2179	# the traffic
2180	if reset "backup flow used, multi links fail"; then
2181		init_shapers
2182		pm_nl_set_limits $ns1 0 2
2183		pm_nl_add_endpoint $ns1 10.0.2.1 dev ns1eth2 flags signal
2184		pm_nl_set_limits $ns2 1 2
2185		pm_nl_add_endpoint $ns2 10.0.3.2 dev ns2eth3 flags subflow,backup
2186		FAILING_LINKS="1 2" \
2187			run_tests $ns1 $ns2 10.0.1.1 1
2188		chk_join_nr 2 2 2
2189		chk_add_nr 1 1
2190		chk_stale_nr $ns2 2 4 2
2191		chk_link_usage $ns2 ns2eth3 $cinsent 50
2192	fi
2193
2194	# use a backup subflow with the first subflow on a lossy link
2195	# for bidirectional transfer
2196	if reset "backup flow used, bidi, link failure"; then
2197		init_shapers
2198		pm_nl_set_limits $ns1 0 2
2199		pm_nl_add_endpoint $ns1 10.0.2.1 dev ns1eth2 flags signal
2200		pm_nl_set_limits $ns2 1 3
2201		pm_nl_add_endpoint $ns2 10.0.3.2 dev ns2eth3 flags subflow,backup
2202		FAILING_LINKS="1 2" \
2203			run_tests $ns1 $ns2 10.0.1.1 2
2204		chk_join_nr 2 2 2
2205		chk_add_nr 1 1
2206		chk_stale_nr $ns2 1 -1 2
2207		chk_link_usage $ns2 ns2eth3 $cinsent 50
2208	fi
2209}
2210
2211add_addr_timeout_tests()
2212{
2213	# add_addr timeout
2214	if reset_with_add_addr_timeout "signal address, ADD_ADDR timeout"; then
2215		pm_nl_set_limits $ns1 0 1
2216		pm_nl_set_limits $ns2 1 1
2217		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2218		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow
2219		chk_join_nr 1 1 1
2220		chk_add_nr 4 0
2221	fi
2222
2223	# add_addr timeout IPv6
2224	if reset_with_add_addr_timeout "signal address, ADD_ADDR6 timeout" 6; then
2225		pm_nl_set_limits $ns1 0 1
2226		pm_nl_set_limits $ns2 1 1
2227		pm_nl_add_endpoint $ns1 dead:beef:2::1 flags signal
2228		run_tests $ns1 $ns2 dead:beef:1::1 0 0 0 slow
2229		chk_join_nr 1 1 1
2230		chk_add_nr 4 0
2231	fi
2232
2233	# signal addresses timeout
2234	if reset_with_add_addr_timeout "signal addresses, ADD_ADDR timeout"; then
2235		pm_nl_set_limits $ns1 2 2
2236		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2237		pm_nl_add_endpoint $ns1 10.0.3.1 flags signal
2238		pm_nl_set_limits $ns2 2 2
2239		run_tests $ns1 $ns2 10.0.1.1 0 0 0 speed_10
2240		chk_join_nr 2 2 2
2241		chk_add_nr 8 0
2242	fi
2243
2244	# signal invalid addresses timeout
2245	if reset_with_add_addr_timeout "invalid address, ADD_ADDR timeout"; then
2246		pm_nl_set_limits $ns1 2 2
2247		pm_nl_add_endpoint $ns1 10.0.12.1 flags signal
2248		pm_nl_add_endpoint $ns1 10.0.3.1 flags signal
2249		pm_nl_set_limits $ns2 2 2
2250		run_tests $ns1 $ns2 10.0.1.1 0 0 0 speed_10
2251		chk_join_nr 1 1 1
2252		chk_add_nr 8 0
2253	fi
2254}
2255
2256remove_tests()
2257{
2258	# single subflow, remove
2259	if reset "remove single subflow"; then
2260		pm_nl_set_limits $ns1 0 1
2261		pm_nl_set_limits $ns2 0 1
2262		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2263		run_tests $ns1 $ns2 10.0.1.1 0 0 -1 slow
2264		chk_join_nr 1 1 1
2265		chk_rm_nr 1 1
2266		chk_rst_nr 0 0
2267	fi
2268
2269	# multiple subflows, remove
2270	if reset "remove multiple subflows"; then
2271		pm_nl_set_limits $ns1 0 2
2272		pm_nl_set_limits $ns2 0 2
2273		pm_nl_add_endpoint $ns2 10.0.2.2 flags subflow
2274		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2275		run_tests $ns1 $ns2 10.0.1.1 0 0 -2 slow
2276		chk_join_nr 2 2 2
2277		chk_rm_nr 2 2
2278		chk_rst_nr 0 0
2279	fi
2280
2281	# single address, remove
2282	if reset "remove single address"; then
2283		pm_nl_set_limits $ns1 0 1
2284		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2285		pm_nl_set_limits $ns2 1 1
2286		run_tests $ns1 $ns2 10.0.1.1 0 -1 0 slow
2287		chk_join_nr 1 1 1
2288		chk_add_nr 1 1
2289		chk_rm_nr 1 1 invert
2290		chk_rst_nr 0 0
2291	fi
2292
2293	# subflow and signal, remove
2294	if reset "remove subflow and signal"; then
2295		pm_nl_set_limits $ns1 0 2
2296		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2297		pm_nl_set_limits $ns2 1 2
2298		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2299		run_tests $ns1 $ns2 10.0.1.1 0 -1 -1 slow
2300		chk_join_nr 2 2 2
2301		chk_add_nr 1 1
2302		chk_rm_nr 1 1
2303		chk_rst_nr 0 0
2304	fi
2305
2306	# subflows and signal, remove
2307	if reset "remove subflows and signal"; then
2308		pm_nl_set_limits $ns1 0 3
2309		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2310		pm_nl_set_limits $ns2 1 3
2311		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2312		pm_nl_add_endpoint $ns2 10.0.4.2 flags subflow
2313		run_tests $ns1 $ns2 10.0.1.1 0 -1 -2 speed_10
2314		chk_join_nr 3 3 3
2315		chk_add_nr 1 1
2316		chk_rm_nr 2 2
2317		chk_rst_nr 0 0
2318	fi
2319
2320	# addresses remove
