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    • 3. 发明申请
    • Method And System For A Platform Level Data Model And Messages For Transferring SMBIOS Structures And Data
    • 用于传输SMBIOS结构和数据的平台级数据模型和消息的方法和系统
    • US20090019278A1
    • 2009-01-15
    • US12045855
    • 2008-03-11
    • Hemal V. ShahStephen HurdRobert R. Swindell
    • Hemal V. ShahStephen HurdRobert R. Swindell
    • G06F15/177
    • G06F9/4401G06F9/44536
    • A platform may comprise a management controller (MC) and a BIOS that may store SMBIOS information that may comprise metadata. SMBIOS information may be stored in the SMBIOS structure table. SMBIOS information may be transferred to the MC and may be communicated from the MC to an entity external to the platform. The BIOS may be inaccessible to the external entity. The MC may communicate with the external entity when the platform is powered ON or OFF. SMBIOS information may be transferred between the BIOS and the MC via a communication link. The MC and/or the BIOS may determine whether SMBIOS information from the MC is up-to-date. SMBIOS information may be copied from the BIOS to the MC if not up-to-date. SMBIOS information may be transferred via SMBIOS messages based on structure type, instance ID and/or handle.
    • 平台可以包括可以存储可以包括元数据的SMBIOS信息的管理控制器(MC)和BIOS。 SMBIOS信息可能存储在SMBIOS结构表中。 SMBIOS信息可以被传送到MC,并且可以从MC传送到平台外部的实体。 BIOS可能无法访问外部实体。 当平台通电或关闭时,MC可以与外部实体进行通信。 SMBIOS信息可以经由通信链路在BIOS和MC之间传送。 MC和/或BIOS可以确定来自MC的SMBIOS信息是否是最新的。 SMBIOS信息可以从BIOS复制到MC,如果不是最新的。 SMBIOS信息可以通过基于结构类型,实例ID和/或句柄的SMBIOS消息传输。
    • 8. 发明授权
    • Credit based flow control scheme over virtual interface architecture for system area networks
    • 基于信用的流量控制方案,用于系统区域网络的虚拟接口架构
    • US06347337B1
    • 2002-02-12
    • US09377914
    • 1999-08-20
    • Hemal V. ShahRajesh S. Madukkarumukumana
    • Hemal V. ShahRajesh S. Madukkarumukumana
    • G06F1300
    • H04L47/10
    • A transport service provider provides a credit-based flow control scheme and is designed to operate over VI Architecture. The credit-based flow control scheme reduces overhead (e.g., reduces buffer copies and kernel processing) by relying upon the reliability properties of the underlying VI Architecture. If the number of send credits is sufficient, then the sender prepares and sends the packet. Otherwise, the sender sends a Credit Request and waits for a Credit Response. Upon receiving the corresponding Credit Response, the sender continues sending data packets. In response to a sender's Credit Request, the receiver sends the Credit Response only when it has enough receive credits (above a threshold value or low water mark).
    • 运输服务提供商提供基于信用的流量控制方案,旨在运行于VI架构。 基于信用的流量控制方案通过依赖于基础VI架构的可靠性特性来减少开销(例如,减少缓冲区副本和内核处理)。 如果发送信用次数足够,则发送者准备并发送数据包。 否则,发送方发送信用请求并等待信用响应。 收到相应的信用响应后,发送方继续发送数据包。 响应发信人的信用申请,接收方只有在有足够的接收信用(高于阈值或低水位)时才发送信用响应。