summaryrefslogtreecommitdiffstats
path: root/src/vpp-api/vom/lldp_global_cmds.cpp
blob: 8237114f789f19386efdda1327fc3a91c966cc97 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
/*
 * 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.
 */

#include "vom/lldp_global_cmds.hpp"

namespace VOM {
namespace lldp_global_cmds {
config_cmd::config_cmd(HW::item<bool>& item,
                       const std::string& system_name,
                       uint32_t tx_hold,
                       uint32_t tx_interval)
  : rpc_cmd(item)
  , m_system_name(system_name)
  , m_tx_hold(tx_hold)
  , m_tx_interval(tx_interval)
{
}

bool
config_cmd::operator==(const config_cmd& other) const
{
  return (m_system_name == other.m_system_name);
}

rc_t
config_cmd::issue(connection& con)
{
  msg_t req(con.ctx(), std::ref(*this));

  auto& payload = req.get_request().get_payload();
  payload.tx_hold = m_tx_hold;
  payload.tx_interval = m_tx_interval;

  memcpy(payload.system_name, m_system_name.c_str(),
         std::min(sizeof(payload.system_name), m_system_name.length()));

  VAPI_CALL(req.execute());

  m_hw_item.set(wait());

  return rc_t::OK;
}

std::string
config_cmd::to_string() const
{
  std::ostringstream s;
  s << "Lldp-global-config: " << m_hw_item.to_string()
    << " system_name:" << m_system_name << " tx-hold:" << m_tx_hold
    << " tx-interval:" << m_tx_interval;