2321	if reset "remove addresses"; then
2322		pm_nl_set_limits $ns1 3 3
2323		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal id 250
2324		pm_nl_add_endpoint $ns1 10.0.3.1 flags signal
2325		pm_nl_add_endpoint $ns1 10.0.4.1 flags signal
2326		pm_nl_set_limits $ns2 3 3
2327		run_tests $ns1 $ns2 10.0.1.1 0 -3 0 speed_10
2328		chk_join_nr 3 3 3
2329		chk_add_nr 3 3
2330		chk_rm_nr 3 3 invert
2331		chk_rst_nr 0 0
2332	fi
2333
2334	# invalid addresses remove
2335	if reset "remove invalid addresses"; then
2336		pm_nl_set_limits $ns1 3 3
2337		pm_nl_add_endpoint $ns1 10.0.12.1 flags signal
2338		pm_nl_add_endpoint $ns1 10.0.3.1 flags signal
2339		pm_nl_add_endpoint $ns1 10.0.14.1 flags signal
2340		pm_nl_set_limits $ns2 3 3
2341		run_tests $ns1 $ns2 10.0.1.1 0 -3 0 speed_10
2342		chk_join_nr 1 1 1
2343		chk_add_nr 3 3
2344		chk_rm_nr 3 1 invert
2345		chk_rst_nr 0 0
2346	fi
2347
2348	# subflows and signal, flush
2349	if reset "flush subflows and signal"; then
2350		pm_nl_set_limits $ns1 0 3
2351		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2352		pm_nl_set_limits $ns2 1 3
2353		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2354		pm_nl_add_endpoint $ns2 10.0.4.2 flags subflow
2355		run_tests $ns1 $ns2 10.0.1.1 0 -8 -8 slow
2356		chk_join_nr 3 3 3
2357		chk_add_nr 1 1
2358		chk_rm_nr 1 3 invert simult
2359		chk_rst_nr 0 0
2360	fi
2361
2362	# subflows flush
2363	if reset "flush subflows"; then
2364		pm_nl_set_limits $ns1 3 3
2365		pm_nl_set_limits $ns2 3 3
2366		pm_nl_add_endpoint $ns2 10.0.2.2 flags subflow id 150
2367		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2368		pm_nl_add_endpoint $ns2 10.0.4.2 flags subflow
2369		run_tests $ns1 $ns2 10.0.1.1 0 -8 -8 slow
2370		chk_join_nr 3 3 3
2371
2372		if mptcp_lib_kversion_ge 5.18; then
2373			chk_rm_nr 0 3 simult
2374		else
2375			chk_rm_nr 3 3
2376		fi
2377		chk_rst_nr 0 0
2378	fi
2379
2380	# addresses flush
2381	if reset "flush addresses"; then
2382		pm_nl_set_limits $ns1 3 3
2383		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal id 250
2384		pm_nl_add_endpoint $ns1 10.0.3.1 flags signal
2385		pm_nl_add_endpoint $ns1 10.0.4.1 flags signal
2386		pm_nl_set_limits $ns2 3 3
2387		run_tests $ns1 $ns2 10.0.1.1 0 -8 -8 slow
2388		chk_join_nr 3 3 3
2389		chk_add_nr 3 3
2390		chk_rm_nr 3 3 invert simult
2391		chk_rst_nr 0 0
2392	fi
2393
2394	# invalid addresses flush
2395	if reset "flush invalid addresses"; then
2396		pm_nl_set_limits $ns1 3 3
2397		pm_nl_add_endpoint $ns1 10.0.12.1 flags signal
2398		pm_nl_add_endpoint $ns1 10.0.3.1 flags signal
2399		pm_nl_add_endpoint $ns1 10.0.14.1 flags signal
2400		pm_nl_set_limits $ns2 3 3
2401		run_tests $ns1 $ns2 10.0.1.1 0 -8 0 slow
2402		chk_join_nr 1 1 1
2403		chk_add_nr 3 3
2404		chk_rm_nr 3 1 invert
2405		chk_rst_nr 0 0
2406	fi
2407
2408	# remove id 0 subflow
2409	if reset "remove id 0 subflow"; then
2410		pm_nl_set_limits $ns1 0 1
2411		pm_nl_set_limits $ns2 0 1
2412		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2413		run_tests $ns1 $ns2 10.0.1.1 0 0 -9 slow
2414		chk_join_nr 1 1 1
2415		chk_rm_nr 1 1
2416		chk_rst_nr 0 0
2417	fi
2418
2419	# remove id 0 address
2420	if reset "remove id 0 address"; then
2421		pm_nl_set_limits $ns1 0 1
2422		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2423		pm_nl_set_limits $ns2 1 1
2424		run_tests $ns1 $ns2 10.0.1.1 0 -9 0 slow
2425		chk_join_nr 1 1 1
2426		chk_add_nr 1 1
2427		chk_rm_nr 1 1 invert
2428		chk_rst_nr 0 0 invert
2429	fi
2430}
2431
2432add_tests()
2433{
2434	# add single subflow
2435	if reset "add single subflow"; then
2436		pm_nl_set_limits $ns1 0 1
2437		pm_nl_set_limits $ns2 0 1
2438		run_tests $ns1 $ns2 10.0.1.1 0 0 1 slow
2439		chk_join_nr 1 1 1
2440	fi
2441
2442	# add signal address
2443	if reset "add signal address"; then
2444		pm_nl_set_limits $ns1 0 1
2445		pm_nl_set_limits $ns2 1 1
2446		run_tests $ns1 $ns2 10.0.1.1 0 1 0 slow
2447		chk_join_nr 1 1 1
2448		chk_add_nr 1 1
2449	fi
2450
2451	# add multiple subflows
2452	if reset "add multiple subflows"; then
2453		pm_nl_set_limits $ns1 0 2
2454		pm_nl_set_limits $ns2 0 2
2455		run_tests $ns1 $ns2 10.0.1.1 0 0 2 slow
2456		chk_join_nr 2 2 2
2457	fi
2458
2459	# add multiple subflows IPv6
2460	if reset "add multiple subflows IPv6"; then
2461		pm_nl_set_limits $ns1 0 2
2462		pm_nl_set_limits $ns2 0 2
2463		run_tests $ns1 $ns2 dead:beef:1::1 0 0 2 slow
2464		chk_join_nr 2 2 2
2465	fi
2466
2467	# add multiple addresses IPv6
2468	if reset "add multiple addresses IPv6"; then
2469		pm_nl_set_limits $ns1 0 2
2470		pm_nl_set_limits $ns2 2 2
