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Dynamic Sharing of On-Chip Scratchpad Memory on Embedded Platforms

机译:嵌入式平台上片上暂存器的动态共享

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As more and more functions are integrated on a System-On-Chip (SoC), the number of on-chip peripherals is increasing sharply. Most of these peripheral functions use an internal scratchpad memory for temporary storage of data. Hence, the area and power penalty due to a large number of these scratchpad memories distributed across the die is significant. This paper proposes a centralized scratchpad memory architecture which can be used by different peripherals in a SoC on need basis. Since the use cases on embedded platforms do not require usage of all peripherals simultaneously, the memory footprint in a shared configuration is considerably less compared to cumulative memory of individual modules. Each peripheral has to request for allocation of a chunk of memory for read-write operations. Finally, the peripheral releases the memory after its usage is complete. This paper discusses the micro-architectural details of the memory controller including the several integration challenges. We have shown that such a centralized scheme significantly reduces the area and leakage power consumption of scratchpad memories in several network processor SoCs ranging from 20% to 60%.
机译:随着越来越多的功能集成到片上系统(SoC)中,片上外设的数量急剧增加。这些外围功能大多数都使用内部暂存器存储器临时存储数据。因此,由于大量的这些暂存器存储器分布在管芯上而导致的面积和功率损失是显着的。本文提出了一种集中式暂存器存储架构,该架构可根据需要由SoC中的不同外设使用。由于嵌入式平台上的用例不需要同时使用所有外围设备,因此与单个模块的累积内存相比,共享配置中的内存占用量要少得多。每个外围设备都必须请求分配一块内存以进行读写操作。最后,外围设备使用完毕后释放内存。本文讨论了存储器控制器的微体系结构细节,包括一些集成挑战。我们已经表明,这种集中式方案显着减少了多个网络处理器SoC中暂存器存储器的面积和泄漏功耗,其范围从20%到60%不等。

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