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<rfc xmlns:xi="http://www.w3.org/2001/XInclude" submissionType="IETF" docName="draft-ietf-bier-ping-13" category="std" ipr="trust200902" obsoletes="" updates="" xml:lang="en" symRefs="true" sortRefs="false" tocInclude="true" version="3">
  <!-- xml2rfc v2v3 conversion 3.16.0 -->
  <!-- Generated by id2xml 1.5.0 on 2023-02-27T22:45:04Z -->
	<front>
    <title abbrev="BIER Ping">BIER Ping and Trace</title>
    <seriesInfo name="Internet-Draft" value="draft-ietf-bier-ping-13"/>
    <author initials="N." surname="Kumar" fullname="Nagendra Kumar">
      <organization>Cisco Systems, Inc.</organization>
      <address>
        <postal>
          <street>7200 Kit Creek Road</street>
          <street>Research Triangle Park, NC  27709</street>
          <country>US</country>
        </postal>
        <email>naikumar@cisco.com</email>
      </address>
    </author>
    <author initials="C." surname="Pignataro" fullname="Carlos Pignataro">
      <organization>North Carolina State University</organization>
      <address>
        <postal>
          <country>United States of America</country>
        </postal>
        <email>cpignata@gmail.com</email>
        <email>cmpignat@ncsu.edu</email>
      </address>
    </author>

    <author initials="M." surname="Chen" fullname="Mach Chen">
      <organization>Huawei Technologies</organization>
      <address>
        <email>mach.chen@huawei.com</email>
      </address>
    </author>
    <author initials="G." surname="Mirsky" fullname="Greg Mirsky">
      <organization>Ericsson</organization>
      <address>
        <email>gregimirsky@gmail.com</email>
      </address>
    </author>
    <date year="2024"/>
    
    <workgroup>Network Work group</workgroup>
    
    <abstract>
      <t>
   Bit Index Explicit Replication (BIER) is an architecture that
   provides optimal multicast forwarding through a "BIER domain" without
   requiring intermediate routers to maintain any multicast-related per-
   flow state. BIER also does not require any explicit tree-building
   protocol for its operation. A multicast data packet enters a BIER
   domain at a "Bit-Forwarding Ingress Router" (BFIR), and leaves the
   BIER domain at one or more "Bit-Forwarding Egress Routers" (BFERs).
   The BFIR router adds a BIER header to the packet. The BIER header
   contains a bit-string in which each bit represents exactly one BFER
   to forward the packet to. The set of BFERs to which the multicast
   packet needs to be forwarded is expressed by setting the bits that
   correspond to those routers in the BIER header.</t>
      <t>
   This document describes the mechanism and basic BIER OAM packet
   format that can be used to perform failure detection and isolation on
   the BIER data plane.</t>
    </abstract>
  </front>
  <middle>
    <section anchor="sect-1" numbered="true" toc="default">
      <name>Introduction</name>
      <t>
   <xref target="RFC8279" format="default"/> introduces and explains BIER architecture that provides
   optimal multicast forwarding through a "BIER domain" without
   requiring intermediate routers to maintain any multicast-related per-
   flow state.  BIER also does not require any explicit tree-building
   protocol for its operation.  A multicast data packet enters a BIER
   domain at a "Bit-Forwarding Ingress Router" (BFIR), and leaves the
   BIER domain at one or more "Bit-Forwarding Egress Routers" (BFERs).
   The BFIR router adds a BIER header to the packet.  The BIER header
   contains a bit-string in which each bit represents exactly one BFER
   to forward the packet to.  The set of BFERs to which the multicast
   packet needs to be forwarded is expressed by setting the bits that
   correspond to those routers in the BIER header.</t>
   <t>
   Operations, Administration, and Maintenance (OAM) mechanisms are
   expected to support the detection of network failures.  After the
   detection, operators localize and characterize the network defect.  A
   query-based tool, e.g., ICMP <xref target="RFC0792"/>
   and LSP Ping <xref target="RFC8029"/>, <xref target="RFC6425"/>,
   is broadly used to detect and localize a network defect.
   Additionally, this mechanism can be used to check the consistency
   between the data and control planes.
   This document describes the mechanism and basic BIER OAM packet
   format that can be used to perform failure detection and isolation on
   the BIER data plane without any dependency on other layers, like the IP layer.</t>
    </section>
    <section anchor="sect-2" numbered="true" toc="default">
      <name>Conventions used in this document</name>
      <section anchor="sect-2.1" numbered="true" toc="default">
        <name>Terminology</name>
        <t>BFER - Bit-Forwarding Egress Router</t>
        <t>BFIR - Bit-Forwarding Ingress Router</t>
        <t>BFR - Bit-Forwarding Router</t>
        <t>BIER - Bit Index Explicit Replication</t>
   <t>DDMAP - Downstream Detailed Mapping TLV</t>
        <t>ECMP - Equal Cost Multi-Path</t>
        <t>OAM - Operation, Administration, and Maintenance</t>
        <t>SI - Set Identifier</t>
        <t>QTF - Querier Timestamp Format</t>
        <t>RTF - Responder Timestamp Format</t>
        <t>NTP - Network Time Protocol</t>
        <t>MTU - Maximum Transmission Unit</t>
        <t>DA - Downstream Address</t>
        <t>DIA - Downstream Interface Address</t>
        <t>DoS - Denial-of-Service</t>
        <t>PTP - Precision Time Protocol</t>
      </section>
      <section anchor="sect-2.2" numbered="true" toc="default">
        <name>Requirements Language</name>
        <t>
   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 <xref target="RFC2119" format="default"/> <xref target="RFC8174" format="default"/> 
   when, and only when, they appear in all capitals, as shown here.
   </t>
      </section>
    </section>
    <section anchor="sect-3" numbered="true" toc="default">
      <name>BIER OAM</name>
      <t>
   BIER OAM is defined to stay within the BIER layer by directly following
   the BIER header without mandating the need for an IP header.  <xref target="RFC8296"/>
   defines a 4-bit field as "Proto" to identify the payload following
   the BIER header.  When the payload is BIER OAM, the "Proto" field will be
   set to 5 as defined in <xref target="RFC8296" format="default"/></t>
      <section anchor="sect-3.1" numbered="true" toc="default">
        <name>BIER OAM message format</name>
        <t>
   The BIER OAM packet header format that follows the BIER header is displayed in <xref target="bier-hdr-fig"/>.</t>
         <figure anchor="bier-hdr-fig">
        <name>BIER OAM Header</name>
        <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |  Ver  | Message Type  |   Proto   |         Reserved          |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                        OAM Message Length                     |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  ~                  Message Type Dependent Data                  ~
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>

      <ul empty="true" spacing="normal">
        <li>Ver - a four-bit field that indicates the current version of the BIER OAM header. The current value is 1.
        The version number is to
   be incremented whenever a change is made that affects the ability of
   an implementation to parse or process the BIER OAM header correctly.
   For example, if syntactic or semantic changes are made to any of the fixed fields.</li>
        <li>Message Type - a six-bit field that identifies OAM protocol. Values defined in this document are as follows:</li>
        </ul>
          <artwork name="" type="" align="left" alt=""><![CDATA[
                Value      Description
                --------  ---------------
                  1        Echo Request
                  2        Echo Reply
]]></artwork>