2471		run_tests $ns1 $ns2 dead:beef:1::1 0 2 0 slow
2472		chk_join_nr 2 2 2
2473		chk_add_nr 2 2
2474	fi
2475}
2476
2477ipv6_tests()
2478{
2479	# subflow IPv6
2480	if reset "single subflow IPv6"; then
2481		pm_nl_set_limits $ns1 0 1
2482		pm_nl_set_limits $ns2 0 1
2483		pm_nl_add_endpoint $ns2 dead:beef:3::2 dev ns2eth3 flags subflow
2484		run_tests $ns1 $ns2 dead:beef:1::1 0 0 0 slow
2485		chk_join_nr 1 1 1
2486	fi
2487
2488	# add_address, unused IPv6
2489	if reset "unused signal address IPv6"; then
2490		pm_nl_add_endpoint $ns1 dead:beef:2::1 flags signal
2491		run_tests $ns1 $ns2 dead:beef:1::1 0 0 0 slow
2492		chk_join_nr 0 0 0
2493		chk_add_nr 1 1
2494	fi
2495
2496	# signal address IPv6
2497	if reset "single address IPv6"; then
2498		pm_nl_set_limits $ns1 0 1
2499		pm_nl_add_endpoint $ns1 dead:beef:2::1 flags signal
2500		pm_nl_set_limits $ns2 1 1
2501		run_tests $ns1 $ns2 dead:beef:1::1 0 0 0 slow
2502		chk_join_nr 1 1 1
2503		chk_add_nr 1 1
2504	fi
2505
2506	# single address IPv6, remove
2507	if reset "remove single address IPv6"; then
2508		pm_nl_set_limits $ns1 0 1
2509		pm_nl_add_endpoint $ns1 dead:beef:2::1 flags signal
2510		pm_nl_set_limits $ns2 1 1
2511		run_tests $ns1 $ns2 dead:beef:1::1 0 -1 0 slow
2512		chk_join_nr 1 1 1
2513		chk_add_nr 1 1
2514		chk_rm_nr 1 1 invert
2515	fi
2516
2517	# subflow and signal IPv6, remove
2518	if reset "remove subflow and signal IPv6"; then
2519		pm_nl_set_limits $ns1 0 2
2520		pm_nl_add_endpoint $ns1 dead:beef:2::1 flags signal
2521		pm_nl_set_limits $ns2 1 2
2522		pm_nl_add_endpoint $ns2 dead:beef:3::2 dev ns2eth3 flags subflow
2523		run_tests $ns1 $ns2 dead:beef:1::1 0 -1 -1 slow
2524		chk_join_nr 2 2 2
2525		chk_add_nr 1 1
2526		chk_rm_nr 1 1
2527	fi
2528}
2529
2530v4mapped_tests()
2531{
2532	# subflow IPv4-mapped to IPv4-mapped
2533	if reset "single subflow IPv4-mapped"; then
2534		pm_nl_set_limits $ns1 0 1
2535		pm_nl_set_limits $ns2 0 1
2536		pm_nl_add_endpoint $ns2 "::ffff:10.0.3.2" flags subflow
2537		run_tests $ns1 $ns2 "::ffff:10.0.1.1"
2538		chk_join_nr 1 1 1
2539	fi
2540
2541	# signal address IPv4-mapped with IPv4-mapped sk
2542	if reset "signal address IPv4-mapped"; then
2543		pm_nl_set_limits $ns1 0 1
2544		pm_nl_set_limits $ns2 1 1
2545		pm_nl_add_endpoint $ns1 "::ffff:10.0.2.1" flags signal
2546		run_tests $ns1 $ns2 "::ffff:10.0.1.1"
2547		chk_join_nr 1 1 1
2548		chk_add_nr 1 1
2549	fi
2550
2551	# subflow v4-map-v6
2552	if reset "single subflow v4-map-v6"; then
2553		pm_nl_set_limits $ns1 0 1
2554		pm_nl_set_limits $ns2 0 1
2555		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2556		run_tests $ns1 $ns2 "::ffff:10.0.1.1"
2557		chk_join_nr 1 1 1
2558	fi
2559
2560	# signal address v4-map-v6
2561	if reset "signal address v4-map-v6"; then
2562		pm_nl_set_limits $ns1 0 1
2563		pm_nl_set_limits $ns2 1 1
2564		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2565		run_tests $ns1 $ns2 "::ffff:10.0.1.1"
2566		chk_join_nr 1 1 1
2567		chk_add_nr 1 1
2568	fi
2569
2570	# subflow v6-map-v4
2571	if reset "single subflow v6-map-v4"; then
2572		pm_nl_set_limits $ns1 0 1
2573		pm_nl_set_limits $ns2 0 1
2574		pm_nl_add_endpoint $ns2 "::ffff:10.0.3.2" flags subflow
2575		run_tests $ns1 $ns2 10.0.1.1
2576		chk_join_nr 1 1 1
2577	fi
2578
2579	# signal address v6-map-v4
2580	if reset "signal address v6-map-v4"; then
2581		pm_nl_set_limits $ns1 0 1
2582		pm_nl_set_limits $ns2 1 1
2583		pm_nl_add_endpoint $ns1 "::ffff:10.0.2.1" flags signal
2584		run_tests $ns1 $ns2 10.0.1.1
2585		chk_join_nr 1 1 1
2586		chk_add_nr 1 1
2587	fi
2588
2589	# no subflow IPv6 to v4 address
2590	if reset "no JOIN with diff families v4-v6"; then
2591		pm_nl_set_limits $ns1 0 1
2592		pm_nl_set_limits $ns2 0 1
2593		pm_nl_add_endpoint $ns2 dead:beef:2::2 flags subflow
2594		run_tests $ns1 $ns2 10.0.1.1
2595		chk_join_nr 0 0 0
2596	fi
2597
2598	# no subflow IPv6 to v4 address even if v6 has a valid v4 at the end
2599	if reset "no JOIN with diff families v4-v6-2"; then
2600		pm_nl_set_limits $ns1 0 1
2601		pm_nl_set_limits $ns2 0 1
2602		pm_nl_add_endpoint $ns2 dead:beef:2::10.0.3.2 flags subflow
2603		run_tests $ns1 $ns2 10.0.1.1
2604		chk_join_nr 0 0 0
2605	fi
2606
2607	# no subflow IPv4 to v6 address, no need to slow down too then
2608	if reset "no JOIN with diff families v6-v4"; then
2609		pm_nl_set_limits $ns1 0 1
2610		pm_nl_set_limits $ns2 0 1
2611		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2612		run_tests $ns1 $ns2 dead:beef:1::1
2613		chk_join_nr 0 0 0
2614	fi
2615}
2616
2617backup_tests()
2618{
2619	# single subflow, backup
2620	if reset "single subflow, backup" &&
