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    • 71. 发明授权
    • Error management topologies
    • 错误管理拓扑
    • US07543179B2
    • 2009-06-02
    • US11385305
    • 2006-03-21
    • Vincent J. ZimmerMichael A. Rothman
    • Vincent J. ZimmerMichael A. Rothman
    • G06F11/00
    • G06F11/0793G06F11/0712G06F11/0724G06F11/0727G06F11/1435G11B20/18G11B20/1883G11B2220/20G11B2220/2516
    • A method may include partitioning a plurality of processor cores into a main partition comprising at least one processor core capable of executing an operating system and an embedded partition comprising at least one different processor core. The embedded partition may be capable of: receiving a write request to write data on a target storage device; communicating with a remote system coupled to the embedded partition and remapping data corresponding to said write request to the remote system; detecting an error when attempting to write data to the storage device, leaving uncommitted data directed to the target storage device; and communicating with said remote system to retrieve the uncommitted data and writing the uncommitted data to the target storage device. The embedded partition of this embodiment may also be capable of performing these operations, at least in part, independently of said operating system being executed on said main partition.
    • 一种方法可以包括将多个处理器核分成包括能够执行操作系统的至少一个处理器核心和包括至少一个不同处理器核心的嵌入式分区的主分区。 嵌入式分区可能能够:接收写入请求以在目标存储设备上写入数据; 与耦合到所述嵌入式分区的远程系统进行通信,并将对应于所述写入请求的数据重新映射到所述远程系统; 当尝试向存储设备写入数据时检测错误,将未提交的数据指向目标存储设备; 并与所述远程系统通信以检索未提交的数据并将未提交的数据写入目标存储设备。 该实施例的嵌入式分区还可能能够至少部分地独立于在所述主分区上执行的所述操作系统来执行这些操作。
    • 72. 发明授权
    • Methods and apparatus for enabling of a remote management agent independent of an operating system
    • 用于启用独立于操作系统的远程管理代理的方法和装置
    • US07543048B2
    • 2009-06-02
    • US10302281
    • 2002-11-22
    • Michael A. RothmanVincent J. ZimmerMark S. DoranAndrew J. Fish
    • Michael A. RothmanVincent J. ZimmerMark S. DoranAndrew J. Fish
    • G06F15/177G06F15/173G06F9/00G06F9/24
    • H04L67/34H04L69/329
    • Methods and apparatus for remotely managing a computer are disclosed. For example, a remote management agent is provided for use in a computer having a processor. The example remote management agent includes a communication agent in communication with the controller to contact a server before an operating system is loaded on the computer to obtain an initialization packet from a server and an initialization packet loader in communication with the controller to load the initialization packet in a protected memory area of the computer, before the operating system is loaded.The remote management agent also includes a monitoring agent, not associated with the operating system, in communication with the controller to monitor the computer for a communication from the server and a command line interface agent, also not associated with the operating system and in communication with the controller to interpret and respond to the communication from the server.
    • 公开了用于远程管理计算机的方法和装置。 例如,提供远程管理代理用于具有处理器的计算机中。 示例性远程管理代理包括与控制器通信的通信代理,以在将操作系统加载到计算机之前联系服务器以获得来自服务器的初始化分组以及与控制器通信的初始化分组加载器以加载初始化分组 在计算机的受保护的存储区域中,在操作系统加载之前。 远程管理代理还包括与操作系统无关的监视代理,与控制器进行通信,以监视计算机与服务器的通信,以及命令行接口代理,也不与操作系统相关联并且与 控制器解释并响应来自服务器的通信。
    • 74. 发明授权
    • Managing peripheral device address space resources using a tunable bin-packing/knapsack algorithm
    • 使用可调整的bin-packing /背包算法来管理外围设备地址空间资源
    • US07478176B2
    • 2009-01-13
    • US11689954
    • 2007-03-22
    • Vincent J. ZimmerMichael A. Rothman
    • Vincent J. ZimmerMichael A. Rothman
    • G06F3/00
    • G06F12/0223G06F12/0646
    • Methods and systems for allocating address space resources to resource requesting peripheral devices in an efficient manner. Resource requests are gathered for enumerated peripheral devices host by a computer platform. A map containing resource alignment requirements is built, and a virtual resource allocation map is computed based on aggregated resource requests and the alignment requirements. The resource aggregations are, in turn, based on a hierarchy of the peripheral devices. A bin-packing algorithm is employed to determine allocation of the resource requests so as to minimize resource address space allocations. The virtual resource map is then used to perform actual resource allocations. The resources include peripheral device I/O address allocation and peripheral device memory address allocations.
