Cache coherence tradeoffs in shared-memory MPSoCs

Author:

Loghi Mirko1,Poncino Massimo2,Benini Luca3

Affiliation:

1. Università di Verona, Verona, Italy

2. Politecnico di Torino, Torino, Italy

3. Università di Bologna, Bologna, Italy

Abstract

Shared memory is a common interprocessor communication paradigm for single-chip multiprocessor platforms. Snoop-based cache coherence is a very successful technique that provides a clean shared-memory programming abstraction in general-purpose chip multiprocessors, but there is no consensus on its usage in resource-constrained multiprocessor systems on chips (MPSoCs) for embedded applications. This work aims at providing a comparative energy and performance analysis of cache-coherence support schemes in MPSoCs. Thanks to the use of a complete multiprocessor simulation platform, which relies on accurate technology-homogeneous power models, we were able to explore different cache-coherent shared-memory communication schemes for a number of cache configurations and workloads.

Publisher

Association for Computing Machinery (ACM)

Subject

Hardware and Architecture,Software

Reference31 articles.

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3. ARM11 MPCore. http://www.arm.com/products/CPUs/ARM11MPCoreMultiprocessor.html. ARM11 MPCore. http://www.arm.com/products/CPUs/ARM11MPCoreMultiprocessor.html.

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