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    • 1. 发明申请
    • Virtual USB communications port
    • 虚拟USB通信端口
    • US20050265385A1
    • 2005-12-01
    • US10856066
    • 2004-05-28
    • Daryl CromerBrandon EllisonEric KernHoward LockerEdward Suffern
    • Daryl CromerBrandon EllisonEric KernHoward LockerEdward Suffern
    • G06F13/00G06F13/24H04J3/22
    • G06F13/24
    • A method and system for accessing a remote real communication port (“COM port”) from a server blade in a server blade chassis by creating a virtual COM port in the server blade. A basic input/output system (BIOS) controller monitors an internal COM port in the server blade for communication traffic. Upon detecting the communication traffic, the BIOS controller reroutes the traffic to a virtual USB COM port created by the BIOS controller chipset. The virtual USB COM port directs the communication traffic to an internal universal serial bus (USB) device in the server blade. The USB device then forwards the traffic to an Ethernet media access controller (MAC) input/output (I/O) on a sideband channel to a remote system, which passes the communication traffic to a real COM port in the remote system.
    • 一种通过在服务器刀片服务器中创建虚拟COM端口从服务器刀片服务器机箱中的服务器刀片访问远程实际通信端口(“COM端口”)的方法和系统。 基本的输入/输出系统(BIOS)控制器监视服务器刀片中的内部COM端口以实现通信流量。 在检测到通信流量时,BIOS控制器将流量重新路由到由BIOS控制器芯片组创建的虚拟USB COM端口。 虚拟USB COM端口将通信流量引导到服务器刀片中的内部通用串行总线(USB)设备。 然后,USB设备将流量转发到边带通道上的以太网媒体访问控制器(MAC)输入/输出(I / O)到远程系统,远程系统将通信流量传递到远程系统中的真实COM端口。
    • 3. 发明申请
    • ROM scan memory expander
    • ROM扫描存储器扩展器
    • US20060047858A1
    • 2006-03-02
    • US10929323
    • 2004-08-30
    • William AthertonDaryl CromerRichard DayanScott DunhamEric KernHoward LockerWilliam SchwartzAdam Soderlund
    • William AthertonDaryl CromerRichard DayanScott DunhamEric KernHoward LockerWilliam SchwartzAdam Soderlund
    • G06F3/00
    • G06F9/4411
    • A method and system for booting up multiple PCI peripheral devices, such that the number of bootable PCI peripheral devices is not limited by the amount of computer system memory that is dedicated to storing executable boot code for the peripheral devices. The executable boot code is stored on a Read Only Memory (ROM) on each peripheral device. When a new PCI peripheral device begins to boot up, a check for available memory space in a ROM scan memory address space is performed. If there is not enough available room in the ROM scan memory address space for the new device's executable boot code, then a ROM scan detection logic pages an image of another peripheral device's executable boot code out of the ROM scan memory address space before storing the new device's executable boot code into the ROM scan memory address space.
    • 一种用于引导多个PCI外围设备的方法和系统,使得可引导PCI外围设备的数量不受专用于存储外围设备的可执行引导代码的计算机系统存储器的数量的限制。 可执行启动代码存储在每个外围设备上的只读存储器(ROM)上。 当新的PCI外围设备开始启动时,执行ROM扫描存储器地址空间中可用存储器空间的检查。 如果新设备的可执行启动代码的ROM扫描存储器地址空间中没有足够的可用空间,则ROM扫描检测逻辑在存储新的设备的ROM扫描存储器地址空间之前将另一外围设备的可执行引导代码的映像从ROM扫描存储器地址空间中读出 设备的可执行引导代码进入ROM扫描存储器地址空间。