Abstract

Multiplication in the finite field GF(2^{m} ) has particular computational advantages in data encryption systems. This paper presents a new algorithm for performing fast multiplication in GF(2^{m} ), which is O(m) in computation time and implementation area. The bit-slice architecture of a serial-in-serial-out modulo multiplier is described and the circuit details given. The design is highly regular, modular, and well-suited for VLSI implementation. The resulting multiplier will have application in algorithms based on arithmetic in large finite fields of characteristic 2, and which require high throughput.

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