        <ul empty="true" spacing="normal">
        <li>Proto - a six-bit field. This field is used to define if there is any data packet
      immediately following the OAM payload, which may be used by a hybrid
      OAM <xref target="RFC7799"/>.  This field MUST be set to 0 if there is no data
      packet following the OAM payload. Value is one from the IANA registry "BIER Next Protocol Identifiers" <xref target="RFC8296"/>.</li>
      <li>Reserved - a fourteen-bit field. The value MUST be zeroed on transmission and ignored on receipt.</li>
        <li>OAM Message Length - a two-octet field that reflects the length of the OAM message, including the
      header and the Messsage Type Dependent Data.</li>
      <li>Message Type Dependant Data - a variable-length field that includes the OAM message identified by the value of the Message Type filed.</li>
      </ul>
      
<t>The Echo Request/Reply header format displayed in <xref target="bier-echo-fig"/></t>

                 <figure anchor="bier-echo-fig">
        <name>BIER Echo Request/Reply Format</name>
        <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |  Ver  | Echo Req/Rep  |   Proto   |         Reserved          |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                  Echo Request/Reply Length                    |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |   QTF |   RTF |   Reply Mode  |  Return Code  |    Reserved   |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                        Sender's Handle                        |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                        Sequence Number                        |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                    Timestamp Sent                             |
  |                                                               |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                  Timestamp Received                           |
  |                                                               |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  ~                              TLVs                             ~
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>

        <ul empty="true" spacing="normal">
        <li>Proto field MUST be set to 0 for Echo Request/Reply header.</li>
        <li>QTF (Querier Timestamp Format) - a four-bit field. When the field is set to 2, the Timestamp Sent field
      is (in seconds and microseconds, according to the Initiator's
      clock) in NTP format <xref target="RFC5905" format="default"/>.  When the value of the QTF field is 3, 
      the Timestamp Sent's
      format is the IEEE 1588-2008 (1588v2) Precision Time Protocol (PTP) <xref target="IEEE.1588.2008"/>
      format.  Any other value MAY be considered as a sanity check failure.</li>
      <li>RTF (Responder Timestamp Format) - a four-bit field. When the field is set to 2, the Timestamp Received
      field is (in seconds and microseconds, according to the
      Initiator's clock) in NTP format <xref target="RFC5905" format="default"/>.  When filed's value is 3, the
      format of the Timestamp Received is as defined in IEEE 1588-2008 (1588v2) Precision Time
      Protocol <xref target="IEEE.1588.2008"/>. Any other value MAY be considered as a sanity
      check failure.</li>
      </ul>
      <t>The sender of the BIER Echo Request might receive the BIER Echo Reply with RTF different from the Sender's QTF,
      Thus, the Sender MUST be able to interpret both timestamp formats, i.e., NTP  <xref target="RFC5905"/> and PTP <xref target="IEEE.1588.2008"/>.</t>
       <ul empty="true" spacing="normal">
      <li>The Reply Mode - a one-octet field. The value MUST be set to one of the following values:</li>
      </ul>
        <artwork name="" type="" align="left" alt=""><![CDATA[
                Value      Description
                --------  ---------------
                  1        Do not Reply
                  2        Reply via IPv4/IPv6 UDP packet
                  3        Reply via BIER packet
]]></artwork>

          <ul empty="true" spacing="normal">
        <li>
   When Reply Mode is set to 1, the receiver will not send any reply.
   This mode can be used for unidirectional path validation.  When the
   Reply Mode is set to 2, the Responder Bit-Forwarding Router (BFR) encapsulates the Echo
   reply payload with the IP/UDP header.  When the Initiator intends to validate
   the return BIER path, the Reply Mode will be set to 3 so that the
   Responder BFR will encapsulate the Echo Reply with the BIER header.
   </li>
   <li>Return Code - a one-octet field. The value MUST be set to zero if the Type is "BIER Echo Request". 
   The value of the Return Code filed MUST be set to one of the
      values defined in <xref target="sect-3.2"/>, if the Type is "BIER Echo Reply".</li>
<li>Reserved - a one-octet field. The Reserved field MUST be zeroed on transmit and MUST be ignored on receipt.</li>
          <li>
      Sender's Handle - a four-octet field. The Sender's Handle is filled by the Initiator, and returned
      unchanged by responder BFR. This value can be used for matching
      the replies to the request.
        </li>
        <li>
	Sequence Number - a four-octet field. The value of the field is assigned by the Initiator and can be used to detect any missed replies.
       </li>
        <li>
	Timestamp - each field (Sent and Received) is an eight-octet field.
	The Timestamp Sent is the time when the Echo Request is sent.  The
      Timestamp Received in Echo Reply is the time (accordingly to
      responding BFR clock) that the corresponding Echo Request was
      received.  The format depends on the QTF/RTF value.
      </li>
      <li>TLVs - Carries the TLVs as defined in <xref target="sect-3.3" format="default"/>.</li>
</ul>
      </section>
      
      <section anchor="sect-3.2" numbered="true" toc="default">
        <name>Return Code</name>
        <t>
   The responder uses the Return Code field to reply with a validity
   check or other error message to Initiator.  It does not carry any
   meaning in Echo Request and MUST be set to zero. The Return Code can be one of the following:
   </t>

        <artwork name="" type="" align="left" alt=""><![CDATA[
        Value      Value Meaning
        ------    ---------------
         0      No return code
         1      Malformed Echo Request received
         2      One or more of the TLVs is not supported
         3      Replying BFR is the only BFER in header BitString
         4      Replying BFR is one of the BFERs in header BitString
         5      Packet-Forward-Success
         6      Invalid Multipath Info Request
         8      No matching entry in the forwarding table
         9      Set-Identifier Mismatch
        10     DDMAP Mismatch
]]></artwork>
        <t>
   "No return code" will be used by Initiator in the Echo Request.  This
   value MUST NOT be used in Echo Reply.</t>
        <t>
   "Malformed Echo Request received" will be used by any BFR if the
   received Echo Request packet is not properly formatted.</t>
        <t>
   When a receiver does not support any TLV included in the Echo
   Request, the Return code will be set to "One or more of the TLVs is not supported" carrying the respective TLVs.
   </t>
        <t>
   When the received header BitString in the Echo Request packet
   contains only its Bit-ID, "Replying BFR is the only BFER in header BitString"
   is set in the reply.  This value implies that the receiver
   is BFER, and the packet is not forwarded to any more neighbors.</t>
        <t>
   When the received header BitString in the Echo Request packet
   contains its Bit-ID in addition to other Bit-IDs, "Replying BFR is
   one of the BFERs in header BitString" is set in the reply.  This
   value implies that the responder is a BFER and the packet is further
   forwarded to one or more neighbors.</t>
        <t>
   Any transit BFR will send the Echo Reply with "Packet-Forward-Success",
   if the TLV in the received Echo Request is understood and
   the forwarding table has forwarding entries for the BitString.  This
   behavior is demonstrated by a transit BFR during traceroute mode.</t>
        <t>
   When the Echo Request is received with multipath info for more than
   one BFER, the Return Code is set to "Invalid Multipath Info Request".</t>
        <t>
   If the BitString cannot be matched in the local forwarding table, the
   BFR will use "No matching entry in the forwarding table" in the reply.</t>
        <t>
   If the BIER-MPLS label in the received Echo Request is not the one
   assigned for SI in Original SI-BitString TLV, "Set-Identifier Mismatch" is set in order to report the mismatch.</t>
   <t>
   If the BitString in Header-H does not match the BitString in Egress BitString Sub-TLV of DDMAP TLV,
   a responding BFR will use "DDMAP Mismatch" to report the problem.</t>
      </section>
      
