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    • 1. 发明申请
    • Method for bulk deletion through segmented files
    • 通过分段文件批量删除的方法
    • US20120047188A9
    • 2012-02-23
    • US11156842
    • 2005-06-20
    • Edward ChronFrederick DouglisStephen Morgan
    • Edward ChronFrederick DouglisStephen Morgan
    • G06F17/30
    • G06F17/30117
    • A mechanism is provided that aggregates data in a way that permits data to be deleted efficiently, while minimizing the overhead necessary to support bulk deletion of data. A request is received for automatic deletion of segments in a container and a waterline is determined for the container. A determination is made if at least one segment in the container falls below the waterline. Finally, in response to one segment falling below the waterline, the segment from the container is deleted. Each object has an associated creation time, initial retention value, and retention decay curve (also known as a retention curve). At any point, based on these values and the current time, the object's current retention value may be computed. The container system continually maintains a time-varying waterline: at any point, objects with a retention value below the waterline may be deleted.
    • 提供了一种机制,可以以允许数据有效删除的方式聚合数据,同时最大限度地减少支持批量删除数据所需的开销。 收到容器中段的自动删除请求,并确定容器的水线。 如果容器中的至少一个部分落在水线以下,则确定。 最后,为了响应一条落在水线以下的段,容器中的段被删除。 每个对象都具有相关联的创建时间,初始保留值和保留衰减曲线(也称为保留曲线)。 在任何时候,基于这些值和当前时间,可以计算对象的当前保留值。 集装箱系统不断维护时变水线:任何时候,保留值低于水线的对象可能会被删除。
    • 2. 发明申请
    • Method for bulk deletion through segmented files
    • 通过分段文件批量删除的方法
    • US20060288047A1
    • 2006-12-21
    • US11156842
    • 2005-06-20
    • Edward ChronFrederick DouglisStephen Morgan
    • Edward ChronFrederick DouglisStephen Morgan
    • G06F17/30
    • G06F17/30117
    • A mechanism is provided that aggregates data in a way that permits data to be deleted efficiently, while minimizing the overhead necessary to support bulk deletion of data. A request is received for automatic deletion of segments in a container and a waterline is determined for the container. A determination is made if at least one segment in the container falls below the waterline. Finally, in response to one segment falling below the waterline, the segment from the container is deleted. Each object has an associated creation time, initial retention value, and retention decay curve (also known as a retention curve). At any point, based on these values and the current time, the object's current retention value may be computed. The container system continually maintains a time-varying waterline: at any point, objects with a retention value below the waterline may be deleted.
    • 提供了一种机制,可以以允许数据有效删除的方式聚合数据,同时最大限度地减少支持批量删除数据所需的开销。 收到容器中段的自动删除请求,并确定容器的水线。 如果容器中的至少一个部分落在水线以下,则确定。 最后,为了响应一条落在水线以下的段,容器中的段被删除。 每个对象都具有相关联的创建时间,初始保留值和保留衰减曲线(也称为保留曲线)。 在任何时候,基于这些值和当前时间,可以计算对象的当前保留值。 集装箱系统不断维护时变水线:任何时候,保留值低于水线的对象可能会被删除。