会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • EFFICIENT XML JOINS
    • 高效的XML接口
    • US20080294659A1
    • 2008-11-27
    • US12057740
    • 2008-03-28
    • Srinivas PadmanabhuniSriram AnandKrishnendu KuntiMohit Chawla
    • Srinivas PadmanabhuniSriram AnandKrishnendu KuntiMohit Chawla
    • G06F17/30
    • G06F17/30498G06F17/2211G06F17/2247G06F17/30938
    • An XML join between XML documents can be performed by comparing XML elements between the XML documents, obtaining join-selection elements from a first XML document, obtaining join-required elements from one or more other XML documents, and performing the XML join using the elements in the first XML document and the join-required elements. The XML documents can be at different locations connected via a network. Where two XML documents are at different locations, the join-selection elements can be transmitted from a first location (of a first XML document) to a second location (of a second XML document). The join-required elements can be obtained at the second location and transmitted back to the first location. The XML join can then be performed at the first location.
    • XML文档之间的XML连接可以通过比较XML文档之间的XML元素,从第一个XML文档获取连接选择元素,从一个或多个其他XML文档获取连接所需元素,以及使用元素执行XML连接来执行XML连接 在第一个XML文档和join-required元素中。 XML文档可以位于通过网络连接的不同位置。 在两个XML文档位于不同位置的情况下,连接选择元素可以从(第一XML文档)的第一位置传输到第二个XML文档的第二位置。 可以在第二位置获得连接所需要的元素并将其发送回到第一位置。 然后可以在第一个位置执行XML连接。
    • 2. 发明授权
    • Efficient XML joins
    • 高效的XML连接
    • US07908301B2
    • 2011-03-15
    • US12057740
    • 2008-03-28
    • Srinivas PadmanabhuniSriram AnandKrishnendu KuntiMohit Chawla
    • Srinivas PadmanabhuniSriram AnandKrishnendu KuntiMohit Chawla
    • G06F17/30
    • G06F17/30498G06F17/2211G06F17/2247G06F17/30938
    • An XML join between XML documents can be performed by comparing XML elements between the XML documents, obtaining join-selection elements from a first XML document, obtaining join-required elements from one or more other XML documents, and performing the XML join using the elements in the first XML document and the join-required elements. The XML documents can be at different locations connected via a network. Where two XML documents are at different locations, the join-selection elements can be transmitted from a first location (of a first XML document) to a second location (of a second XML document). The join-required elements can be obtained at the second location and transmitted back to the first location. The XML join can then be performed at the first location.
    • XML文档之间的XML连接可以通过比较XML文档之间的XML元素,从第一个XML文档获取连接选择元素,从一个或多个其他XML文档获取连接所需元素以及使用元素执行XML连接来执行XML连接 在第一个XML文档和join-required元素中。 XML文档可以位于通过网络连接的不同位置。 在两个XML文档位于不同位置的情况下,连接选择元素可以从(第一XML文档)的第一位置传输到第二个XML文档的第二位置。 可以在第二位置获得连接所需要的元素并将其发送回到第一位置。 然后可以在第一个位置执行XML连接。
    • 3. 发明申请
    • METHOD AND SYSTEM FOR MASSIVE LARGE SCALE TEST INFRASTRUCTURE
    • 大规模测试基础设施的方法和系统
    • US20110083122A1
    • 2011-04-07
    • US12898588
    • 2010-10-05
    • Jih-Yin ChenAshit Kumar JainChris ChenJohn AkerleyMohit ChawlaAaron ArrudaCheng LeongBala Subramanian
    • Jih-Yin ChenAshit Kumar JainChris ChenJohn AkerleyMohit ChawlaAaron ArrudaCheng LeongBala Subramanian
    • G06F9/44
    • G06F11/3668G06F11/3664
    • An automated system is provided to support massive scale grid of machines in a rapid, multi-developer coding environment. The system has virtual testing environments that are created from template machines, supporting various software versions for various code branches. The grid is built by having a small subset of template machines (e.g. with Oracle 9g, 10g, and application server installations), images of the template machines, virtual machine instances created by applying one or more of the image templates, which then are used by the virtual testing environment. Upon receipt of code changes, changes are checked-out, compiled, tested on various test feeds on a virtual testing environment, which is destroyed and re-created after every test run. Any software version upgrades or bug fixes need to be applied only to the template machines. The number of virtual machines associated with any particular template machine is dynamically configurable to provision for optimal use of testing machines.
    • 提供了一种自动化系统,用于在快速,多开发人员编码环境中支持大规模的机器网格。 该系统具有从模板机创建的虚拟测试环境,支持各种代码分支的各种软件版本。 网格是通过拥有一小部分模板机(例如使用Oracle 9g,10g和应用程序服务器安装)构建的,模板机器的映像,通过应用一个或多个图像模板创建的虚拟机实例,然后使用 通过虚拟测试环境。 在接收到代码更改后,将在虚拟测试环境中的各种测试源上检查,编译,测试更改,每个测试运行后都将被破坏并重新创建。 任何软件版本升级或错误修复只需要应用于模板机器。 与任何特定模板机器相关联的虚拟机的数量是可动态配置的,以便最佳地使用测试机器。