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STES: A Stream Cipher Based Low Cost Scheme for Securing Stored Data

机译: STES :一种用于保护存储数据的基于流密码的低成本方案

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摘要

The problem of securing data present on USB memories and SD cards has not been adequately addressed in the cryptography literature. While the formal notion of a tweakable enciphering scheme (TES) is well accepted as the proper primitive for secure data storage, the real challenge is to design a low cost TES which can perform at the data rates of the targeted memory devices. In this work, we provide the first answer to this problem. Our solution, called STES, combines a stream cipher with a XOR universal hash function. The security of STES is rigorously analyzed in the usual manner of provable security approach. By carefully defining appropriate variants of the multi-linear hash function and the pseudo-dot product based hash function we obtain controllable trade-offs between area and throughput. We combine the hash function with the recent hardware oriented stream ciphers, namely Mickey, Grain and Trivium. Our implementations are targeted towards two low cost FPGAs—Xilinx Spartan 3 and Lattice ICE40. Simulation results demonstrate that the speeds of encryption/decryption match the data rates of different USB and SD memories. We believe that our work opens up the possibility of actually putting FPGAs within controllers of such memories to perform low-level in-place encryption.
机译:加密文献中尚未充分解决保护USB存储器和SD卡上存在的数据的问题。尽管可调节加密方案(TES)的形式概念已被公认为安全数据存储的适当原语,但真正的挑战是设计一种低成本的TES,该TES必须能够以目标存储设备的数据速率执行。在这项工作中,我们提供了这个问题的第一个答案。我们的解决方案称为STES,将流密码与XOR通用哈希函数结合在一起。 STES的安全性以可证明的安全性方法的通常方式进行了严格分析。通过仔细定义多线性哈希函数和基于伪点乘积的哈希函数的适当变体,我们可以获得面积和吞吐量之间的可控折衷。我们将哈希函数与最新的面向硬件的流密码(即Mickey,Grain和Trivium)结合在一起。我们的实现针对两个低成本的FPGA——Xilinx Spartan 3和Lattice ICE40。仿真结果表明,加密/解密的速度与不同USB和SD存储器的数据速率相匹配。我们相信,我们的工作为将FPGA实际置于此类存储器的控制器中进行低级别就地加密提供了可能性。

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