      <section anchor="sect-3.3" numbered="true" toc="default">
        <name>BIER OAM TLV</name>
        <t>
   This section defines various TLVs that can be used in BIER OAM
   packet.  The TLVs (Type-Length-Value tuples) have the following
   format:</t>
         <figure anchor="bier-tlv-fig">
        <name>Type-Length-Value Format Used in BIER Echo Request/Reply</name>
        <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |               Type            |          Length               |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                                                               |
  ~                              Value                            ~
  |                                                               |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>

        <t>
   TLV Types are defined below; Length is the length of the Value field
   in octets.  The Value field depends on the TLV Type.</t>
   
        <section anchor="sect-3.3.1" numbered="true" toc="default">
          <name>Original SI-BitString TLV</name>
          <t>
   The Original SI-BitString TLV carries the set of BFERs and carries the
   same BitString that the Initiator includes in the BIER header.  This TLV
   has the following format:</t>
           <figure anchor="si-bitstring-tlv-fig">
           <name>The Format of the Original SI-BitString TLV</name>
          <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |         Type = 1              |       Length = variable       |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |    Set ID     | Sub-domain ID |BS Len |      Reserved         |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                BitString  (first 32 bits)                     ~
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  ~                                                               ~
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                BitString  (last 32 bits)                      |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>
          <t>
   Set ID - a one-octet field that is set to the value of the Set Identifier to which the
   BitString belongs.  This value is derived as defined in <xref target="RFC8279" format="default"/>.</t>
          <t>
   Sub-domain ID - a one-octet field that is set to the Sub-domain value to which BFER in
   BitString belongs.</t>
          <t>
   BS Len - a four-bit field that is set based on the length of BitString as defined in
   <xref target="RFC8296" format="default"/> reflected in four-octet words.</t>
   <t>Reserved - a twelve-bit field. Its value MUST be zeroed on transmission and ignored on receipt.</t>
          <t>
   BitString - a variable length field. The BitString field carries the set of BFR-IDs that Initiator will
   include in the BIER header.  This TLV MUST be included by the Initiator
   in the Echo Request packet.</t>
          <t>
   Any Initiator MUST include this TLV in the Echo Request packet.</t>
        </section>
        <section anchor="sect-3.3.2" numbered="true" toc="default">
          <name>Target SI-BitString TLV</name>
          <t>
   The Target SI-BitString TLV carries the set of BFERs from which the
   Initiator expects the reply. This TLV has the following format:</t>
   <figure anchor="target-sibitstring-tlv-fig">
   <name>The Format of the Target SI-BitString TLV</name>
          <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |         Type = 2              |       Length = variable       |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |    Set ID     | Sub-domain ID |BS Len |       Reserved        |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                BitString  (first 32 bits)                     ~
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  ~                                                               ~
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                BitString  (last 32 bits)                      |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>

          <t>
   Set ID field is set to the Set Identifier to which the BitString
   belongs.This value is derived as defined in <xref target="RFC8279" format="default"/>.</t>
          <t>
   Sub-domain ID is set to the Sub-domain value to which BFER in
   BitString belongs.</t>
          <t>
   BS Len is set based on the length of BitString as defined in
   <xref target="RFC8296" format="default"/></t>
   <t>Reserved - the value MUST be zeroed on transmission and ignored on receipt.</t>
          <t>
   The BitString field carries the set of BFR-IDs of BFER(s) that
   Initiator expects a response.  The BitString in this TLV may
   be different from the BitString in the BIER header and allows
   control of the BFER responding to the Echo Request. This TLV MUST be
   included by Initiator in the BIER OAM packet if the Downstream Mapping
   TLV (<xref target="sect-3.3.4"/>) is included.</t>
        </section>
        
        <section anchor="sect-3.3.3" numbered="true" toc="default">
          <name>Incoming SI-BitString TLV</name>
          <t>
   The Incoming SI-BitString TLV will be included by Responder BFR in
   Reply message and copies the BitString from the BIER header of incoming
   Echo Request message.  This TLV has the following format:</t>
   <figure anchor="inc-sistring-tlv-fig">
   <name>The Format of the Incoming SI-BitString TLV</name>
          <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |         Type = 3              |       Length = variable       |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |    Set ID     | Sub-domain ID |BS Len |       Reserved        |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                BitString  (first 32 bits)                     ~
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  ~                                                               ~
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                BitString  (last 32 bits)                      |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>

          <t>
   Set ID field is set to the Set Identifier to which the BitString
   belongs.  This value is derived as defined in <xref target="RFC8279" format="default"/></t>
          <t>
   Sub-domain ID is set to the Sub-domain value to which BFER in
   BitString belongs.</t>
          <t>
   BS Len is set based on the length of BitString as defined in
   <xref target="RFC8296" format="default"/>.</t>
   <t>Reserved - the value MUST be zeroed on transmission and ignored on receipt.</t>
          <t>
   The BitString field copies the BitString from the BIER header of the
   incoming Echo Request.  A Responder BFR SHOULD include this TLV in
   Echo Reply if the Echo Request is received with the I flag set in
   Downstream Mapping TLV.</t>
          <t>
   An Initiator MUST NOT include this TLV in Echo Request.</t>
        </section>
        
        <section anchor="sect-3.3.4" numbered="true" toc="default">
          <name>Downstream Mapping TLV</name>
          <dl newline="true" spacing="normal" indent="3">
            <dt>This TLV has the following format:</dt>
            <dd/>
          </dl>
          <figure anchor="dwn-map-tlv-fig">
          <name>The Format of the Downstream Mapping TLV</name>
          <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |         Type = 4              |       Length = variable       |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |               MTU             | Address Type  |     Flags     |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |               Downstream Address (4 or 16 octets)             |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |         Downstream Interface Address (4 or 16 octets)         |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |        Sub-TLVs Length        |                               |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+                               |
  .                                                               .
  .                      List of Sub-TLVs                         .
  .                                                               .
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>

          <dl newline="false" spacing="normal" indent="3">
            <dt>MTU</dt>
            <dd>
   A two-octet field. The value is the Maximum Transmission Unit (MTU) value of the egress interface.</dd>
   <dt>Address Type</dt>
            <dd>
      A one-octet field. The Address Type indicates the address type and length of the IP
      address for the downstream interface.  The Address type is set to
      one of the following values:</dd>
          </dl>
  
          <artwork name="" type="" align="left" alt=""><![CDATA[
            Type     Addr. Type       DA Length    DIA Length
           -------  ---------------   ----------   ----------
               1       IPv4 Numbered        4              4
               2       IPv4 Unnumbered      4              4
               3       IPv6 Numbered        16            16
               4       IPv6 Unnumbered      16             4
]]></artwork>

          <dl newline="true" spacing="normal" indent="3">
          <dt>DA Length</dt>
          <dd>Downstream Address (DA) field Length</dd>
          <dt>DIA Length</dt>
          <dd>Downstream Interface Address (DIA) field Length</dd>
            <dt>Flags</dt>
            <dd>
	The Flags field has the following format:
	</dd>
          </dl>

<figure anchor="flags-fig">
<name>The Flags Field Format</name>
          <artwork name="" type="" align="left" alt=""><![CDATA[
 0 1 2 3 4 5 6 7
+-+-+-+-+-+-+-+-+
|   Reserved  |I|
+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>

