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    • 31. 发明授权
    • Auto-configuration of an internal VLAN network interface
    • 自动配置内部VLAN网络接口
    • US07720957B2
    • 2010-05-18
    • US12369700
    • 2009-02-11
    • Charles S. GrahamHarvey G. KielChetan MehtaLee A. SendelbachJaya Srikrishnan
    • Charles S. GrahamHarvey G. KielChetan MehtaLee A. SendelbachJaya Srikrishnan
    • G06F15/177G06F15/16
    • H04L12/4641
    • Apparatus and storage media for auto-configuration of an internal network interface are disclosed. Embodiments may install an internal VLAN manager in a logically partitioned computer system along with network agents in each of the partitions in the logically partitioned system to facilitate configuring an internal communications network and the corresponding internal network interfaces in each participating partition. In particular, an administrator accesses internal VLAN manager, selects an internal VLAN ID, selects each of the participating partitions, and configures the communications network with global parameters and ranges. The internal VLAN manager then generates partition parameters and incorporates them into messages for each of the partitions selected to participate in the internal network. Each of the participating partitions receives one of the messages and, in response, invokes the corresponding network agent that extracts partition parameters from the message and creates or re-configures an internal network interface based upon the parameters.
    • 公开了用于内部网络接口的自动配置的装置和存储介质。 实施例可以将逻辑分区计算机系统中的内部VLAN管理器与逻辑分区系统中的每个分区中的网络代理一起安装,以便于配置内部通信网络和每个参与分区中的对应内部网络接口。 特别是,管理员访问内部VLAN管理器,选择内部VLAN ID,选择每个参与分区,并配置全局参数和范围的通信网络。 内部VLAN管理器然后生成分区参数,并将其并入被选择参与内部网络的每个分区的消息中。 每个参与分区接收一个消息,并作为响应,调用从消息中提取分区参数的相应网络代理,并根据参数创建或重新配置内部网络接口。
    • 32. 发明授权
    • Auto-configuration of an internal VLAN network interface
    • 自动配置内部VLAN网络接口
    • US07502842B2
    • 2009-03-10
    • US10670709
    • 2003-09-25
    • Charles S. GrahamHarvey G. KielChetan MehtaLee A. SendelbachJaya Srikrishnan
    • Charles S. GrahamHarvey G. KielChetan MehtaLee A. SendelbachJaya Srikrishnan
    • G06F15/173G06F15/10
    • H04L12/4641
    • Methods and systems for auto-configuration of an internal network interface are disclosed. Embodiments may install an internal VLAN manager in a logically partitioned computer system along with network agents in each of the partitions in the logically partitioned system to facilitate configuring an internal communications network and the corresponding internal network interfaces in each participating partition. In particular, an administrator accesses internal VLAN manager, selects an internal VLAN ID, selects each of the participating partitions, and configures the communications network with global parameters and ranges. The internal VLAN manager then generates partition parameters and incorporates them into messages for each of the partitions selected to participate in the internal network. Each of the participating partitions receives one of the messages and, in response, invokes the corresponding network agent that extracts partition parameters from the message and creates or re-configures an internal network interface based upon the parameters.
    • 公开了用于自动配置内部网络接口的方法和系统。 实施例可以将逻辑分区计算机系统中的内部VLAN管理器与逻辑分区系统中的每个分区中的网络代理一起安装,以便于配置内部通信网络和每个参与分区中的对应内部网络接口。 特别是,管理员访问内部VLAN管理器,选择内部VLAN ID,选择每个参与分区,并配置全局参数和范围的通信网络。 内部VLAN管理器然后生成分区参数,并将其并入被选择参与内部网络的每个分区的消息中。 每个参与分区接收一个消息,并作为响应,调用从消息中提取分区参数的相应网络代理,并根据参数创建或重新配置内部网络接口。
    • 35. 发明授权
    • Method and apparatus for updateable flash memory design and recovery with minimal redundancy
    • 用于可更新闪存设计和恢复的方法和设备,具有最小的冗余
    • US06665813B1
    • 2003-12-16
    • US09631719
    • 2000-08-03
    • Stephanie Maria ForsmanShawn Michael LambethChetan MehtaPaul Edward Movall
    • Stephanie Maria ForsmanShawn Michael LambethChetan MehtaPaul Edward Movall
    • H02H305
    • G06F11/1004
    • A method and an apparatus is presented for updating flash memory that contains a write protected code, a first copy of rewritable recovery code, a second copy of rewritable recovery code, and a rewritable composite code. Each block of rewritable code contains a checksum code to detect if the block of code has been corrupted. If it is detected that the first copy of the recovery code is corrupted then the second copy of the recovery code is copied into the first copy of the recovery code. If it is detected the second copy of the recovery code is corrupted then the first copy of the recovery code is copied into the second copy of the recovery code. The recovery code is responsible for checking and updating the composite code. If it is detected the composite code is corrupted then a fresh copy of the composite code is obtained from a removable storage device or a network connection. The data processing system is booted by executing the write protected code, the first copy of the recovery code, and the composite code. There is a minimum of redundant code by only replicating two copies of the recovery code while, at the same time, guaranteeing both the integrity and the updateability of the flash memory.
    • 提出了一种用于更新包含写保护代码,可重写恢复代码的第一副本,可重写恢复代码的第二副本和可重写复合代码的闪存的方法和装置。 每个可重写代码块包含一个校验和代码,用于检测代码块是否已损坏。 如果检测到恢复代码的第一个副本已损坏,则恢复代码的第二个副本将被复制到恢复代码的第一个副本中。 如果检测到恢复代码的第二个副本已损坏,则恢复代码的第一个副本将被复制到恢复代码的第二个副本中。 恢复代码负责检查和更新复合代码。 如果检测到复合代码已损坏,则从可移动存储设备或网络连接获得复合代码的新副本。 数据处理系统通过执行写保护代码,恢复代码的第一个副本和复合代码来引导。 只有复制两个副本的恢复代码,同时保证了闪存的完整性和可更新性,才有最少的冗余代码。
    • 36. 发明授权
    • Method and system for dynamically selecting a boot process within a data processing system
    • 用于在数据处理系统内动态选择引导过程的方法和系统
    • US06216226B1
    • 2001-04-10
    • US09165625
    • 1998-10-02
    • Salim AghaChetan MehtaMaulin Ishwarbhai Patel
    • Salim AghaChetan MehtaMaulin Ishwarbhai Patel
    • G06F900
    • G06F11/1417
    • A method and system for faster initial program loads by normally booting a data processing system without extended diagnostic tests is disclosed. A service processor is provided and located within the data processing system to monitor the data processing system during runtime operations for a system failure. When a system failure occurs, the service processor enables a diagnostic flag located in non-volatile memory. On the first or next boot of the data processing system after repair of the system failure, the diagnostic flag indicates to the service processor to perform an extended diagnostics test. Upon completion of the extended diagnostics test, the diagnostic flag is disabled and the service processor once again monitors the data processing system for a system failure.
    • 公开了一种通过正常启动数据处理系统而不进行扩展诊断测试来加快初始程序加载的方法和系统。 提供服务处理器并且位于数据处理系统内,以在系统故障的运行时操作期间监视数据处理系统。 当发生系统故障时,服务处理器启用位于非易失性存储器中的诊断标志。 在修复系统故障后,在数据处理系统的第一次或第二次启动时,诊断标志向服务处理器指示执行扩展诊断测试。 在扩展诊断测试完成后,禁用诊断标志,服务处理器再次监视数据处理系统以进行系统故障。