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    • 1. 发明授权
    • System and method for inheriting memory management policies in a data processing systems
    • 在数据处理系统中继承内存管理策略的系统和方法
    • US06981244B1
    • 2005-12-27
    • US09657761
    • 2000-09-08
    • Pradeep K. KathailHaresh KheskaniSrinivas PodilaSebastien Marineau-Mes
    • Pradeep K. KathailHaresh KheskaniSrinivas PodilaSebastien Marineau-Mes
    • G06F9/44
    • G06F11/3664G06F11/362
    • An operating system architecture and method which provides for transparent inheritance of memory management policies in data processing systems and enhanced memory management is disclosed. The operating system provides for a special “debug” process flag to be associated with debug and device management processes. When a source process transmits a message to a destination process, the operating system determines whether the source process is a debug process (i.e., whether the source process contains a debug process flag indicator associated therewith). If the source process is a debug process, a debug process flag indicator is also associated with the destination process. The operating system also reserves a portion of the device's memory (a reserve memory pool) which is only allocated to special “debug” process when the non-reserved pool of memory is depleted.
    • 公开了一种提供数据处理系统中的存储器管理策略的透明继承和增强的存储器管理的操作系统架构和方法。 操作系统提供与调试和设备管理过程相关联的特殊“调试”过程标志。 当源进程向目的地进程发送消息时,操作系统确定源进程是否是调试进程(即,源进程是否包含与其相关联的调试进程标志指示符)。 如果源进程是调试过程,则调试进程标志指示符也与目标进程相关联。 操作系统还保留设备内存的一部分(保留内存池),只有在非预留的内存池耗尽时才将其分配给特殊的“调试”进程。
    • 5. 发明授权
    • Method and system for executing, tracking and restoring temporary router configuration change using a centralized database
    • 使用集中式数据库执行,跟踪和恢复临时路由器配置更改的方法和系统
    • US06704752B1
    • 2004-03-09
    • US09416310
    • 1999-10-12
    • Pradeep K. KathailShoou YiuAndrew Valencia
    • Pradeep K. KathailShoou YiuAndrew Valencia
    • G06F1200
    • H04L41/0813H04L41/0863H04L45/02H04L45/42Y10S707/99943Y10S707/99953
    • A method and system for transacting routing device configurations using a centralized information provider or database system. The invention receives configuration commands from a user of the router. The invention then communicates the configuration command to the centralized database system. The centralized database system manages a storage structure (database tree) having a plurality of tuple nodes, where each tuple node contains configuration data for the router. The centralized database then carries out the configuration change in the appropriate tuple node using the configuration information provided in the configuration command issued by the user. The invention allows the user of the router to “back-out” of such transactions by reverting the configuration of the affected tuple node to its previous or original state. The invention also reverts the configuration of the affected tuple nodes upon the occurrence of certain events.
    • 一种使用集中式信息提供程序或数据库系统来处理路由设备配置的方法和系统。 本发明从路由器的用户接收配置命令。 然后,本发明将配置命令传送到集中式数据库系统。 集中式数据库系统管理具有多个元组节点的存储结构(数据库树),其中每个元组节点包含路由器的配置数据。 然后,集中式数据库使用用户发布的配置命令中提供的配置信息,在适当的元组节点中执行配置更改。 本发明允许路由器的用户通过将受影响的元组节点的配置恢复到其先前或原始状态来“退出”这样的事务。 本发明还在某些事件发生时恢复受影响的元组节点的配置。
    • 6. 发明授权
    • Memory allocation system
    • 内存分配系统
    • US06629111B1
    • 2003-09-30
    • US09418045
    • 1999-10-13
    • Arthur B. StinePradeep K. KathailStephen P. Belair
    • Arthur B. StinePradeep K. KathailStephen P. Belair
    • G06F1200
    • G06F12/1036Y10S707/99956
    • A method of allocating memory for a file includes determining a size of the file and searching a memory segment list to determine whether the file can be stored in one of a plurality of memory segments catalogued in the memory segment list. The memory segment list includes a plurality of entries, each one of the plurality of entries being associated with one of the plurality of memory segments and indicating whether the associated one of the plurality of memory segments includes a hole that is unoccupied, where each of the corresponding ones of the plurality of entries are adapted for identifying the hole and a hole size associated with the hole that identifies an amount of memory within the memory segment that is unoccupied.
    • 为文件分配存储器的方法包括确定文件的大小并搜索存储器段列表以确定文件是否可以存储在存储器段列表中编目的多个存储器段中的一个中。 存储器段列表包括多个条目,多个条目中的每一个与多个存储器段中的一个相关联,并且指示多个存储器段中的相关联的一个存储器段是否包括未被占用的孔,其中, 多个条目中的相应的条目适于识别孔和与孔相关联的孔大小,其识别未被占用的存储器段内的存储器的量。
    • 10. 发明授权
    • RAM based directory layer for a flash file system
    • 基于RAM的目录层为Flash文件系统
    • US06480864B1
    • 2002-11-12
    • US09334041
    • 1999-06-15
    • Albert Meng FongPradeep K. Kathail
    • Albert Meng FongPradeep K. Kathail
    • G06F1730
    • G06F17/30067Y10S707/99932Y10S707/99956
    • A flash file system for use with flash cards and internetwork operating system software is provided. Absolute path names are stored in the name field of existing files on flash cards. When the system is initialized, a directory structure is created and stored in RAM by accessing the absolute path names stored in the name field of each file on the flash cards. Accessing a file on a flash card is then accomplished by traversing the directory structure in RAM, and going directly to the precise location of the file on the flash card, thereby minimizing the amount of information that must be retrieved from the flash cards and greatly increasing the speed of accesses. Additionally, cards designed for use with older, non-modular internetwork operating systems may still be used, as name fields for files in these flash cards may easily be used to store absolute path names.
    • 提供了一种用于闪存卡和互联网操作系统软件的闪存文件系统。 绝对路径名称存储在闪存卡上现有文件的名称字段中。 当系统初始化时,通过访问存储在闪存卡上每个文件的名称字段中的绝对路径名称,创建目录结构并将其存储在RAM中。 然后通过遍历RAM中的目录结构,直接访问闪存卡上的文件的精确位置来实现闪存卡上的文件,从而最大限度地减少闪存卡必须检索的信息量,并大大增加 访问速度。 此外,仍然可以使用设计用于较旧的非模块化互联网络操作系统的卡,因为这些闪存卡中的文件的名称字段可能很容易用于存储绝对路径名称。