Compositional Temporal Analysis Method for Fixed Priority Pre-emptive Scheduled Modal Stream Processing Applications

G. Kuiper, Stefan J. Geuns, J. Hausmans, M. Bekooij
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引用次数: 2

Abstract

Modal real-time stream processing applications often contain cyclic dependencies and are typically executed on multiprocessor systems with processor sharing. Most real-time operating system kernels for these systems support Static Priority Pre-emptive (SPP) scheduling, however there is currently no suitable temporal analysis technique available for this type of systems. In this paper, we present a compositional temporal analysis approach for modal and cyclic stream processing applications executed on SPP scheduled multiprocessor systems. In this approach, locks and barriers are added such that the temporal behavior of modes can be characterized independently. As a result, the composition of modes does not change their characterization. This enables the use of an existing Structured Variable-Rate Phased Dataflow (SVPDF) model based dataflow analysis technique to determine the worst-case temporal behavior. The SVPDF model and the parallel implementation including locks and barriers are generated by a multiprocessor compiler. The applicability of the analysis approach is demonstrated using a WLAN 802.11p application. Conditions under which pipelined execution can be achieved are identified. The analysis results are verified with a dataflow simulator that supports sharing of resources.
固定优先级抢占式调度模态流处理应用的组合时间分析方法
模态实时流处理应用程序通常包含循环依赖关系,并且通常在具有处理器共享的多处理器系统上执行。大多数用于这些系统的实时操作系统内核都支持静态优先级抢占(SPP)调度,但是目前还没有合适的时间分析技术可用于这种类型的系统。本文提出了一种组合时间分析方法,用于在SPP调度多处理器系统上执行的模态和循环流处理应用。在这种方法中,添加了锁和屏障,从而可以独立地表征模式的时间行为。因此,模态的组成不会改变它们的特性。这使得现有的基于结构化可变速率阶段性数据流(SVPDF)模型的数据流分析技术能够确定最坏情况下的时间行为。SVPDF模型和包含锁和屏障的并行实现由多处理器编译器生成。通过WLAN 802.11p应用程序演示了分析方法的适用性。确定了实现流水线执行的条件。利用支持资源共享的数据流模拟器对分析结果进行了验证。
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