基于刮本存储器的嵌入式处理器上同步数据流模型的调度

W. Che, Karam S. Chatha
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引用次数: 17

摘要

由于功耗较低,许多嵌入式处理器都采用了刮板存储器(SPM)。spm用于同时托管代码和数据,通常在同一个物理单元上。同步数据流(SDF)是一种流行的格式,用于指定许多嵌入式系统应用程序,特别是在多媒体和网络处理领域。在基于SPM的处理器上执行SDF规范涉及到参与者代码和缓冲区之间的内存划分,以及参与者执行和代码覆盖的调度,以便在内存约束下最小化延迟。在我们的问题实例中,传统的最小缓冲区SDF调度可能需要更大的代码覆盖开销,因此可能不是最优的。本文提出了一个三期整数线性规划(ILP)公式来解决这一问题。此外,本文还介绍了对三阶段ILP的修改,以纳入代码预取优化,以进一步减少代码覆盖开销。通过与几个基准应用程序的最小缓冲区SDF调度进行比较,评估了所提出方法的有效性。
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Scheduling of synchronous data flow models on scratchpad memory based embedded processors
Many embedded processors incorporate scratchpad memories (SPM) due to their lower power consumption characteristics. SPMs are utilized to host both code and data, often on the same physical unit. Synchronous dataflow (SDF) is a popular format for specifying many embedded system applications particularly in multimedia and network processing domains. Execution of SDF specifications on SPM based processors involves division of memory between actor code and buffers, and scheduling of actor executions and code overlays such that latency is minimized subject to the memory constraints. In our problem instance a traditional minimum buffer SDF schedule could require a larger code overlay overhead and therefore may not be optimal. The paper presents a three stage integer linear programming (ILP) formulation to solve the problem. Further, the paper also introduces modifications to the three stage ILP for incorporating code prefetching optimization to further reduce the code overlay overhead. The effectiveness of the proposed approaches is evaluated by comparisons with minimum buffer SDF schedules for several benchmark applications.
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