Network Working Group                                    X. Liu, Editor
Internet-Draft                                              A. Kyparlis
Intended status: Standards Track                    Kuatro Technologies
Expires: June 1, 2017                                         R. Parikh
                                                                 VMware
                                                              A. Lindem
                                                          Cisco Systems
                                                               M. Zhang
                                                    Huawei Technologies
                                                       December 1, 2016



      A YANG Data Model for Virtual Router Redundancy Protocol (VRRP)
                       draft-ietf-rtgwg-yang-vrrp-01


Abstract

   This document describes a data model for Virtual Router Redundancy
   Protocol (VRRP). Both version 2 and version 3 of VRRP are covered.

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), its areas, and its working groups.  Note that
   other groups may also distribute working documents as Internet-
   Drafts.

   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."

   The list of current Internet-Drafts can be accessed at
   http://www.ietf.org/ietf/1id-abstracts.txt

   The list of Internet-Draft Shadow Directories can be accessed at
   http://www.ietf.org/shadow.html

   This Internet-Draft will expire on June 1, 2017.







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Copyright Notice

   Copyright (c) 2016 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
   (http://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 and restrictions with respect
   to this document. Code Components extracted from this document must
   include Simplified BSD License text as described in Section 4.e of
   the Trust Legal Provisions and are provided without warranty as
   described in the Simplified BSD License.

Table of Contents


   1. Introduction...................................................2
      1.1. Terminology...............................................2
   2. VRRP YANG model overview.......................................3
   3. VRRP YANG module...............................................7
   4. IANA Considerations...........................................29
   5. Security Considerations.......................................29
   6. References....................................................30
      6.1. Normative References.....................................30
      6.2. Informative References...................................30

1. Introduction

   This document introduces a YANG [RFC6020] data model for Virtual
   Router Redundancy Protocol (VRRP) [RFC3768][RFC5798]. VRRP provides
   higher resiliency by specifying an election protocol that dynamically
   assigns responsibility for a virtual router to one of the VRRP
   routers on a LAN.

   This YANG model supports both version 2 and version 3 of VRRP. VRRP
   version 2 defined in [RFC3768] supports IPv4. VRRP version 3 defined
   in [RFC5798] supports both IPv4 and IPv6.

1.1. Terminology

   The keywords "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, [RFC2119].



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   The following terms are defined in [RFC6020] and are not redefined
   here:

      o  augment

      o  data model

      o  data node

2. VRRP YANG model overview

   This document defines the YANG module "ietf-vrrp", which has the
   following structure:

   module: ietf-vrrp
   augment /if:interfaces/if:interface/ip:ipv4:
      +--rw vrrp
         +--rw vrrp-instance* [vrid]
            +--rw vrid                            uint8
            +--rw version?                        enumeration
            +--rw log-state-change?               boolean
            +--rw preempt!
            |  +--rw hold-time?   uint16
            +--rw priority?                       uint8
            +--rw accept-mode?                    boolean
            +--rw (advertise-interval-choice)?
            |  +--:(v2)
            |  |  +--rw advertise-interval-sec?         uint8
            |  +--:(v3)
            |     +--rw advertise-interval-centi-sec?   uint16
            +--rw track
            |  +--rw interfaces
            |  |  +--rw interface* [interface]
            |  |     +--rw interface             if:interface-ref
            |  |     +--rw priority-decrement?   uint8
            |  +--rw networks
            |     +--rw network* [network]
            |        +--rw network               inet:ipv4-prefix
            |        +--rw priority-decrement?   uint8
            +--rw virtual-ipv4-addresses
               +--rw virtual-ipv4-address* [ipv4-address]
                  +--rw ipv4-address    inet:ipv4-address




