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@media only all and (prefers-color-scheme: dark) {
.highlight .hll { background-color: #49483e }
.highlight .c { color: #75715e } /* Comment */
.highlight .err { color: #960050; background-color: #1e0010 } /* Error */
.highlight .k { color: #66d9ef } /* Keyword */
.highlight .l { color: #ae81ff } /* Literal */
.highlight .n { color: 
# Copyright (c) 2017 Cisco and/or its affiliates.
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at:
#
#     http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.

*** Settings ***
| Resource | resources/libraries/robot/performance.robot
| ...
| Force Tags | 3_NODE_SINGLE_LINK_TOPO | PERFTEST | HW_ENV | PDRCHK
| ... | NIC_Intel-X520-DA2 | L2XCFWD | ENCAP | VXLAN | L2OVRLAY | IP4UNRLAY
| ...
| Suite Setup | Set up 3-node performance topology with DUT's NIC model
| ... | L2 | Intel-X520-DA2
| Suite Teardown | Tear down 3-node performance topology
| ...
| Test Setup | Set up performance test
| Test Teardown | Performance pdrchk test teardown
| ...
| Documentation | *Reference PDR throughput L2XC with VXLANoIPv4 verify test\
| ... |  cases*
| ...
| ... | *[Top] Network Topologies:* TG-DUT1-DUT2-TG 3-node circular topology
| ... | with single links between nodes.
| ... | *[Enc] Packet Encapsulations:* Eth-IPv4 for L2 cross-connect on TG-DUTn.
| ... | Eth-IPv4-VXLAN-Eth-IPv4 is applied on link between DUT1 and DUT2.
| ... | *[Cfg] DUT configuration:* DUT1 and DUT2 are configured with L2 cross-
| ... | connect. VXLAN tunnels are configured between L2XCs on DUT1 and DUT2.
| ... | DUT1 and DUT2 tested with 2p10GE NIC X520 Niantic by Intel.
| ... | *[Ver] TG verification:* In short performance tests, TG verifies
| ... | DUTs' throughput at ref-PDR (reference Non Drop Rate) with zero packet
| ... | loss tolerance. Ref-PDR value is periodically updated acording to
| ... | formula: ref-PDR = 0.9x PDR, where PDR is found in RFC2544 long
| ... | performance tests for the same DUT configuration. Test packets are
| ... | generated by TG on links to DUTs. TG traffic profile contains two L3
| ... | flow-groups (flow-group per direction, 254 flows per flow-group) with
| ... | all packets containing Ethernet header, IPv4 header with IP protocol=61
| ... | and generated payload. MAC addresses are matching MAC addresses of the
| ... | TG node interfaces.
| ... | *[Ref] Applicable standard specifications:* RFC2544, RFC7348.

*** Variables ***
# Traffic profile:
| ${traffic_profile} | trex-sl-3n-ethip4-ip4src254

*** Keywords ***
| Check PDR for L2 xconnect with VXLAN over IPv4
| | [Documentation]
| | ... | [Cfg] DUT runs L2XC config with ${wt} thread, ${wt} phy core,\
| | ... | ${rxq} receive queue per NIC port.
| | ... | [Ver] Verify ref-NDR for ${framesize} Byte frames using single trial\
| | ... | throughput test at 2x ${rate}.
| | ...
| | [Arguments] | ${framesize} | ${rate} | ${wt} | ${rxq}
| | ...
| | # Test Variables required for test and test teardown
| | Set Test Variable | ${framesize}
| | Set Test Variable | ${rate}
| | ${get_framesize}= | Get Frame Size | ${framesize}
| | ...
| | Given Add '${wt}' worker threads and '${rxq}' rxqueues in 3-node single-link circular topology
| | And Add PCI devices to DUTs in 3-node single link topology
| | And Run Keyword If | ${get_framesize} < ${1522}
| | ... | Add no multi seg to all DUTs
| | And Apply startup configuration on all VPP DUTs
| | And Initialize L2 xconnect with VXLANoIPv4 in 3-node circular topology
| | Then Traffic should pass with partial loss | ${perf_trial_duration}
| | ... | ${rate} | ${framesize} | ${traffic_profile}
| | ... | ${perf_pdr_loss_acceptance} | ${perf_pdr_loss_acceptance_type}

