When running the test on the Spectrum ASIC the generated packets are counted on the ingress filter and injected back to the pipeline because of the 'pass' action. The router block then drops the packets due to checksum error, as the test generates packets with zero checksum. When running the test on an emulator that is not as strict about checksum errors the test fails since packets are counted twice. Once by the emulated ASIC on its ingress filter and again by the kernel as the emulator does not perform checksum validation and allows the packets to be trapped by a matching host route. Fix this by changing the action to 'drop', which will prevent the packet from continuing further in the pipeline to the router block. For veth pairs this change is essentially a NOP given packets are only processed once (by the kernel). Fixes: a0b61f3d8ebf ("selftests: forwarding: vxlan_bridge_1d: Add an ECN decap test") Signed-off-by: Ido Schimmel <idosch@mellanox.com> Reviewed-by: Petr Machata <petrm@mellanox.com> Signed-off-by: David S. Miller <davem@davemloft.net>
787 lines
20 KiB
Bash
Executable File
787 lines
20 KiB
Bash
Executable File
#!/bin/bash
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# SPDX-License-Identifier: GPL-2.0
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# +--------------------+ +----------------------+
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# | H1 (vrf) | | H2 (vrf) |
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# | + $h1 | | + $h2 |
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# | | 192.0.2.1/28 | | | 192.0.2.2/28 |
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# +----|---------------+ +--|-------------------+
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# | |
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# +----|--------------------------------------------------|-------------------+
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# | SW | | |
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# | +--|--------------------------------------------------|-----------------+ |
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# | | + $swp1 BR1 (802.1d) + $swp2 | |
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# | | | |
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# | | + vx1 (vxlan) | |
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# | | local 192.0.2.17 | |
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# | | remote 192.0.2.34 192.0.2.50 | |
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# | | id 1000 dstport $VXPORT | |
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# | +-----------------------------------------------------------------------+ |
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# | |
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# | 192.0.2.32/28 via 192.0.2.18 |
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# | 192.0.2.48/28 via 192.0.2.18 |
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# | |
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# | + $rp1 |
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# | | 192.0.2.17/28 |
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# +----|----------------------------------------------------------------------+
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# |
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# +----|--------------------------------------------------------+
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# | | VRP2 (vrf) |
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# | + $rp2 |
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# | 192.0.2.18/28 |
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# | | (maybe) HW
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# =============================================================================
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# | | (likely) SW
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# | + v1 (veth) + v3 (veth) |
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# | | 192.0.2.33/28 | 192.0.2.49/28 |
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# +----|---------------------------------------|----------------+
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# | |
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# +----|------------------------------+ +----|------------------------------+
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# | + v2 (veth) NS1 (netns) | | + v4 (veth) NS2 (netns) |
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# | 192.0.2.34/28 | | 192.0.2.50/28 |
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# | | | |
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# | 192.0.2.16/28 via 192.0.2.33 | | 192.0.2.16/28 via 192.0.2.49 |
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# | 192.0.2.50/32 via 192.0.2.33 | | 192.0.2.34/32 via 192.0.2.49 |
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# | | | |
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# | +-------------------------------+ | | +-------------------------------+ |
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# | | BR2 (802.1d) | | | | BR2 (802.1d) | |
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# | | + vx2 (vxlan) | | | | + vx2 (vxlan) | |
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# | | local 192.0.2.34 | | | | local 192.0.2.50 | |
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# | | remote 192.0.2.17 | | | | remote 192.0.2.17 | |
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# | | remote 192.0.2.50 | | | | remote 192.0.2.34 | |
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# | | id 1000 dstport $VXPORT | | | | id 1000 dstport $VXPORT | |
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# | | | | | | | |
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# | | + w1 (veth) | | | | + w1 (veth) | |
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# | +--|----------------------------+ | | +--|----------------------------+ |
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# | | | | | |
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# | +--|----------------------------+ | | +--|----------------------------+ |
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# | | | VW2 (vrf) | | | | | VW2 (vrf) | |
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# | | + w2 (veth) | | | | + w2 (veth) | |
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# | | 192.0.2.3/28 | | | | 192.0.2.4/28 | |
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# | +-------------------------------+ | | +-------------------------------+ |
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# +-----------------------------------+ +-----------------------------------+
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: ${VXPORT:=4789}
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export VXPORT
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: ${ALL_TESTS:="
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ping_ipv4
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test_flood
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test_unicast
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test_ttl
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test_tos
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test_ecn_encap
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test_ecn_decap
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reapply_config
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ping_ipv4
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test_flood
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test_unicast
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test_learning
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"}
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NUM_NETIFS=6
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source lib.sh
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h1_create()
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{
