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Redactable Blockchain in the Permissionless Setting

机译:无权限设置中的可编辑区块链

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Bitcoin is an immutable permissionless blockchain system that has been extensively used as a public bulletin board by many different applications that heavily relies on its immutability. However, Bitcoin's immutability is not without its fair share of demerits. Interpol exposed the existence of harmful and potentially illegal documents, images and links in the Bitcoin blockchain, and since then there have been several qualitative and quantitative analysis on the types of data currently residing in the Bitcoin blockchain. Although there is a lot of attention on blockchains, surprisingly the previous solutions proposed for data redaction in the permissionless setting are far from feasible, and require additional trust assumptions. Hence, the problem of harmful data still poses a huge challenge for law enforcement agencies like Interpol (Tziakouris, IEEE S&P'18). We propose the first efficient redactable blockchain for the permissionless setting that is easily integrable into Bitcoin, and that does not rely on heavy cryptographic tools or trust assumptions. Our protocol uses a consensus-based voting and is parameterised by a policy that dictates the requirements and constraints for the redactions; if a redaction gathers enough votes the operation is performed on the chain. As an extra feature, our protocol offers public verifiability and accountability for the redacted chain. Moreover, we provide formal security definitions and proofs showing that our protocol is secure against redactions that were not agreed by consensus. Additionally, we show the viability of our approach with a proof-of-concept implementation that shows only a tiny overhead in the chain validation of our protocol when compared to an immutable one.
机译:比特币是一种不可更改的,未经许可的区块链系统,已被严重依赖其不可更改性的许多不同应用程序广泛用作公共公告板。但是,比特币的不变性并非没有缺点。国际刑警组织揭露了比特币区块链中有害和潜在非法文件,图像和链接的存在,自那时以来,对目前存在于比特币区块链中的数据类型进行了一些定性和定量分析。尽管对区块链的关注度很高,但令人惊讶的是,先前提出的在无权限设置中进行数据编辑的解决方案远非可行,需要额外的信任假设。因此,有害数据的问题仍然对诸如刑警组织(Tziakouris,IEEE S&P'18)之类的执法机构构成了巨大的挑战。我们为无权限设置提出了第一个高效的可编辑区块链,该区块链可轻松集成到比特币中,并且不依赖繁琐的加密工具或信任假设。我们的协议使用基于共识的投票,并由规定对修订的要求和约束的策略进行参数化;如果修订收集了足够的票数,则会在链上执行该操作。作为一项附加功能,我们的协议为修订链提供了公共可验证性和责任性。此外,我们提供了正式的安全性定义和证据,表明我们的协议对于未达成共识的修订是安全的。此外,我们通过概念验证的实施方式展示了该方法的可行性,与不可变的相比,该方法仅在协议的链验证中显示了很小的开销。

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