<?xml version='1.0' encoding='utf-8'?>
<!DOCTYPE rfc [
  <!ENTITY nbsp    "&#160;">
  <!ENTITY zwsp   "&#8203;">
  <!ENTITY nbhy   "&#8209;">
  <!ENTITY wj     "&#8288;">
]>
<?xml-stylesheet type="text/xsl" href="rfc2629.xslt" ?>
<!-- generated by https://github.com/cabo/kramdown-rfc version 1.7.35 (Ruby 3.4.9) -->
<rfc xmlns:xi="http://www.w3.org/2001/XInclude" ipr="trust200902" docName="draft-dekater-scion-dataplane-14" category="info" submissionType="independent" tocInclude="true" sortRefs="true" symRefs="true" version="3">
  <!-- xml2rfc v2v3 conversion 3.32.0 -->
  <front>
    <title abbrev="SCION DP">SCION Data Plane</title>
    <seriesInfo name="Internet-Draft" value="draft-dekater-scion-dataplane-14"/>
    <author initials="C." surname="de Kater" fullname="Corine de Kater">
      <organization>Independent</organization>
      <address>
        <email>c_de_kater@gmx.ch</email>
      </address>
    </author>
    <author initials="N." surname="Rustignoli" fullname="Nicola Rustignoli">
      <organization>SCION Association</organization>
      <address>
        <email>nic@scion.org</email>
      </address>
    </author>
    <author initials="J. C." surname="Hugly" fullname="Jean-Christophe Hugly">
      <organization>Independent</organization>
      <address>
        <email>jice@vwaty.com</email>
      </address>
    </author>
    <author initials="S." surname="Hitz" fullname="Samuel Hitz">
      <organization>Anapaya Systems</organization>
      <address>
        <email>hitz@anapaya.net</email>
      </address>
    </author>
    <date year="2026" month="April" day="07"/>
    <keyword>Internet-Draft</keyword>
    <abstract>
      <?line 226?>

<t>This document describes the Data Plane of SCION (Scalability, Control, and Isolation On Next-generation networks), a path-aware, inter-domain network architecture.</t>
      <t>Unlike IP-based forwarding, SCION embeds inter-domain forwarding directives in the packet header, enabling endpoints to construct and select end-to-end paths from segments discovered by the Control Plane. The role of the Data Plane is to combine such segments into end-to-end paths, and to forward data according to the specified path.</t>
      <t>This document describes the SCION packet format, header structure, and extension headers. It also describes the cryptographic mechanisms used for path authorization, processing at routers including a life of a packet example.</t>
      <t>This document contains new approaches to secure path aware networking. It is not an Internet Standard, has not received any formal review of the IETF, nor was the work developed through the rough consensus process. The approaches offered in this work are offered to the community for its consideration in the further evolution of the Internet.</t>
    </abstract>
    <note removeInRFC="true">
      <name>About This Document</name>
      <t>
        The latest revision of this draft can be found at <eref target="https://scionassociation.github.io/scion-dp_I-D/draft-dekater-scion-dataplane.html"/>.
        Status information for this document may be found at <eref target="https://datatracker.ietf.org/doc/draft-dekater-scion-dataplane/"/>.
      </t>
      <t>Source for this draft and an issue tracker can be found at
        <eref target="https://github.com/scionassociation/scion-dp_I-D"/>.</t>
    </note>
  </front>
  <middle>
    <?line 236?>

<section anchor="introduction">
      <name>Introduction</name>
      <t>SCION is a path-aware internetworking routing architecture as described in <xref target="RFC9217"/>. A more detailed introduction, motivation, and problem statement are provided in <xref target="I-D.dekater-scion-controlplane"/>. Readers are encouraged to read the introduction in that document first.</t>
      <t>SCION relies on three main components:</t>
      <t><em>PKI</em> - providing cryptographic material within an unique trust model. It is described in <xref target="I-D.dekater-scion-pki"/>.</t>
      <t><em>Control Plane</em> - performing inter-domain routing by discovering and securely disseminating path information. It is described in <xref target="I-D.dekater-scion-controlplane"/>.</t>
      <t><em>Data Plane</em> - carrying out secure packet forwarding between SCION-enabled ASes over paths selected by endpoints. It is described in this document.</t>
      <section anchor="terms">
        <name>Terminology</name>
        <t><strong>SCION Autonomous System (AS)</strong>: A SCION Autonomous System is a network under a common administrative control. For example, the network of a SCION service provider, company, or university can constitute an AS. While functionally similar to a BGP AS, a SCION AS operates within an Isolation Domain (ISD), utilizes a different address scheme, and serves as a locator in the addressing of end hosts. References to ASes throughout this document refer to SCION ASes.</t>
        <t><strong>Core AS</strong>: Each Isolation Domain (ISD) is administered by a set of distinguished SCION autonomous systems (ASes) called core ASes, which are responsible for initiating the path discovery and path construction process (called "beaconing" in SCION).</t>
        <t><strong>Data Plane</strong>: The data plane (sometimes also referred to as the forwarding plane) is responsible for forwarding data packets that endpoints have injected into the network. After routing information has been disseminated by the control plane, packets are forwarded by the data plane in accordance with such information.</t>
        <t><strong>Egress/Ingress</strong>: Refers to the direction of travel. In SCION, path construction with beaconing happens in one direction, while actual traffic might follow the opposite direction. This document clarifies on a case-by-case basis whether 'egress' or 'ingress' refers to the direction of travel of the SCION packet or to the direction of beaconing.</t>
        <t><strong>Endpoint</strong>: An endpoint is the start or the end of a SCION path, as defined in <xref target="RFC9473"/>.</t>
        <t><strong>Forwarding Key</strong>: A symmetric key that is shared between the control service (control plane) and the routers (data plane) of an AS. It authenticates Hop Fields in the end-to-end SCION path. The forwarding key is an AS-local secret and is not shared with other ASes.</t>
        <t><strong>Forwarding Path</strong>: A complete end-to-end path between two SCION endpoints which is used to transmit packets in the data plane. Endpoints can create one with a combination of up to three path segments (an up segment, a core segment, and a down segment).</t>
        <t><strong>Hop Field (HF)</strong>: As they traverse the network, Path-Segment Construction Beacons (PCBs) accumulate cryptographically protected AS-level path information in the form of Hop Fields. In the data plane, Hop Fields are used for packet forwarding: they contain the incoming and outgoing Interface IDs of the ASes on the forwarding path.</t>
        <t><strong>Info Field (INF)</strong>: Each Path-Segment Construction Beacon (PCB) contains a single Info field, which provides basic information about the PCB. Together with Hop Fields (HFs), these are used to create forwarding paths.</t>
        <t><strong>Interface Identifier (Interface ID)</strong>: A 16-bit identifier that designates a SCION interface at the end of a link connecting two SCION ASes, with each interface belonging to one border router. Hop fields describe the traversal of an AS by a pair of Interface IDs called <tt>ConsIngress</tt> and <tt>ConsEgress</tt> as they refer to the ingress and egress interfaces in the direction of path construction (beaconing). Each Interface ID <bcp14>MUST</bcp14> be unique within each AS. 0 is a reserved value that indicates the lack of an Interface ID and is used as the unspecified Interface ID (see <xref target="onehop"/>).</t>
        <t><strong>Isolation Domain (ISD)</strong>: SCION ASes are organized into logical groups called Isolation Domains or ISDs. Each ISD consists of ASes that span an area with a uniform trust environment (e.g., a common jurisdiction).</t>
        <t><strong>Message Authentication Code (MAC)</strong>: In the rest of this document, "MAC" always refers to "Message Authentication Code" and never to "Medium Access Control". When "Medium Access Control address" is implied, the phrase "Link Layer Address" is used.</t>
        <t><strong>Path Authorization</strong>: A requirement for the data plane is that endpoints can only use paths that were constructed and authorized by ASes in the control plane. The goal of path authorization is to prevent endpoints from crafting Hop Fields (HFs) themselves, modifying HFs in authorized path segments, or combining HFs of different path segments.</t>
        <t><strong>Path Control</strong>: The property of a network architecture that gives endpoints the ability to select how their packets travel through the network. Path control is stronger than path transparency.</t>
        <t><strong>Path Segment</strong>: These are derived from Path-Segment Construction Beacons (PCBs). A path segment can be (1) an up segment (i.e., a path between a non-core AS and a core AS in the same ISD), (2) a down segment (i.e., the same as an up segment, but in the opposite direction), or (3) a core segment (i.e., a path between core ASes). Endpoints use up to three path segments to create a forwarding path.</t>
        <t><strong>Path-Segment Construction Beacon (PCB)</strong>: Core AS control planes generate PCBs to explore paths within their isolation domain (ISD) and between different ISDs. ASes further propagate selected PCBs to their neighboring ASes. These PCBs traverse each AS accumulating information, including Hop Fields (HFs) which can subsequently be used for traffic forwarding.</t>
        <t><strong>Path Transparency</strong>: This is a property of a network architecture that gives endpoints full visibility over the network paths their packets are taking. Path transparency is weaker than path control.</t>
        <t><strong>Peering Link</strong>: A link between two SCION border routers of different ASes that can be used as a shortcut. Peering link information is added to segment information during the intra-ISD beaconing process and used to shorten paths while assembling them from segments. It is possible to construct a path out of only two partial segments whose top-most hops are joined by a peering link. Two peering ASes may be in different ISDs and may each be core or non-core.</t>
        <t><strong>SCION Control Message Protocol (SCMP)</strong>: A signaling protocol analogous to the Internet Control Message Protocol (ICMP), as described in <xref target="I-D.dekater-scion-controlplane"/>.</t>
      </section>
      <section anchor="conventions-and-definitions">
        <name>Conventions and Definitions</name>
        <t>The key words "<bcp14>MUST</bcp14>", "<bcp14>MUST NOT</bcp14>", "<bcp14>REQUIRED</bcp14>", "<bcp14>SHALL</bcp14>", "<bcp14>SHALL
NOT</bcp14>", "<bcp14>SHOULD</bcp14>", "<bcp14>SHOULD NOT</bcp14>", "<bcp14>RECOMMENDED</bcp14>", "<bcp14>NOT RECOMMENDED</bcp14>",
"<bcp14>MAY</bcp14>", and "<bcp14>OPTIONAL</bcp14>" in this document are to be interpreted as
described in BCP 14 <xref target="RFC2119"/> <xref target="RFC8174"/> when, and only when, they
appear in all capitals, as shown here.</t>
        <?line -18?>

