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System analysis of graphics processor architecture using virtual prototyping

机译:使用虚拟样机的图形处理器体系结构的系统分析

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Abstract: Honeywell has been actively involved in the definition of the next generation display processors for military and commercial cockpits. A major concern is how to achieve super graphics workstation performance in avionics application. Most notable are requirements for low volume, low power, harsh environmental conditions, real-time performance and low cost. This paper describes the application of VHDL to the system analysis tasks associated with achieving these goals in a cost effective manner. The paper will describe the top level architecture identified to provide the graphical and video processing power needed to drive future high resolution display devices and to generate more natural panoramic 3D formats. The major discussion, however, will be on the use of VHDL to model the processing elements and customized pipelines needed to realize the architecture and for doing the complex system tradeoff studies necessary to achieve a cost effective implementation. New software tools have been developed to allow 'virtual' prototyping in the VHDL environment. This results in a hardware/software codesign using VHDL performance and functional models. This unique architectural tool allows simulation and tradeoffs within a standard and tightly integrated toolset, which eventually will be used to specify and design the entire system from the top level requirements and system performance to the lowest level individual ASICs. New processing elements, algorithms, and standard graphical inputs can be designed, tested and evaluated without the costly hardware prototyping using the innovative 'virtual' prototyping techniques which are evolving on this project. In addition, virtual prototyping of the display processor does not bind the preliminary design to point solutions as a physical prototype will. when the development schedule is known, one can extrapolate processing elements performance and design the system around the most current technology.!1
机译:摘要:霍尼韦尔一直积极参与用于军事和商业驾驶舱的下一代显示处理器的定义。一个主要的问题是如何在航空电子应用中实现超级图形工作站的性能。最值得注意的是对小体积,低功耗,恶劣的环境条件,实时性能和低成本的要求。本文介绍了将VHDL应用于与以经济有效的方式实现这些目标相关的系统分析任务的方法。本文将介绍确定的顶级架构,以提供驱动未来的高分辨率显示设备并生成更自然的全景3D格式所需的图形和视频处理能力。然而,主要的讨论将是关于使用VHDL对实现架构所需的处理元素和定制管道进行建模,以及进行实现具有成本效益的实施所必需的复杂系统折衷研究。已经开发了新的软件工具,以允许在VHDL环境中进行“虚拟”原型制作。这将导致使用VHDL性能和功能模型的硬件/软件代码签名。这种独特的架构工具允许在标准且紧密集成的工具集中进行仿真和折衷,最终将用于指定和设计从最高要求和系统性能到最低级别的单个ASIC的整个系统。利用该项目不断发展的创新“虚拟”原型技术,无需昂贵的硬件原型即可设计,测试和评估新的处理元素,算法和标准图形输入。另外,显示处理器的虚拟原型并不像物理原型那样将初步设计绑定到点解决方案。一旦知道了开发进度,就可以推断出处理元件的性能并围绕最新技术来设计系统。!1

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