<t>Reserved - a seven-bit field. Its value MUST be zeroed on transmission and ignored on receipt.</t>
          <t>
   I - a one-bit field. When I flag is set, the Responding BFR MUST include the Incoming SI-
   BitString TLV in Echo Reply message.</t>
          <dl newline="true" spacing="normal" indent="3">
            <dt>Downstream Address and Downstream Interface Address</dt>
            <dd>
            <t>each field is either four-octet or sixteen-octet, depending on the value of Address Type field.</t>
              <t>
	If the Address Type is 1, the Downstream Address MUST be set to
      IPV4 BFR-Prefix of downstream BFR and Downstream Interface Address
      is set to the downstream interface address.
              </t>
              <t>
	If the Address Type is 2, the Downstream Address MUST be set to
      IPV4 BFR-Prefix of downstream BFR and Downstream Interface Address
      is set to the index assigned by upstream BFR to the interface.
              </t>
              <t>
	If the Address Type is 3, the Downstream Address MUST be set to
      IPV6 BFR-Prefix of downstream BFR and Downstream Interface Address
      is set to the downstream interface address.
              </t>
              <t>
	If the Address Type is 4, the Downstream Address MUST be set to
      IPv6 BFR-Prefix of downstream BFR and Downstream Interface Address
      is set to the index assigned by upstream BFR to the interface.
              </t>
            </dd>
          </dl>
          
          <section anchor="sect-3.3.4.1" numbered="true" toc="default">
            <name>Downstream Detailed Mapping Sub-TLVs</name>
            <t>
   This section defines the optional Sub-TLVs that can be included in
   Downstream Mapping TLV.</t>
            <artwork name="" type="" align="left" alt=""><![CDATA[
                Sub-TLV Type     Value
                ------------  -------------
                    1         Multipath Entropy Data
                    2         Egress BitString
]]></artwork>
            <section anchor="sect-3.3.4.1.1" numbered="true" toc="default">
              <name>Multipath Entropy Data</name>
              <figure anchor="multi-entropy-fig">
              <name>The Format of the Multipath Data Blob</name>
              <artwork name="" type="" align="left" alt=""><![CDATA[
    0                   1                   2                   3
    0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
   |         Type = 1              |       Length = variable       |
   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
   |M|  Reserved     |                                             |
   +-+-+-+-+-+-+-+-+-+                                             |
   |                                                               |
   |                  (Multipath Information)                      |
   |                                                               |
   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>
              <dl newline="false" spacing="normal" indent="3">
                <dt>M Flag</dt>
                <dd>
      This flag is set to 0 if all packets will be forwarded out through
      the interface defined in the Downstream Mapping TLV.  When set to
      1, Multipath Information will be defined by the Bit masked Entropy
      data.</dd>
      <dt>Reserved</dt>
      <dd>The value MUST be zeroed on transmission and ignored on receipt.</dd>
              </dl>
              <dl newline="true" spacing="normal" indent="3">
                <dt/>
                <dd>Multipath Information Entropy Data is encoded as defined in <xref target="sect-3.4"/>.</dd>
              </dl>
            </section>
            <section anchor="sect-3.3.4.1.2" numbered="true" toc="default">
              <name>Egress BitString Sub-TLV</name>
              <t>
   Responder BFR MAY include this Sub-TLV with the rewritten BitString
   in the outgoing interface as defined in Section 6.1 of <xref target="RFC8279" format="default"/>.</t>
   <figure anchor="egr-bitstring-fig">
   <name>The Egress BitString Sub-TLV Format</name>
              <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |         Type = 2              |       Length = variable       |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |    Set ID     | Sub-domain ID |BS Len |       Reserved        |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                BitString  (first 32 bits)                     ~
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  ~                                                               ~
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                BitString  (last 32 bits)                      |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>
        <t>
   Set ID field is set to the Set Identifier to which the BitString
   belongs.  This value is derived as defined in <xref target="RFC8279" format="default"/>.</t>
          <t>
   Sub-domain ID is set to the Sub-domain value to which BFER in
   BitString belongs.</t>
          <t>
   BS Len is set based on the length of BitString as defined in
   <xref target="RFC8296" format="default"/>.</t>
   <t>Reserved - the value MUST be zeroed on transmission and ignored on receipt.</t>
          <t>
   The BitString field copies the rewritten BitString
   in the outgoing interface as defined in Section 6.1 of <xref target="RFC8279" format="default"/>.</t>

            </section>
          </section>
        </section>
        
        <section anchor="sect-3.3.5" numbered="true" toc="default">
          <name>Responder BFER TLV</name>
          <t>
   The BFER replying to the request MAY include the Responder BFER TLV.
   This TLV identifies the originator of BIER Echo Reply.  This TLV has
   the following format:</t>
   <figure anchor="responder-tlv-fig">
   <name>The Responder BFER TLV Format</name>
          <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |         Type = 5              |           Length = 4          |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |         Reserved              |           BFR-ID              |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>

          <dl newline="false" spacing="normal" indent="3">
          <dt>Length</dt>
          <dd>A two-octet field. The value MUST be set to four.</dd>
          <dt>Reserved</dt>
          <dd>A two-octet field. The value MUST be zeroed on transmission and ignored on receipt.</dd>
            <dt>BFR-ID</dt>
            <dd>
      A two-octet field. The BFR-ID field carries the BFR-ID of the replying BFER.  This TLV
      MAY be included by the Responding BFER in the BIER Echo Reply packet.</dd>
          </dl>
        </section>
        <section anchor="sect-3.3.6" numbered="true" toc="default">
          <name>Responder BFR TLV</name>
          <t>
   Any transit BFR replying to the request MAY include the Responder BFR
   TLV.  This is used to identify the replying BFR without BFR-ID.  This
   TLV has the following format:</t>
   <figure anchor="resp-bfd-tlv-fig">
   <name>The Responder BFD TLV Format</name>
          <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |     TLV Type = 6              |        Length = 8 or 20       |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |         Reserved              |          Address Type         |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                                                               |
  ~                       BFR-Prefix (4 or 16 bytes)              ~
  |                                                               |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>

          <dl newline="false" spacing="normal" indent="3">
          <dt>Length</dt>
          <dd>The Length field, depending on the Address Type value - 8 or 20.</dd>
          <dt>Reserved</dt>
          <dd>A two-octet field. The value MUST be zeroed on transmission and ignored on receipt.</dd>
          <dt>Address Type</dt>
          <dd>A two-octet field. Set to 1 for IPv4 or 2 for IPv6.</dd>
            <dt>BFR-Prefix</dt>
            <dd>
      This field carries the local BFR-Prefix of the replying BFR.  This
      TLV MAY be included by Responding BFR in BIER Echo Reply packet.</dd>
          </dl>
        </section>
        <section anchor="sect-3.3.7" numbered="true" toc="default">
          <name>Upstream Interface TLV</name>
          <t>
   The BFR replying to the request MUST include the Upstream Interface
   TLV.  This TLV identifies the incoming interface and the BIER-MPLS
   label in the incoming Echo Request.  This TLV has the following
   format:</t>
   <figure anchor="upstr-intf-tlv-fig">
   <name>The Upstream Interface TLV Format</name>
          <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |     TLV Type = 7              |        Length = 8 or 20       |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |         Reserved              |          Address Type         |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                                                               |
  ~                 Upstream Address (4 or 16 bytes)              ~
  |                                                               |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>

