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    • 1. 发明授权
    • Managing network devices
    • 管理网络设备
    • US08432832B2
    • 2013-04-30
    • US13599790
    • 2012-08-30
    • Nir ZukAnupam Bharali
    • Nir ZukAnupam Bharali
    • H04L12/28
    • H04L41/084H04L41/0816H04L41/085
    • Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for configuring network devices. A central management system stores shared configuration objects in a central configuration database. A network device stores shared configuration objects and device-specific configuration objects in a local configuration database. The local configuration database's shared configuration objects correspond to shared configuration objects in the central configuration database. The central management system determines the network device has received a request to update a shared configuration object, where the request did not originate from the central management system, and updates the central configuration database.
    • 方法,系统和装置,包括在计算机存储介质上编码的计算机程序,用于配置网络设备。 中央管理系统将共享配置对象存储在中央配置数据库中。 网络设备将共享的配置对象和设备特定的配置对象存储在本地配置数据库中。 本地配置数据库的共享配置对象与中央配置数据库中的共享配置对象相对应。 中央管理系统确定网络设备已经接收到更新共享配置对象的请求,其中请求不是源于中央管理系统,并且更新中央配置数据库。
    • 7. 发明授权
    • Deploying policy configuration across multiple security devices through hierarchical configuration templates
    • 通过分层配置模板在多个安全设备之间部署策略配置
    • US09027077B1
    • 2015-05-05
    • US13460576
    • 2012-04-30
    • Anupam BharaliKunal KunduZhi Ning Wang
    • Anupam BharaliKunal KunduZhi Ning Wang
    • H04L29/00G06F17/30
    • H04L63/20G06F17/30G06F21/00G06F21/604H04L63/02H04L63/08
    • Deploying policy configuration across multiple security devices through hierarchical configuration templates is disclosed. In some embodiments, deploying policy configuration across multiple security devices through hierarchical configuration templates for configuring a plurality of security devices includes receiving at a first security device a hierarchy of templates from a central management server, in which the hierarchy of templates includes configuration information for a group of security devices, and in which the first security device is included in the group of security devices; and reconciling on the first security device's configuration information included in the hierarchy of templates and device specific configuration based on local configuration information, in which the first security device performs an object level reconciliation to maintain device configuration consistency.
    • 公开了通过分层配置模板在多个安全设备之间部署策略配置。 在一些实施例中,通过用于配置多个安全设备的分层配置模板来跨多个安全设备部署策略配置包括在第一安全设备处接收来自中央管理服务器的模板层级,其中模板层级包括用于 一组安全设备,并且其中第一安全设备包括在安全设备组中; 并且基于第一安全设备的基于本地配置信息的模板层次结构中的配置信息和设备特定配置进行协调,其中第一安全设备执行对象级别协调以维持设备配置一致性。
    • 10. 发明申请
    • Efficient discovery and verification of paths through a meshed overlay network
    • 通过网格覆盖网络高效发现和验证路径
    • US20070263553A1
    • 2007-11-15
    • US11805488
    • 2007-05-23
    • Anupam BharaliBalraj SinghManish SampatAmit SinghRajiv Batra
    • Anupam BharaliBalraj SinghManish SampatAmit SinghRajiv Batra
    • H04L12/28H04L12/56
    • H04L45/125H04L45/02H04L45/124H04L45/26H04L45/64
    • The present invention provides an efficient system and method for routing information through a dynamic network. The system includes at least one ingress point and one egress point. The ingress and egress point cooperate to form a virtual circuit for routing packets to destination subnets directly reachable by the egress point. The egress point automatically discovers which subnets are directly accessible via its local ports and summarizes this information for the ingress point. The ingress point receives this information, compiles it into a routing table, and verifies that those subnets are best accessed by the egress point. Verification is accomplished by sending probe packets to select addresses on the subnet. Additionally, the egress point may continue to monitor the local topology and incrementally update the information to the ingress to allow the ingress to adjust its compiled routing table.
    • 本发明提供了一种通过动态网络路由信息的有效系统和方法。 该系统包括至少一个入口点和一个出口点。 入口点和出口点协作形成一个虚拟电路,用于将数据包路由到出口点直接访问的目的地子网。 出口点自动发现哪些子网可以通过其本地端口直接访问,并总结入口点的此信息。 入口点接收该信息,将其编译成路由表,并验证这些子网是否最好被出口点访问。 验证是通过发送探测数据包来选择子网上的地址来实现的。 此外,出口点可以继续监视本地拓扑,并将信息递增地更新到入口,以允许入口调整其编译的路由表。