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    • 71. 发明授权
    • Tracking asynchronous entry points for an application
    • 跟踪应用程序的异步入口点
    • US09507655B2
    • 2016-11-29
    • US14530443
    • 2014-10-31
    • AppDynamics, Inc.
    • Suraj PuvvadaRyan Ericson
    • G06F3/00G06F9/54G06F9/46
    • G06F11/3688G06F3/00G06F9/466G06F9/4843G06F9/54G06F9/547G06F11/302G06F11/3414
    • Asynchronous operations associated with a request such as synchronous threads, runnable elements, callable elements, and other invokable objects are tracked to determine the metrics about the request and operations. The present technology tracks the start and end of each asynchronous operation and maintains a counter which tracks the currently executing asynchronous operations. By monitoring the request, the start and end of each asynchronous operation associated with the request, and the number of asynchronous operations currently executing, the present technology may identify the end of a request by identifying when the last asynchronous operation associated with the request ends. In some instances, the present technology identifies the end of a request when a counter which tracks the number of asynchronous operations executing reaches a value of zero after the first asynchronous operation has already begun.
    • 跟踪与诸如同步线程,可运行元素,可调用元素和其他可调用对象的请求相关联的异步操作,以确定关于请求和操作的度量。 本技术跟踪每个异步操作的开始和结束,并维护跟踪当前执行的异步操作的计数器。 通过监视请求,与请求相关联的每个异步操作的开始和结束以及当前正在执行的异步操作的数量,本技术可以通过识别与请求相关联的最后一个异步操作何时结束来识别请求的结束。 在一些情况下,当在第一异步操作之后跟踪执行的异步操作数达到零值的计数器已经开始时,本技术识别请求的结束。
    • 75. 发明申请
    • ASYNCHRONOUS PROCESSING TIME METRICS
    • 异步处理时间量度
    • US20160125060A1
    • 2016-05-05
    • US14530564
    • 2014-10-31
    • AppDynamics, Inc.
    • William Drake PijewskiPeter Howard HolditchVinay Srinivasaiah
    • G06F17/30
    • G06F17/30377
    • Asynchronous operations associated with a request such as threads, runnable elements, callable elements, and other invokable objects are tracked to determine the metrics about the request and operations. The present technology tracks the start and end of each asynchronous operation and maintains a counter which tracks the currently pending or executing asynchronous operations. By monitoring the request, the start and end of each asynchronous operation associated with the request, and the number of asynchronous operations currently executing, the present technology may identify the end of a request by identifying when the last asynchronous operation associated with the request ends. In some instances, the present technology identifies the end of a request when a counter which tracks the number of asynchronous operations executing reaches a value of zero after the first asynchronous operation has already begun. Tracking these operations allows the present technology to aggregate and report useful performance data about these requests.
    • 与请求(例如线程,可运行元素,可调用元素和其他可调用对象)相关联的异步操作被跟踪以确定关于请求和操作的度量。 本技术跟踪每个异步操作的开始和结束,并维护跟踪当前挂起或执行的异步操作的计数器。 通过监视请求,与请求相关联的每个异步操作的开始和结束以及当前正在执行的异步操作的数量,本技术可以通过识别与请求相关联的最后一个异步操作何时结束来识别请求的结束。 在一些情况下,当在第一异步操作之后跟踪执行的异步操作数达到零值的计数器已经开始时,本技术识别请求的结束。 跟踪这些操作允许现有技术汇总和报告有关这些请求的有用性能数据。
    • 76. 发明申请
    • TRACKING ASYNCHRONOUS ENTRY POINTS FOR AN APPLICATION
    • 跟踪用于应用的异步入口点
    • US20160124783A1
    • 2016-05-05
    • US14530443
    • 2014-10-31
    • AppDynamics, Inc.
