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    • 2. 发明申请
    • Automatic Management of Configuration Parameters and Parameter Management Engine
    • 自动管理配置参数和参数管理引擎
    • US20120102160A1
    • 2012-04-26
    • US13276520
    • 2011-10-19
    • Jochen BrehGeorg EmberWalter HaenelThomas Spatzier
    • Jochen BrehGeorg EmberWalter HaenelThomas Spatzier
    • G06F15/177
    • G06F9/5061
    • A mechanism is provided for an automatic management of configuration parameters of computing resources between related computing systems. Services instances of computing systems are generated according to associated configuration parameter sets and respective corresponding configuration parameter values. A determination is made of configuration parameter value changes in the configuration parameter sets for each generated service instance of the computing systems. The configuration parameter value changes for each generated service instance are compared with a first subset configuration parameter values and with a second subset configuration parameter values. The determined configuration parameter value changes in one service instance are then propagated to another service instance according to a definition of rules for mapping configuration parameters and their values between second subsets of configuration parameters.
    • 提供了一种用于自动管理相关计算系统之间的计算资源的配置参数的机制。 计算系统的服务实例根据相关配置参数集和相应的对应配置参数值生成。 确定计算系统的每个生成的服务实例的配置参数集中的配置参数值变化。 将每个生成的服务实例的配置参数值更改与第一子集配置参数值和第二子组配置参数值进行比较。 根据用于映射配置参数的规则的定义及其在配置参数的第二子集之间的值,将一个服务实例中确定的配置参数值更改传播到另一个服务实例。
    • 3. 发明申请
    • METHOD, SYSTEM, AND COMPUTER PROGRAM PRODUCT FOR ENABLING FILE SYSTEM TAGGING BY APPLICATIONS
    • 方法,系统和计算机程序产品,用于启动应用程序的文件系统标签
    • US20100114977A1
    • 2010-05-06
    • US12258493
    • 2008-10-27
    • Utz BacherEinar LueckThomas Spatzier
    • Utz BacherEinar LueckThomas Spatzier
    • G06F7/06G06F17/30
    • G06F17/3012
    • A method for enabling file system tagging by an application includes creating tag associations for the file system by associating a tag with a file object. The association includes allocating a file association structure (FAS) in the storage device, which FAS has attributes including a pointer to a file handle of the file object and a list of names of tags associated with the file object. Associating the tag with a file object also includes allocating a tag structure for each tag in the file system. The tag structure includes a tag name and file associations for the tag. In response to a request for a read directory operation, the method includes retrieving the tag associations to identify the file object, dynamically assembling a directory entry structure that includes a hierarchical view of tags identified from the tag associations and corresponding file object, and returning the directory entry structure to the application.
    • 用于启用应用程序的文件系统标记的方法包括通过将标签与文件对象相关联来为文件系统创建标签关联。 所述关联包括在所述存储设备中分配文件关联结构(FAS),所述FAS具有包括指向所述文件对象的文件句柄的指针的属性和与所述文件对象相关联的标签的名称的列表。 将标签与文件对象相关联还包括为文件系统中的每个标签分配标签结构。 标签结构包括标签的标签名称和文件关联。 响应于读取目录操作的请求,该方法包括检索标签关联以识别文件对象,动态地组合目录条目结构,其包括从标签关联和对应的文件对象识别的标签的分层视图,并且返回 目录条目结构到应用程序。
    • 4. 发明授权
    • Automatic management of configuration parameters and parameter management engine
    • 自动管理配置参数和参数管理引擎
    • US08805970B2
    • 2014-08-12
    • US13276520
    • 2011-10-19
    • Jochen BrehGeorg EmberWalter HaenelThomas Spatzier
    • Jochen BrehGeorg EmberWalter HaenelThomas Spatzier
    • G06F15/173G06F9/50
    • G06F9/5061
    • A mechanism is provided for an automatic management of configuration parameters of computing resources between related computing systems. Services instances of computing systems are generated according to associated configuration parameter sets and respective corresponding configuration parameter values. A determination is made of configuration parameter value changes in the configuration parameter sets for each generated service instance of the computing systems. The configuration parameter value changes for each generated service instance are compared with a first subset configuration parameter values and with a second subset configuration parameter values. The determined configuration parameter value changes in one service instance are then propagated to another service instance according to a definition of rules for mapping configuration parameters and their values between second subsets of configuration parameters.
