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    • 41. 发明授权
    • Trusted application migration across computer nodes
    • 跨计算机节点的可信应用程序迁移
    • US09210148B2
    • 2015-12-08
    • US13995511
    • 2011-12-30
    • Mallik BulusuRobert BahnsenVincent J. ZimmerRobert S. GittinsRobert C. Swanson
    • Mallik BulusuRobert BahnsenVincent J. ZimmerRobert S. GittinsRobert C. Swanson
    • H04L29/06G06F21/00
    • H04L63/0876G06F21/00H04L63/08H04W12/06H04W12/08
    • An embodiment includes a secure and stable method for sending information across a compute continuum. For example, the method may include executing an application (e.g., video player) on a first node (e.g., tablet) with a desire to perform “context migration” to a second node (e.g., desktop). This may allow a user to watch a movie on the tablet, stop watching the movie, and then resume watching the movie from the desktop. To do so in a secure and stable manner, the first node may request security and performance credentials from the second node. If both credential sets satisfy thresholds, the first node may transfer content (e.g., encrypted copy of a movie) and state information (e.g., placeholder indicating where the movie was when context transfer began). The second node may then allow the user to resume his or her movie watching from the desktop. Other embodiments are described herein.
    • 一个实施例包括用于在计算连续体上发送信息的安全且稳定的方法。 例如,该方法可以包括在第一节点(例如,平板电脑)上执行应用(例如,视频播放器),期望执行到第二节点(例如桌面)的“上下文迁移”。 这可能允许用户在平板电脑上观看电影,停止观看电影,然后从桌面恢复观看电影。 为了以安全和稳定的方式这样做,第一节点可以从第二节点请求安全性和性能凭证。 如果两个凭证组都满足阈值,则第一节点可以传送内容(例如,电影的加密副本)和状态信息(例如,当上下文传送开始时,指示电影在哪里的占位符)。 然后,第二节点可以允许用户从桌面恢复他或她的电影观看。 本文描述了其它实施例。
    • 47. 发明授权
    • System RAS protection for UMA style memory
    • UMA风格存储器的系统RAS保护
    • US08219851B2
    • 2012-07-10
    • US12649296
    • 2009-12-29
    • Robert C. SwansonMallik BulusuVincent J. Zimmer
    • Robert C. SwansonMallik BulusuVincent J. Zimmer
    • G06F11/00G06F11/20
    • G06F11/1666G06F11/073G06F11/076G06F11/141G06F2201/81
    • In some embodiments, the invention involves a system and method relating to system recovery in a fault resilient manner by isolating errors associated with the management engine (ME) UMA memory. BIOS logs errors occurring on memory within the system. The ME UMA is invisible to the host OS, so the OS will not be notified about the errors occurring in the ME UMA range. When an error threshold has been reached for a memory unit in which ME UMA resides, ME UMA data is migrated to a previously reserved backup region of memory and the ME is notified of the new ME UMA location. The faulty memory is flagged for replacement at a next maintenance cycle. Embodiments may be applied to workstations that utilize ECC memory protection which utilize AMT (Active Management Technology) and ME UMA. Other embodiments are described and claimed.
    • 在一些实施例中,本发明涉及通过隔离与管理引擎(ME)UMA存储器相关联的错误,以故障恢复方式与系统恢复相关的系统和方法。 BIOS记录系统内存上发生的错误。 ME UMA对于主机操作系统是不可见的,因此不会在ME UMA范围内发生错误通知操作系统。 当ME UMA所在的存储单元达到错误阈值时,ME UMA数据被迁移到先前保留的存储器的备份区域,并且ME被通知新的ME UMA位置。 在下一个维护周期,标记有故障的存储器进行更换。 实施例可以应用于利用AMT(主动管理技术)和ME UMA的ECC存储器保护的工作站。 描述和要求保护其他实施例。