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    • 7. 发明申请
    • SYSTEM MANAGEMENT INTERRUPT HANDLING FOR MULTI-CORE PROCESSORS
    • 多核处理器的系统管理中断处理
    • WO2014158603A1
    • 2014-10-02
    • PCT/US2014/018664
    • 2014-02-26
    • INTEL CORPORATIONJAYAKUMAR, SarathyKUMAR, Mohan J.KINNEY, Michael D.
    • JAYAKUMAR, SarathyKUMAR, Mohan J.KINNEY, Michael D.
    • G06F9/48G06F9/38
    • G06F9/4812G06F11/0772
    • Technologies for system management interrupt ("SMI") handling include a number of processor cores configured to enter a system management mode ("SMM") in response to detecting an SMI. The first processor core to enter SMM and acquire a master thread lock sets an in-progress flag and executes a master SMI handler without waiting for other processor cores to enter SMM. Other processor cores execute a subordinate SMI handler. The master SMI handler may direct the subordinate SMI handlers to handle core-specific SMIs. The multi-core processor may set an SMI service pending flag in response to detecting the SMI, which is cleared by the processor core that acquires the master thread lock. A processor core entering SMM may immediately resume normal execution upon determining the in-progress flag is not set and the service pending flag is not set, to detect and mitigate spurious SMIs. Other embodiments are described and claimed.
    • 用于系统管理中断(“SMI”)处理的技术包括配置为响应于检测到SMI而进入系统管理模式(“SMM”)的多个处理器核心。 进入SMM并获取主线程锁的第一个处理器核心设置正在进行的标志,并执行主SMI处理程序,而不必等待其他处理器内核进入SMM。 其他处理器核心执行从属SMI处理程序。 主SMI处理程序可以指示下级SMI处理程序来处理核心特定的SMI。 响应于检测到由获取主线程锁的处理器核心清除的SMI,多核处理器可以设置SMI服务挂起标志。 进入SMM的处理器核心在确定进行中标志未被设置并且未设置服务暂挂标志时,可以立即恢复正常执行,以检测和减轻假SMI。 描述和要求保护其他实施例。
    • 9. 发明申请
    • DEVICE CAPABILITY ADDRESSABLE NETWORK
    • 设备能力可寻址网络
    • WO2015047291A1
    • 2015-04-02
    • PCT/US2013/062152
    • 2013-09-27
    • INTEL CORPORATIONGANGULI, MrittikaS, DeepakKUMAR, Mohan J.KRITHIVAS, Ramamurthy
    • GANGULI, MrittikaS, DeepakKUMAR, Mohan J.KRITHIVAS, Ramamurthy
    • G06F15/16
    • H04L45/7453H04L45/302H04L45/44H04L45/64H04L67/10H04L67/303
    • Technologies for using a hash key for communicating via an overlay network include a computing device for receiving a hash key that includes a hash indicative of a requested characteristic of a target computing device and another hash indicative of another requested characteristic of the target computing device. Such technologies may also include parsing the hash key to obtain the hash and the another hash; sending a message that includes the hash to a group of other computing devices; receiving a response message from a computing device of the group indicating that the computing device of the group includes a characteristic matching the requested characteristic; and sending another message that includes the second hash to the computing device of the group in response to receipt of the response message from the computing device of the group.
    • 使用用于通过覆盖网络进行通信的散列密钥的技术包括用于接收散列密钥的计算设备,所述散列密钥包括指示目标计算设备的请求特性的哈希,以及指示所述目标计算设备的另一请求特性的另一散列。 这样的技术还可以包括解析散列密钥以获得散列和另一个散列; 将包括所述散列的消息发送到一组其他计算设备; 从所述组的计算设备接收指示所述组的计算设备包括与所请求的特性匹配的特性的响应消息; 以及响应于从所述组的所述计算设备接收到所述响应消息,向所述组的所述计算设备发送包括所述第二散列的另一个消息。