Proxy Bits for Low Cost Floating-Point Fused Multiply–Add Unit

Hyunpil Kim, Sangook Moon · Journal of Circuits Systems and Computers · 2016

A new floating-point fused multiply–add (FMA) unit is proposed in this paper. We observed a group of redundant bits that have no effect on the effective results of the floating-point FMA arithmetic, and figured out that two proxy bits can replace the redundant bits. We proved the existence of the proxy bits using binary arithmetic keeping track of the negligible bits. Using proxy bits, the proposed FMA unit achieves improvement in terms of cost, power consumption, and performance. The results show that the proposed FMA unit reduces the total area and latency by approximately 17.0% and 32% respectively, compared with a current widely used FMA unit.

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