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    • 2. 发明授权
    • Autonomic recovery from hardware errors in an input/output fabric
    • 从输入/输出结构中的硬件错误自动恢复
    • US07549090B2
    • 2009-06-16
    • US11466290
    • 2006-08-22
    • David Alan BaileyTrung Ngoc NguyenGregory Michael NordstromKanisha PatelSteven Mark Thurber
    • David Alan BaileyTrung Ngoc NguyenGregory Michael NordstromKanisha PatelSteven Mark Thurber
    • G06F11/00
    • G06F11/0793G06F11/0712G06F11/0745
    • An apparatus, program product and method propagate errors detected in an IO fabric element from an IO fabric that is used to couple a plurality of endpoint IO resources to processing elements in a computer. In particular, such errors are propagated to the endpoint IO resources affected by the IO fabric element in connection with recovering from the errors in the IO fabric element. By doing so, a device driver or other program code used to access each affected IO resources may be permitted to asynchronously recover from the propagated error in its associated IO resource, and often without requiring the recovery from the error in the IO fabric element to wait for recovery to be completed for each of the affected IO resources. In addition, an IO fabric may be dynamically configured to support both recoverable and non-recoverable endpoint IO resources. In particular, IO fabric elements within an IO fabric may be dynamically configured to enable machine check signaling in such IO fabric elements in response to detection that an endpoint IO resource is non-recoverable in nature. The IO fabric elements that are dynamically configured as such are disposed within a hardware path that is defined between the non-recoverable resource and a processor that accesses the non-recoverable resource.
    • 装置,程序产品和方法将用于将多个端点IO资源耦合到计算机中的处理元件的IO架构在IO结构元素中检测到的错误传播。 特别地,这些错误被传播到由IO结构元素影响的端点IO资源以及从IO结构元素中的错误的恢复。 通过这样做,可以允许用于访问每个受影响的IO资源的设备驱动程序或其他程序代码从其关联的IO资源中的传播错误异步恢复,并且通常不需要从IO架构元素中的错误中恢复以等待 以便为每个受影响的IO资源完成恢复。 此外,IO结构可以动态配置为支持可恢复和不可恢复的端点IO资源。 特别地,IO结构中的IO结构元素可以被动态地配置成使得在这种IO结构元素中的机器检查信令能够响应于端点IO资源在本质上是不可恢复的检测。 被动态地配置的IO结构元素被布置在在不可恢复资源和访问不可恢复资源的处理器之间定义的硬件路径中。
    • 6. 发明申请
    • Apparatus and Method for Detecting System Reconfiguration and Maintaining Persistent I/O Configuration Data in a Clustered Computer System
    • 用于检测集群计算机系统中系统重新配置和维护持久I / O配置数据的装置和方法
    • US20090198807A1
    • 2009-08-06
    • US12023128
    • 2008-01-31
    • David Alan BaileyTimothy Roy Block
    • David Alan BaileyTimothy Roy Block
    • G06F15/173
    • H04L12/40039H04L12/42
    • In a clustered computer system with multiple power domains, a bus number manager within each power domain manages multiple nodes independently of other power domains. A node within a specified power domain includes a non-volatile memory that includes bus numbering information for its own buses as well as bus numbering information for two of its logically-interconnected neighbors. This creates a distributed database of the interconnection topology for each power domain. Because a node contains bus numbering information about its logical neighbor node(s), the bus numbers for the buses in the nodes are made persistent across numerous different system reconfigurations. The clustered computer system also includes a bus number manager that reads the non-volatile memories in the nodes during initial program load (i.e., boot) that reconstructs the interconnection topology from the information read from the non-volatile memories, and that assigns bus numbers to the buses according to the derived interconnection topology.
    • 在具有多个电源域的集群计算机系统中,每个电源域内的总线号管理器独立于其他电源域管理多个节点。 指定功率域中的节点包括非易失性存储器,其包括用于其自己的总线的总线编号信息以及其逻辑上互连的两个邻居中的两个的总线编号信息。 这为每个电源域创建了互连拓扑的分布式数据库。 因为节点包含有关其逻辑相邻节点的总线编号信息,所以节点中总线的总线号在多个不同的系统重新配置之间被持久化。 集群计算机系统还包括总线编号管理器,其在初始程序加载(即引导)期间读取节点中的非易失性存储器,其根据从非易失性存储器读取的信息重构互连拓扑,并且分配总线编号 根据导出的互连拓扑到总线。
    • 8. 发明授权
    • Detecting system reconfiguration and maintaining persistent I/O configuration data in a clustered computer system
    • 检测系统重新配置并维护集群计算机系统中的持久I / O配置数据
    • US07877471B2
    • 2011-01-25
    • US12023128
    • 2008-01-31
    • David Alan BaileyTimothy Roy Block
    • David Alan BaileyTimothy Roy Block
    • G06F15/173G06F15/16G06F13/00G06F1/00
    • H04L12/40039H04L12/42
    • In a clustered computer system with multiple power domains, a bus number manager within each power domain manages multiple nodes independently of other power domains. A node within a specified power domain includes a non-volatile memory that includes bus numbering information for its own buses as well as bus numbering information for two of its logically-interconnected neighbors. This creates a distributed database of the interconnection topology for each power domain. Because a node contains bus numbering information about its logical neighbor node(s), the bus numbers for the buses in the nodes are made persistent across numerous different system reconfigurations. The clustered computer system also includes a bus number manager that reads the non-volatile memories in the nodes during initial program load (i.e., boot) that reconstructs the interconnection topology from the information read from the non-volatile memories, and that assigns bus numbers to the buses according to the derived interconnection topology.
    • 在具有多个电源域的集群计算机系统中,每个电源域内的总线号管理器独立于其他电源域管理多个节点。 指定功率域中的节点包括非易失性存储器,其包括用于其自己的总线的总线编号信息以及其逻辑上互连的两个邻居中的两个的总线编号信息。 这为每个电源域创建了互连拓扑的分布式数据库。 因为节点包含有关其逻辑相邻节点的总线编号信息,所以节点中总线的总线号在多个不同的系统重新配置之间被持久化。 集群计算机系统还包括总线编号管理器,其在初始程序加载(即引导)期间读取节点中的非易失性存储器,其根据从非易失性存储器读取的信息重构互连拓扑,并且分配总线编号 根据导出的互连拓扑到总线。