*** Test Cases ***
| tc01-64B-1t1c-ethip4vxlan-l2xcbase-pdrchk
| | [Documentation]
| | ... | [Cfg] DUT runs L2XC config with 1 thread, 1 phy core,\
| | ... | 1 receive queue per NIC port.
| | ... | [Ver] Verify ref-NDR for 64 Byte frames using single trial\
| | ... | throughput test at 2x ${rate}.
| | ...
| | [Tags] | 64B | 1T1C | STHREAD
| | ...
| | [Template] | Check PDR for L2 xconnect with VXLAN over IPv4
| | framesize=${64} | rate=2.4mpps | wt=1 | rxq=1

| tc02-1518B-1t1c-ethip4vxlan-l2xcbase-pdrchk
| | [Documentation]
| | ... | [Cfg] DUT runs L2XC config with 1 thread, 1 phy core,\
| | ... | 1 receive queue per NIC port.
| | ... | [Ver] Verify ref-NDR for 1518 Byte frames using single trial\
| | ... | throughput test at 2x ${rate}.
| | ...
| | [Tags] | 1518B | 1T1C | STHREAD
| | ...
| | [Template] | Check PDR for L2 xconnect with VXLAN over IPv4
| | framesize=${1518} | rate=787153pps | wt=1 | rxq=1

| tc03-9000B-1t1c-ethip4vxlan-l2xcbase-pdrchk
| | [Documentation]
| | ... | [Cfg] DUT runs L2XC config with 1 thread, 1 phy core,\
| | ... | 1 receive queue per NIC port.
| | ... | [Ver] Verify ref-NDR for 9000 Byte frames using single trial\
| | ... | throughput test at 2x ${rate}.
| | ...
| | [Tags] | 9000B | 1T1C | STHREAD
| | ...
| | [Template] | Check PDR for L2 xconnect with VXLAN over IPv4
| | framesize=${9000} | rate=137816pps | wt=1 | rxq=1

| tc04-64B-2t2c-ethip4vxlan-l2xcbase-pdrchk
| | [Documentation]
| | ... | [Cfg] DUT runs L2XC switching config with 2 threads, 2 phy cores,\
| | ... | 1 receive queue per NIC port.
| | ... | [Ver] Verify ref-NDR for 64 Byte frames using single trial\
| | ... | throughput test at 2x ${rate}.
| | ...
| | [Tags] | 64B | 2T2C | MTHREAD
| | ...
| | [Template] | Check PDR for L2 xconnect with VXLAN over IPv4
| | framesize=${64} | rate=5.2mpps | wt=2 | rxq=1

| tc05-1518B-2t2c-ethip4vxlan-l2xcbase-pdrchk
| | [Documentation]
| | ... | [Cfg] DUT runs L2XC switching config with 2 threads, 2 phy cores,\
| | ... | 1 receive queue per NIC port.
| | ... | [Ver] Verify ref-NDR for 1518 Byte frames using single trial\
| | ... | throughput test at 2x ${rate}.
| | ...
| | [Tags] | 1518B | 2T2C | MTHREAD
| | ...
| | [Template] | Check PDR for L2 xconnect with VXLAN over IPv4
| | framesize=${1518} | rate=787153pps | wt=2 | rxq=1

| tc06-9000B-2t2c-ethip4vxlan-l2xcbase-pdrchk
| | [Documentation]
| | ... | [Cfg] DUT runs L2XC switching config with 2 threads, 2 phy cores,\
| | ... | 1 receive queue per NIC port.
| | ... | [Ver] Verify ref-NDR for 9000 Byte frames using single trial\
| | ... | throughput test at 2x ${rate}.
| | ...
| | [Tags] | 9000B | 2T2C | MTHREAD
| | ...
| | [Template] | Check PDR for L2 xconnect with VXLAN over IPv4
| | framesize=${9000} | rate=137816pps | wt=2 | rxq=1

