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Self-Guarding Cryptographic Protocols against Algorithm Substitution Attacks

机译:自我保护加密协议,以防止算法替换攻击

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We put forward the notion of self-guarding cryptographic protocols as a countermeasure to algorithm substitution attacks. Such self-guarding protocols can prevent undesirable leakage by subverted algorithms if one has the guarantee that the system has been properly working in an initialization phase. Unlike detection-based solutions they thus proactively thwart attacks, and unlike reverse firewalls they do not assume an online external party. We present constructions of basic primitives for (public-key and private-key) encryption and for signatures. We also argue that the model captures attacks with malicious hardware tokens and show how to self-guard a PUF-based key exchange protocol.
机译:我们提出了自我保护密码协议的概念,作为对算法替换攻击的对策。如果可以保证系统已在初始化阶段正常运行,则这种自我保护协议可以防止被颠覆算法所引起的不希望的泄漏。因此,与基于检测的解决方案不同,它们可以主动阻止攻击,与反向防火墙不同,它们不承担在线外部攻击。我们介绍了用于(公用密钥和专用密钥)加密和签名的基本原语的构造。我们还认为,该模型可以捕获带有恶意硬件令牌的攻击,并说明如何自我保护基于PUF的密钥交换协议。

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