SMTBDD: New Form of BDD for Logic Synthesis

Author:

Kubica Marcin,Kania Dariusz

Abstract

Abstract The main purpose of the paper is to suggest a new form of BDD - SMTBDD diagram, methods of obtaining, and its basic features. The idea of using SMTBDD diagram in the process of logic synthesis dedicated to FPGA structures is presented. The creation of SMTBDD diagrams is the result of cutting BDD diagram which is the effect of multiple decomposition. The essence of a proposed decomposition method rests on the way of determining the number of necessary ‘g’ bounded functions on the basis of the content of a root table connected with an appropriate SMTBDD diagram. The article presents the methods of searching non-disjoint decomposition using SMTBDD diagrams. Besides, it analyzes the techniques of choosing cutting levels as far as effective technology mapping is concerned. The paper also discusses the results of the experiments which confirm the efficiency of the analyzed decomposition methods.

Publisher

Walter de Gruyter GmbH

Reference11 articles.

1. and New Methods to Find Optimal Non - Disjoint Bi - Decompositions Design Proceedings of the ASP - DAC pp;Yamashita;Automation Conference,1998

2. and : The Multiple Variable Order Problem for Binary Decision Diagrams : Theory and Practical Application : Design Proceedings of the ASPDAC pp;Scholl;Automation Conference,2001

3. Decomposition - based Logic Synthesis for PAL - based CPLDs of and No pp;Opara;International Journal Applied Mathematics Computer Science,2010

4. Minimization Over Boolean Graphs of and Development pp;Roth;IBM Journal Research,1962

5. and Non - Disjoint Decomposition of Boolean Functions and Its Application in FPGA - oriented Technology Mapping Proceedings od the rd Conference pp;Rawski;EUROMICRO,1997

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