FastRoute 4.0: global router with efficient via minimization
Yue Xu, Yanheng Zhang, Chris Chong-Nuen Chu
Abstract
Yue Xu, Yanheng Zhang, Chris Chong-Nuen Chu
Abstract
Abstract — The number of vias generated during the global routing stage is a critical factor for the yield of final circuits. However, most global routers only approach the problem by charging a cost for vias in the maze routing cost function. In this paper, we present a global router that addresses the via number optimization problem throughout the entire global routing flow. We introduce the via aware Steiner tree generation, 3-bend routing and layer assignment with careful ordering to reduce via count. We integrate these three techniques into FastRoute 3.0 and achieve significant reduction in both via count and runtime. I.
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Abstract — The number of vias generated during the global routing stage is a critical factor for the yield of final circuits. However, most global routers only approach the problem by charging a cost for vias in the maze routing cost function. In this paper, we present a global router that addresses the via number optimization problem throughout the entire global routing flow. We introduce the via aware Steiner tree generation, 3-bend routing and layer assignment with careful ordering to reduce via count. We integrate these three techniques into FastRoute 3.0 and achieve significant reduction in both via count and runtime. I.
Key concepts: Router, Steiner tree problem, Routing (electronic design automation), Computer science, Minification, Network routing, Reduction (mathematics), Benchmark (surveying)