</section>
      <section anchor="overview">
        <name>Overview</name>
        <t>The SCION Data Plane forwards inter-domain packets between SCION ASes. SCION routers are normally deployed at the edge of an AS and peer with neighboring SCION routers. Inter-domain forwarding is based on end-to-end path information contained in the packet header, which consists of a sequence of Hop Fields (HFs). Each Hop Field corresponds to an AS on the path, and it includes an ingress Interface ID as well as an egress Interface ID which unequivocally identifies the ingress and egress interfaces within the AS. The information is authenticated with a Message Authentication Code (MAC) to prevent forgery.</t>
        <t>This concept allows SCION routers to forward packets to a neighbor AS without inspecting the destination address and also without consulting an inter-domain forwarding table, removing the need for specialized hardware. A SCION border router reuses existing intra-domain infrastructure (e.g., IP) to communicate to other SCION routers or SCION endpoints within its AS. The last SCION router at the destination AS uses the destination address to forward the packet to the appropriate local endpoint.</t>
        <section anchor="inter-and-intra-domain-forwarding">
          <name>Inter- and Intra-Domain Forwarding</name>
          <t>As SCION is an inter-domain network architecture, it is not concerned with intra-domain forwarding. This corresponds to the general practice today where BGP and IP are used for inter-domain routing and forwarding respectively, but ASes use an intra-domain protocol of their choice - e.g., OSPF or IS-IS for routing, and IP, MPLS, and various Layer 2 protocols for forwarding. In fact, even if ASes use IP forwarding internally, they typically encapsulate the original IP packet they receive at the edge of their network into another IP packet with the destination address set to the egress border router, in order to avoid full inter-domain forwarding tables on internal routers.</t>
          <t>SCION emphasizes this separation as it is used exclusively for inter-domain forwarding; reusing the intra-domain network fabric to provide connectivity amongst all SCION infrastructure services, border routers, and endpoints. As a consequence, minimal change to the infrastructure is required for ISPs when deploying SCION.</t>
          <t>In practice, in most existing SCION deployments the SCION routers communicate amongst themselves and with endpoints by enclosing the SCION header inside an UDP/IPv6 or UDP/IPv4 packet. The choice of using an UDP/IP as an intra-domain protocol between routers was driven by the need to maximize compatibility with existing networks. This does not exclude that a SCION packet may be enclosed directly on top of a Layer 2 protocol, since the choice of intra-domain protocol is AS-specific.</t>
          <t><xref target="_figure-30"/> shows the SCION header within the protocol stack, in an AS where the SCION deployment uses UDP/IP as an intra-domain protocol. A similar model may be used for inter-domain links, depending on the individual choice of the two interconnected SCION router operators. A full example of the life of a SCION packet is presented in <xref target="life-of-a-packet"/>. A list of currently used upper layer protocols on top of SCION is presented in <xref target="protnum"/>.</t>
          <figure anchor="_figure-30">
            <name>The SCION header within the protocol stack in a typical deployment</name>
            <artset>
              <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="320" width="392" viewBox="0 0 392 320" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                  <path d="M 8,32 L 8,304" fill="none" stroke="black"/>
                  <path d="M 248,32 L 248,304" fill="none" stroke="black"/>
                  <path d="M 280,208 L 280,304" fill="none" stroke="black"/>
                  <path d="M 8,32 L 248,32" fill="none" stroke="black"/>
                  <path d="M 8,144 L 248,144" fill="none" stroke="black"/>
                  <path d="M 8,208 L 248,208" fill="none" stroke="black"/>
                  <path d="M 264,208 L 280,208" fill="none" stroke="black"/>
                  <path d="M 8,240 L 248,240" fill="none" stroke="black"/>
                  <path d="M 8,272 L 248,272" fill="none" stroke="black"/>
                  <path d="M 8,304 L 248,304" fill="none" stroke="black"/>
                  <path d="M 264,304 L 280,304" fill="none" stroke="black"/>
                  <polygon class="arrowhead" points="272,304 260,298.4 260,309.6" fill="black" transform="rotate(180,264,304)"/>
                  <polygon class="arrowhead" points="272,208 260,202.4 260,213.6" fill="black" transform="rotate(180,264,208)"/>
                  <g class="text">
                    <text x="104" y="84">Payload</text>
                    <text x="156" y="84">(L4)</text>
                    <text x="128" y="180">SCION</text>
                    <text x="128" y="228">UDP</text>
                    <text x="340" y="244">Intra-domain</text>
                    <text x="124" y="260">IP</text>
                    <text x="332" y="260">protocol</text>
                    <text x="100" y="292">Link</text>
                    <text x="144" y="292">Layer</text>
                  </g>
                </svg>
              </artwork>
              <artwork type="ascii-art"><![CDATA[
+-----------------------------+
|                             |
|                             |
|        Payload (L4)         |
|                             |
|                             |
|                             |
+-----------------------------+
|                             |
|            SCION            |
|                             |
+-----------------------------+ <-+
|             UDP             |   |
+-----------------------------+   | Intra-domain
|             IP              |   |  protocol
+-----------------------------+   |
|         Link Layer          |   |
+-----------------------------+ <-+
]]></artwork>
            </artset>
          </figure>
          <t>A complete SCION address is composed of the &lt;ISD, AS, endpoint address&gt; 3-tuple. The ISD-AS part is used for inter-domain routing, whilst the endpoint address part is only used for intra-domain forwarding at the destination AS. This implies that endpoint addresses are only required to be unique within a SCION AS. An endpoint running a SCION stack using a <xref target="RFC1918"/> endpoint address could therefore directly communicate with another SCION endpoint using a <xref target="RFC1918"/> endpoint address in a different SCION AS.</t>
          <t>The data transmission order for SCION is the same as for IPv6 as defined in Introduction of <xref target="RFC8200"/>.</t>
        </section>
        <section anchor="intra-domain-forwarding">
          <name>Intra-Domain Forwarding Process</name>
          <t>SCION routers within the source AS receive outbound traffic from local endpoints. The mechanisms used to configure these endpoints with the router's address and port, particularly when utilizing a UDP/IP underlay, are beyond the scope of this document.</t>
          <t>When transiting an intermediate SCION AS, a packet gets forwarded by at most two SCION routers. The forwarding process consists of the following steps.</t>
          <ol spacing="normal" type="1"><li>
              <t>The AS's SCION ingress router receives a SCION packet from the neighboring AS.</t>
            </li>
            <li>
              <t>The SCION router parses, validates, and authenticates the SCION header.</t>
            </li>
            <li>
              <t>The SCION router maps the egress Interface ID in the current Hop Field of the SCION header to the destination address of the intra-domain protocol (e.g., MPLS or IP) of the egress border router.</t>
            </li>
            <li>
              <t>The packet is forwarded within the AS by SCION-unaware routers and switches based on the header of the intra-domain protocol.</t>
            </li>
            <li>
              <t>Upon receiving the packet, the SCION egress router strips off the header of the intra-domain protocol, again validates and updates the SCION header, and forwards the packet to the neighboring SCION router.</t>
            </li>
          </ol>
          <t>In the destination AS, the SCION ingress router forwards the packet to the packet's destination endpoint indicated by the field <tt>DstHostAddr</tt> of <xref target="address-header">the Address Header</xref>.
The encapsulation and forwarding behavior of SCION packets over a UDP/IP underlay are detailed in <xref target="SCION-UDP"/>.</t>
        </section>
        <section anchor="configuration">
          <name>Configuration</name>
          <t>Border routers require mappings from SCION Interface IDs to underlay addresses and such information <bcp14>MUST</bcp14> be supplied to each router in an out of band fashion (e.g in a configuration file). For each link to a neighbor, these values <bcp14>MUST</bcp14> be configured. A typical implementation will require:</t>
          <ul spacing="normal">
            <li>
              <t>Interface ID.</t>
            </li>
            <li>
              <t>Link type (core, parent, child, peer). Link type depends on mutual agreements between the organizations operating the ASes at each end of each link.</t>
            </li>
            <li>
              <t>Neighbor ISD-AS number.</t>
            </li>
            <li>
              <t>Neighbor interface's underlay address.</t>
            </li>
            <li>
              <t>For intra-domain forwarding: mapping of the AS interface IDs to intra-domain protocol address of the corresponding routers.</t>
            </li>
            <li>
              <t>The algorithm used to compute the <xref target="hf-mac-overview">Hop Field MAC</xref> and forwarding key, which must be the same as that used by the Control Services within the AS.</t>
            </li>
          </ul>
          <t>In order to forward traffic to a service endpoint address (<tt>DT/DS</tt> as per <xref target="_table-3"/>), a border router translates the service number (<xref target="_table-4"/>) into a specific destination address. The method used to accomplish the translation is not defined by this document and is only dependent on the implementation and the choices of each AS's administrator. In current practice this is accomplished by way of a configuration file.</t>
          <t>In addition, routers require coarse time synchronization with control plane instances (see <xref target="clock-inaccuracy"/>).</t>
          <t>The current SCION implementation runs over the UDP/IP protocol, although the use of other lower layers protocols is possible.</t>
        </section>
      </section>
      <section anchor="construction">
        <name>Path Construction (Segment Combinations)</name>
        <t>Paths are discovered by the Control Plane which makes them available to SCION endpoints in the form of path segments. As described in <xref target="I-D.dekater-scion-controlplane"/>, there are three kinds of path segments: up, down, and core.</t>
        <t>In the data plane, a SCION endpoint creates end-to-end paths from the path segments by combining multiple path segments. Depending on the network topology, a SCION forwarding path consists of at least one and up to three segments. Each path segment contains several Hop Fields representing the ASes on the segment as well as one Info Field with basic information about the segment - e.g., a timestamp.</t>
        <t>Segments cannot be combined arbitrarily. To construct a valid forwarding path, the source endpoint <bcp14>MUST</bcp14> obey the following rules:</t>
        <ul spacing="normal">
          <li>
            <t>There <bcp14>MUST</bcp14> be at most one of each type of segment (up, core, and down). Allowing multiple up or down segments would decrease efficiency and the ability of ASes to enforce path policies.</t>
          </li>
          <li>
            <t>If an up segment is present, it <bcp14>MUST</bcp14> be the first segment in the path.</t>
          </li>
          <li>
            <t>If a down segment is present, it <bcp14>MUST</bcp14> be the last segment in the path.</t>
          </li>
          <li>
            <t>If there are two path segments (one up and one down segment) that both announce the same peering link, then a shortcut via this peering link is possible.</t>
          </li>
          <li>
            <t>If there are two path segments (one up and one down segment) that share a common ancestor AS (in the direction of beaconing), then a shortcut via this common ancestor AS is possible. The up-then-down constraint still applies.</t>
          </li>
          <li>
            <t>Additionally, all segments without any peering possibility <bcp14>MUST</bcp14> consist of at least two Hop Fields.</t>
          </li>
        </ul>
        <t>Note that the type of segment is known to the endpoint but it is not explicitly visible in the path header of data packets. Therefore, a SCION router needs to explicitly verify that these rules were followed correctly by performing checks described in <xref target="process-router-ingress"/>.</t>
        <t>Besides enabling the enforcement of path policies, the above rules also protect the economic interest of ASes as they prevent building "valley paths". A valley path contains ASes that do not profit economically from traffic on this route, with the name coming from the fact that such paths go "down" (following parent-child links) before going "up" (following child-parent links).</t>
        <t><xref target="_figure-1"/> and <xref target="_figure-1bis"/> show valid segment combinations with each node representing a SCION AS. It is assumed that the source and destination endpoints are in different ASes (as endpoints from the same AS use an empty forwarding path to communicate with each other).</t>
        <figure anchor="_figure-1">
          <name>Illustration of valid path segment combinations through multiple core ASes.</name>
          <artset>
            <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="432" width="560" viewBox="0 0 560 432" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                <path d="M 8,208 L 8,400" fill="none" stroke="black"/>
                <path d="M 16,32 L 16,64" fill="none" stroke="black"/>
                <path d="M 16,96 L 16,128" fill="none" stroke="black"/>
                <path d="M 40,192 L 40,224" fill="none" stroke="black"/>
                <path d="M 40,288 L 40,320" fill="none" stroke="black"/>
                <path d="M 40,384 L 40,416" fill="none" stroke="black"/>
                <path d="M 48,32 L 48,64" fill="none" stroke="black"/>
                <path d="M 48,96 L 48,128" fill="none" stroke="black"/>
                <path d="M 56,224 L 56,288" fill="none" stroke="black"/>
                <path d="M 56,320 L 56,384" fill="none" stroke="black"/>
                <path d="M 72,192 L 72,224" fill="none" stroke="black"/>
                <path d="M 72,288 L 72,320" fill="none" stroke="black"/>
                <path d="M 72,384 L 72,416" fill="none" stroke="black"/>
                <path d="M 120,192 L 120,224" fill="none" stroke="black"/>
                <path d="M 120,288 L 120,320" fill="none" stroke="black"/>
                <path d="M 120,384 L 120,416" fill="none" stroke="black"/>
                <path d="M 136,224 L 136,288" fill="none" stroke="black"/>
                <path d="M 136,320 L 136,384" fill="none" stroke="black"/>
                <path d="M 152,192 L 152,224" fill="none" stroke="black"/>
                <path d="M 152,288 L 152,320" fill="none" stroke="black"/>
                <path d="M 152,384 L 152,416" fill="none" stroke="black"/>
                <path d="M 248,192 L 248,224" fill="none" stroke="black"/>
                <path d="M 248,288 L 248,320" fill="none" stroke="black"/>
                <path d="M 248,384 L 248,416" fill="none" stroke="black"/>
                <path d="M 264,224 L 264,288" fill="none" stroke="black"/>
                <path d="M 264,320 L 264,384" fill="none" stroke="black"/>
                <path d="M 280,192 L 280,224" fill="none" stroke="black"/>
                <path d="M 280,288 L 280,320" fill="none" stroke="black"/>
                <path d="M 280,384 L 280,416" fill="none" stroke="black"/>
                <path d="M 328,192 L 328,224" fill="none" stroke="black"/>
                <path d="M 360,192 L 360,224" fill="none" stroke="black"/>
                <path d="M 408,384 L 408,416" fill="none" stroke="black"/>
                <path d="M 424,192 L 424,224" fill="none" stroke="black"/>
                <path d="M 424,336 L 424,384" fill="none" stroke="black"/>
                <path d="M 440,384 L 440,416" fill="none" stroke="black"/>
                <path d="M 456,192 L 456,224" fill="none" stroke="black"/>
                <path d="M 464,320 L 464,352" fill="none" stroke="black"/>
                <path d="M 496,320 L 496,352" fill="none" stroke="black"/>
                <path d="M 504,192 L 504,224" fill="none" stroke="black"/>
                <path d="M 520,384 L 520,416" fill="none" stroke="black"/>
                <path d="M 536,192 L 536,224" fill="none" stroke="black"/>
                <path d="M 536,336 L 536,384" fill="none" stroke="black"/>
                <path d="M 552,384 L 552,416" fill="none" stroke="black"/>
                <path d="M 16,32 L 48,32" fill="none" stroke="black"/>
                <path d="M 16,64 L 48,64" fill="none" stroke="black"/>
                <path d="M 288,80 L 304,80" fill="none" stroke="black"/>
                <path d="M 16,96 L 48,96" fill="none" stroke="black"/>
                <path d="M 280,112 L 328,112" fill="none" stroke="black"/>
                <path d="M 16,128 L 48,128" fill="none" stroke="black"/>
                <path d="M 56,176 L 136,176" fill="none" stroke="black"/>
                <path d="M 264,176 L 344,176" fill="none" stroke="black"/>
                <path d="M 440,176 L 520,176" fill="none" stroke="black"/>
                <path d="M 40,192 L 72,192" fill="none" stroke="black"/>
                <path d="M 120,192 L 152,192" fill="none" stroke="black"/>
                <path d="M 248,192 L 280,192" fill="none" stroke="black"/>
                <path d="M 328,192 L 360,192" fill="none" stroke="black"/>
                <path d="M 424,192 L 456,192" fill="none" stroke="black"/>
                <path d="M 504,192 L 536,192" fill="none" stroke="black"/>
                <path d="M 72,208 L 120,208" fill="none" stroke="black"/>
                <path d="M 280,208 L 328,208" fill="none" stroke="black"/>
                <path d="M 456,208 L 504,208" fill="none" stroke="black"/>
                <path d="M 40,224 L 72,224" fill="none" stroke="black"/>
                <path d="M 120,224 L 152,224" fill="none" stroke="black"/>
                <path d="M 248,224 L 280,224" fill="none" stroke="black"/>
                <path d="M 328,224 L 360,224" fill="none" stroke="black"/>
                <path d="M 424,224 L 456,224" fill="none" stroke="black"/>
                <path d="M 504,224 L 536,224" fill="none" stroke="black"/>
                <path d="M 40,288 L 72,288" fill="none" stroke="black"/>
                <path d="M 120,288 L 152,288" fill="none" stroke="black"/>
                <path d="M 248,288 L 280,288" fill="none" stroke="black"/>
                <path d="M 424,304 L 536,304" fill="none" stroke="black"/>
                <path d="M 40,320 L 72,320" fill="none" stroke="black"/>
                <path d="M 120,320 L 152,320" fill="none" stroke="black"/>
                <path d="M 248,320 L 280,320" fill="none" stroke="black"/>
                <path d="M 464,320 L 496,320" fill="none" stroke="black"/>
                <path d="M 424,336 L 464,336" fill="none" stroke="black"/>
                <path d="M 496,336 L 536,336" fill="none" stroke="black"/>
                <path d="M 464,352 L 496,352" fill="none" stroke="black"/>
                <path d="M 40,384 L 72,384" fill="none" stroke="black"/>
                <path d="M 120,384 L 152,384" fill="none" stroke="black"/>
                <path d="M 248,384 L 280,384" fill="none" stroke="black"/>
                <path d="M 408,384 L 440,384" fill="none" stroke="black"/>
                <path d="M 520,384 L 552,384" fill="none" stroke="black"/>
                <path d="M 40,416 L 72,416" fill="none" stroke="black"/>
                <path d="M 120,416 L 152,416" fill="none" stroke="black"/>
                <path d="M 248,416 L 280,416" fill="none" stroke="black"/>
                <path d="M 408,416 L 440,416" fill="none" stroke="black"/>
                <path d="M 520,416 L 552,416" fill="none" stroke="black"/>
                <polygon class="arrowhead" points="544,304 532,298.4 532,309.6" fill="black" transform="rotate(0,536,304)"/>
                <polygon class="arrowhead" points="528,176 516,170.4 516,181.6" fill="black" transform="rotate(0,520,176)"/>
                <polygon class="arrowhead" points="352,176 340,170.4 340,181.6" fill="black" transform="rotate(0,344,176)"/>
                <polygon class="arrowhead" points="336,112 324,106.4 324,117.6" fill="black" transform="rotate(0,328,112)"/>
                <polygon class="arrowhead" points="144,176 132,170.4 132,181.6" fill="black" transform="rotate(0,136,176)"/>
                <polygon class="arrowhead" points="16,400 4,394.4 4,405.6" fill="black" transform="rotate(90,8,400)"/>
                <circle cx="24" cy="112" r="6" class="closeddot" fill="black"/>
                <circle cx="48" cy="400" r="6" class="closeddot" fill="black"/>
                <circle cx="128" cy="400" r="6" class="closeddot" fill="black"/>
                <circle cx="256" cy="400" r="6" class="closeddot" fill="black"/>
                <circle cx="336" cy="208" r="6" class="closeddot" fill="black"/>
                <circle cx="416" cy="400" r="6" class="closeddot" fill="black"/>
                <circle cx="432" cy="208" r="6" class="closeddot" fill="black"/>
                <circle cx="512" cy="208" r="6" class="closeddot" fill="black"/>
                <circle cx="528" cy="400" r="6" class="closeddot" fill="black"/>
                <g class="text">
                  <text x="280" y="36">:</text>
                  <text x="32" y="52">C</text>
                  <text x="64" y="52">=</text>
                  <text x="92" y="52">Core</text>
                  <text x="124" y="52">AS</text>
                  <text x="280" y="52">:</text>
                  <text x="304" y="52">-</text>
                  <text x="320" y="52">-</text>
                  <text x="336" y="52">-</text>
                  <text x="352" y="52">-</text>
                  <text x="368" y="52">=</text>
                  <text x="404" y="52">unused</text>
                  <text x="456" y="52">links</text>
                  <text x="280" y="84">p</text>
                  <text x="312" y="84">p</text>
                  <text x="328" y="84">=</text>
                  <text x="368" y="84">peering</text>
                  <text x="420" y="84">link</text>
                  <text x="64" y="116">=</text>
                  <text x="148" y="116">source/destination</text>
                  <text x="236" y="116">AS</text>
                  <text x="344" y="116">=</text>
                  <text x="392" y="116">direction</text>
                  <text x="444" y="116">of</text>
                  <text x="496" y="116">beaconing</text>
                  <text x="92" y="164">Core</text>
                  <text x="300" y="164">Core</text>
                  <text x="476" y="164">Core</text>
                  <text x="56" y="212">C</text>
                  <text x="136" y="212">C</text>
                  <text x="264" y="212">C</text>
                  <text x="352" y="212">C</text>
                  <text x="448" y="212">C</text>
                  <text x="528" y="212">C</text>
                  <text x="92" y="244">1a</text>
                  <text x="300" y="244">1b</text>
                  <text x="476" y="244">1c</text>
                  <text x="476" y="292">Core</text>
                  <text x="480" y="340">C</text>
                  <text x="476" y="388">1d</text>
                  <text x="432" y="404">C</text>
                  <text x="544" y="404">C</text>
                </g>
              </svg>
            </artwork>
            <artwork type="ascii-art"><![CDATA[
 +---+                            :
 | C | = Core AS                  :  - - - - = unused links
 +---+
                                  p---p = peering link
 +---+
 |*  | = source/destination AS    ------> = direction of beaconing
 +---+

         Core                      Core                  Core
      ---------->               ---------->           ---------->
    +---+     +---+           +---+     +---+       +---+     +---+
+   + C +-----+ C +           + C +-----+* C|       |* C+-----+* C|
|   +-+-+     +-+-+           +-+-+     +---+       +---+     +---+
|     |   1a    |               |   1b                    1c
|     |         |               |
|     |         |               |
|   +-+-+     +-+-+           +-+-+                      Core
|   |   |     |   |           |   |                 -------------->
|   +-+-+     +-+-+           +-+-+                      +---+
|     |         |               |                   +----+ C +----+
|     |         |               |                   |    +---+    |
|     |         |               |                   |             |
|   +-+-+     +-+-+           +-+-+               +-+-+   1d    +-+-+
v   |*  |     |*  |           |*  |               |* C|         |* C|
    +---+     +---+           +---+               +---+         +---+
]]></artwork>
          </artset>
        </figure>
        <t>Valid path segment combinations:</t>
        <ul spacing="normal">
          <li>
            <t><strong>Communication through core ASes with core segment combination</strong> (Cases 1a, 1b, 1c, 1d in <xref target="_figure-1"/>): The up and down segments of source and destination do not have an AS in common. In this case, a core segment is <bcp14>REQUIRED</bcp14> to connect the source's up segment and the destination's down segment (Case 1a). If either the source or the destination AS is a core AS (Case 1b), or both are core ASes (Cases 1c and 1d), then no up or down segments are <bcp14>REQUIRED</bcp14> to connect the respective ASes to the core segment.</t>
          </li>
        </ul>
        <figure anchor="_figure-1bis">
          <name>Illustration of valid path segment combinations through one or no core ASes.</name>
          <artset>
            <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="560" width="576" viewBox="0 0 576 560" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                <path d="M 8,48 L 8,240" fill="none" stroke="black"/>
                <path d="M 8,336 L 8,528" fill="none" stroke="black"/>
                <path d="M 32,320 L 32,352" fill="none" stroke="black"/>
                <path d="M 32,416 L 32,448" fill="none" stroke="black"/>
                <path d="M 32,512 L 32,544" fill="none" stroke="black"/>
                <path d="M 40,128 L 40,160" fill="none" stroke="black"/>
                <path d="M 40,224 L 40,256" fill="none" stroke="black"/>
                <path d="M 48,448 L 48,512" fill="none" stroke="black"/>
                <path d="M 56,48 L 56,128" fill="none" stroke="black"/>
                <path d="M 56,160 L 56,224" fill="none" stroke="black"/>
                <path d="M 64,320 L 64,352" fill="none" stroke="black"/>
                <path d="M 64,416 L 64,448" fill="none" stroke="black"/>
                <path d="M 64,512 L 64,544" fill="none" stroke="black"/>
                <path d="M 72,128 L 72,160" fill="none" stroke="black"/>
                <path d="M 72,224 L 72,256" fill="none" stroke="black"/>
                <path d="M 80,32 L 80,64" fill="none" stroke="black"/>
                <path d="M 112,32 L 112,64" fill="none" stroke="black"/>
                <path d="M 112,320 L 112,352" fill="none" stroke="black"/>
                <path d="M 112,416 L 112,448" fill="none" stroke="black"/>
                <path d="M 112,512 L 112,544" fill="none" stroke="black"/>
                <path d="M 120,128 L 120,160" fill="none" stroke="black"/>
                <path d="M 120,224 L 120,256" fill="none" stroke="black"/>
                <path d="M 128,448 L 128,512" fill="none" stroke="black"/>
                <path d="M 136,48 L 136,128" fill="none" stroke="black"/>
                <path d="M 136,160 L 136,224" fill="none" stroke="black"/>
                <path d="M 144,320 L 144,352" fill="none" stroke="black"/>
                <path d="M 144,416 L 144,448" fill="none" stroke="black"/>
                <path d="M 144,512 L 144,544" fill="none" stroke="black"/>
                <path d="M 152,128 L 152,160" fill="none" stroke="black"/>
                <path d="M 152,224 L 152,256" fill="none" stroke="black"/>
                <path d="M 216,512 L 216,544" fill="none" stroke="black"/>
                <path d="M 232,432 L 232,512" fill="none" stroke="black"/>
                <path d="M 248,32 L 248,64" fill="none" stroke="black"/>
                <path d="M 248,128 L 248,160" fill="none" stroke="black"/>
                <path d="M 248,224 L 248,256" fill="none" stroke="black"/>
                <path d="M 248,320 L 248,352" fill="none" stroke="black"/>
                <path d="M 248,416 L 248,448" fill="none" stroke="black"/>
                <path d="M 248,512 L 248,544" fill="none" stroke="black"/>
                <path d="M 264,64 L 264,128" fill="none" stroke="black"/>
                <path d="M 264,160 L 264,224" fill="none" stroke="black"/>
                <path d="M 280,32 L 280,64" fill="none" stroke="black"/>
                <path d="M 280,128 L 280,160" fill="none" stroke="black"/>
                <path d="M 280,224 L 280,256" fill="none" stroke="black"/>
                <path d="M 280,320 L 280,352" fill="none" stroke="black"/>
                <path d="M 280,416 L 280,448" fill="none" stroke="black"/>
                <path d="M 280,512 L 280,544" fill="none" stroke="black"/>
                <path d="M 296,432 L 296,512" fill="none" stroke="black"/>
                <path d="M 312,512 L 312,544" fill="none" stroke="black"/>
                <path d="M 360,320 L 360,352" fill="none" stroke="black"/>
                <path d="M 360,512 L 360,544" fill="none" stroke="black"/>
                <path d="M 376,432 L 376,512" fill="none" stroke="black"/>
                <path d="M 384,128 L 384,160" fill="none" stroke="black"/>
                <path d="M 384,224 L 384,256" fill="none" stroke="black"/>
                <path d="M 392,320 L 392,352" fill="none" stroke="black"/>
                <path d="M 392,512 L 392,544" fill="none" stroke="black"/>
                <path d="M 400,160 L 400,224" fill="none" stroke="black"/>
                <path d="M 400,416 L 400,448" fill="none" stroke="black"/>
                <path d="M 416,128 L 416,160" fill="none" stroke="black"/>
                <path d="M 416,224 L 416,256" fill="none" stroke="black"/>
                <path d="M 424,32 L 424,64" fill="none" stroke="black"/>
                <path d="M 432,416 L 432,448" fill="none" stroke="black"/>
                <path d="M 440,320 L 440,352" fill="none" stroke="black"/>
                <path d="M 440,512 L 440,544" fill="none" stroke="black"/>
                <path d="M 456,32 L 456,64" fill="none" stroke="black"/>
                <path d="M 456,432 L 456,512" fill="none" stroke="black"/>
                <path d="M 464,128 L 464,160" fill="none" stroke="black"/>
                <path d="M 464,224 L 464,256" fill="none" stroke="black"/>
                <path d="M 472,320 L 472,352" fill="none" stroke="black"/>
                <path d="M 472,512 L 472,544" fill="none" stroke="black"/>
                <path d="M 480,160 L 480,224" fill="none" stroke="black"/>
                <path d="M 496,128 L 496,160" fill="none" stroke="black"/>
                <path d="M 496,224 L 496,256" fill="none" stroke="black"/>
                <path d="M 536,320 L 536,352" fill="none" stroke="black"/>
                <path d="M 536,416 L 536,448" fill="none" stroke="black"/>
                <path d="M 536,512 L 536,544" fill="none" stroke="black"/>
                <path d="M 552,448 L 552,512" fill="none" stroke="black"/>
                <path d="M 568,320 L 568,352" fill="none" stroke="black"/>
                <path d="M 568,416 L 568,448" fill="none" stroke="black"/>
                <path d="M 568,512 L 568,544" fill="none" stroke="black"/>
                <path d="M 80,32 L 112,32" fill="none" stroke="black"/>
                <path d="M 248,32 L 280,32" fill="none" stroke="black"/>
                <path d="M 424,32 L 456,32" fill="none" stroke="black"/>
                <path d="M 56,48 L 80,48" fill="none" stroke="black"/>
                <path d="M 112,48 L 136,48" fill="none" stroke="black"/>
                <path d="M 80,64 L 112,64" fill="none" stroke="black"/>
                <path d="M 248,64 L 280,64" fill="none" stroke="black"/>
                <path d="M 424,64 L 456,64" fill="none" stroke="black"/>
                <path d="M 40,128 L 72,128" fill="none" stroke="black"/>
                <path d="M 120,128 L 152,128" fill="none" stroke="black"/>
                <path d="M 248,128 L 280,128" fill="none" stroke="black"/>
                <path d="M 384,128 L 416,128" fill="none" stroke="black"/>
                <path d="M 464,128 L 496,128" fill="none" stroke="black"/>
                <path d="M 432,144 L 448,144" fill="none" stroke="black"/>
                <path d="M 40,160 L 72,160" fill="none" stroke="black"/>
                <path d="M 120,160 L 152,160" fill="none" stroke="black"/>
                <path d="M 248,160 L 280,160" fill="none" stroke="black"/>
                <path d="M 384,160 L 416,160" fill="none" stroke="black"/>
                <path d="M 464,160 L 496,160" fill="none" stroke="black"/>
                <path d="M 40,224 L 72,224" fill="none" stroke="black"/>
                <path d="M 120,224 L 152,224" fill="none" stroke="black"/>
                <path d="M 248,224 L 280,224" fill="none" stroke="black"/>
                <path d="M 384,224 L 416,224" fill="none" stroke="black"/>
                <path d="M 464,224 L 496,224" fill="none" stroke="black"/>
                <path d="M 40,256 L 72,256" fill="none" stroke="black"/>
                <path d="M 120,256 L 152,256" fill="none" stroke="black"/>
                <path d="M 248,256 L 280,256" fill="none" stroke="black"/>
                <path d="M 384,256 L 416,256" fill="none" stroke="black"/>
                <path d="M 464,256 L 496,256" fill="none" stroke="black"/>
                <path d="M 48,304 L 128,304" fill="none" stroke="black"/>
                <path d="M 376,304 L 456,304" fill="none" stroke="black"/>
                <path d="M 32,320 L 64,320" fill="none" stroke="black"/>
                <path d="M 112,320 L 144,320" fill="none" stroke="black"/>
                <path d="M 248,320 L 280,320" fill="none" stroke="black"/>
                <path d="M 360,320 L 392,320" fill="none" stroke="black"/>
                <path d="M 440,320 L 472,320" fill="none" stroke="black"/>
                <path d="M 536,320 L 568,320" fill="none" stroke="black"/>
                <path d="M 32,352 L 64,352" fill="none" stroke="black"/>
                <path d="M 112,352 L 144,352" fill="none" stroke="black"/>
                <path d="M 248,352 L 280,352" fill="none" stroke="black"/>
                <path d="M 360,352 L 392,352" fill="none" stroke="black"/>
                <path d="M 440,352 L 472,352" fill="none" stroke="black"/>
                <path d="M 536,352 L 568,352" fill="none" stroke="black"/>
                <path d="M 32,416 L 64,416" fill="none" stroke="black"/>
                <path d="M 112,416 L 144,416" fill="none" stroke="black"/>
                <path d="M 248,416 L 280,416" fill="none" stroke="black"/>
                <path d="M 400,416 L 432,416" fill="none" stroke="black"/>
                <path d="M 536,416 L 568,416" fill="none" stroke="black"/>
                <path d="M 80,432 L 96,432" fill="none" stroke="black"/>
                <path d="M 232,432 L 248,432" fill="none" stroke="black"/>
                <path d="M 280,432 L 296,432" fill="none" stroke="black"/>
                <path d="M 376,432 L 400,432" fill="none" stroke="black"/>
                <path d="M 432,432 L 456,432" fill="none" stroke="black"/>
                <path d="M 32,448 L 64,448" fill="none" stroke="black"/>
                <path d="M 112,448 L 144,448" fill="none" stroke="black"/>
                <path d="M 248,448 L 280,448" fill="none" stroke="black"/>
                <path d="M 400,448 L 432,448" fill="none" stroke="black"/>
                <path d="M 536,448 L 568,448" fill="none" stroke="black"/>
                <path d="M 32,512 L 64,512" fill="none" stroke="black"/>
                <path d="M 112,512 L 144,512" fill="none" stroke="black"/>
                <path d="M 216,512 L 248,512" fill="none" stroke="black"/>
                <path d="M 280,512 L 312,512" fill="none" stroke="black"/>
                <path d="M 360,512 L 392,512" fill="none" stroke="black"/>
                <path d="M 440,512 L 472,512" fill="none" stroke="black"/>
                <path d="M 536,512 L 568,512" fill="none" stroke="black"/>
                <path d="M 32,544 L 64,544" fill="none" stroke="black"/>
                <path d="M 112,544 L 144,544" fill="none" stroke="black"/>
                <path d="M 216,544 L 248,544" fill="none" stroke="black"/>
                <path d="M 280,544 L 312,544" fill="none" stroke="black"/>
                <path d="M 360,544 L 392,544" fill="none" stroke="black"/>
                <path d="M 440,544 L 472,544" fill="none" stroke="black"/>
                <path d="M 536,544 L 568,544" fill="none" stroke="black"/>
                <polygon class="arrowhead" points="464,304 452,298.4 452,309.6" fill="black" transform="rotate(0,456,304)"/>
                <polygon class="arrowhead" points="136,304 124,298.4 124,309.6" fill="black" transform="rotate(0,128,304)"/>
                <polygon class="arrowhead" points="16,528 4,522.4 4,533.6" fill="black" transform="rotate(90,8,528)"/>
                <polygon class="arrowhead" points="16,240 4,234.4 4,245.6" fill="black" transform="rotate(90,8,240)"/>
                <circle cx="40" cy="528" r="6" class="closeddot" fill="black"/>
                <circle cx="48" cy="240" r="6" class="closeddot" fill="black"/>
                <circle cx="120" cy="528" r="6" class="closeddot" fill="black"/>
                <circle cx="128" cy="240" r="6" class="closeddot" fill="black"/>
                <circle cx="224" cy="528" r="6" class="closeddot" fill="black"/>
                <circle cx="256" cy="48" r="6" class="closeddot" fill="black"/>
                <circle cx="256" cy="240" r="6" class="closeddot" fill="black"/>
                <circle cx="288" cy="528" r="6" class="closeddot" fill="black"/>
                <circle cx="368" cy="528" r="6" class="closeddot" fill="black"/>
                <circle cx="392" cy="240" r="6" class="closeddot" fill="black"/>
                <circle cx="448" cy="528" r="6" class="closeddot" fill="black"/>
                <circle cx="472" cy="240" r="6" class="closeddot" fill="black"/>
                <circle cx="544" cy="432" r="6" class="closeddot" fill="black"/>
                <circle cx="544" cy="528" r="6" class="closeddot" fill="black"/>
                <g class="text">
                  <text x="96" y="52">C</text>
                  <text x="272" y="52">C</text>
                  <text x="404" y="52">:-</text>
                  <text x="440" y="52">C</text>
                  <text x="464" y="52">-</text>
                  <text x="480" y="52">:</text>
                  <text x="400" y="68">:</text>
                  <text x="480" y="68">:</text>
                  <text x="400" y="84">:</text>
                  <text x="480" y="84">:</text>
                  <text x="92" y="100">2a</text>
                  <text x="236" y="100">2b</text>
                  <text x="400" y="100">:</text>
                  <text x="444" y="100">3a</text>
                  <text x="480" y="100">:</text>
                  <text x="400" y="116">:</text>
                  <text x="480" y="116">:</text>
                  <text x="424" y="148">p</text>
                  <text x="456" y="148">p</text>
                  <text x="92" y="292">Core</text>
                  <text x="420" y="292">Core</text>
                  <text x="48" y="340">C</text>
                  <text x="80" y="340">-</text>
                  <text x="96" y="340">-</text>
                  <text x="128" y="340">C</text>
                  <text x="264" y="340">C</text>
                  <text x="376" y="340">C</text>
                  <text x="408" y="340">-</text>
                  <text x="424" y="340">-</text>
                  <text x="456" y="340">C</text>
                  <text x="552" y="340">C</text>
                  <text x="48" y="372">:</text>
                  <text x="92" y="372">3b</text>
                  <text x="128" y="372">:</text>
                  <text x="264" y="372">:</text>
                  <text x="300" y="372">4a</text>
                  <text x="376" y="372">:</text>
                  <text x="412" y="372">4b</text>
                  <text x="456" y="372">:</text>
                  <text x="528" y="372">5</text>
                  <text x="552" y="372">:</text>
                  <text x="48" y="388">:</text>
                  <text x="128" y="388">:</text>
                  <text x="264" y="388">:</text>
                  <text x="376" y="388">:</text>
                  <text x="456" y="388">:</text>
                  <text x="552" y="388">:</text>
                  <text x="48" y="404">:</text>
                  <text x="128" y="404">:</text>
                  <text x="264" y="404">:</text>
                  <text x="376" y="404">:</text>
                  <text x="456" y="404">:</text>
                  <text x="552" y="404">:</text>
                  <text x="380" y="420">:-</text>
                  <text x="452" y="420">-:</text>
                  <text x="72" y="436">p</text>
                  <text x="104" y="436">p</text>
                </g>
              </svg>
            </artwork>
            <artwork type="ascii-art"><![CDATA[
         +---+                +---+                 +---+
+     +--+ C +--+             +* C|              :- + C +- :
|     |  +---+  |             +-+-+              :  +---+  :
|     |         |               |                :         :
|     |   2a    |           2b  |                :    3a   :
|     |         |               |                :         :
|   +-+-+     +-+-+           +-+-+            +-+-+     +-+-+
|   |   |     |   |           |   |            |   +p---p+   |
|   +-+-+     +-+-+           +-+-+            +-+-+     +-+-+
|     |         |               |                |         |
|     |         |               |                |         |
|     |         |               |                |         |
|   +-+-+     +-+-+           +-+-+            +-+-+     +-+-+
v   |*  |     |*  |           |*  |            |*  |     |*  |
    +---+     +---+           +---+            +---+     +---+

