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Exploiting statically schedulable regions in dataflow programs

机译:在数据流程序中利用静态可调度区域

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Dataflow descriptions have been used in a wide range of Digital Signal Processing (DSP) applications, such as multi-media processing, and wireless communications. Among various forms of dataflow modeling, Synchronous Dataflow (SDF) is geared towards static scheduling of computational modules, which improves system performance and predictability. However, many DSP applications do not fully conform to the restrictions of SDF modeling. More general dataflow models, such as CAL, have been developed to describe dynamically-structured DSP applications. Such generalized models can express dynamically changing functionality, but lose the powerful static scheduling capabilities provided by SDF. This paper focuses on detection of SDF-like regions in dynamic dataflow descriptions - in particular, in the generalized specification framework of CAL. This is an important step for applying static scheduling techniques within a dynamic dataflow framework. Our techniques combine the advantages of different dataflow languages and tools, including CAL, DIF and CAL2C. The techniques are demonstrated on the IDCT module of MPEG Reconfigurable Video Coding (RVC).
机译:数据流描述已用于各种数字信号处理(DSP)应用程序中,例如多媒体处理和无线通信。在各种形式的数据流建模中,同步数据流(SDF)面向计算模块的静态调度,从而提高了系统性能和可预测性。但是,许多DSP应用程序并不完全符合SDF建模的限制。已经开发了更通用的数据流模型(例如CAL)来描述动态结构化的DSP应用程序。这样的通用模型可以表示动态变化的功能,但会失去SDF提供的强大的静态调度功能。本文着重于动态数据流描述中特别是在CAL的通用规范框架中检测类似SDF的区域。这是在动态数据流框架内应用静态调度技术的重要步骤。我们的技术结合了各种数据流语言和工具(包括CAL,DIF和CAL2C)的优势。在MPEG可重配置视频编码(RVC)的IDCT模块上演示了这些技术。

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