2014Unpublished venueRequires access

Multi-objective aware design flow for coarse-grained systems on chip

Peng Chen, Chao Wang, Xi Li, Xuehai Zhou

Open publisher page 0 citations

Abstract

This paper presents a software and hardware co-design flow for the coarse-grained systems on chip. It enables a multi-target design space exploration (MT-DSE) algorithm with multiple objectives such as chip area utilization, energy consumption, core efficiency, interconnection structure, application workload and speedup aware. With the help of the MT-DSE tool, the proposed design flow can supply a valuable assistance for architecture designers to develop a well trade-off multi-processor system. In contrast, most of state-of-the-art design space exploration tools rely on varieties of simulations or implementations that are quite time-consuming. Benefit from no such dependences, the MT-DSE method could turn out the optimized alternative very fast with multiple factors balanced. Besides, the tool is employed at a very early stage in the component based systems design and only needs a little profiling information which can greatly reduce the development term of the design. As an illustration, the JPEG compression algorithm is chosen to demonstrate how the tool exploits a given application and guides to build the most desired architecture.

About this research paper

What this paper is about

This paper presents a software and hardware co-design flow for the coarse-grained systems on chip. It enables a multi-target design space exploration (MT-DSE) algorithm with multiple objectives such as chip area utilization, energy consumption, core efficiency, interconnection structure, application workload and speedup aware. With the help of the MT-DSE tool, the proposed design flow can supply a valuable assistance for architecture designers to develop a well trade-off multi-processor system. In contrast, most of state-of-the-art design space exploration tools rely on varieties of simulations or implementations that are quite time-consuming. Benefit from no such dependences, the MT-DSE method could turn out the optimized alternative very fast with multiple factors balanced. Besides, the tool is employed at a very early stage in the component based systems design and only needs a little profiling information which can greatly reduce the development term of the design. As an illustration, the JPEG compression algorithm is chosen to demonstrate how the tool exploits a given application and guides to build the most desired architecture.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

This paper presents a software and hardware co-design flow for the coarse-grained systems on chip. It enables a multi-target design space exploration (MT-DSE) algorithm with multiple objectives such as chip area utilization, energy consumption, core efficiency, interconnection structure, application workload and speedup aware. With the help of the MT-DSE tool, the proposed design flow can supply a valuable assistance for architecture designers to develop a well trade-off multi-processor system. In contrast, most of state-of-the-art design space exploration tools rely on varieties of simulations or implementations that are quite time-consuming. Benefit from no such dependences, the MT-DSE method could turn out the optimized alternative very fast with multiple factors balanced. Besides, the tool is employed at a very early stage in the component based systems design and only needs a little profiling information which can greatly reduce the development term of the design. As an illustration, the JPEG compression algorithm is chosen to demonstrate how the tool exploits a given application and guides to build the most desired architecture.

Key concepts: Design flow, Design space exploration, Computer science, System on a chip, Speedup, Workload, Embedded system, Exploit

Related papers

Back to paper searchBrowse research topicsOriginal source
Multi-objective aware design flow for coarse-grained systems on chip — Research Paper | ScholarLens