IP Library › Granted Patent US 12,101,379
Granted Patent B2
US 12,101,379 · App. 18/312,435 · Granted Sep 24, 2024

Multilevel load balancing

Inventors: Prabhath Sajeepa (Milpitas, CA); Daniel Talayco (Sunnyvale, CA); Qing Yang (San Jose, CA); Robert Lee (Pebble Beach, CA)
Assignee: PURE STORAGE, INC.
H04L67/1097G06F3/06G06F3/0604G06F3/061G06F3/0611G06F3/0613G06F3/0635G06F3/065G06F3/0655G06F3/0659G06F3/067G06F3/0685G06F3/0688G06F3/0689G06F11/1068G06F11/2092G06F12/0246G11C29/52H03M13/154H04L49/10H04L67/51G06F11/108G06F2201/805G06F2201/845G06F2212/7206G06F2212/7207
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Quick Facts
Patent No.
US 12,101,379
App. No.
18/312,435
Granted
Sep 24, 2024
Kind
B2
Abstract

A storage system is provided. The storage system includes a first storage cluster, the first storage cluster having a first plurality of storage nodes coupled together and a second storage cluster, the second storage cluster having a second plurality of storage nodes coupled together. The system includes an interconnect coupling the first storage cluster and the second storage cluster and a first pathway coupling the interconnect to each storage cluster. The system includes a second pathway, the second pathway coupling at least one fabric module within a chassis to each blade within the chassis.

Claims (23)

1. A storage system, comprising:

a multilevel load balancing mechanism wherein a first load balancing operation identifies a storage node of the storage system to which data should be transmitted, and wherein a blade of the identified storage node is identified to receive the data based on a second load balancing mechanism.

2. The storage system of claim 1 , wherein the blade is one of a plurality of blades, wherein the blade has a differing network bandwidth than another one of the plurality of blades.

3. The storage system of claim 1 , wherein one of a plurality of blades of the identified storage node has a differing capacity of non-volatile storage than another one of the plurality of blades.

4. The storage system of claim 1 , wherein the one of the plurality of storage arrays contain storage units having non-volatile memory of differing capacity.

5. The storage system of claim 1 , wherein the second load balancing mechanism is based on a table accessed by a fabric module of the storage array, and wherein the fabric module is configurable to forward packets to a blade in a differing storage array.

6. The storage system of claim 1 , wherein the first load balancing mechanism is executed through a switch.

7. The storage system of claim 1 , wherein the storage system presents a single media access control address to external networks.

8. A method, comprising:

forwarding an input/output (I/O) request to a blade of a storage node based upon a first load balancing mechanism, wherein the I/O request was received by the storage node from a switch coupled to a plurality of storage nodes based on a second load balancing mechanism.

9. The method of claim 8 , wherein the first load balancing mechanism is based on an amount of blades within the storage nodes and the second load balancing mechanism differs from the first load balancing mechanism.

10. The method of claim 8 , wherein the storage node includes a plurality of blades, in which one of the plurality of blades has a differing capacity of non-volatile storage than another one of the plurality of blades.

11. The method of claim 10 , wherein the one of the plurality of blades contains storage units having non-volatile memory of differing capacity.

12. The method of claim 11 wherein storage units of differing blades can communicate with each other without assistance from storage nodes.

13. The method of claim 8 , wherein a storage system presents a single media access control address to external networks.

14. The method of claim 8 , wherein storage nodes with differing blade populations receive differing traffic loads.

15. A tangible, non-transitory, computer-readable media having instructions thereupon which, when executed by a processor, cause the processor to perform a method comprising:

forwarding an input/output (I/O) request to a blade of a storage node based upon a first load balancing mechanism, wherein the I/O request was received by the storage node from a switch coupled to a plurality of storage nodes based on a second load balancing mechanism.

16. The computer-readable media of claim 15 , wherein the first load balancing mechanism is based on an amount of blades within the storage nodes and the second load balancing mechanism differs from the first load balancing mechanism.

17. The computer-readable media of claim 15 , wherein the storage node includes a plurality of blades, in which one of the plurality of blades has a differing capacity of non-volatile storage than another one of the plurality of blades.

18. The computer-readable media of claim 17 , wherein the one of the plurality of blades contains storage units having non-volatile memory of differing capacity.

19. The computer-readable media of claim 18 , wherein storage units of differing blades can communicate with each other without assistance from storage nodes.

20. The computer-readable media of claim 15 , wherein a storage system presents a single media access control address to external networks.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2023
From: LEE, ROBERT; SAJEEPA, PRABHATH; TALAYCO, DANIEL; YANG, QING
To: PURE STORAGE, INC.
Reel/Frame 063541/0745 →
Continuity (11)
Continuation 17704751 · Mar 25, 2022
Continuation 16799551 · Feb 24, 2020
Continuation 15885666 · Jan 31, 2018
Continuation In Part 15376220 · Dec 12, 2016
Continuation 15167792 · May 27, 2016
Continuation 14961665 · Dec 7, 2015
Continuation 14618999 · Feb 10, 2015
Continuation In Part 14610766 · Jan 30, 2015
Continuation 14491552 · Sep 19, 2014
Continuation 14296151 · Jun 4, 2014
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