Dynamic user-to-user address book sharing in a mobile station
    3.
    发明授权
    Dynamic user-to-user address book sharing in a mobile station 失效
    移动台中的动态用户到用户通讯录共享

    公开(公告)号:US08260289B2

    公开(公告)日:2012-09-04

    申请号:US12137082

    申请日:2008-06-11

    Abstract: The present invention provides a mobile station implemented method for managing a requested name and phone record. The method comprises steps of the requester associated device receiving a user's identification from a mobile station phonebook owner and a search term. The requester associated device transmits the user identification of the mobile station phonebook owner and the search term. Receiving at least one matching name and phone record, the requester associated device presents the at least one matching name and phone record to a user. The requester associated device receives a user management command to perform an action on the name and phone record. The method may complete when the requester associated device performs the action on the name and phone record.

    Abstract translation: 本发明提供一种用于管理所请求的姓名和电话记录的移动台实现方法。 该方法包括请求者相关联的设备从移动台电话簿所有者和搜索项接收用户标识的步骤。 请求者相关设备发送移动台电话簿所有者的用户标识和搜索项。 接收至少一个匹配的名称和电话记录,请求者相关联的设备向用户呈现至少一个匹配的名称和电话记录。 请求者相关联的设备接收用户管理命令以对名称和电话记录执行动作。 当请求者相关联的设备对名称和电话记录执行动作时,该方法可以完成。

    Composing, forwarding, and rendering email system
    4.
    发明授权
    Composing, forwarding, and rendering email system 有权
    撰写,转发和呈现电子邮件系统

    公开(公告)号:US09177296B2

    公开(公告)日:2015-11-03

    申请号:US12059299

    申请日:2008-03-31

    CPC classification number: G06Q10/107

    Abstract: The present invention provides a computer implemented method for communicating a signature in a received email. Initially, a server receives a source email from a source client, the source email comprising a signature index entry, and a body. The server determines for a first recipient that a first associated destination client is capable of rendering a signature of the signature index entry in response to a selection of an indexed signature. The server, responsive to a determination that the destination client is capable of rendering the signature index entry, forwards the source email to the first recipient as a delivered email using the body of the source email such that an indexed signature is present in the body of the delivered email. In addition, a method for generating a signature header is shown that provides a many to one correspondence between indexed signatures and a signature index entry.

    Abstract translation: 本发明提供了一种用于在接收到的电子邮件中传达签名的计算机实现方法。 最初,服务器从源客户端接收源电子邮件,源邮件包括签名索引条目和正文。 服务器针对第一接收者确定响应于索引签名的选择,第一关联目的地客户端能够呈现签名索引条目的签名。 服务器响应于确定目的地客户端能够呈现签名索引条目,将源电子邮件转发到第一收件人作为所发送的电子邮件,使用源电子邮件的正文,使索引签名存在于主体中 发送的电子邮件。 此外,示出了用于生成签名报头的方法,其提供索引签名和签名索引条目之间的多对一对应关系。

    Virtualize, checkpoint, and restart system V IPC objects during checkpointing and restarting of a software partition
    5.
    发明授权
    Virtualize, checkpoint, and restart system V IPC objects during checkpointing and restarting of a software partition 失效
    虚拟化,检查点和重新启动系统V IPC对象在检查点和重新启动软件分区

    公开(公告)号:US08266636B2

    公开(公告)日:2012-09-11

    申请号:US12242156

    申请日:2008-09-30

    CPC classification number: G06F9/4856 G06F9/5077

    Abstract: Migrating a workload partition (WPAR) is provided. Responsive to receiving a request to checkpoint the WPAR, a list of virtual identifiers used by the WPAR to refer to IPC objects is generated and stored. Each virtual identifier corresponds to an IPC object and to a real identifier used by a kernel that corresponds to the IPC object. IPC object data and control information is collected and stored. Each process in the WPAR stores per process data. Responsive to receiving a request to restart the WPAR, the virtual identifier that the WPAR wants to be used is registered. A new IPC object is created by a kernel. The kernel maps a real identifier used by the kernel for the new IPC object to the registered virtual identifier. The restart process retrieves IPC data and control information and overlays it on the new IPC object. The per process data is restored.

