面向宏观感知的行式输电网络设计,可达性更好

Jai-Ming Lin, Jhih-Sheng Syu, I-Ru Chen
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引用次数: 6

摘要

P/G网络的可靠性是芯片设计中最重要的问题之一,这使得电源规划成为物理设计中最关键的一步。传统的P/G网络设计主要侧重于减少路由资源的使用,以满足规则网格的电压降和电迁移约束。随着现代设计中宏数量的增加,这种风格可能会浪费更多的路由资源,并使局部区域的路由拥塞更加严重。为了节省路由资源,提高路由可达性,本文提出了一种精细的功率规划方法。首先,我们提出了一种行式电源网,以方便预先放置的宏的连接,并在后期增加信号网的可达性。此外,还找到了一个有效的功率条宽度,可以减少路由资源的浪费,并提供更强的供电电压。此外,我们还首次提出使用线性规划算法来最小化P/G路由面积,同时考虑可达性。实验结果表明,我们设计的行式电网可以显著提高具有多个宏的设计的可达性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Macro-Aware Row-Style Power Delivery Network Design for Better Routability
Reliability of a P/G network is one of the most important concerns in a chip design, which makes powerplanning the most critical step in the physical design. Traditional P/G network design mainly focuses on reducing usage of routing resource to satisfy voltage drop and electromigration constraints according to a regular mesh. As the number of macros in a modern design increases, this style may waste more routing resource and make routing congestion more severe in local regions. In order to save routing resource and increase routability, this paper proposes a delicate powerplanning method. First, we propose a row-style power mesh to facilitate connection of pre-placed macros and increase routability of signal nets in the later stage. Besides, an effective power stripe width which can reduce wastage of routing resource and provide stronger supply voltage is found. Moreover, we propose the first work to use the linear programming algorithm to minimize P/G routing area and consider routability at the same time. The experimental results show that routability of a design with many macros can be significantly improved by our row-style power networks.
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