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Self-Adaptive QoS Management of Computation and Communication Resources in Many-Core SoCs

机译:许多核心SOC中的自适应QoS管理和通信资源管理

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摘要

Providing quality of service (QoS) for many-core systems with dynamic application admission is challenging due to the high amount of resources to manage and the unpredictability of computation and communication events. Related works propose a self-adaptive QoS mechanism concerned either in communication or computation resources, lacking, however, a comprehensive QoS management of both. Assuming a many-core system with QoS monitoring, runtime circuit-switching establishment, task migration, and a soft real-time task scheduler, this work fills this gap by proposing a novel self-adaptive QoS management. The contribution of this proposal comes with the following features in the QoS management: (i) comprehensiveness, by covering communication and computation resources; (10 online, adopting the ODA (Observe, Decide, Act) runtime closed-loop adaptation; and (ill) reactive and proactive decisions, by using a dynamic application profile extraction technique, which enables the QoS management to be aware of the profile of running applications, allowing it to take proactive decisions based on a prediction analysis. The proposed QoS management adopts a decentralized organization by partitioning the system in clusters, each one managed by a dedicated processor, making the proposal scalable. Results show that the proactive feature accurately extracts the applications' profile, and can prevent future QoS violations. The synergy of reactive and proactive decisions was able to sustain QoS, reducing the deadline miss rate by 99.5% with a severe disturbance in communication and computation levels, and avoiding deadline misses up to 70% of system utilization.
机译:为具有动态应用录取的许多核心系统提供服务质量(QoS)是由于管理高度的资源和计算和通信事件的不可预测性而挑战。相关工程提出了一种在沟通或计算资源中有关的自适应QoS机制,然而,缺乏对两者的全面QoS管理。假设具有QoS监控的许多核心系统,运行时电路切换建立,任务迁移和软实时任务调度程序,这项工作通过提出新颖的自适应QoS管理来填补这种差距。该提案的贡献在QoS管理中具有以下功能:(i)通过涵盖通信和计算资源的全面性; (10在线,采用ODA(观察,决定,采取)运行时闭环适应;(ILL)通过使用动态应用简介提取技术,实现反应性和主动决策,这使得QoS管理能够了解概况运行应用程序,允许基于预测分析采用主动决策。所提出的QoS管理通过将系统分区,每个由专用处理器管理的系统进行分区,使提案可扩展。结果表明主动特征准确提取应用程序的个人资料,并可以防止未来的QoS违规。反应性和主动决策的协同作用能够维持QoS,将截止日期未命中率降低99.5%,严重干扰在通信和计算级别中,避免截止日期偏离70%的系统利用率。

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