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    • 1. 发明申请
    • Bubbling up task severity indicators within a hierarchical tree control
    • 在层次树控件中冒泡任务严重程度指标
    • US20070028188A1
    • 2007-02-01
    • US11189616
    • 2005-07-26
    • Elizabeth Black-ZiegelbeinMichael EtgenBruce Viars
    • Elizabeth Black-ZiegelbeinMichael EtgenBruce Viars
    • G06F9/00G06F3/00
    • G06F11/324
    • Embodiments of the present invention address deficiencies of the art in respect to hierarchical tree controls for application server monitoring and provide a method, system and computer program product for bubbling up condition severity indicators within a hierarchical tree control. In a first embodiment, a computer automated method for bubbling-up condition severity indicators in a hierarchical tree control can include identifying a node in the hierarchical tree control that has been obscured in a collapsed branch of the hierarchical tree control, bubbling-up a status for the identified node to a visible parent node, rendering a status icon for the status adjacent to the visible parent node, and, responsive to an expansion of the collapsed branch rendering the identified node visible, relocating the status icon adjacent to the identified node. Optionally, a depth can be determined for the identified node, a visual characteristic for the status icon can be selected based upon the depth, and the status icon can be rendered using the selected visual characteristic.
    • 本发明的实施例解决了用于应用服务器监视的层次树控制方面的技术缺陷,并且提供了用于在分层树控制中冒泡条件严重性指标的方法,系统和计算机程序产品。 在第一实施例中,用于在分级树控制中冒泡状态严重性指示符的计算机自动化方法可以包括识别分层树控件中已经在分层树控件的折叠分支中被模糊的节点,冒泡状态 将所识别的节点用于可见的父节点,呈现与可见父节点相邻的状态的状态图标,并且响应于展开所识别的节点可见的折叠分支的扩展,重新定位与所识别的节点相邻的状态图标。 可选地,可以为所识别的节点确定深度,可以基于深度来选择状态图标的视觉特征,并且可以使用所选择的视觉特征来呈现状态图标。
    • 2. 发明申请
    • Deploying an application software on a virtual deployment target
    • 在虚拟部署目标上部署应用程序软件
    • US20050289538A1
    • 2005-12-29
    • US10874493
    • 2004-06-23
    • Elizabeth Black-ZiegelbeinThomas GisselBrian MartinLeigh Williamson
    • Elizabeth Black-ZiegelbeinThomas GisselBrian MartinLeigh Williamson
    • G06F9/445G06F9/45
    • G06F8/61
    • Methods and arrangements to propagate application software to a virtual deployment target are contemplated. More specifically, a user may create multiple virtual deployment targets in a software system such as WebSphere™ and deploy applications to multiple the virtual deployment targets without having to manually fit policy-driven applications into each virtual deployment target. Embodiments are particularly advantageous when the application software is a business solution that needs to be deployed multiple times such as during the development and testing of the business solution. For example, application software of a business solution typically includes a group of applications designed to cooperatively function as a single entity. An application bundle such as an Enterprise Application Solution (EAS) file describes the application software and includes pertinent information about the application software, application configuration data, and runtime configuration data to implement the business solution. Then, the application bundle can be deployed automatically or substantially automatically.
    • 考虑将应用软件传播到虚拟部署目标的方法和布置。 更具体地,用户可以在软件系统(例如WebSphere TM)中创建多个虚拟部署目标,并且将应用部署到多个虚拟部署目标,而不必手动地将策略驱动的应用程序适合于每个虚拟部署目标。 当应用软件是需要多次部署的业务解决方案,例如在业务解决方案的开发和测试期间,实施例是特别有利的。 例如,业务解决方案的应用软件通常包括设计为协同地用作单个实体的一组应用。 诸如企业应用解决方案(EAS)文件等应用程序捆绑包描述应用软件,并包括有关应用软件,应用程序配置数据和运行时配置数据的相关信息,以实现业务解决方案。 然后,应用程序包可以自动或基本自动部署。
    • 3. 发明授权
    • Bubbling up task severity indicators within a hierarchical tree control
    • 在层次树控件中冒泡任务严重程度指标
    • US08219917B2
    • 2012-07-10
    • US11189616
    • 2005-07-26
    • Elizabeth Black-ZiegelbeinMichael P. EtgenBruce A. Viars
    • Elizabeth Black-ZiegelbeinMichael P. EtgenBruce A. Viars
    • G06F15/177G06F3/048
    • G06F11/324
    • A computer automated method for bubbling-up condition severity indicators in a hierarchical tree control can include identifying a node in the hierarchical tree control that has been obscured in a collapsed branch of the hierarchical tree control, bubbling-up a status for the identified node to a visible parent node, rendering a status icon for the status adjacent to the visible parent node, and, responsive to an expansion of the collapsed branch rendering the identified node visible, relocating the status icon adjacent to the identified node. Optionally, a depth can be determined for the identified node, a visual characteristic for the status icon can be selected based upon the depth, and the status icon can be rendered using the selected visual characteristic.