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simple_if_init $h1 192.0.2.1/28
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tc qdisc add dev $h1 clsact
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}
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h1_destroy()
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{
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tc qdisc del dev $h1 clsact
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simple_if_fini $h1 192.0.2.1/28
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}
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h2_create()
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{
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simple_if_init $h2 192.0.2.2/28
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tc qdisc add dev $h2 clsact
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}
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h2_destroy()
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{
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tc qdisc del dev $h2 clsact
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simple_if_fini $h2 192.0.2.2/28
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}
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rp1_set_addr()
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{
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ip address add dev $rp1 192.0.2.17/28
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ip route add 192.0.2.32/28 nexthop via 192.0.2.18
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ip route add 192.0.2.48/28 nexthop via 192.0.2.18
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}
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rp1_unset_addr()
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{
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ip route del 192.0.2.48/28 nexthop via 192.0.2.18
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ip route del 192.0.2.32/28 nexthop via 192.0.2.18
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ip address del dev $rp1 192.0.2.17/28
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}
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switch_create()
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{
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ip link add name br1 type bridge vlan_filtering 0 mcast_snooping 0
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# Make sure the bridge uses the MAC address of the local port and not
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# that of the VxLAN's device.
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ip link set dev br1 address $(mac_get $swp1)
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ip link set dev br1 up
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ip link set dev $rp1 up
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rp1_set_addr
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ip link add name vx1 type vxlan id 1000 \
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local 192.0.2.17 dstport "$VXPORT" \
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nolearning noudpcsum tos inherit ttl 100
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ip link set dev vx1 up
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ip link set dev vx1 master br1
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ip link set dev $swp1 master br1
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ip link set dev $swp1 up
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ip link set dev $swp2 master br1
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ip link set dev $swp2 up
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bridge fdb append dev vx1 00:00:00:00:00:00 dst 192.0.2.34 self
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bridge fdb append dev vx1 00:00:00:00:00:00 dst 192.0.2.50 self
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}
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switch_destroy()
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{
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rp1_unset_addr
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ip link set dev $rp1 down
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bridge fdb del dev vx1 00:00:00:00:00:00 dst 192.0.2.50 self
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bridge fdb del dev vx1 00:00:00:00:00:00 dst 192.0.2.34 self
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ip link set dev vx1 nomaster
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ip link set dev vx1 down
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ip link del dev vx1
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ip link set dev $swp2 down
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ip link set dev $swp2 nomaster
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ip link set dev $swp1 down
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ip link set dev $swp1 nomaster
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ip link set dev br1 down
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ip link del dev br1
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}
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vrp2_create()
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{
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simple_if_init $rp2 192.0.2.18/28
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__simple_if_init v1 v$rp2 192.0.2.33/28
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__simple_if_init v3 v$rp2 192.0.2.49/28
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tc qdisc add dev v1 clsact
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}
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vrp2_destroy()
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{
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tc qdisc del dev v1 clsact
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__simple_if_fini v3 192.0.2.49/28
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__simple_if_fini v1 192.0.2.33/28
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simple_if_fini $rp2 192.0.2.18/28
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}
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ns_init_common()
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{
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local in_if=$1; shift
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local in_addr=$1; shift
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local other_in_addr=$1; shift
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local nh_addr=$1; shift
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local host_addr=$1; shift
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ip link set dev $in_if up
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ip address add dev $in_if $in_addr/28
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tc qdisc add dev $in_if clsact
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ip link add name br2 type bridge vlan_filtering 0
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ip link set dev br2 up
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ip link add name w1 type veth peer name w2
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ip link set dev w1 master br2
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ip link set dev w1 up
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ip link add name vx2 type vxlan id 1000 local $in_addr dstport "$VXPORT"
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ip link set dev vx2 up
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bridge fdb append dev vx2 00:00:00:00:00:00 dst 192.0.2.17 self
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bridge fdb append dev vx2 00:00:00:00:00:00 dst $other_in_addr self
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ip link set dev vx2 master br2
