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Routing Topology and Time-Division Multiplexing Co-Optimization for Multi-FPGA Systems

机译:多FPGA系统的路由拓扑和时分复用协同优化

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Time-division multiplexing (TDM) is widely used to overcome bandwidth limitations and thus enhances routability in multi-FPGA systems due to the shortage of I/O pins in an FPGA. However, multiplexed signals induce significant delays. To evaluate timing degradation, nets with similar criticalities are often grouped to form NetGroups. In this paper, we propose a framework concerning routing topology and time-division multiplexing co-optimization for multi-FPGA systems. The proposed framework first generates high-quality topologies considering Net-Group criticalities. Then, inspired by column generation, TDM ratio assignment is solved optimally by Lagrangian relaxation. Experimental results show that our approach outperforms the top three entries of ICCAD 2019 CAD Contest. Moreover, our TDM ratio assignment algorithm can further improve the results of the top three winners to almost as good as ours.
机译:时分多路复用(TDM)被广泛用于克服带宽限制,并由于FPGA中I / O引脚的短缺而提高了多FPGA系统的可布线性。但是,多路复用信号会引起明显的延迟。为了评估时序退化,通常将具有相似关键性的网络分组以形成NetGroup。在本文中,我们提出了一个有关多FPGA系统的路由拓扑和时分多路复用协同优化的框架。拟议的框架首先考虑网络组的关键性,生成高质量的拓扑。然后,在色谱柱生成的启发下,通过拉格朗日弛豫优化地解决了TDM比率分配问题。实验结果表明,我们的方法优于ICCAD 2019 CAD竞赛的前三名。此外,我们的TDM比率分配算法可以进一步将前三名获胜者的结果提高到几乎与我们相同。

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