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READY: Reliability- and Deadline-Aware Power-Budgeting for Heterogeneous Multicore Systems

机译:准备好:用于异构多​​核系统的可靠性和截止日期感知电源预算

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Tackling the dark silicon problem in a heterogeneous multicore system, the temperature constraints across the system should be addressed carefully by assigning a proper set of tasks to a pool of the heterogeneous cores during the run-time. When such a system is utilized in a reliable/real-time application, the reliability/timing constraints of the application should also be augmented to the temperature constraints and make the tasks mapping problem more and more complex. To solve the mapping problem in such a situation, we propose READY; an online reliability- and deadline-aware mapping and scheduling algorithm for heterogeneous multicore systems. READY utilizes an adaptive power constraint (as a metric for temperature measurement) that is updated according to the number and position of the active cores on the chip. READY, first, attempts to meet the reliability target of the system by improving the reliability of each task. Then, it performs the mapping and scheduling of the tasks on cores of different islands, so that the peak power and timing constraints are met. The simulation results illustrate that while READY guarantees the timing constraints and meets reliability targets, it improves the peak-power-aware system schedulability (chip performance) by 23.77% (up to 40.69%).
机译:在异构多核系统中解决暗硅问题,应通过将适当的任务集在运行时将适当的任务组分配给异构核的池来仔细解决这些系统的温度约束。当在可靠/实时应用中使用这样的系统时,应用程序的可靠性/时序约束也应该增强到温度约束,并使任务映射问题越来越复杂。为了解决这种情况下的映射问题,我们建议就绪;异构多核系统的在线可靠性和截止日期感知映射和调度算法。准备好利用根据芯片上的活动核心的数量和位置更新的自适应功率约束(作为温度测量的度量)。首先,准备好尝试通过提高每个任务的可靠性来满足系统的可靠性目标。然后,它执行不同岛的核的任务的映射和调度,从而满足峰值功率和定时约束。仿真结果表明,当准备就绪保证时序约束并满足可靠性目标,它将峰值功率感知系统调度性(芯片性能)提高23.77%(高达40.69%)。

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