Improved multi-precision squaring for low-end RISC microcontrollers

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초록

We present an enhanced multi-precision squaring algorithm for low-end RISC microcontrollers. Generally, they have many general-purpose registers and limited bus size (8-32 bits). The proposed scheme employs a new technique, "lazy doubling" with optimizing computing sequences; so, it is significantly faster than the previous algorithms. Mathematical analysis shows that the number of clocks required by the proposed algorithm is about 67% of those required by the carry-catcher squaring algorithm. To the best of our knowledge this is known to be the fastest squaring algorithm. Experimental results on the ATmega128 microprocessor show that our algorithm is about 1.5 times faster than the carry-catcher squaring algorithm in terms of the number of clocks required. As squaring is a key operation in public key cryptography, the proposed algorithm can contribute to lowering power consumption in secure WSNs (wireless sensor networks) or secure embedded systems.

키워드

Multi-precision squaringLow-end microprocessorPublic key cryptographySensor networksSecurityELLIPTIC CURVE CRYPTOGRAPHYWIRELESS SENSOR NETWORKEFFICIENT IMPLEMENTATIONSECURITYSCHEMES
제목
Improved multi-precision squaring for low-end RISC microcontrollers
저자
Lee, YounhoKim, Ill-HeePark, Yongsu
DOI
10.1016/j.jss.2012.06.074
발행일
2013-01
유형
Article
저널명
Journal of Systems and Software
86
1
페이지
60 ~ 71