selftests: forwarding: Add tc-police tests
Test tc-police action in various scenarios such as Rx policing, Tx policing, shared policer and police piped to mirred. The test passes with both veth pairs and loopbacked ports. # ./tc_police.sh TEST: police on rx [ OK ] TEST: police on tx [ OK ] TEST: police with shared policer - rx [ OK ] TEST: police with shared policer - tx [ OK ] TEST: police rx and mirror [ OK ] TEST: police tx and mirror [ OK ] Signed-off-by: Ido Schimmel <idosch@mellanox.com> Reviewed-by: Petr Machata <petrm@mellanox.com> Signed-off-by: Jakub Kicinski <kuba@kernel.org>
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#!/bin/bash
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# SPDX-License-Identifier: GPL-2.0
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#
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# Test tc-police action.
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#
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# +---------------------------------+
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# | H1 (vrf) |
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# | + $h1 |
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# | | 192.0.2.1/24 |
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# | | |
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# | | default via 192.0.2.2 |
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# +----|----------------------------+
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# |
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# +----|----------------------------------------------------------------------+
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# | SW | |
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# | + $rp1 |
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# | 192.0.2.2/24 |
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# | |
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# | 198.51.100.2/24 203.0.113.2/24 |
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# | + $rp2 + $rp3 |
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# | | | |
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# +----|-----------------------------------------|----------------------------+
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# | |
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# +----|----------------------------+ +----|----------------------------+
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# | | default via 198.51.100.2 | | | default via 203.0.113.2 |
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# | | | | | |
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# | | 198.51.100.1/24 | | | 203.0.113.1/24 |
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# | + $h2 | | + $h3 |
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# | H2 (vrf) | | H3 (vrf) |
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# +---------------------------------+ +---------------------------------+
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ALL_TESTS="
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police_rx_test
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police_tx_test
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police_shared_test
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police_rx_mirror_test
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police_tx_mirror_test
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"
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NUM_NETIFS=6
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source tc_common.sh
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source lib.sh
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h1_create()
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{
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simple_if_init $h1 192.0.2.1/24
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ip -4 route add default vrf v$h1 nexthop via 192.0.2.2
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}
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h1_destroy()
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{
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ip -4 route del default vrf v$h1 nexthop via 192.0.2.2
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simple_if_fini $h1 192.0.2.1/24
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}
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h2_create()
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{
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simple_if_init $h2 198.51.100.1/24
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ip -4 route add default vrf v$h2 nexthop via 198.51.100.2
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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 $h2 clsact
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ip -4 route del default vrf v$h2 nexthop via 198.51.100.2
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simple_if_fini $h2 198.51.100.1/24
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}
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h3_create()
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{
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simple_if_init $h3 203.0.113.1/24
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ip -4 route add default vrf v$h3 nexthop via 203.0.113.2
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tc qdisc add dev $h3 clsact
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}
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h3_destroy()
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{
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tc qdisc del dev $h3 clsact
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ip -4 route del default vrf v$h3 nexthop via 203.0.113.2
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simple_if_fini $h3 203.0.113.1/24
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}
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router_create()
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{
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ip link set dev $rp1 up
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ip link set dev $rp2 up
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ip link set dev $rp3 up
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__addr_add_del $rp1 add 192.0.2.2/24
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__addr_add_del $rp2 add 198.51.100.2/24
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__addr_add_del $rp3 add 203.0.113.2/24
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tc qdisc add dev $rp1 clsact
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tc qdisc add dev $rp2 clsact
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}
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router_destroy()
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{
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tc qdisc del dev $rp2 clsact
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tc qdisc del dev $rp1 clsact
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__addr_add_del $rp3 del 203.0.113.2/24
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__addr_add_del $rp2 del 198.51.100.2/24
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__addr_add_del $rp1 del 192.0.2.2/24
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ip link set dev $rp3 down
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ip link set dev $rp2 down
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ip link set dev $rp1 down
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}
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police_common_test()
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{
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local test_name=$1; shift
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RET=0
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# Rule to measure bandwidth on ingress of $h2
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tc filter add dev $h2 ingress protocol ip pref 1 handle 101 flower \
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dst_ip 198.51.100.1 ip_proto udp dst_port 54321 \
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action drop
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mausezahn $h1 -a own -b $(mac_get $rp1) -A 192.0.2.1 -B 198.51.100.1 \
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-t udp sp=12345,dp=54321 -p 1000 -c 0 -q &
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local t0=$(tc_rule_stats_get $h2 1 ingress .bytes)
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sleep 10
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local t1=$(tc_rule_stats_get $h2 1 ingress .bytes)
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local er=$((80 * 1000 * 1000))
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local nr=$(rate $t0 $t1 10)
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local nr_pct=$((100 * (nr - er) / er))
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((-10 <= nr_pct && nr_pct <= 10))
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check_err $? "Expected rate $(humanize $er), got $(humanize $nr), which is $nr_pct% off. Required accuracy is +-10%."
