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US Patent 12095913 Encryption key rotation framework

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Patent abstractTimelineTable: Further ResourcesReferences
Is a
Patent
Patent
1

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
1
Patent Number
120959131
Patent Inventor Names
Mohsin Roowalla1
Edward Suryadi1
Pranamya Raghuveer Nayak1
Raul Acevedo1
Tianhao Gu1
Roger Santosa Tanuatmadja1
Date of Patent
September 17, 2024
1
Patent Application Number
181397551
Date Filed
April 26, 2023
1
Patent Citations
‌
US Patent 8677083 System and method for toggling a storage system versioning feature
1
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US Patent 9336092 Secure data deduplication
1
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US Patent 11405360 One click active directory infrastructure
1
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US Patent 11601411 Caching framework for a multi-tenant identity and data security management cloud service
1
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US Patent 11626996 Distributed system web of trust provisioning
1
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US Patent 11641275 Encryption key rotation framework
1
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US Patent 11627120 Dynamic crypto key management for mobility in a cloud environment
1
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US Patent 11695555 Federated key management
1
...
Patent Primary Examiner
‌
Monjur Rahim
1
CPC Code
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G06F 9/546
1
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G06F 16/137
1
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G06F 16/182
1
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H04L 9/0891
1
Patent abstract

Techniques are described herein for efficiently and expeditiously performing key rotation and key replacement. In an embodiment, a key replacement request is received that specifies one or more key names of a plurality of key names. A location-to-key-name mapping that maps the plurality of key names to a plurality of encrypted-data locations is used to determine one or more encrypted-data locations that are mapped to the one or more key names. A first set of messages is generated where each message identifies a table that is associated with the one or more encrypted-data locations. The first set of messages is stored in a queue for processing by a first plurality of worker processes. Each worker process of the first plurality of worker processes retrieves a message of the first set of messages from the queue and generates a message of a second set of messages that identifies a subset of encrypted data records from the table identified in the message of the first set of messages. Each message of the second set of messages is stored in a distinct queue which is assigned to a worker process of a second plurality of worker processes. Each worker process of the second plurality of worker processes retrieves the message from the assigned queue, decrypts the subset of encrypted data records identified in the respective message, re-encrypts the decrypted data records using a new encryption key that corresponds to a new key name, and stores the re-encrypted data records in a database.

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