By Lam, Tak-Kei
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Additional resources for Boolean circuit rewiring : bridging logical and physical designs
ACM. ISBN: 1-58113-351-0. 368880. -W. Chang and M. Marek-Sadowska. Single-pass redundancy-addition-and-removal. In Computer Aided Design, 2001. ICCAD 2001. IEEE/ACM International Conference on, pages 606–609, 2001b. 968723. S. C. Chang and M. Marek-Sadowska. Perturb and simplify: multilevel Boolean network optimizer. IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems, 15(12):1494–1504, 1996. 34 Boolean Circuit Rewiring C. W. J. Chang and M. Marek-Sadowska. Theory of wire addition and removal in combinational Boolean networks.
In ASIC, 2007. ASICON ’07. 7th International Conference on, pages 114–117, 2007. 4415580. J. Cong, Y. Lin, and W. Long. SPFD-based global rewiring. In Proceedings of the 2002 ACM/SIGDA Tenth International Symposium on Field-Programmable Gate Arrays, FPGA ’02, pages 77–84, New York, 2002a. ACM. ISBN: 1-58113-452-5. 503060. J. Cong, J. Y. Lin, and W. Long. A new enhanced SPFD rewiring algorithm [logic ic layout]. In Computer Aided Design, 2002. ICCAD 2002. IEEE/ACM International Conference on, pages 672–678, November 2002b.
The major cause is the application of the theorems on OMAs and redundancy. As a result, the number of candidate alternative wires to be evaluated and the time spent on redundancy tests are reduced. RAMFIRE also speeds up REWIRE and RAMBO. This is because the number of ATPG implications are fewer in RAMFIRE due to the utilization of uncontrollability information. Improvement in an area may come with a cost in other areas. The rewiring ability of REWIRE is similar to that of RAMBO. The information of uncontrollability is much affected by circuit structures and the types of gates used.
Boolean circuit rewiring : bridging logical and physical designs by Lam, Tak-Kei