2621	   continue_if mptcp_lib_kallsyms_has "subflow_rebuild_header$"; then
2622		pm_nl_set_limits $ns1 0 1
2623		pm_nl_set_limits $ns2 0 1
2624		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow,backup
2625		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow nobackup
2626		chk_join_nr 1 1 1
2627		chk_prio_nr 0 1
2628	fi
2629
2630	# single address, backup
2631	if reset "single address, backup" &&
2632	   continue_if mptcp_lib_kallsyms_has "subflow_rebuild_header$"; then
2633		pm_nl_set_limits $ns1 0 1
2634		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2635		pm_nl_set_limits $ns2 1 1
2636		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow backup
2637		chk_join_nr 1 1 1
2638		chk_add_nr 1 1
2639		chk_prio_nr 1 1
2640	fi
2641
2642	# single address with port, backup
2643	if reset "single address with port, backup" &&
2644	   continue_if mptcp_lib_kallsyms_has "subflow_rebuild_header$"; then
2645		pm_nl_set_limits $ns1 0 1
2646		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal port 10100
2647		pm_nl_set_limits $ns2 1 1
2648		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow backup
2649		chk_join_nr 1 1 1
2650		chk_add_nr 1 1
2651		chk_prio_nr 1 1
2652	fi
2653
2654	if reset "mpc backup" &&
2655	   continue_if mptcp_lib_kallsyms_doesnt_have "T mptcp_subflow_send_ack$"; then
2656		pm_nl_add_endpoint $ns2 10.0.1.2 flags subflow,backup
2657		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow
2658		chk_join_nr 0 0 0
2659		chk_prio_nr 0 1
2660	fi
2661
2662	if reset "mpc backup both sides" &&
2663	   continue_if mptcp_lib_kallsyms_doesnt_have "T mptcp_subflow_send_ack$"; then
2664		pm_nl_add_endpoint $ns1 10.0.1.1 flags subflow,backup
2665		pm_nl_add_endpoint $ns2 10.0.1.2 flags subflow,backup
2666		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow
2667		chk_join_nr 0 0 0
2668		chk_prio_nr 1 1
2669	fi
2670
2671	if reset "mpc switch to backup" &&
2672	   continue_if mptcp_lib_kallsyms_doesnt_have "T mptcp_subflow_send_ack$"; then
2673		pm_nl_add_endpoint $ns2 10.0.1.2 flags subflow
2674		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow backup
2675		chk_join_nr 0 0 0
2676		chk_prio_nr 0 1
2677	fi
2678
2679	if reset "mpc switch to backup both sides" &&
2680	   continue_if mptcp_lib_kallsyms_doesnt_have "T mptcp_subflow_send_ack$"; then
2681		pm_nl_add_endpoint $ns1 10.0.1.1 flags subflow
2682		pm_nl_add_endpoint $ns2 10.0.1.2 flags subflow
2683		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow backup
2684		chk_join_nr 0 0 0
2685		chk_prio_nr 1 1
2686	fi
2687}
2688
2689add_addr_ports_tests()
2690{
2691	# signal address with port
2692	if reset "signal address with port"; then
2693		pm_nl_set_limits $ns1 0 1
2694		pm_nl_set_limits $ns2 1 1
2695		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal port 10100
2696		run_tests $ns1 $ns2 10.0.1.1
2697		chk_join_nr 1 1 1
2698		chk_add_nr 1 1 1
2699	fi
2700
2701	# subflow and signal with port
2702	if reset "subflow and signal with port"; then
2703		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal port 10100
2704		pm_nl_set_limits $ns1 0 2
2705		pm_nl_set_limits $ns2 1 2
2706		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2707		run_tests $ns1 $ns2 10.0.1.1
2708		chk_join_nr 2 2 2
2709		chk_add_nr 1 1 1
2710	fi
2711
2712	# single address with port, remove
2713	if reset "remove single address with port"; then
2714		pm_nl_set_limits $ns1 0 1
2715		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal port 10100
2716		pm_nl_set_limits $ns2 1 1
2717		run_tests $ns1 $ns2 10.0.1.1 0 -1 0 slow
2718		chk_join_nr 1 1 1
2719		chk_add_nr 1 1 1
2720		chk_rm_nr 1 1 invert
2721	fi
2722
2723	# subflow and signal with port, remove
2724	if reset "remove subflow and signal with port"; then
2725		pm_nl_set_limits $ns1 0 2
2726		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal port 10100
2727		pm_nl_set_limits $ns2 1 2
2728		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2729		run_tests $ns1 $ns2 10.0.1.1 0 -1 -1 slow
2730		chk_join_nr 2 2 2
2731		chk_add_nr 1 1 1
2732		chk_rm_nr 1 1
2733	fi
2734
2735	# subflows and signal with port, flush
2736	if reset "flush subflows and signal with port"; then
2737		pm_nl_set_limits $ns1 0 3
2738		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal port 10100
2739		pm_nl_set_limits $ns2 1 3
2740		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2741		pm_nl_add_endpoint $ns2 10.0.4.2 flags subflow
2742		run_tests $ns1 $ns2 10.0.1.1 0 -8 -2 slow
2743		chk_join_nr 3 3 3
2744		chk_add_nr 1 1
2745		chk_rm_nr 1 3 invert simult
2746	fi