         Core                                     Core
     ---------->                              ---------->
   +---+     +---+            +---+         +---+     +---+       +---+
+  + C + - - + C +            + C +         | C | - - | C |       | C |
|  +-+-+     +-+-+            +-+-+         +-+-+     +-+-+       +-+-+
|    :    3b   :                :   4a        :   4b    :        5  :
|    :         :                :             :         :           :
|    :         :                :             :         :           :
|  +---+     +-+-+            +-+-+           :- +---+ -:         +-+-+
|  |   +p---p+   |          +-+   +-+         +--+   +--+         |*  |
|  +-+-+     +-+-+          | +---+ |         |  +---+  |         +-+-+
|    |         |            |       |         |         |           |
|    |         |            |       |         |         |           |
|    |         |            |       |         |         |           |
|  +-+-+     +-+-+        +-+-+   +-+-+     +-+-+     +-+-+       +-+-+
v  |*  |     |*  |        |*  |   |*  |     |*  |     |*  |       |*  |
   +---+     +---+        +---+   +---+     +---+     +---+       +---+
]]></artwork>
          </artset>
        </figure>
        <ul spacing="normal">
          <li>
            <t><strong>Communication through a core AS with immediate combination</strong> (Cases 2a, 2b in <xref target="_figure-1bis"/>): The last AS on the up segment (which is necessarily a core AS) is the same as the first AS on the down segment. In this case, a simple combination of up and down segments creates a valid forwarding path. In Case 2b, only one segment is required.</t>
          </li>
          <li>
            <t><strong>Peering shortcut</strong> (Cases 3a and 3b): A peering link exists between the up and down segment, and extraneous path segments to the core are cut off. The up and down segments do not need to originate from the same core AS and the peering link could also be traversing to a different ISD.</t>
          </li>
          <li>
            <t><strong>AS shortcut</strong> (Cases 4a and 4b): The up and down segments intersect at a non-core AS below the ISD core, thus creating a shortcut. In this case, a shorter path is made possible by removing the extraneous part of the path to the core. Note that the up and down segments do not need to originate from the same core AS.</t>
          </li>
          <li>
            <t><strong>On-path</strong> (Case 5): In the case where the source's up segment contains the destination AS or the destination's down segment contains the source AS, a single segment is sufficient to construct a forwarding path. Again, no core AS is on the final path.</t>
          </li>
        </ul>
      </section>
      <section anchor="path-authorization">
        <name>Path Authorization</name>
        <t>The SCION Data Plane provides <em>path authorization</em>. This ensures that data packets always traverse the network using path segments that were explicitly authorized by the respective ASes and prevents endpoints from constructing unauthorized paths or paths containing loops. SCION uses symmetric cryptography in the form of Message Authentication Codes (MACs) to authenticate the information encoded in Hop Fields and such MACs are verified by routers at forwarding. For a detailed specification, see <xref target="path-auth"/>.</t>
      </section>
    </section>
    <section anchor="header">
      <name>SCION Header Specification</name>
      <t>The SCION packet header is aligned to 4 bytes and is composed of a common header, an address header, a path header, and an <bcp14>OPTIONAL</bcp14> extension header, see <xref target="_figure-2"/> below. The 4 byte alignment is to allow header length to be computed based on the <tt>HdrLen</tt> field (see <xref target="common-header"/>).</t>
      <figure anchor="_figure-2">
        <name>High-level SCION header structure, non-byte aligned</name>
        <artset>
          <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="256" width="472" viewBox="0 0 472 256" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
              <path d="M 8,32 L 8,224" fill="none" stroke="black"/>
              <path d="M 464,32 L 464,224" fill="none" stroke="black"/>
              <path d="M 8,32 L 464,32" fill="none" stroke="black"/>
              <path d="M 8,80 L 464,80" fill="none" stroke="black"/>
              <path d="M 8,128 L 464,128" fill="none" stroke="black"/>
              <path d="M 8,176 L 464,176" fill="none" stroke="black"/>
              <path d="M 8,224 L 464,224" fill="none" stroke="black"/>
              <g class="text">
                <text x="204" y="52">Common</text>
                <text x="260" y="52">header</text>
                <text x="208" y="100">Address</text>
                <text x="268" y="100">header</text>
                <text x="204" y="148">Path</text>
                <text x="252" y="148">header</text>
                <text x="168" y="196">Extension</text>
                <text x="236" y="196">header</text>
                <text x="308" y="196">(OPTIONAL)</text>
              </g>
            </svg>
          </artwork>
          <artwork type="ascii-art"><![CDATA[
+--------------------------------------------------------+
|                     Common header                      |
|                                                        |
+--------------------------------------------------------+
|                     Address header                     |
|                                                        |
+--------------------------------------------------------+
|                      Path header                       |
|                                                        |
+--------------------------------------------------------+
|               Extension header (OPTIONAL)              |
|                                                        |
+--------------------------------------------------------+

]]></artwork>
        </artset>
      </figure>
      <t>The <em>common header</em> contains important meta information including version number and the lengths of the header and payload. In particular, it contains flags that control the format of subsequent headers such as the address and path headers. For more details, see <xref target="common-header"/>.</t>
      <t>The <em>address header</em> contains the ISD, SCION AS and endpoint addresses of source and destination. The type and length of endpoint addresses are variable and can be set independently using flags in the common header. For more details, see <xref target="address-header"/>.</t>
      <t>The <em>path header</em> contains the full AS-level forwarding path of the packet. A path type field in the common header specifies the path format used in the path header. For more details, see <xref target="path-header"/>.</t>
      <t>The <bcp14>OPTIONAL</bcp14> <em>extension</em> header contains a variable number of hop-by-hop and end-to-end options, similar to extensions in the IPv6 header <xref target="RFC8200"/>. For more details, see <xref target="ext-header"/>.</t>
      <section anchor="common-header">
        <name>Common Header</name>
        <t>The SCION common header has the following packet format:</t>
        <figure anchor="_figure-3">
          <name>The SCION common header packet format</name>
          <artset>
            <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="192" width="528" viewBox="0 0 528 192" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                <path d="M 8,64 L 8,160" fill="none" stroke="black"/>
                <path d="M 72,64 L 72,96" fill="none" stroke="black"/>
                <path d="M 136,96 L 136,160" fill="none" stroke="black"/>
                <path d="M 168,128 L 168,160" fill="none" stroke="black"/>
                <path d="M 200,64 L 200,96" fill="none" stroke="black"/>
                <path d="M 200,128 L 200,160" fill="none" stroke="black"/>
                <path d="M 232,128 L 232,160" fill="none" stroke="black"/>
                <path d="M 264,96 L 264,160" fill="none" stroke="black"/>
                <path d="M 520,64 L 520,160" fill="none" stroke="black"/>
                <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                <path d="M 8,96 L 520,96" fill="none" stroke="black"/>
                <path d="M 8,128 L 520,128" fill="none" stroke="black"/>
                <path d="M 8,160 L 520,160" fill="none" stroke="black"/>
                <g class="text">
                  <text x="16" y="36">0</text>
                  <text x="176" y="36">1</text>
                  <text x="336" y="36">2</text>
                  <text x="496" y="36">3</text>
                  <text x="16" y="52">0</text>
                  <text x="32" y="52">1</text>
                  <text x="48" y="52">2</text>
                  <text x="64" y="52">3</text>
                  <text x="80" y="52">4</text>
                  <text x="96" y="52">5</text>
                  <text x="112" y="52">6</text>
                  <text x="128" y="52">7</text>
                  <text x="144" y="52">8</text>
                  <text x="160" y="52">9</text>
                  <text x="176" y="52">0</text>
                  <text x="192" y="52">1</text>
                  <text x="208" y="52">2</text>
                  <text x="224" y="52">3</text>
                  <text x="240" y="52">4</text>
                  <text x="256" y="52">5</text>
                  <text x="272" y="52">6</text>
                  <text x="288" y="52">7</text>
                  <text x="304" y="52">8</text>
                  <text x="320" y="52">9</text>
                  <text x="336" y="52">0</text>
                  <text x="352" y="52">1</text>
                  <text x="368" y="52">2</text>
                  <text x="384" y="52">3</text>
                  <text x="400" y="52">4</text>
                  <text x="416" y="52">5</text>
                  <text x="432" y="52">6</text>
                  <text x="448" y="52">7</text>
                  <text x="464" y="52">8</text>
                  <text x="480" y="52">9</text>
                  <text x="496" y="52">0</text>
                  <text x="512" y="52">1</text>
                  <text x="40" y="84">Version</text>
                  <text x="132" y="84">TrafficClass</text>
                  <text x="348" y="84">Flow</text>
                  <text x="392" y="84">Label</text>
                  <text x="72" y="116">NextHdr</text>
                  <text x="196" y="116">HdrLen</text>
                  <text x="388" y="116">PayloadLen</text>
                  <text x="76" y="148">PathType</text>
                  <text x="148" y="148">DT</text>
                  <text x="180" y="148">DL</text>
                  <text x="212" y="148">ST</text>
                  <text x="244" y="148">SL</text>
                  <text x="392" y="148">RSV</text>
                </g>
              </svg>
            </artwork>
            <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|Version| TrafficClass  |                Flow Label             |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|    NextHdr    |    HdrLen     |          PayloadLen           |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|    PathType   |DT |DL |ST |SL |              RSV              |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

