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-rwxr-xr-xtest_spec/ietf_summary/draft-vsperf-bmwg-vswitch-opnfv-00.xml629
1 files changed, 491 insertions, 138 deletions
diff --git a/test_spec/ietf_summary/draft-vsperf-bmwg-vswitch-opnfv-00.xml b/test_spec/ietf_summary/draft-vsperf-bmwg-vswitch-opnfv-00.xml
index e4057410..c44e93e4 100755
--- a/test_spec/ietf_summary/draft-vsperf-bmwg-vswitch-opnfv-00.xml
+++ b/test_spec/ietf_summary/draft-vsperf-bmwg-vswitch-opnfv-00.xml
@@ -94,7 +94,7 @@
</address>
</author>
- <date day="6" month="June" year="2015"/>
+ <date day="3" month="July" year="2015"/>
<abstract>
<t>This memo describes the progress of the Open Platform for NFV (OPNFV)
@@ -135,7 +135,7 @@
This project intends to build on the current and completed work of the
Benchmarking Methodology Working Group in IETF, by referencing existing
literature. For example, currently the most referenced RFC is <xref
- target="RFC2544"/> (which depens on <xref target="RFC1242"/>) and
+ target="RFC2544"/> (which depends on <xref target="RFC1242"/>) and
foundation of the benchmarking work in OPNFV is common and strong.</t>
<t>See
@@ -146,7 +146,7 @@
<t>The authors note that OPNFV distinguishes itself from other open
source compute and networking projects through its emphasis on existing
"telco" services as opposed to cloud-computing. There are many ways in
- which telco requirements have different emhasis on performance
+ which telco requirements have different emphasis on performance
dimensions when compared to cloud computing: support for and transfer of
isochronous media streams is one example.</t>
@@ -168,8 +168,10 @@
<section title="Benchmarking Considerations">
<t>This section highlights some specific considerations (from <xref
- target="ID.ietf-bmwg-virtual-net"/>)related to Benchmarks for virtual
- switches.</t>
+ target="I-D.ietf-bmwg-virtual-net"/>)related to Benchmarks for virtual
+ switches. The OPNFV project is sharing its present view on these areas,
+ as they develop their specifications in the Level Test Design (LTD)
+ document.</t>
<section title="Comparison with Physical Network Functions">
<t>To compare the performance of virtual designs and implementations
@@ -179,26 +181,270 @@
during development of new methods. A key configuration aspect is the
number of parallel cores required to achieve comparable performance
with a given physical device, or whether some limit of scale was
- reached before the cores could achieve the comparable level. </t>
+ reached before the cores could achieve the comparable level.</t>
<t>It's unlikely that the virtual switch will be the only application
running on the SUT, so CPU utilization, Cache utilization, and Memory
footprint should also be recorded for the virtual implementations of
- internetworking functions.</t>
+ internetworking functions. </t>
</section>
<section title="Continued Emphasis on Black-Box Benchmarks">
<t>External observations remain essential as the basis for Benchmarks.
