Context-based Smart Contracts For Appendable-block Blockchains

Henry C. Nunes, R. C. Lunardi, A. Zorzo, Regio A. Michelin, S. Kanhere
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引用次数: 8

Abstract

Currently, blockchain proposals are being adopted to solve security issues, such as data integrity, resilience, and non-repudiation. To improve certain aspects, e.g., energy consumption and latency, of traditional blockchains, different architectures, algorithms, and data management methods have been recently proposed. For example, appendable-block blockchain uses a different data structure designed to reduce latency in block and transaction insertion. It is especially applicable in domains such as Internet of Things (IoT), where both latency and energy are key concerns. However, the lack of some features available to other blockchains, such as Smart Contracts, limits the application of this model. To solve this, in this work, we propose the use of Smart Contracts in appendable-block blockchain through a new model called context-based appendable-block blockchain. This model also allows the execution of multiple smart contracts in parallel, featuring high performance in parallel computing scenarios. Furthermore, we present an implementation for the context-based appendable-block blockchain using an Ethereum Virtual Machine (EVM). Finally, we execute this implementation in four different testbed. The results demonstrated a performance improvement for parallel processing of smart contracts when using the proposed model.
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可追加区块链的基于上下文的智能合约
目前,区块链建议被用于解决安全问题,例如数据完整性、弹性和不可否认性。为了改善传统区块链的某些方面,例如能耗和延迟,最近提出了不同的架构、算法和数据管理方法。例如,可附块区块链使用一种不同的数据结构,旨在减少块和事务插入的延迟。它特别适用于物联网(IoT)等领域,在这些领域,延迟和能量都是关键问题。然而,缺乏其他区块链可用的一些功能,例如智能合约,限制了该模型的应用。为了解决这个问题,在这项工作中,我们提出通过一种称为基于上下文的可附块区块链的新模型在可附块区块链中使用智能合约。该模型还允许并行执行多个智能合约,在并行计算场景中具有高性能。此外,我们提出了使用以太坊虚拟机(EVM)实现基于上下文的可扩展块区块链。最后,我们在四个不同的测试平台上执行这个实现。结果表明,当使用所提出的模型时,智能合约的并行处理性能有所提高。
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