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    • 1. 发明授权
    • Object-oriented document version tracking method and apparatus
    • 面向对象的文档版本跟踪方法和装置
    • US5890176A
    • 1999-03-30
    • US638904
    • 1996-04-24
    • John W. KishDavid A. WittlerDaniel F. Burkes
    • John W. KishDavid A. WittlerDaniel F. Burkes
    • G06F9/44G06F9/445G06F17/30
    • G06F8/71G06F17/30011G06F9/44521Y10S707/99953Y10S707/99954
    • A single file holds multiple versions of a document composed of an interconnection of objects which themselves have versions and are stored in the file. When the document is changed by changing any of the interconnected objects, a check is first made to determine whether the object version is same as the document version currently being edited. If not, a copy of the object is made and saved. Any version of the document can be reconstructed by interconnecting object versions which have a highest level which is equal to, or less than, the desired document version. Therefore, only objects which are changed are duplicated and copies of objects are only made when an object changes. The interconnection of the objects to form structure of the document is maintained by an interconnection of object pointers. Each object has an associated demand loader object which includes a list of object versions for the associated object plus a pointer to one of the versions. The demand loader object also includes methods for loading the associated object into memory from storage when the object is accessed. In this manner, the whole document does not have to be loaded in order to be accessible.
    • 单个文件包含多个版本的文档,该文档由本身具有版本并存储在文件中的对象的互连组成。 当通过更改任何互连的对象来更改文档时,首先进行检查以确定对象版本是否与当前正在编辑的文档版本相同。 如果没有,则会创建并保存对象的副本。 可以通过互连具有等于或小于所需文档版本的最高级别的对象版本来重建文档的任何版本。 因此,只有被更改的对象被复制,并且对象的副本仅在对象改变时进行。 用于形成文档结构的对象的互连由对象指针的互连维护。 每个对象都有一个关联的请求加载器对象,它包括关联对象的对象版本列表以及指向其中一个版本的指针。 需求加载器对象还包括在访问对象时将相关对象加载到存储器中的方法。 以这种方式,整个文档不必被加载以便可访问。
    • 3. 再颁专利
    • Multiple network protocol encoder/decoder and data processor
    • 多网络协议编码器/解码器和数据处理器
    • USRE39501E1
    • 2007-03-06
    • US10093340
    • 2002-03-06
    • John Shigeto MinamiRyo KoyamaMichael Ward JohnsonMasaru ShinoharaThomas C. PoffDaniel F. Burkes
    • John Shigeto MinamiRyo KoyamaMichael Ward JohnsonMasaru ShinoharaThomas C. PoffDaniel F. Burkes
    • G06F13/00G06F15/16
    • H04L69/12H04L47/50H04L47/6225H04L47/623H04L49/90H04L49/901H04L69/16H04L69/161H04L69/32
    • A multiple network protocol encoder/decoder comprising a network protocol layer, data handler, O.S. State machine, and memory manager state machines implemented at a hardware gate level. Network packets are received from a physical transport level mechanism by the network protocol layer state machine which decodes network protocols such as TCP, IP, User Datagram Protocol (UDP), PPP, and Raw Socket concurrently as each byte is received. Each protocol handler parses and strips header information immediately from the packet, requiring no intermediate memory. The resulting data are passed to the data handler which consists of data state machines that decode data formats such as email, graphics, Hypertext Transfer Protocol (HTTP), Java, and Hypertext Markup Language (HTML). Each data state machine reacts accordingly to the pertinent data, and any data that are required by more than one data state machine is provided to each state machine concurrently, and any data required more than once by a specific data state machine, are placed in a specific memory location with a pointer designating such data (thereby ensuring minimal memory usage). Resulting display data are immediately passed to a display controller. Any outgoing network packets are created by the data state machines and passed through the network protocol state machine which adds header information and forwards the resulting network packet via a transport level mechanism.
