Advanced POC model-based Java instruction folding mechanism

A. Kim, J. M. Chang
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引用次数: 15

Abstract

Ever since Java was introduced world wide, the execution performance has always been a problem. As one of the solutions, a bytecode instruction folding process for Java processors was developed in a PicoJava model and a Producer, Operator and Consumer (POC) model, but it could not handle certain types of instruction sequences. In this paper, a new instruction folding scheme based on a new, advanced POC model is proposed and demonstrates improvement in bytecode execution. The proposed POC model is able to detect and fold all possible instruction sequence types dynamically in hardware, including a sequence that is separated by other bytecode instructions. SPEC JMV98 benchmark results show that the proposed POC model-based folder can save more than 90% of folding operations. In addition, a design of the proposed POC model-based folding process in hardware is much smaller and more efficient than traditional folding mechanisms.
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先进的基于POC模型的Java指令折叠机制
自从Java在世界范围内被引入以来,执行性能一直是一个问题。作为解决方案之一,在PicoJava模型和生产者、操作者和消费者(POC)模型中开发了Java处理器的字节码指令折叠过程,但它不能处理某些类型的指令序列。本文提出了一种基于新的高级POC模型的指令折叠方案,并证明了字节码执行的改进。所提出的POC模型能够在硬件中动态检测和折叠所有可能的指令序列类型,包括被其他字节码指令分隔的序列。SPEC JMV98的基准测试结果表明,提出的基于POC模型的文件夹可以节省90%以上的折叠操作。此外,所提出的基于POC模型的折叠过程在硬件上的设计比传统的折叠机制更小、更高效。
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