487 lines
11 KiB
Bash
Executable File
487 lines
11 KiB
Bash
Executable File
#!/bin/bash
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# SPDX-License-Identifier: GPL-2.0
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# This test is for checking IPv4 and IPv6 FIB rules API
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# Kselftest framework requirement - SKIP code is 4.
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ksft_skip=4
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ret=0
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PAUSE_ON_FAIL=${PAUSE_ON_FAIL:=no}
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IP="ip -netns testns"
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IP_PEER="ip -netns peerns"
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RTABLE=100
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RTABLE_PEER=101
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GW_IP4=192.51.100.2
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SRC_IP=192.51.100.3
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GW_IP6=2001:db8:1::2
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SRC_IP6=2001:db8:1::3
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DEV_ADDR=192.51.100.1
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DEV_ADDR6=2001:db8:1::1
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DEV=dummy0
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TESTS="fib_rule6 fib_rule4 fib_rule6_connect fib_rule4_connect"
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SELFTEST_PATH=""
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log_test()
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{
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local rc=$1
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local expected=$2
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local msg="$3"
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if [ ${rc} -eq ${expected} ]; then
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nsuccess=$((nsuccess+1))
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printf "\n TEST: %-50s [ OK ]\n" "${msg}"
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else
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ret=1
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nfail=$((nfail+1))
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printf "\n TEST: %-50s [FAIL]\n" "${msg}"
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if [ "${PAUSE_ON_FAIL}" = "yes" ]; then
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echo
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echo "hit enter to continue, 'q' to quit"
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read a
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[ "$a" = "q" ] && exit 1
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fi
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fi
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}
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log_section()
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{
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echo
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echo "######################################################################"
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echo "TEST SECTION: $*"
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echo "######################################################################"
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}
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check_nettest()
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{
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if which nettest > /dev/null 2>&1; then
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return 0
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fi
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# Add the selftest directory to PATH if not already done
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if [ "${SELFTEST_PATH}" = "" ]; then
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SELFTEST_PATH="$(dirname $0)"
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PATH="${PATH}:${SELFTEST_PATH}"
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# Now retry with the new path
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if which nettest > /dev/null 2>&1; then
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return 0
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fi
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if [ "${ret}" -eq 0 ]; then
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ret="${ksft_skip}"
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fi
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echo "nettest not found (try 'make -C ${SELFTEST_PATH} nettest')"
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fi
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return 1
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}
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setup()
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{
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set -e
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ip netns add testns
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$IP link set dev lo up
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$IP link add dummy0 type dummy
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$IP link set dev dummy0 up
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$IP address add $DEV_ADDR/24 dev dummy0
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$IP -6 address add $DEV_ADDR6/64 dev dummy0
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set +e
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}
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cleanup()
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{
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$IP link del dev dummy0 &> /dev/null
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ip netns del testns
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}
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setup_peer()
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{
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set -e
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ip netns add peerns
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$IP_PEER link set dev lo up
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ip link add name veth0 netns testns type veth \
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peer name veth1 netns peerns
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$IP link set dev veth0 up
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$IP_PEER link set dev veth1 up
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$IP address add 192.0.2.10 peer 192.0.2.11/32 dev veth0
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$IP_PEER address add 192.0.2.11 peer 192.0.2.10/32 dev veth1
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$IP address add 2001:db8::10 peer 2001:db8::11/128 dev veth0 nodad
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$IP_PEER address add 2001:db8::11 peer 2001:db8::10/128 dev veth1 nodad
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$IP_PEER address add 198.51.100.11/32 dev lo
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$IP route add table $RTABLE_PEER 198.51.100.11/32 via 192.0.2.11
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$IP_PEER address add 2001:db8::1:11/128 dev lo
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$IP route add table $RTABLE_PEER 2001:db8::1:11/128 via 2001:db8::11
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set +e
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}
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cleanup_peer()
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{
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$IP link del dev veth0
