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OSPF YANG Model Augmentations for Additional Features - Release 1
draft-ietf-lsr-ospf-yang-augmentation-v1-19
| Document | Type | Active Internet-Draft (lsr WG) | |
|---|---|---|---|
| Authors | Acee Lindem , Yingzhen Qu | ||
| Last updated | 2026-07-04 | ||
| Replaces | draft-acee-lsr-ospf-yang-augmentation-v1 | ||
| RFC stream | Internet Engineering Task Force (IETF) | ||
| Intended RFC status | Proposed Standard | ||
| Formats | |||
| Yang Validation |
0 errors, 0 warnings
|
||
| Additional resources |
Yang catalog entry for ietf-ospf-graceful-link-shutdown@2020-10-31.yang
Yang catalog entry for ietf-ospf-link-attr@2020-10-31.yang Yang catalog entry for ietf-ospf-lls-local-id@2020-04-24.yang Yang catalog entry for ietf-ospf-two-part-metric@2020-04-24.yang Yang catalog entry for ietf-ospfv3-te@2020-04-24.yang Yang impact analysis for draft-ietf-lsr-ospf-yang-augmentation-v1 Mailing list discussion |
||
| Stream | WG state | WG Document | |
| Document shepherd | Christian Hopps | ||
| IESG | IESG state | I-D Exists | |
| Consensus boilerplate | Yes | ||
| Telechat date | (None) | ||
| Responsible AD | (None) | ||
| Send notices to | Christian Hopps <chopps@chopps.org> |
draft-ietf-lsr-ospf-yang-augmentation-v1-19
Internet A. Lindem
Internet-Draft Arrcus, Inc
Intended status: Standards Track Y. Qu
Expires: 5 January 2027 Futurewei Technologies
4 July 2026
OSPF YANG Model Augmentations for Additional Features - Release 1
draft-ietf-lsr-ospf-yang-augmentation-v1-19
Abstract
This document defines YANG data modules that augment the IETF OSPF
YANG model to support various OSPF extensions and features, including
Traffic Engineering Extensions to OSPF Version 3 as defined in RFC
5329, OSPF Two-Part Metric as defined in RFC 8042, OSPF Graceful Link
Shutdown as defined in RFC 8379, OSPF Link-Local Signaling (LLS)
Extensions for Local Interface ID Advertisement as defined in RFC
8510, OSPF MSD as defined in RFC 8476, OSPF Application-Specific Link
Attributes as defined in RFC 9492, and OSPF Flexible Algorithm as
defined in RFC 9350.
Status of This Memo
This Internet-Draft is submitted in full conformance with the
provisions of BCP 78 and BCP 79.
Internet-Drafts are working documents of the Internet Engineering
Task Force (IETF). Note that other groups may also distribute
working documents as Internet-Drafts. The list of current Internet-
Drafts is at https://datatracker.ietf.org/drafts/current/.
Internet-Drafts are draft documents valid for a maximum of six months
and may be updated, replaced, or obsoleted by other documents at any
time. It is inappropriate to use Internet-Drafts as reference
material or to cite them other than as "work in progress."
This Internet-Draft will expire on 5 January 2027.
Copyright Notice
Copyright (c) 2026 IETF Trust and the persons identified as the
document authors. All rights reserved.
This document is subject to BCP 78 and the IETF Trust's Legal
Provisions Relating to IETF Documents (https://trustee.ietf.org/
license-info) in effect on the date of publication of this document.
Please review these documents carefully, as they describe your rights
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and restrictions with respect to this document. Code Components
extracted from this document must include Revised BSD License text as
described in Section 4.e of the Trust Legal Provisions and are
provided without warranty as described in the Revised BSD License.
Table of Contents
1. Overview . . . . . . . . . . . . . . . . . . . . . . . . . . 2
1.1. Requirements Language . . . . . . . . . . . . . . . . . . 3
2. YANG Module for Traffic Engineering Extensions to OSPF . . . 3
3. YANG Module for OSPF Extensions in Support of Inter-Autonomous
System (AS) MPLS and GMPLS Traffic Engineering . . . . . 10
4. YANG Module for OSPF Two-Part Metric . . . . . . . . . . . . 21
5. YANG Module for OSPF Graceful Link Shutdown . . . . . . . . . 26
6. YANG Module for OSPF LLS Extenstion for Local Interface ID
Advertisement . . . . . . . . . . . . . . . . . . . . . . 31
7. YANG Module for OSPF Maximum SID Depth (MSD) . . . . . . . . 33
8. YANG Module for Advertising Layer 2 Bundle Member Link
Attributes in OSPF . . . . . . . . . . . . . . . . . . . 39
9. YANG Module for OSPF Flexible Algorithms: Bandwidth, Delay,
Metrics and Constraints . . . . . . . . . . . . . . . . . 48
10. Security Considerations . . . . . . . . . . . . . . . . . . . 69
11. IANA Considerations . . . . . . . . . . . . . . . . . . . . . 70
12. Acknowledgements . . . . . . . . . . . . . . . . . . . . . . 72
13. Normative References . . . . . . . . . . . . . . . . . . . . 72
Authors' Addresses . . . . . . . . . . . . . . . . . . . . . . . 74
1. Overview
This document defines YANG [RFC7950] data modules augmenting the IETF
OSPF YANG model [RFC9129], which itself augments [RFC8349], to
provide support for configuration and operational state for the
following OSPF features:
RFC5329: Traffic Engineering Extensions to OSPF Version 3 [RFC5329].
RFC5392: OSPF Extensions in Support of Inter-Autonomous System (AS)
MPLS and GMPLS Traffic Engineering [RFC5392].
RFC8042: OSPF Two-Part Metric [RFC8042].
RFC8379: OSPF Graceful Link Shutdown [RFC8379].
RFC8476: Signaling Maximum SID Depth (MSD) Using OSPF[RFC8476].
RFC8510: OSPF Link-Local Signaling (LLS) Extensions for Local
Interface ID Advertisement [RFC8510].
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RFC9356: Advertising Layer 2 Bundle Member Link Attributes in OSPF
[RFC9356].
RFC9843: IGP Flexible Algorithms: Bandwidth, Delay, Metrics and
Constraints [RFC9843].
The augmentations defined in this document requires support for the
OSPF base model[RFC9129] which defines basic OSPF configuration and
state. The OSPF YANG model augments the ietf-routing YANG model
defined in [RFC8349].
1.1. Requirements Language
The key words "MUST", "MUST NOT", "REQUIRED", "SHALL", "SHALL NOT",
"SHOULD", "SHOULD NOT", "RECOMMENDED", "MAY", and "OPTIONAL" in this
document are to be interpreted as described in [RFC2119].
2. YANG Module for Traffic Engineering Extensions to OSPF
This document defines a YANG module for Traffic Engineering
Extensions to OSPF as defined in [RFC3630] and [RFC5329]. It is an
augmentation of the OSPF base model.
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module: ietf-ospfv3-te
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:mpls:
+--rw traffic-eng
+--rw enable? boolean
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas
/ospf:area/ospf:interfaces/ospf:interface:
+--rw traffic-eng
+--rw enable? boolean
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type/ospf:area-scope-lsas
/ospf:area-scope-lsa/ospf:version/ospf:ospfv3/ospf:ospfv3
/ospf:body:
+--ro ospfv3-intra-area-te
+--ro router-address-tlv
| +--ro router-address? inet:ipv6-address
+--ro link-tlv
+--ro link-type ospf:router-link-type
+--ro local-if-ipv6-addrs
| +--ro local-if-ipv6-addr* inet:ipv6-address
+--ro remote-if-ipv6-addrs
| +--ro remote-if-ipv6-addr* inet:ipv6-address
+--ro te-metric? uint32
+--ro max-bandwidth?
| rt-types:bandwidth-ieee-float32
+--ro max-reservable-bandwidth?
| rt-types:bandwidth-ieee-float32
+--ro unreserved-bandwidths
| +--ro unreserved-bandwidth*
| +--ro priority? uint8
| +--ro unreserved-bandwidth?
| rt-types:bandwidth-ieee-float32
+--ro admin-group? uint32
+--ro neighbor-id
| +--ro nbr-interface-id uint32
| +--ro nbr-router-id rt-types:router-id
+--ro unknown-tlvs
+--ro unknown-tlv*
+--ro type? uint16
+--ro length? uint16
+--ro value? yang:hex-string
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<CODE BEGINS> file "ietf-ospf-te@2025-02-27.yang"
module ietf-ospf-te {
yang-version 1.1;
namespace "urn:ietf:params:xml:ns:yang:ietf-ospf-te";
prefix ospf-te;
import ietf-inet-types {
prefix inet;
reference
"RFC 6991: Common YANG Data Types";
}
import ietf-routing-types {
prefix rt-types;
reference
"RFC 8294: Common YANG Data Types for the Routing Area";
}
import ietf-routing {
prefix rt;
reference
"RFC 8349: A YANG Data Model for Routing
Management (NMDA Version)";
}
import ietf-ospf {
prefix ospf;
reference
"RFC 9129: YANG Data Model for the OSPF Protocol";
}
organization
"IETF LSR - Link State Routing Working Group";
contact
"WG Web: <https://datatracker.ietf.org/wg/lsr/>
WG List: <mailto:lsr@ietf.org>
Author: Yingzhen Qu
<mailto:yqu@futurewei.com>
Author: Acee Lindem
<mailto:acee.ietf@gmail.com>";
description
"This YANG module defines the configuration and operational
state for Traffic Engineering (TE) Extensions to OSPF Version 2
as defined in RFC 3630 and OSPFv3 extensions to support
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intra-area Traffic Engineering (TE) as defined in RFC 5329.
Copyright (c) 2025 IETF Trust and the persons identified as
authors of the code. All rights reserved.
Redistribution and use in source and binary forms, with or
without modification, is permitted pursuant to, and subject to
the license terms contained in, the Revised BSD License set
forth in Section 4.c of the IETF Trust's Legal Provisions
Relating to IETF Documents
(https://trustee.ietf.org/license-info).
This version of this YANG module is part of RFC XXXX;
see the RFC itself for full legal notices.";
reference "RFC XXXX";
revision 2025-02-27 {
description
"Initial version";
reference
"RFC XXXX: OSPF YANG Model Augmentations for Additional
Features - Version 1";
}
identity ospfv3-intra-area-te-lsa {
base ospf:ospfv3-lsa-type;
description
"OSPFv3 Intrea-area TE LSA.";
}
grouping ospfv3-intra-area-te {
description
"Grouping for OSPFv3 intra-area-te-lsa.";
container ospfv3-intra-area-te {
container router-address-tlv {
description
"The router IPv6 address tlv advertises a
reachable IPv6 address.";
leaf router-address {
type inet:ipv6-address;
description
"Router IPv6 address.";
}
}
container link-tlv {
description
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"Describes a single link, and it is constructed
of a set of Sub-TLVs.";
leaf link-type {
type ospf:router-link-type;
mandatory true;
description
"Link type.";
}
container local-if-ipv6-addrs {
description
"All local interface IPv6 addresses.";
leaf-list local-if-ipv6-addr {
type inet:ipv6-address;
description
"List of local interface IPv6 addresses.";
}
}
container remote-if-ipv6-addrs {
description
"All remote interface IPv6 addresses.";
leaf-list remote-if-ipv6-addr {
type inet:ipv6-address;
description
"List of remote interface IPv6 addresses.";
}
}
leaf te-metric {
type uint32;
description
"TE metric.";
}
leaf max-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"Maximum bandwidth.";
}
leaf max-reservable-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"Maximum reservable bandwidth.";
}
container unreserved-bandwidths {
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description
"All unreserved bandwidths.";
list unreserved-bandwidth {
leaf priority {
type uint8 {
range "0 .. 7";
}
description
"Priority from 0 to 7.";
}
leaf unreserved-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"Unreserved bandwidth.";
}
description
"List of unreserved bandwidths for different
priorities.";
}
}
leaf admin-group {
type uint32;
description
"Administrative group/Resource Class/Color.";
}
container neighbor-id {
description
"Neighbor link identification.";
leaf nbr-interface-id {
type uint32;
mandatory true;
description
"The neighbor's interface ID.";
}
leaf nbr-router-id {
type rt-types:router-id;
mandatory true;
description
"The neighbor's router ID.";
}
}
uses ospf:unknown-tlvs;
}
description
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"OSPFv3 Intra-Area-TE-LSA.";
reference
"RFC 5329: Traffic Engineering Extensions to OSPF Version 3";
}
}
/* Configuration */
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol"
+ "/ospf:ospf/ospf:mpls" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospf')" {
description
"This augments the OSPF routing protocol when used.";
}
description
"This augments OSPF protocol configuration
with MPLS TE configuration.";
container traffic-eng {
description
"OSPF MPLS TE configuration.";
leaf enable {
type boolean;
default "false";
description
"Enables traffic engineering advertisement in OSPF.";
}
reference
"RFC 3630: Traffic Engineering (TE) Extensions to OSPF
Version 2
RFC 5329: Traffic Engineering Extensions to OSPF Version 3";
}
}
augment "/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/ospf:ospf/"
+ "ospf:areas/ospf:area/ospf:interfaces/ospf:interface" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospf')" {
description
"This augments the OSPF routing protocol interface
configuration.";
}
description
"This augments OSPF interface with MPLS TE configuration.";
container traffic-eng {
description
"OSPF interface MPLS TE configuration.";
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leaf enable {
type boolean;
default "false";
description
"Enables OSPF MPLS traffic engineering functionality on
the interface.";
}
}
}
/* Database */
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body" {
when "../../../../../../../../../"
+ "rt:type = 'ospf:ospfv3'" {
description
"This augmentation is only valid for OSPFv3.";
}
description
"OSPFv3 Intra-Area-TE-LSA.";
uses ospfv3-intra-area-te;
}
}
<CODE ENDS>
3. YANG Module for OSPF Extensions in Support of Inter-Autonomous
System (AS) MPLS and GMPLS Traffic Engineering
This document defines a YANG module for OSPF Extensions in Support of
Inter-Autonomous System (AS) MPLS and GMPLS Traffic Engineering as
defined in [RFC5392].
module: ietf-ospf-inter-as-te
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf
/ospf:mpls/ospf-te:traffic-eng:
+--rw inter-as-te!