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   augment /if:interfaces/if:interface/ip:ipv6:
      +--rw vrrp
         +--rw vrrp-instance* [vrid]
            +--rw vrid                            uint8
            +--rw version?                        enumeration
            +--rw log-state-change?               boolean
            +--rw preempt!
            |  +--rw hold-time?   uint16
            +--rw priority?                       uint8
            +--rw accept-mode?                    boolean
            +--rw advertise-interval-centi-sec?   uint16
            +--rw track
            |  +--rw interfaces
            |  |  +--rw interface* [interface]
            |  |     +--rw interface             if:interface-ref
            |  |     +--rw priority-decrement?   uint8
            |  +--rw networks
            |     +--rw network* [network]
            |        +--rw network               inet:ipv6-prefix
            |        +--rw priority-decrement?   uint8
            +--rw virtual-ipv6-addresses
               +--rw virtual-ipv6-address* [ipv6-address]
                  +--rw ipv6-address    inet:ipv6-address
   augment /if:interfaces-state/if:interface/ip:ipv4:
      +--ro vrrp
         +--ro vrrp-instance* [vrid]
            +--ro vrid                            uint8
            +--ro version?                        enumeration
            +--ro log-state-change?               boolean
            +--ro preempt!
            |  +--ro hold-time?   uint16
            +--ro priority?                       uint8
            +--ro accept-mode?                    boolean
            +--ro (advertise-interval-choice)?
            |  +--:(v2)
            |  |  +--ro advertise-interval-sec?         uint8
            |  +--:(v3)
            |     +--ro advertise-interval-centi-sec?   uint16
            +--ro track
            |  +--ro interfaces
            |  |  +--ro interface* [interface]



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            |  |     +--ro interface             if:interface-ref
            |  |     +--ro priority-decrement?   uint8
            |  +--ro networks
            |     +--ro network* [network]
            |        +--ro network               inet:ipv4-prefix
            |        +--ro priority-decrement?   uint8
            +--ro virtual-ipv4-addresses
            |  +--ro virtual-ipv4-address* [ipv4-address]
            |     +--ro ipv4-address    inet:ipv4-address
            +--ro state?                          identityref
            +--ro is-owner?                       boolean
            +--ro last-adv-source?                inet:ip-address
            +--ro up-time?                        yang:date-and-time
            +--ro master-down-interval?           uint32
            +--ro skew-time?                      uint32
            +--ro last-event?                     string
            +--ro new-master-reason?              new-master-reason-type
            +--ro statistics
               +--ro discontinuity-time?        yang:date-and-time
               +--ro master-transitions?        yang:counter32
               +--ro advertisement-recv?        yang:counter64
               +--ro advertisement-sent?        yang:counter64
               +--ro interval-errors?           yang:counter64
   {validate-interval-errors}?
               +--ro priority-zero-pkts-rcvd?   yang:counter64
               +--ro priority-zero-pkts-sent?   yang:counter64
               +--ro invalid-type-pkts-rcvd?    yang:counter64
               +--ro address-list-errors?       yang:counter64
   {validate-address-list-errors}?
               +--ro packet-length-errors?      yang:counter64
   augment /if:interfaces-state/if:interface/ip:ipv6:
      +--ro vrrp
         +--ro vrrp-instance* [vrid]
            +--ro vrid                            uint8
            +--ro version?                        enumeration
            +--ro log-state-change?               boolean
            +--ro preempt!
            |  +--ro hold-time?   uint16
            +--ro priority?                       uint8
            +--ro accept-mode?                    boolean
            +--ro advertise-interval-centi-sec?   uint16



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            +--ro track
            |  +--ro interfaces
            |  |  +--ro interface* [interface]
            |  |     +--ro interface             if:interface-ref
            |  |     +--ro priority-decrement?   uint8
            |  +--ro networks
            |     +--ro network* [network]
            |        +--ro network               inet:ipv6-prefix
            |        +--ro priority-decrement?   uint8
            +--ro virtual-ipv6-addresses
            |  +--ro virtual-ipv6-address* [ipv6-address]
            |     +--ro ipv6-address    inet:ipv6-address
            +--ro state?                          identityref
            +--ro is-owner?                       boolean
            +--ro last-adv-source?                inet:ip-address
            +--ro up-time?                        yang:date-and-time
            +--ro master-down-interval?           uint32
            +--ro skew-time?                      uint32
            +--ro last-event?                     string
            +--ro new-master-reason?              new-master-reason-type
            +--ro statistics
               +--ro discontinuity-time?        yang:date-and-time
               +--ro master-transitions?        yang:counter32
               +--ro advertisement-recv?        yang:counter64
               +--ro advertisement-sent?        yang:counter64
               +--ro interval-errors?           yang:counter64
   {validate-interval-errors}?
               +--ro priority-zero-pkts-rcvd?   yang:counter64
               +--ro priority-zero-pkts-sent?   yang:counter64
               +--ro invalid-type-pkts-rcvd?    yang:counter64
               +--ro address-list-errors?       yang:counter64
   {validate-address-list-errors}?
               +--ro packet-length-errors?      yang:counter64
   augment /if:interfaces-state:
      +--ro vrrp-global
         +--ro virtual-routers?                        uint32
         +--ro interfaces?                             uint32
         +--ro checksum-errors?                        yang:counter64
         +--ro version-errors?                         yang:counter64
         +--ro vrid-errors?                            yang:counter64
         +--ro ip-ttl-errors?                          yang:counter64



