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    • 1. 发明授权
    • Interprocessor communication protocol
    • 处理器间通信协议
    • US08326918B2
    • 2012-12-04
    • US12263819
    • 2008-11-03
    • Charbel KhawandJean KhawandChin P. Wong
    • Charbel KhawandJean KhawandChin P. Wong
    • G06F15/16
    • G06F9/54G06F2209/541H04L69/32
    • A radio communication device has a baseband processor acting as an InterProcessor Communication (IPC) server and an application processor acting as an IPC client. The baseband processor and the application processor communicate with each other via an IPC network. The IPC server and the IPC client can switch functions via negotiation to allow the IPC client to become the new IPC server. The IPC network includes multiple IPC clients, and remaining IPC clients are instructed to change the IPC address of the IPC server if the IPC client becomes the new IPC server. The IPC network allows any processor that adopts the IPC as its interprocessor communication stack to co-exist together and operate as if the two were actually running on the same processor core sharing a common operating system and memory.
    • 无线电通信设备具有用作处理器间通信(IPC)服务器的基带处理器和充当IPC客户机的应用处理器。 基带处理器和应用处理器通过IPC网络相互通信。 IPC服务器和IPC客户端可以通过协商来切换功能,从而允许IPC客户端成为新的IPC服务器。 IPC网络包括多个IPC客户端,如果IPC客户端成为新的IPC服务器,则其他IPC客户端被指示更改IPC服务器的IPC地址。 IPC网络允许采用IPC作为其处理器间通信栈的任何处理器共同存在,并且运行,就好像这两个处理器实际上运行在共享一个通用操作系统和内存的同一个处理器核心上一样。
    • 6. 发明授权
    • Method for providing improved access times for a communication device
    • 一种用于为通信设备提供改进的访问时间的方法
    • US07239884B2
    • 2007-07-03
    • US10350173
    • 2003-01-23
    • Charbel KhawandAlfred B. WieczorekChin P. Wong
    • Charbel KhawandAlfred B. WieczorekChin P. Wong
    • H04Q7/20H04B7/00H04B1/04
    • H04W52/265H04W52/10H04W52/48H04W52/50H04W72/10
    • A high priority system access technique is provided in which an MS (310) instead of relying on its open loop power level routine to determine its power level for transmission of a system access request uses a higher power level to transmit its access request, such as its RACH preamble. The power level used for transmission of the RACH preamble can be dependent on the particular user and/or in the application (e.g., dispatch, streaming video, etc.). By using a higher power level than the other MSs (520) operating in the system (500), MS (310) has a higher probability of gaining system access and a channel grant in an expeditious fashion. This priority access technique is very helpful for applications that require quick channel grants.
    • 提供了一种高优先级系统接入技术,其中,MS(310)而不是依赖于其开环功率电平例程来确定其用于系统接入请求的传输的功率电平使用较高的功率电平来发送其接入请求,诸如 其RACH序言。 用于发送RACH前导码的功率电平可以取决于特定用户和/或在应用中(例如,调度,流视频等)。 通过使用比在系统(500)中操作的其他MS(520)更高的功率水平,MS(310)具有以快速方式获得系统访问和信道授权的更高概率。 这种优先访问技术对于需要快速通道授权的应用程序非常有帮助。
    • 7. 发明申请
    • Method and apparatus for sharing memory in a multiprocessor system
    • 用于在多处理器系统中共享存储器的方法和装置
    • US20070067511A1
    • 2007-03-22
    • US11233597
    • 2005-09-22
    • Charbel KhawandJean KhawandBin Liu
    • Charbel KhawandJean KhawandBin Liu
    • G06F5/00
    • G06F9/5016
    • A multiprocessor system (100) for sharing memory has a memory (102), and two or more processors (104). The processors are programmed to establish (202) memory buffer pools between the processors, and for each memory buffer pool, establish (204) an array of buffer pointers that point to corresponding memory buffers. The processors are further programmed to, for each array of buffer pointers, establish (206) a consumption pointer for the processor owning the memory buffer pool, and a release pointer for another processor sharing said memory buffer pool, each pointer initially pointing to a predetermined location of the array, and adjust (208-236) the consumption and release pointers according to buffers consumed and released.
    • 用于共享存储器的多处理器系统(100)具有存储器(102)和两个或更多个处理器(104)。 处理器被编程为在处理器之间建立(202)存储器缓冲池,并且对于每个存储器缓冲池,建立(204)指向相应的存储器缓冲器的缓冲器指针阵列(204)。 处理器进一步被编程为对于每个缓冲器指针阵列,建立(206)用于处理器拥有存储器缓冲池的消耗指针,以及用于共享所述存储器缓冲池的另一个处理器的释放指针,每个指针最初指向预定的 阵列的位置,并根据消耗和释放的缓冲区调整(208 - 236)消耗和释放指针。
    • 9. 发明授权
    • Method and apparatus using buffer pools and arrays of buffer pointers for sharing memory in a multiprocessor system
    • 使用缓冲池和用于在多处理器系统中共享存储器的缓冲器指针数组的方法和装置
    • US07487271B2
    • 2009-02-03
    • US11233597
    • 2005-09-22
    • Charbel KhawandJean KhawandBin Liu
    • Charbel KhawandJean KhawandBin Liu
    • G06F3/00G06F12/00G06F15/00
    • G06F9/5016
    • A multiprocessor system (100) for sharing memory has a memory (102), and two or more processors (104). The processors are programmed to establish (202) memory buffer pools between the processors, and for each memory buffer pool, establish (204) an array of buffer pointers that point to corresponding memory buffers. The processors are further programmed to, for each array of buffer pointers, establish (206) a consumption pointer for the processor owning the memory buffer pool, and a release pointer for another processor sharing said memory buffer pool, each pointer initially pointing to a predetermined location of the array, and adjust (208-236) the consumption and release pointers according to buffers consumed and released.
    • 用于共享存储器的多处理器系统(100)具有存储器(102)和两个或更多个处理器(104)。 处理器被编程为在处理器之间建立(202)存储器缓冲池,并且对于每个存储器缓冲池,建立指向相应存储器缓冲器的缓冲器指针阵列(204)。 处理器进一步被编程为对于每个缓冲器指针阵列,建立(206)用于处理器拥有存储器缓冲池的消耗指针,以及用于共享所述存储器缓冲池的另一个处理器的释放指针,每个指针最初指向预定的 阵列的位置,并根据消耗和释放的缓冲区调整(208-236)消耗和释放指针。