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ip netns del peerns
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}
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fib_check_iproute_support()
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{
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ip rule help 2>&1 | grep -q $1
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if [ $? -ne 0 ]; then
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echo "SKIP: iproute2 iprule too old, missing $1 match"
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return 1
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fi
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ip route get help 2>&1 | grep -q $2
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if [ $? -ne 0 ]; then
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echo "SKIP: iproute2 get route too old, missing $2 match"
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return 1
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fi
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return 0
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}
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fib_rule6_del()
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{
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$IP -6 rule del $1
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log_test $? 0 "rule6 del $1"
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}
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fib_rule6_del_by_pref()
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{
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pref=$($IP -6 rule show $1 table $RTABLE | cut -d ":" -f 1)
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$IP -6 rule del pref $pref
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}
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fib_rule6_test_match_n_redirect()
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{
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local match="$1"
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local getmatch="$2"
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local description="$3"
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$IP -6 rule add $match table $RTABLE
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$IP -6 route get $GW_IP6 $getmatch | grep -q "table $RTABLE"
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log_test $? 0 "rule6 check: $description"
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fib_rule6_del_by_pref "$match"
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log_test $? 0 "rule6 del by pref: $description"
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}
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fib_rule6_test_reject()
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{
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local match="$1"
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local rc
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$IP -6 rule add $match table $RTABLE 2>/dev/null
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rc=$?
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log_test $rc 2 "rule6 check: $match"
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if [ $rc -eq 0 ]; then
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$IP -6 rule del $match table $RTABLE
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fi
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}
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fib_rule6_test()
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{
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local getmatch
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local match
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local cnt
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# setup the fib rule redirect route
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$IP -6 route add table $RTABLE default via $GW_IP6 dev $DEV onlink
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match="oif $DEV"
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fib_rule6_test_match_n_redirect "$match" "$match" "oif redirect to table"
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match="from $SRC_IP6 iif $DEV"
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fib_rule6_test_match_n_redirect "$match" "$match" "iif redirect to table"
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# Reject dsfield (tos) options which have ECN bits set
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for cnt in $(seq 1 3); do
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match="dsfield $cnt"
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fib_rule6_test_reject "$match"
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done
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# Don't take ECN bits into account when matching on dsfield
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match="tos 0x10"
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for cnt in "0x10" "0x11" "0x12" "0x13"; do
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# Using option 'tos' instead of 'dsfield' as old iproute2
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# versions don't support 'dsfield' in ip rule show.
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getmatch="tos $cnt"
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fib_rule6_test_match_n_redirect "$match" "$getmatch" \
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"$getmatch redirect to table"
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done
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match="fwmark 0x64"
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getmatch="mark 0x64"
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fib_rule6_test_match_n_redirect "$match" "$getmatch" "fwmark redirect to table"
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fib_check_iproute_support "uidrange" "uid"
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if [ $? -eq 0 ]; then
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match="uidrange 100-100"
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getmatch="uid 100"
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fib_rule6_test_match_n_redirect "$match" "$getmatch" "uid redirect to table"
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fi
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fib_check_iproute_support "sport" "sport"
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if [ $? -eq 0 ]; then
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match="sport 666 dport 777"
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fib_rule6_test_match_n_redirect "$match" "$match" "sport and dport redirect to table"
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fi
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fib_check_iproute_support "ipproto" "ipproto"
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if [ $? -eq 0 ]; then
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match="ipproto tcp"
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fib_rule6_test_match_n_redirect "$match" "$match" "ipproto match"
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fi
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fib_check_iproute_support "ipproto" "ipproto"
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if [ $? -eq 0 ]; then
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match="ipproto ipv6-icmp"
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fib_rule6_test_match_n_redirect "$match" "$match" "ipproto ipv6-icmp match"
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fi
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}
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# Verify that the IPV6_TCLASS option of UDPv6 and TCPv6 sockets is properly
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# taken into account when connecting the socket and when sending packets.
