DocumentCode :
387613
Title :
A novel framework for multilevel routing considering routability and performance
Author :
Lin, Shih-Ping ; Chang, Yao-Wen
Author_Institution :
Dept. of Electron. Eng., Nat. Chiao Tung Univ., Hsinchu, Taiwan
fYear :
2002
fDate :
10-14 Nov. 2002
Firstpage :
44
Lastpage :
50
Abstract :
We propose in this paper a novel framework for multilevel routing considering both routability and performance. The two-stage multilevel framework consists of coarsening followed by uncoarsening. Unlike the previous multilevel routing, we integrate global routing, detailed routing, and resource estimation together at each level of the framework, leading to more accurate routing resource estimation during coarsening and thus facilitating the solution refinement during uncoarsening. Furthermore, the exact routing information obtained at each level makes our framework more flexible in dealing with various routing objectives (such as crosstalk, power, etc). Experimental results show that our approach obtains significantly better routing solutions than previous works. For example, for a set of 11 commonly used benchmark circuits, our approach achieves 100% routing completion for all circuits while the previous multilevel routing, the three-level routing, and the hierarchical routing can complete routing for only 3, 0, and 3 circuits, respectively. In particular, the number of routing layers used by our router is even smaller. We also have performed experiments on timing-driven routing. The results are also very promising.
Keywords :
VLSI; circuit layout CAD; circuit simulation; crosstalk; integrated circuit layout; network routing; network topology; parameter estimation; timing; benchmark circuits; coarsening; crosstalk; detailed routing; global routing; hierarchical routing; level routing information; multilevel routing framework; routability; routing completion; routing layers; routing resource estimation; three-level routing; timing-driven routing; two-stage framework; uncoarsening; Circuits; Costs; Crosstalk; Integer linear programming; Nonhomogeneous media; Partitioning algorithms; Routing; Scalability; Tiles; Very large scale integration;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Aided Design, 2002. ICCAD 2002. IEEE/ACM International Conference on
ISSN :
1092-3152
Print_ISBN :
0-7803-7607-2
Type :
conf
DOI :
10.1109/ICCAD.2002.1167512
Filename :
1167512
Link To Document :
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