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Parallelizing the Weil and Tate Pairings

机译:平行化魏尔和泰特配对

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In the past year, the speed record for pairing implementations on desktop-class machines has been broken several times. The speed records for asymmetric pairings were set on a single processor. In this paper, we describe our parallel implementation of the optimal ate pairing over Barreto-Naehrig (BN) curves that is about 1.23 times faster using two cores of an Intel Core i5 or Core i7 machine, and 1.45 times faster using 4 cores of the Core i7 than the state-of-the-art implementation on a single core. We instantiate Hess's general Weil pairing construction and introduce a new optimal Weil pairing tailored for parallel execution. Our experimental results suggest that the new Weil pairing is 1.25 times faster than the optimal ate pairing on 8-core extensions of the aforementioned machines. Finally, we combine previous techniques for parallelizing the eta pairing on a supersingular elliptic curve with embedding degree 4, and achieve an estimated 1.24-fold speedup on an 8-core extension of an Intel Core i7 over the previous best technique.
机译:在过去的一年中,桌面级机器上配对实现的速度记录已破碎几次。在单个处理器上设置了非对称配对的速度记录。在本文中,我们描述了我们使用2个核心的速度更快的BARTO-NAEHRIG(BN)曲线的最佳ATE配对的平行实现,使用4个核心更快的速度快3.23倍。核心I7比一个核心的最先进的实现。我们实例化Hess的一般威尔配对施工,并引入了一个针对平行执行量身定制的新的最佳Weil配对。我们的实验结果表明,新的Weil配对比上述机器的8核延伸的最佳刚性配对快1.25倍。最后,我们结合了以前的技术,以将ETA配对并将ETA配对相同,在具有嵌入度4的超出椭圆曲线上,并在以前的最佳技术上达到英特尔核心I7的8核延伸的估计的1.24倍。

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