Instrumentation techniques for cyber-physical systems using the targeted dataflow interchange format

S. Bhattacharyya
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Abstract

Dataflow methods are widely used for the design and implementation of signal processing functionality in cyber-physical systems. Systematically integrating instrumentation methods into dataflow-based design processes is important to facilitate trade-off assessment and tuning of alternative scheduling strategies. Such instrumentation-driven scheduler development is particularly important for dynamically structured signal processing computations. In this talk, we will present methods developed in the targeted dataflow interchange format (TDIF) environment for rigorously supporting instrumentation throughout the scheduling process. TDIF, a software tool for design and implementation of signal processing systems, emphasizes processes for retargetable design, analysis, and optimization of hardware and software. We will present an internal representation used within TDIF called the instrumented generalized schedule tree (IGST), and demonstrate the utility of IGSTs for constructing, representing, and manipulating dataflow graph schedules in connection with diverse forms of instrumentation functionality, including monitoring associated with memory usage, performance and energy consumption. This talk is based on joint work with Chung-Ching Shen, Hsiang-Huang Wu, Nimish Sane, and William Plishker.
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使用目标数据流交换格式的网络物理系统的仪表技术
数据流方法被广泛用于网络物理系统中信号处理功能的设计和实现。系统地将仪表方法集成到基于数据流的设计过程中,对于促进权衡评估和调整备选调度策略非常重要。这种仪器驱动的调度器开发对于动态结构化信号处理计算尤为重要。在这次演讲中,我们将介绍在目标数据流交换格式(TDIF)环境中开发的方法,这些方法在整个调度过程中严格支持仪表。TDIF是一种用于设计和实现信号处理系统的软件工具,强调硬件和软件的可重定向设计、分析和优化过程。我们将介绍TDIF中使用的一种内部表示,称为仪表化广义调度树(IGST),并演示IGST在与各种形式的仪表功能(包括与内存使用、性能和能耗相关的监控)相关的数据流图调度的构造、表示和操作方面的效用。本讲座是基于与沈忠清、吴祥煌、Nimish Sane和William Plishker的合作成果。
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