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    • 23. 发明申请
    • METHODS AND MECHANISMS FOR PROACTIVE MEMORY MANAGEMENT
    • 主动记忆管理的方法与机制
    • US20100199043A1
    • 2010-08-05
    • US12759536
    • 2010-04-13
    • Stuart SechrestMichael R. FortinMehmet IyigunCenk Ergan
    • Stuart SechrestMichael R. FortinMehmet IyigunCenk Ergan
    • G06F12/00
    • G06F12/121G06F12/122
    • A proactive, resilient and self-tuning memory management system and method that result in actual and perceived performance improvements in memory management, by loading and maintaining data that is likely to be needed into memory, before the data is actually needed. The system includes mechanisms directed towards historical memory usage monitoring, memory usage analysis, refreshing memory with highly-valued (e.g., highly utilized) pages, I/O pre-fetching efficiency, and aggressive disk management. Based on the memory usage information, pages are prioritized with relative values, and mechanisms work to pre-fetch and/or maintain the more valuable pages in memory. Pages are pre-fetched and maintained in a prioritized standby page set that includes a number of subsets, by which more valuable pages remain in memory over less valuable pages. Valuable data that is paged out may be automatically brought back, in a resilient manner. Benefits include significantly reducing or even eliminating disk I/O due to memory page faults.
    • 一种主动,有弹性和自调整的内存管理系统和方法,在实际需要数据之前,通过在可能需要的内存中加载和维护数据,从而实现内存管理的实际和可察觉的性能改进。 该系统包括针对历史存储器使用监视,存储器使用分析,具有高价值(例如,高度利用)页面的刷新存储器,I / O预取效率和激进磁盘管理的机制。 基于内存使用信息,页面将以相对值为优先级,并且机制可以预先获取和/或维护内存中更有价值的页面。 页面被预先抓取并维护在优先级备用页面集中,其包括多个子集,通过这些子集,更有价值的页面保留在不太有价值的页面上的内存中。 可以以弹性方式自动带回分页的宝贵数据。 优点包括显着减少或甚至消除由于内存页错误导致的磁盘I / O。
    • 27. 发明授权
    • Methods and mechanisms for proactive memory management
    • 主动记忆管理的方法和机制
    • US07185155B2
    • 2007-02-27
    • US11150728
    • 2005-06-09
    • Stuart SechrestMichael R. FortinMehmet IyigunCenk Ergan
    • Stuart SechrestMichael R. FortinMehmet IyigunCenk Ergan
    • G06F12/00G06F13/00
    • G06F12/121G06F12/122
    • A proactive, resilient and self-tuning memory management system and method that result in actual and perceived performance improvements in memory management, by loading and maintaining data that is likely to be needed into memory, before the data is actually needed. The system includes mechanisms directed towards historical memory usage monitoring, memory usage analysis, refreshing memory with highly-valued (e.g., highly utilized) pages, I/O pre-fetching efficiency, and aggressive disk management. Based on the memory usage information, pages are prioritized with relative values, and mechanisms work to pre-fetch and/or maintain the more valuable pages in memory. Pages are pre-fetched and maintained in a prioritized standby page set that includes a number of subsets, by which more valuable pages remain in memory over less valuable pages. Valuable data that is paged out may be automatically brought back, in a resilient manner. Benefits include significantly reducing or even eliminating disk I/O due to memory page faults.