Internal observations with fixed specification and interpretation will
be provided in parallel to assist the development of operations
- procedures when the technology is deployed. </t>
+ procedures when the technology is deployed.</t>
+ </section>
+
+ <section title="New Configuration Parameters">
+ <t>A key consideration when conducting any sort of benchmark is trying
+ to ensure the consistency and repeatability of test results. When
+ benchmarking the performance of a vSwitch there are many factors that
+ can affect the consistency of results, one key factor is matching the
+ various hardware and software details of the SUT. This section lists
+ some of the many new parameters which this project believes are
+ critical to report in order to achieve repeatability. </t>
+
+ <t>Hardware details including:</t>
+
+ <t><list style="symbols">
+ <t>Platform details</t>
+
+ <t>Processor details</t>
+
+ <t>Memory information (type and size)</t>
+
+ <t>Number of enabled cores</t>
+
+ <t>Number of cores used for the test</t>
+
+ <t>Number of physical NICs, as well as their details
+ (manufacturer, versions, type and the PCI slot they are plugged
+ into)</t>
+
+ <t>NIC interrupt configuration</t>
+
+ <t>BIOS version, release date and any configurations that were
+ modified</t>
+
+ <t>CPU microcode level</t>
+
+ <t>Memory DIMM configurations (quad rank performance may not be
+ the same as dual rank) in size, freq and slot locations</t>
+
+ <t>PCI configuration parameters (payload size, early ack
+ option...)</t>
+
+ <t>Power management at all levels (ACPI sleep states, processor
+ package, OS...)</t>
+ </list>Software details including:</t>
+
+ <t><list style="symbols">
+ <t>OS parameters and behavior (text vs graphical no one typing at
+ the console on one system)</t>
+
+ <t>OS version (for host and VNF)</t>
+
+ <t>Kernel version (for host and VNF)</t>
+
+ <t>GRUB boot parameters (for host and VNF)</t>
+
+ <t>Hypervisor details (Type and version)</t>
+
+ <t>Selected vSwitch, version number or commit id used</t>
+
+ <t>vSwitch launch command line if it has been parameterised</t>
+
+ <t>Memory allocation to the vSwitch</t>
+
+ <t>which NUMA node it is using, and how many memory channels</t>
+
+ <t>DPDK or any other SW dependency version number or commit id
+ used</t>
+
+ <t>Memory allocation to a VM - if it's from Hugpages/elsewhere</t>
+
+ <t>VM storage type: snapshot/independent persistent/independent
+ non-persistent</t>
+
+ <t>Number of VMs</t>
+
+ <t>Number of Virtual NICs (vNICs), versions, type and driver</t>
+
+ <t>Number of virtual CPUs and their core affinity on the host</t>
+
+ <t>Number vNIC interrupt configuration</t>
+
+ <t>Thread affinitization for the applications (including the
+ vSwitch itself) on the host</t>
+
+ <t>Details of Resource isolation, such as CPUs designated for
+ Host/Kernel (isolcpu) and CPUs designated for specific processes
+ (taskset). - Test duration. - Number of flows.</t>
+ </list></t>
+
+ <t>Test Traffic Information:<list style="symbols">
+ <t>Traffic type - UDP, TCP, IMIX / Other</t>
+
+ <t>Packet Sizes</t>
+
+ <t>Deployment Scenario</t>
+ </list></t>
+
+ <t/>
+ </section>
+
+ <section title="Flow classification">
+ <t>Virtual switches group packets into flows by processing and
+ matching particular packet or frame header information, or by matching
+ packets based on the input ports. Thus a flow can be thought of a
+ sequence of packets that have the same set of header field values or
+ have arrived on the same port. Performance results can vary based on
+ the parameters the vSwitch uses to match for a flow. The recommended
+ flow classification parameters for any vSwitch performance tests are:
+ the input port, the source IP address, the destination IP address and
+ the ethernet protocol type field. It is essential to increase the flow
+ timeout time on a vSwitch before conducting any performance tests that
+ do not measure the flow setup time. Normally the first packet of a
+ particular stream will install the flow in the virtual switch which
+ adds an additional latency, subsequent packets of the same flow are
+ not subject to this latency if the flow is already installed on the
+ vSwitch. </t>
+ </section>
+
+ <section title="Benchmarks using Baselines with Resource Isolation">
+ <t>This outline describes measurement of baseline with isolated
+ resources at a high level, which is the intended approach at this
+ time.</t>
+
