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Injecting Realistic Burstiness to a Traditional Client-Server Benchmark

机译:对传统客户端 - 服务器基准进行注入现实突发

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The design of autonomic systems often relies on representative benchmarks for evaluating system performance and scalability. Despite the fact that experimental observations have established that burstiness is a common workload characteristic that has deleterious effects on user-perceived performance, existing client-server benchmarks do not provide mechanisms for injecting burstiness into the workload. In this paper, we introduce a new methodology for generating workloads that emulate the temporal surge phenomenon in a controllable way, thus provide a mechanism that enables testing and evaluation of client-server system performance under reproducible bursty workloads. This new methodology allows to inject different amounts of burstiness into the arrival stream using the index of dispersion, a single parameter that is as simple to use as a turnable knob. We exemplify the effectiveness of this new methodology by introducing a new module into the TPC-W, a benchmark that is routinely used for capacity planning of e-commerce systems. This new module injects burstiness into the arrival process of clients in a controllable manner, and hence, enables understanding system performance degradation due to burstiness. Detailed experimentation on a real system shows that this benchmark modification can stress the system under different degrees of burstiness, making a strong case for the usefulness of this modification for capacity planning of autonomic systems.
机译:植物神经系统的设计往往依赖于评估系统的性能和可扩展性的代表基准。尽管实验观察已经建立了突发性的是,对用户感知的性能不利影响一个共同的工作负载特征,事实上,现有的客户端 - 服务器基准不注入到突发工作量的机制。在本文中,我们介绍了用于生成模拟时间喘振现象在可控的方式工作负载的新方法,从而提供了一种机制,使下重现的突发性工作负载的客户端 - 服务器系统的性能测试和评估。这种新方法允许以不同量的突发性的注入使用分散体的索引,也就是简单作为一个可转动旋钮使用单个参数到达流。我们通过引入一个新模块的TPC-W,即通常用于电子商务系统的容量规划的基准举例说明这种新方法的有效性。这种新的模块突发内喷射到客户端的到达过程以可控的方式,因此,能够理解系统性能的下降,由于突发性。详述在一个真正的系统显示的实验,这个基准修改可以应力下不同程度的突发的系统,使对于该变形例为植物神经系统的容量规划的实用性很强的情况下。

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