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SESAME-P: Memory Pool-Based Dynamic Stack Management for Sensor OperatingSystems

机译:SESAME-P:用于传感器操作系统的基于内存池的动态堆栈管理

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In wireless sensor networks, each sensor node has very small memory space compared with any other embedded computing systems. For this reason, operating systems running on the sensor nodes cannot allocate sufficient fixed-size stack space for all threads. In the previous work, SESAME was proposed to allocate stack space more space-efficiently, but there is a problem of time overhead. In this paper, we present SESAME-P, which is a dynamic stack allocation scheme based on memory pool. The size of memory pool is predetermined by using static analysis of each function's stack usage information. Using the determined memory pool, SESAME-P reduces the dynamic stack allocation cost. Our experimental results show that SESAME-P significantly reduces the time overhead compared with the existing SESAME.
机译:在无线传感器网络中,与任何其他嵌入式计算系统相比,每个传感器节点的存储空间都非常小。因此,在传感器节点上运行的操作系统无法为所有线程分配足够的固定大小的堆栈空间。在先前的工作中,提出了SESAME来更有效地分配堆栈空间,但是存在时间开销的问题。在本文中,我们提出了SESAME-P,它是一种基于内存池的动态堆栈分配方案。通过对每个函数的堆栈使用信息进行静态分析,可以预先确定内存池的大小。使用确定的内存池,SESAME-P减少了动态堆栈分配成本。我们的实验结果表明,与现有的SESAME相比,SESAME-P大大减少了时间开销。

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