    • 一种多网络协议编码器/解码器,包括网络协议层,数据处理器,O.S. 状态机和内存管理器状态机在硬件门级实现。 网络协议层状态机通过网络协议层状态机从物理传输层次机制接收网络数据包,该协议层状态机在收到每个字节时同时解码诸如TCP,IP,用户数据报协议(UDP),PPP和Raw Socket之类的网络协议。 每个协议处理程序从数据包中分析和剥离标题信息,不需要中间存储器。 生成的数据被传递给数据处理程序,数据处理程序由解码数据格式(如电子邮件,图形,超文本传输​​协议(HTTP)),Java和超文本标记语言(HTML)等数据状态机组成。 每个数据状态机对相关数据做出相应的反应,同时向每个状态机提供由多个数据状态机所需的任何数据,并且由特定数据状态机多次需要的任何数据被放置在 具有指定这种数据的指针(从而确保最小的内存使用)的特定存储器位置。 结果显示数据立即传递到显示控制器。 任何传出的网络数据包都是由数据状态机创建的,并通过网络协议状态机,通过传输级别机制来增加报头信息,并转发所产生的网络数据包。
    • 4. 发明授权
    • Multiple network protocol encoder/decoder and data processor
    • 多网络协议编码器/解码器和数据处理器
    • US6034963A
    • 2000-03-07
    • US742085
    • 1996-10-31
    • John Shigeto MinamiRyo KoyamaMichael Ward JohnsonMasaru ShinoharaThomas C. PoffDaniel F. Burkes
    • John Shigeto MinamiRyo KoyamaMichael Ward JohnsonMasaru ShinoharaThomas C. PoffDaniel F. Burkes
    • H04L12/28H04L12/56H04L29/06H04L29/08G06F13/00G06F15/16
    • H04L12/5693H04L47/6225H04L47/623H04L49/90H04L49/901H04L69/12H04L69/16H04L69/161H04L69/32
    • A multiple network protocol encoder/decoder comprising a network protocol layer, data handler, O.S. State machine, and memory manager state machines implemented at a hardware gate level. Network packets are received from a physical transport level mechanism by the network protocol layer state machine which decodes network protocols such as TCP, IP, User Datagram Protocol (UDP), PPP, and Raw Socket concurrently as each byte is received. Each protocol handler parses and strips header information immediately from the packet, requiring no intermediate memory. The resulting data are passed to the data handler which consists of data state machines that decode data formats such as email, graphics, Hypertext Transfer Protocol (HTTP), Java, and Hypertext Markup Language (HTML). Each data state machine reacts accordingly to the pertinent data, and any data that are required by more than one data state machine is provided to each state machine concurrently, and any data required more than once by a specific data state machine, are placed in a specific memory location with a pointer designating such data (thereby ensuring minimal memory usage). Resulting display data are immediately passed to a display controller. Any outgoing network packets are created by the data state machines and passed through the network protocol state machine which adds header information and forwards the resulting network packet via a transport level mechanism.
    • 一种多网络协议编码器/解码器,包括网络协议层,数据处理器,O.S. 状态机和内存管理器状态机在硬件门级实现。 网络协议层状态机通过网络协议层状态机从物理传输层次机制接收网络数据包,该协议层状态机在收到每个字节时同时解码诸如TCP,IP,用户数据报协议(UDP),PPP和Raw Socket之类的网络协议。 每个协议处理程序从数据包中分析和剥离标题信息,不需要中间存储器。 生成的数据被传递给数据处理程序,数据处理程序由解码数据格式(如电子邮件,图形,超文本传输​​协议(HTTP)),Java和超文本标记语言(HTML)等数据状态机组成。 每个数据状态机对相关数据做出相应的反应,同时向每个状态机提供由多个数据状态机所需的任何数据,并且由特定数据状态机多次需要的任何数据被放置在 具有指定这种数据的指针(从而确保最小的内存使用)的特定存储器位置。 结果显示数据立即传递到显示控制器。 任何传出的网络数据包都是由数据状态机创建的,并通过网络协议状态机,通过传输级别机制来增加报头信息,并转发所产生的网络数据包。