Multi-Authority Attribute-Based Access Control with Smart Contract

Hao Guo, E. Meamari, Chien-Chung Shen
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引用次数: 55

Abstract

Attribute-based access control makes access control decisions based on the assigned attributes of subjects and the access policies to protect objects by mediating operations from the subjects. Authority, which validates attributes of subjects, is one key component to facilitate attribute-based access control. In an increasingly decentralized society, multiple attributes possessed by subjects may need to be validated by multiple different authorities. This paper proposes a multi-authority attribute-based access control scheme by using Ethereum's smart contracts. In the proposed scheme, Ethereum smart contracts are created to define the interactions between data owner, data user, and multiple attribute authorities. A data user presents its attributes to different attribute authorities, and after successful validation of attributes, obtains attribute tokens from respective attribute authorities. After collecting enough attribute tokens, a smart contract will be executed to issue secret key to the data user to access the requested object. The smart contracts for multi-authority attribute-based access control have been prototyped in Solidity, and their performance has been evaluated on the Rinkeby Ethereum Testnet.
基于智能合约的多授权机构属性访问控制
基于属性的访问控制根据分配给主体的属性和访问策略做出访问控制决策,从而通过中介主体的操作来保护对象。验证主题属性的权限是促进基于属性的访问控制的一个关键组件。在一个日益分散的社会中,主体拥有的多种属性可能需要由多个不同的权威机构进行验证。本文利用以太坊的智能合约,提出了一种基于多权威属性的访问控制方案。在提议的方案中,创建以太坊智能合约来定义数据所有者,数据用户和多个属性权威之间的交互。数据用户将其属性呈现给不同的属性授权机构,在属性验证成功后,从各自的属性授权机构获得属性令牌。在收集到足够的属性令牌后,将执行智能合约,向数据用户颁发密钥以访问所请求的对象。基于多授权属性访问控制的智能合约在Solidity中进行了原型化,并在Rinkeby以太坊测试网上对其性能进行了评估。
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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