Yangdong Deng, Shuai Mu
2013.7.4Foundations and Trends in Electronic Design Automation
tlooto Summary
A timely review of the existing literature on GPU-based EDA computing is aimed, considering the substantial diversity of VLSI CAD algorithms, to extend a taxonomy of EDA Computing patterns, which can be extended.
Abstract
Today’s Integrated Circuit (IC) architects depend on Electronic Design Automation (EDA) software to conquer the overwhelming complexity of Very Large Scale Integrated (VLSI) designs. As the complexity of IC chips is still fast increasing, it is critical to maintain the momentum towards growing productivity of EDA tools. On the other hand, singlecore Central Processing Unit (CPU) performance is unlikely to see significant improvement in the near future. It is thus essential to develop highly efficient parallel algorithms and implementations for EDA applications, so that their overall productivity can continue to increase in a scalable fashion. Among various emergent parallel platforms, Graphics Processing Units (GPUs) now offer the highest single-chip computing throughput. A large body of research, therefore, has been dedicated to accelerating EDA applications with GPUs. This monograph is aimed to develop a timely review of the existing literature on GPU-based EDA computing. Considering the substantial diversity of VLSI CAD algorithms, we extend a taxonomy of EDA computing patterns, which can Full text available at: http://dx.doi.org/10.1561/1000000028
Citation format
DENG, Yangdong; MU, Shuai. Electronic design automation with graphic processors: A survey. Foundations and Trends in Electronic Design Automation, 2013, 7: 1–176.