IP Library Granted Patent US 11,340,935
Granted Patent B2
US 11,340,935 · App. 17/061,061 · Granted May 24, 2022

Methods and systems for converting a related group of physical machines to virtual machines

Inventor: Abhinav Katiyar (Bangalore, IN)
Assignee: VMware, Inc.
G06F9/45558G06F8/20G06F2009/4557G06F2009/45562
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Quick Facts
Patent No.
US 11,340,935
App. No.
17/061,061
Granted
May 24, 2022
Kind
B2
Abstract

A method for processing virtualization of computers that are part of a group into virtual computers is provided. The method includes obtaining relationship data from the computers, where the relationship data identifies parameters used to communicate within the group. Then, the method analyzes utilization parameters for each of the computers of the group. A visual model for proposed virtualization of the group of computers is then generated. The visual model identifies hosting machines designated to define a virtual computer for each of the computers, where the visual model provides a graphical illustration of the group of computers once converted to virtual computers. The method enables adjustment of the proposed virtualization of the group of computers. Then, an execution sequence of virtualization operations to be carried out is generated, if execution of the proposed virtualization is triggered, and the execution sequence is saved to storage and accessed upon execution.

Claims (59)

1. A method comprising:

receiving a request to convert a plurality of computers into virtual computers;

generating a visual model for a proposed virtualization of the plurality of computers;

presenting a sequence of virtualization operations to achieve execution of the proposed virtualization;

providing an editable adjustability to at least one of the visual model and the sequence of virtualization operations; and

receiving user input based on the provided editable adjustability; and

based on the user input, converting the plurality of computers into the virtual computers.

2. The method of claim 1 , wherein presenting the sequence of virtualization operations comprises presenting a script that defines an execution sequence of the virtualization operations.

3. The method of claim 2 , wherein the script includes a defined order in which the execution sequence of virtualization operations is to be executed such that relationships defined by relationship data that identifies parameters that define relationships between the plurality of computers are maintained.

4. The method of claim 1 , further comprising:

presenting additional virtualization operations to be executed;

receiving an additional modification of the execution sequence of virtualization operations based on the additional virtualization operations; and

converting the plurality of computers into the virtual computers at a point in time by executing the additional modified execution sequence of virtualization operations.

5. The method of claim 4 , wherein the additional virtualization operations includes a request to enable zero interruption in mission processing by the plurality of computers during execution of the execution sequence of virtualization operations.

6. The method of claim 1 , further comprising:

comparing relationship data for the plurality of computers with relationship data for the virtual computers, the relationship data identifying parameters that define relationships between the plurality of computers or the virtual computers; and

adjusting parameters of the virtual computers based on the comparing.

7. The method of claim 1 , further comprising:

presenting a second script that defines a second execution sequence of virtualization operations to be executed in order to convert a second plurality of computers into a second set of virtual computers, the execution sequence being based on: a) relationship data for the second plurality of computers, the relationship data identifying parameters that define communication information needed to communicate between the plurality of computers and the second plurality of computers, and b) each hosting machine designated to define the second set of virtual computers for each of the second plurality of computers; and

converting the second plurality of computers into the second set of virtual computers by executing the second execution sequence of virtualization operations.

8. A system comprising:

a memory; and

a processor programmed to:

receive a request to convert a plurality of computers into virtual computers;

generate a visual model for a proposed virtualization of the plurality of computers;

present a sequence of virtualization operations to achieve execution of the proposed virtualization;

provide an editable adjustability to at least one of the visual model and the sequence of virtualization operations; and

receive user input based on the provided editable adjustability; and

based on the user input, convert the plurality of computers into the virtual computers.

9. The system of claim 8 , wherein presenting virtualization operations comprises presenting a script that defines an execution sequence of the virtualization operations.

10. The system of claim 9 , wherein the script includes a defined order in which the execution sequence of virtualization operations is to be executed such that relationships defined by the relationship data are maintained.

11. The system of claim 8 , wherein the processor is further programmed to:

present additional virtualization operations to be executed;

receive an additional modification of the execution sequence of virtualization operations based on the additional virtualization operations; and

convert the plurality of computers into the virtual computers at a point in time by executing the additional modified execution sequence of virtualization operations.

12. The system of claim 11 , wherein the additional virtualization operations includes a request to enable zero interruption in mission processing by the plurality of computers during execution of the execution sequence of virtualization operations.

13. The system of claim 8 , wherein the processor is further programmed to:

compare relationship data for the plurality of computers with relationship data for the virtual computers, the relationship data identifying parameters that define relationships between the plurality of computers or the virtual computers; and

adjust parameters of the virtual computers based on the comparing.

14. The system of claim 8 , further comprising a second plurality of computers, wherein the processor is further programmed to:

present a second script that defines a second execution sequence of virtualization operations to be executed in order to convert a second plurality of computers into a second set of virtual computers, the execution sequence being based on: a) relationship data for the second plurality of computers, the relationship data identifying parameters that define communication information needed to communicate between the plurality of computers and the second plurality of computers, and b) each hosting machine designated to define the second set of virtual computers for each of the second plurality of computers; and

convert the second plurality of computers into the second set of virtual computers by executing the second execution sequence of virtualization operations.

15. A non-transitory computer readable medium comprising computer-executable instructions that, when executed by a processor, cause the processor to:

receive a request to convert a plurality of computers into virtual computers;

generate a visual model for a proposed virtualization of the plurality of computers;

present a sequence of virtualization operations to achieve execution of the proposed virtualization;

provide an editable adjustability to at least one of the visual model and the sequence of virtualization operations; and

receive user input based on the provided editable adjustability; and

based on the user input, convert the plurality of computers into the virtual computers.

16. The non-transitory computer-readable medium of claim 15 , wherein presenting virtualization operations comprises presenting a script that defines an execution sequence of the virtualization operations.

17. The non-transitory computer-readable medium of claim 16 , wherein the script includes a defined order in which the execution sequence of virtualization operations is to be executed such that relationships defined by relationship data that identifies parameters that define relationships between the plurality of computers are maintained.

18. The non-transitory computer-readable medium of claim 15 , wherein the computer-executable instructions further cause the processor to:

present additional virtualization operations to be executed;

receive an additional modification of the execution sequence of virtualization operations based on the additional virtualization operations; and

convert the plurality of computers into the virtual computers at a point in time by executing the additional modified execution sequence of virtualization operations.

19. The non-transitory computer-readable medium claim 18 , wherein the additional virtualization operations includes a request to enable zero interruption in mission processing by the plurality of computers during execution of the execution sequence of virtualization operations.

20. The non-transitory computer-readable medium of claim 15 , wherein the computer-executable instructions further cause the processor to:

compare relationship data for the plurality of computers with relationship data for the virtual computers, the relationship data identifying parameters that define relationships between the plurality of computers or the virtual computers; and

adjust parameters of the virtual computers based on the comparing.

Assignments (1)
CHANGE OF NAME Recorded Apr 15, 2024
From: VMWARE, INC.
To: VMWARE LLC
Reel/Frame 067102/0395 →
Continuity (5)
Continuation 15972211 · May 6, 2018
Continuation 15095676 · Apr 11, 2016
Continuation 14050317 · Oct 19, 2013
Continuation 12256198 · Oct 22, 2008
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