2004Unpublished venueRequires access

Energy-Optimal Integrated VLIW Code Generation

Andrzej Bednarski, Christoph Keßler

Open publisher page 7 citations

Abstract

Optimal integrated code generation is a challenge in terms of problem complexity, but it provides important feedback for the resource-efficient design of embedded systems and is a valuable tool for the assessment of fast heuristics for code generation. We present a method for energy optimal integrated code generation for generic VLIW processor architectures that allows to explore trade-offs between energy consumption and execution time. 1

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What this paper is about

Optimal integrated code generation is a challenge in terms of problem complexity, but it provides important feedback for the resource-efficient design of embedded systems and is a valuable tool for the assessment of fast heuristics for code generation. We present a method for energy optimal integrated code generation for generic VLIW processor architectures that allows to explore trade-offs between energy consumption and execution time. 1

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Optimal integrated code generation is a challenge in terms of problem complexity, but it provides important feedback for the resource-efficient design of embedded systems and is a valuable tool for the assessment of fast heuristics for code generation. We present a method for energy optimal integrated code generation for generic VLIW processor architectures that allows to explore trade-offs between energy consumption and execution time. 1

Key concepts: Very long instruction word, Computer science, Code generation, Code (set theory), Heuristics, Energy consumption, Embedded system, Efficient energy use

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