Automated standard cell library extension is crucial for maximizing Quality of Results (QoR) in modern VLSI design. We introduce CellE, a novel framework that leverages formal methods to achieve exhaustive discovery of functionally equivalent subcircuits. CellE applies equality saturation to the post-mapping netlist, generating an e-graph to cluster all functionally equivalent implementations. This canonical representation enables an efficient pattern mining algorithm to select the most area-optimal standard cells. Experimental results show a 15.41% average area reduction (up to 23.64% over prior work). Furthermore, characterization in a commercial flow demonstrates an 8.00% average delay reduction, confirming CellE's superior QoR optimization capabilities.
@article{arxiv.2603.12797,
title = {CellE: Automated Standard Cell Library Extension via Equality Saturation},
author = {Yi Ren and Yukun Wang and Xiang Meng and Guoyao Cheng and Baokang Peng and Lining Zhang and Yibo Lin and Runsheng Wang and Guangyu Sun},
journal= {arXiv preprint arXiv:2603.12797},
year = {2026}
}
Comments
7 pages, 8 figures, 2 tables, 3 algorithms. Accepted at the 63rd ACM/IEEE Chips to System Conference (DAC 2026), Long Beach, CA, July 26-29 2026