+ <t><list style="numbers">
+ <t>Baselines: <list style="symbols">
+ <t>Optional: Benchmark platform forwarding capability without
+ a vswitch or VNF for at least 72 hours (serves as a means of
+ platform validation and a means to obtain the base performance
+ for the platform in terms of its maximum forwarding rate and
+ latency). <figure>
+ <preamble>Benchmark platform forwarding
+ capability</preamble>
+
+ <artwork align="right"><![CDATA[ __
+ +--------------------------------------------------+ |
+ | +------------------------------------------+ | |
+ | | | | |
+ | | Simple Forwarding App | | Host
+ | | | | |
+ | +------------------------------------------+ | |
+ | | NIC | | |
+ +---+------------------------------------------+---+ __|
+ ^ :
+ | |
+ : v
+ +--------------------------------------------------+
+ | |
+ | traffic generator |
+ | |
+ +--------------------------------------------------+]]></artwork>
+
+ <postamble/>
+ </figure></t>
+
+ <t>Benchmark VNF forwarding capability with direct
+ connectivity (vSwitch bypass, e.g., SR/IOV) for at least 72
+ hours (serves as a means of VNF validation and a means to
+ obtain the base performance for the VNF in terms of its
+ maximum forwarding rate and latency). The metrics gathered
+ from this test will serve as a key comparison point for
+ vSwitch bypass technologies performance and vSwitch
+ performance. <figure align="right">
+ <preamble>Benchmark VNF forwarding capability</preamble>
+
+ <artwork><![CDATA[ __
+ +--------------------------------------------------+ |
+ | +------------------------------------------+ | |
+ | | | | |
+ | | VNF | | |
+ | | | | |
+ | +------------------------------------------+ | |
+ | | Passthrough/SR-IOV | | Host
+ | +------------------------------------------+ | |
+ | | NIC | | |
+ +---+------------------------------------------+---+ __|
+ ^ :
+ | |
+ : v
+ +--------------------------------------------------+
+ | |
+ | traffic generator |
+ | |
+ +--------------------------------------------------+]]></artwork>
+
+ <postamble/>
+ </figure></t>
+
+ <t>Benchmarking with isolated resources alone, with other
+ resources (both HW&amp;SW) disabled Example, vSw and VM are
+ SUT</t>
+
+ <t>Benchmarking with isolated resources alone, leaving some
+ resources unused</t>
+
+ <t>Benchmark with isolated resources and all resources
+ occupied</t>
+ </list></t>
+
+ <t>Next Steps<list style="symbols">
+ <t>Limited sharing</t>
+
+ <t>Production scenarios</t>
+
+ <t>Stressful scenarios</t>
+ </list></t>
+ </list></t>
</section>
</section>
<section title="VSWITCHPERF Specification Summary">
<t>The overall specification in preparation is referred to as a Level
- Test Design (LTD) document, which will contain a suite of performace
- tests.</t>
+ Test Design (LTD) document, which will contain a suite of performance
+ tests. The base performance tests in the LTD are based on the
+ pre-existing specifications developed by BMWG to test the performance of
+ physical switches. These specifications include:</t>
+
+ <t><list style="symbols">
+ <t><xref target="RFC2544"/> Benchmarking Methodology for Network
+ Interconnect Devices</t>
+
+ <t><xref target="RFC2889"/> Benchmarking Methodology for LAN
+ Switching</t>
+
+ <t><xref target="RFC6201"/> Device Reset Characterization</t>
+
+ <t><xref target="RFC5481"/> Packet Delay Variation Applicability
+ Statement</t>
+ </list></t>
+
+ <t/>
+
+ <t>In addition to this, the LTD also re-uses the terminology defined
+ by:</t>
+
+ <t><list style="symbols">
+ <t><xref target="RFC2285"/> Benchmarking Terminology for LAN
+ Switching Devices</t>
+
+ <t><xref target="RFC5481"/> Packet Delay Variation Applicability
+ Statement</t>
+ </list></t>
+
+ <t/>
+
+ <t>Specifications to be included in future updates of the LTD
+ include:<list style="symbols">
+ <t><xref target="RFC3918"/> Methodology for IP Multicast
+ Benchmarking</t>
+
+ <t><xref target="RFC4737"/> Packet Reordering Metrics</t>
+ </list></t>
<t>As one might expect, the most fundamental internetworking
characteristics of Throughput and Latency remain important when the
@@ -242,25 +488,25 @@
performance, i.e. how fast systems can send and receive data through
the switch.</t>
- <t>Request/Response Performance Tests (TCP, UDP) the measure the
- transaction rate through the switch.</t>
-
<t>Control Path and Datapath Coupling Tests, to understand how
closely coupled the datapath and the control path are as well as the