          <dl newline="false" spacing="normal" indent="3">
          <dt>Length</dt>
          <dd>The Length field, depending on the Address Type value - 8 or 20.</dd>
            <dt>Reserved</dt>
          <dd>A two-octet field. The value MUST be zeroed on transmission and ignored on receipt.</dd>
            <dt>Address Type</dt>
            <dd>
      A two-octet field. Set to 1 for IPv4 numbered, 2 for IPv4 Unnumbered, 3 for IPv6
      numbered, or 4 for IPv6 Unnumbered.</dd>
          </dl>
          <dl newline="true" spacing="normal" indent="3">
            <dt>Upstream Address</dt>
            <dd>
	As defined in <xref target="sect-3.3.4" format="default"/>
            </dd>
          </dl>
        </section>
        <!--
        <section anchor="sect-3.3.8" numbered="true" toc="default">
          <name>Reply-To TLV</name>
          <t>
   The Initiator BFR MAY include Reply-To TLV in the Echo Request.  This
   TLV is used by transit BFR or BFER when the Reply Mode is 2.  The IP
   address will be used to generate the Echo Reply.  This TLV has the
   following format:</t>
   <figure anchor="reply-to-tlv-fig">
   <name>The Reply-To TLV Format</name>
          <artwork name="" type="" align="left" alt=""><![CDATA[
   0                   1                   2                   3
   0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |     TLV Type = 8              |       Length = variable       |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |         Reserved              |          Address Type         |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  |                                                               |
  ~                    Reply-To Address (4 or 16 bytes)           ~
  |                                                               |
  +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
]]></artwork>
</figure>

          <dl newline="false" spacing="normal" indent="3">
          <dt>Length</dt>
          <dd>The Length field varies depending on the Address Type.</dd>
          <dt>Address Type</dt>
          <dd>Set to 1 for IPv4 or 2 for IPv6.</dd>
            <dt>Reply-To Address</dt>
            <dd>
      Set to any locally configured address to which the Echo reply
      should be sent.</dd>
          </dl>
        </section>
        -->
      </section>
      <section anchor="sect-3.4" numbered="true" toc="default">
        <name>Multipath Entropy Data Encoding</name>
        <t>
   The size of the Entropy field in the BIER header is 20 bits, as
   defined in Section 2 of <xref target="RFC8296" format="default"/>.  This encoding is the same as the
   Multipath Type 9 encoding, defined in Section 3.4.1.1.1 of <xref target="RFC8029" format="default"/>.</t>
      </section>
    </section>
    <section anchor="sect-4" numbered="true" toc="default">
      <name>Procedures</name>
      <t>
   This section describes aspects of Ping and traceroute operations.</t>
      <section anchor="sect-4.1" numbered="true" toc="default">
        <name>BIER OAM Processing</name>
        <t>
   A BIER OAM packet MUST be sent to the BIER control plane for OAM
   processing if one of the following conditions is true:</t>
        <ul spacing="normal">
          <li>The receiving BFR is a BFER.</li>
          <li>TTL of BIER-MPLS Label (Section 2.1.1.1 <xref target="RFC8296"/>) expired.</li>
        </ul>
        <t>The use of the Router Alert label to be deprecated as proposed in <xref target="I-D.ietf-mpls-lspping-norao"/>.</t>
      </section>
      <section anchor="sect-4.2" numbered="true" toc="default">
        <name>Per BFER ECMP Discovery</name>
        <t>
   As defined in <xref target="RFC8279" format="default"/>, BIER follows the unicast forwarding path and
   allows load balancing over ECMP paths between BFIR and BFER.  BIER
   OAM is expected to support ECMP path discovery between a BFIR and a given BFER
   and MUST support path validation and failure detection of any
   particular ECMP path between BFIR and BFER.</t>
        <t>
   <xref target="RFC8296" format="default"/> proposes the BIER header with the Entropy field that can be
   leveraged to exercise all ECMP paths.  The Initiator/BFIR will use
   a traceroute message to query each hop about the Entropy information
   for each of the downstream paths.  To avoid complexity, it is
   suggested that the ECMP query is performed per BFER by carrying
   the required information in the BIER OAM message.</t>
        <t>
   The Initiator MUST include Multipath Entropy Data Sub-TLV in
   Downstream Mapping TLV.  It MUST also include the BFER in BitString
   TLV to which the Multipath query is performed.</t>
        <t>
   Any transit BFR will reply with Bit-masked Entropy for each
   downstream path as defined in <xref target="RFC8029" format="default"/></t>
      </section>
      <section anchor="sect-4.3" numbered="true" toc="default">
        <name>Sending BIER Echo Request</name>
        <t>
   The Initiator MUST set the Message Type as 1 and Return Code as 0.
   The Proto field in the OAM packet MUST be set to 0.  The choice of the
   Sender's Handle and Sequence Number is a local matter to the
   Initiator and SHOULD increment the Sequence Number by 1 for every
   subsequent Echo Request.  The QTF field is set to Initiator's local
   timestamp format, and the TimeStamp Sent field is set to the time that the
   Echo Request is sent.</t>
        <t>
   The Initiator MUST include Original SI-BitString TLV.  The Initiator
   MUST NOT include more than one Original SI-BitString TLV.  The
   Initiator infers the Set Identifier value and Sub-domain ID value
   from the respective BitString that will be included in the BIER
   header of the packet and includes the values in "SI" and Sub-Domain ID fields, respectively.</t>
        <t>
   In Ping mode, the Initiator MAY include Target SI-BitString TLV to
   control the responding BFER(s) by listing all the BFERs from which
   the Initiator expects a response.  In the traceroute mode, the
   Initiator MAY include Target SI-BitString TLV to control the path
   trace towards any specific BFER or set of BFERs.  The Initiator on
   receiving a reply with the Return code "Replying BFR is the only BFER in the header BitString"
   or "Replying router is one of the BFERs in header BitString" SHOULD unset the respective BFR-id from
   Target SI-BitString for any subsequent Echo Request.</t>
        <t>
   The Initiator MAY include Downstream Mapping TLV (<xref target="sect-3.3.4"/>) in
   the Echo Request to query additional information from transit BFRs
   and BFERs.  In case of ECMP discovery, the Initiator MUST include the
   Multipath Entropy Data Sub-TLV and SHOULD set the Target SI-BitString
   TLV carrying a specific BFER ID.</t>
        <t>
   The Initiator MUST encapsulate the OAM packet with the BIER header and
   MUST set the Proto as 5 and further encapsulates with BIER-MPLS
   label.  In ping mode, the BIER-MPLS Label TTL MUST be set to 255.  In
   traceroute mode, the BIER-MPLS Label TTL is set successively, starting
   from 1 and MUST stop sending the Echo Request if it receives a reply
   with Return code as "Replying router is the only BFER in BIER header BitString" from all BFER listed in Target SI-BitString TLV.</t>
      </section>
      <section anchor="sect-4.4" numbered="true" toc="default">
        <name>Receiving BIER Echo Request</name>
        <t>
   Sending a BIER OAM Echo Request to control plane for payload
   processing is triggered as mentioned in <xref target="sect-4.1"/>.</t>
        <t>
   Any BFR on receiving Echo Request MUST perform the basic sanity
   check.  If the BFR cannot parse the OAM Dependent data payload
   completely because the value in the OAM Message Length field is
   incorrect, BFR MUST send Echo Reply with Return Code set to
   "Malformed Echo Request received" if the OAM Message Length is
   incorrect.  If the packet sanity check is fine, it SHOULD initiate
   the below set of variables:</t>
        <dl newline="true" spacing="normal" indent="3">
          <dt>Reply-Flag</dt>
          <dd>
	This flag is initially set to 1.
	</dd>
          <dt>Interface-I</dt>
          <dd>
	The incoming interface on which the Echo Request was received.
      This MAY be used to validate the Downstream Detailed
      Mapping TLV (DDMAP) info and populate the Upstream Interface TLV.
	</dd>
          <dt>BIER-Label-L</dt>
          <dd>
	The BIER-MPLS Label received as the top label of the received Echo
      Request.  This MAY be used to validate if the packet is traversing
      the desired Set Identifier and sub-domain path.
	</dd>
          <dt>Header-H</dt>
          <dd>
	The BIER header of the received Echo Request.  It can be used to
      validate the DDMAP info and to populate the Incoming SI-BitString
      TLV.  Also, it can be used to perform entropy calculation
      considering a different field in the header and replying with
      Multipath Entropy Data Sub-TLV.
	</dd>
        </dl>
        <t>
   BFR MUST initialize the Best-return-code variable to the null value.</t>
        <t>
   BFR will populate the Interface-I with the identifier of the
   interface over which the Echo Request is received, the top label in
   the MPLS stack of the received Echo Request to BIER-Label-L, and the
   BIER header to BIER-Header.  If the received Echo Request carries
   Target SI-BitString TLV, a BFR SHOULD run the boolean AND operation
   between BitString in Header-H and BitString in Target SI-BitString
   TLV.  If the resulting BitString is all-zero, reset Reply-Flag=0 and
   go to <xref target="sect-4.5"/>.  Else:</t>
        <ul spacing="normal">
          <li>If the BIER-Label-L does not correspond to the local label
      assigned for {sub-domain, BitStringLen, SI} in Original SI-
      BitString TLV, Set the Best-return-code to "Set-Identifier Mismatch" and Go to <xref target="sect-4.5"/>.</li>
        </ul>
<t>
This step allows the detection of a synchronization problem in the upstream BFR between
BIER-Label and {sub-domain, BitStringLen, SI} that might cause an unintended packet leak between sub-domains.
</t>

