异构多片上网络设计:一种应用感知方法

Asit K. Mishra, O. Mutlu, C. Das
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引用次数: 79

摘要

目前芯片多处理器中的片上网络设计与应用需求无关,因此是为一般情况提供的,导致能源和性能的浪费。我们观察到,应用程序通常可以分为网络带宽敏感型和延迟敏感型。我们建议在芯片上使用两个独立的网络,其中一个网络针对带宽进行优化,另一个针对延迟进行优化,并将应用程序转向适当的网络。我们进一步观察到,并非所有对带宽(延迟)敏感的应用程序对网络带宽(延迟)都同样敏感。因此,在每个网络中,我们根据数据包所属应用程序的相对敏感性对其进行优先级排序。我们引入了两个指标,网络集高度和长度,作为估计带宽和延迟敏感性的代理,对应用程序进行分类和排名。我们的评估表明,与一刀切的单一网络和同构多网络相比,由此产生的异构双网络设计可以在各种工作负载中提供显著的节能和性能改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A heterogeneous multiple network-on-chip design: An application-aware approach
Current network-on-chip designs in chip-multiprocessors are agnostic to application requirements and hence are provisioned for the general case, leading to wasted energy and performance. We observe that applications can generally be classified as either network bandwidth-sensitive or latency-sensitive. We propose the use of two separate networks on chip, where one network is optimized for bandwidth and the other for latency, and the steering of applications to the appropriate network. We further observe that not all bandwidth (latency) sensitive applications are equally sensitive to network bandwidth (latency). Hence, within each network, we prioritize packets based on the relative sensitivity of the applications they belong to. We introduce two metrics, network episode height and length, as proxies to estimate bandwidth and latency sensitivity, to classify and rank applications. Our evaluations show that the resulting heterogeneous two-network design can provide significant energy savings and performance improvements across a variety of workloads compared to a single one-size-fits-all single network and homogeneous multiple networks.
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