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Design Methodology and Run-Time Management for Predictable Many-Core Systems

机译:可预测的多核系统的设计方法和运行时管理

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摘要

Many-core systems provide a feasible means to build high-performance multi-application systems. They are increasingly exposed to dynamic changes due to varying and online modified application mixes, as well as unavailability of hardware resources due to thermal and power management or faults. Particularly, when applications with real-time requirements are executed, these constraints may become a problem. Here, self-adaptive mechanisms are a means to optimally and feasibly manage such a system at run-time. This paper gives an overview of a design flow for hybrid application mapping for predictable many-core systems. The idea behind this concept is to perform a complex timing analysis and verification of an application during design time and then exploit this information for RM of the system. We propose a novel optimization algorithm to perform RM, which statically calculates a set of application mappings that are guaranteed to fulfill real-time requirements while heuristically optimizing the system objectives. Here, minimization of the energy consumption is exemplary chosen. The algorithm achieves significantly better results than a state-of-the-art approach, especially for systems with a high resource congestion.
机译:多核系统提供了构建高性能多应用系统的可行方法。由于不断变化的和在线修改的应用程序组合,以及由于热和电源管理或故障而导致的硬件资源不可用,它们越来越暴露于动态变化。特别是,在执行具有实时要求的应用程序时,这些约束可能会成为问题。在这里,自适应机制是一种在运行时最佳,可行地管理此类系统的手段。本文概述了可预测的多核系统的混合应用程序映射的设计流程。该概念背后的思想是在设计时对应用程序执行复杂的时序分析和验证,然后将该信息用于系统的RM。我们提出了一种新颖的用于执行RM的优化算法,该算法静态地计算出一组应用程序映射,这些映射可以保证在满足启发式优化系统目标的同时满足实时要求。在此,示例性地选择能量消耗的最小化。与最先进的方法相比,该算法可获得明显更好的结果,尤其是对于资源拥挤程度较高的系统而言。

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