IP Library Granted Patent US 11,218,566
Granted Patent B2
US 11,218,566 · App. 17/095,325 · Granted Jan 4, 2022

Control in a content delivery network

Inventors: Laurence R. Lipstone (Calabasas, CA); William Crowder (Camarillo, CA); Jeffrey G. Koller (Oxnard, CA); David Fullagar (Boulder, CO); Maksim Yevmenkin (Thousand Oaks, CA); Christopher Newton (Westlake Village, CA)
Assignee: Level 3 Communications, LLC
H04L67/32H04L41/0856H04L41/0893H04L41/509H04L41/5064H04L67/02H04L67/26H04L67/2842H04L67/2852H04L67/34H04L67/42H04L69/22H04L63/166
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Quick Facts
Patent No.
US 11,218,566
App. No.
17/095,325
Granted
Jan 4, 2022
Kind
B2
Abstract

A content delivery network (CDN) includes a plurality of CDN components including at least one CDN rendezvous mechanism and at least one control core. The CDN components are controlled by control core data from the at least one control core. Some CDN components obtain CDN resources including control core data from at least some other CDN components. The CDN components use the CDN rendezvous mechanism to select one or more CDN components from which to obtain CDN resources.

Claims (35)

1. A content delivery network (CDN) comprising:

a plurality of CDN components including at least one CDN rendezvous mechanism and at least one control core,

wherein the plurality of CDN components are controlled by control core data from the at least one control core, and

wherein at least some particular CDN components are constructed and adapted to obtain CDN resources from at least some other CDN components, and

wherein the CDN components use the CDN rendezvous mechanism to select one or more CDN components from which to obtain CDN resources,

wherein the CDN has a current CDN configuration and wherein the at least one control core keeps an authoritative database of the current CDN configuration, and

wherein the at least one control core comprises a distributed control core comprising a plurality of machines, and

wherein data representing the current CDN configuration are replicated across the plurality of machines comprising the at least one control core.

2. The CDN of claim 1 , wherein the at least one CDN rendezvous mechanism rendezvous a particular CDN component of the plurality of CDN components to a control core machine that is best or optimal for that particular CDN component.

3. The CDN of claim 1 , wherein at least some particular CDN components are controlled by control core data from the at least one control core.

4. The CDN of claim 3 , wherein the control core data comprises resources distributed by the control core.

5. The CDN of claim 1 , wherein the plurality of CDN components comprise:

a plurality of cache servers, each constructed and adapted to deliver resources associated with at least one customer of the CDN.

6. The CDN of claim 5 , wherein said cache servers are customers of the CDN.

7. The CDN of claim 1 , wherein the plurality of CDN components are controlled by control core data from the at least one control core.

8. The CDN of claim 7 , wherein the control core data comprises resources provided by the control core in response to requests from internal CDN components.

9. The CDN of claim 1 , wherein the control core uses a distributed consensus algorithm to achieve consensus among the plurality of machines.

10. The CDN of claim 1 , wherein the plurality of CDN components access at least one control core via one or more control core domain names.

11. The CDN of claim 10 , wherein the plurality of CDN components use the at least one CDN rendezvous mechanism to resolve the one or more control core domain names.

12. The CDN of claim 1 , wherein said control core data comprises control objects.

13. The CDN of claim 12 , wherein the CDN comprises one or more tiers of CDN components, organized hierarchically and wherein the at least one control core comprises an origin tier for said control objects.

14. The CDN of claim 1 , wherein a particular CDN component of said plurality of CDN components obtains CDN data using the CDN.

15. The CDN of claim 1 , wherein at least some CDN components of said plurality of CDN components obtain CDN control core data using the CDN.

16. A content delivery network (CDN) comprising:

a plurality of CDN components including at least one CDN rendezvous mechanism and at least one control core,

wherein the plurality of CDN components are controlled by control core data from the at least one control core, and

wherein at least some particular CDN components are constructed and adapted to obtain

CDN resources from at least some other CDN components, and

wherein the CDN components use the CDN rendezvous mechanism to select one or more CDN components from which to obtain CDN resources,

wherein the CDN has a current CDN configuration and wherein the at least one control core keeps an authoritative database of the current CDN configuration, and

wherein the control core uses voting to maintain consistency of the authoritative database.

17. The CDN of claim 16 , wherein the at least one CDN rendezvous mechanism rendezvous a particular CDN component of the plurality of CDN components to a control core machine that is best or optimal for that particular CDN component.

18. The CDN of claim 16 , wherein at least some particular CDN components are controlled by control core data from the at least one control core, wherein the control core data comprises resources distributed by the control core.

19. The CDN of claim 16 , wherein the control core comprises a plurality of machines, and wherein the control core uses a distributed consensus algorithm to achieve consensus among the plurality of machines.

20. The CDN of claim 16 , wherein the plurality of CDN components access at least one control core via one or more control core domain names, and wherein the plurality of CDN components use the at least one CDN rendezvous mechanism to resolve the one or more control core domain names.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 9, 2024
From: LEVEL 3 COMMUNICATIONS, LLC
To: SANDPIPER CDN, LLC
Reel/Frame 068256/0091 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 11, 2020
From: NEWTON, CHRISTOPHER; LIPSTONE, LAURENCE R.; CROWDER, WILLIAM; KOLLER, JEFFREY G.; FULLAGAR, DAVID; YEVMENKIN, MAKSIM
To: LEVEL 3 COMMUNICATIONS, LLC
Reel/Frame 054338/0681 →