LEA-DNS: DNS Resolution Validity and Timeliness Guarantee Local Authentication Extension with Public Blockchain

Ting Xiong, Shaojing Fu, Xiaochun Luo, Tao Xie
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Abstract

While the Domain Name System (DNS) is an infrastructure of the current network, it still faces the problem of centralization and data authentication according to its concept and practice. Decentralized storage of domain names and user local verification using blockchain may be effective solutions. However, since the blockchain is an add-only type database, domain name changes will cause out of date records to still be correct when using the Simplified Payment Verification (SPV) mechanism locally. This paper mainly introduces Local Enhanced Authentication DNS (LEA-DNS), which allows domain names to be stored in public blockchain database to provide decentralization feature and is compatible with the existing DNS. It achieves the validity and timeliness of local domain name resolution results to ensure correct and up to date with the Merkle Mountain Range and RSA accumulator technologies. Experiments show that less than 3.052Kb is needed for each DNS request to be validated, while the validation time is negligible, and only 9.44Kb of data need to be stored locally by the web client. Its compatibility with the existing DNS system and the lightness of the validation protocols indicate that this is a system suitable for deployment widely.
LEA-DNS: DNS解析的有效性和时效性保证本地认证扩展,Public区块链
虽然域名系统(DNS)是当前网络的基础设施,但根据其概念和实践,它仍然面临着集中化和数据认证的问题。域名的去中心化存储和使用区块链的用户本地验证可能是有效的解决方案。然而,由于区块链是一个仅添加类型的数据库,在本地使用简化支付验证(SPV)机制时,域名更改将导致过期记录仍然正确。本文主要介绍了本地增强认证DNS(LEA-DNS),它允许域名存储在公共区块链数据库中,以提供去中心化功能,并与现有DNS兼容。它实现了本地域名解析结果的有效性和及时性,以确保Merkle Mountain Range和RSA累加器技术的正确性和最新性。实验表明,每个DNS请求需要小于3.052Kb才能进行验证,而验证时间可以忽略不计,并且web客户端只需要本地存储9.44Kb的数据。它与现有DNS系统的兼容性和验证协议的轻便性表明,这是一个适合广泛部署的系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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