    • 用于在层次树控制中冒泡状态严重性指示符的计算机自动化方法可以包括识别分层树控件中已经在分层树控件的折叠分支中被模糊的节点,将识别的节点的状态冒泡 一个可见的父节点,呈现与可见父节点相邻的状态的状态图标,并且响应于折叠的分支的展开,渲染所识别的节点可见,重新定位与所识别的节点相邻的状态图标。 可选地,可以为所识别的节点确定深度,可以基于深度来选择状态图标的视觉特征,并且可以使用所选择的视觉特征来呈现状态图标。
    • 5. 发明申请
    • Dynamic cluster configuration in an on-demand environment
    • 按需环境中的动态群集配置
    • US20050289388A1
    • 2005-12-29
    • US10874494
    • 2004-06-23
    • Elizabeth Black-ZiegelbeinThomas GisselBrian MartinQinhua Wang
    • Elizabeth Black-ZiegelbeinThomas GisselBrian MartinQinhua Wang
    • G06F11/00
    • H04L41/0893G06F9/5061G06F2209/505H04L67/1002
    • Methods, systems, and media are disclosed for clustering. One embodiment includes receiving, by a configuration manager server, a request to create a dynamic cluster member for a dynamic cluster, wherein the request is for work load balancing and the dynamic cluster member is a process. Further, the embodiment includes parameterizing, by the configuration manager server, to create parameters for a dynamic cluster server template based on configuration files of nodes within a nodegroup. The configuration files and the dynamic cluster server template are stored in a central location associated with the configuration manager server. The embodiment also includes populating, by the configuration manager server, the parameters of the dynamic cluster server template with values associated with the nodes. Finally, the embodiment includes instantiating, by the configuration manager server, the process, associated with at least one of the nodes, from the dynamic cluster server template, thereby, creating the dynamic cluster member.
    • 公开了用于聚类的方法,系统和媒体。 一个实施例包括由配置管理器服务器接收为动态集群创建动态集群成员的请求,其中所述请求用于工作负载平衡,并且动态集群成员是进程。 此外,实施例包括由配置管理器服务器基于节点组内的节点的配置文件来为动态集群服务器模板创建参数。 配置文件和动态集群服务器模板存储在与配置管理器服务器相关联的中心位置。 该实施例还包括由配置管理器服务器填充具有与节点相关联的值的动态集群服务器模板的参数。 最后,该实施例包括由配置管理器服务器从动态集群服务器模板实例化与至少一个节点相关联的过程,从而创建动态集群成员。
    • 6. 发明申请
    • Evaluation of a code segment
    • 评估代码段
    • US20050223363A1
    • 2005-10-06
    • US10815208
    • 2004-03-31
    • Elizabeth Black-ZiegelbeinOltea HerescuJoel Ziegelbein
    • Elizabeth Black-ZiegelbeinOltea HerescuJoel Ziegelbein
    • G06F9/44
    • G06F11/3664G06F11/3624G06F11/3668
    • Methods, systems, and media to test a code segment of a source file are disclosed. Various embodiments machine-render a source code skeleton in response to a selection of the code segment, incorporate the code segment into the source code skeleton to generate a temporary source file, insert a monitoring statement into the temporary source file, and compile the temporary source file into a compiled program to output a result. Embodiments may further include executing the compiled program and outputting the result. In addition, some embodiments also initiate compilation of the temporary source file, attempt to resolve a compilation error, and output the compilation error. Some embodiments terminate execution in response to selection of a cancel button. Further, some embodiments delete the temporary source file. Several embodiments also include a file creator, a code gatherer, a code generator, an adaptive compiler, a processor, and an output device.
    • 公开了测试源文件的代码段的方法,系统和媒体。 各种实施例机器 - 响应于代码段的选择来呈现源代码框架,将代码段合并到源代码框架中以生成临时源文件,将监视语句插入到临时源文件中,并编译临时源 将文件转换为编译程序以输出结果。 实施例还可以包括执行编译的程序并输出结果。 另外,一些实施例还启动临时源文件的编译,尝试解决编译错误并输出编译错误。 一些实施例响应于取消按钮的选择终止执行。 此外,一些实施例删除临时源文件。 几个实施例还包括文件创建者,代码采集器,代码生成器,自适应编译器,处理器和输出设备。
    • 7. 发明申请
    • Mapping of a color to a treemap
    • 将颜色映射到树形图
    • US20060082592A1
    • 2006-04-20
    • US10968235
    • 2004-10-19
    • Elizabeth Black-ZiegelbeinGennaro CuomoMarc HaberkornBarton Vashaw
    • Elizabeth Black-ZiegelbeinGennaro CuomoMarc HaberkornBarton Vashaw
    • G09G5/02
    • G06T11/206
    • The inventive process comprises and improved process for displaying hierarchical information in a treemap by associating a different color with each nested treemap in a parent treemap, and generating a gradient for each color to preserve the representative value of varying shades. In general, a user divides the hierarchical information into clusters of nodes, designates a primary weight and a secondary weight for each cluster, and designates a base color for each cluster. The inventive process then divides the range of each cluster's secondary weight into bins, adjusts each cluster's base color to create a distinguishing gradient of the base color, assigns a distinguishing gradient to each bin, and draws a nested treemap for each cluster so that each nested treemap has a cluster's base color and each node in the cluster is represented by a bounding box having a distinct gradient of the cluster's base color.
    • 本发明的方法包括并改进了通过将不同颜色与母版图中的每个嵌套树图相关联并且为每种颜色生成渐变以保持不同色调的代表值来显示树状图中的层次信息的过程。 通常,用户将分层信息划分为节点簇,指定每个群集的主权重和次权重,并为每个群集指定基本颜色。 本发明的过程然后将每个聚类的次要重量的范围划分为箱体,调整每个群集的基本颜色以创建基本颜色的区别梯度,为每个仓分配一个区别梯度,并为每个群集绘制嵌套的树状图,以便每个嵌套 treemap具有集群的基本颜色,并且集群中的每个节点由具有集群基本颜色的不同梯度的边界框表示。