2747
2748	# multiple addresses with port
2749	if reset "multiple addresses with port"; then
2750		pm_nl_set_limits $ns1 2 2
2751		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal port 10100
2752		pm_nl_add_endpoint $ns1 10.0.3.1 flags signal port 10100
2753		pm_nl_set_limits $ns2 2 2
2754		run_tests $ns1 $ns2 10.0.1.1
2755		chk_join_nr 2 2 2
2756		chk_add_nr 2 2 2
2757	fi
2758
2759	# multiple addresses with ports
2760	if reset "multiple addresses with ports"; then
2761		pm_nl_set_limits $ns1 2 2
2762		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal port 10100
2763		pm_nl_add_endpoint $ns1 10.0.3.1 flags signal port 10101
2764		pm_nl_set_limits $ns2 2 2
2765		run_tests $ns1 $ns2 10.0.1.1
2766		chk_join_nr 2 2 2
2767		chk_add_nr 2 2 2
2768	fi
2769}
2770
2771syncookies_tests()
2772{
2773	# single subflow, syncookies
2774	if reset_with_cookies "single subflow with syn cookies"; then
2775		pm_nl_set_limits $ns1 0 1
2776		pm_nl_set_limits $ns2 0 1
2777		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2778		run_tests $ns1 $ns2 10.0.1.1
2779		chk_join_nr 1 1 1
2780	fi
2781
2782	# multiple subflows with syn cookies
2783	if reset_with_cookies "multiple subflows with syn cookies"; then
2784		pm_nl_set_limits $ns1 0 2
2785		pm_nl_set_limits $ns2 0 2
2786		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2787		pm_nl_add_endpoint $ns2 10.0.2.2 flags subflow
2788		run_tests $ns1 $ns2 10.0.1.1
2789		chk_join_nr 2 2 2
2790	fi
2791
2792	# multiple subflows limited by server
2793	if reset_with_cookies "subflows limited by server w cookies"; then
2794		pm_nl_set_limits $ns1 0 1
2795		pm_nl_set_limits $ns2 0 2
2796		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2797		pm_nl_add_endpoint $ns2 10.0.2.2 flags subflow
2798		run_tests $ns1 $ns2 10.0.1.1
2799		chk_join_nr 2 1 1
2800	fi
2801
2802	# test signal address with cookies
2803	if reset_with_cookies "signal address with syn cookies"; then
2804		pm_nl_set_limits $ns1 0 1
2805		pm_nl_set_limits $ns2 1 1
2806		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2807		run_tests $ns1 $ns2 10.0.1.1
2808		chk_join_nr 1 1 1
2809		chk_add_nr 1 1
2810	fi
2811
2812	# test cookie with subflow and signal
2813	if reset_with_cookies "subflow and signal w cookies"; then
2814		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2815		pm_nl_set_limits $ns1 0 2
2816		pm_nl_set_limits $ns2 1 2
2817		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2818		run_tests $ns1 $ns2 10.0.1.1
2819		chk_join_nr 2 2 2
2820		chk_add_nr 1 1
2821	fi
2822
2823	# accept and use add_addr with additional subflows
2824	if reset_with_cookies "subflows and signal w. cookies"; then
2825		pm_nl_set_limits $ns1 0 3
2826		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2827		pm_nl_set_limits $ns2 1 3
2828		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2829		pm_nl_add_endpoint $ns2 10.0.4.2 flags subflow
2830		run_tests $ns1 $ns2 10.0.1.1
2831		chk_join_nr 3 3 3
2832		chk_add_nr 1 1
2833	fi
2834}
2835
2836checksum_tests()
2837{
2838	# checksum test 0 0
2839	if reset_with_checksum 0 0; then
2840		pm_nl_set_limits $ns1 0 1
2841		pm_nl_set_limits $ns2 0 1
2842		run_tests $ns1 $ns2 10.0.1.1
2843		chk_join_nr 0 0 0
2844	fi
2845
2846	# checksum test 1 1
2847	if reset_with_checksum 1 1; then
2848		pm_nl_set_limits $ns1 0 1
2849		pm_nl_set_limits $ns2 0 1
2850		run_tests $ns1 $ns2 10.0.1.1
2851		chk_join_nr 0 0 0
2852	fi
2853
2854	# checksum test 0 1
2855	if reset_with_checksum 0 1; then
2856		pm_nl_set_limits $ns1 0 1
2857		pm_nl_set_limits $ns2 0 1
2858		run_tests $ns1 $ns2 10.0.1.1
2859		chk_join_nr 0 0 0
2860	fi
2861
2862	# checksum test 1 0
2863	if reset_with_checksum 1 0; then
2864		pm_nl_set_limits $ns1 0 1
2865		pm_nl_set_limits $ns2 0 1
2866		run_tests $ns1 $ns2 10.0.1.1
2867		chk_join_nr 0 0 0
2868	fi
2869}
2870
2871deny_join_id0_tests()
2872{
2873	# subflow allow join id0 ns1
2874	if reset_with_allow_join_id0 "single subflow allow join id0 ns1" 1 0; then
2875		pm_nl_set_limits $ns1 1 1
2876		pm_nl_set_limits $ns2 1 1
2877		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2878		run_tests $ns1 $ns2 10.0.1.1
2879		chk_join_nr 1 1 1
2880	fi
2881
2882	# subflow allow join id0 ns2
2883	if reset_with_allow_join_id0 "single subflow allow join id0 ns2" 0 1; then
2884		pm_nl_set_limits $ns1 1 1
2885		pm_nl_set_limits $ns2 1 1
2886		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2887		run_tests $ns1 $ns2 10.0.1.1
2888		chk_join_nr 0 0 0
2889	fi
2890
2891	# signal address allow join id0 ns1
2892	# ADD_ADDRs are not affected by allow_join_id0 value.
