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  4. A corner stitching compliant B-tree representation and its applications to analog placement
 
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A corner stitching compliant B-tree representation and its applications to analog placement

Journal
IEEE/ACM International Conference on Computer-Aided Design
Pages
507-511
Date Issued
2011
Author(s)
Tsao, H.-F.
Chou, P.-Y.
Huang, S.-L.
Chang, Y.-W.
Lin, M.P.-H.
Chen, D.-P.
Liu, D.
YAO-WEN CHANG  
DOI
10.1109/ICCAD.2011.6105377
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-84862933055&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/365158
Abstract
Modern circuit placement, especially analog placement, often needs to consider various constraints, such as symmetry, proximity, preplaced, variant, fixed-boundary, minimum separation, boundary, and fixed-outline constraints, for better electrical effects and higher performance. To handle these diverse constraints, topological floorplan representations are pervasively used because of their higher flexibility and smaller solution space. Due to their intrinsic limitation in deriving module adjacency information directly from the representations themselves, however, they might incur difficulties in handling related constraints. In this paper, we work on B*-trees, which have been shown to be most effective and efficient for floor-plan/placement problems, and present a corner stitching compliant B*-tree (CB-tree, for short) to remedy the significant deficiency in its module adjacency handling. A CB-tree is a B*-tree integrated with modified corner stitching to offer much higher flexibility/efficiency, especially for adjacent module identification/packing. Compared with the previous works, CB-trees can achieve the lowest time complexity for module packing with the aforementioned constraints. Experimental results show that the CB-trees achieve the best solution quality and consume the least running time for industrial designs with various constraints. In particular, our work provides key insights into the handling of comprehensive placement constraints with a topological representation.
Type
conference paper

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