FD.io CSIT-1904.25
Test Report 2019-06-17 18:38 UTC

Introduction

  • Report History
  • Report Structure
  • Test Scenarios
  • Physical Testbeds
  • Test Methodology

VPP Performance

  • Overview
  • Release Notes
  • Packet Throughput
  • Speedup Multi-Core
  • Packet Latency
    • L2 Ethernet Switching
    • IPv4 Routing
    • IPv6 Routing
    • SRv6 Routing
    • IPv4 Tunnels
    • IPv6 Tunnels
    • KVM VMs vhost-user
      • 3n-hsw-x520
      • 3n-hsw-x710
      • 3n-skx-x710
      • 2n-skx-x710
    • LXC/DRC Container Memif
    • IPSec IPv4 Routing
  • Soak Tests
  • NFV Service Density
  • Comparisons
  • Throughput Trending
  • Test Environment
  • Documentation

DPDK Performance

  • Overview
  • Release Notes
  • Packet Throughput
  • Packet Latency
  • Comparisons
  • Throughput Trending
  • Test Environment
  • Documentation

VPP Device

  • Overview
  • Release Notes
  • Integration Tests
  • Documentation

VPP Functional

  • Overview
  • Release Notes
  • Test Environment
  • Documentation

HoneyComb Functional

  • Overview
  • Release Notes
  • Test Environment
  • Documentation

Detailed Results

  • VPP Throughput
  • VPP MRR
  • DPDK Throughput
  • VPP Functional
  • VPP Device
  • HoneyComb Functional

Test Configuration

  • VPP Throughput
  • VPP MRR
  • VPP Functional
  • VPP Device

Test Operational Data

  • VPP Throughput

CSIT Framework Documentation

  • Design
  • Test Naming
  • Presentation and Analytics
  • CSIT RF Tags Descriptions
FD.io CSIT-1904.25
  • Docs »
  • Packet Latency »
  • KVM VMs vhost-user
  • View page source

KVM VMs vhost-userΒΆ

This section includes summary graphs of VPP Phy-to-VM(s)-to-Phy packet latency with with VM virtio and VPP vhost-user virtual interfaces 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.

CSIT source code for the test cases used for plots can be found in CSIT git repository.

  • 3n-hsw-x520
    • 64b-1t1c-base_and_features-l2sw
    • 64b-2t2c-base_and_features-l2sw
    • 64b-1t1c-base-vm-l2sw
    • 64b-2t2c-base-vm-l2sw
    • 64b-1t1c-base_and_scale-ip4
    • 64b-2t2c-base_and_scale-ip4
  • 3n-hsw-x710
    • 64b-1t1c-base_and_features-l2sw
    • 64b-2t2c-base_and_features-l2sw
    • 64b-1t1c-base_and_features-vm-l2sw
    • 64b-2t2c-base_and_features-vm-l2sw
    • 64b-1t1c-base_and_scale-ip4
    • 64b-2t2c-base_and_scale-ip4
  • 3n-skx-x710
    • 64b-2t1c-base_and_features-l2sw
    • 64b-4t2c-base_and_features-l2sw
    • 64b-2t1c-base_and_features-vm-l2sw
    • 64b-4t2c-base_and_features-vm-l2sw
    • 64b-2t1c-base_and_scale-ip4
    • 64b-4t2c-base_and_scale-ip4
  • 2n-skx-x710
    • 64b-2t1c-base_and_features-l2sw
    • 64b-4t2c-base_and_features-l2sw
    • 64b-2t1c-base-vm-l2sw
    • 64b-4t2c-base-vm-l2sw
    • 64b-2t1c-base_and_scale-ip4
    • 64b-4t2c-base_and_scale-ip4
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