  return (s.str());
}

}; // namespace lldp_global_cmds
}; // namespace VOM

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "mozilla")
 * End:
 */
t.Special */ .highlight .gd { color: #f92672 } /* Generic.Deleted */ .highlight .ge { font-style: italic } /* Generic.Emph */ .highlight .gi { color: #a6e22e } /* Generic.Inserted */ .highlight .gs { font-weight: bold } /* Generic.Strong */ .highlight .gu { color: #75715e } /* Generic.Subheading */ .highlight .kc { color: #66d9ef } /* Keyword.Constant */ .highlight .kd { color: #66d9ef } /* Keyword.Declaration */ .highlight .kn { color: #f92672 } /* Keyword.Namespace */ .highlight .kp { color: #66d9ef } /* Keyword.Pseudo */ .highlight .kr { color: #66d9ef } /* Keyword.Reserved */ .highlight .kt { color: #66d9ef } /* Keyword.Type */ .highlight .ld { color: #e6db74 } /* Literal.Date */ .highlight .m { color: #ae81ff } /* Literal.Number */ .highlight .s { color: #e6db74 } /* Literal.String */ .highlight .na { color: #a6e22e } /* Name.Attribute */ .highlight .nb { color: #f8f8f2 } /* Name.Builtin */ .highlight .nc { color: #a6e22e } /* Name.Class */ .highlight .no { color: #66d9ef } /* Name.Constant */ .highlight .nd { color: #a6e22e } /* Name.Decorator */ .highlight .ni { color: #f8f8f2 } /* Name.Entity */ .highlight .ne { color: #a6e22e } /* Name.Exception */ .highlight .nf { color: #a6e22e } /* Name.Function */ .highlight .nl { color: #f8f8f2 } /* Name.Label */ .highlight .nn { color: #f8f8f2 } /* Name.Namespace */ .highlight .nx { color: #a6e22e } /* Name.Other */ .highlight .py { color: #f8f8f2 } /* Name.Property */ .highlight .nt { color: #f92672 } /* Name.Tag */ .highlight .nv { color: #f8f8f2 } /* Name.Variable */ .highlight .ow { color: #f92672 } /* Operator.Word */ .highlight .w { color: #f8f8f2 } /* Text.Whitespace */ .highlight .mb { color: #ae81ff } /* Literal.Number.Bin */ .highlight .mf { color: #ae81ff } /* Literal.Number.Float */ .highlight .mh { color: #ae81ff } /* Literal.Number.Hex */ .highlight .mi { color: #ae81ff } /* Literal.Number.Integer */ .highlight .mo { color: #ae81ff } /* Literal.Number.Oct */ .highlight .sa { color: #e6db74 } /* Literal.String.Affix */ .highlight .sb { color: #e6db74 } /* Literal.String.Backtick */ .highlight .sc { color: #e6db74 } /* Literal.String.Char */ .highlight .dl { color: #e6db74 } /* Literal.String.Delimiter */ .highlight .sd { color: #e6db74 } /* Literal.String.Doc */ .highlight .s2 { color: #e6db74 } /* Literal.String.Double */ .highlight .se { color: #ae81ff } /* Literal.String.Escape */ .highlight .sh { color: #e6db74 } /* Literal.String.Heredoc */ .highlight .si { color: #e6db74 } /* Literal.String.Interpol */ .highlight .sx { color: #e6db74 } /* Literal.String.Other */ .highlight .sr { color: #e6db74 } /* Literal.String.Regex */ .highlight .s1 { color: #e6db74 } /* Literal.String.Single */ .highlight .ss { color: #e6db74 } /* Literal.String.Symbol */ .highlight .bp { color: #f8f8f2 } /* Name.Builtin.Pseudo */ .highlight .fm { color: #a6e22e } /* Name.Function.Magic */ .highlight .vc { color: #f8f8f2 } /* Name.Variable.Class */ .highlight .vg { color: #f8f8f2 } /* Name.Variable.Global */ .highlight .vi { color: #f8f8f2 } /* Name.Variable.Instance */ .highlight .vm { color: #f8f8f2 } /* Name.Variable.Magic */ .highlight .il { color: #ae81ff } /* Literal.Number.Integer.Long */ } @media (prefers-color-scheme: light) { .highlight .hll { background-color: #ffffcc } .highlight .c { color: #888888 } /* Comment */ .highlight .err { color: #a61717; background-color: #e3d2d2 } /* Error */ .highlight .k { color: #008800; font-weight: bold } /* Keyword */ .highlight .ch { color: #888888 } /* Comment.Hashbang */ .highlight .cm { color: #888888 } /* Comment.Multiline */ .highlight .cp { color: #cc0000; font-weight: bold } /* Comment.Preproc */ .highlight .cpf { color: #888888 } /* Comment.PreprocFile */ .highlight .c1 { color: #888888 } /* Comment.Single */ .highlight .cs { color: #cc0000; font-weight: bold; background-color: #fff0f0 } /* Comment.Special */ .highlight .gd { color: #000000; background-color: #ffdddd } /* Generic.Deleted */ .highlight .ge { font-style: italic } /* Generic.Emph */ .highlight .gr { color: #aa0000 } /* Generic.Error */ .highlight .gh { color: #333333 } /* Generic.Heading */ .highlight .gi { color: #000000; background-color: #ddffdd } /* Generic.Inserted */ .highlight .go { color: #888888 } /* Generic.Output */ .highlight .gp { color: #555555 } /* Generic.Prompt */ .highlight .gs { font-weight: bold } /* Generic.Strong */ .highlight .gu { color: #666666 } /* Generic.Subheading */ .highlight .gt { color: #aa0000 } /* Generic.Traceback */ .highlight .kc { color: #008800; font-weight: bold } /* Keyword.Constant */ .highlight .kd { color: #008800; font-weight: bold } /* Keyword.Declaration */ .highlight .kn { color: #008800; font-weight: bold } /* Keyword.Namespace */ .highlight .kp { color: #008800 } /* Keyword.Pseudo */ .highlight .kr { color: #008800; font-weight: bold } /* Keyword.Reserved */ .highlight .kt { color: #888888; font-weight: bold } /* Keyword.Type */ .highlight .m { color: #0000DD; font-weight: