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HIGH PERFORMANCE MONTGOMERY MODULAR MULTIPLIER WITH A NEW RECODING METHOD

机译:新型记录方法的高性能蒙哥马模乘数

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Modular calculations are widely used in many applications, especially in public key crypto graphy. Such operations are very time consuming, due to their long operands. To improve the performance of these calculations, many methods have been introduced. Montgomery modular multiplication is an example of such a solution to enhance the performance of modular multi plication and modular exponentiation. The radix-2 version of this method is simple and fast for hardware implementation, where multi-operand adders are required for its implementation. So far, Carry-Save-Adder (CSA) gives the best performance for multi-addition. In this paper, we propose a new recoding method for the Montgomery modular multiplier to enhance its per formance. This is done through replacing CSA blocks with new blocks that have better per formances than CSA in multi-addition calculations. With this replacement, we can theoretically have up to 40% reduction in area gates. In our experiments, we obtained 5.8% area reduction and 3% speed improvement in a hardware implementation. The idea behind our proposed method is the use of bitwise subtraction operator, where no carry propagation is needed. This recoding method of operands can also be used in many aspects of computer arithmetic, algor ithms and computational hardware, such as multiplication, exponentiation and etc., in order to enhance their performances.
机译:模块化计算被广泛用于许多应用中,尤其是在公共密钥密码学中。由于操作数长,因此此类操作非常耗时。为了提高这些计算的性能,引入了许多方法。蒙哥马利模块化乘法是提高模块化乘法和模块化乘幂性能的解决方案的一个示例。此方法的radix-2版本对于硬件实现而言是简单而又快速的,其中实现时需要多操作数加法器。到目前为止,Carry-Save-Adder(CSA)为多次加法提供了最佳性能。在本文中,我们为蒙哥马利模乘器提出了一种新的编码方法,以提高其性能。这是通过用性能比CSA更好的新模块替换CSA模块来完成的。通过这种替代,理论上我们可以将面积浇口减少多达40%。在我们的实验中,通过硬件实现,面积减少了5.8%,速度提高了3%。我们提出的方法背后的思想是使用逐位减法运算符,不需要进位传播。这种操作数的重新编码方法还可以用于计算机算术,算法和计算硬件的许多方面,例如乘法,求幂等,以提高其性能。

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