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Low-Power Snoop Architecture for Synchronized Producer-Consumer Embedded Multiprocessing

机译:同步生产者-消费者嵌入式多处理的低功耗探听架构

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We introduce a cross-layer customization methodology where application knowledge regarding data sharing in producer-consumer relationships is used in order to aggressively eliminate unnecessary and predictable snoop-induced cache lookups even for references to shared data, thus, achieving significant power reductions with minimal hardware cost. The technique exploits application-specific information regarding the exact producer-consumer relationships between tasks as well as information regarding the precise timing of synchronized accesses to shared memory buffers by their corresponding producers and/or consumers. Snoop-induced cache lookups for accesses to the shared data are eliminated when it is ensured that such lookups will not result in extra knowledge regarding the cache state in respect to the other caches and the memory. Our experiments show average power reductions of more than 80% compared to a general-purpose snoop protocol.
机译:我们引入了一种跨层定制方法,其中使用了有关生产者-消费者关系中的数据共享的应用程序知识,以主动消除不必要的和可预测的探听诱发的缓存查找,甚至对于引用共享数据也是如此,从而以最少的硬件实现了显着的功耗降低成本。该技术利用有关任务之间确切的生产者-消费者关系的特定于应用程序的信息,以及有关它们的相应生产者和/或消费者对共享内存缓冲区进行同步访问的精确定时的信息。当确保此类查询不会导致有关其他缓存和内存的缓存状态方面的额外知识时,就可以消除因侦听而导致的访问共享数据的缓存查找。我们的实验表明,与通用监听协议相比,平均功耗降低了80%以上。

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