TritonRoute:先进VLSI技术的初始详细路由器

A. Kahng, Lutong Wang, Bangqi Xu
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引用次数: 33

摘要

详细路由是用于高级节点启用的设计自动化工具中的一个生死攸关的关键元素。然而,在最近的开放文献中,很少有作品涉及详细的路由,特别是在现代工业设计和完整的端到端流程的背景下。ISPD-2018初始详细路由竞赛使用简化的设计规则集解决了现代工业设计的这一差距。在这项工作中,我们提出了TritonRoute,这是ISPD-2018竞赛的初始详细路由器。给定全局路由的路由指南,初始的详细路由阶段应该生成一个尽可能遵守路由指南的详细路由解决方案,同时最小化无线长度,通过计数和各种设计规则违规。在我们的工作中,关键贡献是层内并行路由,其中我们将每层划分为并行面板,并使用基于整数线性规划的算法路由每个面板。我们按顺序从底部到顶部逐层路由。我们使用官方的ISPD-2018基准套件评估我们的路由器,并表明与每个测试用例的第一名路由解决方案相比,我们将竞赛指标降低了74%,平均降低了50%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TritonRoute: An Initial Detailed Router for Advanced VLSI Technologies
Detailed routing is a dead-or-alive critical element in design automation tooling for advanced node enablement. However, very few works address detailed routing in the recent open literature, particularly in the context of modern industrial designs and a complete, end-to-end flow. The ISPD-2018 Initial Detailed Routing Contest addressed this gap for modern industrial designs, using a reduced design rules set. In this work, we present TritonRoute, an initial detailed router for the ISPD-2018 contest. Given route guides from global routing, the initial detailed routing stage should generate a detailed routing solution honoring the route guides as much as possible, while minimizing wirelength, via count and various design rule violations. In our work, the key contribution is intra-layer parallel routing, where we partition each layer into parallel panels and route each panel using an Integer Linear Programming-based algorithm. We sequentially route layer by layer from the bottom to the top. We evaluate our router using the official ISPD-2018 benchmark suite and show that we reduce the contest metric by up to 74%, and on average 50%, compared to the first-place routing solution for each testcase.
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