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         +--ro global-statistics-discontinuity-time?   yang:date-and-
   time
   notifications:
      +---n vrrp-new-master-event
      |  +--ro master-ipaddr?       inet:ipv4-address
      |  +--ro new-master-reason?   new-master-reason-type
      +---n vrrp-protocol-error-event
      |  +--ro protocol-error-reason?   enumeration
      +---n vrrp-virtual-router-error-event
         +--ro interface?                     if:interface-ref
         +--ro ip-version?                    enumeration
         +--ro vrid-v4?                       leafref
         +--ro vrid-v6?                       leafref
         +--ro virtual-router-error-reason?   enumeration

3. VRRP YANG module

   <CODE BEGINS> file "ietf-vrrp@2016-12-01.yang"
   module ietf-vrrp {
     namespace "urn:ietf:params:xml:ns:yang:ietf-vrrp";
     prefix "vrrp";

     import ietf-inet-types {
       prefix "inet";
     }

     import ietf-yang-types {
       prefix "yang";
     }

     import ietf-interfaces {
       prefix "if";
     }

     import ietf-ip {
       prefix "ip";
     }

     organization
       "IETF Routing Area Working Group (RTGWG)";
     contact



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       "WG Web:   <https://datatracker.ietf.org/wg/rtgwg/>
        WG List:  <mailto:rtgwg@ietf.org>

        WG Chair: Jeff Tantsura
                  <mailto:jefftant.ietf@gmail.com>

        WG Chair: Chris Bowers
                  <mailto:cbowers@juniper.net>

        Editor:   Xufeng Liu
                  <mailto:xliu@kuatrotech.com>

        Editor:   Athanasios Kyparlis
                  <mailto:akyparlis@kuatrotech.com>

        Editor:   Ravi Parikh
                  <mailto:parikhr@vmware.com>

        Editor:   Acee Lindem
                  <mailto:acee@cisco.com>

        Editor:   Mingui Zhang
                  <mailto:zhangmingui@huawei.com>";

     description
       "This YANG module defines a model for managing Virtual Router
        Redundancy Protocol (VRRP) version 2 and version 3.";

     revision 2016-12-01 {
       description "Initial revision";
       reference
         "RFC 2787: Definitions of Managed Objects for the Virtual
          Router Redundancy Protocol.
          RFC 3768: Virtual Router Redundancy Protocol (VRRP).
          RFC 5798: Virtual Router Redundancy Protocol (VRRP) Version 3.
          RFC 6527: Definitions of Managed Objects for the Virtual
          Router Redundancy Protocol Version 3 (VRRPv3).";
     }

     /*
      * Features



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      */

     feature validate-interval-errors {
       description
         "This feature indicates that the system validates that
          the advertisement interval from advertisement packets
          received is the same as the one configured for the local
          VRRP router.";
     }

     feature validate-address-list-errors {
       description
         "This feature indicates that the system validates that
          the address list from received packets matches the
          locally configured list for the VRRP router.";
     }

     /*
      * Typedefs
      */

     typedef new-master-reason-type {
       type enumeration {
         enum not-master {
           description
             "The virtual router has never transitioned to master
              state,";
         }
         enum priority {
           description "Priority was higher.";
         }
         enum preempted {
           description "The master was preempted.";
         }
         enum master-no-response {
           description "Previous master did not respond.";
         }
       }
       description
         "The reason for the virtual router to transition to master
          state.";



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     } // new-master-reason-type

     /*
      * Identities
      */

     identity vrrp-state-type {
       description
         "The type to indicate the state of a virtual router.";
     }
     identity initialize {
       base vrrp-state-type;
       description
         "Indicates that the virtual router is waiting
          for a startup event.";
     }
     identity backup {
       base vrrp-state-type;
       description
         "Indicates that the virtual router is monitoring the
          availability of the master router.";
     }
     identity master {
       base vrrp-state-type;
       description
         "Indicates that the virtual router is forwarding
          packets for IP addresses that are associated with
          this virtual router.";
     }

