Event management in distributed computing system
US-12155753-B2 · Nov 26, 2024 · US
US9948458B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9948458-B2 |
| Application number | US-201615386693-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 21, 2016 |
| Priority date | Apr 10, 2013 |
| Publication date | Apr 17, 2018 |
| Grant date | Apr 17, 2018 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
In response to at least one message received by a processor of a gateway server from a user device wherein each message requests that an encryption key be downloaded to the user device, the processor generates at least one unique encryption key for each message and sends the at least one generated encryption key to the user device, but does not store any of the generated encryption keys in the cloud. For each encryption key having been sent to the user device, the processor receives each encryption key returned from the user device. For each encryption key received from the user device, the processor stores each received encryption key in the cloud.
Opening claim text (preview).
What is claimed is: 1. A method for managing data security in a computing environment, said method comprising: in response to at least one message received by a processor of a gateway server from a user device wherein each message requests that an encryption key be downloaded to the user device, said processor generating, for each message, at least one unique encryption key for encrypting and decrypting data, sending each encryption key of the at least one generated encryption key to the user device, and not storing any of the generated encryption keys in a cloud comprising a plurality of interconnected computing systems external to the user device, wherein the at least one generated encryption key comprises a first encryption key; for each encryption key of the at least one generated encryption key having been sent to the user device, said processor receiving each sent encryption key of the at least one generated encryption key returned from the user device; and for each received encryption key, said processor validating each received encryption key for use by the processor to encrypt data to be stored in the cloud, wherein said validating each received encryption key comprises storing each received encryption key in the cloud at a time specific to each received encryption key, wherein said storing each received encryption key in the cloud comprises storing the first encryption key in the cloud at a first key storage time. 2. The method of claim 1 , said method further comprising: said processor storing first data in the cloud at a first data storage time after the first key storage time; and said processor encrypting the first data, at a first data encryption time after the first data storage time, by using the first encryption key to encrypt the first data. 3. The method of claim 2 , said method further comprising: said processor decrypting the encrypted first data, at a first data decryption time after the first data encryption time, by using the first encryption key to decrypt the encrypted first data. 4. The method of claim 3 , wherein said receiving each encryption key returned from the user device comprises receiving a second encryption key returned from the user device, wherein said storing comprises storing the second encryption key in the cloud at a second key storage time after the first data storage time, and wherein the method further comprises: said processor abandoning the first encryption key at a first key abandoning time after the first data decryption time; and said processor encrypting the first data, at another first data encryption time after the first data abandoning time and after the second key storage time, by using the second encryption key to encrypt the first data. 5. The method of claim 4 , wherein the first data decryption time is simultaneous with the second key storage time. 6. The method of claim 4 , wherein the method further comprises: said processor storing second data in the cloud at a second data storage time prior to the second key storage time; said processor encrypting the second data, at a second data encryption time after the second data storage time, by using the second encryption key to encrypt the second data; and said processor decrypting the encrypted second data, at a second data decryption time after the second data encryption time, by using the second encryption key to decrypt the encrypted second data. 7. The method of claim 2 , wherein said receiving each encryption key returned from the user device comprises receiving a second encryption key returned from the user device, wherein said storing comprises storing the second encryption key in the cloud at a second key storage time after the first data storage time, wherein the encrypted first data is denoted as singly encrypted first data, and wherein the method further comprises: said processor encrypting the singly encrypted first data, at another first data encryption time after the second key storage time, by using the second encryption key to encrypt the singly encrypted first data to form a doubly encrypted first data; and said processor decrypting the doubly encrypted first data, by using the second encryption key to decrypt the doubly encrypted first data to form the singly encrypted first data, followed by using the first encryption key to decrypt the singly encrypted first data to form the first data unencrypted. 8. A computer program product, comprising a computer readable storage device having computer readable program code stored therein, said program code containing instructions which, upon being executed by a processor of a gateway server of a computer system implements a method for managing data security in a computing environment, said method comprising: in response to at least one message received by the processor of the gateway server from a user device wherein each message requests that an encryption key be downloaded to the user device, said processor generating, for each message, at least one unique encryption key for encrypting and decrypting data, sending each encryption key of the at least one generated encryption key to the user device, and not storing any of the generated encryption keys in a cloud comprising a plurality of interconnected computing systems external to the user device, wherein the at least one generated encryption key comprises a first encryption key; for each encryption key of the at least one generated encryption key having been sent to the user device, said processor receiving each sent encryption key of the at least one generated encryption key returned from the user device; and for each received encryption key, said processor validating each received encryption key for use by the processor to encrypt data to be stored in the cloud, wherein said validating each received encryption key comprises storing each received encryption key in the cloud at a time specific to each received encryption key, wherein said storing each received encryption key in the cloud comprises storing the first encryption key in the cloud at a first key storage time. 9. The computer program product of claim 8 , said method further comprising: said processor storing first data in the cloud at a first data storage time after the first key storage time; and said processor encrypting the first data, at a first data encryption time after the first data storage time, by using the first encryption key to encrypt the first data. 10. The computer program product of claim 9 , said method further comprising: said processor decrypting the encrypted first data, at a first data decryption time after the first data encryption time, by using the first encryption key to decrypt the encrypted first data. 11. The computer program product of claim 10 , wherein said receiving each encryption key returned from the user device comprises receiving a second encryption key returned from the user device, wherein said storing comprises storing the second encryption key in the cloud at a second key storage time after the first data storage time, and wherein the method further comprises: said processor abandoning the first encryption key at a first key abandoning time after the first data decryption time; and said processor encrypting the first data, at another first data encryption time after the first data abandoning time and after the second key storage time, by using the second encryption key to encrypt the first data. 12. The computer program product of claim 11 , wherein the first data decryption time is simultaneous with the second key storage time. 13. The computer program product of claim 11 , wherein the method further comprises: said p
involving random numbers or seeds · CPC title
Virtual private networks · CPC title
Providing cryptographic facilities or services · CPC title
Hash functions, e.g. MD5, SHA, HMAC or f9 MAC · CPC title
involving central third party, e.g. key distribution center [KDC] or trusted third party [TTP] · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.