    • 提供了一种用于自动管理相关计算系统之间的计算资源的配置参数的机制。 计算系统的服务实例根据相关配置参数集和相应的对应配置参数值生成。 确定计算系统的每个生成的服务实例的配置参数集中的配置参数值变化。 将每个生成的服务实例的配置参数值更改与第一子集配置参数值和第二子组配置参数值进行比较。 根据用于映射配置参数的规则的定义及其在配置参数的第二子集之间的值,将一个服务实例中确定的配置参数值更改传播到另一个服务实例。
    • 5. 发明授权
    • Method, system, and computer program product for enabling file system tagging by applications
    • 方法,系统和计算机程序产品,用于启用应用程序的文件系统标记
    • US08694497B2
    • 2014-04-08
    • US12258493
    • 2008-10-27
    • Utz BacherEinar LueckThomas Spatzier
    • Utz BacherEinar LueckThomas Spatzier
    • G06F7/00
    • G06F17/3012
    • A method for enabling file system tagging by an application includes creating tag associations for the file system by associating a tag with a file object. The association includes allocating a file association structure (FAS) in the storage device, which FAS has attributes including a pointer to a file handle of the file object and a list of names of tags associated with the file object. Associating the tag with a file object also includes allocating a tag structure for each tag in the file system. The tag structure includes a tag name and file associations for the tag. In response to a request for a read directory operation, the method includes retrieving the tag associations to identify the file object, dynamically assembling a directory entry structure that includes a hierarchical view of tags identified from the tag associations and corresponding file object, and returning the directory entry structure to the application.
    • 用于启用应用程序的文件系统标记的方法包括通过将标签与文件对象相关联来为文件系统创建标签关联。 所述关联包括在所述存储设备中分配文件关联结构(FAS),所述FAS具有包括指向所述文件对象的文件句柄的指针的属性和与所述文件对象相关联的标签的名称的列表。 将标签与文件对象相关联还包括为文件系统中的每个标签分配标签结构。 标签结构包括标签的标签名称和文件关联。 响应于读取目录操作的请求,该方法包括检索标签关联以识别文件对象,动态地组合目录条目结构,其包括从标签关联和对应的文件对象识别的标签的分层视图,并且返回 目录条目结构到应用程序。
    • 6. 发明申请
    • METHOD FOR EXECUTING A BUSINESS PROCESS BY A STANDARD BUSINESS PROCESS ENGINE
    • 通过标准业务流程引擎执行业务流程的方法
    • US20120265572A1
    • 2012-10-18
    • US13444293
    • 2012-04-11
    • GERD BREITERMATTHIAS KLOPPMANNTHOMAS SPATZIER
    • GERD BREITERMATTHIAS KLOPPMANNTHOMAS SPATZIER
    • G06Q10/06
    • G06Q10/06316G06F8/20G06Q10/06
    • Executing a business process can include providing a context data object including a payload data structure for storing a payload data and automatically splitting an annotated context data object into one or more utility data objects. Responsive to creating a second utility data object, a pre-processing task can be injected into the business process, the pre-processing task using a copy of a first mapping to read data from the predefined data structure instance and to store the read data as payload data in the payload data structure of the first utility data object. Responsive to creating a third utility object, a post-processing task can be injected into the business process. The post-processing task can use a copy of the second mapping to write the payload data of the first utility data object to elements of a predefined data structure instance.
