2006Unpublished venueRequires access

Rapid Resource-Constrained Hardware Performance Estimation

B.K. Dwivedi, Arun Kejariwal, S. Balakrishnan, Anshul Kumar

Open publisher page 5 citations

Abstract

In a hardware-software co-design environment, an application is partitioned into modules. Each module is then mapped either to software or to hardware. The mapping process is driven by the hardware/software cost and performance parameters of each module. This makes hardware estimation important to evaluate the various candidate architectures. Lack of an efficient hardware estimation methodology and a supporting tool results in inefficient partitioning. In this paper, we present novel algorithms for clock period estimation and estimation of upper bound on execution time under given resource constraints which includes constraints on number of ports in the register file and memory. Experimental results on benchmarks from the high-level synthesis (HLS), MiBench and Media-bench suites, show the effectiveness of our algorithms

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What this paper is about

In a hardware-software co-design environment, an application is partitioned into modules. Each module is then mapped either to software or to hardware. The mapping process is driven by the hardware/software cost and performance parameters of each module. This makes hardware estimation important to evaluate the various candidate architectures. Lack of an efficient hardware estimation methodology and a supporting tool results in inefficient partitioning. In this paper, we present novel algorithms for clock period estimation and estimation of upper bound on execution time under given resource constraints which includes constraints on number of ports in the register file and memory. Experimental results on benchmarks from the high-level synthesis (HLS), MiBench and Media-bench suites, show the effectiveness of our algorithms

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In a hardware-software co-design environment, an application is partitioned into modules. Each module is then mapped either to software or to hardware. The mapping process is driven by the hardware/software cost and performance parameters of each module. This makes hardware estimation important to evaluate the various candidate architectures. Lack of an efficient hardware estimation methodology and a supporting tool results in inefficient partitioning. In this paper, we present novel algorithms for clock period estimation and estimation of upper bound on execution time under given resource constraints which includes constraints on number of ports in the register file and memory. Experimental results on benchmarks from the high-level synthesis (HLS), MiBench and Media-bench suites, show the effectiveness of our algorithms

Key concepts: Computer science, High-level synthesis, Software, Computer hardware, Embedded system, Process (computing), Register file, Resource (disambiguation)

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