+--rw flood-as-wide? boolean
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas
/ospf:area/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
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/ospf:ospfv2/ospf:ospfv2/ospf:body/ospf:opaque:
+--ro inter-as-te-v2
+--ro link-tlv
+--ro link-type ospf:router-link-type
+--ro local-if-ipv4-addrs
| +--ro local-if-ipv4-addr* inet:ipv4-address
+--ro remote-if-ipv4-addrs
| +--ro remote-if-ipv4-addr* inet:ipv4-address
+--ro te-metric? uint32
+--ro max-bandwidth? rt-types:bandwidth-ieee-float32
+--ro max-reservable-bandwidth? rt-types:bandwidth-ieee-float32
+--ro unreserved-bandwidths
| +--ro unreserved-bandwidth* []
| +--ro priority? uint8
| +--ro unreserved-bandwidth? rt-types:bandwidth-ieee-float32
+--ro admin-group? uint32
+--ro remote-as-number uint32
+--ro ipv4-remote-asbr-id? inet:ipv4-address
+--ro ipv6-remote-asbr-id? inet:ipv6-address
+--ro unknown-tlvs
+--ro unknown-tlv* []
+--ro type? uint16
+--ro length? uint16
+--ro value? yang:hex-string
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:database
/ospf:as-scope-lsa-type/ospf:as-scope-lsas
/ospf:as-scope-lsa/ospf:version/ospf:ospfv2
/ospf:ospfv2/ospf:body/ospf:opaque:
+--ro inter-as-te-v2
+--ro link-tlv
+--ro link-type ospf:router-link-type
+--ro local-if-ipv4-addrs
| +--ro local-if-ipv4-addr* inet:ipv4-address
+--ro remote-if-ipv4-addrs
| +--ro remote-if-ipv4-addr* inet:ipv4-address
+--ro te-metric? uint32
+--ro max-bandwidth? rt-types:bandwidth-ieee-float32
+--ro max-reservable-bandwidth? rt-types:bandwidth-ieee-float32
+--ro unreserved-bandwidths
| +--ro unreserved-bandwidth* []
| +--ro priority? uint8
| +--ro unreserved-bandwidth? rt-types:bandwidth-ieee-float32
+--ro admin-group? uint32
+--ro remote-as-number uint32
+--ro ipv4-remote-asbr-id? inet:ipv4-address
+--ro ipv6-remote-asbr-id? inet:ipv6-address
+--ro unknown-tlvs
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+--ro unknown-tlv* []
+--ro type? uint16
+--ro length? uint16
+--ro value? yang:hex-string
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas
/ospf:area/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv3/ospf:ospfv3/ospf:body:
+--ro inter-as-te-v3
+--ro link-tlv
+--ro link-type ospf:router-link-type
+--ro local-if-ipv6-addrs
| +--ro local-if-ipv6-addr* inet:ipv6-address
+--ro remote-if-ipv6-addrs
| +--ro remote-if-ipv6-addr* inet:ipv6-address
+--ro te-metric? uint32
+--ro max-bandwidth? rt-types:bandwidth-ieee-float32
+--ro max-reservable-bandwidth? rt-types:bandwidth-ieee-float32
+--ro unreserved-bandwidths
| +--ro unreserved-bandwidth* []
| +--ro priority? uint8
| +--ro unreserved-bandwidth? rt-types:bandwidth-ieee-float32
+--ro admin-group? uint32
+--ro remote-as-number uint32
+--ro ipv4-remote-asbr-id? inet:ipv4-address
+--ro ipv6-remote-asbr-id? inet:ipv6-address
+--ro unknown-tlvs
+--ro unknown-tlv* []
+--ro type? uint16
+--ro length? uint16
+--ro value? yang:hex-string
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:database
/ospf:as-scope-lsa-type/ospf:as-scope-lsas
/ospf:as-scope-lsa/ospf:version/ospf:ospfv3
/ospf:ospfv3/ospf:body:
+--ro inter-as-te-v3
+--ro link-tlv
+--ro link-type ospf:router-link-type
+--ro local-if-ipv6-addrs
| +--ro local-if-ipv6-addr* inet:ipv6-address
+--ro remote-if-ipv6-addrs
| +--ro remote-if-ipv6-addr* inet:ipv6-address
+--ro te-metric? uint32
+--ro max-bandwidth? rt-types:bandwidth-ieee-float32
+--ro max-reservable-bandwidth? rt-types:bandwidth-ieee-float32
+--ro unreserved-bandwidths
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| +--ro unreserved-bandwidth* []
| +--ro priority? uint8
| +--ro unreserved-bandwidth? rt-types:bandwidth-ieee-float32
+--ro admin-group? uint32
+--ro remote-as-number uint32
+--ro ipv4-remote-asbr-id? inet:ipv4-address
+--ro ipv6-remote-asbr-id? inet:ipv6-address
+--ro unknown-tlvs
+--ro unknown-tlv* []
+--ro type? uint16
+--ro length? uint16
+--ro value? yang:hex-string
<CODE BEGINS> file "ietf-ospf-inter-as-te@2025-02-27.yang"
module ietf-ospf-inter-as-te {
yang-version 1.1;
namespace "urn:ietf:params:xml:ns:yang:ietf-ospf-inter-as-te";
prefix ospf-inter-as-te;
import ietf-inet-types {
prefix inet;
reference
"RFC 6991: Common YANG Data Types";
}
import ietf-routing-types {
prefix rt-types;
reference
"RFC 8294: Common YANG Data Types for the Routing Area";
}
import ietf-routing {
prefix rt;
reference
"RFC 8349: A YANG Data Model for Routing
Management (NMDA Version)";
}
import ietf-ospf {
prefix ospf;
reference
"RFC 9129: YANG Data Model for the OSPF Protocol";
}
import ietf-ospf-te {
prefix ospf-te;
reference
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"RFC 3630: Traffic Engineering (TE) Extensions to OSPF Version 2
RFC 5329: Traffic Engineering Extensions to OSPF Version 3";
}
organization
"IETF LSR - Link State Routing Working Group";
contact
"WG Web: <https://datatracker.ietf.org/wg/lsr/>
WG List: <mailto:lsr@ietf.org>
Author: Yingzhen Qu
<mailto:yqu@futurewei.com>
Author: Acee Lindem
<mailto:acee.ietf@gmail.com>";
description
"This YANG module defines the configuration and operational
state for OSPF Extensions in Support of Inter-Autonomous
System (AS) MPLS and GMPLS Traffic Engineering as defined
in RFC 5392.
Copyright (c) 2025 IETF Trust and the persons identified as
authors of the code. All rights reserved.
Redistribution and use in source and binary forms, with or
without modification, is permitted pursuant to, and subject to
the license terms contained in, the Revised BSD License set
forth in Section 4.c of the IETF Trust's Legal Provisions
Relating to IETF Documents
(https://trustee.ietf.org/license-info).
This version of this YANG module is part of RFC XXXX;
see the RFC itself for full legal notices.";
reference "RFC XXXX";
revision 2025-02-27 {
description
"Initial version";
reference
"RFC XXXX: OSPF YANG Model Augmentations for Additional
Features - Version 1";
}
identity ospfv3-intra-area-te-lsa {
base ospf:ospfv3-lsa-type;
description
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"OSPFv3 Intrea-area TE LSA.";
}
grouping inter-as-te-v2-lsa {
description
"Grouping for OSPF Inter-AS-TE-2 LSA.";
container inter-as-te-v2 {
description
"The Inter-AS-TE-v2 LSA.";
container link-tlv {
description
"Describes a single link. It is constructed
from a set of sub-TLVs.";
leaf link-type {
type ospf:router-link-type;
mandatory true;
description
"Link type.";
}
container local-if-ipv4-addrs {
description
"All local interface IPv4 addresses.";
leaf-list local-if-ipv4-addr {
type inet:ipv4-address;
description
"List of local interface IPv4 addresses.";
}
}
container remote-if-ipv4-addrs {
description
"All remote interface IPv4 addresses.";
leaf-list remote-if-ipv4-addr {
type inet:ipv4-address;
description
"List of remote interface IPv4 addresses.";
}
}
leaf te-metric {
type uint32;
description
"TE metric.";
}
leaf max-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"Maximum bandwidth.";
}
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leaf max-reservable-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"Maximum reservable bandwidth.";
}
container unreserved-bandwidths {
description
"All unreserved bandwidths.";
list unreserved-bandwidth {
leaf priority {
type uint8 {
range "0 .. 7";
}
description
"Priority from 0 to 7.";
}
leaf unreserved-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"Unreserved bandwidth.";
}
description
"List of unreserved bandwidths for different
priorities.";
}
}
leaf admin-group {
type uint32;
description
"Administrative Group / Resource Class/Color.";
}
leaf remote-as-number {
type uint32;
mandatory true;
description
"Remote AS number.";
}
leaf ipv4-remote-asbr-id {
type inet:ipv4-address;
description
"The neighboring ASBR IPv4 address.";
}
leaf ipv6-remote-asbr-id {
type inet:ipv6-address;
description
"The neighboring ASBR IPv6 address.";
}
uses ospf:unknown-tlvs;
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}
}
}
grouping inter-as-te-v3 {
description
"Grouping for OSPFv3 inter-as-te-v3 lsa.";
container inter-as-te-v3 {
container link-tlv {
description
"Describes a single link, and it is constructed
of a set of Sub-TLVs.";
leaf link-type {
type ospf:router-link-type;
mandatory true;
description
"Link type.";
}
container local-if-ipv6-addrs {
description
"All local interface IPv6 addresses.";
leaf-list local-if-ipv6-addr {
type inet:ipv6-address;
description
"List of local interface IPv6 addresses.";
}
}
container remote-if-ipv6-addrs {
description
"All remote interface IPv6 addresses.";
leaf-list remote-if-ipv6-addr {
type inet:ipv6-address;
description
"List of remote interface IPv6 addresses.";
}
}
leaf te-metric {
type uint32;
description
"TE metric.";
}
leaf max-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"Maximum bandwidth.";
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}
leaf max-reservable-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"Maximum reservable bandwidth.";
}
container unreserved-bandwidths {
description
"All unreserved bandwidths.";
list unreserved-bandwidth {
leaf priority {
type uint8 {
range "0 .. 7";
}
description
"Priority from 0 to 7.";
}
leaf unreserved-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"Unreserved bandwidth.";
}
description
"List of unreserved bandwidths for different
priorities.";
}
}
leaf admin-group {
type uint32;
description
"Administrative group/Resource Class/Color.";
}
leaf remote-as-number {
type uint32;
mandatory true;
description
"Remote AS number.";
}
leaf ipv4-remote-asbr-id {
type inet:ipv4-address;
description
"The neighboring ASBR IPv4 address.";
}
leaf ipv6-remote-asbr-id {
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type inet:ipv6-address;
description
"The neighboring ASBR IPv6 address.";
}
uses ospf:unknown-tlvs;
}
description
"OSPFv3 Inter-AS-TE-v3 LSA.";
reference
"RFC 5392: TOSPF Extensions in Support of Inter-Autonomous
System (AS) MPLS and GMPLS Traffic Engineering";
}
}
/* Configuration */
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:mpls/ospf-te:traffic-eng" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospf')" {
description
"This augment OSPF routing protocol when used";
}
description
"This augments OSPF protocol traffic engineering configuration
with Inter-AS-TE configuration.";
container inter-as-te {
presence "Enable Inter-AS-TE";
description
"OSPFv3 MPLS TE configuration.";
leaf flood-as-wide {
type boolean;
default "false";
description
"Enables as-scoped traffic engineering advertisement. By
default, the inter-as TE link advertisement is limited to
within the single area.";
}
reference
"RFC 5392: OSPF Extensions in Support of Inter-Autonomous
System (AS) MPLS and GMPLS Traffic Engineering";
}
}
/* Database */
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
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+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv2')" {
description
"This augments OSPFv2 routing protocol when used";
}
description
"OSPFv2 type 10 Opaque LSA.";
uses inter-as-te-v2-lsa;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:database/"
+ "ospf:as-scope-lsa-type/ospf:as-scope-lsas/"
+ "ospf:as-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv2')" {
description
"This augments OSPFv2 routing protocol when used";
}
description
"OSPFv2 type 11 Opaque LSA.";
uses inter-as-te-v2-lsa;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv3')" {
description
"This augmentation is only valid for OSPFv3.";
}
description
"OSPFv3 Intra-Area-TE-LSA.";
uses inter-as-te-v3;
}
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augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:database/"
+ "ospf:as-scope-lsa-type/ospf:as-scope-lsas/"
+ "ospf:as-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv3')" {
description
"This augmentation is only valid for OSPFv3.";
}
description
"OSPFv3 Intra-Area-TE-LSA.";
uses inter-as-te-v3;
}
}
4. YANG Module for OSPF Two-Part Metric
This document defines a YANG module for OSPF Two-Part Metric feature
as defined in [RFC8042]. It is an augmentation of the OSPF base
model.
