异构实时系统中多版本多阶段任务的调度dag

Julius Roeder, Benjamin Rouxel, C. Grelck
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引用次数: 6

摘要

异构高性能嵌入式系统在工业上的应用越来越广泛。如今,这些平台嵌入了加速器风格的组件,如gpu,以及不同的CPU内核。我们使用多个替代方案/版本/任务实现,以充分受益于这些平台的异构能力,并且由于二进制不兼容性。针对加速器的实现不仅需要访问加速器,还需要访问CPU核心,例如,预处理和分支控制流。因此,加速器工作负载可以自然地划分为多个阶段(例如CPU、GPU、CPU)。我们提出了一种异步调度方法,它利用多个阶段,从而能够对需要两种类型硬件的任务进行细粒度调度。我们表明,与两个多版本无阶段调度程序相比,我们的方法可以将可调度率提高24%。此外,我们还证明了启发式算法的可调度率接近于最优可调度率。
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Scheduling DAGs of Multi-Version Multi-Phase Tasks on Heterogeneous Real-Time Systems
Heterogeneous high performance embedded systems are increasingly used in industry. Nowadays, these platforms embed accelerator-style components, such as GPUs, alongside different CPU cores. We use multiple alternatives/versions/implementations of tasks to fully benefit from the heterogeneous capacities of such platforms and due to binary incompatibility. Implementations targeting accelerators not only require access to the accelerator but also to a CPU core for, e.g., pre-processing and branching the control flow. Hence, accelerator workloads can naturally be divided into multiple phases (e.g. CPU, GPU, CPU). We propose an asynchronous scheduling approach that utilises multiple phases and thereby enables a finegrained scheduling of tasks that require two types of hardware. We show that our approach can increase the schedulability rate by up 24% over two multi-version phase-unaware schedulers. Additionally, we demonstrate that the schedulability rate of our heuristic is close to the optimal schedulability rate.
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