Analysis of performance for heterogeneous multi-core processors by Hill-Marty′s deduction
Zeng Fan-tai
Abstract
Zeng Fan-tai
Abstract
By using Hill-Marty′s deduction of speed-up ratio(It does not take into the chip resources expended on shared caches,interconnection networks,and memory controllers),the structure of BCE′s distribution is obtained which make the performance of the heterogeneous multi-core more optimal than that of the homogeneous multi-core.Two cases are dsicussed: one is that the more powerful core in the heterogeneous multi-core processors and the core in the homogeneous multi-core processors are the same,and the other is that the less powerful core in the heterogeneous multi-core processors and the core in the homogeneous multi-core processors are the same.Therefore,the best design solutions of the heterogeneous multi-core can be provided.
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By using Hill-Marty′s deduction of speed-up ratio(It does not take into the chip resources expended on shared caches,interconnection networks,and memory controllers),the structure of BCE′s distribution is obtained which make the performance of the heterogeneous multi-core more optimal than that of the homogeneous multi-core.Two cases are dsicussed: one is that the more powerful core in the heterogeneous multi-core processors and the core in the homogeneous multi-core processors are the same,and the other is that the less powerful core in the heterogeneous multi-core processors and the core in the homogeneous multi-core processors are the same.Therefore,the best design solutions of the heterogeneous multi-core can be provided.
Key concepts: Core (optical fiber), Homogeneous, Computer science, Multi-core processor, Many core, Parallel computing, Interconnection, Mathematics