具有实际设计约束的路由拥塞估计

Wen-Hao Liu, Yaoguang Wei, C. Sze, C. Alpert, Zhuo Li, Yih-Lang Li, Natarajan Viswanathan
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引用次数: 19

摘要

为了解决路由可达性问题,路由拥塞估计器(RCE)在工业设计流程中变得至关重要。最近,一些基于全局路由引擎的rce[1-4]被开发出来,但它们通常忽略了路由对定时的影响,因此所识别的路由路径可能会过长而不切实际。为了了解时序问题,我们提出的基于全局路由的RCE遵循层指令和场景约束,分别限制潜在时序关键网络的路由层和最大路由长度。为了处理场景约束,我们提出了一种基于放松-合法化方案的新方法。此外,由于[5]中的工作表明拥塞比溢出是评估可达性的更好指标,因此本工作的重点是最小化拥塞比而不是最小化溢出。如图所示,最小化拥塞比比最小化溢出问题更复杂,因此我们开发了一种新的撕裂和重路由方案来减少拥塞并进一步接近目标拥塞比。此外,为了适应实际使用的需求,这项工作提出了一个控制实用程序来权衡运行时间和质量,这是工业RCE工具的基本功能。实验结果表明,本文提出的RCE算法比其他基于全局路由的RCE算法更快、更准确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Routing congestion estimation with real design constraints
To address the routability issue, routing congestion estimators (RCE) become essential in industrial design flow. Recently, several RCEs [1-4] based on global routing engines are developed, but they typically ignore the effects of routing on timing so that the identified routing paths may be overlong and thus impractical. To be aware of the timing issues, our proposed global-routing-based RCE obeys the layer directive and scenic constraints to respectively limit the routing layers and the maximum routing wirelength of the potentially timing-critical nets. To handle the scenic constrains, we propose a novel method based on a relaxation-legalization scheme. Also, because the work in [5] reveals that congestion ratio is a better indicator than overflow to evaluate routability, this work focuses on minimizing the congestion ratio rather than overflows. As will be shown, the problem of minimizing congestion ratio is more complicated than minimizing overflows, so we develop a new rip-up and rerouting scheme to reduce congestion and further to approach a target congestion ratio. Moreover, to fit the demands of practical uses, this work presents a control utility to trade off runtime and quality, which is an essential function to an industrial RCE tool. Experiments reveal that the proposed RCE is faster and more accurate than another industrial global-routing-based RCE.
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