智能合约:以太坊生态系统中的安全模式和稳定性

Maximilian Wöhrer, Uwe Zdun
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引用次数: 230

摘要

建立在区块链技术上的智能合约在新的商业应用和科学界受到了极大的关注,因为它们允许不受信任的各方在程序代码中显示合同条款,从而消除了对受信任第三方的需求。以太坊是当今最著名的智能合约平台,在以太坊中编写性能良好且安全的合约的创建过程是一项艰巨的任务。工业界和科学界对这一课题的研究直到最近才开始。基于对使用接地理论技术收集的数据的分析,我们阐述了几种常见的安全模式,我们在以太坊的主要编程语言Solidity的基础上详细描述了这些模式。所提供的模式描述了典型安全问题的解决方案,Solidity开发人员可以应用这些模式来减轻典型的攻击场景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smart contracts: security patterns in the ethereum ecosystem and solidity
Smart contracts that build up on blockchain technologies are receiving great attention in new business applications and the scientific community, because they allow untrusted parties to manifest contract terms in program code and thus eliminate the need for a trusted third party. The creation process of writing well performing and secure contracts in Ethereum, which is today’s most prominent smart contract platform, is a difficult task. Research on this topic has only recently started in industry and science. Based on an analysis of collected data with Grounded Theory techniques, we have elaborated several common security patterns, which we describe in detail on the basis of Solidity, the dominating programming language for Ethereum. The presented patterns describe solutions to typical security issues and can be applied by Solidity developers to mitigate typical attack scenarios.
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