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tc qdisc add dev vx2 clsact
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simple_if_init w2 $host_addr/28
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ip route add 192.0.2.16/28 nexthop via $nh_addr
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ip route add $other_in_addr/32 nexthop via $nh_addr
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}
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export -f ns_init_common
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ns1_create()
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{
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ip netns add ns1
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ip link set dev v2 netns ns1
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in_ns ns1 \
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ns_init_common v2 192.0.2.34 192.0.2.50 192.0.2.33 192.0.2.3
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}
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ns1_destroy()
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{
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ip netns exec ns1 ip link set dev v2 netns 1
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ip netns del ns1
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}
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ns2_create()
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{
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ip netns add ns2
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ip link set dev v4 netns ns2
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in_ns ns2 \
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ns_init_common v4 192.0.2.50 192.0.2.34 192.0.2.49 192.0.2.4
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}
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ns2_destroy()
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{
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ip netns exec ns2 ip link set dev v4 netns 1
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ip netns del ns2
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}
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setup_prepare()
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{
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h1=${NETIFS[p1]}
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swp1=${NETIFS[p2]}
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swp2=${NETIFS[p3]}
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h2=${NETIFS[p4]}
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rp1=${NETIFS[p5]}
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rp2=${NETIFS[p6]}
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vrf_prepare
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forwarding_enable
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h1_create
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h2_create
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switch_create
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ip link add name v1 type veth peer name v2
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ip link add name v3 type veth peer name v4
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vrp2_create
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ns1_create
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ns2_create
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r1_mac=$(in_ns ns1 mac_get w2)
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r2_mac=$(in_ns ns2 mac_get w2)
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h2_mac=$(mac_get $h2)
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}
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cleanup()
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{
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pre_cleanup
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ns2_destroy
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ns1_destroy
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vrp2_destroy
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ip link del dev v3
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ip link del dev v1
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switch_destroy
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h2_destroy
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h1_destroy
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forwarding_restore
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vrf_cleanup
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}
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# For the first round of tests, vx1 is the first device to get attached to the
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# bridge, and that at the point that the local IP is already configured. Try the
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# other scenario of attaching the device to an already-offloaded bridge, and
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# only then attach the local IP.
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reapply_config()
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{
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echo "Reapplying configuration"
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bridge fdb del dev vx1 00:00:00:00:00:00 dst 192.0.2.50 self
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bridge fdb del dev vx1 00:00:00:00:00:00 dst 192.0.2.34 self
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rp1_unset_addr
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ip link set dev vx1 nomaster
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sleep 5
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ip link set dev vx1 master br1
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bridge fdb append dev vx1 00:00:00:00:00:00 dst 192.0.2.34 self
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bridge fdb append dev vx1 00:00:00:00:00:00 dst 192.0.2.50 self
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sleep 1
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rp1_set_addr
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sleep 5
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}
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ping_ipv4()
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{
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ping_test $h1 192.0.2.2 ": local->local"
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ping_test $h1 192.0.2.3 ": local->remote 1"
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ping_test $h1 192.0.2.4 ": local->remote 2"
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}
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maybe_in_ns()
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{
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echo ${1:+in_ns} $1
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}
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__flood_counter_add_del()
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{
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local add_del=$1; shift
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local dev=$1; shift
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local ns=$1; shift
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# Putting the ICMP capture both to HW and to SW will end up
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# double-counting the packets that are trapped to slow path, such as for
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# the unicast test. Adding either skip_hw or skip_sw fixes this problem,
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# but with skip_hw, the flooded packets are not counted at all, because
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# those are dropped due to MAC address mismatch; and skip_sw is a no-go
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# for veth-based topologies.