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module: ietf-ospf-two-part-metric
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:interfaces/ospf:interface:
+--rw two-part-metric
+--rw enable? boolean
+--rw int-input-cost? ospf:ospf-link-metric
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type/ospf:area-scope-lsas
/ospf:area-scope-lsa/ospf:version/ospf:ospfv2/ospf:ospfv2
/ospf:body/ospf:opaque/ospf:extended-link-opaque
/ospf:extended-link-tlv:
+--ro network-to-router-metric-sub-tlvs
+--ro net-to-rtr-sub-tlv*
+--ro mt-id? uint8
+--ro mt-metric? uint16
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type/ospf:area-scope-lsas
/ospf:area-scope-lsa/ospf:version/ospf:ospfv2/ospf:ospfv2
/ospf:body/ospf:opaque/ospf:te-opaque/ospf:link-tlv:
+--ro network-to-router-te-metric? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type/ospf:area-scope-lsas
/ospf:area-scope-lsa/ospf:version/ospf:ospfv3/ospf:ospfv3
/ospf:body/ospfv3-te:ospfv3-intra-area-te/ospfv3-te:link-tlv:
+--ro network-to-router-te-metric? uint32
<CODE BEGINS> file "ietf-ospf-two-part-metric@2023-06-27.yang"
module ietf-ospf-two-part-metric {
yang-version 1.1;
namespace "urn:ietf:params:xml:ns:yang:ietf-ospf-two-part-metric";
prefix ospf-two-metric;
import ietf-routing {
prefix "rt";
reference "RFC 8349: A YANG Data Model for Routing
Management (NMDA Version)";
}
import ietf-ospf {
prefix "ospf";
reference "RFC 9129 - YANG Data Model for the OSPF
Protocol";
}
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import ietf-ospfv3-te {
prefix "ospfv3-te";
}
organization
"IETF LSR - Link State Routing Working Group";
contact
"WG Web: <https://datatracker.ietf.org/wg/lsr/>
WG List: <mailto:lsr@ietf.org>
Author: Yingzhen Qu
<mailto:yqu@futurewei.com>
Author: Acee Lindem
<mailto:acee.ietf@gmail.com>";
description
"This YANG module defines the configuration and operational
state for OSPF Two-Part Metric feature as defined in RFC 8042.
Copyright (c) 2023 IETF Trust and the persons identified as
authors of the code. All rights reserved.
Redistribution and use in source and binary forms, with or
without modification, is permitted pursuant to, and subject to
the license terms contained in, the Revised BSD License set
forth in Section 4.c of the IETF Trust's Legal Provisions
Relating to IETF Documents
(https://trustee.ietf.org/license-info).
This version of this YANG module is part of RFC XXXX;
see the RFC itself for full legal notices.";
reference "RFC XXXX";
revision 2023-06-27 {
description
"Initial version";
reference
"RFC XXXX: A YANG Data Model for OSPF Two-Part Metric.";
}
identity two-part-metric {
base ospf:informational-capability;
description
"When set, the router is capable of supporting OSPF
two-part metrics.";
reference
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"RFC 8042: OSPF Two-Part Metric";
}
/* RFC 8042 */
augment "/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/ospf:ospf/"
+ "ospf:areas/ospf:area/ospf:interfaces/ospf:interface" {
when "../../../../../rt:type = 'ospf:ospfv2' or "
+ "../../../../../rt:type = 'ospf:ospfv3'" {
description
"This augments the OSPF interface configuration
when used.";
}
description
"This augments the OSPF protocol interface
configuration with two-part metric.";
container two-part-metric {
when "enum-value(../ospf:interface-type) = 2" {
description
"Two-part metric when link type is multi-access.";
}
leaf enable {
type boolean;
default false;
description
"Enable two-part metric.";
}
leaf int-input-cost {
type ospf:ospf-link-metric;
description
"Link state metric from the two-part-metric network
to this router.";
}
description
"Interface two part metric configuration.";
}
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/"
+ "ospf:extended-link-opaque/ospf:extended-link-tlv" {
when "../../../../../../../../../../../../"
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+ "rt:type = 'ospf:ospfv2'" {
description
"This augmentation is only valid for OSPFv2.";
}
description
"Network-to-Router metric sub tlv for OSPFv2 extended link TLV
in type 10 opaque LSA.";
container network-to-router-metric-sub-tlvs {
description "Network-to-Router metric sub TLV.";
list net-to-rtr-sub-tlv {
leaf mt-id {
type uint8;
description "Multi-Topology Identifier (MT-ID).";
}
leaf mt-metric {
type uint16;
description "Network-to-router metric.";
}
description
"Network-to-Router metric sub-TLV.";
}
}
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/ospf:te-opaque/"
+ "ospf:link-tlv" {
when "../../../../../../../../../../../../"
+ "rt:type = 'ospf:ospfv2'" {
description
"This augmentation is only valid for OSPFv2.";
}
description
"Traffic Engineering Network-to-Router Sub-TLV.";
leaf network-to-router-te-metric {
type uint32;
description "Network to Router TE metric.";
reference
"RFC 8042 - OSPF Two-Part Metric";
}
}
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augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospfv3-te:ospfv3-intra-area-te/"
+ "ospfv3-te:link-tlv" {
when "../../../../../../../../../../../"
+ "rt:type = 'ospf:ospfv3'" {
description
"This augmentation is only valid for OSPFv3.";
}
description
"Traffic Engineering Network-to-Router Sub-TLV.";
leaf network-to-router-te-metric {
type uint32;
description "Network to Router TE metric.";
reference
"RFC 8042 - OSPF Two-Part Metric";
}
}
}
<CODE ENDS>
5. YANG Module for OSPF Graceful Link Shutdown
This document defines a YANG module for OSPF Graceful Link Shutdown
feature as defined in [RFC8379]. It is an augmentation of the OSPF
base model.
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module: ietf-ospf-graceful-link-shutdown
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:interfaces/ospf:interface:
+--rw graceful-link-shutdown
+--rw enable? boolean
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type/ospf:area-scope-lsas
/ospf:area-scope-lsa/ospf:version/ospf:ospfv2/ospf:ospfv2
/ospf:body/ospf:opaque/ospf:extended-link-opaque
/ospf:extended-link-tlv:
+--ro graceful-link-shutdown-sub-tlv!
+--ro remote-address-sub-tlv
| +--ro remote-address? inet:ipv4-address
+--ro local-remote-int-id-sub-tlv
+--ro local-int-id? uint32
+--ro remote-int-id? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type/ospf:area-scope-lsas
/ospf:area-scope-lsa/ospf:version/ospf:ospfv3/ospf:ospfv3
/ospf:body/ospfv3-e-lsa:e-router/ospfv3-e-lsa:e-router-tlvs
/ospfv3-e-lsa:link-tlv:
+--ro graceful-link-shutdown-sub-tlv!
<CODE BEGINS> file "ietf-ospf-graceful-link-shutdown@2024-07-01.yang"
module ietf-ospf-graceful-link-shutdown {
yang-version 1.1;
namespace
"urn:ietf:params:xml:ns:yang:ietf-ospf-graceful-link-shutdown";
prefix ospf-grace-linkdown;
import ietf-inet-types {
prefix "inet";
reference "RFC 6991: Common YANG Data Types";
}
import ietf-routing {
prefix "rt";
reference "RFC 8349: A YANG Data Model for Routing
Management (NMDA Version)";
}
import ietf-ospf {
prefix "ospf";
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reference "RFC 9129 - YANG Data Model for the OSPF
Protocol";
}
import ietf-ospfv3-extended-lsa {
prefix "ospfv3-e-lsa";
reference "RFC 9587: YANG Data Model for OSPFv3 Extended Link
State Advertisements (LSAs)";
}
organization
"IETF LSR - Link State Routing Working Group";
contact
"WG Web: <https://datatracker.ietf.org/wg/lsr/>
WG List: <mailto:lsr@ietf.org>
Author: Yingzhen Qu
<mailto:yingzhen.ietf@gmail.com>
Author: Acee Lindem
<mailto:acee.ietf@gmail.com>";
description
"This YANG module defines the configuration and operational
state for OSPF Graceful Link Shutdown feature as defined
in RFC 8379.
This YANG model conforms to the Network Management
Datastore Architecture (NDMA) as described in RFC 8342.
Copyright (c) 2024 IETF Trust and the persons identified as
authors of the code. All rights reserved.
Redistribution and use in source and binary forms, with or
without modification, is permitted pursuant to, and subject to
the license terms contained in, the Revised BSD License set
forth in Section 4.c of the IETF Trust's Legal Provisions
Relating to IETF Documents
(https://trustee.ietf.org/license-info).
This version of this YANG module is part of RFC XXXX;
see the RFC itself for full legal notices.";
reference "RFC XXXX";
revision 2024-07-01 {
description
"Initial version";
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reference
"RFC XXXX: OSPF YANG Model Augmentations for Additional
Features - Version 1.";
}
/* RFC 8379 */
augment "/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/ospf:ospf/"
+ "ospf:areas/ospf:area/ospf:interfaces/ospf:interface" {
when "../../../../../rt:type = 'ospf:ospfv2' or "
+ "../../../../../rt:type = 'ospf:ospfv3'" {
description
"This augments the OSPF interface configuration
when used.";
}
description
"This augments the OSPF protocol interface
configuration with segment routing.";
container graceful-link-shutdown {
leaf enable {
type boolean;
default false;
description
"Enable OSPF graceful link shutdown.";
}
description
"OSPF Graceful Link Shutdown.";
}
}
/* Database */
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/"
+ "ospf:extended-link-opaque/ospf:extended-link-tlv" {
when "../../../../../../../../../../../../"
+ "rt:type = 'ospf:ospfv2'" {
description
"This augmentation is only valid for OSPFv2.";
}
description
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"OSPF graceful link shutdown for OSPFv2 extended link TLV
in type 10 opaque LSA.";
container graceful-link-shutdown-sub-tlv {
presence "Enable graceful link shutdown";
description
"Graceful-Link-Shutdown sub-TLV identifies the link as being
gracefully shutdown.";
}
container remote-address-sub-tlv {
leaf remote-address {
type inet:ipv4-address;
description
"Remote IPv4 address used to identify a particular link
on the remote side.";
}
description
"This sub-TLV specifies the IPv4 address of the remote
endpoint on the link.";
}
container local-remote-int-id-sub-tlv {
leaf local-int-id {
type uint32;
description "Local interface ID.";
}
leaf remote-int-id {
type uint32;
description "Remote interface ID.";
}
description
"This sub-TLV specifies Local and Remote Interface IDs.";
}
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospfv3-e-lsa:e-router"
+ "/ospfv3-e-lsa:e-router-tlvs/ospfv3-e-lsa:link-tlv" {
when "'ospf:../../../../../../../../../"
+ "rt:type' = 'ospf:ospfv3'" {
description
"This augmentation is only valid for OSPFv3
E-Router LSAs";
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}
container graceful-link-shutdown-sub-tlv {
presence "Enable graceful link shutdown";
description
"Graceful-Link-Shutdown sub-TLV identifies the link as being
gracefully shutdown.";
}
description
"Augment OSPFv3 Area scope router-link TLV.";
}
}
<CODE ENDS>
6. YANG Module for OSPF LLS Extenstion for Local Interface ID
Advertisement
This document defines a YANG module for OSPF Link-Local Signaling
(LLS) Extensions for Local Interface ID Advertisement feature as
defined in [RFC8510]. It is an augmentation of the OSPF base model.