    Abstract translation: 提供了迁移工作负载分区(WPAR)。 响应于接收到WPAR检查点的请求,生成并存储WPAR用于引用IPC对象的虚拟标识符列表。 每个虚拟标识符对应于IPC对象和对应于IPC对象的内核使用的真实标识符。 收集并存储IPC对象数据和控制信息。 WPAR中的每个进程都存储每个进程数据。 响应于接收到重新启动WPAR的请求,注册了WPAR想要使用的虚拟标识符。 一个新的IPC对象是由内核创建的。 内核将新的IPC对象的内核使用的实际标识符映射到已注册的虚拟标识符。 重新启动过程检索IPC数据和控制信息,并将其重叠在新的IPC对象上。 每个进程数据恢复。

    Multi-Participant Communication System With Audio Manager Responsive To Mode Change Requests
    6.
    发明申请
    Multi-Participant Communication System With Audio Manager Responsive To Mode Change Requests 失效
    具有响应模式更改请求的音频管理器的多参与者通信系统

    公开(公告)号:US20120008757A1

    公开(公告)日:2012-01-12

    申请号:US12830879

    申请日:2010-07-06

    CPC classification number: H04M1/72519 H04M3/42238 H04M3/56

    Abstract: A communication system includes a local communication device that communicates with a remote communication device via a wired or wireless communication link between the devices. The local communication device and the remote communication device are each capable of switching between a multiple user mode and a single user private mode in response to a mode change request. The local and remote communication devices include respective profiles that include profile attributes that define how the respective communication device responds to a mode change request. A user of one communication device may send a mode change request to the other communication device. In response to the mode change request, the other communication device changes mode between multiple participant mode and single participant mode if the profile of that communication device permits the mode change.

    Abstract translation: 通信系统包括经由设备之间的有线或无线通信链路与远程通信设备进行通信的本地通信设备。 响应于模式改变请求,本地通信设备和远程通信设备都能够在多用户模式和单个用户专用模式之间切换。 本地和远程通信设备包括各自的配置文件,其包括定义各个通信设备如何响应于模式改变请求的配置文件属性。 一个通信设备的用户可以向另一个通信设备发送模式改变请求。 响应于模式改变请求,如果该通信设备的配置文件允许模式改变,则另一个通信设备在多个参与者模式和单个参与者模式之间改变模式。

    MEETING PLANNING ASSISTANCE VIA NETWORK MESSAGES
    7.
    发明申请
    MEETING PLANNING ASSISTANCE VIA NETWORK MESSAGES 审中-公开
    会议计划帮助通过网络消息

    公开(公告)号:US20090248474A1

    公开(公告)日:2009-10-01

    申请号:US12060410

    申请日:2008-04-01

    CPC classification number: G06Q10/109

    Abstract: The present invention provides a computer implemented method and apparatus to invite people by an email system to meetings or events through a scheduling server of a data processing machine. The scheduling server receives a plurality of invitees, where each invitee's vote has weight in the probability of scheduling a meeting at the desired time. The plurality of vote weights is heterogeneous. The scheduling server receives a meeting duration, a meeting option begin-time, and a meeting option end-time. The scheduling server excludes committed time of each invitee between the at least one meeting option begin-time and the at least one meeting option end-time to form a set of meeting times that are divided into a manageable set of meeting options. The scheduling server presents the manageable set of options to each invitee. The scheduling server receives votes from a voting invitee to form collected votes. Each vote is weighted based on the vote weight of the voting invitee. The scheduling server determines a leading option based on the collected votes and commits the leading option as the scheduled time for the meeting.

    Abstract translation: 本发明提供了一种计算机实现的方法和装置,其通过数据处理机的调度服务器通过电子邮件系统邀请人们进行会议或事件。 调度服务器接收多个受邀者,其中每个被邀请者的投票在所需时间安排会议的概率中具有权重。 多个投票权重是异质的。 调度服务器接收会议持续时间,会议选项开始时间和会议选项结束时间。 所述调度服务器将所述至少一个会议选项开始时间和所述至少一个会议选项结束时间之间的每个被邀请者的承诺时间排除在一起,以形成被分成可管理的一组会议选项的一组会议时间。 调度服务器向每个被邀请者呈现可管理的选项集。 调度服务器从投票邀请者接收投票以形成收集的投票。 每一票都是根据投票人的投票权重加权的。 调度服务器根据所收集的投票确定一个领先选项,并提交领先选项作为会议的预定时间。

    Host trust report based filtering mechanism in a reverse firewall
    8.
    发明授权
    Host trust report based filtering mechanism in a reverse firewall 失效
    反向防火墙中基于主机信任报告的过滤机制

    公开(公告)号:US08375435B2

    公开(公告)日:2013-02-12

    申请号:US12339542

    申请日:2008-12-19

    CPC classification number: H04L63/02 H04L63/0227

    Abstract: Disclosed is a computer implemented method and computer program product to throttle traffic from a source internet protocol address. The reverse firewall inspects payloads of a plurality of packets each packet having a source address identical to the source internet protocol address and a target address corresponding to a receiver host. Responsive to detecting purported good content within at least one of the plurality of packets, the reverse firewall forwards packets having the source address. The reverse firewall determines whether a count of packets having the source address exceeds a safe threshold. The reverse firewall requests a demanded positive trust report from the receiver host, responsive to a determination that the count of packets having the source address exceeds the safe threshold. The reverse firewall determines whether a positive trust report is received from the receiver host that indicates that the source internet protocol address is good. The reverse firewall analyzes a header of packet having the source address without analyzing a payload of the packet, responsive to a determination that the positive trust report is received from the receiver host.

