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首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >FSNoC: A Flit-Level Speedup Scheme for Network on-Chips Using Self-Reconfigurable Bidirectional Channels
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FSNoC: A Flit-Level Speedup Scheme for Network on-Chips Using Self-Reconfigurable Bidirectional Channels

机译:FSNoC:使用自可重新配置双向通道的网络片上协议的加速级加速方案

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摘要

In this paper, we explore optimizing the bandwidth utilization of the network-on-chips (NoCs). We propose a flit-level speedup scheme to improve the NoC performance using self-reconfigurable bidirectional channels. For the NoC intrarouter bandwidth, in addition to allowing flits from different packets to use the idle internal bandwidth of the crossbar, our proposed flit-level speedup scheme also allows flits within the same packet to be transmitted simultaneously. For interrouter channels, a distributed channel configuration scheme is developed to dynamically change the link directions. In this way, the effective bandwidth between two routers can change adaptively depending on the run time network traffic. We present the implementation of the proposed flit-level speedup NoC on a 2-D mesh. An input buffer architecture, which supports reading and writing two flits from the same virtual channel at the same time, is proposed. The switch allocator is also designed to support flit-level parallel arbitration. Extensive simulations on both the synthetic traffic and real applications show performance improvement in throughput and latency over the existing architectures using bidirectional channels.
机译:在本文中,我们探索优化片上网络(NoC)的带宽利用率。我们提出了flit级加速方案,以使用可自我重新配置的双向通道来提高NoC性能。对于NoC路由器内部带宽,除了允许来自不同数据包的碎片使用纵横制的空闲内部带宽外,我们提出的碎片级别加速方案还允许同一数据包内的碎片同时传输。对于路由器间通道,开发了一种分布式通道配置方案以动态更改链路方向。这样,两个路由器之间的有效带宽可以根据运行时网络流量进行自适应更改。我们介绍了二维网格上拟议的flit级加速NoC的实现。提出了一种输入缓冲区体系结构,该体系结构支持同时读取和写入来自同一虚拟通道的两个滤波器。交换机分配器还设计为支持flit级并行仲裁。综合流量和实际应用程序的大量仿真显示,与使用双向通道的现有体系结构相比,吞吐量和延迟方面的性能有所提高。

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