module: ietf-ospf-lls-local-id
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf:
+--rw lls-int-id
+--rw enable? boolean
<CODE BEGINS> file "ietf-ospf-lls-local-id@2024-07-01.yang"
module ietf-ospf-lls-local-id {
yang-version 1.1;
namespace "urn:ietf:params:xml:ns:yang:ietf-ospf-lls-local-id";
prefix ospf-lls-localid;
import ietf-routing {
prefix "rt";
reference "RFC 8349: A YANG Data Model for Routing
Management (NMDA Version)";
}
import ietf-ospf {
prefix "ospf";
reference "RFC 9129: YANG Data Model for the OSPF
Protocol";
}
organization
"IETF LSR - Link State Routing Working Group";
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contact
"WG Web: <https://datatracker.ietf.org/wg/lsr/>
WG List: <mailto:lsr@ietf.org>
Author: Yingzhen Qu
<mailto:yingzhen.ietf@gmail.com>
Author: Acee Lindem
<mailto:acee.ietf@gmail.com>";
description
"This YANG module defines the configuration and operational
state for OSPF Link-Local Signaling (LLS) Extensions for Local
Interface ID Advertisement feature as defined in RFC 8510.
Copyright (c) 2024 IETF Trust and the persons identified as
authors of the code. All rights reserved.
Redistribution and use in source and binary forms, with or
without modification, is permitted pursuant to, and subject to
the license terms contained in, the Revised BSD License set
forth in Section 4.c of the IETF Trust's Legal Provisions
Relating to IETF Documents
(https://trustee.ietf.org/license-info).
This version of this YANG module is part of RFC XXXX;
see the RFC itself for full legal notices.";
revision 2024-07-01 {
description
"Initial version";
reference
"RFC XXXX: OSPF YANG Model Augmentations for Additional
Features - Version 1.";
}
augment "/rt:routing/rt:control-plane-protocols"
+ "/rt:control-plane-protocol/ospf:ospf" {
when "../rt:type = 'ospf:ospfv2' or "
+ "../rt:type = 'ospf:ospfv3'" {
description
"This augments the OSPF routing protocol when used.";
}
description
"This augments the OSPF protocol configuration
to support LLS extesnions for interfacde ID as
defined in RFC 8510.";
container lls-int-id {
leaf enable {
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type boolean;
default false;
description
"Enable LLS to advertise local interface ID.";
}
description
"OSPF LLS Extensions for interface ID.";
}
}
}
<CODE ENDS>
7. YANG Module for OSPF Maximum SID Depth (MSD)
This document defines a model for Signaling Maximum SID Depth (MSD)
Using OSPF [RFC8476]. It is an augmentation of the OSPF base model.
module: ietf-ospf-msd
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type/ospf:area-scope-lsas
/ospf:area-scope-lsa/ospf:version/ospf:ospfv2/ospf:ospfv2
/ospf:body/ospf:opaque/ospf:ri-opaque:
+--ro node-msd-tlv
+--ro node-msds* [msd-type]
+--ro msd-type identityref
+--ro msd-value? uint8
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:database
/ospf:as-scope-lsa-type/ospf:as-scope-lsas/ospf:as-scope-lsa
/ospf:version/ospf:ospfv2/ospf:ospfv2/ospf:body/ospf:opaque
/ospf:ri-opaque:
+--ro node-msd-tlv
+--ro node-msds* [msd-type]
+--ro msd-type identityref
+--ro msd-value? uint8
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type/ospf:area-scope-lsas
/ospf:area-scope-lsa/ospf:version/ospf:ospfv3/ospf:ospfv3
/ospf:body/ospf:router-information:
+--ro node-msd-tlv
+--ro node-msds* [msd-type]
+--ro msd-type identityref
+--ro msd-value? uint8
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:database
/ospf:as-scope-lsa-type/ospf:as-scope-lsas/ospf:as-scope-lsa
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/ospf:version/ospf:ospfv3/ospf:ospfv3/ospf:body
/ospf:router-information:
+--ro node-msd-tlv
+--ro node-msds* [msd-type]
+--ro msd-type identityref
+--ro msd-value? uint8
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type/ospf:area-scope-lsas
/ospf:area-scope-lsa/ospf:version/ospf:ospfv2/ospf:ospfv2
/ospf:body/ospf:opaque/ospf:extended-link-opaque
/ospf:extended-link-tlv:
+--ro link-msd-sub-tlv
+--ro link-msds* [msd-type]
+--ro msd-type identityref
+--ro msd-value? uint8
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type/ospf:area-scope-lsas
/ospf:area-scope-lsa/ospf:version/ospf:ospfv3/ospf:ospfv3
/ospf:body/ospfv3-e-lsa:e-router/ospfv3-e-lsa:e-router-tlvs
/ospfv3-e-lsa:link-tlv::
+--ro link-msd-sub-tlv
+--ro link-msds* [msd-type]
+--ro msd-type identityref
+--ro msd-value? uint8
<CODE BEGINS> file "ietf-ospf-msd@2025-03-01.yang"
module ietf-ospf-msd {
yang-version 1.1;
namespace "urn:ietf:params:xml:ns:yang:ietf-ospf-msd";
prefix ospf-msd;
import ietf-routing {
prefix rt;
reference "RFC 8349: A YANG Data Model for Routing
Management (NMDA Version)";
}
import ietf-ospf {
prefix ospf;
reference "RFC 9129: YANG Data Model for the OSPF
Protocol";
}
import ietf-ospfv3-extended-lsa {
prefix ospfv3-e-lsa;
reference "RFC 9587: YANG Data Model for OSPFv3 Extended Link
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State Advertisements (LSAs)";
}
import iana-msd-types {
prefix iana-msd-types;
}
organization
"IETF LSR - LSR Working Group";
contact
"WG Web: <https://datatracker.ietf.org/wg/lsr/>
WG List: <mailto:lsr@ietf.org>
Author: Yingzhen Qu
<mailto:yingzhen.ietf@gmail.com>
Author: Acee Lindem
<mailto:acee.ietf@gmail.com>
Author: Stephane Litkowski
<mailto:slitkows.ietf@gmail.com>
Author: Jeff Tantsura
<jefftant.ietf@gmail.com>
";
description
"The YANG module augments the base OSPF model to
manage different types of MSDs.
This YANG model conforms to the Network Management
Datastore Architecture (NMDA) as described in RFC 8342.
Copyright (c) 2025 IETF Trust and the persons identified as
authors of the code. All rights reserved.
Redistribution and use in source and binary forms, with or
without modification, is permitted pursuant to, and subject to
the license terms contained in, the Revised BSD License set
forth in Section 4.c of the IETF Trust's Legal Provisions
Relating to IETF Documents
(https://trustee.ietf.org/license-info).
This version of this YANG module is part of RFC XXXX;
see the RFC itself for full legal notices.
The key words 'MUST', 'MUST NOT', 'REQUIRED', 'SHALL', 'SHALL
NOT', 'SHOULD', 'SHOULD NOT', 'RECOMMENDED', 'NOT RECOMMENDED',
'MAY', and 'OPTIONAL' in this document are to be interpreted as
described in BCP 14 (RFC 2119) (RFC 8174) when, and only when,
they appear in all capitals, as shown here.";
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reference "RFC XXXX: YANG Data Model for OSPF MSD.";
revision 2025-03-01 {
description
"Initial Version";
reference
"RFC XXXX: OSPF YANG Model Augmentations for Additional
Features - Version 1.";
}
grouping node-msd-tlv {
description
"Grouping for node MSD.";
container node-msd-tlv {
list node-msds {
key "msd-type";
leaf msd-type {
type identityref {
base iana-msd-types:msd-base-mpls;
}
description
"MSD-Types";
}
leaf msd-value {
type uint8;
description
"MSD value, in the range of 0-255.";
}
description
"Node MSD is the smallest link MSD supported by
the node.";
}
description
"Node MSD is the number of SIDs supported by a node.";
reference
"RFC 8476: Signaling Maximum SID Depth (MSD) Using OSPF";
}
}
grouping link-msd-sub-tlv {
description
"Link Maximum SID Depth (MSD) grouping for an interface.";
container link-msd-sub-tlv {
list link-msds {
key "msd-type";
leaf msd-type {
type identityref {
base iana-msd-types:msd-base-mpls;
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}
description
"MSD-Types";
}
leaf msd-value {
type uint8;
description
"MSD value, in the range of 0-255.";
}
description
"List of link MSDs";
}
description
"Link MSD sub-tlvs.";
}
}
/* Node MSD TLV */
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/"
+ "ospf:ri-opaque" {
when "../../../../../../../../../../../"
+ "rt:type = 'ospf:ospfv2'" {
description
"This augmentation is only valid for OSPFv2.";
}
description
"Node MSD TLV is an optional TLV of OSPFv2 RI Opaque
LSA (RFC7770) and has a type of 12.";
uses node-msd-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:database/"
+ "ospf:as-scope-lsa-type/ospf:as-scope-lsas/"
+ "ospf:as-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/"
+ "ospf:ri-opaque" {
when "../../../../../../../../../"
+ "rt:type = 'ospf:ospfv2'" {
description
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"This augmentation is only valid for OSPFv2.";
}
description
"Node MSD TLV is an optional TLV of OSPFv2 RI Opaque
LSA (RFC7770) and has a type of 12.";
uses node-msd-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospf:router-information" {
when "../../../../../../../../../../"
+ "rt:type = 'ospf:ospfv3'" {
description
"This augmentation is only valid for OSPFv3.";
}
description
"Node MSD TLV is an optional TLV of OSPFv3 RI Opaque
LSA (RFC7770) and has a type of 12.";
uses node-msd-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:database/"
+ "ospf:as-scope-lsa-type/ospf:as-scope-lsas/"
+ "ospf:as-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospf:router-information" {
when "../../../../../../../../"
+ "rt:type = 'ospf:ospfv3'" {
description
"This augmentation is only valid for OSPFv3.";
}
description
"Node MSD TLV is an optional TLV of OSPFv3 RI Opaque
LSA (RFC7770) and has a type of 12.";
uses node-msd-tlv;
}
/* link MSD sub-tlv */
augment "/rt:routing/"
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+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/"
+ "ospf:extended-link-opaque/ospf:extended-link-tlv" {
when "../../../../../../../../../../../../"
+ "rt:type = 'ospf:ospfv2'" {
description
"This augmentation is only valid for OSPFv2.";
}
description
"Link MSD sub-TLV is an optional sub-TLV of OSPFv2 extended
link TLV as defined in RFC 7684 and has a type of 6.";
uses link-msd-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospfv3-e-lsa:e-router/"
+ "ospfv3-e-lsa:e-router-tlvs/ospfv3-e-lsa:link-tlv" {
when "'ospf:../../../../../../../../"
+ "rt:type' = 'ospf:ospfv3'" {
description
"This augmentation is only valid for OSPFv3
E-Router LSAs";
}
description
"Augment OSPFv3 Area scope router-link TLV.";
uses link-msd-sub-tlv;
}
}
<CODE ENDS>
8. YANG Module for Advertising Layer 2 Bundle Member Link Attributes in
OSPF
This document defines a YANG Moduel for Advertising Layer 2 Bundle
Member Link Attributes in OSPF as defined in [RFC9356].
