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Enhanced Digital Signature Using RNS Digit Exponent Representation

机译:使用RNS数字指数表示的增强型数字签名

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Digital Signature Algorithm (DSA) involves modular exponentiation, of a public and known base by a random one-time exponent. In order to speed-up this operation, well-known methods take advantage of the memorization of base powers. However, due to the cost of the memory, to its small size and to the latency of access, previous research sought for minimization of the storage. In this paper, taking into account the modern processor features and the growing size of the cache memory, we improve the storage/efficiency trade-off, by using a RNS Digit exponent representation. We then propose algorithms for modular exponentiation. The storage is lower for equivalent complexities for modular exponentiation computation. The implementation performances show significant memory saving, up to 3 times for the largest NIST standardized key sizes compared to state of the art approaches.
机译:数字签名算法(DSA)涉及通过随机的一次性指数对公共和已知库进行模幂运算。为了加速该操作,众所周知的方法利用了基本功率的存储。然而,由于存储器的成本,其尺寸小以及访问的等待时间,以前的研究试图使存储器最小化。在本文中,考虑到现代处理器的功能以及高速缓存的不断增长的大小,我们使用RNS Digit指数表示法改善了存储/效率的权衡。然后,我们提出用于模幂的算法。对于模幂计算的等效复杂性,存储空间较低。与最先进的方法相比,实现性能显示出显着的内存节省,最大的NIST标准化密钥大小最多可节省3倍。

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