X-Git-Url: https://gerrit.fd.io/r/gitweb?a=blobdiff_plain;f=docs%2Freport%2Fvpp_performance_tests%2Fpacket_latency_graphs%2Fip6_tunnels.rst;h=050ace506920ceca4c3a18a8973be611783fd246;hb=d77d62178fa257cf84099811b9177b9e224a2dd8;hp=12d21f6bf3e215b2fa1f65584bb5db89cdb24654;hpb=4fbf1ec2d535d322725d395c369b6c9f7222c8dd;p=csit.git diff --git a/docs/report/vpp_performance_tests/packet_latency_graphs/ip6_tunnels.rst b/docs/report/vpp_performance_tests/packet_latency_graphs/ip6_tunnels.rst index 12d21f6bf3..050ace5069 100644 --- a/docs/report/vpp_performance_tests/packet_latency_graphs/ip6_tunnels.rst +++ b/docs/report/vpp_performance_tests/packet_latency_graphs/ip6_tunnels.rst @@ -1,48 +1,102 @@ -IPv6 Overlay Tunnels -==================== + +.. raw:: latex + + \clearpage + +.. raw:: html + + + +IPv6 Tunnels +============ This section includes summary graphs of VPP Phy-to-Phy packet latency -with IPv6 Overlay Tunnels measured at 50% of discovered NDR throughput +with IPv6 Overlay Tunnels measured at 100% of discovered NDR throughput rate. Latency is reported for VPP running in multiple configurations of VPP worker thread(s), a.k.a. VPP data plane thread(s), and their physical CPU core(s) placement. -VPP packet latency in 1t1c setup (1thread, 1core) is presented in the graph below. +CSIT source code for the test cases used for plots can be found in +`CSIT git repository `_. + +.. raw:: latex + + \clearpage + +3n-hsw-x520 +~~~~~~~~~~~ + +78b-1t1c-base_and_scale +----------------------- .. raw:: html - +
+ +:index:`Packet Latency: ip6tun-3n-hsw-x520-78b-1t1c-base_and_scale-ndr` + +.. raw:: html + + + +



+
.. raw:: latex \begin{figure}[H] \centering \graphicspath{{../_build/_static/vpp/}} - \includegraphics[clip, trim=0cm 8cm 5cm 0cm, width=0.70\textwidth]{78B-1t1c-ethip6-ndrdisc-lat50} - \label{fig:78B-1t1c-ethip6-ndrdisc-lat50} + \includegraphics[clip, trim=0cm 0cm 5cm 0cm, width=0.70\textwidth]{ip6tun-3n-hsw-x520-78b-1t1c-base_and_scale-ndr-lat} + \label{fig:ip6tun-3n-hsw-x520-78b-1t1c-base_and_scale-ndr-lat} \end{figure} -*Figure 1. VPP 1thread 1core - packet latency for Phy-to-Phy IPv6 Overlay Tunnels.* +.. raw:: latex -CSIT source code for the test cases used for above plots can be found in -`CSIT git repository `_. + \clearpage -VPP packet latency in 2t2c setup (2thread, 2core) is presented in the graph below. +78b-2t2c-base_and_scale +----------------------- .. raw:: html - +
+ +:index:`Packet Latency: ip6tun-3n-hsw-x520-78b-2t2c-base_and_scale-ndr` + +.. raw:: html + + + +



+
.. raw:: latex \begin{figure}[H] \centering \graphicspath{{../_build/_static/vpp/}} - \includegraphics[clip, trim=0cm 8cm 5cm 0cm, width=0.70\textwidth]{78B-2t2c-ethip6-ndrdisc-lat50} - \label{fig:78B-2t2c-ethip6-ndrdisc-lat50} + \includegraphics[clip, trim=0cm 0cm 5cm 0cm, width=0.70\textwidth]{ip6tun-3n-hsw-x520-78b-2t2c-base_and_scale-ndr-lat} + \label{fig:ip6tun-3n-hsw-x520-78b-2t2c-base_and_scale-ndr-lat} \end{figure} - -*Figure 2. VPP 2threads 2cores - packet latency for Phy-to-Phy IPv6 Overlay Tunnels.* - -CSIT source code for the test cases used for above plots can be found in -`CSIT git repository `_.