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    • 4. 发明申请
    • MEMORY UTILIZATION ANALYSIS
    • 记忆利用分析
    • WO2010093996A1
    • 2010-08-19
    • PCT/US2010/024197
    • 2010-02-13
    • CROSBY, Peter, AnthonyMEAGHER, RobertMALLOY, Patrick, J.
    • CROSBY, Peter, AnthonyMEAGHER, RobertMALLOY, Patrick, J.
    • G06F9/50G06F11/34G06F12/02
    • G06F12/023G06F9/5016G06F11/3476G06F11/3636G06F11/366G06F11/3664
    • An application records memory allocations and releases as they occur over time, and an analysis system presents characteristic memory utilization patterns to a user for review and analysis. A variety of sampling techniques are used to minimize the impact of this memory utilization monitoring on the performance of the application, and the analysis system is configured to estimate the overall memory utilization based on these samples. Because these samples of the memory allocations are taken continuously as the application is running, the analysis system can provide visualizations of the memory utilization patterns that allow a user to easily recognize anomalous behavior. The analysis system includes an interactive interface that allows the user to trace the cause of the presented memory utilization patterns, and provides statistics regarding memory allocation and release to guide the user in this analysis.
    • 应用程序会随着时间的推移记录内存分配和发布,并且分析系统向特定的内存使用模式呈现用于查看和分析的用户。 使用各种采样技术来最小化该存储器利用率监视对应用的性能的影响,并且分析系统被配置为基于这些样本来估计总的存储器利用率。 因为这些内存分配的这些样本是随着应用程序运行而持续进行的,所以分析系统可以提供允许用户容易地识别异常行为的存储器利用模式的可视化。 分析系统包括交互式界面,允许用户跟踪所呈现的存储器利用模式的原因,并提供有关存储器分配和释放的统计信息,以指导用户进行此分析。
    • 7. 发明申请
    • CORRECTING PACKET TIMESTAMPS IN VIRTUALIZED ENVIRONMENTS
    • 在虚拟化环境中校正分组时钟
    • WO2011097542A1
    • 2011-08-11
    • PCT/US2011/023833
    • 2011-02-05
    • MALLOY, Patrick J.SHAKULA, AlexeyGEHL, RyanOPNET TECHNOLOGIES, INC.
    • MALLOY, Patrick J.SHAKULA, AlexeyGEHL, Ryan
    • H04L12/28H04L12/56
    • G06F9/45533G06F9/45558G06F2009/45595
    • A network capture element is embodied on a virtual machine, and a utility function is embodied on the actual device, preferably within the virtual machine manager. Both the utility function and the traffic capture element are configured to monitor communication events. To minimize the overhead imposed, the utility function is configured to merely store the time that the event occurred on the actual machine, corresponding to an identifier of the event. The network capture element, on the other hand, performs the time consuming tasks of filtering the communications, selectively storing some or all of the data content of the communications, characterizing the data content, and so on. Instead of storing the virtual time that the communication event occurred at the virtual machine, the network capture element uses the identifier of the communication event to retrieve the actual time that the communication event occurred on the actual machine.
    • 网络捕获元件体现在虚拟机上,并且效用函数体现在实际设备上,优选地在虚拟机管理器内。 效用功能和流量捕获元件都配置为监视通信事件。 为了最小化所施加的开销,效用函数被配置为仅存储事件在实际机器上发生的时间,对应于事件的标识符。 另一方面,网络捕获元件执行过滤通信的耗时任务,选择性地存储通信的一些或全部数据内容,表征数据内容等等。 网络捕获元件不是存储通信事件在虚拟机中发生的虚拟时间,而是使用通信事件的标识符来检索在实际机器上发生通信事件的实际时间。