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Schedulability Analysis of Global Scheduling for Multicore Systems With Shared Caches

机译:共享缓存的多核系统全局调度的调度分析

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Shared caches in multicore processors introduce serious difficulties in providing guarantees on the real-time properties of embedded software due to the interaction and the resulting contention in the shared caches. To address this problem, we develop a new schedulability analysis for real-time multicore systems with shared caches, globally scheduled by Earliest Deadline First (EDF) and Fixed Priority (FP) algorithms. We construct an integer programming formulation, which can be transformed to an integer linear programming formulation, to calculate an upper bound on cache interference exhibited by a task within a given execution window. Using the integer programming formulation, an iterative algorithm is presented to obtain the upper bound on cache interference a task may exhibit during one job execution. The upper bound on cache interference is subsequently integrated into the schedulability analysis to derive a new schedulability condition. A range of experiments is performed to investigate how the schedulability is degraded by shared cache interference. We also evaluate the schedulability performance of EDF against FP scheduling over randomly generated tasksets. Our empirical evaluations show that EDF is better than FP scheduling in terms of the number of task sets deemed schedulable.
机译:多核处理器中的共享缓存在为共享缓存中的交互和产生的争用引起的嵌入式软件的实时属性提供了严重困难。为了解决这个问题,我们为具有共享缓存的实时多核系统开发了新的调度分析,以共享缓存,由最早的截止日期(EDF)和固定优先级(FP)算法全球计划。我们构造一个整数编程制剂,可以将其转换为整数线性编程制定,以计算由给定执行窗口内的任务呈现的高速缓存干扰的上限。使用整数编程配方,呈现迭代算法以获得高速缓存干扰的上限A任务在一个作业执行期间可以呈现。随后将缓存干扰的上限集成到调度分析中以导出新的调度性条件。执行一系列实验以研究如何通过共享缓存干扰降低调度性。我们还评估EDF对随机生成的Tasksets的FP调度的调度性能。我们的实证评估表明,EDF在视为定期的任务集的数量方面优于FP调度。

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