DocumentCode
2469581
Title
Fast algorithms for slew constrained minimum cost buffering
Author
Hu, Shiyan ; Alpert, Charles J. ; Hu, Jiang ; Karandikar, S. ; Li, Zhuo ; Shi, Weiping ; Sze, C.N.
Author_Institution
Dept. of Electr. & Comput. Eng., Texas A&M Univ., College Station, TX
fYear
0
fDate
0-0 0
Firstpage
308
Lastpage
313
Abstract
As a prevalent constraint, sharp slew rate is often required in circuit design which causes a huge demand for buffering resources. This problem requires ultra-fast buffering techniques to handle large volume of nets, while also minimizing buffering cost. This problem is intensively studied in this paper. First, a highly efficient algorithm based on dynamic programming is proposed to optimally solve slew buffering with discrete buffer locations. Second, a new algorithm is developed to handle the difficult cases in which no assumption is made on buffer input slew. Third, an adaptive buffer selection approach is proposed to efficiently handle slew buffering with continuous buffer locations. Experiments on industrial netlists demonstrate that our algorithms are very effective and highly efficient: we achieve > 100times speed up and save up to 40% buffer area over the commonly-used van Ginneken style buffering
Keywords
buffer circuits; dynamic programming; integrated circuit design; adaptive buffer selection; circuit design; discrete buffer locations; dynamic programming; sharp slew rate; slew buffering; ultra-fast buffering techniques; van Ginneken style buffering; Algorithm design and analysis; Application specific integrated circuits; Conductivity; Costs; Degradation; Delay; Integrated circuit interconnections; Laboratories; Physics computing; Timing; Algorithms; Buffer Insertion; Design; Performance; Physical Design; Slew Constraint;
fLanguage
English
Publisher
ieee
Conference_Titel
Design Automation Conference, 2006 43rd ACM/IEEE
Conference_Location
San Francisco, CA
ISSN
0738-100X
Print_ISBN
1-59593-381-6
Type
conf
DOI
10.1109/DAC.2006.229259
Filename
1688811
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