Communication Performance of Mesh- and Ring-Based NoCs

V. Dvorák
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引用次数: 5

Abstract

As multi-core systems begin to appear, their possible applications, parallel performance and on-chip interconnection networks have to be clarified, analyzed and optimized. The paper investigates an impact of collective communication (CC) overhead that may be critical for performance of parallel applications. Two potential topologies of networks on chip (NoC) are investigated, a ring-based network and 2D-mesh, due to their easy manufacturability on a chip. The wormhole switching, full duplex links and 1-port non-combining as well as combining nodes are considered. The lower bounds on the number of communication steps and upper bounds of CC times based on real CC algorithms are given. They can be evaluated for any given start-up time and link bandwidth. This enables performance prediction of applications with CCs among computing nodes.
基于网状和环形noc的通信性能
随着多核系统的出现,对其可能的应用、并行性能和片上互连网络进行了明确、分析和优化。本文研究了集体通信(CC)开销的影响,这可能对并行应用程序的性能至关重要。由于易于在芯片上制造,研究了两种潜在的片上网络拓扑结构,环形网络和二维网格。考虑了虫洞交换、全双工链路和1端口非合并节点和合并节点。给出了基于实数CC算法的通信步数下界和CC次数上界。它们可以根据任何给定的启动时间和链路带宽进行评估。这样就可以在计算节点之间对具有cc的应用程序进行性能预测。
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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