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Placement of Linked Dynamic Data Structures over Heterogeneous Memories in Embedded Systems

机译:嵌入式系统中链接动态数据结构在异构内存上的放置

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摘要

Software applications use dynamic memory (allocated and deallocated in the system's heap) to handle dynamism in their working conditions. Embedded systems tend to include complex memory organizations but most techniques for dynamic memory management do not deal with the placement of data objects in physical memory modules. Additionally, the performance of hardware-controlled cache memories may be severely hindered when used with linked data structures. We therefore present a methodology to map dynamic data on the multilevel memory subsystem of embedded systems, taking advantage of any available memories (e.g., on-chip SRAMs) and avoiding interference with the cache memories. The resulting data placement uses an exclusive memory model and is compatible with existing techniques for managing static data. Our methodology helps the designer achieve reductions in energy consumption and execution time that can be obtained by an expert in an automated way while keeping control over the process through multiple configuration knobs.
机译:软件应用程序使用动态内存(在系统堆中已分配和释放)来处理其工作状况中的动态性。嵌入式系统倾向于包括复杂的内存组织,但是大多数用于动态内存管理的技术并不处理物理内存模块中数据对象的放置。另外,与链接数据结构一起使用时,可能会严重阻碍硬件控制的高速缓存存储器的性能。因此,我们提出一种方法,以利用任何可用的存储器(例如,片上SRAM)并避免对高速缓冲存储器的干扰,来在嵌入式系统的多级存储器子系统上映射动态数据。生成的数据放置使用专有的内存模型,并且与用于管理静态数据的现有技术兼容。我们的方法论可帮助设计人员减少能耗和缩短执行时间,这可以由专家以自动化的方式实现,同时通过多个配置旋钮保持对过程的控制。

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