mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/herbert/cryptodev-2.6.git
synced 2026-04-19 03:53:51 -04:00
In a future patch, mlxsw will start adding RIFs to uppers of front panel port netdevices, if they have an IP address. At the time that the front panel port is enslaved to the bridge (this holds for both bridges used here), the bridge MAC address does not have the same prefix as other interfaces in the system. On Nvidia Spectrum-1 machines all the RIFs have to have the same 38-bit MAC address prefix. Since the bridge does not obey this limitation, the RIF cannot be created, and the enslavement attempt is vetoed on the grounds of the configuration not being offloadable. The selftest itself however checks traffic prioritization and scheduling, and the bridges serve for their L2 forwarding capabilities, and do not need to participate in routing traffic. The IP addresses or the RIFs are irrelevant. Fix by disabling automatic IPv6 address generation for the HW-offloaded bridges in this selftest, thus exempting them from mlxsw router attention. Signed-off-by: Petr Machata <petrm@nvidia.com> Reviewed-by: Danielle Ratson <danieller@nvidia.com> Signed-off-by: Jakub Kicinski <kuba@kernel.org>
326 lines
8.8 KiB
Bash
Executable File
326 lines
8.8 KiB
Bash
Executable File
#!/bin/bash
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# SPDX-License-Identifier: GPL-2.0
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#
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# A test for strict prioritization of traffic in the switch. Run two streams of
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# traffic, each through a different ingress port, one tagged with PCP of 1, the
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# other with PCP of 2. Both streams converge at one egress port, where they are
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# assigned TC of, respectively, 1 and 2, with strict priority configured between
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# them. In H3, we expect to see (almost) exclusively the high-priority traffic.
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#
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# Please see qos_mc_aware.sh for an explanation of why we use mausezahn and
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# counters instead of just running iperf3.
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#
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# +---------------------------+ +-----------------------------+
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# | H1 | | H2 |
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# | $h1.111 + | | + $h2.222 |
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# | 192.0.2.33/28 | | | | 192.0.2.65/28 |
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# | e-qos-map 0:1 | | | | e-qos-map 0:2 |
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# | | | | | |
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# | $h1 + | | + $h2 |
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# +-----------------|---------+ +---------|-------------------+
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# | |
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# +-----------------|-------------------------------------|-------------------+
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# | $swp1 + + $swp2 |
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# | >1Gbps | | >1Gbps |
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# | +---------------|-----------+ +----------|----------------+ |
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# | | $swp1.111 + | | + $swp2.222 | |
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# | | BR111 | SW | BR222 | |
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# | | $swp3.111 + | | + $swp3.222 | |
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# | +---------------|-----------+ +----------|----------------+ |
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# | \_____________________________________/ |
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# | | |
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# | + $swp3 |
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# | | 1Gbps bottleneck |
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# | | ETS: (up n->tc n for n in 0..7) |
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# | | strict priority |
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# +------------------------------------|--------------------------------------+
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# |
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# +--------------------|--------------------+
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# | + $h3 H3 |
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# | / \ |
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# | / \ |
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# | $h3.111 + + $h3.222 |
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# | 192.0.2.34/28 192.0.2.66/28 |
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# +-----------------------------------------+
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ALL_TESTS="
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ping_ipv4
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test_ets_strict
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"
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lib_dir=$(dirname $0)/../../../net/forwarding
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NUM_NETIFS=6
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source $lib_dir/lib.sh
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source $lib_dir/devlink_lib.sh
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source qos_lib.sh
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h1_create()
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{
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simple_if_init $h1
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mtu_set $h1 10000
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vlan_create $h1 111 v$h1 192.0.2.33/28
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ip link set dev $h1.111 type vlan egress-qos-map 0:1
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}
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h1_destroy()
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{
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vlan_destroy $h1 111
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mtu_restore $h1
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simple_if_fini $h1
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}
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h2_create()
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{
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simple_if_init $h2
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mtu_set $h2 10000
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vlan_create $h2 222 v$h2 192.0.2.65/28
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ip link set dev $h2.222 type vlan egress-qos-map 0:2
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}
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h2_destroy()
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{
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vlan_destroy $h2 222