effect of this coupling on the performance of the DUT (example:
delay of the initial packet of a flow).</t>
- <t>Noisy Neighbour Tests, to understand the effects of resource
- sharing on the performance of a virtual switch.</t>
-
<t>CPU and Memory Consumption Tests to understand the virtual
switch&rsquo;s footprint on the system, usually conducted as
- auxilliary measurements with benchmarks above. They include: CPU
+ auxiliary measurements with benchmarks above. They include: CPU
utilization, Cache utilization and Memory footprint.</t>
</list></t>
- <t>The felixability of deployemnt of a virtual switch within a network
- means that the BMWG IETF existing literature needs to be used to
+ <t>Future/planned test specs include:<list style="symbols">
+ <t>Request/Response Performance Tests (TCP, UDP) which measure the
+ transaction rate through the switch.</t>
+
+ <t>Noisy Neighbour Tests, to understand the effects of resource
+ sharing on the performance of a virtual switch.</t>
+ </list>The flexibility of deployment of a virtual switch within a
+ network means that the BMWG IETF existing literature needs to be used to
characterize the performance of a switch in various deployment
scenarios. The deployment scenarios under consideration include:</t>
@@ -268,60 +514,60 @@
<preamble>Physical port to virtual switch to physical
port</preamble>
- <artwork><![CDATA[ __
- +--------------------------------------------------+ |
- | +--------------------+ | |
- | | | | |
- | | v | | Host
- | +--------------+ +--------------+ | |
- | | phy port | vSwitch | phy port | | |
- +---+--------------+------------+--------------+---+ __|
- ^ :
- | |
- : v
- +--------------------------------------------------+
- | |
- | traffic generator |
- | |
- +--------------------------------------------------+]]></artwork>
+ <artwork><![CDATA[ __
+ +--------------------------------------------------+ |
+ | +--------------------+ | |
+ | | | | |
+ | | v | | Host
+ | +--------------+ +--------------+ | |
+ | | phy port | vSwitch | phy port | | |
+ +---+--------------+------------+--------------+---+ __|
+ ^ :
+ | |
+ : v
+ +--------------------------------------------------+
+ | |
+ | traffic generator |
+ | |
+ +--------------------------------------------------+]]></artwork>
</figure></t>
<t><figure>
<preamble>Physical port to virtual switch to VNF to virtual switch
to physical port</preamble>
- <artwork><![CDATA[ __
- +---------------------------------------------------+ |
- | | |
- | +-------------------------------------------+ | |
- | | Application | | |
- | +-------------------------------------------+ | |
- | ^ : | |
- | | | | | Guest
- | : v | |
- | +---------------+ +---------------+ | |
- | | logical port 0| | logical port 1| | |
- +---+---------------+-----------+---------------+---+ __|
- ^ :
- | |
- : v __
- +---+---------------+----------+---------------+---+ |
- | | logical port 0| | logical port 1| | |
- | +---------------+ +---------------+ | |
- | ^ : | |
- | | | | | Host
- | : v | |
- | +--------------+ +--------------+ | |
- | | phy port | vSwitch | phy port | | |
- +---+--------------+------------+--------------+---+ __|
- ^ :
- | |
- : v
- +--------------------------------------------------+
- | |
- | traffic generator |
- | |
- +--------------------------------------------------+]]></artwork>
+ <artwork><![CDATA[ __
+ +---------------------------------------------------+ |
+ | | |
+ | +-------------------------------------------+ | |
+ | | Application | | |
+ | +-------------------------------------------+ | |
+ | ^ : | |
+ | | | | | Guest
+ | : v | |
+ | +---------------+ +---------------+ | |
+ | | logical port 0| | logical port 1| | |
+ +---+---------------+-----------+---------------+---+ __|
+ ^ :
+ | |
+ : v __
+ +---+---------------+----------+---------------+---+ |
+ | | logical port 0| | logical port 1| | |
+ | +---------------+ +---------------+ | |
+ | ^ : | |
+ | | | | | Host
+ | : v | |
+ | +--------------+ +--------------+ | |
+ | | phy port | vSwitch | phy port | | |
+ +---+--------------+------------+--------------+---+ __|
+ ^ :
+ | |
+ : v
+ +--------------------------------------------------+
+ | |
+ | traffic generator |
+ | |
+ +--------------------------------------------------+]]></artwork>
</figure><figure>
<preamble>Physical port to virtual switch to VNF to virtual switch
to VNF to virtual switch to physical port</preamble>
@@ -346,13 +592,13 @@
