高性能Java处理器的软硬件集成设计

A. Fong, C. Yau, Yijun Liu
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引用次数: 3

摘要

由于Internet和网络计算以及资源共享的需要,面向对象编程(OOP)正变得越来越流行。Java之所以具有吸引力,是因为它具有平台独立性和代码可重用性等吸引人的特性。然而,由于Java虚拟机(JVM)层的实时执行开销,Java的性能低于传统编程语言。虽然通过更高的时钟速度或多核来提高性能,但仍然需要在操作系统之上运行软件虚拟机来执行Java,从而降低了硬件性能改进的影响。本研究提出一种混合系统协同设计的高性能Java处理计算机体系结构。我们的FPGA模型在VHDL, jHISC中实现,为面向对象字节码,对象引用和方法调用提供了硬件支持。此外,开发了基线编译器来构造核心结构并确保体系结构与JVM规范兼容。该项目目前的版本是第4版,它的目标是移动和嵌入式计算。通过基于SPEC JVM98基准测试的评估,与Sun Microsystems的产品相比,jHISC V4.0比HotSpot JVM提供了约137%的整体性能提升,比picoJava II提供了102%至1351%的整体性能提升。
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A Hardware-Software Integrated Design for a High-Performance Java Processor
Today object-oriented programming (OOP) is becoming more and more popular than ever, due to Internet and network computing, and need for resource sharing. Java becomes attractive because of its appealing features such as platform independence and code reusability. However, Java has lower performance than conventional programming languages due to its real-time execution overheads in the layer of Java Virtual Machine (JVM). With increasing performance through higher clock speed or multi-cores, software virtual machines are still needed to run on top of the operating system to execute Java, reducing the effect of the hardware performance improvements. This research proposes a high-performance computer architecture with hybrid system co-design for Java processing. Our FPGA model implemented in VHDL, jHISC, originates hardware support for object-oriented bytecodes, object referencing and method invocation. Moreover, baseline compiler is developed to construct the core structure and to ensure the architecture compatible to the JVM specifications. The project is at present version 4, which is target for mobile and embedded computing. Comparing with the products by Sun Microsystems through evaluation based on SPEC JVM98 benchmark, jHISC V4.0 provide overall performance gain of around 137% over HotSpot JVM and 102% to 1351% over picoJava II.
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