| tc07-64B-4t4c-ethip4vxlan-l2xcbase-pdrchk
| | [Documentation]
| | ... | [Cfg] DUT runs L2XC switching config with 4 threads, 4 phy cores,\
| | ... | 2 receive queue per NIC port.
| | ... | [Ver] Verify ref-NDR for 64 Byte frames using single trial\
| | ... | throughput test at 2x ${rate}.
| | ...
| | [Tags] | 64B | 4T4C | MTHREAD
| | ...
| | [Template] | Check PDR for L2 xconnect with VXLAN over IPv4
| | framesize=${64} | rate=8.4mpps | wt=4 | rxq=2

| tc08-1518B-4t4c-ethip4vxlan-l2xcbase-pdrchk
| | [Documentation]
| | ... | [Cfg] DUT runs L2XC switching config with 4 threads, 4 phy cores,\
| | ... | 2 receive queue per NIC port.
| | ... | [Ver] Verify ref-NDR for 1518 Byte frames using single trial\
| | ... | throughput test at 2x ${rate}.
| | ...
| | [Tags] | 1518B | 4T4C | MTHREAD
| | ...
| | [Template] | Check PDR for L2 xconnect with VXLAN over IPv4
| | framesize=${1518} | rate=787153pps | wt=4 | rxq=2