| | logical ports | | logical ports | | |
| +---------------+ +---------------+ | |
| ^ | ^ | | | Host
- | | L-----------------+ v | |
+ | | |-----------------| v | |
| +--------------+ +--------------+ | |
| | phy ports | vSwitch | phy ports | | |
+---+--------------+----------+--------------+---+_|
- ^ : ^ :
- | | | |
- : v : v
+ ^ :
+ | |
+ : v
+--------------------------------------------------+
| |
| traffic generator |
@@ -361,75 +607,75 @@
</figure><figure>
<preamble>Physical port to virtual switch to VNF</preamble>
- <artwork><![CDATA[ __
- +---------------------------------------------------+ |
- | | |
- | +-------------------------------------------+ | |
- | | Application | | |
- | +-------------------------------------------+ | |
- | ^ | |
- | | | | Guest
- | : | |
- | +---------------+ | |
- | | logical port 0| | |
- +---+---------------+-------------------------------+ __|
+ <artwork><![CDATA[ __
+ +---------------------------------------------------+ |
+ | | |
+ | +-------------------------------------------+ | |
+ | | Application | | |
+ | +-------------------------------------------+ | |
+ | ^ | |
+ | | | | Guest
+ | : | |
+ | +---------------+ | |
+ | | logical port 0| | |
+ +---+---------------+-------------------------------+ __|
+ ^
+ |
+ : __
+ +---+---------------+------------------------------+ |
+ | | logical port 0| | |
+ | +---------------+ | |
+ | ^ | |
+ | | | | Host
+ | : | |
+ | +--------------+ | |
+ | | phy port | vSwitch | |
+ +---+--------------+------------ -------------- ---+ __|
^
|
- : __
- +---+---------------+------------------------------+ |
- | | logical port 0| | |
- | +---------------+ | |
- | ^ | |
- | | | | Host
- | : | |
- | +--------------+ | |
- | | phy port | vSwitch | |
- +---+--------------+------------ -------------- ---+ __|
- ^
- |
- :
- +--------------------------------------------------+
- | |
- | traffic generator |
- | |
- +--------------------------------------------------+]]></artwork>
+ :
+ +--------------------------------------------------+
+ | |
+ | traffic generator |
+ | |
+ +--------------------------------------------------+]]></artwork>
</figure><figure>
<preamble>VNF to virtual switch to physical port</preamble>
- <artwork><![CDATA[ __
- +---------------------------------------------------+ |
- | | |
- | +-------------------------------------------+ | |
- | | Application | | |
- | +-------------------------------------------+ | |
- | : | |
- | | | | Guest
- | v | |
- | +---------------+ | |
- | | logical port | | |
- +-------------------------------+---------------+---+ __|
- :
- |
- v __
- +------------------------------+---------------+---+ |
- | | logical port | | |
- | +---------------+ | |
- | : | |
- | | | | Host
- | v | |
- | +--------------+ | |
- | vSwitch | phy port | | |
- +-------------------------------+--------------+---+ __|
- :
- |
- v
- +--------------------------------------------------+
- | |
- | traffic generator |
- | |
- +--------------------------------------------------+]]></artwork>
+ <artwork><![CDATA[ __
+ +---------------------------------------------------+ |
+ | | |
+ | +-------------------------------------------+ | |
+ | | Application | | |
+ | +-------------------------------------------+ | |
+ | : | |
+ | | | | Guest
+ | v | |
+ | +---------------+ | |
+ | | logical port | | |
+ +-------------------------------+---------------+---+ __|
+ :
+ |
+ v __
+ +------------------------------+---------------+---+ |
+ | | logical port | | |
+ | +---------------+ | |
+ | : | |
+ | | | | Host
+ | v | |
+ | +--------------+ | |
+ | vSwitch | phy port | | |
+ +-------------------------------+--------------+---+ __|
+ :
+ |
+ v
+ +--------------------------------------------------+
+ | |
+ | traffic generator |
+ | |
+ +--------------------------------------------------+]]></artwork>
</figure><figure>
- <preamble> VNF to virtual switch to VNF</preamble>
+ <preamble>VNF to virtual switch to VNF</preamble>
<artwork><![CDATA[ __
+----------------------+ +----------------------+ |
@@ -454,12 +700,111 @@
| L-----------------+ | |
| | |
| vSwitch | |
- +------------------------------------------------+_|
-
-]]></artwork>
+ +------------------------------------------------+_|]]></artwork>
</figure></t>
</section>
+ <section title="3x3 Matrix Coverage">
+ <t>This section organizes the many existing test specifications into the
+ "3x3" matrix (introduced in <xref target="I-D.ietf-bmwg-virtual-net"/>).
