Dark Silicon: From Computation to Communication

J. Henkel, H. Bokhari, S. Garg, M. U. Khan, Heba Khdr, F. Kriebel, Ümit Y. Ogras, S. Parameswaran, M. Shafique
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引用次数: 16

Abstract

In the emerging Dark Silicon era, not all parts of an on-chip system (i.e., cores, Network-on-Chip, and memory resources) can be simultaneously powered-on at the full speed. This paper aims at exposing dark silicon challenges to the NOCS community with an overview of some of the early research efforts that are attempting to shape the design and run-time management of future generation heterogeneous dark silicon processors. The goal is to cover both the computation and communication perspectives. In particular, we exploit computation and communication heterogeneity at multiple levels of system abstractions to design and manage dark silicon processors. The available dark silicon is leveraged to improve power/energy, performance, and reliability efficiency.
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暗硅:从计算到通信
在新兴的暗硅时代,并非片上系统的所有部分(即核心、片上网络和内存资源)都可以同时全速开机。本文旨在通过概述一些早期的研究工作,揭示暗硅对NOCS社区的挑战,这些研究工作试图塑造下一代异构暗硅处理器的设计和运行时管理。我们的目标是同时涵盖计算和通信两个方面。特别是,我们在系统抽象的多个层次上利用计算和通信的异质性来设计和管理暗硅处理器。利用现有的暗硅来提高功率/能量、性能和可靠性效率。
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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