     /*
      * Groupings
      */

     grouping vrrp-common-attributes {
       description
         "Group of VRRP attributes common to version 2 and version 3";

       leaf vrid {
         type uint8 {
           range 1..255;



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         }
         description "Virtual router ID.";
       }

       leaf version {
         type enumeration {
           enum 2 {
             description "VRRP version 2.";
           }
           enum 3 {
             description "VRRP version 3.";
           }
         }
         description "Version 2 or version 3 of VRRP.";
       }

       leaf log-state-change {
         type boolean;
         description
           "Generates VRRP state change messages each time the VRRP
            instance changes state (from up to down or down to up).";
       }

       container preempt {
         presence "Present if preempt is enabled.";
         description
           "Enables a higher priority Virtual Router Redundancy
            Protocol (VRRP) backup router to preempt a lower priority
            VRRP master.";
         leaf hold-time {
           type uint16;
           description
             "Hold time, in seconds, for which a higher priority VRRP
              backup router must wait before preempting a lower priority
              VRRP master.";
         }
       }

       leaf priority {
         type uint8 {
           range 1..254;



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         }
         default 100;
         description
           "Configures the Virtual Router Redundancy Protocol (VRRP)
            election priority for the backup virtual router.";
       }
     } // vrrp-common-attributes

     grouping vrrp-v3-attributes {
       description
         "Group of VRRP version 3 attributes.";

       leaf accept-mode {
         type boolean;
         default false;
         description
           "Controls whether a virtual router in Master state will
            accept packets addressed to the address owner's IPvX address
            as its own if it is not the IPvX address owner. The default
            is false. Deployments that rely on, for example, pinging the
            address owner's IPvX address may wish to configure
            accept-mode to true.

            Note: IPv6 Neighbor Solicitations and Neighbor
            Advertisements MUST NOT be dropped when accept-mode is
            false.";
       }
     }

     grouping vrrp-ipv4-attributes {
       description
         "Group of VRRP attributes for IPv4.";

       uses vrrp-common-attributes;

       uses vrrp-v3-attributes {
         when "version = 3" {
           description "Applicable only to version 3.";
         }
       }




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       choice advertise-interval-choice {
         description
           "The options for the advertisement interval at which VRRPv2
            or VRRPv3 advertisements are sent from the specified
            interface.";

         case v2 {
           when "version = '2'" {
             description "Applicable only to version 2.";
           }
           leaf advertise-interval-sec {
             type uint8 {
               range 1..254;
             }
             default 1;
             description
               "Configures the interval that Virtual Router
                Redundancy Protocol Version 2 (VRRPv2) advertisements
                are sent from the specified interface.";
           }
         }

         case v3 {
           when "version = '3'" {
             description "Applicable only to version 3.";
           }
           leaf advertise-interval-centi-sec {
             type uint16 {
               range 1..4095;
             }
             units centiseconds;
             default 100;
             description
               "Configures the interval that Virtual Router
                Redundancy Protocol version 3 (VRRPv3) advertisements
                are sent from the specified interface.";
           }
         }
       } // advertise-interval-choice

       container track {



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         description
           "Enables the specified VRRP instance to track interfaces
            or networks.";
         container interfaces {
           description
             "Enables the specified Virtual Router Redundancy Protocol
              version 2 (VRRP) or version 3 (VRRPv3) instance to track
              an interface.";

           list interface {
             key "interface";
             description
               "Interface to track.";

             leaf interface {
               type if:interface-ref;
               must "/if:interfaces/if:interface[if:name=.]/ip:ipv4" {
                 description "Interface is IPv4.";
               }
               description
                 "Interface to track.";
             }

             leaf priority-decrement {
               type uint8 {
                 range 1..254;
               }
               description
                 "Specifies how much to decrement the priority of the
                  VRRP instance if the interface goes down.";
             }
           } // track-interface
         } // track-interfaces

         container networks {
           description
             "Enables the backup Virtual Router Redundancy Protocol
              version 2 (VRRP) or version 3 (VRRPv3) router to track a
              specified network through the IP network prefix of that
              network.";
           list network {



