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Non-preemptive demand paging technique for NAND flash-based real-time embedded systems

机译:基于NAND闪存的实时嵌入式系统的非抢占式需求寻呼技术

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摘要

NAND flash memory is utilized as code storage as well as for file system storage in consumer electronics. The demand paging technique for NAND flash code storage can reduce the required main memory space. However, in realtime systems, demand paging may invoke several problems, one such example is unpredictable timing behavior. Moreover, when NAND flash memory is used for both code storage and file system storage, the resource conflict issue needs to be resolved to allow for simultaneous accesses of demand paging and file system requests. This paper addresses several practical problems of NAND flash-based demand paging in real-time embedded systems and proposes a non-preemptive demand paging technique to resolve the resource conflict within non-preemptive critical sections. Experiments on a real mobile phone platform show that the proposed demand paging requires no significant overhead1.
机译:NAND闪存被用作代码存储以及消费电子产品中的文件系统存储。 NAND闪存代码存储的按需分页技术可以减少所需的主存储空间。但是,在实时系统中,需求分页可能会引发多个问题,一个这样的示例就是不可预测的计时行为。此外,当将NAND闪存用于代码存储和文件系统存储时,需要解决资源冲突问题,以允许同时访问需求分页和文件系统请求。本文解决了实时嵌入式系统中基于NAND闪存的需求分页的一些实际问题,并提出了一种非抢先的需求分页技术来解决非抢先的关键部分中的资源冲突。在真实手机平台上进行的实验表明,提出的需求寻呼不需要大量的开销1。

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