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Low-cost port allocation scheme for minimizing deflections in bufferless on-chip networks

机译:低成本端口分配方案,用于最小化无缓冲片上网络中的偏差

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The bufferless deflection routing is recently emerged as a promising approach for improving energy efficiency of on-chip networks. In this on-chip router design, input buffers are removed, and instead deflection (i.e. misrouting) is used to resolve contention among arriving packets. However, to be effective, this concept needs to be supported with an efficient port allocation scheme which should minimize deflections when forwarding input packets to output ports. This paper presents a new port allocation scheme for bufferless on-chip routers. The proposed solution follows the distributed structure of the port allocator introduced in CHIPPER router, which is composed of four arbiter blocks arranged in a two-stage permutation network, but changes the way each arbiter behaves. Instead of randomized priority-based arbitration policy, the proposed scheme routes packets through the permutation network by choosing configuration which minimizes deflection at output of each arbiter block. The performance analysis against baseline CHIPPER router shows an advantage for our proposal of up to 41% in terms of network throughput.
机译:最近,无缓冲偏转路由已成为一种提高芯片网络能效的有前途的方法。在该片上路由器设计中,去除了输入缓冲器,而是使用偏转(即,错误路由)来解决到达的分组之间的争用。但是,要有效,此概念需要有效的端口分配方案来支持,该方案应在将输入数据包转发到输出端口时将偏转最小化。本文提出了一种用于无缓冲片上路由器的新端口分配方案。提出的解决方案遵循CHIPPER路由器中引入的端口分配器的分布式结构,该结构由布置在两级置换网络中的四个仲裁器块组成,但是改变了每个仲裁器的行为方式。代替基于随机优先级的随机仲裁策略,所提出的方案通过选择使每个仲裁器块的输出处的偏转最小化的配置来通过分组网络路由分组。根据基线CHIPPER路由器进行的性能分析表明,对于我们的建议而言,网络吞吐量最多可达到41%。

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