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A Reconfigurable Arithmetic Datapath Architecture

Reiner W. Hartenstein, Rainer Kress, Helmut Reinig

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Abstract

A reconfigurable data-driven arithmetic datapath architecture for ALUs is presented which may be used for custom computing machines, Xputers and other adaptable computer systems as well as for rapid prototyping of high speed datapaths. Fine grained parallelism is achieved by using simple reconfigurable processing elements which are called datapath units (DPUs). The word-oriented datapath simplifies the mapping of applications onto the architecture. Pipelining is supported by the architecture. The programming environment allows automatic mapping of the operators from high level descriptions. Two implementations, one by FPGAs and one with standard cells are shown.

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What this paper is about

A reconfigurable data-driven arithmetic datapath architecture for ALUs is presented which may be used for custom computing machines, Xputers and other adaptable computer systems as well as for rapid prototyping of high speed datapaths. Fine grained parallelism is achieved by using simple reconfigurable processing elements which are called datapath units (DPUs). The word-oriented datapath simplifies the mapping of applications onto the architecture. Pipelining is supported by the architecture. The programming environment allows automatic mapping of the operators from high level descriptions. Two implementations, one by FPGAs and one with standard cells are shown.

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Available abstract

A reconfigurable data-driven arithmetic datapath architecture for ALUs is presented which may be used for custom computing machines, Xputers and other adaptable computer systems as well as for rapid prototyping of high speed datapaths. Fine grained parallelism is achieved by using simple reconfigurable processing elements which are called datapath units (DPUs). The word-oriented datapath simplifies the mapping of applications onto the architecture. Pipelining is supported by the architecture. The programming environment allows automatic mapping of the operators from high level descriptions. Two implementations, one by FPGAs and one with standard cells are shown.

Key concepts: Datapath, Computer architecture, Computer science, Field-programmable gate array, Parallel computing, Reconfigurable computing, Architecture, Simple (philosophy)

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