blob: 70210d39fba33dbef6f96192bb85ba7a538de17f (
plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
|
#!/bin/bash
# SPDX-License-Identifier: GPL-2.0
#
# Test that UDP encapsulation (FOU) correctly handles packet resubmit
# when packets are delivered via the multicast UDP delivery path.
#
# When a FOU-encapsulated packet arrives with a multicast destination IP,
# __udp4_lib_mcast_deliver() / __udp6_lib_mcast_deliver() must resubmit
# it to the inner protocol handler (e.g., GRE) rather than consuming it.
# This test verifies both IPv4 and IPv6 paths by creating a FOU/GRETAP
# tunnel with a multicast remote address and sending ping through it.
#
# The early demux optimization can mask this issue by routing packets via
# the unicast path (udp[6]_unicast_rcv_skb), so we disable it to force
# packets through the multicast delivery function.
source lib.sh
NSENDER=""
NRECV=""
FOU_PORT4=4797
FOU_PORT6=4798
MCAST4=239.0.0.1
MCAST6=ff0e::1
TUN4_S=192.168.99.1
TUN4_R=192.168.99.2
TUN6_S=2001:db8:99::1
TUN6_R=2001:db8:99::2
cleanup() {
cleanup_all_ns
}
trap cleanup EXIT
setup_common() {
setup_ns NSENDER NRECV
# Create veth pair directly inside namespaces to avoid name
# collisions with devices in the root namespace.
ip link add veth_s netns "$NSENDER" type veth \
peer name veth_r netns "$NRECV"
ip -n "$NSENDER" link set veth_s up
ip -n "$NRECV" link set veth_r up
# Same sysctl controls early demux for both IPv4 and IPv6.
ip netns exec "$NRECV" sysctl -wq net.ipv4.ip_early_demux=0
}
setup_ipv4() {
# IPv4 FOU (CONFIG_NET_FOU) is built in on kernels configured for
# these tests, so no module load is needed here.
ip -n "$NSENDER" addr add 10.0.0.1/24 dev veth_s
ip -n "$NRECV" addr add 10.0.0.2/24 dev veth_r
# Join multicast group on receiver
ip -n "$NRECV" addr add "$MCAST4/32" dev veth_r autojoin
ip -n "$NSENDER" route add 239.0.0.0/8 dev veth_s
ip -n "$NRECV" route add 239.0.0.0/8 dev veth_r
# Sender: GRETAP with FOU encap (no FOU listener needed on TX side)
ip -n "$NSENDER" link add eoudp4 type gretap \
remote "$MCAST4" local 10.0.0.1 \
encap fou encap-sport "$FOU_PORT4" encap-dport "$FOU_PORT4" \
key "$MCAST4"
ip -n "$NSENDER" link set eoudp4 up
ip -n "$NSENDER" addr add "$TUN4_S/24" dev eoudp4
# Receiver: FOU listener + GRETAP
ip netns exec "$NRECV" ip fou add port "$FOU_PORT4" ipproto 47
ip -n "$NRECV" link add eoudp4 type gretap \
remote "$MCAST4" local 10.0.0.2 \
encap fou encap-sport "$FOU_PORT4" encap-dport "$FOU_PORT4" \
key "$MCAST4"
ip -n "$NRECV" link set eoudp4 up
ip -n "$NRECV" addr add "$TUN4_R/24" dev eoudp4
# Static neigh on sender: ARP replies cannot traverse the
# unidirectional multicast tunnel.
local recv_mac
recv_mac=$(ip -n "$NRECV" link show eoudp4 | awk '/ether/{print $2}')
ip -n "$NSENDER" neigh add "$TUN4_R" lladdr "$recv_mac" dev eoudp4
}
setup_ipv6() {
# Skip cleanly if IPv6 or the fou6 module is not available.
[ -e /proc/sys/net/ipv6 ] || return "$ksft_skip"
modprobe -q fou6 || return "$ksft_skip"
ip -n "$NSENDER" addr add 2001:db8::1/64 dev veth_s nodad
ip -n "$NRECV" addr add 2001:db8::2/64 dev veth_r nodad
# Join multicast group on receiver
ip -n "$NRECV" addr add "$MCAST6/128" dev veth_r autojoin
ip -n "$NSENDER" -6 route add ff00::/8 dev veth_s
ip -n "$NRECV" -6 route add ff00::/8 dev veth_r
# Sender: ip6gretap with FOU encap
ip -n "$NSENDER" link add eoudp6 type ip6gretap \
remote "$MCAST6" local 2001:db8::1 \
encap fou encap-sport "$FOU_PORT6" encap-dport "$FOU_PORT6" \
key 42
ip -n "$NSENDER" link set eoudp6 up
ip -n "$NSENDER" addr add "$TUN6_S/64" dev eoudp6 nodad
# Receiver: FOU listener (IPv6) + ip6gretap
ip netns exec "$NRECV" ip fou add port "$FOU_PORT6" ipproto 47 -6
ip -n "$NRECV" link add eoudp6 type ip6gretap \
remote "$MCAST6" local 2001:db8::2 \
encap fou encap-sport "$FOU_PORT6" encap-dport "$FOU_PORT6" \
key 42
ip -n "$NRECV" link set eoudp6 up
ip -n "$NRECV" addr add "$TUN6_R/64" dev eoudp6 nodad
# Static neigh on sender: neighbor discovery cannot traverse the
# unidirectional multicast tunnel.
local recv_mac
recv_mac=$(ip -n "$NRECV" link show eoudp6 | awk '/ether/{print $2}')
ip -n "$NSENDER" neigh add "$TUN6_R" lladdr "$recv_mac" dev eoudp6
}
get_rx_packets() {
local dev="$1"
ip -n "$NRECV" -s link show "$dev" | awk '/RX:/{getline; print $2}'
}
run_ping_test() {
local family="$1"
local dev="$2"
local dst="$3"
local name="$4"
local count=100
local rx_before rx_after rx_delta
# Warmup: let any initial broadcast/ND traffic settle
ip netns exec "$NSENDER" ping "$family" -c 1 -W 1 "$dst" \
>/dev/null 2>&1
sleep 1
rx_before=$(get_rx_packets "$dev")
ip netns exec "$NSENDER" ping "$family" -i 0.01 -c $count -W 1 "$dst" \
>/dev/null 2>&1
sleep 1
rx_after=$(get_rx_packets "$dev")
rx_delta=$((rx_after - rx_before))
if [ "$rx_delta" -ge "$count" ]; then
RET=$ksft_pass
else
RET=$ksft_fail
fi
log_test "$name (received $rx_delta/$count)"
}
setup_common
setup_ipv4
run_ping_test -4 eoudp4 "$TUN4_R" "FOU/GRETAP IPv4 multicast encap resubmit"
if setup_ipv6; then
run_ping_test -6 eoudp6 "$TUN6_R" "FOU/ip6gretap IPv6 multicast encap resubmit"
else
log_test_skip "FOU/ip6gretap IPv6 multicast encap resubmit"
fi
exit "$EXIT_STATUS"
|