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log_test "$test_name"
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{ kill %% && wait %%; } 2>/dev/null
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tc filter del dev $h2 ingress protocol ip pref 1 handle 101 flower
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}
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police_rx_test()
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{
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# Rule to police traffic destined to $h2 on ingress of $rp1
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tc filter add dev $rp1 ingress protocol ip pref 1 handle 101 flower \
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dst_ip 198.51.100.1 ip_proto udp dst_port 54321 \
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action police rate 80mbit burst 16k conform-exceed drop/ok
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police_common_test "police on rx"
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tc filter del dev $rp1 ingress protocol ip pref 1 handle 101 flower
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}
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police_tx_test()
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{
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# Rule to police traffic destined to $h2 on egress of $rp2
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tc filter add dev $rp2 egress protocol ip pref 1 handle 101 flower \
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dst_ip 198.51.100.1 ip_proto udp dst_port 54321 \
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action police rate 80mbit burst 16k conform-exceed drop/ok
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police_common_test "police on tx"
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tc filter del dev $rp2 egress protocol ip pref 1 handle 101 flower
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}
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police_shared_common_test()
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{
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local dport=$1; shift
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local test_name=$1; shift
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RET=0
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mausezahn $h1 -a own -b $(mac_get $rp1) -A 192.0.2.1 -B 198.51.100.1 \
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-t udp sp=12345,dp=$dport -p 1000 -c 0 -q &
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local t0=$(tc_rule_stats_get $h2 1 ingress .bytes)
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sleep 10
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local t1=$(tc_rule_stats_get $h2 1 ingress .bytes)
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local er=$((80 * 1000 * 1000))
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local nr=$(rate $t0 $t1 10)
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local nr_pct=$((100 * (nr - er) / er))
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((-10 <= nr_pct && nr_pct <= 10))
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check_err $? "Expected rate $(humanize $er), got $(humanize $nr), which is $nr_pct% off. Required accuracy is +-10%."
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log_test "$test_name"
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{ kill %% && wait %%; } 2>/dev/null
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}
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police_shared_test()
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{
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# Rule to measure bandwidth on ingress of $h2
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tc filter add dev $h2 ingress protocol ip pref 1 handle 101 flower \
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dst_ip 198.51.100.1 ip_proto udp src_port 12345 \
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action drop
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# Rule to police traffic destined to $h2 on ingress of $rp1
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tc filter add dev $rp1 ingress protocol ip pref 1 handle 101 flower \
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dst_ip 198.51.100.1 ip_proto udp dst_port 54321 \
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action police rate 80mbit burst 16k conform-exceed drop/ok \
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index 10
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# Rule to police a different flow destined to $h2 on egress of $rp2
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# using same policer
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tc filter add dev $rp2 egress protocol ip pref 1 handle 101 flower \
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dst_ip 198.51.100.1 ip_proto udp dst_port 22222 \
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action police index 10
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police_shared_common_test 54321 "police with shared policer - rx"
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police_shared_common_test 22222 "police with shared policer - tx"
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tc filter del dev $rp2 egress protocol ip pref 1 handle 101 flower
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tc filter del dev $rp1 ingress protocol ip pref 1 handle 101 flower
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tc filter del dev $h2 ingress protocol ip pref 1 handle 101 flower
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}
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police_mirror_common_test()
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{
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local pol_if=$1; shift
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local dir=$1; shift
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local test_name=$1; shift
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RET=0
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# Rule to measure bandwidth on ingress of $h2
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tc filter add dev $h2 ingress protocol ip pref 1 handle 101 flower \
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dst_ip 198.51.100.1 ip_proto udp dst_port 54321 \
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action drop
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# Rule to measure bandwidth of mirrored traffic on ingress of $h3
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tc filter add dev $h3 ingress protocol ip pref 1 handle 101 flower \
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dst_ip 198.51.100.1 ip_proto udp dst_port 54321 \
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action drop
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# Rule to police traffic destined to $h2 and mirror to $h3
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tc filter add dev $pol_if $dir protocol ip pref 1 handle 101 flower \
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dst_ip 198.51.100.1 ip_proto udp dst_port 54321 \
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action police rate 80mbit burst 16k conform-exceed drop/pipe \
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action mirred egress mirror dev $rp3
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mausezahn $h1 -a own -b $(mac_get $rp1) -A 192.0.2.1 -B 198.51.100.1 \
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-t udp sp=12345,dp=54321 -p 1000 -c 0 -q &
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local t0=$(tc_rule_stats_get $h2 1 ingress .bytes)
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sleep 10
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local t1=$(tc_rule_stats_get $h2 1 ingress .bytes)
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local er=$((80 * 1000 * 1000))
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local nr=$(rate $t0 $t1 10)
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local nr_pct=$((100 * (nr - er) / er))
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((-10 <= nr_pct && nr_pct <= 10))
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check_err $? "Expected rate $(humanize $er), got $(humanize $nr), which is $nr_pct% off. Required accuracy is +-10%."
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local t0=$(tc_rule_stats_get $h3 1 ingress .bytes)
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sleep 10
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local t1=$(tc_rule_stats_get $h3 1 ingress .bytes)
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local er=$((80 * 1000 * 1000))
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local nr=$(rate $t0 $t1 10)
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local nr_pct=$((100 * (nr - er) / er))
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((-10 <= nr_pct && nr_pct <= 10))
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check_err $? "Expected rate $(humanize $er), got $(humanize $nr), which is $nr_pct% off. Required accuracy is +-10%."
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log_test "$test_name"
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{ kill %% && wait %%; } 2>/dev/null
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tc filter del dev $pol_if $dir protocol ip pref 1 handle 101 flower
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tc filter del dev $h3 ingress protocol ip pref 1 handle 101 flower
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tc filter del dev $h2 ingress protocol ip pref 1 handle 101 flower
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}
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police_rx_mirror_test()
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{
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police_mirror_common_test $rp1 ingress "police rx and mirror"
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}
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police_tx_mirror_test()
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{
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police_mirror_common_test $rp2 egress "police tx and mirror"
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}
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setup_prepare()
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{
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h1=${NETIFS[p1]}
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rp1=${NETIFS[p2]}
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rp2=${NETIFS[p3]}
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h2=${NETIFS[p4]}
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rp3=${NETIFS[p5]}
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h3=${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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h3_create
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router_create
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}
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cleanup()
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{
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pre_cleanup
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router_destroy
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h3_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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trap cleanup EXIT
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setup_prepare
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setup_wait
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tests_run
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exit $EXIT_STATUS
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