US2020356431A1PendingUtilityA1

Work flow management for an information management system

Assignee: COMMVAULT SYSTEMS INCPriority: Feb 27, 2014Filed: Jul 30, 2020Published: Nov 12, 2020
Est. expiryFeb 27, 2034(~7.6 yrs left)· nominal 20-yr term from priority
H04L 67/10G06Q 10/06G06Q 10/10G06F 11/0709G06Q 10/00G06F 9/4881G06F 11/0784G06F 11/0772
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Claims

Abstract

Disclosed herein are systems and methods for managing information management operations. The system may be configured to employ a work flow queue to reduce network traffic and manage server processing resources. The system may also be configured to forecast or estimate information management operations based on estimations of throughput between computing devices scheduled to execute one or more jobs. The system may also be configured to escalate or automatically reassign notification of system alerts based on the availability of system alert recipients. Various other embodiments are also disclosed herein.

Claims

exact text as granted — not AI-modified
We claim: 
     
         1 . A computer-implemented method for distributing tasks, in an information management system, the method comprising:
 scheduling policy tasks for a client computing device using a storage manager that facilitates a transfer of data between primary storage devices and secondary storage devices in an information management system, wherein the policy tasks are tasks associated with managing data stored in the information management system;   scheduling system tasks for the client computing device using the storage manager, wherein the system tasks include tasks that are related to maintenance of software or hardware components of the system and that do not read or write the data to the secondary storage devices;   executing, at the client computing device, the scheduled policy tasks in accordance with a first work queue for the policy tasks, and the scheduled system tasks in accordance with a second work queue of the scheduled system tasks;   determining parameters of a system operation failure; and   providing an alert of failure if at least one of the parameters exceeds a predetermined threshold.   
     
     
         2 . The method of  claim 1 , wherein the availability of the client computing device is determined by the storage manager in response to receiving messages from the client computing device when the client computing device transitions from an offline status to an online status. 
     
     
         3 . The method of  claim 2 , wherein determining that the client computing device is available is based on whether the status of the client computing device is online and idle, or if the status of the client computing device is busy due to processing one of the policy tasks that has a lower priority than one of the system tasks. 
     
     
         4 . The method of  claim 1 , wherein scheduling the system tasks includes prioritizing the system tasks relative to the policy tasks, wherein the availability of the client computing device is based on a priority of tasks being executed by the client computing device. 
     
     
         5 . The method of  claim 1 , further comprising restricting the client computing device from querying the storage manager to receive the system tasks scheduled by the second work queue. 
     
     
         6 . The method of  claim 1 , further comprising periodically transmitting progress notifications related to completion of the policy tasks and the system tasks from the client computing device to the storage manager. 
     
     
         7 . The method of  claim 1 , wherein determining parameters of a system operation failure includes receiving:
 a type of system operation to be performed between a first computing device and a second computing device,   a schedule time window for completion of the system operation, and   a throughput estimation technique;   and the method further comprises:   estimating throughput between the first computing device and the second computing device, wherein throughput is a rate of transferring data per unit time between a storage device for the first computing device and a storage device for the second computing device;   determining whether the system operation is completable within the schedule time window, including:
 estimating a size of data to be transferred between the first computing device and the second computing device to execute a received type of system operation; 
 estimating a duration for the type of system operation based on the estimated size of data to be transferred and based on the estimated throughput between the first computing device and the second computing device; and 
   comparing a duration of the schedule time window with the estimated duration for the type of system operation; and   providing an alert of failure if the estimated duration for the type of system operation is greater than the duration of the schedule time window.   
     
     
         8 . The method of  claim 1 , further comprising:
 receiving an indication of a system failure, wherein the system failure includes at least one of:
 a computing device unexpectedly going offline, 
 a storage device failure, 
 processing resources for the computing device falling below a first threshold, network bandwidth falling below a second threshold, 
 an estimated duration for a system operation exceeding a third threshold, and 
 a user-defined disruption within the system; and 
   repeatedly transmitting a system alert to a point of contact until the system alert is acknowledged, by:
 determining whether the point of contact is available to address the system alert; and 
 if the point of contact is available, transmitting the system alert to the point of contact; and 
 if the point of contact does not acknowledge the system alert within a predetermined period of time, changing the point of contact for receiving the system alert to another person on one or more lists or hierarchies of points of contact; 
 otherwise, if the point of contact is unavailable, changing the point of contact for receiving the system alert to another person on one or more lists or hierarchies of points of contact. 
   