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             key "network";
             description
               "Enables the specified Virtual Router Redundancy
                Protocol version 2 (VRRP) or version 3 (VRRPv3)
                instance to track an interface.";

             leaf network {
               type inet:ipv4-prefix;
               description
                 "Network to track.";
             }

             leaf priority-decrement {
               type uint8 {
                 range 1..254;
               }
               default 10;
               description
                 "Specifies how much to decrement the priority of the
                  backup VRRP router if there is a failure in the IP
                  network.";
             }
           } // track-network
         } // track-networks
       } // track

       container virtual-ipv4-addresses {
         description
           "Configures the virtual IP address for the Virtual Router
            Redundancy Protocol (VRRP) interface.";

         list virtual-ipv4-address {
           key "ipv4-address";
           max-elements 16;
           description
             "Virtual IP addresses for a single VRRP instance. For a
              VRRP owner router, the virtual address must match one
              of the IP addresses configured on the interface
              corresponding to the virtual router.";

           leaf ipv4-address {



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             type inet:ipv4-address;
             description
               "Virtual IPv4 address.";
           }
         } // virtual-ipv4-address
       } // virtual-ipv4-addresses
     } // grouping vrrp-ipv4-attributes

     grouping vrrp-ipv6-attributes {
       description
         "Group of VRRP attributes for IPv6.";

       uses vrrp-common-attributes;

       uses vrrp-v3-attributes {
         when "version = 3" {
           description "Uses VRRP version 3 attributes.";
         }
       } // uses vrrp-v3-attributes

       leaf advertise-interval-centi-sec {
         type uint16 {
           range 1..4095;
         }
         units centiseconds;
         default 100;
         description
           "Configures the interval that Virtual Router
            Redundancy Protocol version 3 (VRRPv3) advertisements
            are sent from the specified interface.";
       }

       container track {
         description
           "Enables the specified VRRP instance to track interfaces
            or networks.";
         container interfaces {
           description
             "Enables the specified Virtual Router Redundancy Protocol
              version 2 (VRRP) or version 3 (VRRPv3) instance to track
              an interface.";



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           list interface {
             key "interface";
             description
               "Interface to track.";

             leaf interface {
               type if:interface-ref;
               must "/if:interfaces/if:interface[if:name=.]/ip:ipv6" {
                 description "Interface is IPv6.";
               }
               description
                 "Interface to track.";
             }

             leaf priority-decrement {
               type uint8 {
                 range 1..254;
               }
               description
                 "Specifies how much to decrement the priority of the
                  VRRP instance if the interface goes down.";
             }
           } // track-interface
         } // track-interfaces

         container networks {
           description
             "Enables the backup Virtual Router Redundancy Protocol
              version 2 (VRRP) or version 3 (VRRPv3) router to track a
              specified network through the IP network prefix of that
              network.";
           list network {
             key "network";
             description
               "Enables the specified Virtual Router Redundancy
                Protocol version 2 (VRRP) or version 3 (VRRPv3)
                instance to track an interface.";

             leaf network {
               type inet:ipv6-prefix;
               description



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                 "Network to track.";
             }

             leaf priority-decrement {
               type uint8 {
                 range 1..254;
               }
               default 10;
               description
                 "Specifies how much to decrement the priority of the
                  backup VRRP router if there is a failure in the IP
                  network.";
             }
           } // track-network
         } // track-networks
       } // track

       container virtual-ipv6-addresses {
         description
           "Configures the virtual IP address for the Virtual Router
            Redundancy Protocol (VRRP) interface.";
         list virtual-ipv6-address {
           key "ipv6-address";
           max-elements 2;
           description
             "Two IPv6 addresses are allowed. The first one must be
              a link-local address and the second one can be a
              link-local or global address.";

           leaf ipv6-address {
             type inet:ipv6-address;
             description
               "Virtual IPv6 address.";
           }
         } // virtual-ipv6-address
       } // virtual-ipv6-addresses
     } // grouping vrrp-ipv6-attributes

     grouping vrrp-state-attributes {
       description
         "Group of VRRP state attributes.";



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       leaf state {
         type identityref {
           base vrrp-state-type;
         }
         description
           "Operational state.";
       }

       leaf is-owner {
         type boolean;
         description
           "Set to true if this virtual router is owner.";
       }

       leaf last-adv-source {
         type inet:ip-address;
         description
           "Last advertised IPv4/IPv6 source address";
       }

       leaf up-time {
         type yang:date-and-time;
         description
           "The time when this virtual router
            transitioned out of init state.";
       }

       leaf master-down-interval {
         type uint32;
         units centiseconds;
         description
           "Time interval for backup virtual router to declare
            Master down.";
       }

       leaf skew-time {
         type uint32;
         units microseconds;
         description
           "Calculated based on the priority and advertisement



