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An Interactive Approach to Timing Accurate PCI-X Simulation

机译:定时精确PCI-X模拟的交互式方法

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To date, most system-level bus simulation platforms have focused on the functional correctness of individual bus components rather than the full system-level evaluation of multiple components operating simultaneously. In this paper, a new scalable system-level bus simulation environment is described which allows for the evaluation of the PCI-X bus and a series of components. This simulation environment takes advantage of the tight integration of timing-accurate simulation of PCI hardware components with software-level functional modeling to create a fast, accurate system. A series of software techniques is used to allow for time step synchronization across multiple bus components and bus recovery following a transaction. A graphical user interface allows designers to add new components to the system easily, enhancing modularity. The accuracy of the new simulation environment has been validated for a collection of candidate PCI-X systems using an in-circuit PCI-X emulator. The new simulation environment is shown to be accurate to within a percent error of 0.95%, 3.79%, and 2.78% for utilization, efficiency, and bandwidth, respectively.
机译:迄今为止,大多数系统级总线仿真平台专注于单个总线组件的功能正确性,而不是同时操作多个组件的全系统级评估。在本文中,描述了一种新的可扩展系统级总线仿真环境,其允许评估PCI-X总线和一系列组件。该仿真环境利用了与软件级功能建模的PCI硬件组件的时序准确模拟的紧密集成,以创建快速,准确的系统。一系列软件技术用于允许在事务之后跨多个总线组件和总线恢复的时间步长。图形用户界面允许设计人员轻松添加新组件,增强模块化。使用IN--CIC PCI-X仿真器的候选PCI-X系统的集合验证了新模拟环境的准确性。新的仿真环境显示在0.95%,3.79%和2.78%的百分比内准确,分别用于利用,效率和带宽。

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