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Performance and Energy Trade-offs Analysis of L2 on-Chip Cache Architectures for Embedded MPSoCs

机译:嵌入式MPSOC的L2片上缓存架构的性能和能量折衷分析

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On-chip memory organization is one of the most important aspects that can influence the overall system behavior in multiprocessor systems. Following the trend set by high-performance processors, high-end embedded cores are moving from single-level on chip caches to a two-level on-chip cache hierarchy. Whereas in the embedded world there is general consensus on L1 private caches, for L2 there is still not a dominant architectural paradigm. Cache architectures that work for high performance computers turn out to be inefficient for embedded systems (mainly due to power-efficiency issues). This paper presents a virtual platform for design space exploration of L2 cache architectures in low-power Multi-Processor-Systems-on-Chip (MPSoCs). The tool contains several L2 caches templates, and new architectures can be easily added using our flexible plug-in system. Given a set of constrains for a specific system (power, area, performance), our tool will perform extensive exploration to find the cache organization that best suits our needs. Through some practical experiments, we show how it is possible to select the optimal L2 cache, and how this kind of tool can help designers avoid some common misconceptions. Benchmarking results in the experiments section will show that for a case study with multiple processors running communicating tasks allocated on different cores, the private L2 cache organization still performs better than the shared one.
机译:片上内存组织是可以影响多处理器系统中整体系统行为的最重要方面之一。遵循高性能处理器的趋势,高端嵌入核心从芯片缓存的单级移动到两级片上缓存层次结构。虽然在嵌入式世界中,L1私人高速缓存有一般共识,但对于L2仍然没有主导的建筑范式。用于高性能计算机的缓存架构,嵌入式系统的工作效率低下(主要是由于电力效率问题)。本文介绍了低功耗多处理器系统(MPSOC)中L2缓存架构设计空间探索的虚拟平台。该工具包含几个L2缓存模板,可以使用我们的灵活插件系统轻松添加新架构。给定针对特定系统的约束(电源,区域,性能),我们的工具将执行广泛的探索,以找到最适合我们需求的缓存组织。通过一些实际实验,我们展示了如何选择最佳L2缓存,以及这种工具如何帮助设计人员避免一些常见的误解。实验部分的基准测试结果将显示,对于运行在不同核心分配的传送任务的多个处理器的案例研究,私有L2缓存组织仍然比共享更好。

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