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            interval configuration command parameters. See RFC 3768.";
       }

       leaf last-event {
         type string;
         description
           "Last reported event.";
       }

       leaf new-master-reason {
         type new-master-reason-type;
         description
           "Indicates the reason for the virtual router to transition
            to master state.";
       }

       container statistics {
         description
           "VRRP statistics.";

         leaf discontinuity-time {
           type yang:date-and-time;
           description
             "The time on the most recent occasion at which any one or
              more of the VRRP statistic counters suffered a
              discontinuity.  If no such discontinuities have occurred
              since the last re-initialization of the local management
              subsystem, then this node contains the time that the
              local management subsystem re-initialized itself.";
         }

         leaf master-transitions {
           type yang:counter32;
           description
             "The total number of times that this virtual router's
              state has transitioned to master";
         }

         leaf advertisement-recv {
           type yang:counter64;
           description



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             "The total number of VRRP advertisements received by
              this virtual router.";
         }

         leaf advertisement-sent {
           type yang:counter64;
           description
             "The total number of VRRP advertisements sent by
              this virtual router.";
         }

         leaf interval-errors {
           if-feature validate-interval-errors;
           type yang:counter64;
           description
             "The total number of VRRP advertisement packets
              received with an advertisement interval
              different than the one configured for the local
              virtual router";
         }

         leaf priority-zero-pkts-rcvd {
           type yang:counter64;
           description
             "The total number of VRRP packets received by the
              virtual router with a priority of 0.";
         }

         leaf priority-zero-pkts-sent {
           type yang:counter64;
           description
             "The total number of VRRP packets sent by the
              virtual router with a priority of 0.";
         }

         leaf invalid-type-pkts-rcvd {
           type yang:counter64;
           description
             "The number of VRRP packets received by the virtual
              router with an invalid value in the 'type' field.";
         }



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         leaf address-list-errors {
           if-feature validate-address-list-errors;
           type yang:counter64;
           description
             "The total number of packets received with an
              address list that does not match the locally
              configured address list for the virtual router.";
         }

         leaf packet-length-errors {
           type yang:counter64;
           description
             "The total number of packets received with a packet
              length less than the length of the VRRP header.";
         }
       } // container statistics
     } // grouping vrrp-state-attributes

     grouping vrrp-global-state-attributes {
       description
         "Group of VRRP global state attributes.";

       leaf virtual-routers {
         type uint32;
         description "Number of configured virtual routers.";
       }

       leaf interfaces {
         type uint32;
         description "Number of interface with VRRP configured.";
       }

       leaf checksum-errors {
         type yang:counter64;
         description
           "The total number of VRRP packets received with an invalid
            VRRP checksum value.";
         reference "RFC 5798, Section 5.2.8";
       }




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       leaf version-errors {
         type yang:counter64;
         description
           "The total number of VRRP packets received with an unknown
            or unsupported version number.";
         reference "RFC 5798, Section 5.2.1";
       }

       leaf vrid-errors {
         type yang:counter64;
         description
           "The total number of VRRP packets received with a VRID that
           is not valid for any virtual router on this router.";
         reference "RFC 5798, Section 5.2.3";
       }

       leaf ip-ttl-errors {
         type yang:counter64;
         description
           "The total number of VRRP packets received by the
            virtual router with IP TTL (Time-To-Live) not equal
            to 255.";
         reference "RFC 5798, Sections 5.1.1.3 and 5.1.2.3.";
       }

       leaf global-statistics-discontinuity-time {
           type yang:date-and-time;
           description
             "The time on the most recent occasion at which one of
              router-checksum-errors, router-version-errors,
              router-vrid-errors, and ip-ttl-errors suffered a
              discontinuity.