bold } /* Literal.Number */ .highlight .s { color: #dd2200; background-color: #fff0f0 } /* Literal.String */ .highlight .na { color: #336699 } /* Name.Attribute */ .highlight .nb { color: #003388 } /* Name.Builtin */ .highlight .nc { color: #bb0066; font-weight: bold } /* Name.Class */ .highlight .no { color: #003366; font-weight: bold } /* Name.Constant */ .highlight .nd { color: #555555 } /* Name.Decorator */ .highlight .ne { color: #bb0066; font-weight: bold } /* Name.Exception */ .highlight .nf { color: #0066bb; font-weight: bold } /* Name.Function */ .highlight .nl { color: #336699; font-style: italic } /* Name.Label */ .highlight .nn { color: #bb0066; font-weight: bold } /* Name.Namespace */ .highlight .py { color: #336699; font-weight: bold } /* Name.Property */ .highlight .nt { color: #bb0066; font-weight: bold } /* Name.Tag */ .highlight .nv { color: #336699 } /* Name.Variable */ .highlight .ow { color: #008800 } /* Operator.Word */ .highlight .w { color: #bbbbbb } /* Text.Whitespace */ .highlight .mb { color: #0000DD; font-weight: bold } /* Literal.Number.Bin */ .highlight .mf { color: #0000DD; font-weight: bold } /* Literal.Number.Float */ .highlight .mh { color: #0000DD; font-weight: bold } /* Literal.Number.Hex */ .highlight .mi { color: #0000DD; font-weight: bold } /* Literal.Number.Integer */ .highlight .mo { color: #0000DD; font-weight: bold } /* Literal.Number.Oct */ .highlight .sa { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Affix */ .highlight .sb { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Backtick */ .highlight .sc { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Char */ .highlight .dl { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Delimiter */ .highlight .sd { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Doc */ .highlight .s2 { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Double */ .highlight .se { color: #0044dd; background-color: #fff0f0 } /* Literal.String.Escape */ .highlight .sh { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Heredoc */ .highlight .si { color: #3333bb; background-color: #fff0f0 } /* Literal.String.Interpol */ .highlight .sx { color: #22bb22; background-color: #f0fff0 } /* Literal.String.Other */ .highlight .sr { color: #008800; background-color: #fff0ff } /* Literal.String.Regex */ .highlight .s1 { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Single */ .highlight .ss { color: #aa6600; background-color: #fff0f0 } /* Literal.String.Symbol */ .highlight .bp { color: #003388 } /* Name.Builtin.Pseudo */ .highlight .fm { color: #0066bb; font-weight: bold } /* Name.Function.Magic */ .highlight .vc { color: #336699 } /* Name.Variable.Class */ .highlight .vg { color: #dd7700 } /* Name.Variable.Global */ .highlight .vi { color: #3333bb } /* Name.Variable.Instance */ .highlight .vm { color: #336699 } /* Name.Variable.Magic */ .highlight .il { color: #0000DD; font-weight: bold } /* Literal.Number.Integer.Long */ }
# 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/performance_setup.robot
| Resource | resources/libraries/robot/ip/nat.robot
| Resource | resources/libraries/robot/shared/traffic.robot
| ...
| Force Tags | 3_NODE_SINGLE_LINK_TOPO | PERFTEST | HW_ENV | NDRPDRDISC
| ... | NIC_Intel-X520-DA2 | ETH | IP4FWD | FEATURE | NAT44 | SRC_USER_2000
| ... | SCALE
| ...
| Suite Setup | Run Keywords
| ... | Set up 3-node performance topology with DUT's NIC model | L3
| ... | Intel-X520-DA2
| ... | AND | Set up performance test suite with NAT
| Suite Teardown | Tear down 3-node performance topology
| ...
| Test Setup | Set up performance test
| ...
| Test Teardown | Tear down performance discovery test with NAT
| ... | ${min_rate}pps | ${framesize} | ${traffic_profile}
| ...
| Documentation | *NAT44 performance test cases*
| ...
| ... | *[Top] Network Topologies:* TG-DUT1-DUT2-TG 3-node circular topology
| ... | with single links between nodes.
| ... | *[Enc] Packet Encapsulations:* Eth-IPv4-UDP for IPv4 routing.
| ... | *[Cfg] DUT configuration:* DUT1 and DUT2 are configured with IPv4
| ... | routing and two static IPv4 /24 and IPv4/20 route entries. DUT1 and DUT2
| ... | tested with 2p10GE NIC X520 Niantic by Intel.
| ... | *[Ver] TG verification:* TG finds and reports throughput NDR (Non Drop
| ... | Rate) with zero packet loss tolerance or throughput PDR (Partial Drop
| ... | Rate) with non-zero packet loss tolerance (LT) expressed in percentage
| ... | of packets transmitted. NDR and PDR are discovered for different
| ... | Ethernet L2 frame sizes using either binary search or linear search
| ... | algorithms with configured starting rate and final step that determines
| ... | throughput measurement resolution. Test packets are generated by TG on
| ... | links to DUTs. TG traffic profile contains two L3 flow-groups
| ... | (flow-group per direction, one flow per flow-group) with all packets
| ... | containing Ethernet header, IPv4 header with UDP header and static
| ... | payload. MAC addresses are matching MAC addresses of the TG node
| ... | interfaces.
| ... | *[Ref] Applicable standard specifications:* RFC2544.

