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Secure Software Leasing

机译:安全软件租赁

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摘要

Formulating cryptographic definitions to protect against software piracy is an important research direction that has not received much attention. Since natural definitions using classical cryptography are impossible to achieve (as classical programs can always be copied), this directs us towards using techniques from quantum computing. The seminal work of Aaronson [CCC'09] introduced the notion of quantum copy-protection precisely to address the problem of software anti-piracy. However, despite being one of the most important problems in quantum cryptography, there are no provably secure solutions of quantum copyprotection known for any class of functions. We formulate an alternative definition for tackling software piracy, called secure software leasing (SSL). While weaker than quantum copyprotection, SSL is still meaningful and has interesting applications in software anti-piracy. We present a construction of SSL for a subclass of evasive circuits (that includes natural implementations of point functions, conjunctions with wild cards, and affine testers) based on concrete cryptographic assumptions. Our construction is the first provably secure solution, based on concrete cryptographic assumptions, for software anti-piracy. To complement our positive result, we show, based on cryptographic assumptions, that there is a class of quantum unlearnable functions for which SSL does not exist. In particular, our impossibility result also rules out quantum copy-protection [Aaronson CCC'09] for an arbitrary class of quantum unlearnable functions; resolving an important open problem on the possibility of constructing copy-protection for arbitrary quantum unlearnable circuits.
机译:制定密码的定义,以防止软件盗版是没有受到很多关注的一个重要的研究方向。由于采用古典密码自然的定义是不可能实现的(如经典的节目总是可以复制),该指引我们走向使用的技术从量子计算。阿伦森[CCC'09]的开创性工作,介绍了量子复制保护的概念,正是为了解决软件反盗版的问题。然而,尽管是在量子密码学中最重要的问题之一,没有任何可证明对任何类的函数称为量子复制保护的安全解决方案。我们制定备选定义为应对盗版软件,被称为安全软件租赁(SSL)。虽然比量子复制保护较弱,SSL仍然是有意义的,在软件反盗版有趣的应用。我们提出了SSL的施工回避电路的子类,根据具体的密码假设(包括点功能自然实现,用通配符连词,和仿射测试)。我们建设的是第一可证明安全的解决方案,根据具体的加密假设,软件反盗版。为了配合我们积极的结果,我们表明,基于密码的假设,有一类针对SSL不存在量子unlearnable功能。特别是,我们不可能成绩也排除了量子复制保护[阿伦森CCC'09]对于任意类的量子unlearnable功能;解决关于构建任意量子unlearnable电路复制保护的可能性,一个重要的开放问题。

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