ONE-TOUCH INLINE CRYPTOGRAPHIC DATA PROCESSING
Methods, systems, and use cases for one-touch inline cryptographic data security are discussed, including an edge computing device with a network communications circuitry (NCC), an enhanced DMA engine coupled to a memory device and including a cryptographic engine, and processing circuitry configure...
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Main Authors | , , , , , , |
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Format | Patent |
Language | English |
Published |
14.01.2021
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Subjects | |
Online Access | Get full text |
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Abstract | Methods, systems, and use cases for one-touch inline cryptographic data security are discussed, including an edge computing device with a network communications circuitry (NCC), an enhanced DMA engine coupled to a memory device and including a cryptographic engine, and processing circuitry configured to perform a secure exchange with a second edge computing device to negotiate a shared symmetric encryption key, based on a request for data. An inline encryption command for communication to the enhanced DMA engine is generated. The inline encryption command includes a first address associated with a storage location storing the data, a second address associated with a memory location in the memory device, and the shared symmetric encryption key. The data is retrieved from the storage location using the first address, the data is encrypted using the shared symmetric encryption key, and the encrypted data is stored in the memory location using the second address. |
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AbstractList | Methods, systems, and use cases for one-touch inline cryptographic data security are discussed, including an edge computing device with a network communications circuitry (NCC), an enhanced DMA engine coupled to a memory device and including a cryptographic engine, and processing circuitry configured to perform a secure exchange with a second edge computing device to negotiate a shared symmetric encryption key, based on a request for data. An inline encryption command for communication to the enhanced DMA engine is generated. The inline encryption command includes a first address associated with a storage location storing the data, a second address associated with a memory location in the memory device, and the shared symmetric encryption key. The data is retrieved from the storage location using the first address, the data is encrypted using the shared symmetric encryption key, and the encrypted data is stored in the memory location using the second address. |
Author | Doshi, Kshitij Arun Doyle, Stephen Mosur, Lokpraveen Keating, Brian Andrew Qureshi, Uzair Fleming, Patrick Smith, Ned M |
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RelatedCompanies | Mosur Lokpraveen Doyle Stephen Doshi Kshitij Arun Fleming Patrick Qureshi Uzair Keating Brian Andrew Smith Ned M |
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Snippet | Methods, systems, and use cases for one-touch inline cryptographic data security are discussed, including an edge computing device with a network... |
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SubjectTerms | CALCULATING COMPUTING COUNTING ELECTRIC COMMUNICATION TECHNIQUE ELECTRIC DIGITAL DATA PROCESSING ELECTRICITY PHYSICS TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHICCOMMUNICATION |
Title | ONE-TOUCH INLINE CRYPTOGRAPHIC DATA PROCESSING |
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