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#
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# So try to install with skip_sw and fall back to skip_sw if that fails.
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$(maybe_in_ns $ns) __icmp_capture_add_del \
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$add_del 100 "" $dev skip_sw 2>/dev/null || \
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$(maybe_in_ns $ns) __icmp_capture_add_del \
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$add_del 100 "" $dev skip_hw
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}
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flood_counter_install()
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{
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__flood_counter_add_del add "$@"
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}
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flood_counter_uninstall()
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{
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__flood_counter_add_del del "$@"
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}
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flood_fetch_stat()
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{
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local dev=$1; shift
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local ns=$1; shift
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$(maybe_in_ns $ns) tc_rule_stats_get $dev 100 ingress
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}
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flood_fetch_stats()
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{
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local counters=("${@}")
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local counter
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for counter in "${counters[@]}"; do
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flood_fetch_stat $counter
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done
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}
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vxlan_flood_test()
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{
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local mac=$1; shift
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local dst=$1; shift
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local -a expects=("${@}")
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local -a counters=($h2 "vx2 ns1" "vx2 ns2")
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local counter
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local key
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for counter in "${counters[@]}"; do
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flood_counter_install $counter
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done
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local -a t0s=($(flood_fetch_stats "${counters[@]}"))
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$MZ $h1 -c 10 -d 100msec -p 64 -b $mac -B $dst -t icmp -q
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sleep 1
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local -a t1s=($(flood_fetch_stats "${counters[@]}"))
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for key in ${!t0s[@]}; do
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local delta=$((t1s[$key] - t0s[$key]))
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local expect=${expects[$key]}
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((expect == delta))
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check_err $? "${counters[$key]}: Expected to capture $expect packets, got $delta."
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done
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for counter in "${counters[@]}"; do
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flood_counter_uninstall $counter
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done
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}
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__test_flood()
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{
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local mac=$1; shift
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local dst=$1; shift
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local what=$1; shift
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RET=0
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vxlan_flood_test $mac $dst 10 10 10
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log_test "VXLAN: $what"
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}
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test_flood()
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{
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__test_flood de:ad:be:ef:13:37 192.0.2.100 "flood"
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}
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vxlan_fdb_add_del()
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{
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local add_del=$1; shift
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local mac=$1; shift
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local dev=$1; shift
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local dst=$1; shift
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bridge fdb $add_del dev $dev $mac self static permanent \
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${dst:+dst} $dst 2>/dev/null
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bridge fdb $add_del dev $dev $mac master static 2>/dev/null
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}
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__test_unicast()
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{
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local mac=$1; shift
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local dst=$1; shift
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local hit_idx=$1; shift
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local what=$1; shift
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RET=0
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local -a expects=(0 0 0)
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expects[$hit_idx]=10
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vxlan_flood_test $mac $dst "${expects[@]}"
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log_test "VXLAN: $what"
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}
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test_unicast()
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{
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local -a targets=("$h2_mac $h2"
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"$r1_mac vx1 192.0.2.34"
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"$r2_mac vx1 192.0.2.50")
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local target
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for target in "${targets[@]}"; do
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vxlan_fdb_add_del add $target
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done
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__test_unicast $h2_mac 192.0.2.2 0 "local MAC unicast"
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__test_unicast $r1_mac 192.0.2.3 1 "remote MAC 1 unicast"
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__test_unicast $r2_mac 192.0.2.4 2 "remote MAC 2 unicast"
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for target in "${targets[@]}"; do
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vxlan_fdb_add_del del $target
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done
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}
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|
|
vxlan_ping_test()
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{
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local ping_dev=$1; shift
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local ping_dip=$1; shift
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local ping_args=$1; shift
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local capture_dev=$1; shift
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local capture_dir=$1; shift
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local capture_pref=$1; shift
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local expect=$1; shift
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local t0=$(tc_rule_stats_get $capture_dev $capture_pref $capture_dir)
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ping_do $ping_dev $ping_dip "$ping_args"
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local t1=$(tc_rule_stats_get $capture_dev $capture_pref $capture_dir)
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local delta=$((t1 - t0))
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# Tolerate a couple stray extra packets.
