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    • 2. 发明申请
    • Dynamic software performance models
    • 动态软件性能模型
    • US20070239766A1
    • 2007-10-11
    • US11394474
    • 2006-03-31
    • Efstathios PapaefstathiouJohn OslakeJonathan HardwickPavel Dournov
    • Efstathios PapaefstathiouJohn OslakeJonathan HardwickPavel Dournov
    • G06F7/00
    • G06Q10/04
    • Simulating an application. A method that may be practiced in a computing environment configured for simulating an application modeled by an application model deployed in a performance scenario of a computing system by deploying service models of the application model to device models modeling devices. The method includes referencing a performance scenario to obtain a transaction being modeled as originating from a first device model. The transaction invokes of a first service model. The first service model specifies hardware actions for simulation. The first service model is referenced to determine the hardware actions for simulation and the next referenced service. The next referenced service specifies hardware actions to be added to the transaction and may specify invocation of other service models. A chain of hardware actions is generated by following the invocation path of the service models. The hardware actions are applied to device models to simulate the transaction.
    • 模拟应用程序 可以在计算环境中实践的方法,其被配置为通过将应用模型的服务模型部署到设备模型建模设备来模拟由部署在计算系统的性能场景中的应用模型建模的应用。 该方法包括引用性能场景以获得被建模为源自第一设备模型的事务。 事务调用第一个服务模型。 第一个服务模型指定了模拟的硬件操作。 引用第一个服务模型来确定模拟和下一个参考服务的硬件操作。 下一个引用的服务指定要添加到事务的硬件操作,并且可以指定调用其他服务模型。 通过遵循服务模型的调用路径生成硬链接操作链。 硬件操作应用于设备模型以模拟事务。
    • 3. 发明申请
    • Generating static performance modeling factors in a deployed system
    • 在部署的系统中生成静态性能建模因子
    • US20060288149A1
    • 2006-12-21
    • US11154090
    • 2005-06-15
    • Glenn LaVigneEfstathios PapaefstathiouJonathan HardwickQuanzhan ZhengRebecca IsaacsPaul Barham
    • Glenn LaVigneEfstathios PapaefstathiouJonathan HardwickQuanzhan ZhengRebecca IsaacsPaul Barham
    • G06F13/36
    • G06Q10/10
    • A computing system for determining performance factors for using in performance modeling of a deployed subject system, is presented. The computing system includes a plurality of software components comprising the subject system. Each of the components is susceptible to event tracing while executing on the computing system. The computing system includes a tracing component. The tracing component is configured to trace events of the components of the subject system as they execute. The computing system includes a transaction identification table. The transaction identification table comprises starting and ending actions for transactions performed by the subject system. The computing system also includes a transaction identification component that identifies actions from traced events, identifies related actions corresponding to a transaction according to the starting and ending actions in the transaction identification table, and stores the related actions in the transaction workflow data store.
    • 提出了一种用于确定在部署的主题系统的性能建模中使用的性能因素的计算系统。 计算系统包括多个包括该对象系统的软件组件。 在计算系统上执行时,每个组件都容易进行事件跟踪。 计算系统包括跟踪组件。 跟踪组件被配置为跟踪主体系统的组件在执行时的事件。 计算系统包括事务识别表。 交易识别表包括由主题系统执行的交易的开始和结束动作。 计算系统还包括识别跟踪事件的动作的事务识别组件,根据事务识别表中的起始和结束动作识别与事务相对应的相关动作,并将相关动作存储在事务工作流数据存储中。
    • 5. 发明申请
    • Detecting computer system simulation errors
    • 检测计算机系统仿真错误
    • US20070233448A1
    • 2007-10-04
    • US11394945
    • 2006-03-31
    • Efstathios PapaefstathiouJohn OslakeJonathan HardwickPavel DournovRohit Naik
    • Efstathios PapaefstathiouJohn OslakeJonathan HardwickPavel DournovRohit Naik
    • G06F17/10G06F17/50
    • G06F17/5009
    • Validating simulation models. A computing environment includes a performance scenario of a system. The performance scenario includes device models defining device behavior and/or capacity. The performance scenario further includes interconnections between one or more device models. A static model analysis of the system is performed. The static model analysis analyzes at least one of configuration of device models defined by the performance scenario or interconnection of device models defined by the performance scenario. A static capacity analysis to analyze device model limitations as they relate to statically defined performance scenario characteristics is performed. An application constraints validation can be performed. This includes comparing the performance scenario to software deployment best practices and rules related to models similar to the performance scenario. A simulation runtime validation may also be performed to evaluate dynamic device usage and latencies to simulate the system.
    • 验证模拟模型。 计算环境包括系统的性能场景。 性能场景包括定义设备行为和/或容量的设备模型。 性能场景还包括一个或多个设备模型之间的互连。 执行系统的静态模型分析。 静态模型分析至少分析由性能场景定义的设备模型的配置或由性能场景定义的设备模型的互连。 执行静态容量分析来分析与静态定义的性能场景特性相关的设备模型限制。 可以执行应用程序约束验证。 这包括将性能场景与软件部署最佳实践和与性能场景类似的模型相关的规则进行比较。 还可以执行模拟运行时验证以评估动态设备的使用和延迟以模拟系统。