        <ul spacing="normal">
          <li>Set the Best-return-code to "One or more of the TLVsis not supported" if any of the TLVs in the Echo Request message is not
      supported.  Go to <xref target="sect-4.5"/>.</li>
          <li>If the BitString in Header-H does not match the BitString in
      Egress BitString Sub-TLV of DDMAP TLV, set the Best-return-code to
      "DDMAP Mismatch" and go to <xref target="sect-4.5"/>.  When there are more than
      one DDMAP TLV in the received Request packet, the Downstream
      Address and Downstream Interface Address should be matched with
      Interface-I to identify the right DDMAP TLV and then perform the
      BitString match.</li>
        </ul>
        <t>
        This step allows the detection of a deviation between the BIER control plane and the BIER
        forwarding plane in the upstream node that may result in a forwarding loop or packet duplication.
        </t>

        <ul spacing="normal">
          <li>Set the Best-return-code to "Invalid Multipath Info Request", when
      the DDMAP TLV carries Multipath Entropy Data Sub-TLV, and if the
      Target SI-BitString TLV in the received Echo Request carries more
      than 1 BFER id.  Go to <xref target="sect-4.5"/>.  Else, list the ECMP
      downstream neighbors to reach BFR-id in Target SI-BitString TLV,
      calculate the Entropy considering the BitString in Header-H and
      Multipath Entropy Data Sub-TLV from received Echo Request.  Store
      the Data for each Downstream interface in a temporary variable.
      Set the Best-return-code to 5 (Packet-Forward-Success) and goto
      <xref target="sect-4.5" format="default"/>
          </li>
        </ul>
        <t>
           This step instructs the node to calculate the Entropy Data for each
      downstream interface to reach the BFER in Target SI-BitString
      TLV by considering the incoming BitString and Entropy Data.
      </t>

        <ul spacing="normal">
          <li>Set the Best-return-code to "Replying router is the only BFER
          in BIER header BitString", and go to <xref target="sect-4.5"/> if the responder is
      BFER and there are no more bits in the BIER header BitString left for
      forwarding.</li>
          <li>Set the Best-return-code to "Replying router is one of the BFERs in BIER header BitString", and include Downstream Mapping TLV if the
      responder is BFER and there are more bits in BitString left for
      forwarding.  Also, include the Multipath information as defined in
      <xref target="sect-4.2" format="default"/> if the received Echo Request carries Multipath Entropy
      Data Sub-TLV.  Go to <xref target="sect-4.5"/>.</li>
          <li>Set the Best-return-code to "No matching entry in the forwarding table", if the forwarding lookup, defined in Section 6.5 of
      <xref target="RFC8279" format="default"/> does not match any entry for the received BitString in
      BIER header.</li>
        </ul>
        <t>
           This step allows the detection of the missing BFR-id in the node's BIER forwarding table.
           It is difficult to detect the absence of the BFR-id if the Request includes more than one BFR-ids in
           the BitString and so may need to include the BFER-id that is not responding to detect such failure.
      </t>

        <ul spacing="normal">
          <li>Set the Best-return-code to "Packet-Forward-Success", and include
      Downstream Mapping TLV.  Go to <xref target="sect-4.5"/>.</li>
        </ul>
      </section>
      <section anchor="sect-4.5" numbered="true" toc="default">
        <name>Sending Echo Reply</name>
        <t>
   If Reply-Flag=0, BFR MUST release the variables and MUST NOT send any
   response to the Initiator.  If Reply-Flag=1, proceed as below:</t>
        <t>
   The Responder BFR SHOULD include the BitString from Header-H to
   Incoming SI-BitString TLV and include the Set ID, Sub-domain ID and
   BS Len that corresponds to BIER-Label-L.  Responder BFR SHOULD
   include the Upstream Interface TLV and populate the address from
   Interface-I.</t>
        <t>
   When the Best-return-code is "Replying BFR is one of the BFERs in header BitString", it MUST include Responder BFER TLV.</t>
        <dl newline="false" spacing="normal" indent="3">
          <dt/>
          <dd>
      If the received Echo Request had DDMAP with Multipath Entropy Data
      Sub-TLV, Responder BFR MUST include DDMAP as defined in
      <xref target="sect-3.3.4" format="default"/> for each outgoing interface over which the packet
      will be replicated and include the respective Multipath Entropy
      Data Sub-TLV.  For each outgoing interface, the respective Egress
      BitString MUST be included in DDMAP TLV.</dd>
        </dl>
        <dl newline="false" spacing="normal" indent="3">
          <dt/>
          <dd>
      If the received Echo Request had DDMAP without Multipath Entropy
      Data Sub-TLV, Responder BFR MUST include DDMAP as defined in
      <xref target="sect-3.3.4" format="default"/> for each outgoing interface over which the packet
      will be replicated.  For each outgoing interface, respective
      Egress BitString MUST be included in DDMAP TLV.</dd>
        </dl>
        <t>
   When the Best-return-code is "Replying BFR is the only BFER in header BitString", it MUST include Responder BFER TLV.</t>
        <t>
   The Responder MUST set the Message Type as 2 and Return Code as Best-
   return-code.  The Proto field MUST be set to 0.</t>
        <t>
   The Echo Reply can be sent as BIER-encapsulated, or IP/UDP
   encapsulated, depending on the Reply Mode in the received Echo Request.
   When the Reply Mode in the received Echo Request is set to 3, Responder
   appends the BIER header listing the BitString with BFIR ID (from Header-
   H), sets the Proto to 5, and sets the BFIR as 0.  When the Reply Mode in
   the received Echo Request is set to 2, Responder encapsulates with the IP/UDP
   header.  The UDP destination port MUST be set to TBD1 (<xref target="iana-udp-port"/>), and the source
   port MAY be set to TBD1 or other value selected from the Dynamic range of port numbers. The source IP
   is any local address of the responder, and the destination IP is derived
   from the BFIR-id of the BIER header <xref target="RFC8296"/> of the received Echo Request.</t>
      </section>
      <section anchor="sect-4.6" numbered="true" toc="default">
        <name>Receiving Echo Reply</name>
        <t>
   The Initiator, upon receiving the Echo Reply, will use the Sender's
   Handle to match with Echo Request sent.  If no match is found, the
   Initiator MUST ignore the Echo Reply.</t>
        <t>
   If receiving Echo Reply has Downstream Mapping, the Initiator SHOULD
   copy the same to subsequent Echo Request(s).</t>
        <t>
   If one of the Echo Reply is received with Return Code as "Replying BFR is one of the BFERs in header BitString", it SHOULD reset the BFR-
   id of the responder from Target SI-BisString TLV in subsequent Echo
   Request. This step helps avoid any BFR that is both BFER and transit BFR to respond with Echo Reply continuously.
   </t>
      </section>
    </section>
    <section anchor="sect-5" numbered="true" toc="default">
      <name>IANA Considerations</name>
        <t>
      The terms used in the IANA Considerations below are intended to be consistent with <xref target="RFC8126"/>.
      </t>
         <section anchor="iana-udp-port" numbered="true" toc="default">
<name>UDP Port Number</name>
      <t>
   This document requests a UDP port TBD1 to be allocated by IANA for
   BIER Echo.</t>
   </section>
   
