英雄:同态加密单指令计算机

N. G. Tsoutsos, M. Maniatakos
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引用次数: 24

摘要

随着云计算成为主流,确保委托给第三方的数据隐私的需求不断上升。云提供商采用大量的安全控制和加密来阻止潜在的攻击者。尽管如此,由于云微处理器内部的实际计算仍未加密,理论上有可能发生泄漏。因此,为了解决保护微处理器内部计算的挑战,我们引入了一种新的通用架构,用于安全数据处理,称为英雄(同态加密单指令计算机)。这种新设计利用单指令体系结构,并在体系结构级别提供加密数据的本地处理。该解决方案的安全性通过Paillier的同态加密方案的变体来保证,该方案用于对指令和数据进行加密。使用我们的硬件识别软件模拟器的实验结果表明,对于16位单指令架构,与未加密的变体相比,加密计算的平均执行开销在5到45倍之间(取决于安全参数)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HEROIC: Homomorphically EncRypted One Instruction Computer
As cloud computing becomes mainstream, the need to ensure the privacy of the data entrusted to third parties keeps rising. Cloud providers resort to numerous security controls and encryption to thwart potential attackers. Still, since the actual computation inside cloud microprocessors remains unencrypted, the opportunity of leakage is theoretically possible. Therefore, in order to address the challenge of protecting the computation inside the microprocessor, we introduce a novel general purpose architecture for secure data processing, called HEROIC (Homomorphically EncRypted One Instruction Computer). This new design utilizes a single instruction architecture and provides native processing of encrypted data at the architecture level. The security of the solution is assured by a variant of Paillier's homomorphic encryption scheme, used to encrypt both instructions and data. Experimental results using our hardware-cognizant software simulator, indicate an average execution overhead between 5 and 45 times for the encrypted computation (depending on the security parameter), compared to the unencrypted variant, for a 16-bit single instruction architecture.
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