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fib_rule6_connect_test()
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{
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local dsfield
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if ! check_nettest; then
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echo "SKIP: Could not run test without nettest tool"
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return
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fi
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setup_peer
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$IP -6 rule add dsfield 0x04 table $RTABLE_PEER
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# Combine the base DS Field value (0x04) with all possible ECN values
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# (Not-ECT: 0, ECT(1): 1, ECT(0): 2, CE: 3).
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# The ECN bits shouldn't influence the result of the test.
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for dsfield in 0x04 0x05 0x06 0x07; do
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nettest -q -6 -B -t 5 -N testns -O peerns -U -D \
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-Q "${dsfield}" -l 2001:db8::1:11 -r 2001:db8::1:11
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log_test $? 0 "rule6 dsfield udp connect (dsfield ${dsfield})"
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nettest -q -6 -B -t 5 -N testns -O peerns -Q "${dsfield}" \
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-l 2001:db8::1:11 -r 2001:db8::1:11
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log_test $? 0 "rule6 dsfield tcp connect (dsfield ${dsfield})"
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done
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$IP -6 rule del dsfield 0x04 table $RTABLE_PEER
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cleanup_peer
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}
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fib_rule4_del()
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{
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$IP rule del $1
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log_test $? 0 "del $1"
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}
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fib_rule4_del_by_pref()
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{
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pref=$($IP rule show $1 table $RTABLE | cut -d ":" -f 1)
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$IP rule del pref $pref
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}
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fib_rule4_test_match_n_redirect()
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{
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local match="$1"
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local getmatch="$2"
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local description="$3"
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$IP rule add $match table $RTABLE
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$IP route get $GW_IP4 $getmatch | grep -q "table $RTABLE"
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log_test $? 0 "rule4 check: $description"
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fib_rule4_del_by_pref "$match"
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log_test $? 0 "rule4 del by pref: $description"
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}
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fib_rule4_test_reject()
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{
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local match="$1"
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local rc
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$IP rule add $match table $RTABLE 2>/dev/null
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rc=$?
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log_test $rc 2 "rule4 check: $match"
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if [ $rc -eq 0 ]; then
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$IP rule del $match table $RTABLE
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fi
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}
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fib_rule4_test()
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{
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local getmatch
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local match
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local cnt
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# setup the fib rule redirect route
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$IP route add table $RTABLE default via $GW_IP4 dev $DEV onlink
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match="oif $DEV"
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fib_rule4_test_match_n_redirect "$match" "$match" "oif redirect to table"
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# need enable forwarding and disable rp_filter temporarily as all the
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# addresses are in the same subnet and egress device == ingress device.
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ip netns exec testns sysctl -qw net.ipv4.ip_forward=1
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ip netns exec testns sysctl -qw net.ipv4.conf.$DEV.rp_filter=0
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match="from $SRC_IP iif $DEV"
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fib_rule4_test_match_n_redirect "$match" "$match" "iif redirect to table"
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ip netns exec testns sysctl -qw net.ipv4.ip_forward=0
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# Reject dsfield (tos) options which have ECN bits set
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for cnt in $(seq 1 3); do
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match="dsfield $cnt"
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fib_rule4_test_reject "$match"
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done
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# Don't take ECN bits into account when matching on dsfield
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match="tos 0x10"
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for cnt in "0x10" "0x11" "0x12" "0x13"; do
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# Using option 'tos' instead of 'dsfield' as old iproute2
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# versions don't support 'dsfield' in ip rule show.