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module: ietf-ospf-l2-bundle
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas
/ospf:area/ospf:interfaces/ospf:interface:
+--rw l2-mbr-attrs
+--rw l2-mbr-attr* [l2-bdl-mbr-dscpr]
+--rw l2-bdl-mbr-dscpr uint32
+--rw adj-sid? uint32
+--rw lan-adj-sid? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas
/ospf:area/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv2/ospf:ospfv2/ospf:body/ospf:opaque
/ospf:extended-link-opaque/ospf:extended-link-tlv:
+--ro l2-bdl-mbr-attr
+--ro l2-bdl-mbrs* []
+--ro l2-bdl-mbr-dscpr? uint32
+--ro adj-sid-sub-tlvs
| +--ro adj-sid-sub-tlv* []
| +--ro adj-sid-flags
| | +--ro flags* identityref
| +--ro mt-id? uint8
| +--ro weight? uint8
| +--ro sid? uint32
+--ro lan-adj-sid-sub-tlv
| +--ro lan-adj-sid-sub-tlv* []
| +--ro lan-adj-sid-flags
| | +--ro flags* identityref
| +--ro mt-id? uint8
| +--ro weight? uint8
| +--ro neighbor-router-id? rt-types:router-id
| +--ro sid? uint32
+--ro app-specific-link-attr-sub-tlvs
+--ro asla-sub-tlvs* []
+--ro sabm-length? uint8
+--ro udabm-length? uint8
+--ro sabm
| +--ro sabm-bits* identityref
+--ro udabm
+--ro link-attributes-sub-sub-tlvs
+--ro unknown-tlvs
+--ro unknown-tlv* []
+--ro type? uint16
+--ro length? uint16
+--ro value? yang:hex-string
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas
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/ospf:area/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv3/ospf:ospfv3/ospf:body/ospfv3-e-lsa:e-router
/ospfv3-e-lsa:e-router-tlvs/ospfv3-e-lsa:link-tlv:
+--ro l2-bdl-mbr-attr
+--ro l2-bdl-mbrs* []
+--ro l2-bdl-mbr-dscpr? uint32
+--ro adj-sid-sub-tlvs
| +--ro adj-sid-sub-tlv* []
| +--ro adj-sid-flags
| | +--ro flags* identityref
| +--ro weight? uint8
| +--ro sid? uint32
+--ro lan-adj-sid-sub-tlvs
| +--ro lan-adj-sid-sub-tlv* []
| +--ro lan-adj-sid-flags
| | +--ro flags* identityref
| +--ro weight? uint8
| +--ro neighbor-router-id? rt-types:router-id
| +--ro sid? uint32
+--ro app-specific-link-attr-sub-tlvs
+--ro asla-sub-tlvs* []
+--ro sabm-length? uint8
+--ro udabm-length? uint8
+--ro sabm
| +--ro sabm-bits* identityref
+--ro udabm
+--ro link-attributes-sub-sub-tlvs
+--ro unknown-tlvs
+--ro unknown-tlv* []
+--ro type? uint16
+--ro length? uint16
+--ro value? yang:hex-string
<CODE BEGINS> file "ietf-ospf-l2-bundle@2025-02-27.yang"
module ietf-ospf-l2-bundle {
yang-version 1.1;
namespace "urn:ietf:params:xml:ns:yang:ietf-ospf-l2-bundle";
prefix ospf-l2-bundle;
import ietf-routing-types {
prefix rt-types;
reference
"RFC 8294: Common YANG Data Types for the Routing Area";
}
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import ietf-routing {
prefix rt;
reference
"RFC 8349: A YANG Data Model for Routing
Management (NMDA Version)";
}
import ietf-ospf {
prefix ospf;
reference
"RFC 9129: YANG Data Model for the OSPF Protocol";
}
import ietf-ospf-link-attr {
prefix ospf-link-attr;
}
import ietf-ospfv3-extended-lsa {
prefix ospfv3-e-lsa;
reference
"RFC 9587 - YANG Data Model for OSPFv3 Extended LSAs";
}
import ietf-ospf-sr-mpls {
prefix ospf-sr-mpls;
}
organization
"IETF LSR - Link State Routing Working Group";
contact
"WG Web: <https://datatracker.ietf.org/wg/lsr/>
WG List: <mailto:lsr@ietf.org>
Author: Yingzhen Qu
<mailto:yqu@futurewei.com>
Author: Acee Lindem
<mailto:acee.ietf@gmail.com>";
description
"This YANG module defines the configuration and operational
state for Advertising Layer 2 Bundle Member Link Attributes
in OSPF as defined in RFC 9356.
Copyright (c) 2025 IETF Trust and the persons identified as
authors of the code. All rights reserved.
Redistribution and use in source and binary forms, with or
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without modification, is permitted pursuant to, and subject to
the license terms contained in, the Revised BSD License set
forth in Section 4.c of the IETF Trust's Legal Provisions
Relating to IETF Documents
(https://trustee.ietf.org/license-info).
This version of this YANG module is part of RFC XXXX;
see the RFC itself for full legal notices.";
reference "RFC XXXX";
revision 2025-02-27 {
description
"Initial version";
reference
"RFC XXXX: OSPF YANG Model Augmentations for Additional
Features - Version 1";
}
/* Groupings */
grouping ospfv2-member-link-attr-sub-tlvs {
description
"OSPFv2 L2 Bundle Member Attributes sub-TLV (RFC 9356).";
container adj-sid-sub-tlvs {
list adj-sid-sub-tlv {
description
"List of adj-sid sub-tlvs.";
container adj-sid-flags {
leaf-list flags {
type identityref {
base ospf-sr-mpls:adj-sid-flag;
}
description
"Adj-SID sub-TLV flags.";
}
description
"Adj-sid sub-TLV flags.";
}
leaf mt-id {
type uint8;
description
"Multi-topology ID. Topologies range from 0-127 and
return of any other value would indicate an error.";
reference
"RFC 4915 - Multi-Topology (MT) Routing in OSPF";
}
leaf weight {
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type uint8;
description
"Weight used for load-balancing.";
}
leaf sid {
type uint32;
description
"Segment Identifier (SID) - A 20 bit label or
an index into the SID/Label space.";
}
}
description
"Adjacency SID sub-tlvs.";
}
container lan-adj-sid-sub-tlv {
description
"LAN Adj-SID optional sub-TLVs.";
list lan-adj-sid-sub-tlv {
description
"List of LAN Adj-SID sub-TLVs.";
container lan-adj-sid-flags {
leaf-list flags {
type identityref {
base ospf-sr-mpls:adj-sid-flag;
}
description
"LAN Adj-SID sub-TLV flags.";
}
description
"LAN Adj-SID sub-TLV flags.";
}
leaf mt-id {
type uint8;
description
"Multi-topology ID. Topologies range from 0-127 and
return of any other value would indicate an error.";
reference
"RFC 4915 - Multi-Topology (MT) Routing in OSPF";
}
leaf weight {
type uint8;
description
"Weight used for load-balancing.";
}
leaf neighbor-router-id {
type rt-types:router-id;
description
"Neighbor router ID.";
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}
leaf sid {
type uint32;
description
"Segment Identifier (SID) - A 20 bit label or
an index into the SID/Label space.
If the V-Flag is set to 0 and L-Flag is set to 0:
The SID/Index/Label field is a 4-octet index defining
the offset in the SID/Label space advertised by this
router.
If V-Flag is set to 1 and L-Flag is set to 1: The
SID/Index/Label field is a 3-octet local label where
the 20 rightmost bits are used for encoding the label
value.";
}
}
}
uses ospf-link-attr:app-specific-link-attr-sub-tlvs;
}
grouping ospfv3-member-link-attr-sub-tlvs {
description
"OSPFv3 L2 Bundle Member Attributes sub-TLV (RFC 9356).";
uses ospf-sr-mpls:ospfv3-adj-sid-sub-tlvs;
uses ospf-sr-mpls:ospfv3-lan-adj-sid-sub-tlvs;
uses ospf-link-attr:app-specific-link-attr-sub-tlvs;
}
/* Configuration */
augment "/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/ospf:ospf/"
+ "ospf:areas/ospf:area/ospf:interfaces/ospf:interface" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospf')" {
description
"This augments the OSPF routing protocol when used.";
}
description
"This augments the OSPF interface configuration with L2
Bundle Member Attributes.";
container l2-mbr-attrs {
description
"L2 member attributes configuration.";
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list l2-mbr-attr {
key l2-bdl-mbr-dscpr;
leaf l2-bdl-mbr-dscpr {
type uint32;
description
"L2 bundle member descriptor: a 4-octet link-local
identifier for the member link.";
}
leaf adj-sid {
type uint32;
description
"Value of the Adj-SID.";
}
leaf lan-adj-sid {
type uint32;
description
"Value of the LAN-Adj-SID.";
}
/* More configuration can be added here */
description
"List of L2 bundle members.";
}
}
}
/* Database */
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/"
+ "ospf:extended-link-opaque/ospf:extended-link-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv2')" {
description
"This augmentation is only valid for OSPFv2.";
}
description
"OSPFv2 L2 Bundle Member Attributes sub-TLV is
a sub-TLV of OSPFv2 Extended Link TLV (RFC7684).";
container l2-bdl-mbr-attr {
list l2-bdl-mbrs {
description
"List of L2 bundle members.";
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leaf l2-bdl-mbr-dscpr {
type uint32;
description
"L2 bundle member descriptor: a 4-octet link-local
identifier for the member link.";
}
uses ospfv2-member-link-attr-sub-tlvs;
}
description
"OSPFv2 L2 Bundle Member Attributes sub-TLV.";
}
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospfv3-e-lsa:e-router/"
+ "ospfv3-e-lsa:e-router-tlvs/ospfv3-e-lsa:link-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv3')" {
description
"This augmentation is only valid for OSPFv3
E-Router LSAs";
}
description
"Augment OSPFv3 Area scope router-link TLV.";
container l2-bdl-mbr-attr {
list l2-bdl-mbrs {
description
"List of L2 bundle members.";
leaf l2-bdl-mbr-dscpr {
type uint32;
description
"L2 bundle member descriptor: a 4-octet link-local
identifier for the member link.";
}
uses ospfv3-member-link-attr-sub-tlvs;
}
description
"OSPFv3 L2 Bundle Member Attributes sub-TLV.";
}
}
}
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9. YANG Module for OSPF Flexible Algorithms: Bandwidth, Delay, Metrics
and Constraints
This document defines a YANG module for OSPF Flexible Algorithms:
Bandwidth, Delay, Metrics and Constraints [RFC9843]. It is an
augmentation of the OSPF base model and the Flexible Algorithm YANG
module .
module: ietf-ospf-flex-algo-bw-con
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:interfaces/ospf:interface:
+--rw generic-metrics
+--rw generic-metric* [metric-type]
+--rw metric-type iana-metric-types:metric-type
+--rw metric-value? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf
/ospf-flex-algo:ospf-flex-algo/ospf-flex-algo:flex-algo:
+--rw bandwidth-constraints
| +--rw constraint* [constraint-type]
| +--rw constraint-type identityref
| +--rw bandwidth-value? te-types:te-bandwidth
| +--rw threshold? uint8
+--rw (metric-derivation-method)?
| +--:(reference-bandwidth)
| | +--rw reference-bandwidth
| | +--rw reference-bandwidth?
| | | rt-types:bandwidth-ieee-float32
| | +--rw granularity-bandwidth?
| | rt-types:bandwidth-ieee-float32
| +--:(bandwidth-thresholds)
| +--rw bandwidth-thresholds
| +--rw bandwidth-threshold* [bandwidth-threshold]
| +--rw bandwidth-threshold
| | rt-types:bandwidth-ieee-float32
| +--rw threshold-metric? uint32
+--rw exclude-min-bw?
