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    • 3. 发明授权
    • Route planning using location/time encoded data from location aware snowplows
    • 路线规划使用位置/时间编码数据从位置感知积雪车
    • US08880329B2
    • 2014-11-04
    • US13179985
    • 2011-07-11
    • Thomas M. Gooding
    • Thomas M. Gooding
    • G01C21/36G06F7/70G06F19/00G06G7/00G06G7/76G08G1/09H04M11/04G01C21/34
    • G01C21/3407G01C21/3461G01C21/3691
    • Techniques are described for using geographic location data of snowplows to update a snow depth associated with a section of a surface street. The route of the snowplow may be tracked continuously which allows the snow depth of the street to be reset in real-time. The updated snow depth may then be used to generate a cost of travelling on the street. The travelling cost may then be used to plan a route through the region. Alternatively, the cost may be graphically displayed on a map to permit a user to determine which surface streets to avoid. In another embodiment, the cost of travelling on a particular street may be changed by the attributes of the vehicle that will navigate the snow-covered roads, driver's experience, or the geographic terrain of a road. This new cost may then be used, for example, to plan a route or display roads to avoid.
    • 描述了使用积雪机的地理位置数据来更新与表面街道的一部分相关联的雪深的技术。 可以连续跟踪除雪机的路线,这样可以实时地重置街道的雪深。 然后可以使用更新的雪深来产生在街上行驶的费用。 然后可以使用旅行成本来规划通过该地区的路线。 或者,成本可以以图形方式显示在地图上,以允许用户确定要避免的表面街道。 在另一个实施例中,在特定街道上行驶的费用可以通过将在雪覆盖的道路,驾驶员的体验或道路的地理地形上导航的车辆的属性来改变。 然后可以使用这种新的成本,例如,计划路线或显示要避免的道路。
    • 7. 发明授权
    • Hierarchical debug information collection
    • 分层调试信息收集
    • US07954012B2
    • 2011-05-31
    • US12258989
    • 2008-10-27
    • Thomas M. Gooding
    • Thomas M. Gooding
    • G06F11/00
    • G06F11/3636G06F11/3656
    • Embodiments of the invention are generally related to retrieving debug data from a plurality of nodes of a parallel computer system. To retrieve debug data, a message may be broadcast from a service node of the system to each of the plurality of nodes via a first network, the message indicating a debug operation that is to be performed. A node of the plurality of nodes may transfer an interrupt signal to the rest of the plurality of nodes via a second network. Upon receiving the interrupt signal, the plurality of nodes may perform the debug operation comprising transferring the debug data to the service node via a third network.
    • 本发明的实施例通常涉及从并行计算机系统的多个节点检索调试数据。 为了检索调试数据,可以经由第一网络将消息从系统的服务节点广播到多个节点中的每一个,该消息指示要执行的调试操作。 多个节点的节点可以经由第二网络将中断信号传送到多个节点的其余部分。 在接收到中断信号时,多个节点可以执行调试操作,包括经由第三网络将调试数据传送到服务节点。
    • 9. 发明申请
    • HEAP/STACK GUARD PAGES USING A WAKEUP UNIT
    • HEAP / STACK GUARD页面使用唤醒单元
    • US20110119445A1
    • 2011-05-19
    • US12696817
    • 2010-01-29
    • Thomas M. GoodingDavid L. SatterfieldBurkhard Steinmacher-Burow
    • Thomas M. GoodingDavid L. SatterfieldBurkhard Steinmacher-Burow
    • G06F12/08G06F12/00G06F13/24
    • G06F15/17381G06F9/30072
    • A method and system for providing a memory access check on a processor including the steps of detecting accesses to a memory device including level-1 cache using a wakeup unit. The method includes invalidating level-1 cache ranges corresponding to a guard page, and configuring a plurality of wakeup address compare (WAC) registers to allow access to selected WAC registers. The method selects one of the plurality of WAC registers, and sets up a WAC register related to the guard page. The method configures the wakeup unit to interrupt on access of the selected WAC register. The method detects access of the memory device using the wakeup unit when a guard page is violated. The method generates an interrupt to the core using the wakeup unit, and determines the source of the interrupt. The method detects the activated WAC registers assigned to the violated guard page, and initiates a response.
    • 一种用于在处理器上提供存储器访问检查的方法和系统,包括以下步骤:使用唤醒单元检测对包括一级高速缓存的存储设备的访问。 该方法包括使对应于保护页面的1级缓存范围失效,以及配置多个唤醒地址比较(WAC)寄存器以允许访问所选择的WAC寄存器。 该方法选择多个WAC寄存器中的一个,并建立与保护页相关的WAC寄存器。 该方法配置唤醒单元在所选WAC寄存器访问时中断。 当防护页被违反时,该方法使用唤醒单元检测存储设备的访问。 该方法使用唤醒单元为内核生成中断,并确定中断源。 该方法检测分配给违规保护页面的激活的WAC寄存器,并发起响应。
    • 10. 发明申请
    • HIERARCHICAL DEBUG INFORMATION COLLECTION
    • 分层调查信息收集
    • US20100107012A1
    • 2010-04-29
    • US12258989
    • 2008-10-27
    • Thomas M. Gooding
    • Thomas M. Gooding
    • G06F11/00
    • G06F11/3636G06F11/3656
    • Embodiments of the invention are generally related to retrieving debug data from a plurality of nodes of a parallel computer system. To retrieve debug data, a message may be broadcast from a service node of the system to each of the plurality of nodes via a first network, the message indicating a debug operation that is to be performed. A node of the plurality of nodes may transfer an interrupt signal to the rest of the plurality of nodes via a second network. Upon receiving the interrupt signal, the plurality of nodes may perform the debug operation comprising transferring the debug data to the service node via a third network.
    • 本发明的实施例通常涉及从并行计算机系统的多个节点检索调试数据。 为了检索调试数据,可以经由第一网络将消息从系统的服务节点广播到多个节点中的每一个,该消息指示要执行的调试操作。 多个节点的节点可以经由第二网络将中断信号传送到多个节点的其余部分。 在接收到中断信号时,多个节点可以执行调试操作,包括经由第三网络将调试数据传送到服务节点。