| tc09-9000B-4t4c-ethip4vxlan-l2xcbase-pdrchk
| | [Documentation]
| | ... | [Cfg] DUT runs L2XC switching config with 4 threads, 4 phy cores,\
| | ... | 2 receive queue per NIC port.
| | ... | [Ver] Verify ref-NDR for 9000 Byte frames using single trial\
| | ... | throughput test at 2x ${rate}.
| | ...
| | [Tags] | 9000B | 4T4C | MTHREAD
| | ...
| | [Template] | Check PDR for L2 xconnect with VXLAN over IPv4
| | framesize=${9000} | rate=137816pps | wt=4 | rxq=2
s="n">vnet_main_t * vnm, u32 hw_if_index, vlib_rx_or_tx_t dir) { vnet_hw_interface_t *hw = vnet_get_hw_interface (vnm, hw_if_index); return hw->max_l3_packet_bytes[dir]; } always_inline uword vnet_sw_interface_get_mtu (vnet_main_t * vnm, u32 sw_if_index, vlib_rx_or_tx_t dir) { vnet_hw_interface_t *hw = vnet_get_sup_hw_interface (vnm, sw_if_index); return (hw->max_l3_packet_bytes[dir]); } always_inline uword vnet_hw_interface_is_link_up (vnet_main_t * vnm, u32 hw_if_index) { return (vnet_hw_interface_get_flags (vnm, hw_if_index) & VNET_HW_INTERFACE_FLAG_LINK_UP) != 0; } always_inline vlib_frame_t * vnet_get_frame_to_sw_interface (vnet_main_t * vnm, u32 sw_if_index) { vnet_hw_interface_t *hw = vnet_get_sup_hw_interface (vnm, sw_if_index); return vlib_get_frame_to_node (vlib_get_main (), hw->output_node_index); } always_inline void vnet_put_frame_to_sw_interface (vnet_main_t * vnm, u32 sw_if_index, vlib_frame_t * f) { vnet_hw_interface_t *hw = vnet_get_sup_hw_interface (vnm, sw_if_index); return vlib_put_frame_to_node (vlib_get_main (), hw->output_node_index, f); } /* Change interface flags (e.g. up, down, enable, disable). */ clib_error_t *vnet_hw_interface_set_flags (vnet_main_t * vnm, u32 hw_if_index, u32 flags); /* Change interface flags (e.g. up, down, enable, disable). */ clib_error_t *vnet_sw_interface_set_flags (vnet_main_t * vnm, u32 sw_if_index, u32 flags); /* Change interface class. */ clib_error_t *vnet_hw_interface_set_class (vnet_main_t * vnm, u32 hw_if_index, u32 new_hw_class_index); /* Redirect rx pkts to node */ int vnet_hw_interface_rx_redirect_to_node (vnet_main_t * vnm, u32 hw_if_index, u32 node_index); void vnet_hw_interface_init_for_class (vnet_main_t * vnm, u32 hw_if_index, u32 hw_class_index, u32 hw_instance); /* Rename interface */ clib_error_t *vnet_rename_interface (vnet_main_t * vnm, u32 hw_if_index, char *new_name); /* Change interface mac address*/ clib_error_t *vnet_hw_interface_change_mac_address (vnet_main_t * vnm, u32 hw_if_index, u8 * mac_address); /* Change rx-mode */ clib_error_t *set_hw_interface_change_rx_mode (vnet_main_t * vnm, u32 hw_if_index, u8 queue_id_valid, u32 queue_id, vnet_hw_interface_rx_mode mode); /* Set the MTU on the HW interface */ void vnet_hw_interface_set_mtu (vnet_main_t * vnm, u32 hw_if_index, u32 mtu); /* update the unnumbered state of an interface */ void vnet_sw_interface_update_unnumbered (u32 sw_if_index, u32 ip_sw_if_index, u8 enable); int vnet_sw_interface_stats_collect_enable_disable (u32 sw_if_index, u8 enable); /* Formats sw/hw interface. */ format_function_t format_vnet_hw_interface; format_function_t format_vnet_hw_interface_rx_mode; format_function_t format_vnet_sw_interface; format_function_t format_vnet_sw_interface_name; format_function_t format_vnet_sw_interface_name_override; format_function_t format_vnet_sw_if_index_name; format_function_t format_vnet_sw_interface_flags; /* Parses sw/hw interface name -> index. */ unformat_function_t unformat_vnet_sw_interface; unformat_function_t unformat_vnet_hw_interface; /* Parses interface flags (up, down, enable, disable, etc.) */ unformat_function_t unformat_vnet_hw_interface_flags; unformat_function_t unformat_vnet_sw_interface_flags; /* Node runtime for interface output function. */ typedef struct { u32 hw_if_index; u32 sw_if_index; u32 dev_instance; u32 is_deleted; } vnet_interface_output_runtime_t; /* Interface output function. */ void *vnet_interface_output_node_multiarch_select (void); word vnet_sw_interface_compare (vnet_main_t * vnm, uword sw_if_index0, uword sw_if_index1); word vnet_hw_interface_compare (vnet_main_t * vnm, uword hw_if_index0, uword hw_if_index1); typedef enum { VNET_INTERFACE_OUTPUT_NEXT_DROP, VNET_INTERFACE_OUTPUT_NEXT_TX, } vnet_interface_output_next_t; typedef enum { VNET_INTERFACE_TX_NEXT_DROP, VNET_INTERFACE_TX_N_NEXT, } vnet_interface_tx_next_t; #define VNET_SIMULATED_ETHERNET_TX_NEXT_ETHERNET_INPUT VNET_INTERFACE_TX_N_NEXT typedef enum { VNET_INTERFACE_OUTPUT_ERROR_INTERFACE_DOWN, VNET_INTERFACE_OUTPUT_ERROR_INTERFACE_DELETED, } vnet_interface_output_error_t; /* Format for interface output traces. */ u8 *format_vnet_interface_output_trace (u8 * s, va_list * va); serialize_function_t serialize_vnet_interface_state, unserialize_vnet_interface_state; #endif /* included_vnet_interface_funcs_h */ /* * fd.io coding-style-patch-verification: ON * * Local Variables: * eval: (c-set-style "gnu") * End: */