基于速率的实时操作系统多流QoS控制

Y. Tobe, Y. Tamura, H. Tokuda
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引用次数: 1

摘要

当包括连续媒体流在内的多个流同时从一台计算机发送时,需要考虑处理器容量和网络带宽的分配和管理。我们提出了一个发送主机内部的服务质量(QoS)管理框架,该框架考虑到处理器容量和网络带宽的利用率,控制发送线程的执行。为了与只需要尽力而为服务的流区分开来,我们将需要特定服务速率的流称为“保留流”。为了在发送主机的处理器密集型和网络密集型情况下保证这些保留流的QoS,分配处理器容量预留,以便达到每个保留流的速率,并在传输之前对不符合要求的数据进行监管。处理器容量管理器和网络设备驱动程序以协作的方式交换信息,以支持处理器容量储备的速率自适应分配。我们描述了我们的框架在RT-Mach上的设计和实现。性能评估结果表明,该方案在全双工以太网中具有良好的性能。
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Rate-based QoS control of multiple flows over a real-time OS
When multiple flows including continuous media streams are simultaneously sent from a computer, allocation, and management of both processor capacity and network bandwidth need to be considered. We propose a framework of Quality of Service (QoS) management inside a sending host that controls execution of sending threads in consideration of utilization of processor capacity and network bandwidth. To distinguish from flows which require only best effort service, we call a flow which requires a specific rate of service "reserved flow". To guarantee QoS of such reserved flow both in processor- and network-intensive cases in a sending host, processor capacity reserve is allocated such that the rate of each reserved flow is attained and non conforming data are policed before they are transmitted. Processor Capacity Manager and the network device driver exchange information in a cooperative manner to support the rate adaptive allocation of processor capacity reserve. We describe design and implementation of our framework on RT-Mach. The results of performance evaluations demonstrate that our scheme performs well for full-duplex Ethernet.
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