计算机科学 ›› 2011, Vol. 38 ›› Issue (4): 122-124.

• 计算机网络与信息安全 • 上一篇    下一篇

针对MIBS的宽度差分故障分析

王素贞,赵新杰,王韬,吴杨   

  1. (河北经贸大学经济管理学院 石家庄050091) (军械工程学院计算机工程系 石家庄050003)
  • 出版日期:2018-11-16 发布日期:2018-11-16
  • 基金资助:
    本文受国家自然科学基金资助项目(60772082) ,河北省自然科学基金数学研究专项(08M010)资助。

Wide Differential Fault Analysis on MIBS

WANG Su-zhen,ZHAO Xin-jie,WANG Tao,WU Yang   

  • Online:2018-11-16 Published:2018-11-16

摘要: MIBS分组密码主要用于RFIv轻量级密码设备实现,对其安全性研究尚无公开结果发表。首先给出了MIBS算法及故障分析原理,提出了一种针对MIBS的宽度差分故障分析方法,并通过仿真实验进行了验证。实验结果表明,由于其Feistel结构和S盒特性,MII3S易遭受宽度故障攻击,通过在第32轮和第31轮分别导入1次32位故障即可将64位主密钥降低到21. 70位,经1秒钟暴力破解恢复完整密钥。该故障分析方法也可为其它分组密码差分故障分析提供一定思路。

关键词: 分组密码,MIBS密码,Feistel结构,差分故障分析,宽度故障

Abstract: MIBS is a block cipher used in the implementation of lightweight cryptographic equipment such as RFID tag,and there has been no published paper on its security at present This paper presented the MII3S algorithm and differential fault analysis principlc,proposcd a wick fault analysis method on MIBS,and verified it through simulation. Expcriment results demonstrate; due to its Feistel structure and S-box feature, MIBS is vulnerable to wide fault attack, after injecting 32-bit fault to the 32Th and 31h round left register, 64-bit MIBS master key search space can be reduced to 21. 70-bit, the full key can be recovered after 1 second brutcforccscarch, and the fault analysis method in this paper can provide some ideas on other block ciphers using S-box.

Key words: B1ock ciphcr,MIBS cipher,Feistel structure,Diffcrential fault analysis,Wide fault

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