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Synthesis of partitioned shared memory architectures for energy-sufficient multi-processor SoC

机译:用于能量 - 足够多处理器SOC的分区共享内存架构的综合

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Accesses to the shared memory in multi-processor systems-on-chip represent a significant performance bottleneck. Multi-port memories are a common solution to this problem, because they allow parallel accesses. However, they are not an energy-efficient solution. We propose an energy-efficient shared-memory architecture that can be used as a substitute for multi-port memories, which is based on an application-driven partitioning of the shared address space into a multi-bank architecture. Experiments on a set of parallel benchmarks show energy savings of about 56% with respect to a dual-port memory architecture, at a very limited performance penalty.
机译:访问多处理器系统中的共享内存,代表了显着的性能瓶颈。多端口存储器是解决此问题的常见解决方案,因为它们允许并行访问。但是,它们不是节能的解决方案。我们提出了一种节能的共享内存架构,可以用作多端口存储器的替代,这是基于共享地址空间的应用程序驱动分区到多银行架构中。在一系列并行基准上的实验显示,在一个非常有限的性能损失,在双端口内存架构方面显示节能约56%。

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