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
    • 22. 发明申请
    • PERSISTENT LOCAL STORAGE FOR PROCESSOR RESOURCES
    • 用于处理器资源的本地存储
    • US20100153967A1
    • 2010-06-17
    • US12336546
    • 2008-12-17
    • Paul F. RingsethRick MolloyNiklas GustafssonDavid Callahan
    • Paul F. RingsethRick MolloyNiklas GustafssonDavid Callahan
    • G06F9/46
    • G06F9/5016G06F9/485G06F2212/254G06F2212/2542
    • Local storage may be allocated for each processing resource in a process of a computer system. Each processing resource may be virtualized and may have a one-to-one or a many-to-one correspondence with with physical processors. The contents of each local storage persist across various execution contexts that are executed by a corresponding processing resource. Each local storage may be accessed without synchronization (e.g., locks) by each execution context that is executed on a corresponding processing resource. The local storages provide the ability to segment data and store and access the data without synchronization. The local storages may be used to implement lock-free techniques such as a generalized reduction where a set of values is combined through an associative operator.
    • 可以在计算机系统的过程中为每个处理资源分配本地存储。 每个处理资源可以被虚拟化,并且可以与物理处理器具有一对一或多对一的对应关系。 每个本地存储器的内容在由相应的处理资源执行的各种执行上下文之间保持。 可以通过在相应的处理资源上执行的每个执行上下文来访问每个本地存储器而不进行同步(例如,锁定)。 本地存储提供分段数据并存储和访问数据而无需同步的功能。 本地存储器可以用于实现无锁技术,例如通过关联运算符组合一组值的广义减少。
    • 25. 发明授权
    • Persistent local storage for processor resources
    • 用于处理器资源的持久本地存储
    • US08887162B2
    • 2014-11-11
    • US12336546
    • 2008-12-17
    • Paul F. RingsethRick MolloyNiklas GustafssonDavid Callahan
    • Paul F. RingsethRick MolloyNiklas GustafssonDavid Callahan
    • G06F12/00G06F9/50G06F9/48
    • G06F9/5016G06F9/485G06F2212/254G06F2212/2542
    • Local storage may be allocated for each processing resource in a process of a computer system. Each processing resource may be virtualized and may have a one-to-one or a many-to-one correspondence with with physical processors. The contents of each local storage persist across various execution contexts that are executed by a corresponding processing resource. Each local storage may be accessed without synchronization (e.g., locks) by each execution context that is executed on a corresponding processing resource. The local storages provide the ability to segment data and store and access the data without synchronization. The local storages may be used to implement lock-free techniques such as a generalized reduction where a set of values is combined through an associative operator.
    • 可以在计算机系统的过程中为每个处理资源分配本地存储。 每个处理资源可以被虚拟化,并且可以与物理处理器具有一对一或多对一的对应关系。 每个本地存储器的内容在由相应的处理资源执行的各种执行上下文之间保持。 可以通过在相应的处理资源上执行的每个执行上下文来访问每个本地存储器而不进行同步(例如,锁定)。 本地存储提供分段数据并存储和访问数据而无需同步的功能。 本地存储器可以用于实现无锁技术,例如通过关联运算符组合一组值的广义减少。
    • 27. 发明授权
    • Transformation of an asynchronous transactional messaging language into a web services compatible language
    • 将异步事务消息传递语言转换为Web服务兼容语言
    • US07971195B2
    • 2011-06-28
    • US11670440
    • 2007-02-02
    • Paul F. RingsethDonald James McCrady
    • Paul F. RingsethDonald James McCrady
    • G06F9/45G06F9/44
    • H04L67/02H04L67/40H04L69/329
    • Instructions in an asynchronous transactional messaging language are transformed into instructions that are compatible with the web services. In one embodiment, the asynchronous transactional messaging language is XLANG/s, and the web service languages are the web services description language (WSDL) and the simple object access protocol (SOAP). A programmer simply writes high level declarative statements that pertain to the specific type of business transaction. During compilation, selected instructions are transformed into instructions that are compatible with web services. This transformation is transparent to the designer of the business application. The asynchronous transactional messaging language source files are compiled in an iterative compilation process. During each pass of this compilation process, different variables are parsed. The parsed results are logically organized in a tree structure. The tree structure is traversed in depth first traversal order. During this traversal, instructions are transformed into instructions compatible with web services.
    • 异步事务消息传递语言中的指令被转换为与Web服务兼容的指令。 在一个实施例中,异步事务消息传递语言是XLANG / s,Web服务语言是Web服务描述语言(WSDL)和简单对象访问协议(SOAP)。 程序员只需编写与业务事务的具体类型相关的高级声明性语句。 在编译期间,所选择的指令将转换为与Web服务兼容的指令。 这种转换对业务应用程序的设计者是透明的。 异步事务消息传递语言源文件以迭代编译过程编译。 在编译过程的每次通过期间,将分析不同的变量。 解析结果在逻辑上以树结构组织。 树结构以深度遍历遍历顺序。 在这种遍历过程中,指令将转换为与Web服务兼容的指令。