IP Library Granted Patent US 9,501,128
Granted Patent B2
US 9,501,128 · App. 14/067,314 · Granted Nov 22, 2016

Cooperative reduced power mode suspension for high input/output (‘I/O’) workloads

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Quick Facts
Patent No.
US 9,501,128
App. No.
14/067,314
Granted
Nov 22, 2016
Kind
B2
Abstract

Method of cooperative reduced power mode suspension for high input/output (‘I/O’) workloads, including: determining, by a transfer monitoring module, a size of a file to be transferred to a recipient, wherein the recipient includes a central processing unit (‘CPU’) operating in a reduced power mode; determining, by the transfer monitoring module, a desired transfer rate for transferring the file to the recipient; calculating, by the transfer monitoring module, an expected transfer completion time in dependence upon the size of the file and the desired transfer rate; and sending, by the transfer monitoring module, a message to the recipient requesting that the CPU suspend the reduced power mode in dependence upon the expected transfer completion time.

Claims (48)

1. An apparatus for cooperative reduced power mode suspension for high input/output (‘I/O’) workloads, the apparatus comprising a computer processor, a computer memory operatively coupled to the computer processor, the computer memory having disposed within it computer program instructions that, when executed by the computer processor, cause the apparatus to carry out the steps of:

determining, by a transfer monitoring module, a size of a file to be transferred to a recipient, wherein the recipient includes a central processing unit (‘CPU’) operating in a reduced power mode;

determining, by the transfer monitoring module, a desired transfer rate for transferring the file to the recipient;

calculating, by the transfer monitoring module, an expected transfer completion time in dependence upon the size of the file and the desired transfer rate; and

sending, by the transfer monitoring module, a message to the recipient requesting that the CPU suspend the reduced power mode in dependence upon the expected transfer completion time;

determining, by the transfer monitoring module, a size of memory free in a transfer receive buffer of the recipient;

determining, by the transfer monitoring module, whether the size of memory free in the transfer receive buffer of the recipient exceeds the size of the file to be transferred; and

wherein, responsive to determining that the size of memory free in the transfer receive buffer of the recipient exceeds the size of the file to be transferred, sending the message to the recipient includes suppressing the message to the recipient requesting that the CPU suspend the reduced power mode.

2. An apparatus for cooperative reduced power mode suspension for high input/output (‘I/O’) workloads, the apparatus comprising a computer processor, a computer memory operatively coupled to the computer processor, the computer memory having disposed within it computer program instructions that, when executed by the computer processor, cause the apparatus to carry out the steps of:

determining, by a transfer monitoring module, a size of a file to be transferred to a recipient, wherein the recipient includes a central processing unit (‘CPU’) operating in a reduced power mode;

determining, by the transfer monitoring module, a desired transfer rate for transferring the file to the recipient;

calculating, by the transfer monitoring module, an expected transfer completion time in dependence upon the size of the file and the desired transfer rate; and

sending, by the transfer monitoring module, a message to the recipient requesting that the CPU suspend the reduced power mode in dependence upon the expected transfer completion time;

determining, by the transfer monitoring module, an amount of time required for the CPU to switch to a reduced power mode;

calculating, by the transfer monitoring module, a remaining transfer completion time in dependence upon the size of a remaining portion of the file to be transferred and the desired transfer rate;

determining, by the transfer monitoring module, whether the remaining transfer completion time is less than or equal to the amount of time required for the CPU to switch to the reduced power mode; and

responsive to determining that the remaining transfer completion time is less than or equal to the amount of time required for the CPU to switch to the reduced power mode, sending a message to the recipient requesting that the CPU enter the reduced power mode.

3. An apparatus for cooperative reduced power mode suspension for high input/output (‘I/O’) workloads, the apparatus comprising a computer processor, a computer memory operatively coupled to the computer processor, the computer memory having disposed within it computer program instructions that, when executed by the computer processor, cause the apparatus to carry out the steps of:

determining, by a transfer monitoring module, a size of a file to be transferred to a recipient, wherein the recipient includes a central processing unit (‘CPU’) operating in a reduced power mode;

determining, by the transfer monitoring module, a desired transfer rate for transferring the file to the recipient;

calculating, by the transfer monitoring module, an expected transfer completion time in dependence upon the size of the file and the desired transfer rate; and

sending, by the transfer monitoring module, a message to the recipient requesting that the CPU suspend the reduced power mode in dependence upon the expected transfer completion time;

determining, by the transfer monitoring module, an amount of time until available memory in a transfer receive buffer of the recipient will be fully utilized in dependence upon the desired transfer rate for transferring the file to the recipient; and

wherein sending, by the transfer monitoring module, a message to the recipient requesting that the CPU suspend the reduced power mode in dependence upon the expected transfer completion time further comprises suppressing the message in dependence upon the amount of time until available memory in a transfer receive buffer of the recipient will be fully utilized.

