forked from Minki/linux
selftests: netfilter: add synproxy test
Simple test for synproxy feature, iperf3 should be intercepted by synproxy netns, but connection should still succeed. Signed-off-by: Florian Westphal <fw@strlen.de> Signed-off-by: Pablo Neira Ayuso <pablo@netfilter.org>
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@ -6,7 +6,7 @@ TEST_PROGS := nft_trans_stress.sh nft_fib.sh nft_nat.sh bridge_brouter.sh \
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nft_concat_range.sh nft_conntrack_helper.sh \
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nft_queue.sh nft_meta.sh nf_nat_edemux.sh \
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ipip-conntrack-mtu.sh conntrack_tcp_unreplied.sh \
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conntrack_vrf.sh
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conntrack_vrf.sh nft_synproxy.sh
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LDLIBS = -lmnl
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TEST_GEN_FILES = nf-queue
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115
tools/testing/selftests/netfilter/nft_synproxy.sh
Executable file
115
tools/testing/selftests/netfilter/nft_synproxy.sh
Executable file
@ -0,0 +1,115 @@
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#!/bin/bash
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# SPDX-License-Identifier: GPL-2.0
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#
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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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rnd=$(mktemp -u XXXXXXXX)
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nsr="nsr-$rnd" # synproxy machine
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ns1="ns1-$rnd" # iperf client
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ns2="ns2-$rnd" # iperf server
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checktool (){
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if ! $1 > /dev/null 2>&1; then
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echo "SKIP: Could not $2"
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exit $ksft_skip
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fi
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}
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checktool "nft --version" "run test without nft tool"
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checktool "ip -Version" "run test without ip tool"
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checktool "iperf3 --version" "run test without iperf3"
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checktool "ip netns add $nsr" "create net namespace"
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ip netns add $ns1
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ip netns add $ns2
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cleanup() {
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ip netns pids $ns1 | xargs kill 2>/dev/null
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ip netns pids $ns2 | xargs kill 2>/dev/null
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ip netns del $ns1
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ip netns del $ns2
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ip netns del $nsr
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}
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trap cleanup EXIT
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ip link add veth0 netns $nsr type veth peer name eth0 netns $ns1
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ip link add veth1 netns $nsr type veth peer name eth0 netns $ns2
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for dev in lo veth0 veth1; do
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ip -net $nsr link set $dev up
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done
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ip -net $nsr addr add 10.0.1.1/24 dev veth0
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ip -net $nsr addr add 10.0.2.1/24 dev veth1
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ip netns exec $nsr sysctl -q net.ipv4.conf.veth0.forwarding=1
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ip netns exec $nsr sysctl -q net.ipv4.conf.veth1.forwarding=1
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ip netns exec $nsr sysctl -q net.netfilter.nf_conntrack_tcp_loose=0
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for n in $ns1 $ns2; do
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ip -net $n link set lo up
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ip -net $n link set eth0 up
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done
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ip -net $ns1 addr add 10.0.1.99/24 dev eth0
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ip -net $ns2 addr add 10.0.2.99/24 dev eth0
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ip -net $ns1 route add default via 10.0.1.1
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ip -net $ns2 route add default via 10.0.2.1
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# test basic connectivity
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if ! ip netns exec $ns1 ping -c 1 -q 10.0.2.99 > /dev/null; then
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echo "ERROR: $ns1 cannot reach $ns2" 1>&2
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exit 1
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fi
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if ! ip netns exec $ns2 ping -c 1 -q 10.0.1.99 > /dev/null; then
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echo "ERROR: $ns2 cannot reach $ns1" 1>&2
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exit 1
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fi
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ip netns exec $ns2 iperf3 -s > /dev/null 2>&1 &
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# ip netns exec $nsr tcpdump -vvv -n -i veth1 tcp | head -n 10 &
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sleep 1
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ip netns exec $nsr nft -f - <<EOF
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table inet filter {
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chain prerouting {
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type filter hook prerouting priority -300; policy accept;
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meta iif veth0 tcp flags syn counter notrack
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}
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chain forward {
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type filter hook forward priority 0; policy accept;
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ct state new,established counter accept
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meta iif veth0 meta l4proto tcp ct state untracked,invalid synproxy mss 1460 sack-perm timestamp
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ct state invalid counter drop
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# make ns2 unreachable w.o. tcp synproxy
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tcp flags syn counter drop
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}
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}
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EOF
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if [ $? -ne 0 ]; then
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echo "SKIP: Cannot add nft synproxy"
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exit $ksft_skip
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fi
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ip netns exec $ns1 timeout 5 iperf3 -c 10.0.2.99 -n $((1 * 1024 * 1024)) > /dev/null
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if [ $? -ne 0 ]; then
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echo "FAIL: iperf3 returned an error" 1>&2
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ret=$?
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ip netns exec $nsr nft list ruleset
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else
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echo "PASS: synproxy connection successful"
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fi
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exit $ret
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