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((expect <= delta && delta <= expect + 2))
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check_err $? "$capture_dev: Expected to capture $expect packets, got $delta."
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}
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|
|
test_ttl()
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{
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RET=0
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|
|
tc filter add dev v1 egress pref 77 prot ip \
|
|
flower ip_ttl 99 action pass
|
|
vxlan_ping_test $h1 192.0.2.3 "" v1 egress 77 10
|
|
tc filter del dev v1 egress pref 77 prot ip
|
|
|
|
log_test "VXLAN: envelope TTL"
|
|
}
|
|
|
|
test_tos()
|
|
{
|
|
RET=0
|
|
|
|
tc filter add dev v1 egress pref 77 prot ip \
|
|
flower ip_tos 0x40 action pass
|
|
vxlan_ping_test $h1 192.0.2.3 "-Q 0x40" v1 egress 77 10
|
|
vxlan_ping_test $h1 192.0.2.3 "-Q 0x30" v1 egress 77 0
|
|
tc filter del dev v1 egress pref 77 prot ip
|
|
|
|
log_test "VXLAN: envelope TOS inheritance"
|
|
}
|
|
|
|
__test_ecn_encap()
|
|
{
|
|
local q=$1; shift
|
|
local tos=$1; shift
|
|
|
|
RET=0
|
|
|
|
tc filter add dev v1 egress pref 77 prot ip \
|
|
flower ip_tos $tos action pass
|
|
sleep 1
|
|
vxlan_ping_test $h1 192.0.2.3 "-Q $q" v1 egress 77 10
|
|
tc filter del dev v1 egress pref 77 prot ip
|
|
|
|
log_test "VXLAN: ECN encap: $q->$tos"
|
|
}
|
|
|
|
test_ecn_encap()
|
|
{
|
|
# In accordance with INET_ECN_encapsulate()
|
|
__test_ecn_encap 0x00 0x00
|
|
__test_ecn_encap 0x01 0x01
|
|
__test_ecn_encap 0x02 0x02
|
|
__test_ecn_encap 0x03 0x02
|
|
}
|
|
|
|
vxlan_encapped_ping_do()
|
|
{
|
|
local count=$1; shift
|
|
local dev=$1; shift
|
|
local next_hop_mac=$1; shift
|
|
local dest_ip=$1; shift
|
|
local dest_mac=$1; shift
|
|
local inner_tos=$1; shift
|
|
local outer_tos=$1; shift
|
|
|
|
$MZ $dev -c $count -d 100msec -q \
|
|
-b $next_hop_mac -B $dest_ip \
|
|
-t udp tos=$outer_tos,sp=23456,dp=$VXPORT,p=$(:
|
|
)"08:"$( : VXLAN flags
|
|
)"00:00:00:"$( : VXLAN reserved
|
|
)"00:03:e8:"$( : VXLAN VNI
|
|
)"00:"$( : VXLAN reserved
|
|
)"$dest_mac:"$( : ETH daddr
|
|
)"$(mac_get w2):"$( : ETH saddr
|
|
)"08:00:"$( : ETH type
|
|
)"45:"$( : IP version + IHL
|
|
)"$inner_tos:"$( : IP TOS
|
|
)"00:54:"$( : IP total length
|
|
)"99:83:"$( : IP identification
|
|
)"40:00:"$( : IP flags + frag off
|
|
)"40:"$( : IP TTL
|
|
)"01:"$( : IP proto
|
|
)"00:00:"$( : IP header csum
|
|
)"c0:00:02:03:"$( : IP saddr: 192.0.2.3
|
|
)"c0:00:02:01:"$( : IP daddr: 192.0.2.1
|
|
)"08:"$( : ICMP type
|
|
)"00:"$( : ICMP code
|
|
)"8b:f2:"$( : ICMP csum
|
|
)"1f:6a:"$( : ICMP request identifier
|
|
)"00:01:"$( : ICMP request sequence number
|
|
)"4f:ff:c5:5b:00:00:00:00:"$( : ICMP payload
|
|
)"6d:74:0b:00:00:00:00:00:"$( :
