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An efficient implementation of pairing-based cryptography on MSP430 processor

机译:在MSP430处理器上基于配对的加密的有效实现

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In this paper, we present a highly optimized implementation of pairing on 16-bit MSP430 processor. Until now, TinyPBC provided the most optimized implementation of pairing on sensor platforms. Although it is well optimized for finite field arithmetic, it is not optimized at an extension field arithmetic level. Moreover, since TinyPBC requires considerable amount of memory consumption, its usability is limited on a memory-constrained sensor platforms. We have focused on optimizing not only field arithmetic level but also extension field arithmetic level. In comparison with TinyPBC, the field reduction performance could be improved about 29.1% by our proposed method. We achieved 12.22% of performance improvement for extension field sparse multiplication. Our pairing implementation on MSP430 computes single pairing in 1.22 s, and this result is 5.88% faster than TinyPBC. Furthermore, it requires 19.2% less memory than TinyPBC.
机译:在本文中,我们介绍了在16位MSP430处理器上高度优化的配对实现。到目前为止,TinyPBC在传感器平台上提供了最优化的配对实现。尽管针对有限域算术进行了优化,但并未在扩展域算术级别进行优化。而且,由于TinyPBC需要大量的内存消耗,因此其可用性在内存受限的传感器平台上受到限制。我们不仅专注于优化字段算术水平,还致力于优化扩展字段算术水平。与TinyPBC相比,我们提出的方法可以将场减小性能提高约29.1%。对于扩展字段稀疏乘法,我们实现了12.22%的性能提升。我们在MSP430上的配对实现在1.22 s内计算出单次配对,因此该结果比TinyPBC快5.88%。此外,它需要的内存比TinyPBC少19.2%。

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