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Performance Evaluation of Primitives for Privacy-Enhancing Cryptography on Current Smart-Cards and Smart-Phones

机译:在当前智能卡和智能手机上的隐私加密基元的性能评估

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The paper deals with the implementation and benchmarking of cryptographic primitives on contemporary smart-cards and smartphones. The goal of the paper is to analyze the demands of today's common theoretical cryptographic constructions used in privacy-enhancing schemes and to find out whether they can be practically implemented on off-the-shelf hardware. We evaluate the performance of all major platforms of programmable smart-cards (JavaCards,.NET cards and MultOS cards) and three reference Android devices (a tablet and two smart-phones). The fundamental cryptographic primitives frequently used in advanced cryptographic constructions, such as user-centric attribute-based protocols and anonymous credential systems, are evaluated. In addition, we show how our results can be used for the estimation of the performance of existing and future cryptographic protocols. Therefore, we provide not only benchmarks of all modern programmable smart-card platforms but also a tool for the performance estimation of privacy-enhancing schemes which are based on popular zero-knowledge proof of knowledge protocols.
机译:本文涉及当代智能卡和智能手机上的加密原语的实施和基准。本文的目标是分析当今普通的理论加密结构,在隐私增强方案中使用的常见理论密码结构,并找出它们是否可以在现成的硬件上实际实施。我们评估可编程智能卡(Javacards,.NET卡和多碳卡)和三个参考Android设备(平板电脑和两个智能手机)的所有主要平台的性能。评估经常用于高级加密结构的基本基因,例如以用户为中心的基于属性的协议和匿名凭证系统。此外,我们展示了我们的结果如何用于估计现有和未来加密协议的性能。因此,我们不仅提供了所有现代可编程智能卡平台的基准,还提供了一种基于知识协议的流行零知识证据的隐私增强方案的性能估计的工具。

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