2004Unpublished venueRequires access

Simultaneous delay and power optimization in global placement

Mongkol Ekpanyapong, Karthik Balakrishnan, Vidit Nanda, Sung Kyu Lim

Open publisher page 1 citations

Abstract

Delay and power minimization are two important objectives in the current circuit designs. Retiming is a very effective way for delay optimization for sequential circuits. In this paper we propose a framework for multi-level global placement with retiming, targeting simultaneous delay and power optimization. We propose GEO-P for power optimization and GEO-PD algorithm for simultaneous delay and power optimization and provide smooth wirelength, power and delay tradeoff. In GEO-PD, we use retiming based timing analysis and visible power analysis to identify timing and power critical nets and assign proper weights to them to guide the multi-level optimization process. We show an effective way to translate the timing and power analysis results from the original netlist to a coarsened subnetlist for effective multi-level delay and power optimization. Our GEO-P achieves 27% average power improvement and our GEO-PD provides gains in both delay and power improvement. To the best of our knowledge, this is the first paper addressing simultaneous delay and power optimization in multi-level global placement.

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What this paper is about

Delay and power minimization are two important objectives in the current circuit designs. Retiming is a very effective way for delay optimization for sequential circuits. In this paper we propose a framework for multi-level global placement with retiming, targeting simultaneous delay and power optimization. We propose GEO-P for power optimization and GEO-PD algorithm for simultaneous delay and power optimization and provide smooth wirelength, power and delay tradeoff. In GEO-PD, we use retiming based timing analysis and visible power analysis to identify timing and power critical nets and assign proper weights to them to guide the multi-level optimization process. We show an effective way to translate the timing and power analysis results from the original netlist to a coarsened subnetlist for effective multi-level delay and power optimization. Our GEO-P achieves 27% average power improvement and our GEO-PD provides gains in both delay and power improvement. To the best of our knowledge, this is the first paper addressing simultaneous delay and power optimization in multi-level global placement.

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Available abstract

Delay and power minimization are two important objectives in the current circuit designs. Retiming is a very effective way for delay optimization for sequential circuits. In this paper we propose a framework for multi-level global placement with retiming, targeting simultaneous delay and power optimization. We propose GEO-P for power optimization and GEO-PD algorithm for simultaneous delay and power optimization and provide smooth wirelength, power and delay tradeoff. In GEO-PD, we use retiming based timing analysis and visible power analysis to identify timing and power critical nets and assign proper weights to them to guide the multi-level optimization process. We show an effective way to translate the timing and power analysis results from the original netlist to a coarsened subnetlist for effective multi-level delay and power optimization. Our GEO-P achieves 27% average power improvement and our GEO-PD provides gains in both delay and power improvement. To the best of our knowledge, this is the first paper addressing simultaneous delay and power optimization in multi-level global placement.

Key concepts: Retiming, Netlist, Power optimization, Computer science, Power (physics), Elmore delay, Delay calculation, Minification

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