*** Variables ***
# X520-DA2 bandwidth limit
| ${s_limit} | ${10000000000}
# Traffic profile:
| ${traffic_profile} | trex-sl-3n-ethip4udp-2000u15p

*** Keywords ***
| Discover NDR or PDR for IPv4 routing with NAT44
| | ...
| | [Arguments] | ${wt} | ${rxq} | ${framesize} | ${min_rate} | ${search_type}
| | ...
| | Set Test Variable | ${framesize}
| | Set Test Variable | ${min_rate}
| | ${max_rate}= | Calculate pps | ${s_limit} | ${framesize}
| | ${binary_min}= | Set Variable | ${min_rate}
| | ${binary_max}= | Set Variable | ${max_rate}
| | ${threshold}= | Set Variable | ${min_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} < ${1522}
| | ... | Add no multi seg to all DUTs
| | And Add NAT to all DUTs
| | And Apply startup configuration on all VPP DUTs
| | When Initialize NAT44 in 3-node circular topology
| | Then Run Keyword If | '${search_type}' == 'NDR'
| | ... | Find NDR using binary search and pps
| | ... | ${framesize} | ${binary_min} | ${binary_max} | ${traffic_profile}
| | ... | ${min_rate} | ${max_rate} | ${threshold}
| | ... | ELSE IF | '${search_type}' == 'PDR'
| | ... | Find PDR using binary search and pps
| | ... | ${framesize} | ${binary_min} | ${binary_max} | ${traffic_profile}
| | ... | ${min_rate} | ${max_rate} | ${threshold}
| | ... | ${perf_pdr_loss_acceptance} | ${perf_pdr_loss_acceptance_type}

*** Test Cases ***
| tc01-64B-1t1c-ethip4udp-ip4scale2000-udpsrcscale15-snat-ndrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 1 thread, 1 phy core,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find NDR for 64 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 64B | 1T1C | STHREAD | NDRDISC
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=1 | rxq=1 | framesize=${64} | min_rate=${50000} | search_type=NDR

| tc02-64B-1t1c-ethip4udp-ip4scale2000-udpsrcscale15-snat-pdrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 1 thread, 1 phy core,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find PDR for 64 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 64B | 1T1C | STHREAD | PDRDISC | SKIP_PATCH
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=1 | rxq=1 | framesize=${64} | min_rate=${50000} | search_type=PDR

| tc03-1518B-1t1c-ethip4udp-ip4scale2000-udpsrcscale15-snat-ndrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 1 thread, 1 phy core,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find NDR for 1518 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 1518B | 1T1C | STHREAD | NDRDISC
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=1 | rxq=1 | framesize=${1518} | min_rate=${50000} | search_type=NDR

| tc04-1518B-1t1c-ethip4udp-ip4scale2000-udpsrcscale15-snat-pdrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 1 thread, 1 phy core,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find PDR for 1518 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 1518B | 1T1C | STHREAD | PDRDISC | SKIP_PATCH
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=1 | rxq=1 | framesize=${1518} | min_rate=${50000} | search_type=PDR

| tc05-IMIX-1t1c-ethip4udp-ip4scale2000-udpsrcscale15-snat-ndrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 1 thread, 1 phy core,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find NDR for IMIX frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | IMIX | 1T1C | STHREAD | NDRDISC
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=1 | rxq=1 | framesize=IMIX_v4_1 | min_rate=${50000} | search_type=NDR

| tc06-IMIX-1t1c-ethip4udp-ip4scale2000-udpsrcscale15-snat-pdrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 1 thread, 1 phy core,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find PDR for IMIX frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | IMIX | 1T1C | STHREAD | PDRDISC | SKIP_PATCH
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=1 | rxq=1 | framesize=IMIX_v4_1 | min_rate=${50000} | search_type=PDR

| tc07-64B-2t2c-ethip4udp-ip4scale2000-udpsrcscale15-snat-ndrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 2 threads, 2 phy cores,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find NDR for 64 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 64B | 2T2C | MTHREAD | NDRDISC
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=2 | rxq=1 | framesize=${64} | min_rate=${50000} | search_type=NDR

| tc08-64B-2t2c-ethip4udp-ip4scale2000-udpsrcscale15-snat-pdrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 2 threads, 2 phy cores,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find PDR for 64 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 64B | 2T2C | MTHREAD | PDRDISC | SKIP_PATCH
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=2 | rxq=1 | framesize=${64} | min_rate=${50000} | search_type=PDR