    Abstract translation: 公开了一种计算机实现的方法和计算机程序产品,用于限制源互联网协议地址的流量。 反向防火墙检查多个分组的有效载荷,每个分组具有与源互联网协议地址相同的源地址和对应于接收方主机的目标地址。 响应于在多个分组中的至少一个分组中检测到所述的良好内容,反向防火墙转发具有源地址的分组。 反向防火墙确定源数据包的数量是否超过安全阈值。 响应于确定具有源地址的分组的计数超过安全阈值的确定,反向防火墙从接收方主机请求所请求的肯定信任报告。 反向防火墙确定是否从接收者主机接收到指示源互联网协议地址良好的肯定信任报告。 响应于从接收者主机接收到肯定的信任报告的确定,反向防火墙分析具有源地址的分组的报头,而不分析分组的有效载荷。

    AUDIO DEVICE VOLUME MANAGER USING MEASURED DISTANCE BETWEEN FIRST AND SECOND AUDIO DEVICES TO CONTROL VOLUME GENERATION BY THE SECOND AUDIO DEVICE
    9.
    发明申请
    AUDIO DEVICE VOLUME MANAGER USING MEASURED DISTANCE BETWEEN FIRST AND SECOND AUDIO DEVICES TO CONTROL VOLUME GENERATION BY THE SECOND AUDIO DEVICE 审中-公开
    音频设备管理器使用第一和第二音频设备之间的测量距离来控制由第二音频设备产生的音量

    公开(公告)号:US20120020487A1

    公开(公告)日:2012-01-26

    申请号:US12839489

    申请日:2010-07-20

    Abstract: An audio system includes a first audio device and a second audio device. A communications link connects the first and second audio devices together so that each may communicate with the other. The system includes an audio volume manager that varies the audio output level of the second audio device as a function of the perceived loudness of the second audio device as perceived at the first audio device. To determine the perceived loudness of the second audio device as perceived at the first audio device, the audio volume manager may measure the current distance between the first and second audio devices.

    Abstract translation: 音频系统包括第一音频设备和第二音频设备。 通信链路将第一和第二音频设备连接在一起,使得每个可以与另一个通信。 该系统包括音频管理器,其根据在第一音频设备处感知到的第二音频设备的感知响度而改变第二音频设备的音频输出电平。 为了确定在第一音频设备处感知到的第二音频设备的感知响度,音频音量管理器可以测量第一和第二音频设备之间的当前距离。

    VIRTUALIZE, CHECKPOINT, AND RESTART SYSTEM V IPC OBJECTS DURING CHECKPOINTING AND RESTARTING OF A SOFTWARE PARTITION
    10.
    发明申请
    VIRTUALIZE, CHECKPOINT, AND RESTART SYSTEM V IPC OBJECTS DURING CHECKPOINTING AND RESTARTING OF A SOFTWARE PARTITION 失效
    虚拟化,检查点和重新启动系统V IPC对象在软件分区的检查和重新启动期间

    公开(公告)号:US20100083283A1

    公开(公告)日:2010-04-01

    申请号:US12242156

    申请日:2008-09-30

    CPC classification number: G06F9/4856 G06F9/5077

    Abstract: Migrating a workload partition (WPAR) is provided. Responsive to receiving a request to checkpoint the WPAR, a list of virtual identifiers used by the WPAR to refer to IPC objects is generated and stored. Each virtual identifier corresponds to an IPC object and to a real identifier used by a kernel that corresponds to the IPC object. IPC object data and control information is collected and stored. Each process in the WPAR stores per process data. Responsive to receiving a request to restart the WPAR, the virtual identifier that the WPAR wants to be used is registered. A new IPC object is created by a kernel. The kernel maps a real identifier used by the kernel for the new IPC object to the registered virtual identifier. The restart process retrieves IPC data and control information and overlays it on the new IPC object. The per process data is restored.

    Abstract translation: 提供了迁移工作负载分区(WPAR)。 响应于接收到WPAR检查点的请求,生成并存储WPAR用于引用IPC对象的虚拟标识符列表。 每个虚拟标识符对应于IPC对象和对应于IPC对象的内核使用的真实标识符。 收集并存储IPC对象数据和控制信息。 WPAR中的每个进程都存储每个进程数据。 响应于接收到重新启动WPAR的请求,注册了WPAR想要使用的虚拟标识符。 一个新的IPC对象是由内核创建的。 内核将新的IPC对象的内核使用的实际标识符映射到已注册的虚拟标识符。 重新启动过程检索IPC数据和控制信息,并将其重叠在新的IPC对象上。 每个进程数据恢复。

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