首页> 外文期刊>International journal of parallel programming >DancerFly: An Order-Aware Network-on-Chip Router On-the-Fly Mitigating Multi-path Packet Reordering
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DancerFly: An Order-Aware Network-on-Chip Router On-the-Fly Mitigating Multi-path Packet Reordering

机译:Dancerfly:一个订单意识的芯片网上路由器在飞行中的多路数据包重新排序

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摘要

Adaptive routing algorithms can improve performance by balancing load across network channels in the presence of non-uniform traffic patterns. However, out-of-order packets can be introduced due to multi-path transmission of adaptive routing. With out-of-order transmission in the network, packets need to be reordered at the destination before being absorbed. Increasing network size with adaptive routing makes the time when a packet arrives at the destination extremely uncertain, which requires a large buffer to reorder the packets and this can exceed design space. Therefore, the challenge is to balance the trade-off between multi-path transmission and packet reordering. In this paper, we propose a novel packet reordering metric-OOD to quantify the degree of out-of-order. To minimize the OOD of packets, we propose DancerFly, an order-aware network-on-chip router that mitigates out-of-order packets caused by adaptive routing. DancerFly achieves this goal by providing two-level reordering. First, it performs in-buffer reordering by reordering packets queuing in the input buffer. Second, packets from different input ports are reordered before traversing through the router. We evaluate our design and the results show that the OOD can be reduced by 36.3% with comparable performance to the baseline.
机译:自适应路由算法可以通过在存在非统一交通模式的情况下平衡跨网络信道的负载来提高性能。然而,由于自适应路由的多路径传输,可以引入无序数据包。在网络中有超出订单传输,需要在被吸收之前在目的地重新排序数据包。随着自适应路由增加网络大小使数据包到达目的地的时间非常不确定,这需要一个大缓冲区来重新排序数据包,这可以超过设计空间。因此,挑战是平衡多路径传输和数据包重新排序之间的权衡。在本文中,我们提出了一种新型数据包重新排序度量-OW,以量化无序程度。为了最大限度地减少数据包的OOD,我们提出了Dancerfly,这是一种令人感知的网上路由器,其减轻了由自适应路由引起的秩序超出数据包。 Dancerfly通过提供两级重新排序来实现这一目标。首先,它通过重新排序输入缓冲区中的数据包来执行进入缓冲区重新排序。其次,来自不同输入端口的数据包在遍历路由器之前重新排序。我们评估了我们的设计,结果表明,随着基线的可比性,OOD可以减少36.3%。

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