Kilo-NOC:可扩展性和服务保证的异构片上网络架构

Boris Grot, Joel Hestness, S. Keckler, O. Mutlu
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引用次数: 168

摘要

目前的芯片级多处理器(cmp)具有多达100个独立核心的功能,随着集成水平的提高,预计在不久的将来,cmp将具有数百个核心、缓存块和专用加速器。在本文中,我们提出并评估了使片上网络(noc)能够支持千个连接组件(Kilo-NOC)的技术,具有高面积和能源效率,良好的性能和强大的服务质量(QOS)保证。分析表明,QOS支持给网络带来了较高的面积和能量成本。为此,我们提出了一种新的轻量级拓扑感知QOS体系结构,为cmp和实时soc上的合并服务器等应用提供服务保证。与之前要求在每个网络节点上都支持QOS的NOC服务质量提案不同,我们的方案将硬件支持的范围限制在芯片的部分,从而降低了芯片其余部分的路由器复杂性。我们通过一种新颖的流量控制机制进一步提高了网络的面积和能源效率,该机制使单网络、低成本的弹性缓冲实现成为可能。总的来说,这些技术产生了异构的Kilo-NOC架构,与没有这些特性的最先进的qos NOC相比,它的占地面积和功耗分别减少了45%和29%。
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Kilo-NOC: A heterogeneous network-on-chip architecture for scalability and service guarantees
Today's chip-level multiprocessors (CMPs) feature up to a hundred discrete cores, and with increasing levels of integration, CMPs with hundreds of cores, cache tiles, and specialized accelerators are anticipated in the near future. In this paper, we propose and evaluate technologies to enable networks-on-chip (NOCs) to support a thousand connected components (Kilo-NOC) with high area and energy efficiency, good performance, and strong quality-of-service (QOS) guarantees. Our analysis shows that QOS support burdens the network with high area and energy costs. In response, we propose a new lightweight topology-aware QOS architecture that provides service guarantees for applications such as consolidated servers on CMPs and real-time SOCs. Unlike prior NOC quality-of-service proposals which require QOS support at every network node, our scheme restricts the extent of hardware support to portions of the die, reducing router complexity in the rest of the chip. We further improve network area- and energy-efficiency through a novel flow control mechanism that enables a single-network, low-cost elastic buffer implementation. Together, these techniques yield a heterogeneous Kilo-NOC architecture that consumes 45% less area and 29% less power than a state-of-the-art QOS-enabled NOC without these features.
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