]]></artwork>
          </artset>
        </figure>
        <ul spacing="normal">
          <li>
            <t><tt>Version</tt>: The version of the SCION common header. Currently, only version "0" is supported.</t>
          </li>
          <li>
            <t><tt>TrafficClass</tt>: The 8-bit long identifier of the packet's class or priority. The value of the traffic class bits in a received packet might differ from the value sent by the packet's source. The current use of the <tt>TrafficClass</tt> field for Differentiated Services and Explicit Congestion Notification is specified in <xref target="RFC2474"/> and <xref target="RFC3168"/>.</t>
          </li>
          <li>
            <t><tt>Flow Label</tt>: This 20-bit field labels sequences of packets to be treated in the network as a single flow. Sources <bcp14>MUST</bcp14> set this field which serves the same purpose as what <xref target="RFC6437"/> describes for IPv6 and is used in the same manner. Note that a Flow Label of zero does not imply that packet reordering is acceptable.</t>
          </li>
          <li>
            <t><tt>NextHdr</tt>: Encodes the type of the first header after the SCION header, which can be either a SCION extension or a Layer 4 protocol such as TCP or UDP. Values of this field respect the Assigned SCION Protocol Numbers (see <xref target="protnum"/>).</t>
          </li>
          <li>
            <t><tt>HdrLen</tt>: Specifies the entire length of the SCION header in bytes - i.e., the sum of the lengths of the common header, the address header, and the path header. The SCION header is aligned to a multiple of 4 bytes. The SCION header length is computed as <tt>HdrLen</tt> * 4 bytes. The 8 bits of the <tt>HdrLen</tt> field limit the SCION header to a maximum of 255 * 4 = 1020 bytes.</t>
          </li>
          <li>
            <t><tt>PayloadLen</tt>: Specifies the length of the payload in bytes. The payload includes (SCION) extension headers and the L4 payload. This field is 16 bits long, supporting a maximum payload size of 65'535 bytes.</t>
          </li>
          <li>
            <t><tt>PathType</tt>: Specifies the type of the SCION path. It is described in <xref target="path-type-field"/>.</t>
          </li>
          <li>
            <t><tt>DT/DL/ST/SL</tt> (Address Type And Length): Define the endpoint address type and length. They are described in <xref target="addr-type-length-field"/>.</t>
          </li>
          <li>
            <t><tt>RSV</tt>: These bits are currently reserved for future use.</t>
          </li>
        </ul>
        <section anchor="path-type-field">
          <name>Path Type Field</name>
          <table anchor="_table-1">
            <name>Currently defined SCION path types</name>
            <thead>
              <tr>
                <th align="left">Value</th>
                <th align="left">Path Type</th>
              </tr>
            </thead>
            <tbody>
              <tr>
                <td align="left">0</td>
                <td align="left">Empty path (<tt>EmptyPath</tt>)</td>
              </tr>
              <tr>
                <td align="left">1</td>
                <td align="left">SCION (<tt>SCION</tt>)</td>
              </tr>
              <tr>
                <td align="left">2</td>
                <td align="left">One-hop path (<tt>OneHopPath</tt>)</td>
              </tr>
              <tr>
                <td align="left">3</td>
                <td align="left">EPIC path (experimental)</td>
              </tr>
              <tr>
                <td align="left">4</td>
                <td align="left">COLIBRI path (experimental)</td>
              </tr>
            </tbody>
          </table>
          <t>The Path Type field determines the type of the SCION path and it is 8 bits long. The format of one path type is independent of all other path types. This document only specifies the Empty, SCION and OneHopPath path types and the other path types are currently experimental. For more details, see <xref target="path-header"/>.</t>
        </section>
        <section anchor="addr-type-length-field">
          <name>Address Type And Length Fields</name>
          <t>These fields, also abbreviated <tt>DT/DL/ST/SL</tt>, define the endpoint address type and endpoint address length for the source and destination endpoint.</t>
          <t>The possible endpoint address length values are:</t>
          <table anchor="_table-2">
            <name>Address length values. `DL` and `SL` stand for Destination Length and Source Length.</name>
            <thead>
              <tr>
                <th align="left">DL/SL Value</th>
                <th align="left">Address Length</th>
              </tr>
            </thead>
            <tbody>
              <tr>
                <td align="left">0</td>
                <td align="left">4 bytes</td>
              </tr>
              <tr>
                <td align="left">1</td>
                <td align="left">8 bytes</td>
              </tr>
              <tr>
                <td align="left">2</td>
                <td align="left">12 bytes</td>
              </tr>
              <tr>
                <td align="left">3</td>
                <td align="left">16 bytes</td>
              </tr>
            </tbody>
          </table>
          <t>If an address has a length different from the supported values, the next larger size <bcp14>SHALL</bcp14> be used and the address can be padded with zeros.</t>
          <t>The "type" identifier is only defined in combination with a specific address length. Per address length, several sub-types are possible. The currently assigned combinations of lengths and types are:</t>
          <table anchor="_table-3">
            <name>Allocations of length and type combinations. `DT` and `ST` stand for Destination Type and Source Type respectively.</name>
            <thead>
              <tr>
                <th align="left">Type (DT/ST)</th>
                <th align="left">Length (DL/SL)</th>
                <th align="left">Conventional Use</th>
              </tr>
            </thead>
            <tbody>
              <tr>
                <td align="left">0</td>
                <td align="left">0</td>
                <td align="left">IPv4</td>
              </tr>
              <tr>
                <td align="left">0</td>
                <td align="left">3</td>
                <td align="left">IPv6</td>
              </tr>
              <tr>
                <td align="left">1</td>
                <td align="left">0</td>
                <td align="left">Service</td>
              </tr>
              <tr>
                <td align="left">other</td>
                <td align="left">other</td>
                <td align="left">Unassigned</td>
              </tr>
            </tbody>
          </table>
          <t>Service addresses are described in <xref target="service-addresses"/>.</t>
        </section>
      </section>
      <section anchor="address-header">
        <name>Address Header</name>
        <t>The SCION address header has the following format:</t>
        <figure anchor="_figure-4">
          <name>The SCION address header packet format</name>
          <artset>
            <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="288" width="528" viewBox="0 0 528 288" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                <path d="M 8,64 L 8,256" fill="none" stroke="black"/>
                <path d="M 264,64 L 264,96" fill="none" stroke="black"/>
                <path d="M 264,128 L 264,160" fill="none" stroke="black"/>
                <path d="M 520,64 L 520,256" fill="none" stroke="black"/>
                <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                <path d="M 8,96 L 264,96" fill="none" stroke="black"/>
                <path d="M 8,128 L 520,128" fill="none" stroke="black"/>
                <path d="M 8,160 L 264,160" fill="none" stroke="black"/>
                <path d="M 8,192 L 520,192" fill="none" stroke="black"/>
                <path d="M 8,224 L 520,224" fill="none" stroke="black"/>
                <path d="M 8,256 L 520,256" fill="none" stroke="black"/>
                <g class="text">
                  <text x="16" y="36">0</text>
                  <text x="176" y="36">1</text>
                  <text x="336" y="36">2</text>
                  <text x="496" y="36">3</text>
                  <text x="16" y="52">0</text>
                  <text x="32" y="52">1</text>
                  <text x="48" y="52">2</text>
                  <text x="64" y="52">3</text>
                  <text x="80" y="52">4</text>
                  <text x="96" y="52">5</text>
                  <text x="112" y="52">6</text>
                  <text x="128" y="52">7</text>
                  <text x="144" y="52">8</text>
                  <text x="160" y="52">9</text>
                  <text x="176" y="52">0</text>
                  <text x="192" y="52">1</text>
                  <text x="208" y="52">2</text>
                  <text x="224" y="52">3</text>
                  <text x="240" y="52">4</text>
                  <text x="256" y="52">5</text>
                  <text x="272" y="52">6</text>
                  <text x="288" y="52">7</text>
                  <text x="304" y="52">8</text>
                  <text x="320" y="52">9</text>
                  <text x="336" y="52">0</text>
                  <text x="352" y="52">1</text>
                  <text x="368" y="52">2</text>
                  <text x="384" y="52">3</text>
                  <text x="400" y="52">4</text>
                  <text x="416" y="52">5</text>
                  <text x="432" y="52">6</text>
                  <text x="448" y="52">7</text>
                  <text x="464" y="52">8</text>
                  <text x="480" y="52">9</text>
                  <text x="496" y="52">0</text>
                  <text x="512" y="52">1</text>
                  <text x="132" y="84">DstISD</text>
                  <text x="264" y="116">DstAS</text>
                  <text x="132" y="148">SrcISD</text>
                  <text x="264" y="180">SrcAS</text>
                  <text x="216" y="212">DstHostAddr</text>
                  <text x="272" y="212">(</text>
                  <text x="316" y="212">variable</text>
                  <text x="372" y="212">Len.</text>
                  <text x="400" y="212">)</text>
                  <text x="216" y="244">SrcHostAddr</text>
                  <text x="272" y="244">(</text>
                  <text x="316" y="244">variable</text>
                  <text x="372" y="244">Len.</text>
                  <text x="400" y="244">)</text>
                </g>
              </svg>
            </artwork>
            <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|            DstISD             |                               |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+                               +
|                             DstAS                             |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|            SrcISD             |                               |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+                               +
|                             SrcAS                             |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|                    DstHostAddr ( variable Len. )              |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|                    SrcHostAddr ( variable Len. )              |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

]]></artwork>
          </artset>
        </figure>
        <ul spacing="normal">
          <li>
            <t><tt>DstISD, SrcISD</tt>: The 16-bit ISD identifier of the destination/source.</t>
          </li>
          <li>
            <t><tt>DstAS, SrcAS</tt>: The 48-bit SCION AS identifier of the destination/source.</t>
          </li>
          <li>
            <t><tt>DstHostAddr, SrcHostAddr</tt>: Specifies the variable length endpoint address of the destination/source. The accepted type and length are defined in the <tt>DT/DL/ST/SL</tt> fields of the common header.</t>
          </li>
        </ul>
      </section>
      <section anchor="service-addresses">
        <name>Service Addresses</name>
        <t>A service address designates a set of endpoint addresses rather than a single one. A packet addressed to a service is redirected to any one endpoint address that is known to be part of the set.
If a service address is implied by the <tt>DT/DL</tt> or <tt>ST/SL</tt> field of the common header according to <xref target="_table-3"/>, the corresponding address field has the following format:</t>
        <figure anchor="_figure-20">
          <name>Service address format</name>
          <artset>
            <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="128" width="528" viewBox="0 0 528 128" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                <path d="M 8,64 L 8,96" fill="none" stroke="black"/>
                <path d="M 264,64 L 264,96" fill="none" stroke="black"/>
                <path d="M 520,64 L 520,96" fill="none" stroke="black"/>
                <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                <path d="M 8,96 L 520,96" fill="none" stroke="black"/>
                <g class="text">
                  <text x="16" y="36">0</text>
                  <text x="176" y="36">1</text>
                  <text x="336" y="36">2</text>
                  <text x="496" y="36">3</text>
                  <text x="16" y="52">0</text>
                  <text x="32" y="52">1</text>
                  <text x="48" y="52">2</text>
                  <text x="64" y="52">3</text>
                  <text x="80" y="52">4</text>
                  <text x="96" y="52">5</text>
                  <text x="112" y="52">6</text>
                  <text x="128" y="52">7</text>
                  <text x="144" y="52">8</text>
                  <text x="160" y="52">9</text>
                  <text x="176" y="52">0</text>
                  <text x="192" y="52">1</text>
                  <text x="208" y="52">2</text>
                  <text x="224" y="52">3</text>
                  <text x="240" y="52">4</text>
                  <text x="256" y="52">5</text>
                  <text x="272" y="52">6</text>
                  <text x="288" y="52">7</text>
                  <text x="304" y="52">8</text>
                  <text x="320" y="52">9</text>
                  <text x="336" y="52">0</text>
                  <text x="352" y="52">1</text>
                  <text x="368" y="52">2</text>
                  <text x="384" y="52">3</text>
                  <text x="400" y="52">4</text>
                  <text x="416" y="52">5</text>
                  <text x="432" y="52">6</text>
                  <text x="448" y="52">7</text>
                  <text x="464" y="52">8</text>
                  <text x="480" y="52">9</text>
                  <text x="496" y="52">0</text>
                  <text x="512" y="52">1</text>
                  <text x="112" y="84">Service</text>
                  <text x="172" y="84">Number</text>
                  <text x="392" y="84">RSV</text>
                </g>
              </svg>
            </artwork>
            <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|         Service Number        |              RSV              |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

]]></artwork>
          </artset>
        </figure>
        <ul spacing="normal">
          <li>
            <t><tt>RSV</tt>: reserved for future use</t>
          </li>
        </ul>
        <t>The currently known service numbers are:</t>
        <table anchor="_table-4">
          <name>Known Service Numbers</name>
          <thead>
            <tr>
              <th align="left">Service Number (hex)</th>
              <th align="left">Short Name</th>
              <th align="left">Description</th>
            </tr>
          </thead>
          <tbody>
            <tr>
              <td align="left">0001</td>
              <td align="left">DS</td>
              <td align="left">Discovery Service</td>
            </tr>
            <tr>
              <td align="left">0002</td>
              <td align="left">CS</td>
              <td align="left">Control Service</td>
            </tr>
            <tr>
              <td align="left">FFFF</td>
              <td align="left">None</td>
              <td align="left">Reserved invalid value</td>
            </tr>
          </tbody>
        </table>
        <t>For more information on addressing, see <xref target="I-D.dekater-scion-controlplane"/>.</t>
      </section>
      <section anchor="path-header">
        <name>Path Header</name>
        <t>The path header of a SCION packet differs for each SCION path type. The path type is set in the <tt>PathType</tt> field of the SCION common header.</t>
        <t>SCION supports three path types:</t>
        <section anchor="empty">
          <name>Empty Path Type</name>
          <t>The <tt>Empty</tt> path type (<tt>PathType=0</tt>) is used to send traffic within an AS. It has no additional fields - i.e., it consumes 0 bytes on the wire.</t>
          <t>One use case of the <tt>Empty</tt> path type lies in the context of <xref target="scion-bfd">link-failure detection</xref>.</t>
        </section>
        <section anchor="scion-path-type">
          <name>SCION Path Type</name>
          <t>The <tt>SCION</tt> path type (<tt>PathType=1</tt>) is the standard path type. A SCION path has the following layout:</t>
          <figure anchor="_figure-5">
            <name>Layout of a standard SCION path</name>
            <artset>
              <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="464" width="528" viewBox="0 0 528 464" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                  <path d="M 8,64 L 8,432" fill="none" stroke="black"/>
                  <path d="M 520,64 L 520,432" fill="none" stroke="black"/>
                  <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                  <path d="M 8,96 L 520,96" fill="none" stroke="black"/>
                  <path d="M 8,144 L 520,144" fill="none" stroke="black"/>
                  <path d="M 8,192 L 520,192" fill="none" stroke="black"/>
                  <path d="M 8,240 L 520,240" fill="none" stroke="black"/>
                  <path d="M 8,304 L 520,304" fill="none" stroke="black"/>
                  <path d="M 8,368 L 520,368" fill="none" stroke="black"/>
                  <path d="M 8,432 L 520,432" fill="none" stroke="black"/>
                  <g class="text">
                    <text x="16" y="36">0</text>
                    <text x="176" y="36">1</text>
                    <text x="336" y="36">2</text>
                    <text x="496" y="36">3</text>
                    <text x="16" y="52">0</text>
                    <text x="32" y="52">1</text>
                    <text x="48" y="52">2</text>
                    <text x="64" y="52">3</text>
                    <text x="80" y="52">4</text>
                    <text x="96" y="52">5</text>
                    <text x="112" y="52">6</text>
                    <text x="128" y="52">7</text>
                    <text x="144" y="52">8</text>
                    <text x="160" y="52">9</text>
                    <text x="176" y="52">0</text>
                    <text x="192" y="52">1</text>
                    <text x="208" y="52">2</text>
                    <text x="224" y="52">3</text>
                    <text x="240" y="52">4</text>
                    <text x="256" y="52">5</text>
                    <text x="272" y="52">6</text>
                    <text x="288" y="52">7</text>
                    <text x="304" y="52">8</text>
                    <text x="320" y="52">9</text>
                    <text x="336" y="52">0</text>
                    <text x="352" y="52">1</text>
                    <text x="368" y="52">2</text>
                    <text x="384" y="52">3</text>
                    <text x="400" y="52">4</text>
                    <text x="416" y="52">5</text>
                    <text x="432" y="52">6</text>
                    <text x="448" y="52">7</text>
                    <text x="464" y="52">8</text>
                    <text x="480" y="52">9</text>
                    <text x="496" y="52">0</text>
                    <text x="512" y="52">1</text>
                    <text x="264" y="84">PathMetaHdr</text>
                    <text x="264" y="116">InfoField</text>
                    <text x="264" y="164">...</text>
                    <text x="264" y="212">InfoField</text>
                    <text x="260" y="260">HopField</text>
                    <text x="260" y="324">HopField</text>
                    <text x="264" y="388">...</text>
                  </g>
                </svg>
              </artwork>
              <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|                          PathMetaHdr                          |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|                           InfoField                           |
|                                                               |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|                              ...                              |
|                                                               |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|                           InfoField                           |
|                                                               |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|                           HopField                            |
|                                                               |
|                                                               |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|                           HopField                            |
|                                                               |
|                                                               |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|                              ...                              |
|                                                               |
|                                                               |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