              If no such discontinuities have occurred since the last
              re-initialization of the local management subsystem,
              then this object will be 0.";
       }
     } // vrrp-global-state-attributes

     /*
      * Configuration data nodes



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      */

     augment "/if:interfaces/if:interface/ip:ipv4" {
       description "Augment IPv4 interface.";

       container vrrp {
         description
           "Configures the Virtual Router Redundancy Protocol (VRRP)
            version 2 or version 3 for IPv4.";

         list vrrp-instance {
           key vrid;
           description
             "Defines a virtual router, identified by a virtual router
              identifier (VRID), within IPv4 address space.";

           uses vrrp-ipv4-attributes;
         }
       }
     } // augment ipv4

     augment "/if:interfaces/if:interface/ip:ipv6" {
       description "Augment IPv6 interface.";

       container vrrp {
         description
           "Configures the Virtual Router Redundancy Protocol (VRRP)
            version 3 for IPv6.";

         list vrrp-instance {
           must "version = '3'" {
             description
               "IPv6 is only supported by version 3.";
           }
           key vrid;
           description
             "Defines a virtual router, identified by a virtual router
              identifier (VRID), within IPv6 address space.";

           uses vrrp-ipv6-attributes;
         } // list vrrp-instance



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       } // container vrrp
     } // augment ipv6

     /*
      * Operational state data nodes
      */

     augment "/if:interfaces-state/if:interface/ip:ipv4" {
       description "Augment IPv4 interface state.";

       container vrrp {
         description
           "State information for Virtual Router Redundancy Protocol
            (VRRP) version 2 for IPv4.";

         list vrrp-instance {
           key vrid;
           description
             "States of a virtual router, identified by a virtual router
              identifier (VRID), within IPv4 address space.";

           uses vrrp-ipv4-attributes;
           uses vrrp-state-attributes;
         } // list vrrp-instance
       }
     }

     augment "/if:interfaces-state/if:interface/ip:ipv6" {
       description "Augment IPv6 interface state.";

       container vrrp {
         description
           "State information of the Virtual Router Redundancy Protocol
            (VRRP) version 2 or version 3 for IPv6.";

         list vrrp-instance {
           key vrid;
           description
             "States of a virtual router, identified by a virtual router
              identifier (VRID), within IPv6 address space.";




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           uses vrrp-ipv6-attributes;
           uses vrrp-state-attributes;
         } // list vrrp-instance
       }
     }

     augment "/if:interfaces-state" {
       description "Specify VRRP state data at the global level.";

       container vrrp-global {
         description
           "State information of the Virtual Router Redundancy Protocol
            (VRRP) at the global level";

         uses vrrp-global-state-attributes;
       }
     }

     /*
      * Notifications
      */

     notification vrrp-new-master-event {
       description
         "Notification event for a change of VRRP new master.";
       leaf master-ipaddr {
         type inet:ipv4-address;
         description
           "IPv4 or IPv6 address of the new master.";
       }
       leaf new-master-reason {
         type new-master-reason-type;
         description
           "Indicates the reason for the virtual router to transition
            to master state.";
       }
     }

     notification vrrp-protocol-error-event {
       description
         "Notification event for a VRRP protocol error.";



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       leaf protocol-error-reason {
         type enumeration {
           enum checksum-error {
             description
               "A packet has been received with an invalid VRRP checksum
                value.";
           }
           enum version-error {
             description
               "A packet has been received with an unknown or
                unsupported version number.";
           }
           enum vrid-error {
             description
               "A packet has been received with a VRID that is not valid
                for any virtual router on this router.";
           }
           enum ip-ttl-error {
             description
               "A packet has been received with IP TTL (Time-To-Live)
                not equal to 255.";
           }
         }
         description
           "Indicates the reason for the protocol error.";
       }
     }

     notification vrrp-virtual-router-error-event {
       description
         "Notification event for an error happened on a virtual
          router.";
       leaf interface {
         type if:interface-ref;
         description
           "Indicates the interface for which statistics area
            to be cleared.";
       }
       leaf ip-version {
         type enumeration {
           enum 4 {



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             description "IPv4";
           }
           enum 6 {
             description "IPv6";
           }
         }
         description "Indicates the IP version.";
       }
       leaf vrid-v4 {
         type leafref {
           path "/if:interfaces/if:interface"
             + "[if:name = current()/../interface]/ip:ipv4/vrrp/"
             + "vrrp-instance/vrid";
         }
         description
           "Indicates the virtual router on which the event has
            occurred.";
       }

       leaf vrid-v6 {
         type leafref {
           path "/if:interfaces/if:interface"
             + "[if:name = current()/../interface]/ip:ipv6/vrrp/"
             + "vrrp-instance/vrid";
         }
         description
           "Indicates the virtual router on which the event has
            occurred.";
         }
       leaf virtual-router-error-reason {
         type enumeration {
           enum interval-error {
             description
               "A packet has been received with an advertisement
                interval different than the one configured for the local
                virtual router";
           }
           enum address-list-error {
             description
               "A packet has been received with an address list that
                does not match the locally configured address list for