    • 执行业务流程可以包括提供上下文数据对象,包括用于存储有效载荷数据的有效载荷数据结构,并自动将注释的上下文数据对象分割成一个或多个实用程序数据对象。 响应于创建第二实用程序数据对象,预处理任务可以被注入到业务流程中,预处理任务使用第一映射的副本从预定义的数据结构实例中读取数据并将读取的数据存储为 第一效用数据对象的有效载荷数据结构中的有效载荷数据。 响应于创建第三个实用程序对象,可以将后处理任务注入到业务流程中。 后处理任务可以使用第二映射的副本将第一实用程序数据对象的有效载荷数据写入预定义数据结构实例的元素。
    • 8. 发明申请
    • Method and System for Automated Handling of Errors in Execution of System Management Flows Consisting of System Management Tasks
    • 系统管理任务执行系统管理流程错误自动处理方法与系统
    • US20080244337A1
    • 2008-10-02
    • US11859078
    • 2007-09-21
    • Gerd BreiterRuediger MaasSteffen RostThomas Spatzier
    • Gerd BreiterRuediger MaasSteffen RostThomas Spatzier
    • G06K5/04
    • G06Q10/06311G06Q10/0633
    • A method and system for automated error handling in system management flows by enhancing workflow engines by an error handling component and by adding a supportive error handling layer to invoked system management tasks which serves m the counterpart to the workflow engine's error handling component. The additional functionality of the task-provided, error handling layer is accessible for the workflow engine via extended Web services interfaces. The workflow engine's error handling component and the task-provided error handling layer allow for the definition of a standard protocol between the workflow engine and invoked tasks for automated error handling. Furthermore, an interface and method of communication between the enhanced workflow engine and an external error resolving device (such as an expert system) is defined with the purpose of using the external error resolving device for automatic error recovery. The internal or external error resolving device is capable of performing corrective actions on the managed IT infrastructure using mechanisms outside the scope of this invention. The benefit of the presented architecture is that the complexity concerning error handling is completely removed from system management flow definitions, and the designer of a system management flow can concentrate on the logical structure of the flow (e.g. the correct sequence of tasks).
    • 一种用于系统管理流程中的自动错误处理的方法和系统,其通过由错误处理组件增强工作流引擎,并通过向调用的系统管理任务添加支持性错误处理层,该系统管理任务与工作流引擎的错误处理组件的对应方一起服务。 任务提供的附加功能,错误处理层可通过扩展Web服务接口访问工作流引擎。 工作流引擎的错误处理组件和任务提供的错误处理层允许在工作流引擎和被调用的任务之间定义标准协议以进行自动化错误处理。 此外,为了自动错误恢复使用外部错误解析装置的目的,定义了增强型工作流引擎与外部错误解析装置(例如专家系统)之间的通信的接口和方法。 内部或外部错误解析设备能够使用超出本发明范围的机制对被管理的IT基础架构执行纠正措施。 所提出的体系结构的好处是,与系统管理流程定义完全相关的错误处理复杂度被完全删除,系统管理流程的设计者可以集中在流程的逻辑结构(例如,正确的任务顺序)上。
    • 9. 发明申请
    • METHOD AND SYSTEM FOR DYNAMICALLY CREATING AND MODIFYING RESOURCE TOPOLOGIES AND EXECUTING SYSTEMS MANAGEMENT FLOWS
    • 动态创造和修改资源拓扑与执行系统管理流程的方法与系统
    • US20080201715A1
    • 2008-08-21
    • US11428725
    • 2006-07-05
    • Gerd BreiterRuediger MaassSteffen RostThomas Spatzier
    • Gerd BreiterRuediger MaassSteffen RostThomas Spatzier
    • G06F9/50
    • G06F9/5038
    • The present invention replaces the prior art Systems Management Flow execution environments with a new Order Processing Environment. The Order Processing Environment consists of an Order Processing Container (“Container” in short), a Relationship Registry, and a Factory Registry. The Factory Registry supports creation of new resource instances. The Relationship Registry stores relationships between resources. The Container gets as input an Order and a start point address for the first resource. The Order is a document (e.g., XML) which includes a number of Tasks for each involved resource without arranging those tasks in a sequence. This differentiates Orders from workflow descriptions used by standard workflow engines. Each Task includes at least all input parameters for executing the Task. The sequence of the Task execution is derived by the Container by using the Relationship Registry which reflects all current Resource Topologies.
    • 本发明用新的订单处理环境代替现有技术的系统管理流程执行环境。 订单处理环境由订单处理容器(简称“容器”),关系注册表和工厂注册表组成。 工厂注册表支持创建新的资源实例。 关系注册表存储资源之间的关系。 容器获取第一个资源的Order和起始地址作为输入。 该订单是一个文档(例如,XML),其包括用于每个相关资源的多个任务,而不排列这些任务。 这使得订单与标准工作流引擎使用的工作流程描述不同。 每个任务至少包括用于执行任务的所有输入参数。 任务执行的顺序由容器通过使用反映所有当前资源拓扑的关系注册表派生。