$ฮผ$Kummer: efficient hyperelliptic signatures and key exchange on microcontrollers

April 20, 2016 ยท Declared Dead ยท ๐Ÿ› Workshop on Cryptographic Hardware and Embedded Systems

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Authors Joost Renes, Peter Schwabe, Benjamin Smith, Lejla Batina arXiv ID 1604.06059 Category cs.CR: Cryptography & Security Citations 36 Venue Workshop on Cryptographic Hardware and Embedded Systems Last Checked 3 months ago
Abstract
We describe the design and implementation of efficient signature and key-exchange schemes for the AVR ATmega and ARM Cortex M0 microcontrollers, targeting the 128-bit security level. Our algorithms are based on an efficient Montgomery ladder scalar multiplication on the Kummer surface of Gaudry and Schost's genus-2 hyperelliptic curve, combined with the Jacobian point recovery technique of Costello, Chung, and Smith. Our results are the first to show the feasibility of software-only hyperelliptic cryptography on constrained platforms, and represent a significant improvement on the elliptic-curve state-of-the-art for both key exchange and signatures on these architectures. Notably, our key-exchange scalar-multiplication software runs in under 9740k cycles on the ATmega, and under 2650k cycles on the Cortex M0.
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