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    • 2. 发明授权
    • Automatic asynchronous handoff identification
    • 自动异步切换识别
    • US09515901B2
    • 2016-12-06
    • US14058200
    • 2013-10-18
    • AppDynamics, Inc.
    • Bhaskar SunkaraSuraj PuvvadaManoj AcharyaVinay Srinivasaiah
    • G06F15/173H04L12/26G06F9/48
    • H04L43/04G06F9/45504G06F9/466G06F9/4843G06Q10/10H04L43/14
    • Asynchronous handoffs between threads and other software components may be automatically detected, and the corresponding working objects may be tracked. The system may report monitoring information for an overall transaction that includes the original request and corresponding asynchronous requests. Automatically detecting asynchronous requests may include instrumenting a virtual machine, such as a Java Virtual Machine (JVM), to detect the creation of thread handoff objects and the object and/or thread execution. Thread handoff objects may automatically tracked, tracked based on data learned over time, tracked based on user input, and otherwise configured. In some embodiments, after detecting the creation of a thread handoff object, an identification of the object of the call may be identified as being tracked in another server or application.
    • 可以自动检测线程和其他软件组件之间的异步切换,并且可以跟踪相应的工作对象。 该系统可以报告包括原始请求和对应的异步请求的总体事务的监视信息。 自动检测异步请求可能包括检测虚拟机(如Java虚拟机(JVM)),以检测线程切换对象的创建以及对象和/或线程执行。 线程切换对象可以自动跟踪,根据随时间学习的数据进行跟踪,基于用户输入进行跟踪,否则配置。 在一些实施例中,在检测到线程切换对象的创建之后,可以将呼叫的对象的标识识别为在另一服务器或应用中被跟踪。
    • 4. 发明申请
    • CUSTOM CORRELATION OF A DISTRIBUTED BUSINESS TRANSACTION
    • 分销业务交易的自定义关联
    • US20150067146A1
    • 2015-03-05
    • US14018349
    • 2013-09-04
    • AppDynamics, Inc.
    • Todd RakerSuraj PuvvadaManoj AcharyaVinay Srinivasaiah
    • H04L12/26
    • G06F11/3068G06F11/3006G06F11/3495G06F2201/865G06F2201/87G06F2201/875
    • A mechanism is provided for customizing communication of correlation data between servers using a custom or proprietary communication protocol. The system may modify a payload transmitted between servers to include monitoring parameters. The payload may be modified by expanding a portion of the payload or otherwise inserting data into the payload. The portion may include a header, footer, an additional property, a field, or other portion of the header. A mechanism may detect both outgoing calls and incoming requests to either modify the request with the payload or retrieve the payload from the request. The configuration preferences received from a user may be used to process the detected calls and modify a payload at a designed portion suitable to be expanded. Once sent, the configuration parameters may be used by a recipient server to detect the request with the modified payload and retrieve the monitoring parameter. The monitoring parameter may be used to correlate distributed transactions that occur over a set of servers which communicate with non-standard protocols.
    • 提供了一种用于使用自定义或专有通信协议自定义服务器之间的相关数据的通信的机制。 系统可以修改在服务器之间传输的有效载荷以包括监视参数。 可以通过扩展有效载荷的一部分或以其他方式将数据插入有效载荷来修改有效载荷。 该部分可以包括报头,页脚,附加属性,字段或报头的其他部分。 机制可以检测出呼叫和传入请求,以便用有效载荷修改请求或从请求中检索有效载荷。 可以使用从用户接收的配置偏好来处理检测到的呼叫并修改在适于被扩展的设计部分的有效载荷。 一旦发送,接收方服务器可以使用配置参数来检测具有修改的有效载荷的请求并检索监视参数。 监视参数可用于将在与非标准协议通信的一组服务器上发生的分布式事务相关联。
    • 5. 发明申请
    • AUTOMATIC CAPTURE OF DETAILED ANALYSIS INFORMATION BASED ON REMOTE SERVER ANALYSIS
    • 基于远程服务器分析的详细分析信息的自动捕获
    • US20150149554A1
    • 2015-05-28
    • US14609305
    • 2015-01-29
    • AppDynamics Inc.
    • Jyoti BansalBhaskar SankaraManoj AcharyaVinay SrinivasaiahBinil ThomasAwais Ahmed
    • H04L29/08H04L12/26
    • H04L43/04G06N5/00H04L41/5074H04L61/10H04L67/025H04L67/22
    • A system monitors a network or web application provided by one or more distributed applications and provides data for each and every method instance in an efficient low-cost manner. Agents may monitor the performance of the distributed application by the web services and report monitoring data as runtime data to the remote server, for example a controller. The controller may analyze the data to identify one or more performance issues or “hot spot” methods based on current or past performance, functionality, content, or business relevancy. Instructions and/or configuration information may be transmitted by the controller to the agents that correspond to a particular business transaction portion associated with a hot spot. The portions are then monitored to collect data associated with the hot spot and the hot spot data is reported back to the controller.
    • 系统监视由一个或多个分布式应用程序提供的网络或Web应用程序,并以有效的低成本方式为每个方法实例提供数据。 代理可以通过Web服务监视分布式应用程序的性能,并将监视数据作为运行时数据报告给远程服务器,例如控制器。 控制器可以基于当前或过去的性能,功能,内容或业务相关性来分析数据以识别一个或多个性能问题或“热点”方法。 指令和/或配置信息可以由控制器发送到对应于与热点相关联的特定商业交易部分的代理。 然后监测这些部分以收集与热点相关联的数据,并将热点数据报告回控制器。
    • 6. 发明申请
    • AUTOMATIC ASYNCHRONOUS HANDOFF IDENTIFICATION
    • 自动异步手动识别
    • US20150113122A1
    • 2015-04-23
    • US14058200
    • 2013-10-18
    • AppDynamics, Inc.
    • Bhaskar SunkaraSuraj PuvvadaManoj AcharyaVinay Srinivasaiah
    • G06F9/54G06F9/46H04L12/26
    • H04L43/04G06F9/45504G06F9/466G06F9/4843G06Q10/10H04L43/14
    • Asynchronous handoffs between threads and other software components may be automatically detected, and the corresponding working objects may be tracked. The system may report monitoring information for an overall transaction that includes the original request and corresponding asynchronous requests. Automatically detecting asynchronous requests may include instrumenting a virtual machine, such as a Java Virtual Machine (JVM), to detect the creation of thread handoff objects and the object and/or thread execution. Thread handoff objects may automatically tracked, tracked based on data learned over time, tracked based on user input, and otherwise configured. In some embodiments, after detecting the creation of a thread handoff object, an identification of the object of the call may be identified as being tracked in another server or application.
    • 可以自动检测线程和其他软件组件之间的异步切换,并且可以跟踪相应的工作对象。 该系统可以报告包括原始请求和对应的异步请求的总体事务的监视信息。 自动检测异步请求可能包括检测虚拟机(如Java虚拟机(JVM)),以检测线程切换对象的创建以及对象和/或线程执行。 线程切换对象可以自动跟踪,根据随时间学习的数据进行跟踪,基于用户输入进行跟踪,否则配置。 在一些实施例中,在检测到线程切换对象的创建之后,可以将呼叫的对象的标识识别为在另一服务器或应用中被跟踪。