A distributed and scalable RSVP-TE architecture for next generation IP routers

K. Nguyen, B. Jaumard
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引用次数: 5

Abstract

Routers, whose main tasks include forwarding and best route computing, have undergone several design architectures in the last years in order to deal with the explosion of traffic in the Internet. Next generation routers are made with enhanced memory capacity and computing resources, distributed across a very high speed switching fabric. However, the current routing software products, particularly those built by thirdparty developers, are not able to fully exploit the new hardware platform of these routers due to their centralized architectures with a solely control card being responsible for all routing and management tasks. This paper proposes a first fully distributed software architecture of the RSVP-TE module for next generation routers in order to scale with the stringent requirements of the MPLS signaling. The components of the current centralized architecture of RSVP-TE module are offloaded onto line cards in order to share the load between the control card and the line cards. Such a distributed architecture meets the scalability requirements, e.g., high volume of traffic of next generation routers. The robustness and resiliency are also improved. We propose an estimation of the scalability of the distributed RSVP-TE architecture based on the CPU utilization.
面向下一代IP路由器的分布式可扩展RSVP-TE架构
路由器,其主要任务包括转发和最佳路由计算,在过去的几年中经历了几种设计架构,以应对互联网上的流量爆炸。下一代路由器具有增强的内存容量和计算资源,分布在非常高速的交换结构中。然而,目前的路由软件产品,特别是第三方开发的路由软件产品,由于其集中的架构,一个单独的控制卡负责所有的路由和管理任务,无法充分利用这些路由器的新硬件平台。为了适应MPLS信令的严格要求,本文首次提出了下一代路由器RSVP-TE模块的全分布式软件体系结构。RSVP-TE模块当前集中式架构的组件被卸载到线卡上,以便在控制卡和线卡之间分担负载。这种分布式架构可以满足下一代路由器的可扩展性要求,例如高流量。增强了系统的鲁棒性和弹性。提出了一种基于CPU利用率的分布式RSVP-TE体系结构可扩展性评估方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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