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A guidance framework for synthesis of multi-core reconfigurable real-time systems

机译:用于综合多核可重新配置实时系统的指导框架

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Nowadays, multi-core architectures are being more and more used in the design of realtime systems. Those systems react usually to their environment that requires to amend their behaviors by applying reconfiguration scenarios. This paper deals with multi-core reconfigurable real-time systems that should be adapted to their environment under real-time constraints. Meanwhile, their synthesis induces a heavy system code and time overhead due to a huge number of threads. The setting up of those systems involves many stages: i) definition of system functionalities, ii) generating of tasks, iii) placement and scheduling of tasks, and iv) generating system code. Correct transition among these steps has an impact on the final system implementation. Thus the need of a designer's experience is definitely required. However, many problems related to design decisions can be caused due to the complexity of real-time analysis, scheduling, and placement. Those problems may conduct to infeasible implementations. The proposed approach presents a guidance framework to avoid these problems from specification to code generation. This framework is performed by mixed-integer linear programming. It aims to resolve a task partitioning/scheduling problem while optimizing some metrics. The viability of the proposed framework is illustrated by a case study and performance evaluation. (C) 2020 Published by Elsevier Inc.
机译:如今,在实时系统的设计中,多核架构越来越多。这些系统通常对其环境进行反应,以通过应用重新配置方案来修改其行为。本文涉及多核可重新配置的实时系统,应在实时约束下适应其环境。同时,由于大量线程,它们的合成引起了沉重的系统代码和时间开销。这些系统的建立涉及许多阶段:i)系统功能的定义,ii)生成任务,iii)放置和任务的安排和调度,以及第四个生成系统代码。这些步骤之间的正确转换对最终系统实施产生了影响。因此,肯定需要设计师体验的需要。然而,由于实时分析,调度和放置的复杂性,可能导致与设计决策相关的许多问题。这些问题可能导致不可行的实现。该方法提出了一个指导框架,以避免这些问题从规范到代码生成。该框架是通过混合整数线性编程执行的。它旨在解决任务分区/调度问题,同时优化一些指标。通过案例研究和性能评估说明了所提出的框架的可行性。 (c)由elsevier公司发布的2020年

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