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首页> 外文期刊>Journal of signal processing systems for signal, image, and video technology >Designs of Low Power Snoop for Multiprocessor System on Chip
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Designs of Low Power Snoop for Multiprocessor System on Chip

机译:多处理器片上系统的低功耗探听设计

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In multiprocessor system on chip, processors can access expectable shared data by using snoop protocol in different time. However, this design will generate a large number of snoops to consume unnecessary energy. The main objective of the paper is to reduce the number of snoops of the multiprocessor system by using an energy-saving architecture. The proposed method includes two designs: 1) snoop turning point design and 2) snoop buffer design. In the first design, a main key defined as the critical section in which the data accessed synchronously by multiple processors is presented. When the data in critical section are accessed by a processor, the critical section will be locked immediately such that other processors cannot access the data. Because the critical section processors have not common accessing data with the other processors, all snoops are removed after snooping turning point. In the second design, we add buffers to the caches and shared buses to label the number of common data processors. Using the design, only the processors labeled in buffers need to be snooped. The experimental results are shown that the proposed designs can achieve the purpose of energy saving.
机译:在片上多处理器系统中,处理器可以通过使用侦听协议在不同时间访问期望的共享数据。但是,这种设计会产生大量的窥探以消耗不必要的能量。本文的主要目的是通过使用节能架构来减少多处理器系统的监听数量。所提出的方法包括两种设计:1)探听转折点设计和2)探听缓冲器设计。在第一种设计中,提供了一个定义为关键部分的主键,其中多个处理器同步访问数据。当关键部分中的数据被处理器访问时,关键部分将立即被锁定,以使其他处理器无法访问该数据。由于关键部分处理器无法与其他处理器共同访问数据,因此在侦听转折点后将删除所有侦听。在第二种设计中,我们向高速缓存和共享总线添加缓冲区以标记公共数据处理器的数量。使用该设计,只需侦听缓冲区中标记的处理器。实验结果表明,所提出的设计可以达到节能的目的。

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