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The Simplest Multi-key Linearly Homomorphic Signature Scheme

机译:最简单的多关键线性同态签名方案

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We consider the problem of outsourcing computation on data authenticated by different users. Our aim is to describe and implement the simplest possible solution to provide data integrity in cloud-based scenarios. Concretely, our multi-key linearly homomorphic signature scheme (mklhs) allows users to upload signed data on a server, and at any later point in time any third party can query the server to compute a linear combination of data authenticated by different users and check the correctness of the returned result. Our construction generalizes Boneh et al.'s linearly homomorphic signature scheme (PKC'09 [7]) to the multi-key setting and relies on basic tools of pairing-based cryptography. Compared to existing multi-key homomorphic signature schemes, our mklhs is a conceptually simple and elegant direct construction, which trades-off privacy for efficiency. The simplicity of our approach leads us to a very efficient construction that enjoys significantly shorter signatures and higher performance than previous proposals. Finally, we implement mklhs using two different pairing-friendly curves at the 128-bit security level, a Barreto-Lynn-Scott curve and a Barreto-Naehrig curve. Our benchmarks illustrate interesting performance trade-offs between these parameters, involving the cost of exponentiation and hashing in pairing groups. We provide a discussion on such trade-offs that can be useful to other implementers of pairing-based protocols.
机译:我们考虑通过不同用户认证的数据的外包计算问题。我们的目标是描述和实现最简单的解决方案,以便在基于云的场景中提供数据完整性。具体而言,我们的多关键线性同性全相子签名方案(MKLHS)允许用户在服务器上上传签名数据,并且在任何稍后的时间点,任何第三方都可以查询服务器,以计算不同用户认证的数据的线性组合并检查返回结果的正确性。我们的施工概括了Boneh等人。的线性同性全角签名方案(PKC'09 [7])到多关键设置并依赖于基于配对的密码造影的基本工具。与现有的多关环均匀签名方案相比,我们的MKLHS是一种概念简单而优雅的直接建设,其效率的贸易措施。我们的方法的简单性导致我们实现非常有效的建筑,享有明显较短的签名和比以前的建议更高的性能。最后,我们在128位安全级别使用两种不同的配对友好曲线,Barreto-Lynn-Scott曲线和Barreto-Naehrig曲线来实现MKLH。我们的基准测试说明了这些参数之间的有趣性能权衡,涉及成交量和配对组中的次数成本。我们对此类权衡提供讨论,这些权衡可能对基于配对的协议的其他实施者有用。

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