Models for Generation of Proof Forest in zk-SNARK Based Sidechains

Y. Bespalov, L. Kovalchuk, Hanna Nelasa, R. Oliynykov, Robert Viglione
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Abstract

Sidechains are among the most promising scalability and extended functionality solutions for blockchains. Application of zero knowledge techniques (Latus, Mina) allows for reaching high level security and general throughput, though it brings new challenges on keeping decentralization where significant effort is required for robust computation of zk-proofs. We consider a simultaneous decentralized creation of various zk-proof trees that form proof-trees sequences in sidechains in the model that combines behavior of provers, both deterministic (mutually consistent) or stochastic (independent) and types of proof trees. We define the concept of efficiency of such process, introduce its quantity measure and recommend parameters for tree creation. In deterministic cases, the sequences of published trees are ultimately periodic and ensure the highest possible efficiency (no collisions in proof creation). In stochastic cases, we obtain a universal measure of prover efficiencies given by the explicit formula in one case or calculated by a simulation model in another case. The optimal number of allowed provers’ positions for a step can be set for various sidechain parameters, such as number of provers, number of time steps within one block, etc. Benefits and restrictions for utilization of non-perfect binary proof trees are also explicitly presented.
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基于zk-SNARK的侧链证明林生成模型
侧链是区块链最有前途的可扩展性和扩展功能解决方案之一。零知识技术(Latus, Mina)的应用允许达到高水平的安全性和一般吞吐量,尽管它在保持去中心化方面带来了新的挑战,在去中心化方面需要大量的努力来进行zk证明的鲁棒计算。我们考虑同时分散创建各种zk证明树,这些树在模型的侧链中形成证明树序列,该模型结合了证明者的行为,包括确定性(相互一致)或随机(独立)和证明树的类型。定义了这一过程的效率概念,介绍了效率的度量方法,并推荐了树的创建参数。在确定性的情况下,发布树的序列最终是周期性的,并确保最高的效率(在证明创建中没有冲突)。在随机情况下,我们得到了证明者效率的通用度量,在一种情况下由显式公式给出,在另一种情况下由模拟模型计算。可以根据各种侧链参数(如证明者数量、一个区块内的时间步数等)设置每个步骤允许的证明者位置的最佳数量。明确地给出了利用非完全二叉证明树的好处和限制。
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