Intel: Intelligent Compute   /     Enabling NFV to Deliver on its Promise

Description

Software Defined Infrastructure: Network functions virtualization (NFV) is paving the way for more open, exible, and economical networking and communications equipment based on general-purpose computing platforms instead of traditional proprietary, purpose-built products. However, this transition hinges on increasing performance and minimizing the latencies associated with virtualization on general- purpose platforms, particularly for interrupt-intensive, packet processing [...]

Subtitle
Software Defined Infrastructure: Network functions virtualization (NFV) is paving the way for more open, exible, and economical networking and communications equipment based on general-purpose computing platforms instead of traditional proprietary, purpos
Duration
Publishing date
2015-12-14 08:01
Link
http://feedproxy.google.com/~r/IntelIntelligentCompute/~3/0muXHy7Hnp4/
Contributors
  Connected Social Media
author  
Enclosures
http://media15.connectedsocialmedia.com/intel/12/14088/Enabling_NFV_Deliver_its_Promise_DPDK_solutions_Brief.pdf

Shownotes

Software Defined Infrastructure: Network functions virtualization (NFV) is paving the way for more open, exible, and economical networking and communications equipment based on general-purpose computing platforms instead of traditional proprietary, purpose-built products. However, this transition hinges on increasing performance and minimizing the latencies associated with virtualization on general- purpose platforms, particularly for interrupt-intensive, packet processing workloads. Designed for such demanding networking applications, platforms based on the Intel Xeon processor E5-2600 v3 product family incorporate several technologies that can signi cantly reduce virtualization latency or its impact.

This paper reviews memory management features and inter-VM (virtual machine) communication schemes that can be applied to dramatically improve performance and determinism for packet processing workloads in virtualized environments.