]]></artwork>
            </artset>
          </figure>
          <t>It consists of a path meta header, up to 3 Info Fields and up to 64 Hop Fields.</t>
          <ul spacing="normal">
            <li>
              <t><tt>PathMetaHdr</tt> indicates the currently valid Info Field and Hop Field while the packet is traversing the network along the path, as well as the number of Hop Fields per segment.</t>
            </li>
            <li>
              <t><tt>InfoField</tt> equals the number of path segments that the path contains - there is one Info Field per path segment. Each Info Field contains basic information about the corresponding segment, such as a timestamp indicating the creation time. There are also two flags: one specifies whether the segment is to be traversed in construction direction, the other whether the first or last Hop Field in the segment represents a peering Hop Field.</t>
            </li>
            <li>
              <t><tt>HopField</tt> represents a hop through an AS on the path, with the ingress and egress interface identifiers for this AS. A Message Authentication Code (MAC) authenticates this information to prevent forgery.</t>
            </li>
          </ul>
          <t>The SCION header is created by extracting the required Info Fields and Hop Fields from the corresponding path segments, and this process is illustrated in <xref target="_figure-6"/> below. Note that ASes at the intersection of multiple segments are represented by two Hop Fields. Be aware that these Hop Fields are not equal!</t>
          <t>The Hop Field that represents the last Hop in the first segment (seen in the direction of travel) specifies only the ingress interface. However, in the hop Field that represents the first hop in the second segment (also in the direction of travel), only the egress interface will be defined. Thus, the two Hop Fields for this one AS build a full hop through the AS, specifying both the ingress and egress interface. As such, they bring the two adjacent segments together.</t>
          <figure anchor="_figure-6">
            <name>Path construction example</name>
            <artset>
              <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="656" width="504" viewBox="0 0 504 656" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                  <path d="M 8,48 L 8,208" fill="none" stroke="black"/>
                  <path d="M 24,64 L 24,192" fill="none" stroke="black"/>
                  <path d="M 72,64 L 72,192" fill="none" stroke="black"/>
                  <path d="M 88,48 L 88,72" fill="none" stroke="black"/>
                  <path d="M 88,184 L 88,208" fill="none" stroke="black"/>
                  <path d="M 112,176 L 112,432" fill="none" stroke="black"/>
                  <path d="M 128,144 L 128,400" fill="none" stroke="black"/>
                  <path d="M 144,112 L 144,368" fill="none" stroke="black"/>
                  <path d="M 160,80 L 160,272" fill="none" stroke="black"/>
                  <path d="M 184,48 L 184,176" fill="none" stroke="black"/>
                  <path d="M 184,208 L 184,264" fill="none" stroke="black"/>
                  <path d="M 184,280 L 184,360" fill="none" stroke="black"/>
                  <path d="M 184,440 L 184,624" fill="none" stroke="black"/>
                  <path d="M 200,64 L 200,160" fill="none" stroke="black"/>
                  <path d="M 200,224 L 200,608" fill="none" stroke="black"/>
                  <path d="M 248,64 L 248,160" fill="none" stroke="black"/>
                  <path d="M 248,224 L 248,608" fill="none" stroke="black"/>
                  <path d="M 264,48 L 264,72" fill="none" stroke="black"/>
                  <path d="M 264,152 L 264,176" fill="none" stroke="black"/>
                  <path d="M 264,208 L 264,296" fill="none" stroke="black"/>
                  <path d="M 264,344 L 264,456" fill="none" stroke="black"/>
                  <path d="M 264,600 L 264,624" fill="none" stroke="black"/>
                  <path d="M 288,80 L 288,104" fill="none" stroke="black"/>
                  <path d="M 288,152 L 288,304" fill="none" stroke="black"/>
                  <path d="M 304,112 L 304,136" fill="none" stroke="black"/>
                  <path d="M 304,152 L 304,328" fill="none" stroke="black"/>
                  <path d="M 304,344 L 304,464" fill="none" stroke="black"/>
                  <path d="M 320,144 L 320,328" fill="none" stroke="black"/>
                  <path d="M 320,344 L 320,496" fill="none" stroke="black"/>
                  <path d="M 344,48 L 344,208" fill="none" stroke="black"/>
                  <path d="M 360,64 L 360,192" fill="none" stroke="black"/>
                  <path d="M 408,64 L 408,192" fill="none" stroke="black"/>
                  <path d="M 424,48 L 424,72" fill="none" stroke="black"/>
                  <path d="M 424,184 L 424,208" fill="none" stroke="black"/>
                  <path d="M 448,80 L 448,104" fill="none" stroke="black"/>
                  <path d="M 448,184 L 448,336" fill="none" stroke="black"/>
                  <path d="M 464,112 L 464,136" fill="none" stroke="black"/>
                  <path d="M 464,184 L 464,528" fill="none" stroke="black"/>
                  <path d="M 480,144 L 480,168" fill="none" stroke="black"/>
                  <path d="M 480,184 L 480,560" fill="none" stroke="black"/>
                  <path d="M 496,176 L 496,592" fill="none" stroke="black"/>
                  <path d="M 8,48 L 88,48" fill="none" stroke="black"/>
                  <path d="M 184,48 L 264,48" fill="none" stroke="black"/>
                  <path d="M 344,48 L 424,48" fill="none" stroke="black"/>
                  <path d="M 24,64 L 72,64" fill="none" stroke="black"/>
                  <path d="M 200,64 L 248,64" fill="none" stroke="black"/>
                  <path d="M 360,64 L 408,64" fill="none" stroke="black"/>
                  <path d="M 80,80 L 160,80" fill="none" stroke="black"/>
                  <path d="M 256,80 L 288,80" fill="none" stroke="black"/>
                  <path d="M 416,80 L 448,80" fill="none" stroke="black"/>
                  <path d="M 24,96 L 72,96" fill="none" stroke="black"/>
                  <path d="M 200,96 L 248,96" fill="none" stroke="black"/>
                  <path d="M 360,96 L 408,96" fill="none" stroke="black"/>
                  <path d="M 80,112 L 144,112" fill="none" stroke="black"/>
                  <path d="M 256,112 L 304,112" fill="none" stroke="black"/>
                  <path d="M 416,112 L 464,112" fill="none" stroke="black"/>
                  <path d="M 24,128 L 72,128" fill="none" stroke="black"/>
                  <path d="M 200,128 L 248,128" fill="none" stroke="black"/>
                  <path d="M 360,128 L 408,128" fill="none" stroke="black"/>
                  <path d="M 80,144 L 128,144" fill="none" stroke="black"/>
                  <path d="M 256,144 L 320,144" fill="none" stroke="black"/>
                  <path d="M 416,144 L 480,144" fill="none" stroke="black"/>
                  <path d="M 24,160 L 72,160" fill="none" stroke="black"/>
                  <path d="M 200,160 L 248,160" fill="none" stroke="black"/>
                  <path d="M 360,160 L 408,160" fill="none" stroke="black"/>
                  <path d="M 80,176 L 112,176" fill="none" stroke="black"/>
                  <path d="M 184,176 L 264,176" fill="none" stroke="black"/>
                  <path d="M 416,176 L 496,176" fill="none" stroke="black"/>
                  <path d="M 24,192 L 72,192" fill="none" stroke="black"/>
                  <path d="M 360,192 L 408,192" fill="none" stroke="black"/>
                  <path d="M 8,208 L 88,208" fill="none" stroke="black"/>
                  <path d="M 184,208 L 264,208" fill="none" stroke="black"/>
                  <path d="M 344,208 L 424,208" fill="none" stroke="black"/>
                  <path d="M 200,224 L 248,224" fill="none" stroke="black"/>
                  <path d="M 200,256 L 248,256" fill="none" stroke="black"/>
                  <path d="M 160,272 L 192,272" fill="none" stroke="black"/>
                  <path d="M 200,288 L 248,288" fill="none" stroke="black"/>
                  <path d="M 256,304 L 288,304" fill="none" stroke="black"/>
                  <path d="M 200,320 L 248,320" fill="none" stroke="black"/>
                  <path d="M 256,336 L 448,336" fill="none" stroke="black"/>
                  <path d="M 200,352 L 248,352" fill="none" stroke="black"/>
                  <path d="M 144,368 L 192,368" fill="none" stroke="black"/>
                  <path d="M 200,384 L 248,384" fill="none" stroke="black"/>
                  <path d="M 128,400 L 192,400" fill="none" stroke="black"/>
                  <path d="M 200,416 L 248,416" fill="none" stroke="black"/>
                  <path d="M 112,432 L 192,432" fill="none" stroke="black"/>
                  <path d="M 200,448 L 248,448" fill="none" stroke="black"/>
                  <path d="M 256,464 L 304,464" fill="none" stroke="black"/>
                  <path d="M 200,480 L 248,480" fill="none" stroke="black"/>
                  <path d="M 256,496 L 320,496" fill="none" stroke="black"/>
                  <path d="M 200,512 L 248,512" fill="none" stroke="black"/>
                  <path d="M 256,528 L 464,528" fill="none" stroke="black"/>
                  <path d="M 200,544 L 248,544" fill="none" stroke="black"/>
                  <path d="M 256,560 L 480,560" fill="none" stroke="black"/>
                  <path d="M 200,576 L 248,576" fill="none" stroke="black"/>
                  <path d="M 256,592 L 496,592" fill="none" stroke="black"/>
                  <path d="M 200,608 L 248,608" fill="none" stroke="black"/>
                  <path d="M 184,624 L 264,624" fill="none" stroke="black"/>
                  <polygon class="arrowhead" points="264,592 252,586.4 252,597.6" fill="black" transform="rotate(180,256,592)"/>
                  <polygon class="arrowhead" points="264,560 252,554.4 252,565.6" fill="black" transform="rotate(180,256,560)"/>
                  <polygon class="arrowhead" points="264,528 252,522.4 252,533.6" fill="black" transform="rotate(180,256,528)"/>
                  <polygon class="arrowhead" points="264,496 252,490.4 252,501.6" fill="black" transform="rotate(180,256,496)"/>
                  <polygon class="arrowhead" points="264,464 252,458.4 252,469.6" fill="black" transform="rotate(180,256,464)"/>
                  <polygon class="arrowhead" points="264,336 252,330.4 252,341.6" fill="black" transform="rotate(180,256,336)"/>
                  <polygon class="arrowhead" points="264,304 252,298.4 252,309.6" fill="black" transform="rotate(180,256,304)"/>
                  <polygon class="arrowhead" points="200,432 188,426.4 188,437.6" fill="black" transform="rotate(0,192,432)"/>
                  <polygon class="arrowhead" points="200,400 188,394.4 188,405.6" fill="black" transform="rotate(0,192,400)"/>
                  <polygon class="arrowhead" points="200,368 188,362.4 188,373.6" fill="black" transform="rotate(0,192,368)"/>
                  <polygon class="arrowhead" points="200,272 188,266.4 188,277.6" fill="black" transform="rotate(0,192,272)"/>
                  <g class="text">
                    <text x="52" y="36">Up-Segment</text>
                    <text x="228" y="36">Core-Segment</text>
                    <text x="388" y="36">Down-Segment</text>
                    <text x="48" y="84">INF</text>
                    <text x="224" y="84">INF</text>
                    <text x="384" y="84">INF</text>
                    <text x="88" y="100">|</text>
                    <text x="264" y="100">|</text>
                    <text x="424" y="100">|</text>
                    <text x="44" y="116">HF</text>
                    <text x="220" y="116">HF</text>
                    <text x="380" y="116">HF</text>
                    <text x="88" y="132">|</text>
                    <text x="264" y="132">|</text>
                    <text x="288" y="132">|</text>
                    <text x="424" y="132">|</text>
                    <text x="448" y="132">|</text>
                    <text x="44" y="148">HF</text>
                    <text x="220" y="148">HF</text>
                    <text x="380" y="148">HF</text>
                    <text x="88" y="164">|</text>
                    <text x="424" y="164">|</text>
                    <text x="448" y="164">|</text>
                    <text x="464" y="164">|</text>
                    <text x="44" y="180">HF</text>
                    <text x="380" y="180">HF</text>
                    <text x="220" y="244">Meta</text>
                    <text x="224" y="276">INF</text>
                    <text x="224" y="308">INF</text>
                    <text x="264" y="324">|</text>
                    <text x="224" y="340">INF</text>
                    <text x="220" y="372">HF</text>
                    <text x="184" y="388">|</text>
                    <text x="220" y="404">HF</text>
                    <text x="184" y="420">|</text>
                    <text x="220" y="436">HF</text>
                    <text x="220" y="468">HF</text>
                    <text x="264" y="484">|</text>
                    <text x="84" y="500">Forwarding</text>
                    <text x="148" y="500">Path</text>
                    <text x="220" y="500">HF</text>
                    <text x="264" y="516">|</text>
                    <text x="220" y="532">HF</text>
                    <text x="264" y="548">|</text>
                    <text x="220" y="564">HF</text>
                    <text x="264" y="580">|</text>
                    <text x="220" y="596">HF</text>
                  </g>
                </svg>
              </artwork>
              <artwork type="ascii-art"><![CDATA[
    Up-Segment           Core-Segment        Down-Segment
   +---------+           +---------+         +---------+
   | +-----+ |           | +-----+ |         | +-----+ |
   | | INF |----------+  | | INF |----+      | | INF |----+
   | +-----+ |        |  | +-----+ |  |      | +-----+ |  |
   | | HF  |--------+ |  | | HF  |------+    | | HF  |------+
   | +-----+ |      | |  | +-----+ |  | |    | +-----+ |  | |
   | | HF  |------+ | |  | | HF  |--------+  | | HF  |--------+
   | +-----+ |    | | |  | +-----+ |  | | |  | +-----+ |  | | |
   | | HF  |----+ | | |  +---------+  | | |  | | HF  |----------+
   | +-----+ |  | | | |               | | |  | +-----+ |  | | | |
   +---------+  | | | |  +---------+  | | |  +---------+  | | | |
                | | | |  | +-----+ |  | | |               | | | |
                | | | |  | |Meta | |  | | |               | | | |
                | | | |  | +-----+ |  | | |               | | | |
                | | | +--->| INF | |  | | |               | | | |
                | | |    | +-----+ |  | | |               | | | |
                | | |    | | INF |<---+ | |               | | | |
                | | |    | +-----+ |    | |               | | | |
                | | |    | | INF |<-----------------------+ | | |
                | | |    | +-----+ |    | |                 | | |
                | | +----->| HF  | |    | |                 | | |
                | |      | +-----+ |    | |                 | | |
                | +------->| HF  | |    | |                 | | |
                |        | +-----+ |    | |                 | | |
                +--------->| HF  | |    | |                 | | |
                         | +-----+ |    | |                 | | |
                         | | HF  |<-----+ |                 | | |
                         | +-----+ |      |                 | | |
        Forwarding Path  | | HF  |<-------+                 | | |
                         | +-----+ |                        | | |
                         | | HF  |<-------------------------+ | |
                         | +-----+ |                          | |
                         | | HF  |<---------------------------+ |
                         | +-----+ |                            |
                         | | HF  |<-----------------------------+
                         | +-----+ |
                         +---------+
]]></artwork>
            </artset>
          </figure>
          <section anchor="PathMetaHdr">
            <name>Path Meta Header Field</name>
            <t>The 4-byte Path Meta Header field (<tt>PathMetaHdr</tt>) defines meta information about the SCION path that is contained in the path header. It has the following format:</t>
            <figure anchor="_figure-7">
              <name>SCION path type - Format of the Path Meta Header field</name>
              <artset>
                <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="128" width="528" viewBox="0 0 528 128" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                    <path d="M 8,64 L 8,96" fill="none" stroke="black"/>
                    <path d="M 40,64 L 40,96" fill="none" stroke="black"/>
                    <path d="M 136,64 L 136,96" fill="none" stroke="black"/>
                    <path d="M 232,64 L 232,96" fill="none" stroke="black"/>
                    <path d="M 328,64 L 328,96" fill="none" stroke="black"/>
                    <path d="M 424,64 L 424,96" fill="none" stroke="black"/>
                    <path d="M 520,64 L 520,96" fill="none" stroke="black"/>
                    <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                    <path d="M 8,96 L 520,96" fill="none" stroke="black"/>
                    <g class="text">
                      <text x="16" y="36">0</text>
                      <text x="176" y="36">1</text>
                      <text x="336" y="36">2</text>
                      <text x="496" y="36">3</text>
                      <text x="16" y="52">0</text>
                      <text x="32" y="52">1</text>
                      <text x="48" y="52">2</text>
                      <text x="64" y="52">3</text>
                      <text x="80" y="52">4</text>
                      <text x="96" y="52">5</text>
                      <text x="112" y="52">6</text>
                      <text x="128" y="52">7</text>
                      <text x="144" y="52">8</text>
                      <text x="160" y="52">9</text>
                      <text x="176" y="52">0</text>
                      <text x="192" y="52">1</text>
                      <text x="208" y="52">2</text>
                      <text x="224" y="52">3</text>
                      <text x="240" y="52">4</text>
                      <text x="256" y="52">5</text>
                      <text x="272" y="52">6</text>
                      <text x="288" y="52">7</text>
                      <text x="304" y="52">8</text>
                      <text x="320" y="52">9</text>
                      <text x="336" y="52">0</text>
                      <text x="352" y="52">1</text>
                      <text x="368" y="52">2</text>
                      <text x="384" y="52">3</text>
                      <text x="400" y="52">4</text>
                      <text x="416" y="52">5</text>
                      <text x="432" y="52">6</text>
                      <text x="448" y="52">7</text>
                      <text x="464" y="52">8</text>
                      <text x="480" y="52">9</text>
                      <text x="496" y="52">0</text>
                      <text x="512" y="52">1</text>
                      <text x="28" y="84">CI</text>
                      <text x="84" y="84">CurrHF</text>
                      <text x="184" y="84">RSV</text>
                      <text x="280" y="84">Seg0Len</text>
                      <text x="376" y="84">Seg1Len</text>
                      <text x="472" y="84">Seg2Len</text>
                    </g>
                  </svg>
                </artwork>
                <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
| CI|  CurrHF   |    RSV    |  Seg0Len  |  Seg1Len  |  Seg2Len  |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

]]></artwork>
              </artset>
            </figure>
            <ul spacing="normal">
              <li>
                <t><tt>CurrINF</tt> (shown as <tt>CI</tt> above): Specifies a 2-bits index (0-based) pointing to the current Info Field for the packet on its way through the network. For details, see <xref target="offset-calc"/> below.</t>
              </li>
              <li>
                <t><tt>CurrHF</tt>: Specifies a 6-bits index (0-based) pointing to the current Hop Field for the packet on its way through the network. For details, see <xref target="offset-calc"/> below. Note that the <tt>CurrHF</tt> index <bcp14>MUST</bcp14> point to a Hop Field that is part of the current path segment, as indicated by the <tt>CurrINF</tt> index.</t>
              </li>
            </ul>
            <t>Both indices are used by SCION routers when forwarding data traffic through the network. The SCION routers also increment the indexes if required. For more details, see <xref target="process-router"/>.</t>
            <ul spacing="normal">
              <li>
                <t><tt>Seg{0,1,2}Len</tt>: The number of Hop Fields in a given segment. Seg{i}Len &gt; 0 implies that segment <em>i</em> contains at least one Hop Field, which means that Info Field <em>i</em> exists. (If Seg{i}Len = 0 then segment <em>i</em> is empty, meaning that this path does not include segment <em>i</em>, and therefore there is no Info Field <em>i</em>.) The following rules apply:  </t>
                <ul spacing="normal">
                  <li>
                    <t>The total number of Hop Fields in an end-to-end path <bcp14>MUST</bcp14> be equal to the sum of all <tt>Seg{0,1,2}Len</tt> contained in this end-to-end path.</t>
                  </li>
                  <li>
                    <t>It is an error to have Seg{X}Len &gt; 0 AND Seg{Y}Len == 0, where 2 &gt;= <em>X</em> &gt; <em>Y</em> &gt;= 0. That is, if path segment Y is empty, the following path segment X <bcp14>MUST</bcp14> also be empty.</t>
                  </li>
                </ul>
              </li>
              <li>
                <t><tt>RSV</tt>: Unused and reserved for future use.</t>
              </li>
            </ul>
          </section>
          <section anchor="offset-calc">
            <name>Path Offset Calculations</name>
            <t>Path offset calculations enable SCION border routers to locate the currently active Info Field and Hop Field during packet processing.</t>
            <t>The following rules apply when calculating the path offsets:</t>
            <artwork><![CDATA[
   if Seg2Len > 0: NumINF = 3
   else if Seg1Len > 0: NumINF = 2
   else if Seg0Len > 0: NumINF = 1
   else: invalid
]]></artwork>
            <t>The offsets of the current Info Field and current Hop Field (relative to the end of the address header) are now calculated as:</t>
            <artwork><![CDATA[
   B = byte
   InfoFieldOffset = 4B + 8B * CurrINF
   HopFieldOffset = 4B + 8B.NumINF + 12B * CurrHF
]]></artwork>
            <t>To check that the current Hop Field is in the segment of the current Info Field, the <tt>CurrHF</tt> needs to be compared to the <tt>SegLen</tt> fields of the current and preceding Info Fields.</t>
          </section>
          <section anchor="inffield">
            <name>Info Field</name>
            <t>The 8-byte Info Field (<tt>InfoField</tt>) has the following format:</t>
            <figure anchor="_figure-8">
              <name>SCION path type - Format of the Info Field</name>
              <artset>
                <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="160" width="528" viewBox="0 0 528 160" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                    <path d="M 8,64 L 8,128" fill="none" stroke="black"/>
                    <path d="M 104,64 L 104,96" fill="none" stroke="black"/>
                    <path d="M 120,64 L 120,96" fill="none" stroke="black"/>
                    <path d="M 136,64 L 136,96" fill="none" stroke="black"/>
                    <path d="M 264,64 L 264,96" fill="none" stroke="black"/>
                    <path d="M 520,64 L 520,128" fill="none" stroke="black"/>
                    <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                    <path d="M 8,96 L 520,96" fill="none" stroke="black"/>
                    <path d="M 8,128 L 520,128" fill="none" stroke="black"/>
                    <g class="text">
                      <text x="16" y="36">0</text>
                      <text x="176" y="36">1</text>
                      <text x="336" y="36">2</text>
                      <text x="496" y="36">3</text>
                      <text x="16" y="52">0</text>
                      <text x="32" y="52">1</text>
                      <text x="48" y="52">2</text>
                      <text x="64" y="52">3</text>
                      <text x="80" y="52">4</text>
                      <text x="96" y="52">5</text>
                      <text x="112" y="52">6</text>
                      <text x="128" y="52">7</text>
                      <text x="144" y="52">8</text>
                      <text x="160" y="52">9</text>
                      <text x="176" y="52">0</text>
                      <text x="192" y="52">1</text>
                      <text x="208" y="52">2</text>
                      <text x="224" y="52">3</text>
                      <text x="240" y="52">4</text>
                      <text x="256" y="52">5</text>
                      <text x="272" y="52">6</text>
                      <text x="288" y="52">7</text>
                      <text x="304" y="52">8</text>
                      <text x="320" y="52">9</text>
                      <text x="336" y="52">0</text>
                      <text x="352" y="52">1</text>
                      <text x="368" y="52">2</text>
                      <text x="384" y="52">3</text>
                      <text x="400" y="52">4</text>
                      <text x="416" y="52">5</text>
                      <text x="432" y="52">6</text>
                      <text x="448" y="52">7</text>
                      <text x="464" y="52">8</text>
                      <text x="480" y="52">9</text>
                      <text x="496" y="52">0</text>
                      <text x="512" y="52">1</text>
                      <text x="56" y="84">RSV</text>
                      <text x="112" y="84">P</text>
                      <text x="128" y="84">C</text>
                      <text x="200" y="84">RSV</text>
                      <text x="384" y="84">Acc</text>
                      <text x="264" y="116">Timestamp</text>
                    </g>
                  </svg>
                </artwork>
                <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|    RSV    |P|C|      RSV      |             Acc               |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|                           Timestamp                           |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

]]></artwork>
              </artset>
            </figure>
            <ul spacing="normal">
              <li>
                <t><tt>RSV</tt>: Unused and reserved for future use.</t>
              </li>
              <li>
                <t><tt>P</tt>: Peering flag. If the flag has value "1", the segment represented by this Info Field contains a peering Hop Field, which requires special processing in the data plane. For more details, see <xref target="peerlink"/> and <xref target="packet-verif"/>.</t>
              </li>
              <li>
                <t><tt>C</tt>: Construction direction flag. If the flag has value "1", the Hop Fields in the segment represented by this Info Field are arranged in the direction they have been constructed during beaconing.</t>
              </li>
              <li>
                <t><tt>Acc</tt>: Accumulator. This updatable field/counter is <bcp14>REQUIRED</bcp14> for calculating the MAC in the data plane. For more details, see <xref target="auth-chained-macs"/>.</t>
              </li>
              <li>
                <t><tt>Timestamp</tt>: Timestamp created by the originator of the corresponding beacon. The timestamp is defined as the seconds since Epoch according to <xref target="POSIX.1-2024"/> Section 4.19, encoded as a 32-bit unsigned integer. This timestamp enables the validation of a Hop Field in the segment represented by this Info Field, by verifying the expiration time and MAC set in the Hop Field - the expiration time of a Hop Field is calculated relative to the timestamp. An Info field with a timestamp in the future is invalid, and for the purpose of validation, a timestamp is considered "future" if it is later than the locally available current time plus 337.5 seconds (i.e., the minimum time to live of a hop). This timestamp wraps around every 2^32 seconds (approximately 136 years) with the next wraparound occurring in year 2106. Care should be taken by implementations while computing validity during a wraparound.</t>
              </li>
            </ul>
          </section>
          <section anchor="hopfld">
            <name>Hop Field</name>
            <t>The 12-byte Hop Field (<tt>HopField</tt>) has the following format:</t>
            <figure anchor="_figure-9">
              <name>SCION path type - Format of the Hop Field</name>
              <artset>
                <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="192" width="528" viewBox="0 0 528 192" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                    <path d="M 8,64 L 8,160" fill="none" stroke="black"/>
                    <path d="M 104,64 L 104,96" fill="none" stroke="black"/>
                    <path d="M 120,64 L 120,96" fill="none" stroke="black"/>
                    <path d="M 136,64 L 136,96" fill="none" stroke="black"/>
                    <path d="M 264,64 L 264,128" fill="none" stroke="black"/>
                    <path d="M 520,64 L 520,160" fill="none" stroke="black"/>
                    <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                    <path d="M 8,96 L 520,96" fill="none" stroke="black"/>
                    <path d="M 8,128 L 264,128" fill="none" stroke="black"/>
                    <path d="M 8,160 L 520,160" fill="none" stroke="black"/>
                    <g class="text">
                      <text x="16" y="36">0</text>
                      <text x="176" y="36">1</text>
                      <text x="336" y="36">2</text>
                      <text x="496" y="36">3</text>
                      <text x="16" y="52">0</text>
                      <text x="32" y="52">1</text>
                      <text x="48" y="52">2</text>
                      <text x="64" y="52">3</text>
                      <text x="80" y="52">4</text>
                      <text x="96" y="52">5</text>
                      <text x="112" y="52">6</text>
                      <text x="128" y="52">7</text>
                      <text x="144" y="52">8</text>
                      <text x="160" y="52">9</text>
                      <text x="176" y="52">0</text>
                      <text x="192" y="52">1</text>
                      <text x="208" y="52">2</text>
                      <text x="224" y="52">3</text>
                      <text x="240" y="52">4</text>
                      <text x="256" y="52">5</text>
                      <text x="272" y="52">6</text>
                      <text x="288" y="52">7</text>
                      <text x="304" y="52">8</text>
                      <text x="320" y="52">9</text>
                      <text x="336" y="52">0</text>
                      <text x="352" y="52">1</text>
                      <text x="368" y="52">2</text>
                      <text x="384" y="52">3</text>
                      <text x="400" y="52">4</text>
                      <text x="416" y="52">5</text>
                      <text x="432" y="52">6</text>
                      <text x="448" y="52">7</text>
                      <text x="464" y="52">8</text>
                      <text x="480" y="52">9</text>
                      <text x="496" y="52">0</text>
                      <text x="512" y="52">1</text>
                      <text x="56" y="84">RSV</text>
                      <text x="112" y="84">I</text>
                      <text x="128" y="84">E</text>
                      <text x="200" y="84">ExpTime</text>
                      <text x="400" y="84">ConsIngress</text>
                      <text x="116" y="116">ConsEgress</text>
                      <text x="264" y="148">MAC</text>
                    </g>
                  </svg>
                </artwork>
                <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|    RSV    |I|E|    ExpTime    |           ConsIngress         |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|        ConsEgress             |                               |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+                               +
|                              MAC                              |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

