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  • We introduce a new efficient minimization method for functions described by many (up to millions) product terms. The algorithm is based on processing a newly proposed efficient representation of a set of product terms - a ternary tree. The minimization procedure is based on a fast application of basic Boolean operations upon the ternary tree, combined with algorithms used in the Espresso minimizer. Minimization of incompletely specified functions is supported as well. The minimization method was tested on randomly generated large sums-of-products and collapsed ISCAS benchmark circuits. The performance of the proposed algorithm was compared with Espresso.
  • We introduce a new efficient minimization method for functions described by many (up to millions) product terms. The algorithm is based on processing a newly proposed efficient representation of a set of product terms - a ternary tree. The minimization procedure is based on a fast application of basic Boolean operations upon the ternary tree, combined with algorithms used in the Espresso minimizer. Minimization of incompletely specified functions is supported as well. The minimization method was tested on randomly generated large sums-of-products and collapsed ISCAS benchmark circuits. The performance of the proposed algorithm was compared with Espresso. (en)
Title
  • Using Ternary Trees in Logic Synthesis
  • Using Ternary Trees in Logic Synthesis (en)
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  • Using Ternary Trees in Logic Synthesis
  • Using Ternary Trees in Logic Synthesis (en)
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  • RIV/68407700:21240/11:00177839!RIV13-MSM-21240___
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  • S, Z(MSM6840770014)
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  • RIV/68407700:21240/11:00177839
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  • Logic functions; Two-level minimization; ternary tree (en)
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  • [F28C71781F10]
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  • Fišer, Petr
  • Toman, David
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  • 21240
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