Scaling Blockchains Using Pipelined Execution and Sparse Peers

Parth Thakkar, Senthilnathan Natarajan
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引用次数: 6

Abstract

Large cloud providers such as AWS and IBM now provide managed blockchain platforms, showcasing an active interest in blockchains. Unfortunately, blockchains provide poor performance and scalability. This is true even for the Execute-Order-Validate (EOV) style of blockchains which improves over the traditional Order-Execute architecture. We experimentally show that EOV platforms scale poorly using both vertical and horizontal scaling approaches. We find that the throughput is bottlenecked by the Validation and Commit phases, which poorly utilize the resources, limiting performance and scalability. We introduce three ideas to improve the performance, scalability, and cost-efficiency of EOV platforms. We first propose a provably correct way to pipeline the Validation and Commit phases. We then introduce a new type of node called sparse peer that validates and commits only a subset of transactions. Finally, we propose a technique that makes it possible for these systems to elastically scale as per the load. Our implementation provides 3.7x and 2.1x higher throughput than Hyperledger Fabric and FastFabric for the same infrastructure cost while providing their peak throughputs at 87% and 50% lower cost. It also makes dynamic horizontal scaling practical by providing 12-26X faster scale-up times.
使用流水线执行和稀疏对等体扩展区块链
大型云提供商如AWS和IBM现在提供托管区块链平台,显示出对区块链的积极兴趣。不幸的是,区块链提供了较差的性能和可扩展性。即使对于执行-订单-验证(EOV)风格的区块链也是如此,它比传统的订单-执行架构有所改进。我们的实验表明,EOV平台在使用垂直和水平缩放方法时都很差。我们发现吞吐量受到验证和提交阶段的瓶颈,这两个阶段的资源利用率很低,限制了性能和可伸缩性。本文介绍了三种改进EOV平台性能、可扩展性和成本效率的方法。我们首先提出了一种可以证明正确的方法来管道化验证和提交阶段。然后,我们引入一种称为稀疏peer的新类型节点,它只验证和提交事务的子集。最后,我们提出了一种技术,使这些系统能够根据负载进行弹性扩展。我们的实现以相同的基础设施成本提供了比Hyperledger Fabric和FastFabric高3.7倍和2.1倍的吞吐量,同时以87%和50%的低成本提供峰值吞吐量。它还通过提供12-26倍的快速扩展时间,使动态水平扩展变得实用。
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