]]></artwork>
              </artset>
            </figure>
            <ul spacing="normal">
              <li>
                <t><tt>RSV</tt>: Unused and reserved for future use.</t>
              </li>
              <li>
                <t><tt>I</tt>: The Ingress Router Alert flag. If this has value "1" and the packet is received on the interface with ID corresponding to the value of <tt>ConsIngress</tt>, the router <bcp14>SHOULD</bcp14> process the L4 payload in the packet.</t>
              </li>
              <li>
                <t><tt>E</tt>: The Egress Router Alert flag. If this has value "1" and the packet is received on the interface with ID corresponding to the value of <tt>ConsEgress</tt>, the router <bcp14>SHOULD</bcp14> process the L4 payload in the packet.</t>
              </li>
              <li>
                <t><tt>ExpTime</tt>: Expiration time of a Hop Field. This field is 1-byte long, and the expiration time specified in this field is relative and expressed in units of 256th of a day. An absolute expiration time in seconds is computed in combination with the <tt>Timestamp</tt> field (from the corresponding Info Field), as follows:  </t>
                <ul spacing="normal">
                  <li>
                    <t><tt>Timestamp</tt> + (1 + <tt>ExpTime</tt>) * (86400/256)</t>
                  </li>
                </ul>
              </li>
              <li>
                <t><tt>ConsIngress</tt>, <tt>ConsEgress</tt>: The 16-bits ingress/egress Interface IDs in construction direction, that is, the direction of beaconing.</t>
              </li>
              <li>
                <t><tt>MAC</tt>: The 6-byte Message Authentication Code to authenticate the Hop Field. For details on how this MAC is calculated, see <xref target="hf-mac-overview"/>.</t>
              </li>
            </ul>
            <t>The Ingress Router (respectively Egress Router) is the router owning the Ingress interface (respectively Egress interface) when the packet is traveling in the <em>construction direction</em> of the path segment (i.e., the direction of beaconing). When the packet is traveling in the opposite direction, the meanings are reversed.</t>
            <t>Router alert flags work similarly to <xref target="RFC2711"/> and allow a sender to address a specific router on the path without knowing its address. Processing the Layer 4 payload in the packet means that the router will treat the payload of the packet as a message to itself and parse it according to the value of the <tt>NextHdr</tt> field. Such messages include Traceroute Requests (see 'SCMP/Traceroute request' in <xref target="I-D.dekater-scion-controlplane"/>).</t>
            <t>Setting multiple router alert flags on a path <bcp14>SHOULD</bcp14> be avoided. This is because the router for which the corresponding Router Alert flag is set to "1" may process the request without further forwarding it along the path. Use cases that require multiple routers/hops on the path to process a packet <bcp14>SHOULD</bcp14> rely on a hop-by-hop extension (see <xref target="ext-header"/>).</t>
          </section>
        </section>
        <section anchor="onehop">
          <name>One-Hop Path Type</name>
          <t>Bootstrapping beaconing between neighboring ASes relies on the <tt>OneHopPath</tt> path type (<tt>PathType=2</tt>). This is necessary as neighbor ASes do not have a forwarding path before beaconing is started.</t>
          <t>A one-hop path has exactly one Info Field and two Hop Fields. Any entity with access to the AS forwarding key can create a valid info and Hop Field as described in <xref target="inffield"/> and <xref target="hopfld"/> respectively. The second Hop Field is created by the ingress SCION border router of the neighboring AS while processing the one-hop path. The appropriate Hop Field can be processed by a border router based on the source and destination address. In this context, the following rules apply:</t>
          <ul spacing="normal">
            <li>
              <t>At the source endpoint AS, <em>CurrHF := 0</em>.</t>
            </li>
            <li>
              <t>At the destination endpoint AS, <em>CurrHF := 1</em>.</t>
            </li>
          </ul>
          <t>Upon receiving a packet containing a one-hop path, the ingress border router of the destination AS fills in the <tt>ConsIngress</tt> field in the second Hop Field of the one-hop path with the ingress interface ID. It sets the <tt>ConsEgress</tt> field to the unspecified value 0, ensuring the path cannot be used beyond the destination AS. Then it calculates and appends the appropriate MAC for the Hop Field.</t>
        </section>
        <section anchor="reverse">
          <name>Path Reversal</name>
          <t>When a destination endpoint receives a SCION packet, it <bcp14>MAY</bcp14> use the path information in the SCION header for sending the reply packets. To reverse a path, the destination endpoint <bcp14>MUST</bcp14> perform the following steps:</t>
          <ol spacing="normal" type="1"><li>
              <t>Reverse the order of the Info Fields;</t>
            </li>
            <li>
              <t>Reverse the order of the Hop Fields;</t>
            </li>
            <li>
              <t>For each Info Field, negate the construction direction flag <tt>C</tt>; do not change the accumulator field <tt>Acc</tt>.</t>
            </li>
            <li>
              <t>In the <tt>PathMetaHdr</tt> field:  </t>
              <ul spacing="normal">
                <li>
                  <t>Set the <tt>CurrINF</tt> and <tt>CurrHF</tt> to "0".</t>
                </li>
                <li>
                  <t>Reverse the order of the non-zero <tt>SegLen</tt> fields.</t>
                </li>
              </ul>
            </li>
          </ol>
          <t>Note that the destination endpoint, upon receiving a first packet, is not aware of the path MTU. When using a reversed path, it should use a mechanism to estimate its MTU (e.g., MTU discovery or estimate MTU from the largest packet received).</t>
        </section>
      </section>
      <section anchor="ext-header">
        <name>Extension Headers</name>
        <t>SCION provides two types of extension headers:</t>
        <ul spacing="normal">
          <li>
            <t>The Hop-by-Hop Options header carries <bcp14>OPTIONAL</bcp14> information that <bcp14>MAY</bcp14> be examined and processed by every SCION router along a packet's delivery path. The Hop-by-Hop Options header is identified by value "200" in the <tt>NextHdr</tt> field of the SCION common header (see <xref target="common-header"/>).</t>
          </li>
          <li>
            <t>The End-to-End Options header carries <bcp14>OPTIONAL</bcp14> information that <bcp14>MAY</bcp14> be examined and processed by the sender and/or the receiving endpoints of the packet. The End-to-End Options header is identified by value "201" in the <tt>NextHdr</tt> field of the SCION common header (see <xref target="common-header"/>).</t>
          </li>
        </ul>
        <t>If both headers are present, the Hop-by-Hop Options header <bcp14>MUST</bcp14> come before the End-to-End Options header.</t>
        <t>The SCION extension headers are defined and used based on and similar to the IPv6 extensions as specified in Section 4 of <xref target="RFC8200"/>. The SCION Hop-by-Hop Options header and End-to-End Options header resemble the IPv6 Hop-by-Hop Options Header (section 4.3 in the RFC) and Destination Options Header (section 4.6) respectively.</t>
        <t>The SCION Hop-by-Hop Options and End-to-End Options headers are aligned to 4 bytes and have the following format:</t>
        <figure anchor="_figure-11">
          <name>Extension headers: Options header</name>
          <artset>
            <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="160" width="528" viewBox="0 0 528 160" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                <path d="M 8,64 L 8,128" fill="none" stroke="black"/>
                <path d="M 136,64 L 136,96" fill="none" stroke="black"/>
                <path d="M 264,64 L 264,96" fill="none" stroke="black"/>
                <path d="M 520,64 L 520,128" fill="none" stroke="black"/>
                <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                <path d="M 8,96 L 264,96" fill="none" stroke="black"/>
                <path d="M 8,128 L 520,128" fill="none" stroke="black"/>
                <g class="text">
                  <text x="16" y="36">0</text>
                  <text x="176" y="36">1</text>
                  <text x="336" y="36">2</text>
                  <text x="496" y="36">3</text>
                  <text x="16" y="52">0</text>
                  <text x="32" y="52">1</text>
                  <text x="48" y="52">2</text>
                  <text x="64" y="52">3</text>
                  <text x="80" y="52">4</text>
                  <text x="96" y="52">5</text>
                  <text x="112" y="52">6</text>
                  <text x="128" y="52">7</text>
                  <text x="144" y="52">8</text>
                  <text x="160" y="52">9</text>
                  <text x="176" y="52">0</text>
                  <text x="192" y="52">1</text>
                  <text x="208" y="52">2</text>
                  <text x="224" y="52">3</text>
                  <text x="240" y="52">4</text>
                  <text x="256" y="52">5</text>
                  <text x="272" y="52">6</text>
                  <text x="288" y="52">7</text>
                  <text x="304" y="52">8</text>
                  <text x="320" y="52">9</text>
                  <text x="336" y="52">0</text>
                  <text x="352" y="52">1</text>
                  <text x="368" y="52">2</text>
                  <text x="384" y="52">3</text>
                  <text x="400" y="52">4</text>
                  <text x="416" y="52">5</text>
                  <text x="432" y="52">6</text>
                  <text x="448" y="52">7</text>
                  <text x="464" y="52">8</text>
                  <text x="480" y="52">9</text>
                  <text x="496" y="52">0</text>
                  <text x="512" y="52">1</text>
                  <text x="72" y="84">NextHdr</text>
                  <text x="204" y="84">ExtLen</text>
                  <text x="392" y="84">Options</text>
                </g>
              </svg>
            </artwork>
            <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|    NextHdr    |     ExtLen    |            Options            |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+                               +
|                                                               |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

]]></artwork>
          </artset>
        </figure>
        <ul spacing="normal">
          <li>
            <t><tt>NextHdr</tt>: Unsigned 8-bit integer. Identifies the type of header immediately following the Hop-by-Hop/End-to-End Options header. Values of this field respect the Assigned SCION Protocol Numbers (see also <xref target="protnum"/>).</t>
          </li>
          <li>
            <t><tt>ExtLen</tt>: 8-bit unsigned integer. The length of the Hop-by-hop or End-to-end options header in 4-octet units, not including the first 4 octets. That is: <tt>ExtLen = uint8(((L + 2) / 4) - 1)</tt>, where <tt>L</tt> is the size of the header in bytes, assuming that <tt>L + 2</tt> is a multiple of 4.</t>
          </li>
          <li>
            <t><tt>Options</tt>: This is a variable-length field. The length of this field <bcp14>MUST</bcp14> be such that the complete length of the Hop-by-Hop/End-to-End Options header is an integer multiple of 4 bytes. This can be achieved by using options of type 0 or 1 (see <xref target="_table-4"/>). The <tt>Options</tt> field contains one or more Type-Length-Value (TLV) encoded options. For details, see <xref target="optfld"/>.</t>
          </li>
        </ul>
        <section anchor="optfld">
          <name>Options Field</name>
          <t>The <tt>Options</tt> field of the Hop-by-Hop Options and the End-to-End Options headers carries a variable number of options that are type-length-value (TLV) encoded. Each TLV-encoded option has the following format:</t>
          <figure anchor="_figure-12">
            <name>Options field: TLV-encoded options</name>
            <artset>
              <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="160" width="528" viewBox="0 0 528 160" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                  <path d="M 8,64 L 8,128" fill="none" stroke="black"/>
                  <path d="M 136,64 L 136,96" fill="none" stroke="black"/>
                  <path d="M 264,64 L 264,96" fill="none" stroke="black"/>
                  <path d="M 520,64 L 520,128" fill="none" stroke="black"/>
                  <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                  <path d="M 8,96 L 264,96" fill="none" stroke="black"/>
                  <path d="M 8,128 L 520,128" fill="none" stroke="black"/>
                  <g class="text">
                    <text x="16" y="36">0</text>
                    <text x="176" y="36">1</text>
                    <text x="336" y="36">2</text>
                    <text x="496" y="36">3</text>
                    <text x="16" y="52">0</text>
                    <text x="32" y="52">1</text>
                    <text x="48" y="52">2</text>
                    <text x="64" y="52">3</text>
                    <text x="80" y="52">4</text>
                    <text x="96" y="52">5</text>
                    <text x="112" y="52">6</text>
                    <text x="128" y="52">7</text>
                    <text x="144" y="52">8</text>
                    <text x="160" y="52">9</text>
                    <text x="176" y="52">0</text>
                    <text x="192" y="52">1</text>
                    <text x="208" y="52">2</text>
                    <text x="224" y="52">3</text>
                    <text x="240" y="52">4</text>
                    <text x="256" y="52">5</text>
                    <text x="272" y="52">6</text>
                    <text x="288" y="52">7</text>
                    <text x="304" y="52">8</text>
                    <text x="320" y="52">9</text>
                    <text x="336" y="52">0</text>
                    <text x="352" y="52">1</text>
                    <text x="368" y="52">2</text>
                    <text x="384" y="52">3</text>
                    <text x="400" y="52">4</text>
                    <text x="416" y="52">5</text>
                    <text x="432" y="52">6</text>
                    <text x="448" y="52">7</text>
                    <text x="464" y="52">8</text>
                    <text x="480" y="52">9</text>
                    <text x="496" y="52">0</text>
                    <text x="512" y="52">1</text>
                    <text x="72" y="84">OptType</text>
                    <text x="196" y="84">OptDataLen</text>
                    <text x="392" y="84">OptData</text>
                    <text x="256" y="116">.</text>
                    <text x="272" y="116">.</text>
                    <text x="288" y="116">.</text>
                  </g>
                </svg>
              </artwork>
              <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|    OptType    |  OptDataLen   |            OptData            |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+                               |
|                              . . .                            |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

]]></artwork>
            </artset>
          </figure>
          <ul spacing="normal">
            <li>
              <t><tt>OptType</tt>: 8-bit identifier of the type of option. The following option types are assigned to the SCION HBH/E2E Options header:</t>
            </li>
          </ul>
          <table anchor="_table-5">
            <name>Option types of SCION Options header</name>
            <thead>
              <tr>
                <th align="left">Decimal</th>
                <th align="left">Option Type</th>
              </tr>
            </thead>
            <tbody>
              <tr>
                <td align="left">0</td>
                <td align="left">Pad1 (see <xref target="pad1"/>)</td>
              </tr>
              <tr>
                <td align="left">1</td>
                <td align="left">PadN (see <xref target="padn"/>)</td>
              </tr>
              <tr>
                <td align="left">2</td>
                <td align="left">SCION Packet Authenticator Option.<br/> Only used by the End-to-End Options header (experimental).</td>
              </tr>
              <tr>
                <td align="left">253</td>
                <td align="left">Used for experimentation and testing</td>
              </tr>
              <tr>
                <td align="left">254</td>
                <td align="left">Used for experimentation and testing</td>
              </tr>
              <tr>
                <td align="left">255</td>
                <td align="left">Reserved</td>
              </tr>
            </tbody>
          </table>
          <ul spacing="normal">
            <li>
              <t><tt>OptDataLen</tt>: Unsigned 8-bit integer denoting the length of the <tt>OptData</tt> field of this option in bytes.</t>
            </li>
            <li>
              <t><tt>OptData</tt>: Variable-length field. Option-type specific data.</t>
            </li>
          </ul>
          <t>The options within a header <bcp14>MUST</bcp14> be processed strictly in the order they appear in the header. This is to prevent a receiver from scanning through the header looking for a specific option and processing this option prior to all preceding ones.</t>
          <t>Individual options may have specific alignment requirements to ensure that multibyte values within the <tt>OptData</tt> fields have natural boundaries. The alignment requirement of an option is specified using the notation "xn+y". This means that the <tt>OptType</tt> <bcp14>MUST</bcp14> appear at an integer multiple of x bytes from the start of the header, plus y bytes. For example:</t>
          <ul spacing="normal">
            <li>
              <t><tt>2n</tt>: means any 2-bytes offset from the start of the header.</t>
            </li>
            <li>
              <t><tt>4n+2</tt>: means any 4-bytes offset from the start of the header, plus 2 bytes.</t>
            </li>
          </ul>
          <t>There are two padding options to align subsequent options and to pad out the containing header to a multiple of 4 bytes in length. For details, see below. All SCION implementations <bcp14>MUST</bcp14> recognize these padding options.</t>
          <section anchor="pad1">
            <name>Pad1 Option</name>
            <t>Alignment requirement: none.</t>
            <figure anchor="_figure-13">
              <name>TLV-encoded options - Pad1 option</name>
              <artset>
                <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="128" width="520" viewBox="0 0 520 128" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                    <path d="M 8,64 L 8,96" fill="none" stroke="black"/>
                    <path d="M 136,64 L 136,96" fill="none" stroke="black"/>
                    <path d="M 8,64 L 136,64" fill="none" stroke="black"/>
                    <path d="M 8,96 L 136,96" fill="none" stroke="black"/>
                    <g class="text">
                      <text x="16" y="36">0</text>
                      <text x="176" y="36">1</text>
                      <text x="336" y="36">2</text>
                      <text x="496" y="36">3</text>
                      <text x="16" y="52">0</text>
                      <text x="32" y="52">1</text>
                      <text x="48" y="52">2</text>
                      <text x="64" y="52">3</text>
                      <text x="80" y="52">4</text>
                      <text x="96" y="52">5</text>
                      <text x="112" y="52">6</text>
                      <text x="128" y="52">7</text>
                      <text x="144" y="52">8</text>
                      <text x="160" y="52">9</text>
                      <text x="176" y="52">0</text>
                      <text x="192" y="52">1</text>
                      <text x="208" y="52">2</text>
                      <text x="224" y="52">3</text>
                      <text x="240" y="52">4</text>
                      <text x="256" y="52">5</text>
                      <text x="272" y="52">6</text>
                      <text x="288" y="52">7</text>
                      <text x="304" y="52">8</text>
                      <text x="320" y="52">9</text>
                      <text x="336" y="52">0</text>
                      <text x="352" y="52">1</text>
                      <text x="368" y="52">2</text>
                      <text x="384" y="52">3</text>
                      <text x="400" y="52">4</text>
                      <text x="416" y="52">5</text>
                      <text x="432" y="52">6</text>
                      <text x="448" y="52">7</text>
                      <text x="464" y="52">8</text>
                      <text x="480" y="52">9</text>
                      <text x="496" y="52">0</text>
                      <text x="512" y="52">1</text>
                      <text x="72" y="84">0</text>
                    </g>
                  </svg>
                </artwork>
                <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+
|       0       |
+-+-+-+-+-+-+-+-+

