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Fast and Adaptively Secure Signatures in the Random Oracle Model from Indistinguishability Obfuscation (Short Paper)

机译:基于不可区分性混淆的随机Oracle模型中的快速且自适应安全签名(简短论文)

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Indistinguishability obfuscation (iO) is a powerful cryptographic tool often employed to construct a variety of core cryptographic primitives such as public key encryption and signatures. In this paper, we focus on the employment of iO in order to construct short signatures with strong security guarantees (i.e., adaptive security) that provide a very efficient signing process for resource-constrained devices. Sahai and Waters (SW) (STOC 2014) initially explored the construction of iO-based short signature schemes but their proposal provides selective security. Ramchen and Waters (RW) (CCS 2014) attempted to provide stronger security guarantees (i.e., adaptive security) but their proposal is much more computationally expensive than the SW proposal. In this work, we propose an iO-based short signature scheme that provides adaptive security, fast signing for resource-constrained devices and is much more cost-efficient than the RW signature scheme. More precisely, we employ a puncturable PRF with a fixed length input to get a fast and adaptively secure signature scheme without any additional hardness assumption as in the SW signature scheme. To achieve this goal, we employ the technique of Hofheinz et al. called "delayed backdoor programming" using a random oracle, which allows to embed an execution thread that will only be invoked by special inputs generated using secret key information. Furthermore, we compare the cost of our signature scheme in terms of the cost of the underlying PRG used by the puncturable PRF. Our scheme has a much lower cost than the RW scheme, while providing strong security guarantees (i.e., adaptive security).
机译:不可区分性混淆(iO)是一种功能强大的加密工具,通常用于构造各种核心加密原语,例如公钥加密和签名。在本文中,我们专注于iO的使用,以构建具有强大安全性保证(即自适应安全性)的短签名,从而为资源受限的设备提供非常有效的签名过程。 Sahai and Waters(SW)(STOC 2014)最初探讨了基于iO的短签名方案的构建,但他们的建议提供了选择性的安全性。 Ramchen and Waters(RW)(CCS 2014)试图提供更强的安全性保证(即自适应安全性),但是他们的提议在计算上比软件提议要昂贵得多。在这项工作中,我们提出了一种基于iO的短签名方案,该方案可提供自适应安全性,资源受限设备的快速签名,并且比RW签名方案更具成本效益。更准确地说,我们采用具有固定长度输入的可穿孔PRF来获得快速且自适应的安全签名方案,而无需像SW签名方案中那样附加任何硬度假设。为了达到这个目标,我们采用了Hofheinz等人的技术。使用随机预言机的“延迟后门编程”,它允许嵌入执行线程,该执行线程只能由使用秘密密钥信息生成的特殊输入调用。此外,我们根据可打孔的PRF使用的基础PRG的成本来比较签名方案的成本。我们的方案比RW方案的成本低得多,同时提供了强大的安全保证(即自适应安全性)。

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