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A scrubbing scheduling approach for reliable FPGA multicore processors with real-time constraints

机译:具有实时约束的可靠FPGA多核处理器的擦洗调度方法

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Typical fault tolerance techniques for FPGA processors against soft errors combine h/w redundancy for fault detection along with checkpointing/rollback for fault recovery and scrubbing for fault repair. However, to avoid the overheads imposed by redundancy schemes, the readback scrubbing can be used as a standalone solution for both fault detection and repair. Since checkpointing and scrubbing affect the execution time of system tasks, the temporal robustness of systems with real-time constraints protected by these two mechanisms must be addressed. In this paper, we study for first time the scheduling of scrubbing task in multicore processors, given that the scrubbing task consists of several jobs each one checking the partial configuration memory occupied by a specific core. We assume real-time multitask applications executed by a multicore processor using the non-preemptive Early Deadline First (EDF) algorithm and propose a scrubbing scheduling approach, based on a modified version of the EDF algorithm, that improves the real-time system tolerance against transient faults. We demonstrate the efficiency of the proposed approach running a large number of simulations with random task sets on a dual and a quad-core processor.
机译:FPGA处理器对软误差的典型容错技术将H / W冗余与故障检测相关的H / W冗余,以及用于故障恢复和擦洗故障修复的检查点/回滚。但是,为了避免冗余方案施加的开销,返回擦洗可用作故障检测和修复的独立解决方案。由于检查点和擦洗影响系统任务的执行时间,因此必须解决具有这两个机制保护的实时约束的系统的时间稳健性。在本文中,我们首次学习了多核处理器中的擦洗任务的调度,因为擦洗任务包括几个作业,每个作业检查特定核心占用的部分配置内存。我们假设使用非抢占早期截止日期第一(EDF)算法的多核处理器执行的实时多任务应用程序,并提出了一种基于EDF算法的修改版本的擦洗调度方法,从而提高了对抗的实时系统容差瞬态缺点。我们展示了在双核和四核处理器上使用随机任务集运行大量模拟的提出方法的效率。

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