Processor Scheduler for Multi-Service Routers

Ravi Kokku, Upendra Shevade, Nishit Shah, A. Mahimkar, Taewon Cho, H. Vin
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引用次数: 4

Abstract

In this paper, we describe the design and evaluation of a scheduler (referred to as Everest) for allocating processors to services in high performance, multi-service routers. A scheduler for such routers is required to maximize the number of packets processed within a given delay tolerance, while isolating the performance of services from each other. The design of such a scheduler is novel and challenging because of three domain-specific characteristics: (1) difficult-to-predict and high packet arrival rates, (2) small delay tolerances of packets, and (3) significant overheads for switching allocation of processors from one service to another. These characteristics require that the scheduler be agile and wary simultaneously. Whereas agility enables the scheduler to react quickly to fluctuations in packet arrival rates, wariness prevents the scheduler from wasting computational resources in unnecessary context switches. We demonstrate that by balancing agility and wariness, Everest, as compared to conventional schedulers, reduces by more than an order of magnitude the average delay and the percentage of packets that experience delays greater than their tolerance. We describe a prototype implementation of Everest on Intel's IXP2400 network processor
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多业务路由器的处理器调度程序
在本文中,我们描述了一个调度器(称为Everest)的设计和评估,该调度器用于将处理器分配给高性能多服务路由器中的服务。这种路由器的调度程序需要在给定的延迟容忍度内最大限度地处理数据包的数量,同时将服务的性能相互隔离。这种调度器的设计既新颖又具有挑战性,因为有三个特定于领域的特征:(1)难以预测且数据包到达率高,(2)数据包的延迟容限小,以及(3)从一个服务切换到另一个服务的处理器分配的显著开销。这些特征要求调度器同时保持敏捷和警惕。敏捷性使调度器能够快速响应数据包到达率的波动,而谨慎性则防止调度器在不必要的上下文切换中浪费计算资源。我们证明,通过平衡敏捷性和警惕性,与传统调度器相比,Everest将平均延迟和延迟超过其容忍度的数据包百分比减少了一个数量级以上。我们描述了Everest在Intel的IXP2400网络处理器上的原型实现
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