Kilo-NOC

Author:

Grot Boris1,Hestness Joel1,Keckler Stephen W.2,Mutlu Onur3

Affiliation:

1. The University of Texas at Austin, Austin, TX, USA

2. NVIDIA & The University of Texas at Austin, Santa Clara, CA, USA

3. Carnegie Mellon University, Pittsburgh, PA, USA

Abstract

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.

Publisher

Association for Computing Machinery (ACM)

Cited by 53 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. TNT: A Modular Approach to Traversing Physically Heterogeneous NOCs at Bare-wire Latency;ACM Transactions on Architecture and Code Optimization;2023-07-19

2. NoC-based hardware software co-design framework for dataflow thread management;The Journal of Supercomputing;2023-05-11

3. Game-of-Life Temperature-Aware DVFS Strategy for Tile-Based Chip Many-Core Processors;IEEE Journal on Emerging and Selected Topics in Circuits and Systems;2023-03

4. Crescent;Proceedings of the 49th Annual International Symposium on Computer Architecture;2022-06-11

5. The design of an energy-efficient deflection-based on-chip network;Advances in Computers;2022

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