| rt-types:bandwidth-ieee-float32
+--rw exclude-max-delay? rt-types:uint24
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:interfaces/ospf:interface/ospf:database
/ospf:link-scope-lsa-type/ospf:link-scope-lsas
/ospf:link-scope-lsa/ospf:version/ospf:ospfv2/ospf:ospfv2
/ospf:body/ospf:opaque/ospf:te-opaque/ospf:link-tlv:
+--ro generic-metric-sub-tlvs
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+--ro generic-metric-sub-tlv* []
+--ro metric-type? iana-metric-types:metric-type
+--ro value? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv2/ospf:ospfv2/ospf:body/ospf:opaque
/ospf-inter-as-te:inter-as-te-v2
/ospf-inter-as-te:link-tlv:
+--ro generic-metric-sub-tlvs
+--ro generic-metric-sub-tlv* []
+--ro metric-type? iana-metric-types:metric-type
+--ro value? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:database
/ospf:as-scope-lsa-type/ospf:as-scope-lsas
/ospf:as-scope-lsa/ospf:version/ospf:ospfv2/ospf:ospfv2
/ospf:body/ospf:opaque/ospf-inter-as-te:inter-as-te-v2
/ospf-inter-as-te:link-tlv:
+--ro generic-metric-sub-tlvs
+--ro generic-metric-sub-tlv* []
+--ro metric-type? iana-metric-types:metric-type
+--ro value? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv3/ospf:ospfv3/ospf:body
/ospf-te:ospfv3-intra-area-te/ospf-te:link-tlv:
+--ro generic-metric-sub-tlvs
+--ro generic-metric-sub-tlv* []
+--ro metric-type? iana-metric-types:metric-type
+--ro value? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv3/ospf:ospfv3/ospf:body
/ospf-inter-as-te:inter-as-te-v3
/ospf-inter-as-te:link-tlv:
+--ro generic-metric-sub-tlvs
+--ro generic-metric-sub-tlv* []
+--ro metric-type? iana-metric-types:metric-type
+--ro value? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:database
/ospf:as-scope-lsa-type/ospf:as-scope-lsas
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/ospf:as-scope-lsa/ospf:version/ospf:ospfv3/ospf:ospfv3
/ospf:body/ospf-inter-as-te:inter-as-te-v3
/ospf-inter-as-te:link-tlv:
+--ro generic-metric-sub-tlvs
+--ro generic-metric-sub-tlv* []
+--ro metric-type? iana-metric-types:metric-type
+--ro value? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv2/ospf:ospfv2/ospf:body/ospf:opaque
/ospf:extended-link-opaque/ospf:extended-link-tlv
/ospf-link-attr:app-specific-link-attr-sub-tlvs:
+--ro generic-metric-sub-tlvs
+--ro generic-metric-sub-tlv* []
+--ro metric-type? iana-metric-types:metric-type
+--ro value? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv3/ospf:ospfv3/ospf:body/ospfv3-e-lsa:e-router
/ospfv3-e-lsa:e-router-tlvs/ospfv3-e-lsa:link-tlv
/ospf-link-attr:app-specific-link-attr-sub-tlvs:
+--ro generic-metric-sub-tlvs
+--ro generic-metric-sub-tlv* []
+--ro metric-type? iana-metric-types:metric-type
+--ro value? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv2/ospf:ospfv2/ospf:body/ospf:opaque
/ospf:extended-link-opaque/ospf:extended-link-tlv
/ospf-l2-bundle:l2-bdl-mbr-attr
/ospf-l2-bundle:l2-bdl-mbrs:
+--ro generic-metric-sub-tlvs
+--ro generic-metric-sub-tlv* []
+--ro metric-type? iana-metric-types:metric-type
+--ro value? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv3/ospf:ospfv3/ospf:body/ospfv3-e-lsa:e-router
/ospfv3-e-lsa:e-router-tlvs/ospfv3-e-lsa:link-tlv
/ospf-l2-bundle:l2-bdl-mbr-attr
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/ospf-l2-bundle:l2-bdl-mbrs:
+--ro generic-metric-sub-tlvs
+--ro generic-metric-sub-tlv* []
+--ro metric-type? iana-metric-types:metric-type
+--ro value? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:interfaces/ospf:interface/ospf:database
/ospf:link-scope-lsa-type/ospf:link-scope-lsas
/ospf:link-scope-lsa/ospf:version/ospf:ospfv2/ospf:ospfv2
/ospf:body/ospf:opaque/ospf:ri-opaque
/ospf-flex-algo:fad-tlvs/ospf-flex-algo:fad-tlv:
+--ro faemb-sub-tlv
| +--ro min-bandwidth? rt-types:bandwidth-ieee-float32
+--ro faemd-sub-tlv
| +--ro max-link-delay? rt-types:uint24
+--ro fadrb-sub-tlv
| +--ro fadrb-flags* identityref
| +--ro reference-bandwidth? rt-types:bandwidth-ieee-float32
| +--ro granularity-bandwidth? rt-types:bandwidth-ieee-float32
+--ro fadbt-sub-tlv
+--ro fadbt-flags* identityref
+--ro bandwidth-threshold* []
+--ro bandwidth-threshold?
| rt-types:bandwidth-ieee-float32
+--ro threshold-metric? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv2/ospf:ospfv2/ospf:body/ospf:opaque
/ospf:ri-opaque/ospf-flex-algo:fad-tlvs
/ospf-flex-algo:fad-tlv:
+--ro faemb-sub-tlv
| +--ro min-bandwidth? rt-types:bandwidth-ieee-float32
+--ro faemd-sub-tlv
| +--ro max-link-delay? rt-types:uint24
+--ro fadrb-sub-tlv
| +--ro fadrb-flags* identityref
| +--ro reference-bandwidth? rt-types:bandwidth-ieee-float32
| +--ro granularity-bandwidth? rt-types:bandwidth-ieee-float32
+--ro fadbt-sub-tlv
+--ro fadbt-flags* identityref
+--ro bandwidth-threshold* []
+--ro bandwidth-threshold?
| rt-types:bandwidth-ieee-float32
+--ro threshold-metric? uint32
augment /rt:routing/rt:control-plane-protocols
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/rt:control-plane-protocol/ospf:ospf/ospf:database
/ospf:as-scope-lsa-type/ospf:as-scope-lsas
/ospf:as-scope-lsa/ospf:version/ospf:ospfv2/ospf:ospfv2
/ospf:body/ospf:opaque/ospf:ri-opaque
/ospf-flex-algo:fad-tlvs/ospf-flex-algo:fad-tlv:
+--ro faemb-sub-tlv
| +--ro min-bandwidth? rt-types:bandwidth-ieee-float32
+--ro faemd-sub-tlv
| +--ro max-link-delay? rt-types:uint24
+--ro fadrb-sub-tlv
| +--ro fadrb-flags* identityref
| +--ro reference-bandwidth? rt-types:bandwidth-ieee-float32
| +--ro granularity-bandwidth? rt-types:bandwidth-ieee-float32
+--ro fadbt-sub-tlv
+--ro fadbt-flags* identityref
+--ro bandwidth-threshold* []
+--ro bandwidth-threshold?
| rt-types:bandwidth-ieee-float32
+--ro threshold-metric? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:interfaces/ospf:interface/ospf:database
/ospf:link-scope-lsa-type/ospf:link-scope-lsas
/ospf:link-scope-lsa/ospf:version/ospf:ospfv3/ospf:ospfv3
/ospf:body/ospf:router-information
/ospf-flex-algo:fad-tlvs/ospf-flex-algo:fad-tlv:
+--ro faemb-sub-tlv
| +--ro min-bandwidth? rt-types:bandwidth-ieee-float32
+--ro faemd-sub-tlv
| +--ro max-link-delay? rt-types:uint24
+--ro fadrb-sub-tlv
| +--ro fadrb-flags* identityref
| +--ro reference-bandwidth? rt-types:bandwidth-ieee-float32
| +--ro granularity-bandwidth? rt-types:bandwidth-ieee-float32
+--ro fadbt-sub-tlv
+--ro fadbt-flags* identityref
+--ro bandwidth-threshold* []
+--ro bandwidth-threshold?
| rt-types:bandwidth-ieee-float32
+--ro threshold-metric? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:areas/ospf:area
/ospf:database/ospf:area-scope-lsa-type
/ospf:area-scope-lsas/ospf:area-scope-lsa/ospf:version
/ospf:ospfv3/ospf:ospfv3/ospf:body
/ospf:router-information/ospf-flex-algo:fad-tlvs
/ospf-flex-algo:fad-tlv:
+--ro faemb-sub-tlv
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| +--ro min-bandwidth? rt-types:bandwidth-ieee-float32
+--ro faemd-sub-tlv
| +--ro max-link-delay? rt-types:uint24
+--ro fadrb-sub-tlv
| +--ro fadrb-flags* identityref
| +--ro reference-bandwidth? rt-types:bandwidth-ieee-float32
| +--ro granularity-bandwidth? rt-types:bandwidth-ieee-float32
+--ro fadbt-sub-tlv
+--ro fadbt-flags* identityref
+--ro bandwidth-threshold* []
+--ro bandwidth-threshold?
| rt-types:bandwidth-ieee-float32
+--ro threshold-metric? uint32
augment /rt:routing/rt:control-plane-protocols
/rt:control-plane-protocol/ospf:ospf/ospf:database
/ospf:as-scope-lsa-type/ospf:as-scope-lsas
/ospf:as-scope-lsa/ospf:version/ospf:ospfv3/ospf:ospfv3
/ospf:body/ospf:router-information
/ospf-flex-algo:fad-tlvs/ospf-flex-algo:fad-tlv:
+--ro faemb-sub-tlv
| +--ro min-bandwidth? rt-types:bandwidth-ieee-float32
+--ro faemd-sub-tlv
| +--ro max-link-delay? rt-types:uint24
+--ro fadrb-sub-tlv
| +--ro fadrb-flags* identityref
| +--ro reference-bandwidth? rt-types:bandwidth-ieee-float32
| +--ro granularity-bandwidth? rt-types:bandwidth-ieee-float32
+--ro fadbt-sub-tlv
+--ro fadbt-flags* identityref
+--ro bandwidth-threshold* []
+--ro bandwidth-threshold?
| rt-types:bandwidth-ieee-float32
+--ro threshold-metric? uint32
<CODE BEGINS> file "ietf-ospf-flex-algo-bw-con@2026-07-04.yang"
module ietf-ospf-flex-algo-bw-con {
yang-version 1.1;
namespace "urn:ietf:params:xml:ns:yang:ietf-ospf-flex-algo-bw-con";
prefix ospf-flex-algo-bw-con;
import ietf-routing {
prefix rt;
reference "RFC 8349: A YANG Data Model for Routing
Management (NMDA Version)";
}
import ietf-routing-types {
prefix rt-types;
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reference
"RFC 8294: Common YANG Data Types for the Routing Area";
}
import ietf-te-types {
prefix te-types;
reference
"RFC8776: Common YANG Data Types for Traffic Engineering.";
}
import ietf-ospf {
prefix ospf;
reference
"RFC 9129: YANG Data Model for the OSPF Protocol";
}
import ietf-ospfv3-extended-lsa {
prefix ospfv3-e-lsa;
reference
"RFC 9587: YANG Data Model for OSPFv3 Extended Link
State Advertisements (LSAs)";
}
import ietf-ospf-te {
prefix ospf-te;
}
import ietf-ospf-flex-algo {
prefix ospf-flex-algo;
reference
"RFC XXXX";
}
import ietf-ospf-link-attr {
prefix ospf-link-attr;
}
import ietf-ospf-inter-as-te {
prefix ospf-inter-as-te;
}
import ietf-ospf-l2-bundle {
prefix ospf-l2-bundle;
}
import iana-igp-metric-types {
prefix iana-metric-types;
}
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organization
"IETF LSR - Link State Routing Working Group";
contact
"WG Web: <https://datatracker.ietf.org/wg/lsr/>
WG List: <mailto:lsr@ietf.org>
Author: Yingzhen Qu
<mailto:yingzhen.ietf@gmail.com>
Author: Acee Lindem
<mailto:acee.ietf@gmail.com>
";
description
"The YANG module defines the configuration and operational
state for OSPF protocol as defined in RFC 9843,
IGP Flexible Algorithms: Bandwidth, Delay, Metrics and Constraints
This YANG model conforms to the Network Management
Datastore Architecture (NMDA) as described in RFC 8342.
Copyright (c) 2025 IETF Trust and the persons identified as
authors of the code. All rights reserved.
Redistribution and use in source and binary forms, with or
without modification, is permitted pursuant to, and subject
to the license terms contained in, the Revised BSD License set
forth in Section 4.c of the IETF Trust's Legal Provisions
Relating to IETF Documents
(https://trustee.ietf.org/license-info).
This version of this YANG module is part of RFC XXXX;
see the RFC itself for full legal notices.
