Cryptographic implementation of RSA for ion fault injection attack

C. Shao, Huiyun Li, Xiaolong Zhang
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引用次数: 2

Abstract

Nowadays the RSA cryptographic algorithm is widely used to protect Big Data security and privacy. Fault injection has been proved effective against RSA implementations. Although heavy ions have been long known as a source to cause single event effect (SEE), there is few publication about how the RSA implementations could be compromised by ion strikes. This paper proposes an RSA implementation specifically designed for the ion strike experiment. The design includes the handshake protocol with the microbeam facility, SEE response module, recovery module, fault detection module. This design paves the way to discover to what extend the ion attack will compromise the RSA implementations.
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离子故障注入攻击的RSA加密实现
目前,RSA加密算法被广泛用于保护大数据的安全和隐私。错误注入已被证明对RSA实现是有效的。虽然重离子长期以来一直被认为是引起单事件效应(SEE)的来源,但很少有关于RSA实现如何受到离子撞击的影响的出版物。本文提出了一种专门为离子冲击实验设计的RSA实现方案。设计包括微束设备握手协议、SEE响应模块、恢复模块、故障检测模块。该设计为发现离子攻击将危及RSA实现的程度铺平了道路。
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