2002Unpublished venueRequires access

HLS based DSP optimization with ASIC RTL libraries

Jouni Isoaho, Johnny Öberg, Ahmed Hemani, Hannu Tenhunen

Open publisher page 4 citations

Abstract

In this paper we show how the High Level Synthesis (HLS) tool can efficiently be used for DSP ASIC development. The performance of general HLS tool is improved with simple transformations and code optimizations, and a direct mapping to technology optimized parameterizable ASIC Register Transfer Level (RTL) library. The library mapping contains three phases: a structure recognition, an architecture selection and a parameter optimization. As an optimization framework SYNT, Synopsys and Matlab design environments are integrated. Lsi10k and Xilinx 4000 series are used as target technologies to demonstrate the performance of the approach.

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What this paper is about

In this paper we show how the High Level Synthesis (HLS) tool can efficiently be used for DSP ASIC development. The performance of general HLS tool is improved with simple transformations and code optimizations, and a direct mapping to technology optimized parameterizable ASIC Register Transfer Level (RTL) library. The library mapping contains three phases: a structure recognition, an architecture selection and a parameter optimization. As an optimization framework SYNT, Synopsys and Matlab design environments are integrated. Lsi10k and Xilinx 4000 series are used as target technologies to demonstrate the performance of the approach.

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Available abstract

In this paper we show how the High Level Synthesis (HLS) tool can efficiently be used for DSP ASIC development. The performance of general HLS tool is improved with simple transformations and code optimizations, and a direct mapping to technology optimized parameterizable ASIC Register Transfer Level (RTL) library. The library mapping contains three phases: a structure recognition, an architecture selection and a parameter optimization. As an optimization framework SYNT, Synopsys and Matlab design environments are integrated. Lsi10k and Xilinx 4000 series are used as target technologies to demonstrate the performance of the approach.

Key concepts: Application-specific integrated circuit, Computer science, High-level synthesis, Computer architecture, Digital signal processing, Embedded system, Program optimization, Register-transfer level

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