Abstract:
A complete document management system is disclosed. Accordingly, systems and methods for managing data associated with a data storage component coupled to multiple computers over a network are disclosed. Systems and methods for managing data associated with a data storage component coupled to multiple computers over a network are further disclosed. Additionally, systems and methods for accessing documents available through a network, wherein the documents are stored on one or more data storage devices coupled to the network, are disclosed.
Abstract:
A storage system according to certain embodiments includes a repository of client-side data block signature information representative of a set of data blocks stored in a primary storage subsystem. In some cases, the system sources data blocks for secondary copy and restore operations from the primary storage subsystem instead of the secondary storage subsystem. Where multiple primary storage components (e.g., multiple client computing devices) contain copies of a data blocks involved in a secondary copy or restore operation, the system can decide which client to source the data block from based on sourcing criteria.
Abstract:
Systems and methods are disclosed for performing data storage operations, including content-indexing, containerized deduplication, and policy-driven storage, within a cloud environment. The systems support a variety of clients and cloud storage sites that may connect to the system in a cloud environment that requires data transfer over wide area networks, such as the Internet, which may have appreciable latency and/or packet loss, using various network protocols, including HTTP and FTP. Methods are disclosed for content indexing data stored within a cloud environment to facilitate later searching, including collaborative searching. Methods are also disclosed for performing containerized deduplication to reduce the strain on a system namespace, effectuate cost savings, etc. Methods are disclosed for identifying suitable storage locations, including suitable cloud storage sites, for data files subject to a storage policy. Further, systems and methods for providing a cloud gateway and a scalable data object store within a cloud environment are disclosed, along with other features.
Abstract:
Methods, Apparatuses, and Storage Medium associated with chronology based file management are disclosed herein. In embodiments, a method may include receiving a selection of a plurality of files or the plurality of files, and generating association data selectively associating the plurality of files with a plurality of events scheduled in a calendar of a user or time periods of the user. The method may further include storing the association data to facilitate subsequent selectively retrieval of the plurality of files in response to retrieval requests for files associated with selected ones of the plurality of events scheduled in the calendar of the user or the time periods of the user. Other embodiments may be described and claimed.
Abstract:
A computer-implemented method of managing data storage according to collaborative activity can include determining collaborative activity for each of a plurality of data items associated with a first user and stored within a first data storage device. The method can include calculating a measure of relevancy for each of the plurality of data items according to the collaborative activity and comparing the measure of relevancy of each of the plurality of data items to at least one relevancy threshold. Different ones of the plurality of data items can be selectively migrated from the first data storage device to a second data storage device according to the comparison of the measure of relevancy of each of the plurality of data items.
Abstract:
Apparatuses, systems, and methods are disclosed for data expiry. A method includes examining metadata associated with data in a non-volatile recording medium. A method includes expiring data from a non-volatile recording medium in response to metadata indicating that an expiration period for the data has been satisfied.
Abstract:
A system for performing integrated searches and actions is disclosed. The system may include a search engine configured to generate a search result or report in response to a search query. The system may also include a queue manager coupled with the search engine. The queue manager may be configured to receive the search result or report from the search engine. The queue manager may also be configured to assign files in the search result or report to one or more service provider queues according to an action profile. The system may also include one or more nodes coupled with the one or more service provider queues. The one or more nodes may be configured to perform one or more actions on one or more files in the one or more service provider queues according to the action profile.
Abstract:
A storage subsystem combining solid state drive (SSD) and hard disk drive (HDD) technologies provides low access latency and low complexity. Separate free lists are maintained for the SSD and the HDD and blocks of file system data are stored uniquely on either the SSD or the HDD. When a read access is made to the subsystem, if the data is present on the SSD, the data is returned, but if the block is present on the HDD, it is migrated to the SSD and the block on the HDD is returned to the HDD free list. On a write access, if the block is present in the either the SSD or HDD, the block is overwritten, but if the block is not present in the subsystem, the block is written to the HDD.
Abstract:
An information processing apparatus includes a file obtaining unit, a saving unit, a save-state information storage unit, an accepting unit, an updating unit, and a transmitting unit. The file obtaining unit obtains a first file from a file management apparatus that manages the first file. The saving unit saves the first file. The save-state information storage unit stores save-state information about a save state of the first file. The accepting unit accepts a manipulation performed on the first file saved in the saving unit. The updating unit updates the save-state information, when the save state of the first file is changed in response to the accepted manipulation. The transmitting unit transmits the save-state information to the file management apparatus.
Abstract:
A dispersed storage (DS) unit for use within a dispersed storage network is capable of self-configuring using registry information provided to the DS unit. The registry information includes a slice name assignment indicating a range of slice names corresponding to a plurality of potential data slices of potential data objects to be stored in the DS unit. Based on the registry information, the DS unit allocates a portion of physical memory to store the potential data slices.