]]></artwork>
              </artset>
            </figure>
            <t><strong>Note:</strong> The format of the Pad1 option is a special case - it does not have length and value fields.</t>
            <t>The Pad1 option inserts 1 byte of padding into the <tt>Options</tt> field of an extension header. If more than one byte of padding is required, the PadN option <bcp14>MUST</bcp14> be used.</t>
          </section>
          <section anchor="padn">
            <name>PadN Option</name>
            <t>Alignment requirement: none.</t>
            <figure anchor="_figure-14">
              <name>TLV-encoded options - PadN option</name>
              <artset>
                <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="160" width="528" viewBox="0 0 528 160" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                    <path d="M 8,64 L 8,128" fill="none" stroke="black"/>
                    <path d="M 136,64 L 136,96" fill="none" stroke="black"/>
                    <path d="M 264,64 L 264,96" fill="none" stroke="black"/>
                    <path d="M 520,64 L 520,128" fill="none" stroke="black"/>
                    <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                    <path d="M 8,96 L 264,96" fill="none" stroke="black"/>
                    <path d="M 8,128 L 520,128" fill="none" stroke="black"/>
                    <g class="text">
                      <text x="16" y="36">0</text>
                      <text x="176" y="36">1</text>
                      <text x="336" y="36">2</text>
                      <text x="496" y="36">3</text>
                      <text x="16" y="52">0</text>
                      <text x="32" y="52">1</text>
                      <text x="48" y="52">2</text>
                      <text x="64" y="52">3</text>
                      <text x="80" y="52">4</text>
                      <text x="96" y="52">5</text>
                      <text x="112" y="52">6</text>
                      <text x="128" y="52">7</text>
                      <text x="144" y="52">8</text>
                      <text x="160" y="52">9</text>
                      <text x="176" y="52">0</text>
                      <text x="192" y="52">1</text>
                      <text x="208" y="52">2</text>
                      <text x="224" y="52">3</text>
                      <text x="240" y="52">4</text>
                      <text x="256" y="52">5</text>
                      <text x="272" y="52">6</text>
                      <text x="288" y="52">7</text>
                      <text x="304" y="52">8</text>
                      <text x="320" y="52">9</text>
                      <text x="336" y="52">0</text>
                      <text x="352" y="52">1</text>
                      <text x="368" y="52">2</text>
                      <text x="384" y="52">3</text>
                      <text x="400" y="52">4</text>
                      <text x="416" y="52">5</text>
                      <text x="432" y="52">6</text>
                      <text x="448" y="52">7</text>
                      <text x="464" y="52">8</text>
                      <text x="480" y="52">9</text>
                      <text x="496" y="52">0</text>
                      <text x="512" y="52">1</text>
                      <text x="72" y="84">1</text>
                      <text x="196" y="84">OptDataLen</text>
                      <text x="392" y="84">OptData</text>
                      <text x="256" y="116">.</text>
                      <text x="272" y="116">.</text>
                      <text x="288" y="116">.</text>
                    </g>
                  </svg>
                </artwork>
                <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|       1       |  OptDataLen   |            OptData            |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+                               +
|                              . . .                            |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

]]></artwork>
              </artset>
            </figure>
            <t>The PadN option inserts two or more bytes of padding into the <tt>Options</tt> field of an extension header. For N bytes of padding, the <tt>OptDataLen</tt> field contains the value N-2, and the <tt>OptData</tt> consists of N-2 zero-valued bytes.</t>
          </section>
        </section>
      </section>
      <section anchor="pseudo">
        <name>Pseudo Header for Upper-Layer Checksum</name>
        <t>The SCION Data Plane does not provide payload integrity protection, as further clarified in <xref target="payload-integrity"/>.
Should any transport or other upper-layer protocols compute a checksum of the SCION header, then they <bcp14>SHOULD</bcp14> use the following pseudo header:</t>
        <figure anchor="_figure-15">
          <name>Layout of the pseudo header for the upper-layer checksum</name>
          <artset>
            <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="352" width="624" viewBox="0 0 624 352" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                <path d="M 8,64 L 8,320" fill="none" stroke="black"/>
                <path d="M 264,64 L 264,96" fill="none" stroke="black"/>
                <path d="M 264,128 L 264,160" fill="none" stroke="black"/>
                <path d="M 392,288 L 392,320" fill="none" stroke="black"/>
                <path d="M 520,64 L 520,320" fill="none" stroke="black"/>
                <path d="M 552,64 L 552,256" fill="none" stroke="black"/>
                <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                <path d="M 536,64 L 552,64" fill="none" stroke="black"/>
                <path d="M 8,96 L 264,96" fill="none" stroke="black"/>
                <path d="M 8,128 L 520,128" fill="none" stroke="black"/>
                <path d="M 8,160 L 264,160" fill="none" stroke="black"/>
                <path d="M 8,192 L 520,192" fill="none" stroke="black"/>
                <path d="M 8,224 L 520,224" fill="none" stroke="black"/>
                <path d="M 8,256 L 520,256" fill="none" stroke="black"/>
                <path d="M 536,256 L 552,256" fill="none" stroke="black"/>
                <path d="M 8,288 L 520,288" fill="none" stroke="black"/>
                <path d="M 8,320 L 520,320" fill="none" stroke="black"/>
                <polygon class="arrowhead" points="544,256 532,250.4 532,261.6" fill="black" transform="rotate(180,536,256)"/>
                <polygon class="arrowhead" points="544,64 532,58.4 532,69.6" fill="black" transform="rotate(180,536,64)"/>
                <g class="text">
                  <text x="16" y="36">0</text>
                  <text x="176" y="36">1</text>
                  <text x="336" y="36">2</text>
                  <text x="496" y="36">3</text>
                  <text x="16" y="52">0</text>
                  <text x="32" y="52">1</text>
                  <text x="48" y="52">2</text>
                  <text x="64" y="52">3</text>
                  <text x="80" y="52">4</text>
                  <text x="96" y="52">5</text>
                  <text x="112" y="52">6</text>
                  <text x="128" y="52">7</text>
                  <text x="144" y="52">8</text>
                  <text x="160" y="52">9</text>
                  <text x="176" y="52">0</text>
                  <text x="192" y="52">1</text>
                  <text x="208" y="52">2</text>
                  <text x="224" y="52">3</text>
                  <text x="240" y="52">4</text>
                  <text x="256" y="52">5</text>
                  <text x="272" y="52">6</text>
                  <text x="288" y="52">7</text>
                  <text x="304" y="52">8</text>
                  <text x="320" y="52">9</text>
                  <text x="336" y="52">0</text>
                  <text x="352" y="52">1</text>
                  <text x="368" y="52">2</text>
                  <text x="384" y="52">3</text>
                  <text x="400" y="52">4</text>
                  <text x="416" y="52">5</text>
                  <text x="432" y="52">6</text>
                  <text x="448" y="52">7</text>
                  <text x="464" y="52">8</text>
                  <text x="480" y="52">9</text>
                  <text x="496" y="52">0</text>
                  <text x="512" y="52">1</text>
                  <text x="132" y="84">DstISD</text>
                  <text x="264" y="116">DstAS</text>
                  <text x="132" y="148">SrcISD</text>
                  <text x="584" y="148">SCION</text>
                  <text x="592" y="164">address</text>
                  <text x="264" y="180">SrcAS</text>
                  <text x="588" y="180">header</text>
                  <text x="216" y="212">DstHostAddr</text>
                  <text x="272" y="212">(</text>
                  <text x="316" y="212">variable</text>
                  <text x="372" y="212">Len.</text>
                  <text x="400" y="212">)</text>
                  <text x="216" y="244">SrcHostAddr</text>
                  <text x="272" y="244">(</text>
                  <text x="316" y="244">variable</text>
                  <text x="372" y="244">Len.</text>
                  <text x="400" y="244">)</text>
                  <text x="216" y="276">Upper-Layer</text>
                  <text x="292" y="276">Packet</text>
                  <text x="348" y="276">Length</text>
                  <text x="204" y="308">zero</text>
                  <text x="428" y="308">Next</text>
                  <text x="476" y="308">Header</text>
                </g>
              </svg>
            </artwork>
            <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ <-+
|            DstISD             |                               |   |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+                               +   |
|                             DstAS                             |   |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+   |
|            SrcISD             |                               |   | SCION
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+                               +   | address
|                             SrcAS                             |   | header
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+   |
|                    DstHostAddr ( variable Len. )              |   |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+   |
|                    SrcHostAddr ( variable Len. )              |   |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ <-+
|                    Upper-Layer Packet Length                  |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
|                      zero                     |  Next Header  |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

