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mRT-PLRU: A General Framework for Real-Time Multitask Executions on NAND Flash Memory

机译:mRT-PLRU:NAND闪存上实时多任务执行的通用框架

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This paper proposes a novel technique called mRT-PLRU (Multitasking Real-Time constrained combination of Pinning and LRU), which forms a generic framework to use inexpensive nonvolatile NAND flash memory for storing and executing real-time programs in multitasking environments. In order to execute multiple real-time tasks stored in NAND flash memory with the minimal usage of expensive RAM, the mRT-PLRU is optimally configured in two steps. In the first step, the per-task analysis finds the function of RAM size versus execution time (and the corresponding optimal pinning/LRU combination) for each individual task. Using these functions for all the tasks as inputs, the second-step called a stochastic-analysis-in-loop optimization conducts an iterative convex optimization with the stochastic analysis for the probabilistic schedulability check. As a result, the optimization loop can optimally determine the RAM sizes for multiple tasks such that their deadlines are probabilistically guaranteed with the minimal size of total RAM. The usefulness of the developed technique is intensively verified through both simulation and actual implementation. Our experimental study shows that mRT-PLRU can save up to 80 percent of RAM required by the industry-common shadowing approach.
机译:本文提出了一种称为mRT-PLRU(固定和LRU的多任务实时约束组合)的新技术,该技术形成了一个通用框架,可使用廉价的非易失性NAND闪存在多任务环境中存储和执行实时程序。为了以最少的昂贵RAM使用量执行NAND闪存中存储的多个实时任务,mRT-PLRU的优化配置分两步进行。第一步,针对每个任务的分析将找到RAM大小与执行时间(以及相应的最佳固定/ LRU组合)的函数。将这些功能用于所有任务作为输入,第二步称为“循环随机分析”优化,利用随机分析进行迭代凸优化,以进行概率可调度性检查。结果,优化循环可以最佳地确定多个任务的RAM大小,从而可以用最小的总RAM大小来保证其截止日期。通过仿真和实际实施对开发技术的有效性进行了深入验证。我们的实验研究表明,mRT-PLRU可以节省多达80%的业界常见阴影方法所需的RAM。

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