    • 用于以有效的方式将地址空间资源分配给资源请求外围设备的方法和系统。 为计算机平台主持的枚举的外围设备收集资源请求。 构建了包含资源对齐要求的映射,并且基于聚合的资源请求和对齐要求来计算虚拟资源分配映射。 资源聚合又依赖于外围设备的层次结构。 采用二进制包装算法来确定资源请求的分配,以最小化资源地址空间分配。 然后,虚拟资源映射用于执行实际的资源分配。 资源包括外围设备I / O地址分配和外围设备内存地址分配。
    • 77. 发明申请
    • Device modeling in a multi-core environment
    • 多核环境中的设备建模
    • US20080228971A1
    • 2008-09-18
    • US11717567
    • 2007-03-13
    • Michael A. RothmanVincent J. Zimmer
    • Michael A. RothmanVincent J. Zimmer
    • G06F13/00G06F13/10G06F9/445
    • G06F9/45558G06F2009/45579
    • A method and apparatus for modeling devices in a multi-core environment is herein described. A hardware offload engine or add-in device is modeled by offload engine code or device model code stored in memory. An event agent in a hypervisor traps accesses to the offload engine or add-in device and routes them to at least one core of a multi-core processor to be serviced. The core of the multi-core processor executes the offload engine code or device model code to emulate the physical hardware offload engine or add-in device to service the access. Therefore, virtual devices may be provided by providing virtual device code, allowing upgrade of a computer system without adding physical hardware.
    • 这里描述了一种用于对多核环境中的设备进行建模的方法和装置。 硬件卸载引擎或加载设备由存储在存储器中的卸载引擎代码或设备型号代码建模。 超级管理程序中的事件代理捕获卸载引擎或加载项设备的访问,并将其路由到待服务的多核处理器的至少一个核心。 多核处理器的核心是执行卸载引擎代码或设备模型代码,以模拟物理硬件卸载引擎或附加设备来维护访问。 因此,可以通过提供虚拟设备代码来提供虚拟设备,允许升级计算机系统而不添加物理硬件。
    • 80. 发明申请
    • System and method for enabling seamless boot recovery
    • 实现无缝引导恢复的系统和方法
    • US20080155331A1
    • 2008-06-26
    • US11540333
    • 2006-09-29
    • Michael A. RothmanVincent J. Zimmer
    • Michael A. RothmanVincent J. Zimmer
    • G06F11/00
    • G06F11/1417
    • In some embodiments, the invention involves a system and method relating to autonomic boot recovery. In at least one embodiment, the present invention utilizes an embedded partition to safeguard boot information to be used in the event of a boot failure. An agent within a VMM may be similarly used. The embedded partition or VMM agent enables the preservation of “Last Known Good” boot configurations as well as providing an agent to provide self-healing to a platform which might have run into some type of corruption of critical data. In some embodiments a variety of intelligent filter mechanisms are enabled to allow a user to target the preservation of only certain types of configuration data. Other embodiments are described and claimed.
    • 在一些实施例中,本发明涉及与自主引导恢复有关的系统和方法。 在至少一个实施例中,本发明利用嵌入式分区来保护在引导失败的情况下使用的引导信息。 可以类似地使用VMM内的代理。 嵌入式分区或VMM代理可以保存“上次已知的”引导配置,并提供一个代理程序来为平台提供自愈功能,该平台可能会遇到某些类型的关键数据损坏。 在一些实施例中,使得各种智能过滤机构能够允许用户仅针对某些类型的配置数据的保留。 描述和要求保护其他实施例。