Priority mechanisms for OLTP and transactional Web applications

David T. McWherter, Bianca Schroeder, A. Ailamaki, Mor Harchol-Balter
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引用次数: 109

Abstract

Transactional workloads are a hallmark of modern OLTP and Web applications, ranging from electronic commerce and banking to online shopping. Often, the database at the core of these applications is the performance bottleneck. Given the limited resources available to the database, transaction execution times can vary wildly as they compete and wait for critical resources. As the competitor is "only a click away", valuable (high-priority) users must be ensured consistently good performance via QoS and transaction prioritization. This paper analyzes and proposes prioritization for transactional workloads in traditional database systems (DBMS). This work first performs a detailed bottleneck analysis of resource usage by transactional workloads on commercial and noncommercial DBMS (IBM DB2, Post-greSQL, Shore) under a range of configurations. Second, this work implements and evaluates the performance of several preemptive and nonpreemptive DBMS prioritization policies in PostgreSQL and Shore. The primary contributions of this work include (i) understanding the bottleneck resources in transactional DBMS workloads and (ii) a demonstration that prioritization in traditional DBMS can provide 2x-5x improvement for high-priority transactions using simple scheduling policies, without expense to low-priority transactions.
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OLTP 和事务型网络应用程序的优先级机制
事务工作负载是现代OLTP和Web应用程序的标志,范围从电子商务和银行到在线购物。通常,这些应用程序的核心数据库是性能瓶颈。考虑到数据库可用的资源有限,事务执行时间可能会因为它们竞争和等待关键资源而变化很大。由于竞争对手“只需点击一下”,因此必须通过QoS和事务优先级确保有价值(高优先级)的用户始终保持良好的性能。本文对传统数据库系统中事务性工作负载的优先级进行了分析和提出。这项工作首先对各种配置下商业和非商业DBMS (IBM DB2、Post-greSQL、Shore)上事务性工作负载的资源使用情况进行了详细的瓶颈分析。其次,本工作在PostgreSQL和Shore中实现并评估了几种抢占式和非抢占式DBMS优先级策略的性能。这项工作的主要贡献包括:(i)理解事务性DBMS工作负载中的瓶颈资源,(ii)证明传统DBMS中的优先级可以使用简单的调度策略为高优先级事务提供2 -5倍的改进,而不会对低优先级事务造成损失。
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