Dynamic proofs of retrievability from Chameleon-Hashes

S. Rass
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引用次数: 7

Abstract

Proofs of retrievability (POR) are interactive protocols that allow a verifier to check the consistent existence and availability of data residing at a potentially untrusted storage provider, e.g., a cloud. While most POR protocols strictly refer to static files, i.e., content that is read-only, dynamic PORs shall achieve the same security guarantees (existence, consistency and the possibility to retrieve the data) for content that is subject to an unlimited number of (legitimate) modifications. This work discusses how to construct such a dynamic proof of retrievability from chameleon hashes (trapdoor commitments). Like standard POR constructions, the presented scheme is sentinel-based and does audit queries via spot checking mechanism. Unlike previous schemes, however, a-posteriori insertions of new sentinels throughout the lifetime of the file is supported. This novel feature is apparently absent in any other POR scheme in the literature. Moreover, the system is designed for compatibility with XML structured data files.
变色龙哈希可检索性的动态证明
可检索性证明(POR)是一种交互式协议,允许验证者检查驻留在可能不受信任的存储提供商(例如云)中的数据的一致性存在性和可用性。虽然大多数POR协议严格引用静态文件,即只读的内容,但动态POR应该为无限制(合法)修改的内容实现相同的安全保证(存在性、一致性和检索数据的可能性)。这项工作讨论了如何从变色龙哈希(陷阱门承诺)中构造这样一个可恢复性的动态证明。与标准的POR结构一样,本文提出的方案是基于哨兵的,并通过抽查机制对查询进行审计。然而,与以前的方案不同的是,它支持在整个文件生命周期内对新哨兵进行事后插入。这一新颖的特征在文献中的任何其他POR方案中显然是不存在的。此外,该系统是为兼容XML结构化数据文件而设计的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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