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    • 51. 发明公开
    • System and methods for ensuring fault tolerance of antivirus protection realized in a virtual environment
    • 的系统和方法,以确保在虚拟环境中的防病毒保护的容错
    • EP2933748A1
    • 2015-10-21
    • EP14186504.8
    • 2014-09-26
    • Kaspersky Lab, ZAO
    • Gridnev, Sergey N.Yarykin, Pavel N.
    • G06F21/56G06F21/53G06F11/14
    • H04L63/20G06F11/1443G06F11/1484G06F11/3003G06F21/56G06F2201/86G06F2201/865H04L63/1425H04L67/1002
    • Disclosed are systems and methods for ensuring fault tolerance of antivirus protection realized in a virtual environment. An example method includes collecting, by a antivirus agent in a virtual machine, information about available security virtual machines that provide at least one or more resource-intensive methods of antivirus checking of programs running on the virtual machine; analyzing the collected information to determine a location of the virtual machine relative to the security virtual machines and determine priorities for each of the security virtual machines based on the location of the virtual machine relative; forming a list of the available security virtual machines according to the priorities of the security virtual machines to identify a primary security virtual machine; connecting the virtual machine to the primary security virtual machine; and requesting the primary security virtual machine to perform at least antivirus checking of one or more programs running on the virtual machine.
    • 本发明公开了系统,并确保在虚拟环境中实现反病毒保护的容错方法。 一个示例方法包括:在虚拟机收集,通过防病毒代理,约可用的安全虚拟机的信息没有提供至少一个或防病毒的虚拟机上运行的程序检查的多个资源密集的方法; 分析所收集的信息来确定的矿相对于安全虚拟机和确定性矿优先级为每个基于相对所述虚拟机的位置处的安全虚拟机的虚拟机的位置; 形成gemäß到安全虚拟机,以确定主安全虚拟机的优先级可用的安全虚拟机的列表; 虚拟机连接到所述主安全虚拟机; 和请求所述主安全虚拟机能够执行至少杀毒虚拟机上运行的一个或多个程序的检查。
    • 52. 发明公开
    • Operation verification device for virtual apparatus, and operation verification system and program for virtual apparatus
    • 对于虚拟设备的虚拟设备和操作系统,并检测程序操作验证设备
    • EP2911059A1
    • 2015-08-26
    • EP15153198.5
    • 2015-01-30
    • Fujitsu Limited
    • Nakazono, Koji
    • G06F11/22G06F11/30
    • G06F11/3003G06F11/3051G06F11/3055G06F2201/815G06F2201/865
    • An operation verification device for a virtual apparatus which confirms a state of operation of the virtual apparatus, comprising a configuration information transmission unit which transmits configuration information on the virtual apparatus to an operation confirmation device that performs a communication for confirming the state of operation of a virtual apparatus an operation confirmation instruction unit which instructs the operation confirmation device to perform a communication for confirming the state of operation on a basis of the configuration information while a connection with the operation confirmation device is disconnected, and after issuing the instruction, disconnects the connection with the operation confirmation device and a confirmation result collection unit which restarts a connection with the operation confirmation device while the connection between the operation confirmation device and the virtual apparatus is disconnected, and receives a result of the confirmation of the state of operation.
    • 为虚拟设备的操作验证设备这证实了虚拟装置的操作状态,其包括配置信息发送部,其在操作确认装置发送关于虚拟装置的配置信息,以确实执行用于确认的操作的状态的通信 到操作确认指令单元,其指示所述操作确认装置而与所述操作确认设备的连接被断开以执行用于确认的所述配置信息的基础上操作的状态的通信,并发出指令之后虚拟装置,断开连接 与操作确认装置和一个确认结果收集单元,其重新开始与操作确认装置而操作确认装置和虚拟装置之间的连接被断开的连接,并且接收的Confirma的结果 操作状态的重刑。
    • 53. 发明公开
    • METHOD AND DEVICE FOR OBTAINING USING-FREQUENCY OF APPLICATION PROGRAM
    • VERFAHREN UND VORRICHTUNG ZUR ERMITTLUNG DERVERWENDUNGSHÄUFIGKEITEINES ANWENDUNGSPROGRAMMS
    • EP2761462A4
    • 2015-06-24
    • EP12834947
    • 2012-09-07
    • TENCENT TECH SHENZHEN CO LTD
    • WANG BAOJIANHU ZHONGXINGZHANG YINGHAO
    • G06F11/34G06F9/445G06F11/30
    • G06F11/34G06F8/61G06F11/3003G06F11/3089G06F11/3466G06F2201/835G06F2201/865
    • The invention relates to a method or a device for obtaining a using-frequency of a specified application program. The method comprises: obtaining an installing route of the specified application program, according to a system-registering information list; calling an API to monitor operation of the specified application program; recording a last start-up time and the installing route of the specified application program; obtaining the last start-up time of the specified application program based on the installing route as an index; comparing the last start-up time and a current time, to determine the using-frequency of the specified application program. The present invention can intercept the process start functions of the Operation System, to easily and efficiently obtain the using-frequency of the specified application program, easily manage the application program installed in the computer, and provide the base for optimizing the Operation System of the computer.
