Large-scale circuit placement
Author(s) -
Jason Cong,
Joseph R. Shinnerl,
Min Xie,
Tim Kong,
Xin Yuan
Publication year - 2005
Publication title -
acm transactions on design automation of electronic systems
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.266
H-Index - 51
eISSN - 1557-7309
pISSN - 1084-4309
DOI - 10.1145/1059876.1059886
Subject(s) - computer science , bottleneck , scalability , minification , process (computing) , placement , computer engineering , physical design , scale (ratio) , circuit design , computer architecture , parallel computing , embedded system , physics , quantum mechanics , database , programming language , operating system
Placement is one of the most important steps in the RTL-to-GDSII synthesis process, as it directly defines the interconnects, which have become the bottleneck in circuit and system performance in deep submicron technologies. The placement problem has been studied extensively in the past 30 years. However, recent studies show that existing placement solutions are surprisingly far from optimal. The first part of this tutorial summarizes results from recent optimality and scalability studies of existing placement tools. These studies show that the results of leading placement tools from both industry and academia may be up to 50&percent; to 150&percent; away from optimal in total wirelength. If such a gap can be closed, the corresponding performance improvement will be equivalent to several technology-generation advancements. The second part of the tutorial highlights the recent progress on large-scale circuit placement, including techniques for wirelength minimization, routability optimization, and performance optimization.
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