IP Library Granted Patent US 11,256,655
Granted Patent B2
US 11,256,655 · App. 16/872,038 · Granted Feb 22, 2022

System and method for providing bandwidth congestion control in a private fabric in a high performance computing environment

Inventors: Bjørn Dag Johnsen (Oslo, NO); Ajoy Siddabathuni (Santa Clara, CA); Avneesh Pant (Redwood City, CA); Amarnath Jolad (Redwood City, CA)
Assignee: ORACLE INTERNATIONAL CORPORATION
G06F15/17331G06F9/45558H04L41/12H04L41/5003H04L45/48H04L47/17H04L47/2433H04L47/26H04L47/30H04L47/33H04L47/805H04L49/358H04W28/0983G06F2009/45583G06F2009/45595H04L49/70
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Quick Facts
Patent No.
US 11,256,655
App. No.
16/872,038
Filed
May 11, 2020
Granted
Feb 22, 2022
Kind
B2
Examiner
TANG, KIET G
Art Unit
2469
USPC
709/223
Abstract

Systems and methods for providing bandwidth congestion control in a private fabric in a high performance computing environment. An exemplary method can provide, at one or more microprocessors, a first subnet, the first subnet comprising a plurality of switches, and a plurality of host channel adapters, wherein each of the host channel adapters comprise at least one host channel adapter port, and wherein the plurality of host channel adapters are interconnected via the plurality of switches, and a plurality of end nodes. The method can provide, at a host channel adapter, an end node ingress bandwidth quota associated with an end node attached to the host channel adapter. The method can receive, at the end node of the host channel adapter, ingress bandwidth, the ingress bandwidth exceeding the ingress bandwidth quota of the end node.

Claims (55)

1. A system for providing bandwidth congestion control in a private fabric in a high performance computing environment, comprising:

a computer comprising one or more microprocessors;

a first subnet provided at the computer, the first subnet comprising

a plurality of switches, the plurality switches comprising at least a leaf switch, wherein each of the plurality of switches comprise a plurality of switch ports,

a plurality of host channel adapters, wherein each of the host channel adapters comprise at least one host channel adapter port, and wherein the plurality of host channel adapters are interconnected via the plurality of switches, and a plurality of end nodes;

wherein an end node ingress bandwidth quota associated with an end node is provided at a host channel adapter, the end node being attached to the host channel adapter;

wherein ingress bandwidth is received at the end node of the host channel adapter, the ingress bandwidth exceeding the ingress bandwidth quota of the end node, wherein the ingress bandwidth is received from at least two remote end nodes;

wherein a target group is defined on at least one of an inter-switch link between two switches of the plurality of switches or at a port of a switch of the plurality of switches, wherein the target group defines a bandwidth limit on the at least one of an inter-switch link between two switches of the plurality of switches or at a port of a switch of the plurality of switches;

wherein a target group repository is stored in memory of the host channel adapter; and

wherein the defined target group is recorded in the target group repository.

2. The system of claim 1 ,

wherein in response to the receiving the ingress bandwidth from the at least two remote end nodes, the bandwidth quota of the target group is updated.

3. The system of claim 1 ,

wherein a bandwidth quota is negotiated between the end node attached to the host channel adapter and the at least two remote end nodes.

4. The system of claim 3 ,

wherein, in response to receiving the ingress bandwidth from the at least two remote end nodes, a response message is sent from the end node attached to the host channel adapter to the at least two remote end nodes.

5. The system of claim 4 , wherein the response message indicates that the ingress bandwidth quota of the end node attached to the host channel adapter is being exceeded.

6. The system of claim 5 ,

wherein the first subnet comprises an InfiniBand subnet.

