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Order-preserving encryption using approximate common divisors

机译:使用近似公共除数的定单加密

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Order-preservation is a highly desirable property for encrypted databases as it allows range queries over ciphertexts.Order-preserving encryption(OPE) is used in the encrypted database systems CryptDB and Cipherbase. The former has been adopted by several commercial organisations and the latter was developed as an extension of Microsoftâs SQLServer. We present two novel, but simple, randomised OPE schemes based on thegeneral approximate common divisor problem(GACDP) anddecisional polynomial approximate common divisor problem(DPolyACDP) respectively. These appear to be the first OPE schemes to be based on a computational hardness primitive, rather than a security game. Our GACDP based scheme is very efficient, requiring onlyO(1) arithmetic operations for encryption and decryption. Our DPolyACDP based scheme is similarly efficient. We show that these schemes have near optimal information leakage. We demonstrate how our OPE schemes can be integrated into a secure distributed computing system which computes over encrypted data. We report on an extensive evaluation of our GACDP-based algorithms in such a scenario, a MapReduce computation over encrypted data. The results clearly demonstrate extremely favourable execution times in comparison with existing OPE schemes.
机译:顺序保留是加密数据库的一个非常理想的属性,因为它允许对密文进行范围查询。在加密数据库系统CryptDB和Cipherbase中使用了顺序保留加密(OPE)。前者已被多家商业组织采用,后者是作为Microsoft SQLServer的扩展而开发的。我们分别基于一般近似公因数问题(GACDP)和决策多项式近似公因数问题(DPolyACDP)提出了两种新颖,简单的随机OPE方案。这些似乎是第一个基于计算硬度原语而不是安全游戏的OPE方案。我们基于GACDP的方案非常高效,仅需O(1)算术运算即可进行加密和解密。我们基于DPolyACDP的方案同样有效。我们表明,这些方案具有接近最佳的信息泄漏。我们演示了如何将OPE方案集成到安全的分布式计算系统中,该系统可以对加密数据进行计算。我们报告了在这种情况下对基于GACDP的算法的广泛评估,即对加密数据的MapReduce计算。与现有的OPE方案相比,结果清楚地表明了非常有利的执行时间。

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