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    • 92. 发明授权
    • Processing customized uniform resource locators
    • 处理定制的统一资源定位器
    • US6038603A
    • 2000-03-14
    • US824362
    • 1997-03-25
    • Joshy Joseph
    • Joshy Joseph
    • H04L29/06G06F13/38G06F15/17
    • H04L29/06H04L2212/00
    • A first computer system determines whether a URL contains a first value corresponding to an encapsulating protocol. If the URL contains a value corresponding to an encapsulating protocol, the first computer system determines whether the URL contains an operation protocol key indicating that the URL contains a second value corresponding to an operation protocol. If the URL contains a second value corresponding to an operation protocol, the first computer system selects the operation protocol as the protocol to be employed by the first computer system in issuing a communication to a second computer system. A second computer system determines whether a URL it receives contains a first value corresponding to an operation protocol. If the URL contains a first value corresponding to an operation protocol, the second computer system provides a resource targeted to a first computer system in accordance with an encapsulating protocol. The encapsulating protocol is identified by a second value in the URL, and the resource is provided from a resource store that is accessed in accordance with the operation protocol.
    • 第一计算机系统确定URL是否包含对应于封装协议的第一值。 如果URL包含对应于封装协议的值,则第一计算机系统确定URL是否包含指示URL包含与操作协议相对应的第二值的操作协议密钥。 如果URL包含对应于操作协议的第二值,则第一计算机系统选择操作协议作为由第一计算机系统在向第二计算机系统发出通信时采用的协议。 第二计算机系统确定其接收到的URL是否包含与操作协议相对应的第一值。 如果URL包含对应于操作协议的第一值,则第二计算机系统根据封装协议提供针对第一计算机系统的资源。 封装协议由URL中的第二个值标识,资源从根据操作协议访问的资源存储提供。
    • 93. 发明授权
    • Geometry management for displaying objects on a computer
    • 用于在计算机上显示对象的几何管理
    • US5873106A
    • 1999-02-16
    • US531146
    • 1995-09-18
    • Joshy Joseph
    • Joshy Joseph
    • G06T17/00G06T1/00
    • G06T17/00
    • A geometry management system provides an initial bottom-up layout that determines the ideal and default sizes of objects including the pages, views, and frame windows. The geometry management system further includes a top down configuration to handle resizing of a window including the objects contained in the window. The geometry management system includes geometry manager objects, container objects, and child objects. At design or layout time, the child objects are placed in a parent container via a drag and drop operation. The geometry management system specifies size parameters through negotiation among the child objects, the containers, and the high level geometry manager. When a child object requires resizing, the child object requests geometry from the parent container object. Based on the specified parameters, the container determines whether a given geometry is feasible. If the parameters are acceptable, the container implements the geometry. The container may be bound to a geometry manager that implements an overall geometry management policy for the display.
    • 几何管理系统提供初始自下而上的布局,确定对象的理想和默认大小,包括页面,视图和框架窗口。 几何管理系统还包括自顶向下配置以处理包括窗口中包含的对象的窗口的调整大小。 几何管理系统包括几何管理器对象,容器对象和子对象。 在设计或布局时,通过拖放操作将子对象放置在父容器中。 几何管理系统通过协调子对象,容器和高级几何管理器来指定大小参数。 当子对象需要调整大小时,子对象从父容器对象请求几何。 根据指定的参数,容器确定给定几何是否可行。 如果参数是可接受的,容器将实现几何体。 容器可能被绑定到几何管理器,该几何管理器实现了显示器的整体几何管理策略。
    • 94. 发明授权
    • Method and apparatus for building efficient and flexible geometry
management widget classes
    • 用于构建高效灵活的几何管理小部件类的方法和装置
    • US5721848A
    • 1998-02-24
    • US689355
    • 1996-08-07
    • Joshy Joseph
    • Joshy Joseph
    • G06F9/44G06F15/00
    • G06F9/4443
    • The present invention identifies and separates the spatial grouping element from the management element in a geometry management scheme. The management element provides a constraint-resolution engine. A spatial grouping element can describe spatial groupings for graphic user interface (GUI) elements. A spatial group captures and encapsulates the set of constraints that describe the layout of a small portion of a user interface. A higher level spatial group can capture the constraints among the other spatial groups. The present invention provides independent, lightweight spatial-grouping elements that are incorporated into the constraint language of a geometry manager. Further, the present invention allows a GUI component to be grouped with multiple spatial-grouping elements. The present invention restricts the effect of a grouping element to a subset of the available set of dimensions. The present invention minimizes the number of geometry management elements. The present invention provides the ability to introduce geometry management to an existing application with minimal disruption. Further, the present invention postpones the addition of geometry support until after a static layout is perfected. The present invention allows a GUI application to perform dynamic layout alterations to adapt an application's layout to the configuration of a specific graphical environment. Further, the present invention allows an application to easily respond to window resizing. The present invention determines a new layout of a resized window based on previously-specified constraints. Further, the present invention can accommodate length variances resulting from internationalization of a text string.
    • 本发明在几何管理方案中识别和分离空间分组元素与管理元件。 管理元素提供约束分辨率引擎。 空间分组元素可以描述图形用户界面(GUI)元素的空间分组。 空间组捕获并封装描述用户界面的一小部分布局的一组约束。 较高层次的空间群体可以捕获其他空间群体之间的约束。 本发明提供了独立的,轻量级的空间分组元素,其被并入到几何管理器的约束语言中。 此外,本发明允许GUI组件与多个空间分组元素分组。 本发明限制了分组元素对可用维度集合的子集的影响。 本发明使几何管理元件的数量最小化。 本发明提供了以几乎不中断的方式将几何管理引入现有应用的能力。 此外,本发明延迟几何支持的添加,直到静态布局被完善为止。 本发明允许GUI应用程序执行动态布局更改以使应用程序的布局适应特定图形环境的配置。 此外,本发明允许应用程序容易地响应窗口大小调整。 本发明基于先前指定的约束来确定调整大小的窗口的新布局。 此外,本发明可以适应由文本串的国际化导致的长度方差。