7. A method for providing bandwidth congestion control in a private fabric in a high performance computing environment, comprising:

providing, at one or more microprocessors, a first subnet, the first subnet comprising

a plurality of switches, the plurality switches comprising at least a leaf switch, wherein

each of the plurality of switches comprise a plurality of switch ports,

a plurality of host channel adapters, wherein each of the host channel adapters comprise at least one host channel adapter port, and wherein the plurality of host channel adapters are interconnected via the plurality of switches, and a plurality of end nodes;

providing, at a host channel adapter, an end node ingress bandwidth quota associated with an end node attached to the host channel adapter;

receiving, at the end node of the host channel adapter, ingress bandwidth, the ingress bandwidth exceeding the ingress bandwidth quota of the end node, wherein the ingress bandwidth is received from at least two remote end nodes;

defining a target group on at least one of an inter-switch link between two switches of the plurality of switches or at a port of a switch of the plurality of switches, wherein the target group defines a bandwidth limit on the at least one of an inter-switch link between two switches of the plurality of switches or at a port of a switch of the plurality of switches;

providing, at a host channel adapter, a target group repository stored in a memory of the host channel adapter; and

recording the defined target group in the target group repository.

8. The method of claim 7 , further comprising:

in response to the receiving the ingress bandwidth from the at least two remote end nodes, updating the bandwidth quota of the target group.

9. The method of claim 7 , further comprising:

negotiating a bandwidth quota between the end node attached to the host channel adapter and the at least two remote end nodes.

10. The method of claim 9 , further comprising:

in response to receiving the ingress bandwidth from the at least two remote end nodes, sending a response message from the end node attached to the host channel adapter to the at least two remote end nodes.

11. The method of claim 10 , wherein the response message indicates that the ingress bandwidth quota of the end node attached to the host channel adapter is being exceeded.

12. The method of claim 11 ,

wherein the first subnet comprises an InfiniBand subnet.

13. A non-transitory computer readable storage medium having instructions thereon for providing bandwidth congestion control in a private fabric in a high performance computing environment, which when read and executed cause a computer to perform steps comprising:

providing, at one or more microprocessors, a first subnet, the first subnet comprising a plurality of switches, the plurality switches comprising at least a leaf switch, wherein

each of the plurality of switches comprise a plurality of switch ports, a plurality of host channel adapters, wherein each of the host channel adapters

comprise at least one host channel adapter port, and wherein the plurality of host channel

adapters are interconnected via the plurality of switches, and a plurality of end nodes;

providing, at a host channel adapter, an end node ingress bandwidth quota associated with an end node attached to the host channel adapter;

receiving, at the end node of the host channel adapter, ingress bandwidth, the ingress bandwidth exceeding the ingress bandwidth quota of the end node, wherein the ingress bandwidth is received from at least two remote end nodes;

defining a target group on at least one of an inter-switch link between two switches of the plurality of switches or at a port of a switch of the plurality of switches, wherein the target group defines a bandwidth limit on the at least one of an inter-switch link between two switches of the plurality of switches or at a port of a switch of the plurality of switches;

providing, at a host channel adapter, a target group repository stored in a memory of the host channel adapter; and

recording the defined target group in the target group repository.

14. The non-transitory computer readable storage medium of claim 13 , the steps further comprising:

in response to the receiving the ingress bandwidth from the at least two remote end nodes, updating the bandwidth quota of the target group.

15. The non-transitory computer readable storage medium of claim 13 , the steps further comprising:

negotiating a bandwidth quota between the end node attached to the host channel adapter and the at least two remote end nodes.

16. The non-transitory computer readable storage medium of claim 15 , the steps further comprising:

in response to receiving the ingress bandwidth from the at least two remote end nodes, sending a response message from the end node attached to the host channel adapter to the at least two remote end nodes.

17. The non-transitory computer readable storage medium of claim 16 , wherein the response message indicates that the ingress bandwidth quota of the end node attached to the host channel adapter is being exceeded.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2020
From: JOHNSEN, BJORN DAG; SIDDABATHUNI, AJOY; PANT, AVNEESH; JOLAD, AMARNATH
To: ORACLE INTERNATIONAL CORPORATION
Reel/Frame 052640/0740 →
Continuity (2)
Provisional Application 62937594 · Nov 19, 2019
Related Publication 20210152494A1 · May 20, 2021
Cited By (3)
US 12,289,278 US 12,489,718 US 12,675,338