    • 本发明涉及一种用于获得指定应用程序的使用频率的方法或装置。 该方法包括:根据系统注册信息列表获取指定应用程序的安装路由; 调用API来监视指定应用程序的操作; 记录指定应用程序的最后启动时间和安装路径; 基于安装路由作为索引获取指定应用程序的最后启动时间; 比较上次启动时间和当前时间,以确定指定应用程序的使用频率。 本发明可以截取操作系统的处理启动功能,轻松有效地获得指定应用程序的使用频率,轻松管理安装在计算机中的应用程序,并提供优化操作系统的基础 电脑。
    • 55. 发明公开
    • NETWORK SYSTEM, MAINTENANCE WORK MANAGEMENT METHOD, PROCESSING DEVICE, AND PROGRAM
    • NETZWERKSYSTEM,VERWALTUNGSVERFAHRENFÜRWARTUNGSARBEITEN,VERARBEITUNGSVORRICHTUNG UND PROGRAMM
    • EP2849074A1
    • 2015-03-18
    • EP12876236.6
    • 2012-05-08
    • Fujitsu Limited
    • KOBASHI, Kyuu
    • G06F13/10G06F3/06
    • H04L41/06G06F11/0709G06F11/30G06F11/3003G06F11/3051H04L45/12H04L45/22
    • An influence determination unit (11) configured to determine whether each path in a network system is a prospective to be affected path affected by maintenance work or a prospective to be unaffected path not affected by the maintenance work by referring to path management information (231)that manages information about a plurality of paths, a path influence information output unit (12) configured to output a diagnosis result to a plurality of processing apparatuses as path influence information about each of the paths, a maintenance possibility diagnosis unit (42) configured to conduct a diagnosis on whether the maintenance work is performable based on the path influence information of the paths connected, and a maintenance possibility information output unit (43) configured to output the diagnosis result as maintenance possibility information are included, wherein maintenance work efficiency is improved in the network system by outputting permission information indicating permission or refusal of the maintenance work for maintenance object components based on the maintenance possibility information.
    • 影响判定单元(11),被配置为通过参照路径管理信息(231)来确定网络系统中的每个路径是否受到维护工作影响的影响路径或预期不受维护工作影响的未受影响的路径, 管理关于多个路径的信息的路径影响信息输出单元,被配置为将诊断结果输出到多个处理装置作为关于每个路径的路径影响信息;路径影响信息输出单元,被配置为 基于连接的路径的路径影响信息进行维护工作是否可执行的诊断,并且包括被配置为将诊断结果输出作为维护可能性信息的维护可能性信息输出单元(43),其中提高了维护工作效率 通过输出表示许可的许可信息在网络系统中 根据维护可能性信息拒绝维护对象组件的维护工作。
    • 59. 发明公开
    • CLOUD INFRASTRUCTURE BASED MANAGEMENT SYSTEM AND METHOD FOR PERFORMING MAINTENANCE AND DEPLOYMENT FOR APPLICATION SYSTEM
    • 基于云基础设施的管理系统及其应用系统的维护和部署方法
    • EP2796996A1
    • 2014-10-29
    • EP12864900.1
    • 2012-11-29
    • Huawei Technologies Co., Ltd
    • LI, Sihao
    • G06F9/46
    • G06F8/61G06F9/45533G06F9/5083G06F11/3003G06F11/3055G06F11/3089G06F11/34G06F11/3433G06F2009/45562G06F2201/815G06F2201/865
    • The present invention discloses a cloud infrastructure-based management system and method for maintenance deployment of an application system. The management system includes an application scheduling deployment engine, a deployment plug-in, and a monitoring plug-in. The application scheduling deployment engine is configured to perform application scheduling deployment according to a scheduling deployment policy of an application and the performance of an application instance in the application or task processing state data of the application instance, and generate a deployment instruction for the application instance, the deployment instruction including an application attribute and a range of attribute values. The deployment plug-in is configured to obtain the deployment instruction for the application instance from the application scheduling deployment engine and perform deployment configuration to the application instance. The monitoring plug-in is configured to monitor performance or task processing state of the application instance, and transmit the performance or the task processing state data of the application instance to the application scheduling deployment engine. In this way, the present invention support automatic deployment of an application system, avoiding software re-architecture needed for the application system's migration deployment from a traditional system to a cloud platform.
    • 本发明公开了一种基于云计算基础架构的管理系统和应用系统维护部署方法。 管理系统包括应用程序调度部署引擎,部署插件和监视插件。 应用程序调度部署引擎用于根据应用程序的调度部署策略以及应用程序实例在应用程序中的执行情况或应用程序实例的任务处理状态数据进行应用程序调度部署,并生成应用程序实例的部署指令 ,部署指令包括应用程序属性和一系列属性值。 部署插件配置为从应用程序调度部署引擎获取应用程序实例的部署指令,并对应用程序实例执行部署配置。 监控插件用于监控应用实例的性能或任务处理状态,并将应用实例的性能或任务处理状态数据传输给应用调度部署引擎。 这样,本发明支持应用系统的自动部署,避免了应用系统从传统系统迁移到云平台迁移所需的软件重新架构。