2893	if reset_with_allow_join_id0 "signal address allow join id0 ns1" 1 0; then
2894		pm_nl_set_limits $ns1 1 1
2895		pm_nl_set_limits $ns2 1 1
2896		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2897		run_tests $ns1 $ns2 10.0.1.1
2898		chk_join_nr 1 1 1
2899		chk_add_nr 1 1
2900	fi
2901
2902	# signal address allow join id0 ns2
2903	# ADD_ADDRs are not affected by allow_join_id0 value.
2904	if reset_with_allow_join_id0 "signal address allow join id0 ns2" 0 1; then
2905		pm_nl_set_limits $ns1 1 1
2906		pm_nl_set_limits $ns2 1 1
2907		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2908		run_tests $ns1 $ns2 10.0.1.1
2909		chk_join_nr 1 1 1
2910		chk_add_nr 1 1
2911	fi
2912
2913	# subflow and address allow join id0 ns1
2914	if reset_with_allow_join_id0 "subflow and address allow join id0 1" 1 0; then
2915		pm_nl_set_limits $ns1 2 2
2916		pm_nl_set_limits $ns2 2 2
2917		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2918		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2919		run_tests $ns1 $ns2 10.0.1.1
2920		chk_join_nr 2 2 2
2921	fi
2922
2923	# subflow and address allow join id0 ns2
2924	if reset_with_allow_join_id0 "subflow and address allow join id0 2" 0 1; then
2925		pm_nl_set_limits $ns1 2 2
2926		pm_nl_set_limits $ns2 2 2
2927		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2928		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
2929		run_tests $ns1 $ns2 10.0.1.1
2930		chk_join_nr 1 1 1
2931	fi
2932}
2933
2934fullmesh_tests()
2935{
2936	# fullmesh 1
2937	# 2 fullmesh addrs in ns2, added before the connection,
2938	# 1 non-fullmesh addr in ns1, added during the connection.
2939	if reset "fullmesh test 2x1"; then
2940		pm_nl_set_limits $ns1 0 4
2941		pm_nl_set_limits $ns2 1 4
2942		pm_nl_add_endpoint $ns2 10.0.2.2 flags subflow,fullmesh
2943		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow,fullmesh
2944		run_tests $ns1 $ns2 10.0.1.1 0 1 0 slow
2945		chk_join_nr 4 4 4
2946		chk_add_nr 1 1
2947	fi
2948
2949	# fullmesh 2
2950	# 1 non-fullmesh addr in ns1, added before the connection,
2951	# 1 fullmesh addr in ns2, added during the connection.
2952	if reset "fullmesh test 1x1"; then
2953		pm_nl_set_limits $ns1 1 3
2954		pm_nl_set_limits $ns2 1 3
2955		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2956		run_tests $ns1 $ns2 10.0.1.1 0 0 fullmesh_1 slow
2957		chk_join_nr 3 3 3
2958		chk_add_nr 1 1
2959	fi
2960
2961	# fullmesh 3
2962	# 1 non-fullmesh addr in ns1, added before the connection,
2963	# 2 fullmesh addrs in ns2, added during the connection.
2964	if reset "fullmesh test 1x2"; then
2965		pm_nl_set_limits $ns1 2 5
2966		pm_nl_set_limits $ns2 1 5
2967		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2968		run_tests $ns1 $ns2 10.0.1.1 0 0 fullmesh_2 slow
2969		chk_join_nr 5 5 5
2970		chk_add_nr 1 1
2971	fi
2972
2973	# fullmesh 4
2974	# 1 non-fullmesh addr in ns1, added before the connection,
2975	# 2 fullmesh addrs in ns2, added during the connection,
2976	# limit max_subflows to 4.
2977	if reset "fullmesh test 1x2, limited"; then
2978		pm_nl_set_limits $ns1 2 4
2979		pm_nl_set_limits $ns2 1 4
2980		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
2981		run_tests $ns1 $ns2 10.0.1.1 0 0 fullmesh_2 slow
2982		chk_join_nr 4 4 4
2983		chk_add_nr 1 1
2984	fi
2985
2986	# set fullmesh flag
2987	if reset "set fullmesh flag test" &&
2988	   continue_if mptcp_lib_kversion_ge 5.18; then
2989		pm_nl_set_limits $ns1 4 4
2990		pm_nl_add_endpoint $ns1 10.0.2.1 flags subflow
2991		pm_nl_set_limits $ns2 4 4
2992		run_tests $ns1 $ns2 10.0.1.1 0 0 1 slow fullmesh
2993		chk_join_nr 2 2 2
2994		chk_rm_nr 0 1
2995	fi
2996
2997	# set nofullmesh flag
2998	if reset "set nofullmesh flag test" &&
2999	   continue_if mptcp_lib_kversion_ge 5.18; then
3000		pm_nl_set_limits $ns1 4 4
3001		pm_nl_add_endpoint $ns1 10.0.2.1 flags subflow,fullmesh
3002		pm_nl_set_limits $ns2 4 4
3003		run_tests $ns1 $ns2 10.0.1.1 0 0 fullmesh_1 slow nofullmesh
3004		chk_join_nr 2 2 2
3005		chk_rm_nr 0 1
3006	fi
3007
3008	# set backup,fullmesh flags
3009	if reset "set backup,fullmesh flags test" &&
3010	   continue_if mptcp_lib_kversion_ge 5.18; then
3011		pm_nl_set_limits $ns1 4 4
3012		pm_nl_add_endpoint $ns1 10.0.2.1 flags subflow
3013		pm_nl_set_limits $ns2 4 4
3014		run_tests $ns1 $ns2 10.0.1.1 0 0 1 slow backup,fullmesh
3015		chk_join_nr 2 2 2
3016		chk_prio_nr 0 1
3017		chk_rm_nr 0 1