The key words 'MUST', 'MUST NOT', 'REQUIRED', 'SHALL', 'SHALL
NOT', 'SHOULD', 'SHOULD NOT', 'RECOMMENDED', 'NOT RECOMMENDED',
'MAY', and 'OPTIONAL' in this document are to be interpreted as
described in BCP 14 (RFC 2119) (RFC 8174) when, and only when,
they appear in all capitals, as shown here.";
reference "RFC XXXX: YANG Data Model for OSPF Flexible Algorithm.";
revision 2026-07-04 {
description
"Initial Version";
reference
"RFC XXXX: OSPF YANG Model Augmentations for Additional
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Features - Version 1.";
}
/* Identities */
identity bandwidth-constraint-type {
description
"Base identity for bandwidth constraint types.";
}
identity min-bw {
base bandwidth-constraint-type;
description
"Minimum bandwidth constraint.";
}
identity max-bw {
base bandwidth-constraint-type;
description
"Maximum bandwidth constraint.";
}
identity fadrb-flags {
description
"Base identity for OSPF Flexible Algorithm Definition
Reference Bandwidth sub-tlv flags.";
}
identity g-bit {
base fadrb-flags;
description
"G bit, when set, interface group mode MUST be used to
derive total link bandwidth.";
}
identity fadbt-flags {
description
"Base identity for OSPF Flexible Algorithm Definition
Reference Bandwidth sub-tlv flags.";
}
identity gp-bit {
base fadbt-flags;
description
"G bit, when set, interface group mode MUST be used to
derive total link bandwidth.";
}
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/* Groupings */
grouping bandwidth-constraint {
description
"Grouping for bandwidth constraints in Flex-Algo.";
container bandwidth-constraints {
list constraint {
key "constraint-type";
description
"List of bandwidth constraints for the Flex-Algo.";
leaf constraint-type {
type identityref {
base bandwidth-constraint-type;
}
description
"Type of bandwidth constraint (e.g., min-bw, max-bw).";
}
leaf bandwidth-value {
type te-types:te-bandwidth;
description
"Bandwidth value for the constraint.";
}
leaf threshold {
type uint8 {
range "1..100";
}
units "percent";
description
"Threshold percentage for triggering re-optimization.";
}
}
description
"Bandwidth constraints configuration for flex-algo.";
}
}
grouping generic-metric-sub-tlv {
container generic-metric-sub-tlvs {
list generic-metric-sub-tlv {
leaf metric-type {
type iana-metric-types:metric-type;
description
"Type of metric to be used during the calculation.";
}
leaf value {
type uint32;
description
"A 32-bit unsigned integer representing the metric value.";
}
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description
"The list of generic metric sub-tlvs.";
}
description
"The generic metric sub-tlv.";
}
description
"The grouping for generic metric sub-tlv.";
}
grouping faemb-sub-tlv {
container faemb-sub-tlv {
leaf min-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"A 32-bit field specifying the link bandwidth in IEEE
floating point format (IEEE754). The units are
bytes-per-second.";
}
description
"Flex-algo Exclude Minimum Bandwidth sub-tlv (FAEMB).";
}
description
"Grouping for FAEMB sub-tlv.";
}
grouping faemd-sub-tlv {
container faemd-sub-tlv {
leaf max-link-delay {
type rt-types:uint24;
description
"A 24-bit field specifying the maximum link delay in
microseconds.";
}
description
"The Flex-algo Exclude Maximum Delay sub-tlv (FAEMD).";
}
description
"Grouping for FAEMD sub-tlv.";
}
grouping fadrb-sub-tlv {
container fadrb-sub-tlv {
leaf-list fadrb-flags {
type identityref {
base fadrb-flags;
}
description
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"Flex-algo definition reference bandwidth sub-tlv
flags list.";
}
leaf reference-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"A 32-bit field specifying the link bandwidth in IEEE
floating point format (IEEE754). The units are
bytes-per-second.";
}
leaf granularity-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"A 32-bit field specifying the link bandwidth in IEEE
floating point format (IEEE754). The units are
bytes-per-second.";
}
description
"The Flex-algo Reference Bandwidth sub-tlv (FAEMD).";
}
description
"Grouping for FADRB sub-tlv.";
}
grouping fadbt-sub-tlv {
container fadbt-sub-tlv {
leaf-list fadbt-flags {
type identityref {
base fadbt-flags;
}
description
"Flex-algo definition bandwidth thresholds sub-tlv
flags list.";
}
list bandwidth-threshold {
leaf bandwidth-threshold {
type rt-types:bandwidth-ieee-float32;
description
"Maximum link bandwidth. A 32-bit field specifying the
link bandwidth in IEEE floating point format (IEEE754).
The units are bytes-per-second.";
}
leaf threshold-metric {
type uint32;
description
"Metric value range 1 - 4,294,967,296 (0xFFFFFFFF).";
}
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description
"List of bandwidth thresholds and metrics.";
}
description
"The Flex-algo Bandwidth Thresholds sub-tlv (FADBT).";
}
description
"Grouping for FADBT sub-tlv.";
}
/* Configurations */
augment "/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/ospf:ospf/"
+ "ospf:areas/ospf:area/ospf:interfaces/ospf:interface" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospf')" {
description
"This augments the OSPF interface configuration
when used.";
}
description
"This augments the OSPF protocol interface
configuration with generic metric configuration.";
container generic-metrics {
list generic-metric {
key "metric-type";
leaf metric-type {
type iana-metric-types:metric-type;
description
"Type of metric to be used during the calculation.";
}
leaf metric-value {
type uint32;
description
"Metric value, range is from 0 to 0xFFFFFFFF.";
}
description
"Interface generic metric configuration per metric-type.";
}
description
"Interface generic metric configuration.";
}
}
augment "/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/ospf:ospf/"
+ "ospf-flex-algo:ospf-flex-algo/ospf-flex-algo:flex-algo" {
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when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospf')" {
description
"This augments the OSPF routing protocol when used.";
}
description
"This augments OSPF protocol Flexible Algorithm with
bandwidth constraints.";
uses bandwidth-constraint;
choice metric-derivation-method {
description
"Choice of automatic metric derivation methods.";
container reference-bandwidth {
description
"Metric is inversely proportional to the link
bandwidth.";
leaf reference-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"A 32-bit field specifying the link bandwidth in IEEE
floating point format (IEEE754). The units are
bytes-per-second.";
}
leaf granularity-bandwidth {
type rt-types:bandwidth-ieee-float32;
description
"A 32-bit field specifying the link bandwidth in IEEE
floating point format (IEEE754). The units are
bytes-per-second.";
}
}
container bandwidth-thresholds {
description
"Pre-define non-proportional metric values from the varying
ranges of link bandwidth.";
list bandwidth-threshold {
key bandwidth-threshold;
leaf bandwidth-threshold {
type rt-types:bandwidth-ieee-float32;
description
"Maximum link bandwidth. A 32-bit field specifying the
link bandwidth in IEEE floating point format (IEEE754).
The units are bytes-per-second.";
}
leaf threshold-metric {
type uint32;
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description
"Metric value range 1 - 4,294,967,296 (0xFFFFFFFF).";
}
description
"List of bandwidth thresholds and metrics.";
}
}
}
leaf exclude-min-bw {
type rt-types:bandwidth-ieee-float32;
description
"A 32-bit field specifying the link bandwidth in IEEE
floating point format (IEEE754). The units are
bytes-per-second.";
}
leaf exclude-max-delay {
type rt-types:uint24;
description
"A 24-bit field specifying the maximum link delay in
microseconds.";
}
}
/* Database */
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/ospf:area/"
+ "ospf:interfaces/ospf:interface/ospf:database/"
+ "ospf:link-scope-lsa-type/ospf:link-scope-lsas/"
+ "ospf:link-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/ospf:te-opaque/"
+ "ospf:link-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv2')" {
description
"This augmentation is only valid for OSPFv2.";
}
description
"TE link TLV of OSPF TE LSA.";
uses generic-metric-sub-tlv;
}
augment "/rt:routing/"
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+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/"
+ "ospf-inter-as-te:inter-as-te-v2/"
+ "ospf-inter-as-te:link-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv2')" {
description
"This augmentation is only valid for OSPFv2.";
}
description
"Area scope TE link TLV of OSPFv2 Inter-AS-TE-v2 LSA.";
uses generic-metric-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:database/"
+ "ospf:as-scope-lsa-type/ospf:as-scope-lsas/"
+ "ospf:as-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/"
+ "ospf-inter-as-te:inter-as-te-v2/"
+ "ospf-inter-as-te:link-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv2')" {
description
"This augment OSPFv2 routing protocol when used";
}
description
"AS scope TE link TLV of OSPFv2 Inter-AS-TE-v2 LSA.";
uses generic-metric-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospf-te:ospfv3-intra-area-te/"
+ "ospf-te:link-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv3')" {
description
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"This augmentation is only valid for OSPFv3.";
}
description
"TE Link TLV of OSPFv3 Intra-Area-TE-LSA.";
uses generic-metric-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospf-inter-as-te:inter-as-te-v3/"
+ "ospf-inter-as-te:link-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv3')" {
description
"This augmentation is only valid for OSPFv3.";
}
description
"Area scope TE Link TLV of OSPFv3 Inter-AS-TE-v3 LSA.";
uses generic-metric-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:database/"
+ "ospf:as-scope-lsa-type/ospf:as-scope-lsas/"
+ "ospf:as-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospf-inter-as-te:inter-as-te-v3/"
+ "ospf-inter-as-te:link-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv3')" {
description
"This augmentation is only valid for OSPFv3.";
}
description
"AS scope TE Link TLV of OSPFv3 Inter-AS-TE-v3 LSA.";
uses generic-metric-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
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+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/"
+ "ospf:extended-link-opaque/ospf:extended-link-tlv/"
+ "ospf-link-attr:app-specific-link-attr-sub-tlvs" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv2')" {
description
"This augmentation is only valid for OSPFv2.";
}
description
"OSPF Application-Specific Link Attributes (ASLA) sub-TLV is
a sub-TLV of OSPFv2 Extended Link TLV (RFC7684).";
uses generic-metric-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospfv3-e-lsa:e-router/"
+ "ospfv3-e-lsa:e-router-tlvs/ospfv3-e-lsa:link-tlv/"
+ "ospf-link-attr:app-specific-link-attr-sub-tlvs" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv3')" {
description
"This augmentation is only valid for OSPFv3
E-Router LSAs";
}
description
"Application-Specific Link Attributes (ASLA) sub-TLV (RFC9492)
of the OSPFv3 Router-Link TLV (RFC8362).";
uses generic-metric-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/"
+ "ospf:extended-link-opaque/ospf:extended-link-tlv/"
+ "ospf-l2-bundle:l2-bdl-mbr-attr/"
+ "ospf-l2-bundle:l2-bdl-mbrs" {
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when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv2')" {
description
"This augmentation is only valid for OSPFv2.";
}
description
"OSPFv2 L2 Bundle Member Attributes sub-TLV is
a sub-TLV of OSPFv2 Extended Link TLV (RFC7684).";
uses generic-metric-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospfv3-e-lsa:e-router/"
+ "ospfv3-e-lsa:e-router-tlvs/ospfv3-e-lsa:link-tlv/"
+ "ospf-l2-bundle:l2-bdl-mbr-attr/"
+ "ospf-l2-bundle:l2-bdl-mbrs" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv3')" {
description
"This augmentation is only valid for OSPFv3
E-Router LSAs";
}
description
"OSPFv3 L2 Bundle Member Attributes sub-TLV in
OSPFv3 Area scope router-link TLV.";
uses generic-metric-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/ospf:area/"
+ "ospf:interfaces/ospf:interface/ospf:database/"
+ "ospf:link-scope-lsa-type/ospf:link-scope-lsas/"
+ "ospf:link-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/ospf:ri-opaque/"
+ "ospf-flex-algo:fad-tlvs/ospf-flex-algo:fad-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv2')" {
description
"This augmentation is only valid for OSPFv2.";
}
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description
"Flex-algo definition TLVs for OSPFv2 type 9 opaque RI LSA.";
uses faemb-sub-tlv;
uses faemd-sub-tlv;
uses fadrb-sub-tlv;
uses fadbt-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/ospf:ri-opaque/"
+ "ospf-flex-algo:fad-tlvs/ospf-flex-algo:fad-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv2')" {
description
"This augmentation is only valid for OSPFv2.";
}
description
"Flex-algo definition TLVs for OSPFv2 type 10 opaque RI LSA.";
uses faemb-sub-tlv;
uses faemd-sub-tlv;
uses fadrb-sub-tlv;
uses fadbt-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:database/"
+ "ospf:as-scope-lsa-type/ospf:as-scope-lsas/"
+ "ospf:as-scope-lsa/ospf:version/ospf:ospfv2/"
+ "ospf:ospfv2/ospf:body/ospf:opaque/ospf:ri-opaque/"
+ "ospf-flex-algo:fad-tlvs/ospf-flex-algo:fad-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv2')" {
description
"This augmentation is only valid for OSPFv2.";
}
description
"Flex-algo definition TLVs for OSPFv2 type 11 opaque RI LSA.";
uses faemb-sub-tlv;
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uses faemd-sub-tlv;
uses fadrb-sub-tlv;
uses fadbt-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/ospf:area/"
+ "ospf:interfaces/ospf:interface/ospf:database/"
+ "ospf:link-scope-lsa-type/ospf:link-scope-lsas/"
+ "ospf:link-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospf:router-information/"
+ "ospf-flex-algo:fad-tlvs/ospf-flex-algo:fad-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv3')" {
description
"This augmentation is only valid for OSPFv3.";
}
description
"Flex-algo definition TLVs for OSPFv3 Router
Information (RI) LSA.";
uses faemb-sub-tlv;
uses faemd-sub-tlv;
uses fadrb-sub-tlv;
uses fadbt-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:areas/"
+ "ospf:area/ospf:database/"
+ "ospf:area-scope-lsa-type/ospf:area-scope-lsas/"
+ "ospf:area-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospf:router-information/"
+ "ospf-flex-algo:fad-tlvs/ospf-flex-algo:fad-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv3')" {
description
"This augmentation is only valid for OSPFv3.";
}
description
"Flex-algo definition TLVs for OSPFv3 Router
Information (RI) LSA.";
uses faemb-sub-tlv;
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uses faemd-sub-tlv;
uses fadrb-sub-tlv;
uses fadbt-sub-tlv;
}
augment "/rt:routing/"
+ "rt:control-plane-protocols/rt:control-plane-protocol/"
+ "ospf:ospf/ospf:database/"
+ "ospf:as-scope-lsa-type/ospf:as-scope-lsas/"
+ "ospf:as-scope-lsa/ospf:version/ospf:ospfv3/"
+ "ospf:ospfv3/ospf:body/ospf:router-information/"
+ "ospf-flex-algo:fad-tlvs/ospf-flex-algo:fad-tlv" {
when "derived-from(/rt:routing/rt:control-plane-protocols/"
+ "rt:control-plane-protocol/rt:type, 'ospf:ospfv3')" {
description
"This augmentation is only valid for OSPFv3.";
}
description
"Flex-algo definition TLVs for OSPFv3 Router Information LSA.";
uses faemb-sub-tlv;
uses faemd-sub-tlv;
uses fadrb-sub-tlv;
uses fadbt-sub-tlv;
}
}
10. Security Considerations
The YANG modules specified in this document define a schema for data
that is designed to be accessed via network management protocols such
as NETCONF [RFC6241] or RESTCONF [RFC8040]. The lowest NETCONF layer
is the secure transport layer, and the mandatory-to-implement secure
transport is Secure Shell (SSH) [RFC6242]. The lowest RESTCONF layer
is HTTPS, and the mandatory-to-implement secure transport is TLS
[RFC5246].
