Memory access driven storage assignment for variables in embedded system design

Yoonseo Choi, Taewhan Kim
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Abstract

It has been reported and verified in many design experiences that a judicious utilization of the page/burst access modes supported by DRAMs contributes a great reduction in not only the DRAM access latency but also DRAM's energy consumption. Recently, researchers showed that a careful arrangement of data variables in memory directly leads to a maximum utilization of the page/burst access modes for the variable accesses, but unfortunately, found that the problems are not tractable, consequently, resorting to simple (e.g., greedy) heuristic solutions to the problems. To improve the quality of existing solutions, we propose a new storage assignment technique, called zone/spl I.bar/alignment, for variables, which effectively exploits an efficient 0-1 ILP formulation and the temporal locality of variables' accesses in code.
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嵌入式系统设计中内存访问驱动的变量存储分配
许多设计经验已经证实,明智地利用DRAM支持的页/突发访问模式不仅可以大大降低DRAM的访问延迟,还可以降低DRAM的能耗。最近,研究人员表明,在内存中仔细安排数据变量直接导致最大限度地利用变量访问的页面/突发访问模式,但不幸的是,发现这个问题是不可处理的,因此,求助于简单的(例如,贪婪)启发式解决问题。为了提高现有解决方案的质量,我们提出了一种新的存储分配技术,称为zone/spl I.bar/alignment,用于变量,它有效地利用了高效的0-1 ILP公式和变量访问在代码中的时间局域性。
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