3018	fi
3019
3020	# set nobackup,nofullmesh flags
3021	if reset "set nobackup,nofullmesh flags test" &&
3022	   continue_if mptcp_lib_kversion_ge 5.18; then
3023		pm_nl_set_limits $ns1 4 4
3024		pm_nl_set_limits $ns2 4 4
3025		pm_nl_add_endpoint $ns2 10.0.2.2 flags subflow,backup,fullmesh
3026		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow nobackup,nofullmesh
3027		chk_join_nr 2 2 2
3028		chk_prio_nr 0 1
3029		chk_rm_nr 0 1
3030	fi
3031}
3032
3033fastclose_tests()
3034{
3035	if reset_check_counter "fastclose test" "MPTcpExtMPFastcloseTx"; then
3036		run_tests $ns1 $ns2 10.0.1.1 1024 0 fastclose_client
3037		chk_join_nr 0 0 0
3038		chk_fclose_nr 1 1
3039		chk_rst_nr 1 1 invert
3040	fi
3041
3042	if reset_check_counter "fastclose server test" "MPTcpExtMPFastcloseRx"; then
3043		run_tests $ns1 $ns2 10.0.1.1 1024 0 fastclose_server
3044		chk_join_nr 0 0 0 0 0 0 1
3045		chk_fclose_nr 1 1 invert
3046		chk_rst_nr 1 1
3047	fi
3048}
3049
3050pedit_action_pkts()
3051{
3052	tc -n $ns2 -j -s action show action pedit index 100 | \
3053		grep "packets" | \
3054		sed 's/.*"packets":\([0-9]\+\),.*/\1/'
3055}
3056
3057fail_tests()
3058{
3059	# single subflow
3060	if reset_with_fail "Infinite map" 1; then
3061		run_tests $ns1 $ns2 10.0.1.1 128
3062		chk_join_nr 0 0 0 +1 +0 1 0 1 "$(pedit_action_pkts)"
3063		chk_fail_nr 1 -1 invert
3064	fi
3065
3066	# multiple subflows
3067	if reset_with_fail "MP_FAIL MP_RST" 2; then
3068		tc -n $ns2 qdisc add dev ns2eth1 root netem rate 1mbit delay 5
3069		pm_nl_set_limits $ns1 0 1
3070		pm_nl_set_limits $ns2 0 1
3071		pm_nl_add_endpoint $ns2 10.0.2.2 dev ns2eth2 flags subflow
3072		run_tests $ns1 $ns2 10.0.1.1 1024
3073		chk_join_nr 1 1 1 1 0 1 1 0 "$(pedit_action_pkts)"
3074	fi
3075}
3076
3077userspace_tests()
3078{
3079	# userspace pm type prevents add_addr
3080	if reset "userspace pm type prevents add_addr" &&
3081	   continue_if mptcp_lib_has_file '/proc/sys/net/mptcp/pm_type'; then
3082		set_userspace_pm $ns1
3083		pm_nl_set_limits $ns1 0 2
3084		pm_nl_set_limits $ns2 0 2
3085		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
3086		run_tests $ns1 $ns2 10.0.1.1
3087		chk_join_nr 0 0 0
3088		chk_add_nr 0 0
3089	fi
3090
3091	# userspace pm type does not echo add_addr without daemon
3092	if reset "userspace pm no echo w/o daemon" &&
3093	   continue_if mptcp_lib_has_file '/proc/sys/net/mptcp/pm_type'; then
3094		set_userspace_pm $ns2
3095		pm_nl_set_limits $ns1 0 2
3096		pm_nl_set_limits $ns2 0 2
3097		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
3098		run_tests $ns1 $ns2 10.0.1.1
3099		chk_join_nr 0 0 0
3100		chk_add_nr 1 0
3101	fi
3102
3103	# userspace pm type rejects join
3104	if reset "userspace pm type rejects join" &&
3105	   continue_if mptcp_lib_has_file '/proc/sys/net/mptcp/pm_type'; then
3106		set_userspace_pm $ns1
3107		pm_nl_set_limits $ns1 1 1
3108		pm_nl_set_limits $ns2 1 1
3109		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
3110		run_tests $ns1 $ns2 10.0.1.1
3111		chk_join_nr 1 1 0
3112	fi
3113
3114	# userspace pm type does not send join
3115	if reset "userspace pm type does not send join" &&
3116	   continue_if mptcp_lib_has_file '/proc/sys/net/mptcp/pm_type'; then
3117		set_userspace_pm $ns2
3118		pm_nl_set_limits $ns1 1 1
3119		pm_nl_set_limits $ns2 1 1
3120		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
3121		run_tests $ns1 $ns2 10.0.1.1
3122		chk_join_nr 0 0 0
3123	fi
3124
3125	# userspace pm type prevents mp_prio
3126	if reset "userspace pm type prevents mp_prio" &&
3127	   continue_if mptcp_lib_has_file '/proc/sys/net/mptcp/pm_type'; then
3128		set_userspace_pm $ns1
3129		pm_nl_set_limits $ns1 1 1
3130		pm_nl_set_limits $ns2 1 1
3131		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
3132		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow backup
3133		chk_join_nr 1 1 0
3134		chk_prio_nr 0 0
3135	fi
3136
3137	# userspace pm type prevents rm_addr
3138	if reset "userspace pm type prevents rm_addr" &&
3139	   continue_if mptcp_lib_has_file '/proc/sys/net/mptcp/pm_type'; then
3140		set_userspace_pm $ns1
3141		set_userspace_pm $ns2
3142		pm_nl_set_limits $ns1 0 1
3143		pm_nl_set_limits $ns2 0 1
3144		pm_nl_add_endpoint $ns2 10.0.3.2 flags subflow
3145		run_tests $ns1 $ns2 10.0.1.1 0 0 -1 slow
3146		chk_join_nr 0 0 0
3147		chk_rm_nr 0 0
3148	fi
3149
3150	# userspace pm add & remove address