4. A computer program product for cooperative reduced power mode suspension for high input/output (‘I/O’) workloads, the computer program product disposed upon a computer readable medium excluding signals, the computer program product comprising computer program instructions that, when executed, cause a computer to carry out the steps of:

determining, by a transfer monitoring module, a size of a file to be transferred to a recipient, wherein the recipient includes a central processing unit (‘CPU’) operating in a reduced power mode;

determining, by the transfer monitoring module, a desired transfer rate for transferring the file to the recipient;

calculating, by the transfer monitoring module, an expected transfer completion time in dependence upon the size of the file and the desired transfer rate; and

sending, by the transfer monitoring module, a message to the recipient requesting that the CPU suspend the reduced power mode in dependence upon the expected transfer completion time;

determining, by the transfer monitoring module, a size of memory free in a transfer receive buffer of the recipient;

determining, by the transfer monitoring module, whether the size of memory free in the transfer receive buffer of the recipient exceeds the size of the file to be transferred; and

wherein, responsive to determining that the size of memory free in the transfer receive buffer of the recipient exceeds the size of the file to be transferred, sending the message to the recipient includes suppressing the message to the recipient requesting that the CPU suspend the reduced power mode.

5. A computer program product for cooperative reduced power mode suspension for high input/output (‘I/O’) workloads, the computer program product disposed upon a computer readable medium excluding signals, the computer program product comprising computer program instructions that, when executed, cause a computer to carry out the steps of:

determining, by a transfer monitoring module, a size of a file to be transferred to a recipient, wherein the recipient includes a central processing unit (‘CPU’) operating in a reduced power mode;

determining, by the transfer monitoring module, a desired transfer rate for transferring the file to the recipient;

calculating, by the transfer monitoring module, an expected transfer completion time in dependence upon the size of the file and the desired transfer rate; and

sending, by the transfer monitoring module, a message to the recipient requesting that the CPU suspend the reduced power mode in dependence upon the expected transfer completion time;

determining, by the transfer monitoring module, an amount of time required for the CPU to switch to a reduced power mode;

calculating, by the transfer monitoring module, a remaining transfer completion time in dependence upon the size of a remaining portion of the file to be transferred and the desired transfer rate;

determining, by the transfer monitoring module, whether the remaining transfer completion time is less than or equal to the amount of time required for the CPU to switch to the reduced power mode; and

responsive to determining that the remaining transfer completion time is less than or equal to the amount of time required for the CPU to switch to the reduced power mode, sending a message to the recipient requesting that the CPU enter the reduced power mode.

6. A computer program product for cooperative reduced power mode suspension for high input/output (‘I/O’) workloads, the computer program product disposed upon a computer readable medium excluding signals, the computer program product comprising computer program instructions that, when executed, cause a computer to carry out the steps of:

determining, by a transfer monitoring module, a size of a file to be transferred to a recipient, wherein the recipient includes a central processing unit (‘CPU’) operating in a reduced power mode;

determining, by the transfer monitoring module, a desired transfer rate for transferring the file to the recipient;

calculating, by the transfer monitoring module, an expected transfer completion time in dependence upon the size of the file and the desired transfer rate; and

sending, by the transfer monitoring module, a message to the recipient requesting that the CPU suspend the reduced power mode in dependence upon the expected transfer completion time;

determining, by the transfer monitoring module, an amount of time until available memory in a transfer receive buffer of the recipient will be fully utilized in dependence upon the desired transfer rate for transferring the file to the recipient; and

wherein sending, by the transfer monitoring module, a message to the recipient requesting that the CPU suspend the reduced power mode in dependence upon the expected transfer completion time further comprises suppressing the message in dependence upon the amount of time until available memory in a transfer receive buffer of the recipient will be fully utilized.

Assignments (8)
RELEASE OF SECURITY INTEREST Recorded May 12, 2021
From: WILMINGTON TRUST, NATIONAL ASSOCIATION
To: GLOBALFOUNDRIES U.S. INC.
Reel/Frame 056987/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2021
From: GLOBALFOUNDRIES US INC.
To: MEDIATEK INC.
Reel/Frame 055173/0781 →
RELEASE OF SECURITY INTEREST Recorded Nov 20, 2020
From: WILMINGTON TRUST, NATIONAL ASSOCIATION
To: GLOBALFOUNDRIES INC.
Reel/Frame 054636/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 2, 2020
From: GLOBALFOUNDRIES INC.
To: GLOBALFOUNDRIES U.S. INC.
Reel/Frame 054633/0001 →
SECURITY AGREEMENT Recorded Nov 29, 2018
From: GLOBALFOUNDRIES INC.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION
Reel/Frame 049490/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2015
From: GLOBALFOUNDRIES U.S. 2 LLC; GLOBALFOUNDRIES U.S. INC.
To: GLOBALFOUNDRIES INC.
Reel/Frame 036779/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 3, 2015
From: INTERNATIONAL BUSINESS MACHINES CORPORATION
To: GLOBALFOUNDRIES U.S. 2 LLC
Reel/Frame 036550/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2013
From: ALSHINNAWI, SHAREEF F.; CUDAK, GARY D.; JOHNSON, JARROD B.; REESE, BRYAN M.
To: INTERNATIONAL BUSINESS MACHINES CORPORATION
Reel/Frame 031511/0745 →