基于简单假设的实用“高效协议签名”

Benoît Libert, Fabrice Mouhartem, Thomas Peters, M. Yung
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引用次数: 22

摘要

数字签名可能是大规模系统中身份验证和信任关系最重要的基础。更具体地说,签名的各种应用提供了隐私和匿名保护机制和协议,而这些又变得至关重要(由于最近认识到需要根据国家规则和条例保护个人)。Camenisch和Lysyanskaya (CL)引入了一种特殊类型的签名,称为“高效协议签名”,它有效地适应了各种基本协议和扩展,如零知识证明、签名提交的消息或重新随机化。实际上,这些都是与签名相关的典型操作,用于典型的匿名和隐私保护场景。迄今为止,还没有基于简单假设和真正实用的“具有有效协议的签名”。这两个属性为我们保证了一个健壮的原语:首先,需要简单的假设来确保这个基本原语在数学上是健壮的,并且不需要特殊的特殊假设,这些假设风险更大,意味着效率更低,更适合协议本身,并且可能更不可信。在另一个方面,对于协议的匿名应用程序,效率是必须的,因为如果没有适当的效率水平,将来对原语的采用总是有问题的(尽管它们需要)。在这项工作中,我们提出了一个新的cl型签名方案,该方案在一个简单的、经过充分研究的、现在是标准的假设(SXDH)下是可重新随机的。签名是高效的(基于最近的QA-NIZK结构),并且在设计上适合在典型隐私设置的扩展上下文中工作(如匿名凭据、组签名和离线电子现金)。我们通过提出基于它的实用协议来展示它的力量。
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Practical "Signatures with Efficient Protocols" from Simple Assumptions
Digital signatures are perhaps the most important base for authentication and trust relationships in large scale systems. More specifically, various applications of signatures provide privacy and anonymity preserving mechanisms and protocols, and these, in turn, are becoming critical (due to the recently recognized need to protect individuals according to national rules and regulations). A specific type of signatures called "signatures with efficient protocols", as introduced by Camenisch and Lysyanskaya (CL), efficiently accommodates various basic protocols and extensions like zero-knowledge proofs, signing committed messages, or re-randomizability. These are, in fact, typical operations associated with signatures used in typical anonymity and privacy-preserving scenarios. To date there are no "signatures with efficient protocols" which are based on simple assumptions and truly practical. These two properties assure us a robust primitive: First, simple assumptions are needed for ensuring that this basic primitive is mathematically robust and does not require special ad hoc assumptions that are more risky, imply less efficiency, are more tuned to the protocol itself, and are perhaps less trusted. In the other dimension, efficiency is a must given the anonymity applications of the protocol, since without proper level of efficiency the future adoption of the primitives is always questionable (in spite of their need). In this work, we present a new CL-type signature scheme that is re-randomizable under a simple, well-studied, and by now standard, assumption (SXDH). The signature is efficient (built on the recent QA-NIZK constructions), and is, by design, suitable to work in extended contexts that typify privacy settings (like anonymous credentials, group signature, and offline e-cash). We demonstrate its power by presenting practical protocols based on it.
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