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Performance of Authenticated Encryption for Payment Cards with Crypto Co-processors

机译:带有加密协处理器的支付卡的认证加密性能

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摘要

Many security protocols rely on authentication of communicating entities and encryption of exchanged data. Traditionally, authentication and encryption have been separate processes, however there are combined solutions, referred to as authenticated-encryption (AE). The payment card industry is revising its protocol specifications and considering AE, however there has been uncertainty around performance and feasibility on traditional issued smart cards and when loaded as applications on security chips pre-installed within devices. It is difficult to predict performance using results from generic CPUs as typical smart card chips used in payment, have slow CPUs yet fast crypto-coprocessors. This report is based on a practical investigation, commissioned by a standards body, that compared secure platform level (MULTOS) and low-level native implementations of AE on crypto-coprocessor smart cards. The work also suggests a technology independent benchmark for a CPU with crypto-coprocessor.
机译:许多安全协议依赖于通信实体的身份验证和交换数据的加密。传统上,身份验证和加密是独立的过程,但是存在组合的解决方案,称为身份验证加密(AE)。支付卡行业正在修订其协议规范并考虑使用AE,但是在传统发行的智能卡以及作为应用程序加载到设备中预先安装的安全芯片上的性能和可行性方面一直存在不确定性。使用通用CPU的结果很难预测性能,因为用于支付的典型智能卡芯片具有缓慢的CPU和快速的加密协处理器。该报告基于由标准机构委托进行的一项实际调查,该调查对安全平台级别(MULTOS)和加密协处理器智能卡上的AE的低级本机实现进行了比较。这项工作还提出了具有加密协处理器的CPU的技术独立基准。

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    Mayes Keith;

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  • 年度 2017
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  • 正文语种 eng
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