IP Library Granted Patent US 9,733,989
Granted Patent B1
US 9,733,989 · App. 14/620,343 · Granted Aug 15, 2017

Non-disruptive load-balancing of virtual machines between data centers

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Quick Facts
Patent No.
US 9,733,989
App. No.
14/620,343
Granted
Aug 15, 2017
Kind
B1
Abstract

A method, system and program product for enabling migration of Virtual Machines with concurrent access to data across two geographically disperse sites to enable load balancing across the two geographically disperse sites, by presenting over a network a read writable logical volume at a first site, presenting over a network a read writable logical volume at a second geographically disparate site; wherein the first volume and the second volume are configured to contain the same information, and enabling read write access to the volume at the first site or the volume at the second site for a first virtual machine while keeping the data consistent between the two sites to enable transparent migration of the virtual machine to load balancing across the two sites according to at least one load balancing metric.

Claims (34)

1. A method for enabling migration of a Virtual Machine (VM) across two disperse sites by providing concurrent read and write access to a read writable logical volume at both sites, the method comprising:

presenting, using a virtual volume presenter, over a first network the read writable logical volume at a first site, wherein the first site has a first storage medium;

presenting, using the virtual volume presenter, over a second network the read writable logical volume at a second disparate site, wherein the second site has a second storage medium; and

enabling cotemporaneous read write access by a set of virtual machines to the read writable logical volume at the first site and to the read writable logical volume at the second site by the set of virtual machines to enable transparent migration of the virtual machine between the first site and the second site to enable load balancing across the first site and the second site according to at least one load balancing metric, wherein the virtual volume presenter provides an abstraction layer spanning the first site and the second site, wherein transparent migration of the virtual machine includes enabling the virtual machine to access the read writeable logical volume as the same logical drive at the first site and the second site; and wherein the read writable logical volume is configured to present logically consistent data at the first site and the second site using the first storage medium and the second storage medium.

2. The method of claim 1 wherein the first storage medium includes a mirror of at least a portion of the second storage medium.

3. The method of claim 1 wherein the storage mediums are asynchronous.

4. The method of claim 1 wherein the load balancing includes balancing application load across the sites.

5. The method of claim 4 wherein the method of migrating a virtual machine includes a second virtual machine, wherein the first and second virtual machines access different portions of the read writable logical volume.

6. The method of claim 3 wherein the first storage medium and the second storage medium include a synchronous mirror.

7. The method of claim 1 wherein when the virtual machine is migrated from the first site to the second site, enabling the migrated virtual machine to automatically access the read writable logical volume on the second storage medium instead of on the first storage medium.

8. A system for enabling migration of a Virtual Machine (VM) across two disperse sites by providing concurrent read and write access to a read writable logical volume at both sites, the system comprising:

a first site with a first storage medium;

a second site with a second storage medium;

a virtual volume presenter providing an abstraction layer spanning the first site and the second; and

computer-executable logic operating in memory, wherein the computer-executable program logic enables execution across one or more processors of:

presenting, using the virtual volume presenter, over a first network the read writable logical volume at the first site;

presenting, using the virtual volume presenter, over a second network the read writable logical volume at a second disparate site; and

enabling cotemporaneous read write access by a set of virtual machines to the read writable logical volume at the first site and to the read writable logical volume at the second site by the set of virtual machines to enable transparent migration of the virtual machine between the first site and the second site to enable load balancing across the first site and the second site according to at least one load balancing metric, wherein the virtual volume presenter, wherein transparent migration of the virtual machine includes enabling the virtual machine to access the read writeable logical volume as the same logical drive at the first site and the second site; and wherein the read writable logical volume is configured to present logically consistent data at the first site and the second site using the first storage medium and the second storage medium.

9. The system of claim 8 wherein the second storage medium includes a mirror of at least a portion of the first storage medium.

10. The system of claim 8 wherein the first storage medium and the second storage medium include a synchronized mirror.

11. The system of claim 8 wherein the load balancing includes balancing application load across the sites.

12. The system of claim 11 wherein different virtual machines of the set of virtual machines access different portions of the virtual volume.

