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    • 2. 发明授权
    • Transferring application state across devices with checkpoints
    • 在具有检查点的设备之间传送应用程序状态
    • US08812601B2
    • 2014-08-19
    • US13247725
    • 2011-09-28
    • Cheng-Hsueh Andrew HsiehChinyue ChenYung-Chieh LoJason ParksNicholas Julian PellyJeffrey William Hamilton
    • Cheng-Hsueh Andrew HsiehChinyue ChenYung-Chieh LoJason ParksNicholas Julian PellyJeffrey William Hamilton
    • G06F15/16
    • G06F9/4856
    • A first client device executes a plurality of actively running applications, each having one or more checkpoints, each checkpoint identifying an execution breakpoint at which a respective application can be suspended and subsequently resumed. The first client device detects a transfer triggering condition, stores an application state for each of the plurality of actively running applications, and transmits the stored application state for each of the plurality of actively running applications to a second client device or system. The stored application state for each respective application of the plurality of actively running applications corresponds to a checkpoint of the respective application. Optionally, the transfer triggering condition includes presence of the second client device or system within a predefined proximity of the first client device or system, wherein the predefined proximity is a predefined proximity for near field communication.
    • 第一客户端设备执行多个主动运行的应用程序,每个应用程序具有一个或多个检查点,每个检查点标识执行断点,在该断点处可以暂停相应的应用程序并随后恢复。 第一客户端设备检测到传送触发条件,为多个主动运行的应用中的每一个存储应用状态,并将多个主动运行应用中的每一个的存储的应用状态发送到第二客户端设备或系统。 多个主动运行应用程序的每个应用程序的存储应用程序状态对应于相应应用程序的检查点。 可选地,传送触发条件包括第二客户端设备或系统在第一客户端设备或系统的预定接近度内的存在,其中预定义的接近度是用于近场通信的预定接近度。
    • 3. 发明申请
    • Transferring Application State Across Devices with Checkpoints
    • 通过检查点传输跨设备的应用程序状态
    • US20120290663A1
    • 2012-11-15
    • US13247725
    • 2011-09-28
    • Cheng-Hsueh Andrew HsiehChinyue ChenYung-Chieh LoJason ParksNicholas Julian PellyJeffrey William Hamilton
    • Cheng-Hsueh Andrew HsiehChinyue ChenYung-Chieh LoJason ParksNicholas Julian PellyJeffrey William Hamilton
    • G06F15/16
    • G06F9/4856
    • A first client device executes a plurality of actively running applications, each having one or more checkpoints, each checkpoint identifying an execution breakpoint at which a respective application can be suspended and subsequently resumed. The first client device detects a transfer triggering condition, stores an application state for each of the plurality of actively running applications, and transmits the stored application state for each of the plurality of actively running applications to a second client device or system. The stored application state for each respective application of the plurality of actively running applications corresponds to a checkpoint of the respective application. Optionally, the transfer triggering condition includes presence of the second client device or system within a predefined proximity of the first client device or system, wherein the predefined proximity is a predefined proximity for near field communication.
    • 第一客户端设备执行多个主动运行的应用程序,每个应用程序具有一个或多个检查点,每个检查点标识执行断点,在该断点处可以暂停相应的应用程序并随后恢复。 第一客户端设备检测到传送触发条件,为多个主动运行的应用中的每一个存储应用状态,并将多个主动运行的应用中的每一个的存储的应用状态发送到第二客户端设备或系统。 多个主动运行应用程序的每个应用程序的存储应用程序状态对应于相应应用程序的检查点。 可选地,传送触发条件包括第二客户端设备或系统在第一客户端设备或系统的预定接近度内的存在,其中预定义的接近度是用于近场通信的预定接近度。
    • 9. 发明授权
    • Printing to a cloud printer via NFC
    • 通过NFC打印到云打印机
    • US08189225B1
    • 2012-05-29
    • US13253026
    • 2011-10-04
    • Yung-Chieh LoChinyue Chen
    • Yung-Chieh LoChinyue Chen
    • G06F15/00G06F15/16
    • G06F3/122G06F3/1204G06F3/1206G06F3/1228G06F3/1262G06F3/1267G06F3/1268G06F3/1287G06F3/1292H04L67/2842
    • A system and machine-implemented method for sending a print request from a device to a cloud printer within a cloud, the cloud comprising the cloud printer and a cloud server. A network connection is established with the cloud server, and print data is transmitted from the device to the cloud server via the network connection. Print data location information is received from the cloud server via the network connection, the print data location information specifying an address of the print data in the cloud. An NFC connection is established with the cloud printer, and a print request is sent to the cloud printer via the NFC connection. The print request includes the print data location information and is configured to be used by the cloud printer to obtain the print data from the cloud.
    • 一种用于将打印请求从设备发送到云中的云打印机的系统和机器实现的方法,所述云包括云打印机和云服务器。 与云服务器建立网络连接,打印数据通过网络连接从设备传输到云服务器。 通过网络连接从云服务器接收打印数据位置信息,打印数据位置信息指定云中打印数据的地址。 与云打印机建立NFC连接,并通过NFC连接将打印请求发送到云打印机。 打印请求包括打印数据位置信息,并被配置为由云打印机使用以从云获取打印数据。
    • 10. 发明授权
    • Network configuration and authorization
    • 网络配置和授权
    • US08763094B1
    • 2014-06-24
    • US13232644
    • 2011-09-14
    • Andrew HsiehChinyue ChenYung-chieh Lo
    • Andrew HsiehChinyue ChenYung-chieh Lo
    • G06F7/04
    • H04L41/0806H04L63/0492H04L63/08H04W12/04H04W12/06H04W88/12
    • Various aspects of this disclosure are directed to receiving, by a first computing device, one or more communications from a second device. The one or more communications may be transmitted using a short range wireless communication protocol. The one or more communications may include network configuration information usable to connect the first computing device to a first network and network authentication information. The first computing device may configure the first computing device to connect to the first network using the network configuration information. The first computing device may automatically connect to the first network by at least submitting, using a hypertext transfer protocol (HTTP) authentication mechanism, the authentication information to a third computing device that manages access to a second network accessible using the first network.
    • 本公开的各个方面涉及由第一计算设备接收来自第二设备的一个或多个通信。 可以使用短距离无线通信协议来发送一个或多个通信。 一个或多个通信可以包括可用于将第一计算设备连接到第一网络的网络配置信息和网络认证信息。 第一计算设备可以使用网络配置信息来配置第一计算设备来连接到第一网络。 第一计算设备可以通过至少使用超文本传输​​协议(HTTP)认证机制将认证信息提交给管理对使用第一网络可访问的第二网络的访问的第三计算设备来自动连接到第一网络。