Access Regulation to Hot-Modules in Wormhole NoCs

Isask'har Walter, I. Cidon, R. Ginosar, A. Kolodny
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引用次数: 37

Abstract

Network on chip (NoC) may be the primary interconnect mechanism for future systems-on-chip (SoC). Real-life SoCs typically include hot-modules such as DRAM controller or floating point unit, which are bandwidth limited and in high demand by other units. In this paper we demonstrate that the mere existence of one or more hot-modules in a wormhole-based NoC dramatically reduces network efficiency and causes an unfair allocation of system resources. We demonstrate that a single hot-module destroys the performance of the entire SoC, even if network resources are over-provisioned. In order to resolve the hot-module effect, we introduce a novel low-cost credit based distributed access regulation technique that fairly allocates access rights to the hot-module. Unlike other methods, this technique directly addresses the root cause of network buffer congestion phenomena. Using simulation, we show the effectiveness of the suggested mechanism in various NoC scenarios
虫洞noc热模块的接入规则
片上网络(NoC)可能是未来片上系统(SoC)的主要互连机制。现实生活中的soc通常包括热模块,如DRAM控制器或浮点单元,这些模块带宽有限,并且其他单元需求量很大。在本文中,我们证明了在基于虫洞的NoC中仅仅存在一个或多个热模块就会大大降低网络效率并导致系统资源的不公平分配。我们证明,即使网络资源过度供应,单个热模块也会破坏整个SoC的性能。为了解决热模块效应,我们引入了一种新的低成本的基于信用的分布式访问调节技术,将访问权限公平地分配给热模块。与其他方法不同,这种技术直接解决了网络缓冲区拥塞现象的根本原因。通过仿真,我们证明了所建议的机制在各种NoC场景中的有效性
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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