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On-chip Bidirectional Wiring for Heavily Pipelined Systems using Network Coding

机译:使用网络编码的大量流水线系统的片上双向布线

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In this paper, we describe a low-area, reduced-power on-chip point-to-point bidirectional communication scheme for heavily pipelined systems. When data needs to be transmitted bidirectionally between two on-chip locations, the traditional approach resorts to either using two unidirectional wires, or to using a single wire (with a unidirectional transfer at any given time instant). In contrast, our bidirectional communication scheme allows data to be transmitted simultaneously between two on-chip locations, with a single wire performing the bidirectional data transfer. Our approach borrows ideas from the emerging area of network coding (in the field of communication). By utilizing coding units (which also serve the purpose of buffering the signals) along the wire between the two endpoints, we are able to achieve the same throughput as a traditional approach, while reducing the total area utilization by about 49.8% (thereby reducing routing congestion), and the total power consumption by about 11.5%. The area and power results include the contribution of routing wires, coding units, drivers, the clock distribution network and the required reset wire. Our bidirectional communication approach is ideally suited for heavily pipelined data intensive systems.
机译:在本文中,我们描述了一种低地区,减少电力的片上电力的芯片点对点双向双向通信方案,用于大量流水系统。当数据需要在两个片上位置之间双向传输时,传统的方法是使用两个单向线或使用单线(在任何给定的时间瞬间提供单向传送)。相反,我们的双向通信方案允许在两个片上位置之间同时发送数据,其中单线执行双向数据传输。我们的方法从网络编码的新兴区域(在通信领域)的借用借用。通过利用两个端点之间的电线使用编码单元(其还用于缓冲信号),我们能够实现与传统方法相同的吞吐量,同时将总面积利用率降低约49.8%(从而降低路由拥堵),总功耗约为11.5%。该区域和功率结果包括路由线,编码单元,驱动器,时钟分配网络和所需的复位线的贡献。我们的双向通信方法非常适合流水线数据密集型系统。

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