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    • 22. 发明授权
    • Early self-validation of persistent memory during boot in an optical transceiver
    • 在光收发器启动期间,持久存储器的早期自我验证
    • US08267600B2
    • 2012-09-18
    • US12817091
    • 2010-06-16
    • Gerald L. DybsetterJayne C. Hahin
    • Gerald L. DybsetterJayne C. Hahin
    • G02B6/36
    • H04B10/40G02B6/4246
    • An operational optical transceiver configured to self-validate a boot image loaded from the persistent memory early in the boot process. The optical transceiver includes a persistent memory, a controller, and a system memory. The controller initializes the boot process and begins to load information from the persistent memory to the system memory. Next, the controller detects early in the boot process boot image verification data in the information being sent to the system memory. The controller then determines if the boot image verification data has an expected value. If the verification data includes the expected value, the controller continues the boot process. If the verification data does not include the expected value, the controller will retry the boot process a predetermined number of times and will enter a default operational state if the expected value is not detected while retrying the boot process the predetermined number of times.
    • 一种可操作的光收发器,被配置为在启动过程中早期自动验证从持久存储器加载的引导映像。 光收发器包括持久存储器,控制器和系统存储器。 控制器初始化引导过程,并开始将信息从永久存储器加载到系统内存。 接下来,控制器在引导过程中早期检测引导映像验证数据中发送给系统存储器的信息。 然后,控制器确定引导映像验证数据是否具有期望值。 如果验证数据包含预期值,则控制器继续启动进程。 如果验证数据不包括预期值,则控制器将重试引导进程预定次数,并且如果在重试引导进程预定次数时未检测到期望值,则将进入默认操作状态。
    • 23. 发明授权
    • Off-module optical transceiver firmware paging
    • 非模块光收发器固件分页
    • US07801449B2
    • 2010-09-21
    • US11220769
    • 2005-09-07
    • Jayne C. HahinGerald L. DybsetterLuke M. Ekkizogloy
    • Jayne C. HahinGerald L. DybsetterLuke M. Ekkizogloy
    • H04B10/00H04B10/12
    • H04B10/1149
    • An optical transceiver (or optical transmitter or optical receiver) that is coupled to a host computing system. The optical transceiver includes a system memory and at least one processor. The optical transceiver operates at least in part by the processor executing microcode from system memory. In order to change operation, the optical transceiver pages microcode segments from the host computing system to the system memory of the optical transceiver to adjust for changing operational circumstances. For example, by this paging, microcode segments that are more likely to be used given the current operational circumstances are loaded into the system memory of the optical transceiver, while microcode segments that are less likely to be used given the current operational circumstances are retained at the host computing system.
    • 耦合到主计算系统的光收发器(或光发射器或光接收器)。 光学收发器包括系统存储器和至少一个处理器。 光收发器至少部分地由处理器从系统存储器执行微代码操作。 为了改变操作,光收发器页面从主计算系统的微码段到光收发器的系统存储器进行调整以适应不断变化的操作环境。 例如,通过这种寻呼,给出当前操作环境更容易被使用的微代码段被加载到光收发器的系统存储器中,而在当前操作环境下不太可能使用的微代码段被保留在 主机计算系统。
    • 25. 发明授权
    • Background consistency checking in an optical transceiver
    • 光收发器背景一致性检查
    • US07543176B2
    • 2009-06-02
    • US11320034
    • 2005-12-28
    • Gerald L. DybsetterJayne C. Hahin
    • Gerald L. DybsetterJayne C. Hahin
    • G06F11/00
    • H04B10/69H04B10/50
    • A method that enables an optical transceiver (or optical transmitter or optical receiver) to perform consistency checking such as Cyclic Redundancy Checking (CRC) in the background while the transceiver is in operation. The optical transceiver includes a system memory and a consistency checker component. The optical transceiver determines that consistency checking is to be performed and identifies non-contiguous static portions of the system memory to be checked. The consistency checker reads the non-contiguous static portions of system memory and determines whether or not the portions of system memory are consistent with an expected consistency check value.
    • 一种使光收发器(或光发送器或光接收器)能够在收发器工作时在背景中执行一致性检查(例如循环冗余校验(CRC))的方法。 光收发器包括系统存储器和一致性检验器组件。 光收发器确定要执行一致性检查,并识别要检查的系统存储器的非连续静态部分。 一致性检查器读取系统内存的不连续的静态部分,并确定系统内存的部分是否与预期的一致性检查值一致。
    • 27. 发明授权
    • Adjustable boot speed in an optical transceiver
    • 光收发器中的可调引导速度
    • US07522840B2
    • 2009-04-21
    • US11114983
    • 2005-04-26
    • Gerald L. DybsetterJayne C. Hahin
    • Gerald L. DybsetterJayne C. Hahin
    • G06F15/177H04B10/00
    • H04B10/40G06F9/4401
    • An operational optical transceiver configured to dynamically adjust the boot speed of the optical transceiver boot process. The optical transceiver includes a persistent memory, a system memory, and a controller configured to load information from the persistent memory to the system memory. The controller initiates the boot process at a slower boot speed and begins to load information from the persistent memory to the system memory. The controller then detects boot speed data in the information being loaded to the system memory that defines a faster boot speed. In response to the detected boot speed data, the controller continues the boot process by loading additional information from the persistent memory to the system memory at a second boot speed that is faster than the first boot speed.
    • 一种可操作的光收发器,被配置为动态调整光收发器引导过程的引导速度。 光学收发器包括持久存储器,系统存储器和被配置为将信息从永久存储器加载到系统存储器的控制器。 控制器以较慢的引导速度启动引导过程,并开始将信息从永久存储器加载到系统内存。 然后,控制器检测正在加载到系统存储器的信息中的引导速度数据,其定义更快的引导速度。 响应于检测到的引导速度数据,控制器通过以比第一引导速度更快的第二引导速度将附加信息从永久存储器加载到系统存储器来继续引导过程。
    • 29. 发明授权
    • Access key enabled update of an optical transceiver
    • 访问密钥启用更新光收发器
    • US07295750B2
    • 2007-11-13
    • US11320180
    • 2005-12-28
    • Luke M. EkkizogloyGerald L. DybsetterJayne C. Hahin
    • Luke M. EkkizogloyGerald L. DybsetterJayne C. Hahin
    • G02B6/00
    • H04B10/40
    • Systems and methods for verifying that an optical transceiver has access privileges to received microcode. An example environment may include an optical transceiver that is coupled to a host computing system. The optical transceiver includes a memory that has thereon an optical transceiver access identifier. The optical transceiver memory is also configured to receive microcode that includes a microcode access identifier. Whenever new microcode is received by the optical transceiver, it is verified whether the optical transceiver should have access privileges to the microcode. To verify that the optical transceiver has access privileges, the optical transceiver access identifier and the microcode access identifier are accessed. The accessed identifiers are then compared with one another. Based on the comparison, the received microcode is loaded into the memory if one or more portions of the access identifiers match.
    • 用于验证光收发器具有接收到的微代码的访问权限的系统和方法。 示例性环境可以包括耦合到主计算系统的光收发器。 光收发器包括其上具有光收发器接入标识符的存储器。 光收发器存储器还被配置为接收包括微代码访问标识符的微码。 每当光收发器接收到新的微码时,验证光收发器是否具有对微码的访问权限。 为了验证光收发器具有访问权限,可以访问光收发器访问标识符和微代码访问标识符。 然后将访问的标识符彼此进行比较。 基于比较,如果访问标识符的一个或多个部分匹配,则将接收到的微代码加载到存储器中。