IP Library Granted Patent US 8,677,160
Granted Patent B2
US 8,677,160 · App. 13/546,090 · Granted Mar 18, 2014

Managing power consumption of a computer

Inventors: Thomas M. Brey (Cary, NC); Wesley M. Felter (Austin, TX); Sumeet Kochar (Apex, NC); Charles R. Lefurgy (Austin, TX); Ryuji Orita (Redmond, WA); Freeman L. Rawson, III (Austin, TX); Malcolm S. Ware (Austin, TX)
Assignee: International Business Machines Corporation
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Quick Facts
Patent No.
US 8,677,160
App. No.
13/546,090
Granted
Mar 18, 2014
Kind
B2
Abstract

Methods, computers, and products for managing power consumption of a computer, the computer including a computer processor and managing power consumption of a computer includes: dynamically during operation of the computer, setting, by an in-band power manager in dependence upon performance metrics of the computer processor, a current performance state (‘p-state’) of the computer processor; and providing, by the in-band power manager to an out-of-band power manager, the current p-state of the computer processor.

Claims (37)

1. A method of managing power consumption of a computer, the computer comprising a computer processor, the method comprising:

dynamically during operation of the computer, setting, by an in-band power manager in dependence upon performance metrics of the computer processor, a current performance state (‘p-state’) of the computer processor; and

providing, by the in-band power manager to an out-of-band power manager, the current p-state of the computer processor;

wherein:

the method further comprises setting, by the out-of-band power manager, in the in-band power manager, a minimum p-state; and

setting, by the in-band power manager, a current p-state of the computer processor further comprises setting the current p-state of the computer processor in dependence upon the minimum p-state.

2. The method of claim 1 further comprising:

calculating, by the out-of-band power manager, in dependence upon currently-measured operating metrics of the computer processor, a power setpoint for the computer processor, and the current p-state, an operating state for the computer processor.

3. The method of claim 1 wherein:

the method further comprises setting, by the out-of-band power manager, in the in-band power manager, a maximum p-state; and

setting, by the in-band power manager, a current p-state of the computer processor further comprises setting the current p-state of the computer processor in dependence upon the maximum p-state.

4. The method of claim 1 wherein setting, by the in-band power manager, a current p-state of the computer processor further comprises setting a core voltage level for the computer processor and a clock speed of the computer processor.

5. A computer for which power consumption is managed, the computer comprising a computer processor and a service processor, computer memory operatively coupled to the computer processor and the service processor, the computer memory having disposed within it computer program instructions capable of:

dynamically during operation of the computer, setting, by an in-band power manager in dependence upon performance metrics of the computer processor, a current performance state (‘p-state’) of the computer processor; and

providing, by the in-band power manager to an out-of-band power manager, the current p-state of the computer processor;

wherein:

the computer program instructions are further capable of setting, by the out-of-band power manager, in the in-band power manager, a maximum p-state; and

setting, by the in-band power manager, a current p-state of the computer processor further comprises setting the current p-state of the computer processor in dependence upon the maximum p-state.

6. The computer of claim 5 further comprising computer program instructions capable of:

calculating, by the out-of-band power manager, in dependence upon currently-measured operating metrics of the computer processor, a power setpoint for the computer processor, and the current p-state, an operating state for the computer processor.

7. The computer of claim 5 wherein:

the computer program instructions are further capable of setting, by the out-of-band power manager, in the in-band power manager, a minimum p-state; and

setting, by the in-band power manager, a current p-state of the computer processor further comprises setting the current p-state of the computer processor in dependence upon the minimum p-state.

8. The computer of claim 5 wherein setting, by the in-band power manager, a current p-state of the computer processor further comprises setting a core voltage level for the computer processor and a clock speed of the computer processor.

9. A computer program product for managing power consumption of a computer, the computer comprising a computer processor, the computer program product disposed in a non-transitory computer readable

medium, the computer program product comprising computer program instructions capable of:

dynamically during operation of the computer, setting, by an in-band power manager in dependence upon performance metrics of the computer processor, a current performance state (‘p-state’) of the computer processor; and

providing, by the in-band power manager to an out-of-band power manager, the current p-state of the computer processor;

wherein:

the computer program instructions are further capable of setting, by the out-of-band power manager, in the in-band power manager, a minimum p-state; and

setting, by the in-band power manager, a current p-state of the computer processor further comprises setting the current p-state of the computer processor in dependence upon the minimum p-state.

10. The computer program product of claim 9 further comprising computer program instructions capable of:

calculating, by the out-of-band power manager, in dependence upon currently-measured operating metrics of the computer processor, a power setpoint for the computer processor, and the current p-state, an operating state for the computer processor.

11. The computer program product of claim 9 wherein:

the computer program instructions are further capable of setting, by the out-of-band power manager, in the in-band power manager, a maximum p-state; and

setting, by the in-band power manager, a current p-state of the computer processor further comprises setting the current p-state of the computer processor in dependence upon the maximum p-state.

12. The computer program product of claim 9 wherein setting, by the in-band power manager, a current p-state of the computer processor further comprises setting a core voltage level for the computer processor and a clock speed of the computer processor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2025
From: INTERNATIONAL BUSINESS MACHINES CORPORATION
To: BLUE HERON DEVELOPMENT LLC
Reel/Frame 070130/0844 →
Continuity (2)
Continuation 12146056 · Jun 25, 2008
Related Publication 20120284540A1 · Nov 8, 2012