2005Proceedings of the ASP-DAC 2005. Asia and South Pacific Design Automation Conference, 2005.Requires access

A new register file access architecture for software pipelining in VLIW processors

Yanjun Zhang, Hu He, Yihe Sun

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Abstract

This paper presents a novel architecture of register files that combines the local register files and the global register file for clustered VLIW (very long instruction word) processors. The communication between function units through global register file will be more efficient. The concept of associate register is introduced for this architecture. This makes it possible to write a result to two destination registers in one operation, which can efficiently speed up the software pipelining.

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What this paper is about

This paper presents a novel architecture of register files that combines the local register files and the global register file for clustered VLIW (very long instruction word) processors. The communication between function units through global register file will be more efficient. The concept of associate register is introduced for this architecture. This makes it possible to write a result to two destination registers in one operation, which can efficiently speed up the software pipelining.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents a novel architecture of register files that combines the local register files and the global register file for clustered VLIW (very long instruction word) processors. The communication between function units through global register file will be more efficient. The concept of associate register is introduced for this architecture. This makes it possible to write a result to two destination registers in one operation, which can efficiently speed up the software pipelining.

Key concepts: Register file, Very long instruction word, Computer science, Processor register, Software pipelining, Register (sociolinguistics), Register allocation, Parallel computing

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