|
|
)"10:11:12:13:14:15:16:17:"$( :
|
|
)"18:19:1a:1b:1c:1d:1e:1f:"$( :
|
|
)"20:21:22:23:24:25:26:27:"$( :
|
|
)"28:29:2a:2b:2c:2d:2e:2f:"$( :
|
|
)"30:31:32:33:34:35:36:37"
|
|
}
|
|
export -f vxlan_encapped_ping_do
|
|
|
|
vxlan_encapped_ping_test()
|
|
{
|
|
local ping_dev=$1; shift
|
|
local nh_dev=$1; shift
|
|
local ping_dip=$1; shift
|
|
local inner_tos=$1; shift
|
|
local outer_tos=$1; shift
|
|
local stat_get=$1; shift
|
|
local expect=$1; shift
|
|
|
|
local t0=$($stat_get)
|
|
|
|
in_ns ns1 \
|
|
vxlan_encapped_ping_do 10 $ping_dev $(mac_get $nh_dev) \
|
|
$ping_dip $(mac_get $h1) \
|
|
$inner_tos $outer_tos
|
|
|
|
local t1=$($stat_get)
|
|
local delta=$((t1 - t0))
|
|
|
|
# Tolerate a couple stray extra packets.
|
|
((expect <= delta && delta <= expect + 2))
|
|
check_err $? "Expected to capture $expect packets, got $delta."
|
|
}
|
|
export -f vxlan_encapped_ping_test
|
|
|
|
__test_ecn_decap()
|
|
{
|
|
local orig_inner_tos=$1; shift
|
|
local orig_outer_tos=$1; shift
|
|
local decapped_tos=$1; shift
|
|
|
|
RET=0
|
|
|
|
tc filter add dev $h1 ingress pref 77 prot ip \
|
|
flower ip_tos $decapped_tos action drop
|
|
sleep 1
|
|
vxlan_encapped_ping_test v2 v1 192.0.2.17 \
|
|
$orig_inner_tos $orig_outer_tos \
|
|
"tc_rule_stats_get $h1 77 ingress" 10
|
|
tc filter del dev $h1 ingress pref 77
|
|
|
|
log_test "VXLAN: ECN decap: $orig_outer_tos/$orig_inner_tos->$decapped_tos"
|
|
}
|
|
|
|
test_ecn_decap_error()
|
|
{
|
|
local orig_inner_tos=00
|
|
local orig_outer_tos=03
|
|
|
|
RET=0
|
|
|
|
vxlan_encapped_ping_test v2 v1 192.0.2.17 \
|
|
$orig_inner_tos $orig_outer_tos \
|
|
"link_stats_rx_errors_get vx1" 10
|
|
|
|
log_test "VXLAN: ECN decap: $orig_outer_tos/$orig_inner_tos->error"
|
|
}
|
|
|
|
test_ecn_decap()
|
|
{
|
|
# In accordance with INET_ECN_decapsulate()
|
|
__test_ecn_decap 00 00 0x00
|
|
__test_ecn_decap 01 01 0x01
|
|
__test_ecn_decap 02 01 0x02
|
|
__test_ecn_decap 01 03 0x03
|
|
__test_ecn_decap 02 03 0x03
|
|
test_ecn_decap_error
|
|
}
|
|
|
|
test_learning()
|
|
{
|
|
local mac=de:ad:be:ef:13:37
|
|
local dst=192.0.2.100
|
|
|
|
# Enable learning on the VxLAN device and set ageing time to 10 seconds
|
|
ip link set dev br1 type bridge ageing_time 1000
|
|
ip link set dev vx1 type vxlan ageing 10
|
|
ip link set dev vx1 type vxlan learning
|
|
reapply_config
|
|
|
|
# Check that flooding works
|
|
RET=0
|
|
|
|
vxlan_flood_test $mac $dst 10 10 10
|
|
|
|
log_test "VXLAN: flood before learning"
|
|
|
|
# Send a packet with source mac set to $mac from host w2 and check that
|
|
# a corresponding entry is created in VxLAN device vx1
|
|
RET=0
|
|
|
|
in_ns ns1 $MZ w2 -c 1 -p 64 -a $mac -b ff:ff:ff:ff:ff:ff -B $dst \
|
|
-t icmp -q
|
|
sleep 1
|
|
|
|
bridge fdb show brport vx1 | grep $mac | grep -q self
|
|
check_err $?