13. The system of claim 10 wherein the first storage medium and the second storage medium include a synchronous mirror.

14. A computer program product comprising:

a non-transitory computer readable medium encoded with computer executable program code enabling execution across one or more processors of:

presenting, using a virtual volume presenter, over a first network a read writable logical volume at a first site;

presenting, using the virtual volume presenter, over a second network the read writable logical volume at a second disparate site; and

enabling cotemporaneous read write access by a set of virtual machines to the read writable logical volume at the first site and to the read writable logical volume at the second site by the set of virtual machines to enable transparent migration of a virtual machine between the first site and the second site to enable load balancing across the first site and the second site according to at least one load balancing metric, wherein the virtual volume presenter, wherein transparent migration of the virtual machine includes enabling the virtual machine to access the read writeable logical volume as the same logical drive at the first site and the second site; and wherein the read writable logical volume is configured to present logically consistent data at the first site and the second site using the first storage medium and the second storage medium.

15. The program product of claim 14 wherein the first storage medium includes a mirror of at least a portion of the second storage medium.

16. The program product of claim 14 wherein the first storage medium and the second storage medium include a synchronous mirror.

17. The program product of claim 14 wherein the load balancing includes balancing application load across the sites.

18. The program product of claim 15 wherein different virtual machines of the set of virtual access different portions of the virtual volume.

19. The program product of claim 16 wherein the first storage medium and the second storage medium include a synchronous mirror.

20. The program product of claim 15 wherein when the virtual machine is migrated from the first site to the second site, enabling the migrated virtual machine to automatically access the read writable logical volume on the second storage medium instead of on the first storage medium.

Assignments (6)
RELEASE OF SECURITY INTEREST IN PATENTS PREVIOUSLY RECORDED AT REEL/FRAME (053546/0001) Recorded Jun 23, 2022
From: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS NOTES COLLATERAL AGENT
To: DELL MARKETING L.P. (ON BEHALF OF ITSELF AND AS SUCCESSOR-IN-INTEREST TO CREDANT TECHNOLOGIES, INC.); DELL INTERNATIONAL L.L.C.; DELL PRODUCTS L.P.; DELL USA L.P.; EMC CORPORATION; DELL MARKETING CORPORATION (SUCCESSOR-IN-INTEREST TO FORCE10 NETWORKS, INC. AND WYSE TECHNOLOGY L.L.C.); EMC IP HOLDING COMPANY LLC
Reel/Frame 071642/0001 →
RELEASE OF SECURITY INTEREST IN PATENTS PREVIOUSLY RECORDED AT REEL/FRAME (044535/0109) Recorded May 20, 2022
From: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS NOTES COLLATERAL AGENT
To: DELL PRODUCTS L.P.; EMC CORPORATION; EMC IP HOLDING COMPANY LLC; DELL MARKETING CORPORATION (SUCCESSOR-IN-INTEREST TO WYSE TECHNOLOGY L.L.C.)
Reel/Frame 060753/0414 →
RELEASE OF SECURITY INTEREST AT REEL 044535 FRAME 0001 Recorded Nov 2, 2021
From: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH
To: DELL PRODUCTS L.P.; EMC CORPORATION; EMC IP HOLDING COMPANY LLC; WYSE TECHNOLOGY L.L.C.
Reel/Frame 058298/0475 →
SECURITY AGREEMENT Recorded Mar 21, 2019
From: CREDANT TECHNOLOGIES, INC.; DELL INTERNATIONAL L.L.C.; DELL MARKETING L.P.; DELL PRODUCTS L.P.; DELL USA L.P.; EMC CORPORATION; FORCE10 NETWORKS, INC.; WYSE TECHNOLOGY L.L.C.; EMC IP HOLDING COMPANY LLC
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A.
Reel/Frame 049452/0223 →
PATENT SECURITY AGREEMENT (CREDIT) Recorded Nov 29, 2017
From: DELL PRODUCTS L.P.; EMC CORPORATION; EMC IP HOLDING COMPANY LLC; WYSE TECHNOLOGY L.L.C.
To: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH, AS COLLATERAL AGENT
Reel/Frame 044535/0001 →
PATENT SECURITY AGREEMENT (NOTES) Recorded Nov 29, 2017
From: DELL PRODUCTS L.P.; EMC CORPORATION; EMC IP HOLDING COMPANY LLC; WYSE TECHNOLOGY L.L.C.
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS COLLATERAL AGENT
Reel/Frame 044535/0109 →