2023 · 16 citations · 17 references
Detailed routing is the most tedious and complex procedure in design automation and has become a determining factor in layout automation in advanced manufacturing nodes. Despite continuing advances in custom integrated circuit (IC) routing research, industrial custom layout flows remain heavily manual due to the high complexity of the custom IC design problem. Besides conventional design objectives such as wirelength minimization, custom detailed routing must also accommodate additional constraints (e.g., path-matching) across the analog/mixed-signal (AMS) and digital domains, making an already challenging procedure even more so. This paper presents a novel detailed routing framework for custom circuits that leverages deep reinforcement learning to optimize routing patterns while considering custom routing constraints and industrial design rules. Comprehensive post-layout analyses based on industrial designs demonstrate the effectiveness of our framework in dealing with the specified constraints and producing sign-off-quality routing solutions.
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L. McMurchie, Carl Ebeling · 1995 · 682 citations
Hardware Security, Iscas Benchmarks, Triptych Fpga Architecture +15
A graph placement methodology for fast chip design
Azalia Mirhoseini, Anna Goldie, Mustafa Ege Yazgan et al. · Nature · 2021 · 531 citations
Graph Placement Methodology, Physical Design (Electronics), Engineering +7
BAG2: A process-portable framework for generator-based AMS circuit design
Eric Chang, Jaeduk Han, Woorham Bae et al. · 2018 · 118 citations
Low-power Electronics, Hardware Security, Electrical Engineering +15
A Deep Reinforcement Learning Approach for Global Routing
Haiguang Liao, Wentai Zhang, Xuliang Dong et al. · Journal of Mechanical Design · 2019 · 84 citations