Odyn: Deadlock Prevention and Hybrid Scheduling Algorithm for Real-Time Dataflow Applications

Benjamin Dauphin, R. Pacalet, Andrea Enrici, L. Apvrille
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引用次数: 3

Abstract

In recent wireless communication standards (4G, 5G), the growing need for dynamic adjustments of transmission parameters (e.g., modulation, bandwidth, channel coding rate) makes traditional static scheduling approaches less and less efficient. The reason being that precomputed fixed mapping and scheduling prevent the system from dynamically adapting to changes of the operating conditions (e.g. wireless channel quality, available bandwidth). In this paper, we present Odyn, a hybrid approach for the scheduling and memory management of periodic dataflow applications on parallel, heterogeneous, Non-Uniform Memory Architecture (NUMA) platforms. In Odyn, the ordering of tasks and memory allocation are distributed and computed simultaneously at run-time for each Processing Element. Odyn also proposes a mechanism to prevent deadlocks caused by attempts to allocate buffers in size-limited memories. This technique, based on the static computation of exclusion relations among buffers in a target application, removes the need for backtracking that is typical of dynamic scheduling algorithms. We demonstrate the effectiveness of Odyn on a testbench that simulates the interactions of randomly generated concurrent applications. We also demonstrate its deadlock prevention technique on a selection of use cases.
Odyn:实时数据流应用的死锁预防和混合调度算法
在最近的无线通信标准(4G、5G)中,对传输参数(如调制、带宽、信道编码率)动态调整的需求越来越大,使得传统的静态调度方法越来越低效。原因是预先计算的固定映射和调度使系统无法动态适应运行条件的变化(如无线信道质量、可用带宽)。在本文中,我们提出了Odyn,一种用于并行,异构,非统一内存架构(NUMA)平台上周期性数据流应用程序的调度和内存管理的混合方法。在Odyn中,任务的排序和内存分配是在运行时为每个Processing Element同时分配和计算的。Odyn还提出了一种机制来防止由于尝试在大小有限的内存中分配缓冲区而导致的死锁。这种技术基于目标应用程序中缓冲区之间的排除关系的静态计算,消除了动态调度算法中典型的回溯的需要。我们在一个模拟随机生成的并发应用程序交互的测试台上演示了Odyn的有效性。我们还在一些用例上演示了它的死锁预防技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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