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Design Automation and Test in Europe (DATE '98)
Multi-output Functional Decomposition with Exploitation of Don't Cares
Paris, France
February 23-February 26
ISBN: 0-8186-8359-7
Christoph Scholl, Albert-Ludwigs-University
Functional decomposition is an important technique in logic synthesis, especially for the design of lookup table based FPGA architectures. We present a method for functional decomposition with a novel concept for the exploitation of don't cares thereby combining two essential goals: the minimization of the number of decomposition functions in the current decomposition step and the extraction of common subfunctions for multi-output Boolean functions. The exploitation of symmetries of Boolean functions plays an important role in our algorithm as a means to minimize the number of decomposition functions not only for the current decomposition step but also for the (recursive) decomposition algorithm as a whole. Experimental results prove the effectiveness of our approach.
Citation:
Christoph Scholl, "Multi-output Functional Decomposition with Exploitation of Don't Cares," date, pp.743, Design Automation and Test in Europe (DATE '98), 1998
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