3151	if reset "userspace pm add & remove address" &&
3152	   continue_if mptcp_lib_has_file '/proc/sys/net/mptcp/pm_type'; then
3153		set_userspace_pm $ns1
3154		pm_nl_set_limits $ns2 1 1
3155		run_tests $ns1 $ns2 10.0.1.1 0 userspace_1 0 slow
3156		chk_join_nr 1 1 1
3157		chk_add_nr 1 1
3158		chk_rm_nr 1 1 invert
3159	fi
3160
3161	# userspace pm create destroy subflow
3162	if reset "userspace pm create destroy subflow" &&
3163	   continue_if mptcp_lib_has_file '/proc/sys/net/mptcp/pm_type'; then
3164		set_userspace_pm $ns2
3165		pm_nl_set_limits $ns1 0 1
3166		run_tests $ns1 $ns2 10.0.1.1 0 0 userspace_1 slow
3167		chk_join_nr 1 1 1
3168		chk_rm_nr 1 1
3169	fi
3170}
3171
3172endpoint_tests()
3173{
3174	# subflow_rebuild_header is needed to support the implicit flag
3175	# userspace pm type prevents add_addr
3176	if reset "implicit EP" &&
3177	   mptcp_lib_kallsyms_has "subflow_rebuild_header$"; then
3178		pm_nl_set_limits $ns1 2 2
3179		pm_nl_set_limits $ns2 2 2
3180		pm_nl_add_endpoint $ns1 10.0.2.1 flags signal
3181		run_tests $ns1 $ns2 10.0.1.1 0 0 0 slow 2>/dev/null &
3182
3183		wait_mpj $ns1
3184		pm_nl_check_endpoint 1 "creation" \
3185			$ns2 10.0.2.2 id 1 flags implicit
3186
3187		pm_nl_add_endpoint $ns2 10.0.2.2 id 33
3188		pm_nl_check_endpoint 0 "ID change is prevented" \
3189			$ns2 10.0.2.2 id 1 flags implicit
3190
3191		pm_nl_add_endpoint $ns2 10.0.2.2 flags signal
3192		pm_nl_check_endpoint 0 "modif is allowed" \
3193			$ns2 10.0.2.2 id 1 flags signal
3194		kill_tests_wait
3195	fi
3196
3197	if reset "delete and re-add" &&
3198	   mptcp_lib_kallsyms_has "subflow_rebuild_header$"; then
3199		pm_nl_set_limits $ns1 1 1
3200		pm_nl_set_limits $ns2 1 1
3201		pm_nl_add_endpoint $ns2 10.0.2.2 id 2 dev ns2eth2 flags subflow
3202		run_tests $ns1 $ns2 10.0.1.1 4 0 0 speed_20 2>/dev/null &
3203
3204		wait_mpj $ns2
3205		pm_nl_del_endpoint $ns2 2 10.0.2.2
3206		sleep 0.5
3207		chk_subflow_nr needtitle "after delete" 1
3208
3209		pm_nl_add_endpoint $ns2 10.0.2.2 dev ns2eth2 flags subflow
3210		wait_mpj $ns2
3211		chk_subflow_nr "" "after re-add" 2
3212		kill_tests_wait
3213	fi
3214}
3215
3216# [$1: error message]
3217usage()
3218{
3219	if [ -n "${1}" ]; then
3220		echo "${1}"
3221		ret=1
3222	fi
3223
3224	echo "mptcp_join usage:"
3225
3226	local key
3227	for key in "${!all_tests[@]}"; do
3228		echo "  -${key} ${all_tests[${key}]}"
3229	done
3230
3231	echo "  -c capture pcap files"
3232	echo "  -C enable data checksum"
3233	echo "  -i use ip mptcp"
3234	echo "  -h help"
3235
3236	echo "[test ids|names]"
3237
3238	exit ${ret}
3239}
3240
3241
3242# Use a "simple" array to force an specific order we cannot have with an associative one
3243all_tests_sorted=(
3244	f@subflows_tests
3245	e@subflows_error_tests
3246	s@signal_address_tests
3247	l@link_failure_tests
3248	t@add_addr_timeout_tests
3249	r@remove_tests
3250	a@add_tests
3251	6@ipv6_tests
3252	4@v4mapped_tests
3253	b@backup_tests
3254	p@add_addr_ports_tests
3255	k@syncookies_tests
3256	S@checksum_tests
3257	d@deny_join_id0_tests
3258	m@fullmesh_tests
3259	z@fastclose_tests
3260	F@fail_tests
3261	u@userspace_tests
3262	I@endpoint_tests
3263)
3264
3265all_tests_args=""
3266all_tests_names=()
3267for subtests in "${all_tests_sorted[@]}"; do
3268	key="${subtests%@*}"
3269	value="${subtests#*@}"
3270
3271	all_tests_args+="${key}"
3272	all_tests_names+=("${value}")
3273	all_tests[${key}]="${value}"
3274done
3275
3276tests=()
3277while getopts "${all_tests_args}cCih" opt; do
3278	case $opt in
3279		["${all_tests_args}"])
3280			tests+=("${all_tests[${opt}]}")
3281			;;
3282		c)
3283			capture=1
3284			;;
3285		C)
3286			checksum=1
3287			;;
3288		i)
3289			ip_mptcp=1
3290			;;
3291		h)
3292			usage
3293			;;
3294		*)
3295			usage "Unknown option: -${opt}"
3296			;;
3297	esac
3298done
3299
3300shift $((OPTIND - 1))
3301
3302for arg in "${@}"; do
3303	if [[ "${arg}" =~ ^[0-9]+$ ]]; then
3304		only_tests_ids+=("${arg}")
3305	else
3306		only_tests_names+=("${arg}")
3307	fi
3308done
3309
3310if [ ${#tests[@]} -eq 0 ]; then
3311	tests=("${all_tests_names[@]}")
3312fi
3313
3314for subtests in "${tests[@]}"; do
3315	"${subtests}"
3316done
3317
3318if [ ${ret} -ne 0 ]; then
3319	echo
3320	echo "${#failed_tests[@]} failure(s) has(ve) been detected:"
3321	for i in $(get_failed_tests_ids); do
3322		echo -e "\t- ${i}: ${failed_tests[${i}]}"
3323	done
3324	echo
3325fi
3326
3327exit $ret
3328