Speed Me up if You Can: Conditional Lower Bounds on Opacity Verification

Jivr'i Balun, Tomas Masopust, Petr Osivcka
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Abstract

Opacity is a property of privacy and security applications asking whether, given a system model, a passive intruder that makes online observations of system's behaviour can ascertain some"secret"information of the system. Deciding opacity is a PSpace-complete problem, and hence there are no polynomial-time algorithms to verify opacity under the assumption that PSpace differs from PTime. This assumption, however, gives rise to a question whether the existing exponential-time algorithms are the best possible or whether there are faster, sub-exponential-time algorithms. We show that under the (Strong) Exponential Time Hypothesis, there are no algorithms that would be significantly faster than the existing algorithms. As a by-product, we obtained a new conditional lower bound on the time complexity of deciding universality (and therefore also inclusion and equivalence) for nondeterministic finite automata.
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如果可以,请加快速度:不透明度验证的条件下界
不透明性是隐私和安全应用程序的一种属性,这些应用程序询问,给定一个系统模型,一个对系统行为进行在线观察的被动入侵者能否确定系统的一些“秘密”信息。决定不透明度是一个PSpace-complete问题,因此在假设PSpace和PTime不同的情况下,没有多项式时间算法来验证不透明度。然而,这个假设引起了一个问题,即现有的指数时间算法是否是最好的,或者是否有更快的次指数时间算法。我们表明,在(强)指数时间假设下,没有算法会比现有算法快得多。作为一个副产品,我们得到了决定不确定性有限自动机的通用性(以及包含性和等价性)的时间复杂度的一个新的条件下界。
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