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getmatch="tos $cnt"
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fib_rule4_test_match_n_redirect "$match" "$getmatch" \
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"$getmatch redirect to table"
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done
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match="fwmark 0x64"
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getmatch="mark 0x64"
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fib_rule4_test_match_n_redirect "$match" "$getmatch" "fwmark redirect to table"
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fib_check_iproute_support "uidrange" "uid"
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if [ $? -eq 0 ]; then
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match="uidrange 100-100"
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getmatch="uid 100"
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fib_rule4_test_match_n_redirect "$match" "$getmatch" "uid redirect to table"
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fi
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fib_check_iproute_support "sport" "sport"
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if [ $? -eq 0 ]; then
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match="sport 666 dport 777"
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fib_rule4_test_match_n_redirect "$match" "$match" "sport and dport redirect to table"
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fi
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fib_check_iproute_support "ipproto" "ipproto"
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if [ $? -eq 0 ]; then
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match="ipproto tcp"
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fib_rule4_test_match_n_redirect "$match" "$match" "ipproto tcp match"
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fi
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fib_check_iproute_support "ipproto" "ipproto"
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if [ $? -eq 0 ]; then
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match="ipproto icmp"
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fib_rule4_test_match_n_redirect "$match" "$match" "ipproto icmp match"
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fi
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}
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# Verify that the IP_TOS option of UDPv4 and TCPv4 sockets is properly taken
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# into account when connecting the socket and when sending packets.
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fib_rule4_connect_test()
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{
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local dsfield
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if ! check_nettest; then
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echo "SKIP: Could not run test without nettest tool"
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return
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fi
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setup_peer
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$IP -4 rule add dsfield 0x04 table $RTABLE_PEER
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# Combine the base DS Field value (0x04) with all possible ECN values
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# (Not-ECT: 0, ECT(1): 1, ECT(0): 2, CE: 3).
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# The ECN bits shouldn't influence the result of the test.
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for dsfield in 0x04 0x05 0x06 0x07; do
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nettest -q -B -t 5 -N testns -O peerns -D -U -Q "${dsfield}" \
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-l 198.51.100.11 -r 198.51.100.11
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log_test $? 0 "rule4 dsfield udp connect (dsfield ${dsfield})"
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nettest -q -B -t 5 -N testns -O peerns -Q "${dsfield}" \
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-l 198.51.100.11 -r 198.51.100.11
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log_test $? 0 "rule4 dsfield tcp connect (dsfield ${dsfield})"
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done
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$IP -4 rule del dsfield 0x04 table $RTABLE_PEER
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cleanup_peer
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}
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run_fibrule_tests()
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{
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log_section "IPv4 fib rule"
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fib_rule4_test
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log_section "IPv6 fib rule"
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fib_rule6_test
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}
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################################################################################
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# usage
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usage()
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{
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cat <<EOF
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usage: ${0##*/} OPTS
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-t <test> Test(s) to run (default: all)
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(options: $TESTS)
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EOF
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}
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################################################################################
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# main
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while getopts ":t:h" opt; do
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case $opt in
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t) TESTS=$OPTARG;;
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h) usage; exit 0;;
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*) usage; exit 1;;
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esac
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done
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if [ "$(id -u)" -ne 0 ];then
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echo "SKIP: Need root privileges"
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exit $ksft_skip
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fi
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if [ ! -x "$(command -v ip)" ]; then
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echo "SKIP: Could not run test without ip tool"
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exit $ksft_skip
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fi
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# start clean
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cleanup &> /dev/null
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setup
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for t in $TESTS
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do
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case $t in
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fib_rule6_test|fib_rule6) fib_rule6_test;;
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fib_rule4_test|fib_rule4) fib_rule4_test;;
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fib_rule6_connect_test|fib_rule6_connect) fib_rule6_connect_test;;
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fib_rule4_connect_test|fib_rule4_connect) fib_rule4_connect_test;;
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help) echo "Test names: $TESTS"; exit 0;;
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esac
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done
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cleanup
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if [ "$TESTS" != "none" ]; then
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printf "\nTests passed: %3d\n" ${nsuccess}
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printf "Tests failed: %3d\n" ${nfail}
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fi
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exit $ret
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