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mtu_restore $h2
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simple_if_fini $h2
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}
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h3_create()
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{
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simple_if_init $h3
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mtu_set $h3 10000
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vlan_create $h3 111 v$h3 192.0.2.34/28
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vlan_create $h3 222 v$h3 192.0.2.66/28
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}
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h3_destroy()
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{
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vlan_destroy $h3 222
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vlan_destroy $h3 111
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mtu_restore $h3
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simple_if_fini $h3
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}
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switch_create()
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{
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ip link set dev $swp1 up
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mtu_set $swp1 10000
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ip link set dev $swp2 up
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mtu_set $swp2 10000
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# prio n -> TC n, strict scheduling
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lldptool -T -i $swp3 -V ETS-CFG up2tc=0:0,1:1,2:2,3:3,4:4,5:5,6:6,7:7
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lldptool -T -i $swp3 -V ETS-CFG tsa=$(
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)"0:strict,"$(
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)"1:strict,"$(
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)"2:strict,"$(
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)"3:strict,"$(
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)"4:strict,"$(
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)"5:strict,"$(
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)"6:strict,"$(
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)"7:strict"
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sleep 1
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ip link set dev $swp3 up
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mtu_set $swp3 10000
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tc qdisc replace dev $swp3 root handle 101: tbf rate 1gbit \
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burst 128K limit 1G
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vlan_create $swp1 111
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vlan_create $swp2 222
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vlan_create $swp3 111
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vlan_create $swp3 222
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ip link add name br111 type bridge vlan_filtering 0
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ip link set dev br111 addrgenmode none
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ip link set dev br111 up
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ip link set dev $swp1.111 master br111
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ip link set dev $swp3.111 master br111
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ip link add name br222 type bridge vlan_filtering 0
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ip link set dev br222 addrgenmode none
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ip link set dev br222 up
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ip link set dev $swp2.222 master br222
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ip link set dev $swp3.222 master br222
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# Make sure that ingress quotas are smaller than egress so that there is
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# room for both streams of traffic to be admitted to shared buffer.
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devlink_pool_size_thtype_save 0
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devlink_pool_size_thtype_set 0 dynamic 10000000
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devlink_pool_size_thtype_save 4
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devlink_pool_size_thtype_set 4 dynamic 10000000
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devlink_port_pool_th_save $swp1 0
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devlink_port_pool_th_set $swp1 0 6
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devlink_tc_bind_pool_th_save $swp1 1 ingress
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devlink_tc_bind_pool_th_set $swp1 1 ingress 0 6
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devlink_port_pool_th_save $swp2 0
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devlink_port_pool_th_set $swp2 0 6
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devlink_tc_bind_pool_th_save $swp2 2 ingress
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devlink_tc_bind_pool_th_set $swp2 2 ingress 0 6
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devlink_tc_bind_pool_th_save $swp3 1 egress
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devlink_tc_bind_pool_th_set $swp3 1 egress 4 7
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devlink_tc_bind_pool_th_save $swp3 2 egress
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devlink_tc_bind_pool_th_set $swp3 2 egress 4 7
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devlink_port_pool_th_save $swp3 4
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devlink_port_pool_th_set $swp3 4 7
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}
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switch_destroy()
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{
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devlink_port_pool_th_restore $swp3 4
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devlink_tc_bind_pool_th_restore $swp3 2 egress
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devlink_tc_bind_pool_th_restore $swp3 1 egress
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devlink_tc_bind_pool_th_restore $swp2 2 ingress
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devlink_port_pool_th_restore $swp2 0
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devlink_tc_bind_pool_th_restore $swp1 1 ingress
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devlink_port_pool_th_restore $swp1 0
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devlink_pool_size_thtype_restore 4
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devlink_pool_size_thtype_restore 0
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ip link del dev br222
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ip link del dev br111
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vlan_destroy $swp3 222
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vlan_destroy $swp3 111
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vlan_destroy $swp2 222
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vlan_destroy $swp1 111