      <section anchor="sect-5.1" numbered="true" toc="default">
        <name>BIER OAM Parameters</name>
        <t>
   IANA is requested to create and maintain the "BIER OAM Parameters" registry containing the sub-registries listed below.</t>
      </section>
      
       <section anchor="iana-bier-oam-msg-type" numbered="true" toc="default">
        <name>BIER OAM Message Type</name>
        <t>
     IANA is requested to create in the BIER OAM Parameters registry a sub-registry as follows:
    </t>
                    <ul empty="true" spacing="normal">
        <li>Sub-registry Name: BIER OAM Message Type.</li>
        <li>Assignment Policy:</li>
        <li>2-31 IETF Review</li>
        <li>32-62   First Come, First Served</li>
        <li>Reference: [this document]</li>
        </ul>

        <table anchor="iana-sfc-header-type-tbl" align="center">
          <name>BIER OAM Message Type</name>
          <thead>
            <tr>
              <th align="left">Value</th>
              <th align="center">Description</th>
              <th align="left">Reference</th>
            </tr>
          </thead>
          <tbody>
            <tr>
              <td align="left">0</td>
              <td align="center">Reserved</td>
              <td align="left">This document</td>
            </tr>
              <tr>
              <td align="left">1</td>
              <td align="center">BIER Echo Request/Echo Reply</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">2 - 31</td>
              <td align="center">Unassigned</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">32-62</td>
              <td align="center">Unassigned</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">63</td>
              <td align="center">Reserved</td>
              <td align="left">This document</td>
            </tr>
          </tbody>
        </table>
 </section>
 
     <section anchor="iana-echo-ping-parameters" numbered="true" toc="default">
        <name>BIER Echo Request/Echo Reply Parameters</name>
        <t>
  IANA is requested to create in the BIER OAM registry the sub-registry BIER Echo Request/Echo Reply Parameters.
        </t>
       <section anchor="iana-bier-echo-message-type" numbered="true" toc="default">
        <name>BIER Echo Request/Echo Reply Message Types</name>
          <t>
    IANA is requested to create in the BIER Echo Request/Echo Reply
Parameters the BIER Echo Request/Echo Reply Message Types sub-registry as follows:
    </t>
        <ul empty="true" spacing="normal">
        <li>Sub-registry Name: BIER Echo Request/Echo Reply Message Types</li>
        <li>Assignment Policy:</li>
        <li>3 - 175  IETF Review</li>
        <li>176 - 239   First Come, First Served</li>
        <li>Reference: [this document]</li>
        </ul>
        
        <table anchor="iana-bier-msg-type-tbl" align="center">
          <name>BIER Echo Request/Echo Reply Message Types</name>
          <thead>
            <tr>
              <th align="left">Value</th>
              <th align="center">Description</th>
              <th align="left">Reference</th>
            </tr>
          </thead>
          <tbody>
            <tr>
              <td align="left">0</td>
              <td align="center">Reserved</td>
              <td align="left">This document</td>
            </tr>
             <tr>
              <td align="left">1</td>
              <td align="center">BIER Echo Request</td>
              <td align="left">This&nbsp;document</td>
            </tr>
            <tr>
              <td align="left">2</td>
              <td align="center">BIER Echo Reply</td>
              <td align="left">This&nbsp;document</td>
            </tr>

            <tr>
              <td align="left">3 - 175</td>
              <td align="center">Unassigned</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">176 - 239</td>
              <td align="center">Unassigned</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">240 - 251</td>
              <td align="center">Experimental</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">252 - 254</td>
              <td align="center">Private Use</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">255</td>
              <td align="center">Reserved</td>
              <td align="left">This document</td>
            </tr>
          </tbody>
        </table>
      </section>

      <section anchor="iana-bier-ping-reply-mode" numbered="true" toc="default">
        <name>BIER Echo Reply Modes</name>
          <t>
    IANA is requested to create in the BIER Echo Request/Echo Reply
Parameters registry the new sub-registry as follows:
    </t>
        <ul empty="true" spacing="normal">
        <li>Sub-registry Name: BIER Echo Reply Mode</li>
        <li>Assignment Policy:</li>
        <li>8 - 175  IETF Review</li>
        <li>176 - 239   First Come, First Served</li>
        <li>Reference: [this document]</li>
        </ul>
        
        <table anchor="iana-sfc-reply-modes-tbl" align="center">
          <name>SFC Echo Reply Modes</name>
          <thead>
            <tr>
              <th align="left">Value</th>
              <th align="center">Description</th>
              <th align="left">Reference</th>
            </tr>
          </thead>
          <tbody>
            <tr>
              <td align="left">0</td>
              <td align="center">Reserved</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">1</td>
              <td align="center">Do Not Reply</td>
              <td align="left">This&nbsp;document</td>
            </tr>
            <tr>
              <td align="left">2</td>
              <td align="center">Reply via an IPv4/IPv6 UDP Packet</td>
              <td align="left">This&nbsp;document</td>
            </tr>
            <tr>
              <td align="left">3</td>
              <td align="center">Reply via BIER packet</td>
              <td align="left">This&nbsp;document</td>
            </tr>

            <tr>
              <td align="left">4 - 175</td>
              <td align="center">Unassigned</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">176 - 239</td>
              <td align="center">Unassigned</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">240 - 251</td>
              <td align="center">Experiemntal</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">252 - 254</td>
              <td align="center">Private Use</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">255</td>
              <td align="center">Reserved</td>
              <td align="left">This document</td>
            </tr>
          </tbody>
        </table>
      </section>

      <section anchor="iana-bier-ping-return-codes" numbered="true" toc="default">
        <name>BIER Echo Return Codes</name>
   <t>
    IANA is requested to create in the BIER Echo Request/Echo Reply
Parameters registry the new sub-registry as follows:
    </t>
        <ul empty="true" spacing="normal">
        <li>Sub-registry Name: BIER Echo Return Codes</li>
        <li>Assignment Policy:</li>
        <li>9 - 191  IETF Review</li>
        <li>192 - 251   First Come, First Served</li>
        <li>Reference: [this document]</li>
        </ul>
        