The NETCONF access control model [RFC6536] provides the means to
restrict access for particular NETCONF or RESTCONF users to a pre-
configured subset of all available NETCONF or RESTCONF protocol
operations and content.
There are a number of data nodes defined in the modules that are
writable/creatable/deletable (i.e., config true, which is the
default). These data nodes may be considered sensitive or vulnerable
in some network environments. Write operations (e.g., edit-config)
to these data nodes without proper protection can have a negative
effect on network operations.
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Some of the readable data nodes in the modules may be considered
sensitive or vulnerable in some network environments. It is thus
important to control read access (e.g., via get, get-config, or
notification) to these data nodes. The exposure of the Link State
Database (LSDB) will expose the detailed topology of the network.
This may be undesirable since both due to the fact that exposure may
facilitate other attacks. Additionally, network operators may
consider their topologies to be sensitive confidential data.
11. IANA Considerations
This document registers URIs in the IETF XML registry [RFC3688].
Following the format in [RFC3688], the following registrations is
requested to be made:
URI: urn:ietf:params:xml:ns:yang:ietf-ospf-te
Registrant Contact: The IESG.
XML: N/A, the requested URI is an XML namespace.
URI: urn:ietf:params:xml:ns:yang:ietf-ospf-inter-as-te
Registrant Contact: The IESG.
XML: N/A, the requested URI is an XML namespace.
URI: urn:ietf:params:xml:ns:yang:ietf-ospf-two-metric
Registrant Contact: The IESG.
XML: N/A, the requested URI is an XML namespace.
URI: urn:ietf:params:xml:ns:yang:ietf-ospf-grace-linkdown
Registrant Contact: The IESG.
XML: N/A, the requested URI is an XML namespace.
URI: urn:ietf:params:xml:ns:yang:ietf-ospf-lls-localid
Registrant Contact: The IESG.
XML: N/A, the requested URI is an XML namespace.
URI: urn:ietf:params:xml:ns:yang:ietf-ospf-msd
Registrant Contact: The IESG.
XML: N/A, the requested URI is an XML namespace.
URI: urn:ietf:params:xml:ns:yang:ietf-l2-bundle
Registrant Contact: The IESG.
XML: N/A, the requested URI is an XML namespace.
URI: urn:ietf:params:xml:ns:yang:ietf-ospf-flex-algo-bw-con
Registrant Contact: The IESG.
XML: N/A, the requested URI is an XML namespace.
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This document registers the YANG modules in the YANG Module Names
registry [RFC6020].
name: ietf-ospf-te
Maintained by IANA? N
namespace: urn:ietf:params:xml:ns:yang:ietf-ospf-te
prefix: ospf-te
reference: RFC XXXX
name: ietf-ospf-inter-as-te
Maintained by IANA? N
namespace: urn:ietf:params:xml:ns:yang:ietf-ospf-inter-as-te
prefix: ospf-inter-as-te
reference: RFC XXXX
name: ietf-ospf-two-metric
Maintained by IANA? N
namespace: urn:ietf:params:xml:ns:yang:ietf-ospf-two-metric
prefix: ospf-two-metric
reference: RFC XXXX
name: ietf-ospf-grace-linkdown
Maintained by IANA? N
namespace: urn:ietf:params:xml:ns:yang:ietf-ospf-grace-linkdown
prefix: ospf-grace-linkdown
reference: RFC XXXX
name: ietf-ospf-lls-localid
Maintained by IANA? N
namespace: urn:ietf:params:xml:ns:yang:ietf-ospf-lls-localid
prefix: ospf-lls-localid
reference: RFC XXXX
name: ietf-ospf-msd
Maintained by IANA? N
namespace: urn:ietf:params:xml:ns:yang:ietf-ospf-msd
prefix: ospf-msd
reference: RFC XXXX
name: ietf-ospf-l2-bundle
Maintained by IANA? N
namespace: urn:ietf:params:xml:ns:yang:ietf-ospf-l2-bundle
prefix: ospf-l2-bundle
reference: RFC XXXX
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Internet-Draft OSPF YANG Augments V1 July 2026
name: ietf-ospf-flex-algo-bw-con
Maintained by IANA? N
namespace: urn:ietf:params:xml:ns:yang:ietf-ospf-flex-algo-bw-con
prefix: ospf-flex-algo-bw-con
reference: RFC XXXX
12. Acknowledgements
This document was produced using Marshall Rose's xml2rfc tool.
The YANG model was developed using the suite of YANG tools written
and maintained by numerous authors.
13. Normative References
[RFC2119] Bradner, S., "Key words for use in RFCs to Indicate
Requirement Levels", BCP 14, RFC 2119,
DOI 10.17487/RFC2119, March 1997,
<https://www.rfc-editor.org/info/rfc2119>.
[RFC3630] Katz, D., Kompella, K., and D. Yeung, "Traffic Engineering
(TE) Extensions to OSPF Version 2", RFC 3630,
DOI 10.17487/RFC3630, October 2003,
<https://www.rfc-editor.org/info/rfc3630>.
[RFC3688] Mealling, M., "The IETF XML Registry", BCP 81, RFC 3688,
DOI 10.17487/RFC3688, January 2004,
<https://www.rfc-editor.org/info/rfc3688>.
[RFC5246] Dierks, T. and E. Rescorla, "The Transport Layer Security
(TLS) Protocol Version 1.2", RFC 5246,
DOI 10.17487/RFC5246, August 2008,
<https://www.rfc-editor.org/info/rfc5246>.
[RFC5329] Ishiguro, K., Manral, V., Davey, A., and A. Lindem, Ed.,
"Traffic Engineering Extensions to OSPF Version 3",
RFC 5329, DOI 10.17487/RFC5329, September 2008,
<https://www.rfc-editor.org/info/rfc5329>.
[RFC5392] Chen, M., Zhang, R., and X. Duan, "OSPF Extensions in
Support of Inter-Autonomous System (AS) MPLS and GMPLS
Traffic Engineering", RFC 5392, DOI 10.17487/RFC5392,
January 2009, <https://www.rfc-editor.org/info/rfc5392>.
[RFC6020] Bjorklund, M., Ed., "YANG - A Data Modeling Language for
the Network Configuration Protocol (NETCONF)", RFC 6020,
DOI 10.17487/RFC6020, October 2010,
<https://www.rfc-editor.org/info/rfc6020>.
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Internet-Draft OSPF YANG Augments V1 July 2026
[RFC6241] Enns, R., Ed., Bjorklund, M., Ed., Schoenwaelder, J., Ed.,
and A. Bierman, Ed., "Network Configuration Protocol
(NETCONF)", RFC 6241, DOI 10.17487/RFC6241, June 2011,
<https://www.rfc-editor.org/info/rfc6241>.
[RFC6242] Wasserman, M., "Using the NETCONF Protocol over Secure
Shell (SSH)", RFC 6242, DOI 10.17487/RFC6242, June 2011,
<https://www.rfc-editor.org/info/rfc6242>.
[RFC6536] Bierman, A. and M. Bjorklund, "Network Configuration
Protocol (NETCONF) Access Control Model", RFC 6536,
DOI 10.17487/RFC6536, March 2012,
<https://www.rfc-editor.org/info/rfc6536>.
[RFC7950] Bjorklund, M., Ed., "The YANG 1.1 Data Modeling Language",
RFC 7950, DOI 10.17487/RFC7950, August 2016,
<https://www.rfc-editor.org/info/rfc7950>.
[RFC8040] Bierman, A., Bjorklund, M., and K. Watsen, "RESTCONF
Protocol", RFC 8040, DOI 10.17487/RFC8040, January 2017,
<https://www.rfc-editor.org/info/rfc8040>.
[RFC8042] Zhang, Z., Wang, L., and A. Lindem, "OSPF Two-Part
Metric", RFC 8042, DOI 10.17487/RFC8042, December 2016,
<https://www.rfc-editor.org/info/rfc8042>.
[RFC8349] Lhotka, L., Lindem, A., and Y. Qu, "A YANG Data Model for
Routing Management (NMDA Version)", RFC 8349,
DOI 10.17487/RFC8349, March 2018,
<https://www.rfc-editor.org/info/rfc8349>.
[RFC8379] Hegde, S., Sarkar, P., Gredler, H., Nanduri, M., and L.
Jalil, "OSPF Graceful Link Shutdown", RFC 8379,
DOI 10.17487/RFC8379, May 2018,
<https://www.rfc-editor.org/info/rfc8379>.
[RFC8476] Tantsura, J., Chunduri, U., Aldrin, S., and P. Psenak,
"Signaling Maximum SID Depth (MSD) Using OSPF", RFC 8476,
DOI 10.17487/RFC8476, December 2018,
<https://www.rfc-editor.org/info/rfc8476>.
[RFC8510] Psenak, P., Ed., Talaulikar, K., Henderickx, W., and P.
Pillay-Esnault, "OSPF Link-Local Signaling (LLS)
Extensions for Local Interface ID Advertisement",
RFC 8510, DOI 10.17487/RFC8510, January 2019,
<https://www.rfc-editor.org/info/rfc8510>.
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[RFC9129] Yeung, D., Qu, Y., Zhang, Z., Chen, I., and A. Lindem,
"YANG Data Model for the OSPF Protocol", RFC 9129,
DOI 10.17487/RFC9129, October 2022,
<https://www.rfc-editor.org/info/rfc9129>.
[RFC9356] Talaulikar, K., Ed. and P. Psenak, "Advertising Layer 2
Bundle Member Link Attributes in OSPF", RFC 9356,
DOI 10.17487/RFC9356, January 2023,
<https://www.rfc-editor.org/info/rfc9356>.
[RFC9843] Hegde, S., Britto, W., Shetty, R., Decraene, B., Psenak,
P., and T. Li, "IGP Flexible Algorithms: Bandwidth, Delay,
Metrics, and Constraints", RFC 9843, DOI 10.17487/RFC9843,
September 2025, <https://www.rfc-editor.org/info/rfc9843>.
Authors' Addresses
Acee Lindem
Arrcus, Inc
301 Midenhall Way
Cary, NC 27513
Email: acee.ietf@gmail.com
Yingzhen Qu
Futurewei Technologies
United States of America
Email: yingzhen.ietf@gmail.com
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