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                the virtual router.";
           }
           enum packet-length-error {
             description
               "A packet has been received with a packet length less
                than the length of the VRRP header.";
           }
         }
         description
           "Indicates the reason for the virtual router error.";
       }
     }
   }
   <CODE ENDS>

4. IANA Considerations

   RFC Ed.: In this section, replace all occurrences of 'XXXX' with the
   actual RFC number (and remove this note).

   This document registers the following namespace URIs in the IETF XML
   registry [RFC3688]:

   --------------------------------------------------------------------
   URI: urn:ietf:params:xml:ns:yang:ietf-vrrp
   Registrant Contact: The IESG.
   XML: N/A, the requested URI is an XML namespace.
   --------------------------------------------------------------------

   This document registers the following YANG modules in the YANG Module
   Names registry [RFC6020]:

   --------------------------------------------------------------------
   name:         ietf-vrrp
   namespace:    urn:ietf:params:xml:ns:yang:ietf-vrrp
   prefix:       vrrp
   reference:    RFC XXXX
   --------------------------------------------------------------------

5. Security Considerations

   The configuration, state, action and notification data defined in
   this document are designed to be accessed via the NETCONF protocol
   [RFC6241]. The data-model by itself does not create any security



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   implications. The security considerations for the NETCONF protocol
   are applicable. The NETCONF protocol used for sending the data
   supports authentication and encryption.

6. References

6.1. Normative References

   [RFC6020] Bjorklund, M., "YANG - A Data Modeling Language for the
             Network Configuration Protocol (NETCONF)", RFC 6020,
             October 2010.

   [RFC6021] Schoenwaelder, J., "Common YANG Data Types", RFC 6021,
             October 2010.

   [RFC6241] Enns, R., Bjorklund, M., Schoenwaelder, J., and A. Bierman,
             "Network Configuration Protocol (NETCONF)", RFC 6241, June
             2011.

   [RFC2234] Crocker, D. and Overell, P.(Editors), "Augmented BNF for
             Syntax Specifications: ABNF", RFC 2234, Internet Mail
             Consortium and Demon Internet Ltd., November 1997.

   [RFC2338] Knight, S., Weaver, D., Whipple, D., Hinden, R., Mitzel,
             D., Hunt, P., Higginson, P., Shand, M., and A. Lindem,
             "Virtual Router Redundancy Protocol", RFC 2338, April 1998.

   [RFC2787] Jewell, B. and D. Chuang, "Definitions of Managed Objects
             for the Virtual Router Redundancy Protocol", RFC 2787,
             March 2000.

   [RFC5798] Nadas, S., Ed., "Virtual Router Redundancy Protocol (VRRP)
             Version 3 for IPv4 and IPv6", RFC 5798, March 2010.

   [RFC6527] Tata, K., Ed., "Definitions of Managed Objects for the
             Virtual Router Redundancy Protocol Version 3 (VRRPv3)", RFC
             6527, March 2012.

6.2. Informative References

   [RFC6087] Bierman, A., "Guidelines for Authors and Reviewers of YANG
             Data Model Documents", RFC 6087, January 2011.







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Authors' Addresses

   Xufeng Liu (Editor)
   Kuatro Technologies
   8281 Greensboro Drive, Suite 200
   McLean, VA 22102
   USA

   Email: xliu@kuatrotech.com


   Athanasios Kyparlis
   Kuatro Technologies
   8281 Greensboro Drive, Suite 200
   McLean, VA 22102
   USA

   Email: akyparlis@kuatrotech.com


   Ravi Parikh
   VMware
   3425 Hillview Avenue
   Palo Alto, CA 94304
   USA

   Email: parikhr@vmware.com


   Acee Lindem
   Cisco Systems
   301 Midenhall Way
   Cary, NC 27513
   USA

   Email: acee@cisco.com


   Mingui Zhang
   Huawei Technologies
   No. 156 Beiqing Rd. Haidian District
   Beijing 100095
   P.R. China

   Email: zhangmingui@huawei.com




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