|
|
bridge fdb show brport vx1 | grep $mac | grep -q -v self
|
|
check_err $?
|
|
|
|
log_test "VXLAN: show learned FDB entry"
|
|
|
|
# Repeat first test and check that packets only reach host w2 in ns1
|
|
RET=0
|
|
|
|
vxlan_flood_test $mac $dst 0 10 0
|
|
|
|
log_test "VXLAN: learned FDB entry"
|
|
|
|
# Delete the learned FDB entry from the VxLAN and bridge devices and
|
|
# check that packets are flooded
|
|
RET=0
|
|
|
|
bridge fdb del dev vx1 $mac master self
|
|
sleep 1
|
|
|
|
vxlan_flood_test $mac $dst 10 10 10
|
|
|
|
log_test "VXLAN: deletion of learned FDB entry"
|
|
|
|
# Re-learn the first FDB entry and check that it is correctly aged-out
|
|
RET=0
|
|
|
|
in_ns ns1 $MZ w2 -c 1 -p 64 -a $mac -b ff:ff:ff:ff:ff:ff -B $dst \
|
|
-t icmp -q
|
|
sleep 1
|
|
|
|
bridge fdb show brport vx1 | grep $mac | grep -q self
|
|
check_err $?
|
|
bridge fdb show brport vx1 | grep $mac | grep -q -v self
|
|
check_err $?
|
|
|
|
vxlan_flood_test $mac $dst 0 10 0
|
|
|
|
sleep 20
|
|
|
|
bridge fdb show brport vx1 | grep $mac | grep -q self
|
|
check_fail $?
|
|
bridge fdb show brport vx1 | grep $mac | grep -q -v self
|
|
check_fail $?
|
|
|
|
vxlan_flood_test $mac $dst 10 10 10
|
|
|
|
log_test "VXLAN: Ageing of learned FDB entry"
|
|
|
|
# Toggle learning on the bridge port and check that the bridge's FDB
|
|
# is populated only when it should
|
|
RET=0
|
|
|
|
ip link set dev vx1 type bridge_slave learning off
|
|
|
|
in_ns ns1 $MZ w2 -c 1 -p 64 -a $mac -b ff:ff:ff:ff:ff:ff -B $dst \
|
|
-t icmp -q
|
|
sleep 1
|
|
|
|
bridge fdb show brport vx1 | grep $mac | grep -q -v self
|
|
check_fail $?
|
|
|
|
ip link set dev vx1 type bridge_slave learning on
|
|
|
|
in_ns ns1 $MZ w2 -c 1 -p 64 -a $mac -b ff:ff:ff:ff:ff:ff -B $dst \
|
|
-t icmp -q
|
|
sleep 1
|
|
|
|
bridge fdb show brport vx1 | grep $mac | grep -q -v self
|
|
check_err $?
|
|
|
|
log_test "VXLAN: learning toggling on bridge port"
|
|
|
|
# Restore previous settings
|
|
ip link set dev vx1 type vxlan nolearning
|
|
ip link set dev vx1 type vxlan ageing 300
|
|
ip link set dev br1 type bridge ageing_time 30000
|
|
reapply_config
|
|
}
|
|
|
|
test_all()
|
|
{
|
|
echo "Running tests with UDP port $VXPORT"
|
|
tests_run
|
|
}
|
|
|
|
trap cleanup EXIT
|
|
|
|
setup_prepare
|
|
setup_wait
|
|
test_all
|
|
|
|
exit $EXIT_STATUS
|