    • 一种主动,有弹性和自调整的内存管理系统和方法,在实际需要数据之前,通过在可能需要的内存中加载和维护数据,从而实现内存管理的实际和可察觉的性能改进。 该系统包括针对历史存储器使用监视,存储器使用分析,具有高价值(例如,高度利用)页面的刷新存储器,I / O预取效率和激进磁盘管理的机制。 基于内存使用信息,页面将以相对值为优先级,并且机制可以预先获取和/或维护内存中更有价值的页面。 页面被预先抓取并维护在优先级备用页面集中,其包括多个子集,通过这些子集,更有价值的页面保留在不太有价值的页面上的内存中。 可以以弹性方式自动带回分页的宝贵数据。 优点包括显着减少或甚至消除由于内存页错误导致的磁盘I / O。
    • 29. 发明授权
    • System and method for enabling stripped object software monitoring in a
computer system
    • 在计算机系统中实现剥离对象软件监控的系统和方法
    • US5528753A
    • 1996-06-18
    • US269334
    • 1994-06-30
    • Michael R. Fortin
    • Michael R. Fortin
    • G06F11/34G06F11/36G06F11/00
    • G06F11/3612G06F11/3466G06F2201/865
    • A method and system for enabling the monitoring of a target software routine in a stripped object executable on a computer system. The system enables monitor instrumentation of the target routine without access to or recompiling the source code of the object and without access to information required to link with the stripped object. A single demultiplexor entry for each target routine provides access to common instrumentation code and to user specified entry and exit routines for the particular target routine. Common instrumentation code is not replicated when used to monitor a number of software programs. User specified entry and exit routines are used to collect selected performance and system state data. Common instrumentation code is provided to link the target routines to the user specified entry and exit routines. The standard link interface allows the entry and exit routines to be written in high level languages.
    • 一种用于使得能够监视计算机系统上可执行的剥离对象中的目标软件程序的方法和系统。 该系统能够监视目标程序的检测,而无需访问或重新编译对象的源代码,无需访问与剥离对象链接所需的信息。 每个目标程序的单个解复用器条目提供对常用仪器代码的访问以及针对特定目标程序的用户指定的进入和退出程序。 当用于监视多个软件程序时,不会复制常见的检测代码。 用户指定的入口和出口例程用于收集所选的性能和系统状态数据。 提供常用的仪器代码将目标程序链接到用户指定的入口和出口例程。 标准链接界面允许以高级语言编写进入和退出例程。
    • 30. 发明授权
    • Methods and mechanisms for proactive memory management
    • 主动记忆管理的方法和机制
    • US08539186B2
    • 2013-09-17
    • US12759536
    • 2010-04-13
    • Stuart SechrestMichael R. FortinMehmet IyigunCenk Ergan
    • Stuart SechrestMichael R. FortinMehmet IyigunCenk Ergan
    • G06F12/00G06F13/00
    • G06F12/121G06F12/122
    • A proactive, resilient and self-tuning memory management system and method that result in actual and perceived performance improvements in memory management, by loading and maintaining data that is likely to be needed into memory, before the data is actually needed. The system includes mechanisms directed towards historical memory usage monitoring, memory usage analysis, refreshing memory with highly-valued (e.g., highly utilized) pages, I/O pre-fetching efficiency, and aggressive disk management. Based on the memory usage information, pages are prioritized with relative values, and mechanisms work to pre-fetch and/or maintain the more valuable pages in memory. Pages are pre-fetched and maintained in a prioritized standby page set that includes a number of subsets, by which more valuable pages remain in memory over less valuable pages. Valuable data that is paged out may be automatically brought back, in a resilient manner. Benefits include significantly reducing or even eliminating disk I/O due to memory page faults.
    • 一种主动,有弹性和自调整的内存管理系统和方法,在实际需要数据之前,通过将可能需要的数据加载并保存到存储器中,从而实现内存管理的实际和可察觉的性能改进。 该系统包括针对历史存储器使用监视,存储器使用分析,具有高价值(例如,高度利用)页面的刷新存储器,I / O预取效率和激进磁盘管理的机制。 基于内存使用信息,页面将以相对值为优先级,并且机制可以预先获取和/或维护内存中更有价值的页面。 页面被预先抓取并维护在优先级备用页面集中,其包括多个子集,通过这些子集,更有价值的页面保留在不太有价值的页面上的内存中。 可以以弹性方式自动带回分页的宝贵数据。 优点包括显着减少或甚至消除由于内存页错误导致的磁盘I / O。