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tc qdisc del dev $swp3 root handle 101:
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mtu_restore $swp3
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ip link set dev $swp3 down
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lldptool -T -i $swp3 -V ETS-CFG up2tc=0:0,1:0,2:0,3:0,4:0,5:0,6:0,7:0
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mtu_restore $swp2
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ip link set dev $swp2 down
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mtu_restore $swp1
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ip link set dev $swp1 down
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}
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setup_prepare()
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{
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h1=${NETIFS[p1]}
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swp1=${NETIFS[p2]}
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swp2=${NETIFS[p3]}
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h2=${NETIFS[p4]}
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swp3=${NETIFS[p5]}
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h3=${NETIFS[p6]}
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h3mac=$(mac_get $h3)
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vrf_prepare
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h1_create
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h2_create
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h3_create
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switch_create
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}
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cleanup()
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{
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pre_cleanup
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switch_destroy
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h3_destroy
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h2_destroy
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h1_destroy
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vrf_cleanup
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}
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ping_ipv4()
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{
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ping_test $h1 192.0.2.34 " from H1"
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ping_test $h2 192.0.2.66 " from H2"
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}
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rel()
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{
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local old=$1; shift
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local new=$1; shift
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bc <<< "
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scale=2
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ret = 100 * $new / $old
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if (ret > 0) { ret } else { 0 }
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"
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}
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test_ets_strict()
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{
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RET=0
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# Run high-prio traffic on its own.
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start_traffic $h2.222 192.0.2.65 192.0.2.66 $h3mac
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local -a rate_2
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rate_2=($(measure_rate $swp2 $h3 rx_octets_prio_2 "prio 2"))
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check_err $? "Could not get high enough prio-2 ingress rate"
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local rate_2_in=${rate_2[0]}
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local rate_2_eg=${rate_2[1]}
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stop_traffic # $h2.222
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# Start low-prio stream.
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start_traffic $h1.111 192.0.2.33 192.0.2.34 $h3mac
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local -a rate_1
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rate_1=($(measure_rate $swp1 $h3 rx_octets_prio_1 "prio 1"))
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check_err $? "Could not get high enough prio-1 ingress rate"
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local rate_1_in=${rate_1[0]}
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local rate_1_eg=${rate_1[1]}
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# High-prio and low-prio on their own should have about the same
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# throughput.
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local rel21=$(rel $rate_1_eg $rate_2_eg)
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check_err $(bc <<< "$rel21 < 95")
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check_err $(bc <<< "$rel21 > 105")
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# Start the high-prio stream--now both streams run.
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start_traffic $h2.222 192.0.2.65 192.0.2.66 $h3mac
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rate_3=($(measure_rate $swp2 $h3 rx_octets_prio_2 "prio 2 w/ 1"))
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check_err $? "Could not get high enough prio-2 ingress rate with prio-1"
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local rate_3_in=${rate_3[0]}
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local rate_3_eg=${rate_3[1]}
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stop_traffic # $h2.222
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stop_traffic # $h1.111
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# High-prio should have about the same throughput whether or not
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# low-prio is in the system.
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local rel32=$(rel $rate_2_eg $rate_3_eg)
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check_err $(bc <<< "$rel32 < 95")
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log_test "strict priority"
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echo "Ingress to switch:"
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echo " p1 in rate $(humanize $rate_1_in)"
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echo " p2 in rate $(humanize $rate_2_in)"
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echo " p2 in rate w/ p1 $(humanize $rate_3_in)"
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echo "Egress from switch:"
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echo " p1 eg rate $(humanize $rate_1_eg)"
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echo " p2 eg rate $(humanize $rate_2_eg) ($rel21% of p1)"
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echo " p2 eg rate w/ p1 $(humanize $rate_3_eg) ($rel32% of p2)"
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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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