    • Suraj PuvvadaRyan Ericson
    • G06F9/54G06F9/46
    • G06F11/3688G06F3/00G06F9/466G06F9/4843G06F9/54G06F9/547G06F11/302G06F11/3414
    • Asynchronous operations associated with a request such as synchronous threads, runnable elements, callable elements, and other invokable objects are tracked to determine the metrics about the request and operations. The present technology tracks the start and end of each asynchronous operation and maintains a counter which tracks the currently executing asynchronous operations. By monitoring the request, the start and end of each asynchronous operation associated with the request, and the number of asynchronous operations currently executing, the present technology may identify the end of a request by identifying when the last asynchronous operation associated with the request ends. In some instances, the present technology identifies the end of a request when a counter which tracks the number of asynchronous operations executing reaches a value of zero after the first asynchronous operation has already begun.
    • 跟踪与诸如同步线程,可运行元素,可调用元素和其他可调用对象的请求相关联的异步操作,以确定关于请求和操作的度量。 本技术跟踪每个异步操作的开始和结束,并维护跟踪当前执行的异步操作的计数器。 通过监视请求,与请求相关联的每个异步操作的开始和结束以及当前正在执行的异步操作的数量,本技术可以通过识别与请求相关联的最后一个异步操作何时结束来识别请求的结束。 在一些情况下,当在第一异步操作之后跟踪执行的异步操作数达到零值的计数器已经开始时,本技术识别请求的结束。
    • 77. 发明申请
    • MONITORING A MOBILE DEVICE APPLICATION
    • 监控移动设备应用程序
    • US20160124757A1
    • 2016-05-05
    • US14530554
    • 2014-10-31
    • AppDynamics, Inc.
    • Ajay Kumar Nadarthur Sreenivasan
    • G06F9/445
    • G06F9/44521G06F9/45504G06F11/3466G06F2201/865
    • The present technology allows for a mobile device operating system to be modified in order to better monitor the performance of the mobile device applications. A mobile device file, such as a dex file for android operating system, may be extracted from an APK file for an application. The mobile device file may be analyzed, and a new mobile device file may be generated in addition to the analyzed mobile device file. The modifications may include identifying methods that should be monitored during execution of the corresponding application on a mobile device. The mobile device file, may be modified at a remote server, provided back to the mobile device, and then loaded by the mobile device at a later time.
    • 本技术允许修改移动设备操作系统,以便更好地监控移动设备应用的性能。 可以从用于应用的APK文件中提取诸如用于android操作系统的dex文件的移动设备文件。 可以分析移动设备文件,并且除了分析的移动设备文件之外,可以生成新的移动设备文件。 修改可以包括识别在移动设备上执行相应应用期间应该被监视的方法。 移动设备文件可以在远程服务器处被修改,提供给移动设备,然后在稍后的时间被移动设备加载。
    • 78. 发明申请
    • DYNAMIC BASLINE DETERMINATION FOR DISTRIBUTED TRANSACTION
    • 分布式交易的动态基线确定
    • US20160050136A1
    • 2016-02-18
    • US14929269
    • 2015-10-31
    • AppDynamics, Inc.
    • Jyoti BansalBhaskar Sunkara
    • H04L12/26
    • H04L43/04H04L43/022H04L43/045H04L43/10H04L43/16H04L67/02H04L67/22
    • The present technology may determine an anomaly in a portion of a distributed business application. Data can automatically be captured and analyzed for the portion of the application associated with the anomaly. By automatically capturing data for just the portion associated with the anomaly, the present technology reduces the resource and time requirements associated with other code-based solutions for monitoring transactions. A method for performing a diagnostic session for a request may begin with initiating collection of diagnostic data associated with a request. An application thread on each of two or more servers may be sampled. The application threads may be associated with the same business transaction and the business transaction may be associated with the request. The diagnostic data may be stored.
    • 本技术可以确定分布式业务应用的一部分中的异常。 与异常有关的部分应用程序可以自动捕获和分析数据。 通过自动捕获与异常相关的部分的数据,本技术减少与用于监视事务的其他基于代码的解决方案相关联的资源和时间要求。 用于执行请求的诊断会话的方法可以开始收集与请求相关联的诊断数据。 可以对两个或多个服务器中的每一个上的应用程序线程进行采样。 应用程序线程可以与相同的业务事务相关联,并且业务事务可以与请求相关联。 可以存储诊断数据。