+ Because the LTD specification ID names are quite long, this section is
+ organized into lists for each occupied cell of the matrix (not all are
+ occupied, also the matrix has grown to 3x4 to accommodate scale
+ metrics).</t>
+
+ <t>The tests listed below assess the activation of paths in the data
+ plane, rather than the control plane.</t>
+
+ <t>(Editor's Note: a complete list of tests is available here:
+ https://wiki.opnfv.org/wiki/vswitchperf_test_spec_review )</t>
+
+ <section title="Speed of Activation">
+ <t><list style="symbols">
+ <t>Throughput.RFC2889.AddressLearningRate</t>
+
+ <t>Throughput.RFC2889.AddressCachingCapacity</t>
+
+ <t>PacketLatency.InitialPacketProcessingLatency</t>
+
+ <t/>
+ </list></t>
+ </section>
+
+ <section title="Reliability of Activation">
+ <t><list style="symbols">
+ <t>Throughput.RFC2544.SystemRecoveryTime</t>
+
+ <t>Throughput.RFC2544.ResetTime</t>
+ </list></t>
+ </section>
+
+ <section title="Scale of Activation">
+ <t><list style="symbols">
+ <t>Throughput.RFC2889.AddressCachingCapacity</t>
+
+ <t/>
+ </list></t>
+ </section>
+
+ <section title="Speed of Operation">
+ <t><list style="symbols">
+ <t>Throughput.RFC2544.PacketLossRate</t>
+
+ <t>Throughput.RFC2544.PacketLossRateFrameModification</t>
+
+ <t>Throughput.RFC2544.BackToBackFrames</t>
+
+ <t>Throughput.RFC2889.ForwardingRate</t>
+
+ <t>Throughput.RFC2889.ForwardPressure</t>
+
+ <t>Throughput.RFC2889.BroadcastFrameForwarding</t>
+
+ <t>RFC2889 Broadcast Frame Latency test</t>
+ </list></t>
+ </section>
+
+ <section title="Accuracy of Operation">
+ <t><list style="symbols">
+ <t>Throughput.RFC2889.ErrorFramesFiltering</t>
+
+ <t/>
+ </list></t>
+ </section>
+
+ <section title="Reliability of Operation">
+ <t><list style="symbols">
+ <t>Throughput.RFC2544.Soak</t>
+
+ <t>Throughput.RFC2544.SoakFrameModification</t>
+
+ <t/>
+ </list></t>
+ </section>
+
+ <section title="Summary">
+ <t><figure>
+ <artwork><![CDATA[|------------------------------------------------------------------------|
+| | | | | |
+| | SPEED | ACCURACY | RELIABILITY | SCALE |
+| | | | | |
+|------------------------------------------------------------------------|
+| | | | | |
+| Activation | X | | X | X |
+| | | | | |
+|------------------------------------------------------------------------|
+| | | | | |
+| Operation | X | X | X | |
+| | | | | |
+|------------------------------------------------------------------------|
+| | | | | |
+| De-activation | | | | |
+| | | | | |
+|------------------------------------------------------------------------|]]></artwork>
+ </figure></t>
+ </section>
+ </section>
+
<section title="Security Considerations">
<t>Benchmarking activities as described in this memo are limited to
technology characterization of a Device Under Test/System Under Test
@@ -518,6 +863,14 @@
<?rfc include='reference.RFC.5357'?>
+ <?rfc include='reference.RFC.2889'?>
+
+ <?rfc include='reference.RFC.3918'?>
+
+ <?rfc include='reference.RFC.6201'?>
+
+ <?rfc include='reference.RFC.2285'?>
+
<reference anchor="NFV.PER001">
<front>
<title>Network Function Virtualization: Performance and Portability
@@ -548,7 +901,7 @@
<?rfc include='reference.RFC.6390'?>
- <?rfc include='reference.ID.ietf-bmwg-virtual-net'?>
+ <?rfc include='reference.I-D.ietf-bmwg-virtual-net'?>
</references>
</back>
</rfc>