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Revisiting Cryptographic Accumulators, Additional Properties and Relations to Other Primitives

机译:重新审视加密累计,与其他基元的额外属性和关系

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Cryptographic accumulators allow to accumulate a finite set of values into a single succinct accumulator. For every accumulated value, one can efficiently compute a witness, which certifies its membership in the accumulator. However, it is computationally infeasible to find a witness for any non-accumulated value. Since their introduction, various accumulator schemes for numerous practical applications and with different features have been proposed. Unfortunately, to date there is no unifying model capturing all existing features. Such a model can turn out to be valuable as it allows to use accumulators in a black-box fashion. To this end, we propose a unified formal model for (randomized) cryptographic accumulators which cover static and dynamic accumulators, their universal features and includes the notions of undeniability and indistinguishability. Additionally, we provide an exhaustive classification of all existing schemes. In doing so, it turns out that most accumulators are distinguishable. Fortunately, a simple, light-weight generic transformation allows to make many existing dynamic accumulator schemes indistinguishable. As this transformation, however, comes at the cost of reduced collision freeness, we additionally propose the first indistinguishable scheme that does not suffer from this shortcoming. Finally, we employ our unified model for presenting a black-box construction of commitments from indistinguishable accumulators as well as a black-box construction of indistinguishable, undeniable universal accumulators from zero-knowledge sets. Latter yields the first universal accumulator construction that provides indistinguishability.
机译:加密累加器允许将有限的值累积成单个简洁累加器。对于每个累计值,可以有效地计算证人,该证人证明其在累加器中的成员身份。但是,对于任何非累积值找到证人是计算的。自他们的介绍以来,已经提出了许多实际应用和不同特征的各种蓄能器方案。遗憾的是,迄今为止,没有统一模型捕获所有现有功能。这样的模型可能会使它有价值,因为它允许以黑盒方式使用累加器。为此,我们提出了一个统一的正式模型(随机)加密蓄能器,其覆盖静态和动态蓄能器,它们的普遍功能,包括不可说益性和无法区分的概念。此外,我们提供了所有现有方案的详尽分类。在这样做时,事实证明,大多数累加器都是可区分的。幸运的是,简单的轻量级通用变换允许使许多现有的动态累加器方案无法区分。然而,由于这种转变,碰撞艰苦的成本,我们还提出了第一种不区分的方案,这些方案不会受到这种缺点。最后,我们聘请了我们的统一模型,以提出来自无法区分的蓄电池的黑匣子建设,以及从零知识集中的无法区分,无可否认的通用蓄能器的黑箱施工。后者产生了第一个提供难以区分的通用蓄能器结构。

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