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    • 63. 发明申请
    • LOCATION SERVICE FOR PHYSICAL DELIVERY
    • 物理交付地点服务
    • US20130325738A1
    • 2013-12-05
    • US13997106
    • 2011-12-15
    • Robert C. SwansonRobert Bruce BahnsenMallik Bulusu
    • Robert C. SwansonRobert Bruce BahnsenMallik Bulusu
    • G06Q10/08
    • G06Q10/083G06Q10/08H04W4/029H04W12/08
    • Methods, apparatuses and storage medium associated with providing location service, are disclosed. In various embodiments, a method may include receiving, by a location server, location information associated with a user of a mobile device or a party associated with user; and receiving, by the location server, from a delivery service server, a request for the location information. The request may include a credential indicative of eligibility of the delivery service server to receive the requested location information. The method may further include providing, by the location server, to the delivery service server, the location information, on confirmation of the eligibility of the delivery service server based at least in part on the credential. Other embodiments may be disclosed or claimed.
    • 公开了与提供定位服务相关联的方法,装置和存储介质。 在各种实施例中,方法可以包括由位置服务器接收与移动设备的用户或与用户相关联的方相关联的位置信息; 并且由位置服务器从传送服务服务器接收对位置信息的请求。 请求可以包括指示传送服务服务器接收请求的位置信息的资格的证书。 所述方法可以进一步包括至少部分地基于所述证书,由所述位置服务器向所述递送服务服务器提供所述位置信息,以确认所述递送服务服务器的资格。 可以公开或要求保护其他实施例。
    • 67. 发明授权
    • Multi-socket boot
    • 多插槽启动
    • US07779244B2
    • 2010-08-17
    • US11647542
    • 2006-12-28
    • Vincent J. ZimmerMichael A. RothmanMallik BulusaRobert C. Swanson
    • Vincent J. ZimmerMichael A. RothmanMallik BulusaRobert C. Swanson
    • G06F15/177
    • G06F9/441
    • In some embodiments, the invention involves a system and method to provide maximal boot-time parallelism for future multi-core, multi-node, and many-core systems. In an embodiment, the security (SEC), pre-EFI initialization (PEI), and then driver execution environment (DXE) phases are executed in parallel on multiple compute nodes (sockets) of a platform. Once the SEC/PEI/DXE phases are executed on all compute nodes having a processor, the boot device select (BDS) phase completes the boot by merging or partitioning the compute nodes based on a platform policy. Partitioned compute nodes each run their own instance of EFI. A common memory map may be generated prior to operating system (OS) launch when compute nodes are to be merged. Other embodiments are described and claimed.
    • 在一些实施例中,本发明涉及为将来的多核,多节点和多核系统提供最大引导时间并行性的系统和方法。 在一个实施例中,在平台的多个计算节点(套接字)上并行执行安全性(SEC),预EFI初始化(PEI)以及随后的驱动器执行环境(DXE)阶段。 一旦在具有处理器的所有计算节点上执行SEC / PEI / DXE阶段,引导设备选择(BDS)阶段通过基于平台策略合并或划分计算节点来完成引导。 分区计算节点每个运行自己的EFI实例。 在计算节点要合并时,可能会在操作系统(OS)启动之前生成公共存储器映射。 描述和要求保护其他实施例。