Abstract:
Bulk operations on a large number of items may be processed by a computer with a reduced likelihood of exceeding a timing or hardware limitation of a system. An instruction or its related information can be examined to determine if the instruction may potentially involve a large number of items. If so, the instruction may be passed to a bulk operations manager software component to determine the number of items involved. The bulk operations manager software component can break down the operation into smaller groups of items. Operations can be performed on each of the smaller groups of objects. The changes can be transparent to a developer writing code or a computer generating code to perform a specific operation.
Abstract:
A method and system disclosed herein can be used to determine relationships between objects, determining which of those relationships are significant for a specific action, and determining physical dependencies between the objects. The method and system can be used to perform actions consistent with integrity constraints, and therefore, performs the actions in the correct order with a reduced likelihood of errors. The method and system are highly beneficial in that they can significantly enhance content management and can be implemented without having to write new or edit existing applications. Also, existing content data and applications may be used without any changes.
Abstract:
Bulk operations on a large number of items may be processed by a computer with a reduced likelihood of exceeding a timing or hardware limitation of a system. An instruction or its related information can be examined to determine if the instruction may potentially involve a large number of items. If so, the instruction may be passed to a bulk operations manager software component to determine the number of items involved. The bulk operations manager software component can break down the operation into smaller groups of items. Operations can be performed on each of the smaller groups of objects. The changes can be transparent to a developer writing code or a computer generating code to perform a specific operation.
Abstract:
Bulk operations on a large number of items may be processed by a computer with a reduced likelihood of exceeding a timing or hardware limitation of a system. An instruction or its related information can be examined to determine if the instruction may potentially involve a large number of items. If so, the instruction may be passed to a bulk operations manager software component to determine the number of items involved. The bulk operations manager software component can break down the operation into smaller groups of items. Operations can be performed on each of the smaller groups of objects. The changes can be transparent to a developer writing code or a computer generating code to perform a specific operation.
Abstract:
Bulk operations on a large number of items may be processed by a computer with a reduced likelihood of exceeding a timing or hardware limitation of a system. An instruction or its related information can be examined to determine if the instruction may potentially involve a large number of items. If so, the instruction may be passed to a bulk operations manager software component to determine the number of items involved. The bulk operations manager software component can break down the operation into smaller groups of items. Operations can be performed on each of the smaller groups of objects. The changes can be transparent to a developer writing code or a computer generating code to perform a specific operation.
Abstract:
A method and system disclosed herein can be used to determine relationships between objects, determining which of those relationships are significant for a specific action, and determining physical dependencies between the objects. The method and system can be used to perform actions consistent with integrity constraints, and therefore, performs the actions in the correct order with a reduced likelihood of errors. The method and system are highly beneficial in that they can significantly enhance content management and can be implemented without having to write new or edit existing applications. Also, existing content data and applications may be used without any changes.
Abstract:
A method and system can be used to control better compound objects. Compound objects can include composite and other objects that are managed by a content management system for network site(s). The method and system can be used to determine relationships between objects, determining which of those relationships are significant for a specific action, and determining physical dependencies between the objects. The method and system can be used to perform actions consistent with integrity constraints, and therefore, performs the actions in the correct order with a reduced likelihood of errors. The method and system are highly beneficial in that they can significantly enhance content management and can be implemented without having to write new or edit existing applications. Also, existing content data and applications may be used without any changes.
Abstract:
Bulk operations on a large number of items may be processed by a computer with a reduced likelihood of exceeding a timing or hardware limitation of a system. An instruction or its related information can be examined to determine if the instruction may potentially involve a large number of items. If so, the instruction may be passed to a bulk operations manager software component to determine the number of items involved. The bulk operations manager software component can break down the operation into smaller groups of items. Operations can be performed on each of the smaller groups of objects. The changes can be transparent to a developer writing code or a computer generating code to perform a specific operation.