A SAT-based fitness function for evolutionary optimization of polymorphic circuits
Lukáš Sekanina, Z. Vasicek · 2012
Multifunctional (or polymorphic) gates have been utilized as building blocks for multifunctional circuits that are capable of performing various logic functions under different settings of control signals. In order to effectively synthesize polymorphic circuits, several methods have been developed in the recent years. Unfortunately, the methods are applicable for small circuits only. In this paper, we propose a SAT-based functional equivalence checking algorithm to eliminate the fitness evaluation time which is the most critical overhead for genetic programming-based design and optimization of complex polymorphic circuits. The proposed approach has led to a 20%-40% reduction in gate count with respect to the solutions created using the polymorphic multiplexing.