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首页> 外文期刊>Indian Journal of Science and Technology >Improve High-Performance by using of Blowfish Cryptographic Algorithm on Single-Chip Cloud Computer
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Improve High-Performance by using of Blowfish Cryptographic Algorithm on Single-Chip Cloud Computer

机译:在单芯片云计算机上使用河豚密码算法提高高性能

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Objectives: In the innovation of current data correspondences, the requirement for data well being emerges to make the execution time and calculation overhead less connected with the execution of cryptographic calculations increments correspondingly. Method/Analysis: Parallelizing the calculation of cryptographic calculations on numerous center processing frameworks might be a promising technique to diminish the execution time and at some point or another, the quality admission of such calculations. In this paper, we build a pipelined form to look into and assess the execution time and quality admission of the Blowfish cryptographic calculation on the Single-Chip Cloud PC (SCC), a trial processor made by method for Intel Labs. Findings: On this model the Blowfish cryptographic calculation is isolated to littler lumps and each nibble is managed handiest by method for one center. The use of message passing interface, the info actualities goes thus through the majority of the centers stressed. In view of the verbal trade overhead and idleness connected with this model, we tested and analyzed the highest point of the line message length to go among the centers to abstain from soaking the on-chip dispatch group. Improvement: Our outcomes show that our parallel system is 27X speedier than the successive approach and yields near 16X less quality admission on the SCC stage.
机译:目标:在当前数据通信的创新中,出现了对数据健康的要求,以使执行时间和计算开销与密码计算的执行相应地减少相关。方法/分析:在众多中心处理框架上并行执行密码计算可能是一种有希望的技术,它可以减少执行时间,并在某些时候减少这种计算的质量。在本文中,我们构建了流水线形式,以调查和评估在单芯片云PC(SCC)上执行河豚密码计算的时间和质量,这是英特尔实验室方法制造的试用处理器。结果:在此模型上,河豚密码计算被隔离成较小的团块,并且通过一个中心的方法最容易地管理每个半字节。使用消息传递接口,信息的真实性因此通过了大多数中心的强调。考虑到与此模型相关的言语交易开销和闲置情况,我们测试并分析了行间消息长度的最高点,以避开中心浸泡在片上调度组中。改进:我们的结果表明,与并行方法相比,并行系统的速度提高了27倍,在SCC阶段,质量降低了近16倍。

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