     
     
         9 . At least one non-transitory, computer-readable medium having computer-executable instructions stored thereon, which when executed by at least one processor, causes a client computing device to perform a plurality of operations comprising:
 scheduling policy tasks for a client computing device using a storage manager that facilitates transfer of data between primary storage devices and secondary storage devices in an information management system, wherein the policy tasks are tasks associated with managing data stored in the information management system;   scheduling system tasks for the client computing device using the storage manager, wherein the system tasks include tasks related to maintenance of software or hardware components of the information management system that do not read or write the data to the secondary storage devices;   executing, at the client computing device, the scheduled policy tasks, in accordance with a first work queue for the scheduled policy tasks, and the scheduled system tasks, in accordance with a second work queue for the scheduled system tasks;   determining parameters of a system operation failure; and   providing an alert of failure if at least one of the parameters exceeds a predetermined threshold.   
     
     
         10 . The at least one non-transitory, computer-readable medium of  claim 9 , wherein the availability of the client computing device is determined by the storage manager in response to receiving messages from the client computing device when the client computing device transitions from an offline status to an online status. 
     
     
         11 . The at least one non-transitory, computer-readable medium of  claim 10 , wherein the storage manager determines that the client computing device is available if the status of the client computing device is online and idle, or if the status of the client computing device is busy due to processing one of the policy tasks that has a lower priority than one of the system tasks. 
     
     
         12 . The at least one non-transitory, computer-readable medium of  claim 9 , wherein scheduling the system tasks includes prioritizing the system tasks relative to the policy tasks, wherein the availability of the client computing device is based on a priority of tasks being executed by the client computing device. 
     
     
         13 . The at least one non-transitory, computer-readable medium of  claim 9 , further comprising restricting the client computing device from querying the storage manager to receive the system tasks scheduled by the second work queue. 
     
     
         14 . The at least one non-transitory, computer-readable medium of  claim 9 , further comprising periodically transmitting progress notifications related to completion of the policy tasks and the system tasks from the client computing device to the storage manager. 
     
     
         15 . An information management system for distributing tasks to a client computing device using first and second work queues managed by a server computing device, the information management system comprising:
 at least one non-transitory, computer-readable medium having computer-executable instructions stored thereon; and   at least one processor that, having executed the computer-executable instructions, configures the information management system to perform a plurality of operations comprising:
 scheduling policy tasks for the client computing device using the storage manager that facilitates transfer of data between primary storage devices and secondary storage devices in the information management system, wherein the policy tasks are tasks associated with managing data stored in the information management system; 
 scheduling system tasks for the client computing device using the storage manager, wherein the system tasks include tasks related to maintenance of software or hardware components of the information management system that do not read or write the data to the secondary storage devices; 
 executing, at the client computing device, the scheduled policy tasks, in accordance with a first work queue for the scheduled policy tasks, and the scheduled system tasks, in accordance with a second work queue for the scheduled system tasks; 
 determining parameters of an information management system operation failure; and 
 providing an alert of failure if at least one of the parameters exceeds a predetermined threshold. 
   
     
     
         16 . The information management system of  claim 15 , wherein the availability of the client computing device is determined by the storage manager in response to receiving messages from the client computing device when the client computing device transitions from an offline status to an online status. 
     
     
         17 . The information management system of  claim 15 , wherein scheduling the system tasks includes prioritizing the system tasks relative to the policy tasks, wherein the availability of the client computing device is based on a priority of tasks being executed by the client computing device. 
     
     
         18 . The information management system of  claim 15 , wherein the plurality of operations further comprises:
 initiating, by the storage manager, communications between a data agent of the client computing device and a media agent associated with the secondary storage devices to transfer data stored by the primary storage devices to the secondary storage devices via one or more policy tasks.   
     
     
         19 . The information management system of  claim 15 , wherein the plurality of operations further comprises:
 issuing, by the storage manager, a management system update to the secondary storage devices via one or more system tasks.   
     
     
         20 . The information management system of  claim 15 , wherein the plurality of operations further comprises:
 issuing, by the storage manager, a management system update to the secondary storage devices via one or more system tasks; and   initiating, by the storage manager, communications between a data agent of the client computing device and a media agent associated with the secondary storage devices to transfer data stored by the primary storage devices to the secondary storage devices via one or more policy tasks.

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