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    • 1. 发明授权
    • Dynamic updating and renaming virtual pre-installation stub applications
    • 动态更新和重命名虚拟预安装存根应用程序
    • US09092291B1
    • 2015-07-28
    • US13940253
    • 2013-07-11
    • Sprint Communications Company L.P.
    • Fared A. AdibRobert H. BurchamJason R. DelkerJason SalgeM. Jeffrey Stone
    • G06F9/44G06F9/445
    • G06F8/61G06F9/451
    • A method of renaming stub applications on a mobile communication device comprises installing a plurality of stub applications, wherein each of the stub applications comprises a generic file name. The method further comprises determining a plurality of interactive thumbnail images to present on a display, wherein the determining is done by a widget, displaying the plurality of interactive thumbnail images within a graphical user interface frame of the widget in response to the determining, wherein each of the interactive thumbnail images is linked to one of the stub applications, identifying that the generic file names of the stub applications do not match the file names of the interactive thumbnail images to which they are linked, and replacing the generic file names of the stub applications linked to the interactive thumbnail images with file names that match the file names of the interactive thumbnail images in response to the identifying.
    • 一种在移动通信设备上重新命名存根应用的方法包括安装多个存根应用,其中每个存根应用包括通用文件名。 所述方法还包括确定多个交互式缩略图图像以呈现在显示器上,其中所述确定由小部件完成,响应于所述确定在所述小部件的图形用户界面框架内显示所述多个交互式缩略图图像,其中每个 交互式缩略图图像链接到一个存根应用程序,标识存根应用程序的通用文件名称与其链接的交互式缩略图像的文件名不匹配,并替换存根的通用文件名 响应于所述识别,链接到与所述交互式缩略图的文件名匹配的文件名的所述交互式缩略图图像的应用。
    • 4. 发明授权
    • True push architecture for internet protocol notification
    • 互联网协议通知的真推式架构
    • US09565264B1
    • 2017-02-07
    • US15080546
    • 2016-03-24
    • Sprint Communications Company L.P.
    • Lyle T. BertzRobert H. BurchamBrian D. MauerJason Salge
    • H04L29/08H04L29/12G06F9/44G06F3/06
    • H04L67/26G06F3/061G06F3/0655G06F3/0679G06F9/4401G06F15/17306H04L12/1859H04L61/2007H04L67/02
    • A method of true push for internet protocol notification to a mobile communication device implemented by at least one server computer. The method comprises determining the size of physically addressable random access memory (RAM) and the number of central processing unit (CPU) cores of the server computer at boot time and setting the resource limit, rlimit, in the kernel of the server computer that comprises setting the limit for the total number of file handles in the entire system automatically based on the determined size of the random access memory and the determined number of the central processing unit cores at boot time. The method further comprises tying the memory page allocation into the setting of the kernel parameters, whereby the input/output (I/O) maintenance of the server computer is maximized for concurrent web sockets so that the server computer is optimized for implementing the true push for internet protocol notification.
    • 一种真正推送由至少一台服务器计算机实现的移动通信设备的因特网协议通知的方法。 该方法包括在引导时确定物理寻址随机存取存储器(RAM)的大小和服务器计算机的中央处理单元(CPU)核心的数量,并且在包括的服务器计算机的内核中设置资源限制 根据确定的随机存取存储器的大小以及在启动时确定的中央处理器单元核心数量,自动设置整个系统中文件句柄总数的限制。 该方法还包括将存储器页面分配绑定到内核参数的设置中,由此对于并发Web套接字来最大化服务器计算机的输入/输出(I / O)维护,使得服务器计算机被优化以实现真正的推送 用于互联网协议通知。
    • 5. 发明授权
    • Application risk analysis
    • 应用风险分析
    • US09386463B1
    • 2016-07-05
    • US13681337
    • 2012-11-19
    • Sprint Communications Company L.P.
    • Jeffrey Ronald ContinoJason SalgeM. Jeffrey StoneRobert L. Waldrop
    • H04W24/02
    • H04W24/02G06F21/552H04L63/12H04L63/1425
    • A method of managing the risk of a monitored application installed on a mobile communication device comprises determining a risk profile of the monitored application based on at least one of: comparison of performance of the mobile communication device before and after installation of the monitored application on the mobile communication device, comparison of permission requests of the monitored application versus a type of the monitored application, community feedback of the monitored application, an amount of time elapsed since release of the monitored application, and a risk profile of a publisher of the monitored application; and performing a first action if the risk profile of the monitored application meets or exceeds a predefined first threshold.
    • 一种管理安装在移动通信设备上的受监视应用的风险的方法包括:基于以下至少一个来确定所监视的应用的风险简档:将所监视的应用在安装之前和之后的移动通信设备的性能的比较 移动通信设备,被监视应用的许可请求与受监视应用的类型的比较,被监视应用的社区反馈,从发布被监视应用以来所经过的时间量以及所监视应用的发布者的风险简档 ; 以及如果所监视的应用的风险简档满足或超过预定义的第一阈值,则执行第一动作。
    • 6. 发明授权
    • True push architecture for internet protocol notification
    • 互联网协议通知的真推式架构
    • US09330053B1
    • 2016-05-03
    • US13949228
    • 2013-07-24
    • Sprint Communications Company L.P.
    • Lyle T. BertzRobert H. BurchamBrian D. MauerJason Salge
    • H04L29/08G06F15/173
    • H04L67/26G06F3/061G06F3/0655G06F3/0679G06F9/4401G06F15/17306H04L12/1859H04L61/2007H04L67/02
    • A method of true push for internet protocol notification to a mobile communication device implemented by at least one server computer. The method comprises determining the size of physically addressable random access memory (RAM) and the number of central processing unit (CPU) cores of the server computer at boot time and setting the resource limit, rlimit, in the kernel of the server computer that comprises setting the limit for the total number of file handles in the entire system automatically based on the determined size of the random access memory and the determined number of the central processing unit cores at boot time. The method further comprises tying the memory page allocation into the setting of the kernel parameters, whereby the input/output (I/O) maintenance of the server computer is maximized for concurrent web sockets so that the server computer is optimized for implementing the true push for internet protocol notification.
    • 一种真正推送由至少一台服务器计算机实现的移动通信设备的因特网协议通知的方法。 该方法包括在引导时确定物理寻址随机存取存储器(RAM)的大小和服务器计算机的中央处理单元(CPU)核心的数量,并且在包括的服务器计算机的内核中设置资源限制 根据确定的随机存取存储器的大小以及在启动时确定的中央处理器单元核心数量,自动设置整个系统中文件句柄总数的限制。 该方法还包括将存储器页面分配绑定到内核参数的设置中,由此对于并发Web套接字来最大化服务器计算机的输入/输出(I / O)维护,使得服务器计算机被优化以实现真正的推送 用于互联网协议通知。