| tc09-1518B-2t2c-ethip4udp-ip4scale2000-udpsrcscale15-snat-ndrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 2 threads, 2 phy cores,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find NDR for 1518 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 1518B | 2T2C | MTHREAD | NDRDISC
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=2 | rxq=1 | framesize=${1518} | min_rate=${50000} | search_type=NDR

| tc10-1518B-2t2c-ethip4udp-ip4scale2000-udpsrcscale15-snat-pdrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 2 threads, 2 phy cores,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find PDR for 1518 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 1518B | 2T2C | MTHREAD | PDRDISC | SKIP_PATCH
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=2 | rxq=1 | framesize=${1518} | min_rate=${50000} | search_type=PDR

| tc11-IMIX-2t2c-ethip4udp-ip4scale2000-udpsrcscale15-snat-ndrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 2 threads, 2 phy cores,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find NDR for IMIX frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | IMIX | 2T2C | MTHREAD | NDRDISC
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=2 | rxq=1 | framesize=IMIX_v4_1 | min_rate=${50000} | search_type=NDR

| tc12-IMIX-2t2c-ethip4udp-ip4scale2000-udpsrcscale15-snat-pdrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 2 threads, 2 phy cores,\
| | ... | 1 receive queue per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find PDR for IMIX frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | IMIX | 2T2C | MTHREAD | PDRDISC | SKIP_PATCH
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=2 | rxq=1 | framesize=IMIX_v4_1 | min_rate=${50000} | search_type=PDR

| tc13-64B-4t4c-ethip4udp-ip4scale2000-udpsrcscale15-snat-ndrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 4 threads, 4 phy cores,\
| | ... | 2 receive queues per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find NDR for 64 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 64B | 4T4C | MTHREAD | NDRDISC
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=4 | rxq=2 | framesize=${64} | min_rate=${50000} | search_type=NDR

| tc14-64B-4t4c-ethip4udp-ip4scale2000-udpsrcscale15-snat-pdrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 4 threads, 4 phy cores,\
| | ... | 2 receive queues per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find PDR for 64 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 64B | 4T4C | MTHREAD | PDRDISC | SKIP_PATCH
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=4 | rxq=2 | framesize=${64} | min_rate=${50000} | search_type=PDR

| tc15-1518B-4t4c-ethip4udp-ip4scale2000-udpsrcscale15-snat-ndrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 4 threads, 4 phy cores,\
| | ... | 2 receive queues per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find NDR for 1518 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 1518B | 4T4C | MTHREAD | NDRDISC
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=4 | rxq=2 | framesize=${1518} | min_rate=${50000} | search_type=NDR

| tc16-1518B-4t4c-ethip4udp-ip4scale2000-udpsrcscale15-snat-pdrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 4 threads, 4 phy cores,\
| | ... | 2 receive queues per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find PDR for 1518 Byte frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | 1518B | 4T4C | MTHREAD | PDRDISC | SKIP_PATCH
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=4 | rxq=2 | framesize=${1518} | min_rate=${50000} | search_type=PDR

| tc17-IMIX-4t4c-ethip4udp-ip4scale2000-udpsrcscale15-snat-ndrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 4 threads, 4 phy cores,\
| | ... | 2 receive queues per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find NDR for IMIX frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | IMIX | 4T4C | MTHREAD | NDRDISC
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=4 | rxq=2 | framesize=IMIX_v4_1 | min_rate=${50000} | search_type=NDR

| tc18-IMIX-4t4c-ethip4udp-ip4scale2000-udpsrcscale15-snat-pdrdisc
| | [Documentation]
| | ... | [Cfg] DUT runs IPv4 routing config with 4 threads, 4 phy cores,\
| | ... | 2 receive queues per NIC port. NAT44 is configured between DUTs -\
| | ... | 2000 users and 15 ports (sessions) per user.
| | ... | [Ver] Find PDR for IMIX frames using binary search start at 10GE\
| | ... | linerate, step 50kpps.
| | ...
| | [Tags] | IMIX | 4T4C | MTHREAD | PDRDISC | SKIP_PATCH
| | ...
| | [Template] | Discover NDR or PDR for IPv4 routing with NAT44
| | wt=4 | rxq=2 | framesize=IMIX_v4_1 | min_rate=${50000} | search_type=PDR