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Just-in-time scheduling techniques for multicore signal processing systems

机译:多核信号处理系统的即时调度技术

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This paper introduces a novel multicore scheduling method that leverages a parameterized dataflow Model of Computation (MoC). This method, which we have named Just-In-Time Multicore Scheduling (JIT-MS), aims to efficiently schedule Parameterized and Interfaced Synchronous DataFlow (PiSDF) graphs on multicore architectures. This method exploits features of PiSDF to And locally static regions that exhibit predictable communications. This paper uses a multicore signal processing benchmark to demonstrate that the JIT-MS scheduler can exploit more parallelism than a conventional multicore task scheduler based on task creation and dispatch. Experimental results of the JIT-MS on an 8-core Texas Instruments Keystone Digital Signal Processor (DSP) are compared with those obtained from the OpenMP implementation provided by Texas Instruments. Results shows latency improvements of up to 26% for multicore signal processing systems.
机译:本文介绍了一种新颖的多核调度方法,该方法利用了参数化的数据流计算模型(MoC)。我们将这种方法称为即时多核调度(JIT-MS),目的是在多核体系结构上有效地调度参数化和接口同步数据流(PiSDF)图。此方法利用了PiSDF的功能,并且显示了可预测的通信的本地静态区域。本文使用多核信号处理基准来证明JIT-MS调度程序比基于任务创建和分配的常规多核任务调度程序可以利用更多的并行性。将在8核德州仪器(TI)梯形数字信号处理器(DSP)上的JIT-MS的实验结果与从德州仪器(TI)提供的OpenMP实施中获得的结果进行了比较。结果表明,多核信号处理系统的延迟提高了26%。

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