        <table anchor="iana-bier-ping-return-codes-tbl" align="center">
          <name>BIER Echo Return Codes</name>
          <thead>
            <tr>
              <th align="left">Value</th>
              <th align="center">Description</th>
              <th align="left">Reference</th>
            </tr>
          </thead>
          <tbody>
            <tr>
              <td align="left">0</td>
              <td align="center">No Return Code</td>
              <td align="left">This document</td>
            </tr>
                     <tr>
              <td align="left">1</td>
              <td align="center">Malformed Echo Request received</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">2</td>
              <td align="center">One or more of the TLVs is not supported</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">3</td>
              <td align="center">Replying BFR is the only BFER in header BitString</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">4</td>
              <td align="center">Replying BFR is one of the BFERs in header BitString</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">5</td>
              <td align="center">Packet-Forward-Success</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">6&nbsp;</td>
              <td align="left">Invalid Multipath Info Request</td>
              <td align="left">This&nbsp;document</td>
            </tr>
              <tr>
              <td align="left">7</td>
              <td align="center">Unassigned</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">8&nbsp;</td>
              <td align="left">No matching entry in the forwarding table</td>
              <td align="left">This&nbsp;document</td>
            </tr>
            <tr>
              <td align="left">9&nbsp;</td>
              <td align="left">Set-Identifier Mismatch</td>
              <td align="left">This&nbsp;document</td>
            </tr>
            <tr>
              <td align="left">10&nbsp;</td>
              <td align="left">DDMAP Mismatch</td>
              <td align="left">This&nbsp;document</td>
            </tr>
            <tr>
              <td align="left">11 - 191</td>
              <td align="center">Unassigned</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">192-251</td>
              <td align="center">Unassigned</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">252-254</td>
              <td align="center">Private Use</td>
              <td align="left">This document</td>
            </tr>
            <tr>
              <td align="left">255</td>
              <td align="center">Reserved</td>
              <td align="left">This document</td>
            </tr>
          </tbody>
        </table>

      </section>
      </section>
      
      <section anchor="sect-5.3" numbered="true" toc="default">
        <name>TLVs</name>
        <t>
           IANA is requested to create in the BIER OAM registry a sub-registry for the Type field
           of top-level TLVs as well as for any associated sub-TLVs.  Note that the
   meaning of a sub-TLV is scoped by the TLV.  The number of spaces for the
   sub-TLVs of various TLVs is independent.
</t>
<t>
   The valid range for TLVs and sub-TLVs is 0-65535.  Assignments in the
   ranges 0-16383 and 32768-49161 are made via Standards Action as
   defined in <xref target="RFC8126"/>; assignments in the ranges 16384-31743 and
   49162-64511 are made via "Specification Required"; values in the
   ranges 31744-32767 and 64512-65535 are for Private Use and
   MUST NOT be allocated.
</t>
<t>
   If a TLV or sub-TLV has a Type that falls in the range of
   Private Use, the Length MUST be at least 4, and the first four octets
   MUST be an SMI Private Enterprise Number that identifies the user, in network octet
   order.  The rest of the Value field is private to the user.
   </t>
        <t>
   The TLVs and Sub-TLVs defined in this document are not limited to Echo
   Request or Reply message types are applicable to other message
   types.  The TLVs and Sub-TLVs requested by this document for the IANA
   consideration are the following:</t>
        <artwork name="" type="" align="left" alt=""><![CDATA[
          Type        Sub-Type            Value Field
        -------      --------            -----------
          1                               Original SI-BitString
          2                               Target SI-BitString
          3                               Incoming SI-BitString
          4                               Downstream Mapping
          4              1                Multipath Entropy Data
          4              2                Egress BitString
          5                               Responder BFER
          6                               Responder BFR
          7                               Upstream Interface
]]></artwork>
</section>
      </section>

    <section anchor="sect-6" numbered="true" toc="default">
      <name>Security Considerations</name>
      <t>
   The security consideration for BIER Ping is similar to ICMP  <xref target="RFC0792"/> or LSP
   Ping <xref target="RFC8029"/>, <xref target="RFC6425"/>.  As with ICMP or LSP Ping, BFR
   can be exposed to Denial-of-Service (DoS) attacks, and it is RECOMMENDED to regulate the BIER
   Ping packet flow to the control plane.  A rate limiter SHOULD be
   applied to avoid any attack. Although using BIER Echo Request in a DoS amplification attack is
   theoretically possible, spoofing BFIR ID in the BIER Header presents itself as a serious challenge.
   As a result, this threat is not a big concern.</t>
      <t>
   As with ICMP or LSP Ping, a traceroute can be used to obtain network
   information.  It is RECOMMENDED that the implementation checks the
   integrity of BFIR of the Echo messages against any locally secured list
   before processing the message further.</t>
    </section>
    <section anchor="sect-7" numbered="true" toc="default">
      <name>Acknowledgement</name>
      <t>
   The authors would like to thank Antoni Przygienda, Eric Rosen, Faisal
   Iqbal, Jeffrey (Zhaohui) Zhang, and Shell Nakash for their review and
   comments.</t>
      <t>
   The authors would like to thank Mankamana Mishra for his thorough
   review and comments.</t>
    </section>
  </middle>

  <back>
    <references>
      <name>References</name>
      <references>
        <name>Normative References</name>
      <xi:include href="https://xml2rfc.ietf.org/public/rfc/bibxml/reference.RFC.2119.xml"/>
      <xi:include href="https://xml2rfc.ietf.org/public/rfc/bibxml/reference.RFC.8174.xml"/>
      <xi:include href="https://xml2rfc.ietf.org/public/rfc/bibxml/reference.RFC.5905.xml"/>
      <xi:include href="https://xml2rfc.ietf.org/public/rfc/bibxml/reference.RFC.8029.xml"/>
      <xi:include href="https://xml2rfc.ietf.org/public/rfc/bibxml/reference.RFC.8279.xml"/>
      <xi:include href="https://xml2rfc.ietf.org/public/rfc/bibxml/reference.RFC.8296.xml"/>
      <xi:include href="https://xml2rfc.ietf.org/public/rfc/bibxml/reference.RFC.6425.xml"/>
       <xi:include href="https://xml2rfc.ietf.org/public/rfc/bibxml/reference.RFC.8126.xml"/>
<reference anchor="IEEE.1588.2008">
<front>
<title>Standard for a Precision Clock Synchronization Protocol for Networked Measurement and Control Systems</title>
<author>
<organization/>
</author>
<date month="March" year="2008"/>
</front>
<seriesInfo name="IEEE" value="Standard 1588"/>
</reference> 

      </references>
      
      <references>
        <name>Informative References</name>
      <xi:include href="https://xml2rfc.ietf.org/public/rfc/bibxml/reference.RFC.0792.xml"/>
      <xi:include href="https://xml2rfc.ietf.org/public/rfc/bibxml/reference.RFC.7799.xml"/>
      <xi:include href="https://datatracker.ietf.org/doc/bibxml3/draft-ietf-mpls-lspping-norao.xml"/>
      </references>
    </references>
    
    <section anchor="contr-sec" numbered="false" toc="default">
        <name>Contributors' Addresses</name>
    <author initials="N." surname="Akiya" fullname="Nobo Akiya">
      <organization>Big Switch Networks</organization>
      <address>
        <postal>
          <street>Japan</street>
        </postal>
        <email>nobo.akiya.dev@gmail.com</email>
      </address>
    </author>
    <author initials="L." surname="Zheng" fullname="Lianshu Zheng">
      <organization>Individual Contributor</organization>
      <address>
        <postal>
          <street>China</street>
        </postal>
        <email>veronique_cheng@hotmail.com</email>
      </address>
    </author>
 </section>
  </back>
</rfc>