]]></artwork>
          </artset>
        </figure>
        <ul spacing="normal">
          <li>
            <t><tt>DstISD</tt>, <tt>SrcISD</tt>, <tt>DstAS</tt>, <tt>SrcAS</tt>, <tt>DstHostAddr</tt>, <tt>SrcHostAddr</tt>: These values are taken from the SCION address header.</t>
          </li>
          <li>
            <t><tt>Upper-Layer Packet Length</tt>: The length of the upper-layer header and data. Some upper-layer protocols define headers that carry the length information explicitly (e.g., UDP) and this information is used as the upper-layer packet length in the pseudo header for these protocols. The remaining protocols, which do not carry the length information directly, use the value from the <tt>PayloadLen</tt> field in the SCION common header, minus the sum of the extension header lengths.</t>
          </li>
          <li>
            <t><tt>Next Header</tt>: The protocol identifier associated with the upper-layer protocol (e.g., 17 for UDP - see also <xref target="protnum"/>). This field can differ from the <tt>NextHdr</tt> field in the SCION common header, if extensions are present.</t>
          </li>
        </ul>
        <t>This pseudo-header is used in current implementations of UDP on top of SCION. However, as checksums across layers are not recommended their use is discouraged in future revisions.</t>
      </section>
    </section>
    <section anchor="life-of-a-packet">
      <name>Life of a SCION Data Packet</name>
      <t>This section describes the life of a SCION packet: how it is created at its source endpoint, passes through a number of SCION routers, and finally reaches its destination endpoint.</t>
      <section anchor="example-topology">
        <name>Example Topology</name>
        <figure anchor="_figure-16">
          <name>Topology used in examples below.</name>
          <artset>
            <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="448" width="528" viewBox="0 0 528 448" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                <path d="M 8,256 L 8,432" fill="none" stroke="black"/>
                <path d="M 56,320 L 56,352" fill="none" stroke="black"/>
                <path d="M 96,240 L 96,272" fill="none" stroke="black"/>
                <path d="M 112,160 L 112,240" fill="none" stroke="black"/>
                <path d="M 112,272 L 112,320" fill="none" stroke="black"/>
                <path d="M 128,240 L 128,272" fill="none" stroke="black"/>
                <path d="M 136,144 L 136,176" fill="none" stroke="black"/>
                <path d="M 152,32 L 152,144" fill="none" stroke="black"/>
                <path d="M 152,176 L 152,208" fill="none" stroke="black"/>
                <path d="M 160,320 L 160,352" fill="none" stroke="black"/>
                <path d="M 168,144 L 168,176" fill="none" stroke="black"/>
                <path d="M 216,256 L 216,432" fill="none" stroke="black"/>
                <path d="M 256,128 L 256,160" fill="none" stroke="black"/>
                <path d="M 296,256 L 296,432" fill="none" stroke="black"/>
                <path d="M 344,112 L 344,144" fill="none" stroke="black"/>
                <path d="M 352,320 L 352,352" fill="none" stroke="black"/>
                <path d="M 360,32 L 360,112" fill="none" stroke="black"/>
                <path d="M 360,144 L 360,208" fill="none" stroke="black"/>
                <path d="M 376,112 L 376,144" fill="none" stroke="black"/>
                <path d="M 384,240 L 384,272" fill="none" stroke="black"/>
                <path d="M 400,128 L 400,240" fill="none" stroke="black"/>
                <path d="M 400,272 L 400,320" fill="none" stroke="black"/>
                <path d="M 416,240 L 416,272" fill="none" stroke="black"/>
                <path d="M 456,320 L 456,352" fill="none" stroke="black"/>
                <path d="M 504,256 L 504,432" fill="none" stroke="black"/>
                <path d="M 152,32 L 360,32" fill="none" stroke="black"/>
                <path d="M 344,112 L 376,112" fill="none" stroke="black"/>
                <path d="M 256,128 L 344,128" fill="none" stroke="black"/>
                <path d="M 376,128 L 400,128" fill="none" stroke="black"/>
                <path d="M 136,144 L 168,144" fill="none" stroke="black"/>
                <path d="M 344,144 L 376,144" fill="none" stroke="black"/>
                <path d="M 112,160 L 136,160" fill="none" stroke="black"/>
                <path d="M 168,160 L 256,160" fill="none" stroke="black"/>
                <path d="M 136,176 L 168,176" fill="none" stroke="black"/>
                <path d="M 152,208 L 360,208" fill="none" stroke="black"/>
                <path d="M 96,240 L 128,240" fill="none" stroke="black"/>
                <path d="M 384,240 L 416,240" fill="none" stroke="black"/>
                <path d="M 8,256 L 96,256" fill="none" stroke="black"/>
                <path d="M 128,256 L 216,256" fill="none" stroke="black"/>
                <path d="M 296,256 L 384,256" fill="none" stroke="black"/>
                <path d="M 416,256 L 504,256" fill="none" stroke="black"/>
                <path d="M 96,272 L 128,272" fill="none" stroke="black"/>
                <path d="M 384,272 L 416,272" fill="none" stroke="black"/>
                <path d="M 56,320 L 160,320" fill="none" stroke="black"/>
                <path d="M 352,320 L 456,320" fill="none" stroke="black"/>
                <path d="M 56,352 L 160,352" fill="none" stroke="black"/>
                <path d="M 352,352 L 456,352" fill="none" stroke="black"/>
                <path d="M 8,432 L 216,432" fill="none" stroke="black"/>
                <path d="M 296,432 L 504,432" fill="none" stroke="black"/>
                <circle cx="112" cy="224" r="6" class="opendot" fill="white" stroke="black"/>
                <circle cx="400" cy="224" r="6" class="opendot" fill="white" stroke="black"/>
                <g class="text">
                  <text x="204" y="68">Core</text>
                  <text x="236" y="68">AS</text>
                  <text x="284" y="68">ff00:0:1</text>
                  <text x="420" y="84">(1-ff00:0:1,</text>
                  <text x="428" y="100">198.51.100.17)</text>
                  <text x="284" y="116">198.51.100.4</text>
                  <text x="400" y="116">i1b</text>
                  <text x="356" y="132">R3</text>
                  <text x="112" y="148">i1a</text>
                  <text x="148" y="164">R2</text>
                  <text x="228" y="180">198.51.100.1</text>
                  <text x="460" y="212">(1-ff00:0:3,</text>
                  <text x="468" y="228">198.51.100.18)</text>
                  <text x="72" y="244">i2a</text>
                  <text x="440" y="244">i3a</text>
                  <text x="108" y="260">R1</text>
                  <text x="396" y="260">R4</text>
                  <text x="164" y="292">203.0.113.17</text>
                  <text x="444" y="292">192.0.2.34</text>
                  <text x="100" y="340">Endpoint</text>
                  <text x="144" y="340">A</text>
                  <text x="396" y="340">Endpoint</text>
                  <text x="440" y="340">B</text>
                  <text x="108" y="372">1-ff00:0:2,203.0.113.6</text>
                  <text x="396" y="372">1-ff00:0:3,192.0.2.7</text>
                  <text x="76" y="404">AS</text>
                  <text x="124" y="404">ff00:0:2</text>
                  <text x="364" y="404">AS</text>
                  <text x="412" y="404">ff00:0:3</text>
                </g>
              </svg>
            </artwork>
            <artwork type="ascii-art"><![CDATA[
                  +-------------------------+
                  |                         |
                  |    Core AS ff00:0:1     |
                  |                         | (1-ff00:0:1,
                  |                         | 198.51.100.17)
                  |          198.51.100.4 +-+-+ i1b
                  |            +----------+R3 +--+
            i1a +-+-+          |          +-+-+  |
             +--+R2 +----------+            |    |
             |  +-+-+ 198.51.100.1          |    |
             |    |                         |    |
             |    +-------------------------+    | (1-ff00:0:3,
             o                                   o 198.51.100.18)
       i2a +-+-+                               +-+-+ i3a
+----------+R1 +----------+         +----------+R4 +----------+
|          +-+-+          |         |          +-+-+          |
|            |203.0.113.17|         |            |192.0.2.34  |
|            |            |         |            |            |
|     +------+-----+      |         |      +-----+------+     |
|     | Endpoint A |      |         |      | Endpoint B |     |
|     +------------+      |         |      +------------+     |
| 1-ff00:0:2,203.0.113.6  |         |  1-ff00:0:3,192.0.2.7   |
|                         |         |                         |
|       AS ff00:0:2       |         |       AS ff00:0:3       |
|                         |         |                         |
+-------------------------+         +-------------------------+
]]></artwork>
          </artset>
        </figure>
        <ul spacing="normal">
          <li>
            <t>R1, R2, R3, R4 are SCION routers, deployed at the edge of their AS. Their interface IDs are represented close to their interfaces (e.g.,, i2a for R1).</t>
          </li>
          <li>
            <t>AS ff00:0:1 is a core AS, ASes ff00:0:2 and ff00:0:3 are non-core. All ASes are part of ISD 1.</t>
          </li>
          <li>
            <t>Endpoint A is the source endpoint and it is in AS ff00:0:2.</t>
          </li>
          <li>
            <t>Endpoint B the destination endpoint and it is in AS ff00:0:3.</t>
          </li>
          <li>
            <t>both endpoints run a native SCION network stack. They communicate with their AS router on an UDP/IP underlay on destination UDP port 50000. This and other UDP/IP underlay ports used in this section are purely illustrative. They are not assigned, and cannot be assigned from the Dynamic Ports range.</t>
          </li>
          <li>
            <t>the example packet carries a UDP/SCION payload with destination port 443. This payload is omitted for brevity.</t>
          </li>
        </ul>
        <t>Since this example consists of only one ISD and one core AS, the end-to-end path only includes an up-path and down-path segment. The forwarding logic is uniform across intra- and inter-ISD scenarios. A scenario with more core ASes and/or ISDs would use an additional core path segment or a peering link.</t>
      </section>
      <section anchor="source-endpoint-path-lookup-and-segment-combination">
        <name>Source Endpoint: Path Lookup and Segment Combination</name>
        <t>To create an end-to-end SCION forwarding path, Endpoint A first queries its own AS ff00:0:2 control service for up segments to the core AS in its ISD. The AS ff00:0:2 control service returns up segments from AS ff00:0:2 to the ISD core AS ff00:0:1. Endpoint A also queries its AS ff00:0:2 control service for a down segment from its ISD core AS ff00:0:1 to AS ff00:0:3, in which Endpoint B is located. The AS ff00:0:2 control service will return down segments from the ISD core down to AS ff00:0:3. The path segments consist of Hop Fields that carry the ingress and egress interfaces of each AS (e.g., i2a, i1a, ...), as described in detail in <xref target="header"/> - (x,y) represents one Hop Field.</t>
        <t>For more details on the lookup of path segments, see 'Path Lookup' in <xref target="I-D.dekater-scion-controlplane"/>.</t>
        <t>Based on its own selection criteria, Endpoint A selects the up segment (0,i2a)(i1a,0) and the down segment (0,i1b)(i3a,0) from the path segments returned by its own AS ff00:0:2 control service.</t>
        <t>To obtain an end-to-end forwarding path from the source AS to the destination AS, Endpoint A combines the two path segments into the resulting SCION forwarding path, which contains the two Info Fields <em>IF1</em> and <em>IF2</em> and the Hop Fields (0,i2a), (i1a,0), (0,i1b), and (i3a,0).</t>
        <t><strong>Note:</strong> As this brief sample path does not contain a core segment, the end-to-end path only consists of two path segments.</t>
        <t>Endpoint A now adds this end-to-end forwarding path to the header of the packet that it wants to send to Endpoint B, and starts transferring the packet.</t>
      </section>
      <section anchor="intermediate-routers-forwarding-and-header-snapshots">
        <name>Intermediate Routers: Forwarding and Header Snapshots</name>
        <t>This section shows simplified snapshots of the packet header at each hop of the example topology. These snapshots are depicted in tables and they show the most relevant information of the header, including the SCION path and underlay IP encapsulation for local communication.</t>
        <t>The current Info Field (with metadata on the current path segment) in the SCION header is depicted as <em>italic</em> in the tables. The current Hop Field, representing the current AS, is shown <strong>bold</strong>. The snapshot tables also include references to IP/UDP addresses. In this context, words "ingress" and "egress" refer to the direction of travel the SCION packet.</t>
        <ul spacing="normal">
          <li>
            <t><em>Step 1 -</em> <strong>A-&gt;R1</strong>: <br/> The SCION Endpoint A in AS ff00:0:2 creates a new SCION packet destined for destination Endpoint B in AS ff00:0:3. Endpoint A sends the packet (for the chosen forwarding path) to the next SCION router as provided by its control service, which is in this case router R1. Endpoint A encapsulates the SCION packet into an underlay UDP/IPv4 header for the local delivery to router R1, utilizing AS ff00:0:2's internal routing protocol. The current Info Field is <em>IF1</em>. Upon receiving the packet, router R1 will forward the packet on the egress interface that Endpoint A has included into the first Hop Field of the SCION header.</t>
          </li>
        </ul>
        <table>
          <name>Example: snapshot header - step 1 - A-&gt;R1</name>
          <thead>
            <tr>
              <th align="left">Field</th>
              <th align="left">Value</th>
              <th align="left">Description</th>
            </tr>
          </thead>
          <tbody>
            <tr>
              <td align="left">SCION addr.</td>
              <td align="left">SRC = 1-ff00:0:2,203.0.113.6 <br/> DST = 1-ff00:0:3,192.0.2.7</td>
              <td align="left">Endpoint A <br/> Endpoint B</td>
            </tr>
            <tr>
              <td align="left">SCION path</td>
              <td align="left">- <em>IF1</em> <strong>(0,i2a)</strong> (i1a,0) <br/> - IF2 (0,i1b) (i3a,0)</td>
              <td align="left"> </td>
            </tr>
            <tr>
              <td align="left">UDP port</td>
              <td align="left">SRC = 52475  <br/> DST = 50000</td>
              <td align="left"> </td>
            </tr>
            <tr>
              <td align="left">IP</td>
              <td align="left">SRC = 203.0.113.6 <br/> DST = 203.0.113.17</td>
              <td align="left">Endpoint A <br/>  Router R1</td>
            </tr>
            <tr>
              <td align="left">Link layer</td>
              <td align="left">SRC=A <br/> DST=R1</td>
              <td align="left"> </td>
            </tr>
          </tbody>
        </table>
        <ul spacing="normal">
          <li>
            <t><em>Step 2 -</em> <strong>R1-&gt;R2</strong>: <br/> Router R1 inspects the SCION header and considers the relevant Info Field of the specified SCION path, which is the Info Field indicated by the current Info Field pointer. In this case, it is the first Info Field <em>IF1</em>. The current Hop Field is the first Hop Field (0,i2a), which instructs router R1 to forward the packet on its interface i2a. After reading the current Hop Field, router R1 moves the pointer forward by one position to the second Hop Field (i1a,0).  </t>
            <t>
The link shown here is an example of not using a UDP/IP underlay. Although most implementations use such an encapsulation, SCION only requires link-layer connectivity. What is used for one given inter-AS link is a function of the available implementations at each end, the available infrastructure, and the joint preference of the two ASes administrators.</t>
          </li>
        </ul>
        <table>
          <name>Example: snapshot header - step 2 - R1 -&gt; R2</name>
          <thead>
            <tr>
              <th align="left">Field</th>
              <th align="left">Value</th>
              <th align="left">Description</th>
            </tr>
          </thead>
          <tbody>
            <tr>
              <td align="left">SCION addr.</td>
              <td align="left">SRC = 1-ff00:0:2,203.0.113.6 <br/> DST = 1-ff00:0:3,192.0.2.7</td>
              <td align="left">Endpoint A <br/> Endpoint B</td>
            </tr>
            <tr>
              <td align="left">SCION path</td>
              <td align="left">- <em>IF1</em> (0,i2a) <strong>(i1a,0)</strong>  <br/>  - IF2 (0,i1b) (i3a,0)</td>
              <td align="left"> </td>
            </tr>
            <tr>
              <td align="left">Link layer</td>
              <td align="left">SRC=R1 <br/> DST=R2</td>
              <td align="left"> </td>
            </tr>
          </tbody>
        </table>
        <ul spacing="normal">
          <li>
            <t><em>Step 3 -</em> <strong>R2-&gt;R3</strong>: <br/> When receiving the packet, router R2 of Core AS ff00:0:1 checks whether the packet has been received through the ingress interface i1a as specified by the current Hop Field, otherwise R2 drops the packet. The router notices that it has consumed the last Hop Field of the current path segment and then moves the pointer from the current Info Field to the next Info Field <em>IF2</em>. The corresponding current Hop Field is (0,i1b), which contains egress interface i1b. The router maps the i1b interface ID to egress router R3, and encapsulates the SCION packet inside an intra-AS underlay IP packet with the address of router R3 as the underlay destination.</t>
          </li>
        </ul>
        <table>
          <name>Example: snapshot header - step 3 -  R2 -&gt; R3</name>
          <thead>
            <tr>
              <th align="left">Field</th>
              <th align="left">Value</th>
              <th align="left">Description</th>
            </tr>
          </thead>
          <tbody>
            <tr>
              <td align="left">SCION addr.</td>
              <td align="left">SRC = 1-ff00:0:2,203.0.113.6 <br/> DST = 1-ff00:0:3,192.0.2.7</td>
              <td align="left">Endpoint A <br/> Endpoint B</td>
            </tr>
            <tr>
              <td align="left">SCION path</td>
              <td align="left">- IF1 (0,i2a) (i1a,0) <br/>   - <em>IF2</em> <strong>(0,i1b)</strong> (i3a,0)</td>
              <td align="left"> </td>
            </tr>
            <tr>
              <td align="left">UDP port</td>
              <td align="left">SRC = 51000 <br/> DST = 51002</td>
              <td align="left"> </td>
            </tr>
            <tr>
              <td align="left">IP</td>
              <td align="left">SRC = 198.51.100.1 <br/> DST = 198.51.100.4</td>
              <td align="left">Router R2 <br/> Router R3</td>
            </tr>
            <tr>
              <td align="left">Link layer</td>
              <td align="left">SRC=R2 <br/> DST=R3</td>
              <td align="left"> </td>
            </tr>
          </tbody>
        </table>
        <ul spacing="normal">
          <li>
            <t><em>Step 4 -</em> <strong>R3-&gt;R4</strong>: <br/> router R3 inspects the current Hop Field in the SCION header, uses interface i1b to forward the packet to its neighbor SCION router R4 of AS ff00:0:3, and moves the current hop-field pointer forward. It adds an IP header to reach router R4.</t>
          </li>
        </ul>
        <table>
          <name>Example: snapshot header - step 4 - R3 -&gt; R4</name>
          <thead>
            <tr>
              <th align="left">Field</th>
              <th align="left">Value</th>
              <th align="left">Description</th>
            </tr>
          </thead>
          <tbody>
            <tr>
              <td align="left">SCION addr.</td>
              <td align="left">SRC = 1-ff00:0:2,203.0.113.6 <br/> DST = 1-ff00:0:3,192.0.2.7</td>
              <td align="left">Endpoint A <br/> Endpoint B</td>
            </tr>
            <tr>
              <td align="left">SCION path</td>
              <td align="left">- IF1 (0,i2a) (i1a,0) <br/>   - <em>IF2</em> (0,i1b) <strong>(i3a,0)</strong></td>
              <td align="left"> </td>
            </tr>
            <tr>
              <td align="left">UDP port</td>
              <td align="left">SRC = 51022 <br/> DST = 51044 <br/></td>
              <td align="left"> </td>
            </tr>
            <tr>
              <td align="left">IP</td>
              <td align="left">SRC = 198.51.100.17 <br/> DST = 198.51.100.18</td>
              <td align="left">Router R3 <br/> Router R4</td>
            </tr>
            <tr>
              <td align="left">Link layer</td>
              <td align="left">SRC=R3 <br/> DST=R4</td>
              <td align="left"> </td>
            </tr>
          </tbody>
        </table>
        <ul spacing="normal">
          <li>
            <t><em>Step 5 -</em> <strong>R4-&gt;B</strong>: <br/> SCION router R4 first checks whether the packet has been received through the ingress interface i3a as specified by the current Hop Field. Router R4 will then also realize, based on the fields <tt>CurrHF</tt> and <tt>SegLen</tt> in the SCION header, that the packet has reached the last hop in its SCION path. Therefore, instead of stepping up the pointers to the next Info Field or Hop Field, router R4 inspects the SCION destination address and extracts the endpoint address 192.0.2.7. It creates a fresh underlay UDP/IP header with this address as destination with itself as source. The choice of destination port depends on the underlay, which is described in <xref target="SCION-UDP"/>. The intra-domain forwarding can now deliver the packet to its destination at Endpoint B.</t>
          </li>
        </ul>
        <table>
          <name>Example: snapshot header - step 5 - R4 -&gt; B</name>
          <thead>
            <tr>
              <th align="left">Field</th>
              <th align="left">Value</th>
              <th align="left">Description</th>
            </tr>
          </thead>
          <tbody>
            <tr>
              <td align="left">SCION addr.</td>
              <td align="left">SRC = 1-ff00:0:2,203.0.113.6  <br/> DST = 1-ff00:0:3,192.0.2.7</td>
              <td align="left">Endpoint A <br/> Endpoint B</td>
            </tr>
            <tr>
              <td align="left">SCION path</td>
              <td align="left">- IF1 (0,i2a) (i1a,0) <br/>  - <em>IF2</em> (0,i1b) <strong>(i3a,0)</strong> <br/></td>
              <td align="left"> </td>
            </tr>
            <tr>
              <td align="left">UDP port</td>
              <td align="left">SRC = 50000  <br/> DST = 443 <br/></td>
              <td align="left"> </td>
            </tr>
            <tr>
              <td align="left">IP</td>
              <td align="left">SRC = 192.0.2.34 <br/> DST = 192.0.2.7</td>
              <td align="left">Router R4 <br/> Endpoint B</td>
            </tr>
            <tr>
              <td align="left">Link layer</td>
              <td align="left">SRC=R4 <br/> DST=B</td>
              <td align="left"> </td>
            </tr>
          </tbody>
        </table>
      </section>
      <section anchor="destination-endpoint">
        <name>Destination Endpoint</name>
        <t>When destination Endpoint B wants to respond to source Endpoint A, it can just swap the source and destination addresses in the SCION header, reverse the SCION path, and set the pointers to the Info Fields and Hop Fields at the beginning of the reversed path (see also <xref target="reverse"/>).</t>
      </section>
    </section>
    <section anchor="path-auth">
      <name>Path Authorization</name>
      <t>Path authorization guarantees that data packets always traverse the network along path segments authorized by all on-path ASes in the control plane. In contrast to the IP-based Internet where forwarding decisions are made by routers based on locally stored information, SCION routers base their forwarding decisions purely on the forwarding information carried in the packet header and set by endpoints.</t>
      <t>SCION uses cryptographic mechanisms to efficiently provide path authorization. The mechanisms are based on <em>symmetric</em> cryptography in the form of Message Authentication Codes (MACs) in the data plane to secure forwarding information encoded in Hop Fields. This section first explains how Hop Field MACs are computed, then how they are validated as they traverse the network.</t>
      <section anchor="auth-chained-macs">
        <name>Authorizing Segments through Chained MACs</name>
        <t>When authorizing SCION PCBs and path segments in the control plane and forwarding information in the data plane, an AS authenticates not only its own hop information but also an aggregation of all upstream hops. This section describes how this works.</t>
        <section anchor="hf-mac-overview">
          <name>Hop Field MAC Overview</name>
          <t>The MAC in the Hop Fields of a SCION path has two purposes:</t>
          <ul spacing="normal">
            <li>
              <t>Preventing malicious endpoints from adding, removing or reordering hops within a path segment created during beaconing by the control plane. In particular, preventing path splicing, i.e., the combination of parts of different valid path segments into a new and unauthorized path segment.</t>
            </li>
            <li>
              <t>Authentication of the information contained in the Hop Field itself, in particular the <tt>ExpTime</tt>, <tt>ConsIngress</tt>, and <tt>ConsEgress</tt>.</t>
            </li>
          </ul>
          <t>To fulfil these purposes, the MAC for the Hop Field of AS<sub>i</sub> includes both the components of the current Hop Field HF<sub>i</sub> and an aggregation of the path segment identifier and all preceding Hop Fields/entries in the path segment. The aggregation is a 16-bit XOR-sum of the path segment identifier and the Hop Field MACs.</t>
          <t>When originating a PCB in the control plane, a core AS chooses a random 16-bit value as segment identifier <tt>SegID</tt> for the path segment and includes it in the PCB's <tt>Segment Info</tt> component. In the control plane, each AS<sub>i</sub> on the path segment computes the MAC for the current HF<sub>i</sub>, based on the value of <tt>SegID</tt> and the MACs of the preceding hop entries. Here, the full XOR-sum is computed explicitly.</t>
          <t>For high-speed packet processing in the data plane, computing even cheap operations such as the XOR-sum over a variable number of inputs is complicated, in particular for hardware router implementations. To avoid this overhead for the MAC chaining in path authorization in the data plane, the XOR-sum is tracked incrementally for each of the path segments in a path as a separate, updatable Accumulator Field <tt>Acc</tt>. Routers update <tt>Acc</tt> by adding/subtracting only a single 16-bit value each.</t>
          <t>When combining path segments to create a path to the destination endpoint, the source endpoint <bcp14>MUST</bcp14> also initialize the value of accumulator field <tt>Acc</tt> for each path segment. The <tt>Acc</tt> field <bcp14>MUST</bcp14> contain the correct XOR-sum of the path segment identifier and preceding Hop Field MACs expected by the first router that is traversed.</t>
          <t>The aggregated 16-bit path segment identifier and preceding MACs prevent splicing of different path segments unless there is a collision of the <tt>Acc</tt> value among compatible path segments in an AS. See <xref target="path-splicing"/> for more details.</t>
          <section anchor="hf-mac-calc">
            <name>Hop Field MAC - Calculation</name>
            <t>The Hop Field MAC is generally calculated at a current AS<sub>i</sub> as follows:</t>
            <ul spacing="normal">
              <li>
                <t>Consider a path segment with "n" hops, containing ASes AS<sub>0</sub>, ... , AS<sub>n-1</sub>, with forwarding keys K0, ... , K(n-1) in this order.</t>
              </li>
              <li>
                <t>AS<sub>0</sub> is the core AS that created the PCB representing the path segment and that added a random initial 16-bit segment identifier <tt>SegID</tt> to the <tt>Segment Info</tt> field of the PCB.</t>
              </li>
            </ul>
            <t>MAC<sub>i</sub> = <br/> C<sub>ki</sub> (<tt>SegID</tt> XOR MAC<sub>0</sub> [:2] ... XOR MAC<sub>i-1</sub> [:2], Timestamp, ExpTime<sub>i</sub>, ConsIngress<sub>i</sub>, ConsEgress<sub>i</sub>)</t>
            <t>where</t>
            <ul spacing="normal">
              <li>
                <t>ki = The forwarding key k of the current AS<sub>i</sub></t>
              </li>
              <li>
                <t>C<sub>ki</sub> (...) = Cryptographic checksum C over (...) computed with forwarding key ki</t>
              </li>
              <li>
                <t><tt>SegID</tt> = The random initial 16-bit segment identifier set by the core AS when creating the corresponding PCB</t>
              </li>
              <li>
                <t>XOR = The bitwise "exclusive or" operation</t>
              </li>
              <li>
                <t>MAC<sub>i</sub> [:2] = The Hop Field MAC for AS<sub>i</sub>, truncated to 2 bytes</t>
              </li>
              <li>
                <t>Timestamp = The timestamp set by the core AS when creating the corresponding PCB</t>
              </li>
              <li>
                <t>ExpTime<sub>i</sub>, ConsIngress<sub>i</sub>, ConsEgress<sub>i</sub> = The content of the Hop Field HF<sub>i</sub></t>
              </li>
            </ul>
            <t>Thus, the current MAC is based on the XOR-sum of the truncated MACs of all preceding Hop Fields in the path segment as well as the path segment's <tt>SegID</tt> - i.e., the current MAC is <em>chained</em> to all preceding MACs. In order to effectively prevent path-splicing, the cryptographic checksum function used <bcp14>MUST</bcp14> ensure that the truncation of the MACs is non-degenerate and uniformly distributed (see <xref target="mac-requirements"/>).</t>
          </section>
          <section anchor="def-acc">
            <name>Accumulator Acc - Definition</name>
            <t>The Accumulator Acc<sub>i</sub> is an updatable counter introduced in the data plane to avoid the overhead caused by MAC-chaining for path authorization. This is achieved by incrementally tracking the XOR-sum of the previous MACs as a separate, updatable accumulator field <tt>Acc</tt> which is part of the path segment's Info Field <tt>InfoField</tt> in the packet header (see also <xref target="inffield"/>). Routers update this field by adding/subtracting only a single 16-bit value each.</t>
            <t><xref target="hf-mac-calc"/> provides a general formula to compute MAC<sub>i</sub>, but at each SCION router the expression <tt>SegID XOR MAC_0 [:2] ... XOR MAC_i-1 [:2]</tt> is replaced by Acc<sub>i</sub>. This results in the following alternative procedure for the computation of MAC<sub>i</sub> at SCION routers:</t>
            <t>MAC<sub>i</sub> = C<sub>ki</sub> (Acc<sub>i</sub>, Timestamp, ExpTime<sub>i</sub>, ConsIngress<sub>i</sub>, ConsEgress<sub>i</sub>)</t>
            <t>During forwarding, SCION routers at each AS<sub>i</sub> update the Acc field in the packet header so that it contains the correct input value of Acc for the next AS in the path segment to be able to calculate the MAC over its Hop Field. Note that the correct input value of the <tt>Acc</tt> field depends on the direction of travel.</t>
            <t>The value of Acc<sub>i+1</sub> is calculated based on the following definition, where i denotes the i-th hop field in the direction of beaconing:</t>
            <t>Acc<sub>i+1</sub> = Acc<sub>i</sub> XOR MAC<sub>i</sub> [:2]</t>
            <ul spacing="normal">
              <li>
                <t>XOR = The bitwise "exclusive or" operation</t>
              </li>
              <li>
                <t>MAC<sub>i</sub> [:2] = The Hop Field MAC for the current AS<sub>i</sub>, truncated to 2 bytes</t>
              </li>
            </ul>
            <t>For the initial Hop Field of a segment (i=0), the accumulator Acc<sub>0</sub> is initialized to the randomized SegID generated by the core AS during beaconing.</t>
          </section>
          <section anchor="hop-field-mac-algorithm">
            <name>Hop Field MAC Algorithm</name>
            <t>The algorithm used to compute the Hop Field MAC is an AS-specific choice, although the Control Services and border routers within an AS <bcp14>MUST</bcp14> be configured to use the same algorithm (see <eref target="configuration"/>). Implementations <bcp14>MUST</bcp14> also support the Default Hop Field MAC algorithm as described below.</t>
            <section anchor="default-hop-field-mac-algorithm">
              <name>Default Hop Field MAC Algorithm</name>
              <t>The default MAC algorithm is AES-CMAC (<xref target="RFC4493"/>) truncated to 48-bits, computed over the Info Field and the first 6 bytes of the Hop Field with flags and reserved fields zeroed out. The input is padded to 16 bytes. The <em>first</em> 6 bytes of the AES-CMAC output are used as resulting Hop Field MAC.</t>
              <t><xref target="_figure-18"/> below shows the layout of the input data to calculate the Hop Field MAC.</t>
              <figure anchor="_figure-18">
                <name>Input data to calculate the Hop Field MAC for the default hop-field MAC algorithm</name>
                <artset>
                  <artwork type="svg"><svg xmlns="http://www.w3.org/2000/svg" version="1.1" height="224" width="608" viewBox="0 0 608 224" class="diagram" text-anchor="middle" font-family="monospace" font-size="13px" stroke-linecap="round">
                      <path d="M 8,64 L 8,192" fill="none" stroke="black"/>
                      <path d="M 136,128 L 136,160" fill="none" stroke="black"/>
                      <path d="M 264,64 L 264,96" fill="none" stroke="black"/>
                      <path d="M 264,128 L 264,192" fill="none" stroke="black"/>
                      <path d="M 520,64 L 520,192" fill="none" stroke="black"/>
                      <path d="M 552,64 L 552,192" fill="none" stroke="black"/>
                      <path d="M 8,64 L 520,64" fill="none" stroke="black"/>
                      <path d="M 536,64 L 552,64" fill="none" stroke="black"/>
                      <path d="M 8,96 L 520,96" fill="none" stroke="black"/>
                      <path d="M 8,128 L 520,128" fill="none" stroke="black"/>
                      <path d="M 536,128 L 552,128" fill="none" stroke="black"/>
                      <path d="M 8,160 L 520,160" fill="none" stroke="black"/>
                      <path d="M 8,192 L 520,192" fill="none" stroke="black"/>
                      <path d="M 536,192 L 552,192" fill="none" stroke="black"/>
                      <polygon class="arrowhead" points="544,192 532,186.4 532,197.6" fill="black" transform="rotate(180,536,192)"/>
                      <polygon class="arrowhead" points="544,128 532,122.4 532,133.6" fill="black" transform="rotate(180,536,128)"/>
                      <polygon class="arrowhead" points="544,64 532,58.4 532,69.6" fill="black" transform="rotate(180,536,64)"/>
                      <g class="text">
                        <text x="16" y="36">0</text>
                        <text x="176" y="36">1</text>
                        <text x="336" y="36">2</text>
                        <text x="496" y="36">3</text>
                        <text x="16" y="52">0</text>
                        <text x="32" y="52">1</text>
                        <text x="48" y="52">2</text>
                        <text x="64" y="52">3</text>
                        <text x="80" y="52">4</text>
                        <text x="96" y="52">5</text>
                        <text x="112" y="52">6</text>
                        <text x="128" y="52">7</text>
                        <text x="144" y="52">8</text>
                        <text x="160" y="52">9</text>
                        <text x="176" y="52">0</text>
                        <text x="192" y="52">1</text>
                        <text x="208" y="52">2</text>
                        <text x="224" y="52">3</text>
                        <text x="240" y="52">4</text>
                        <text x="256" y="52">5</text>
                        <text x="272" y="52">6</text>
                        <text x="288" y="52">7</text>
                        <text x="304" y="52">8</text>
                        <text x="320" y="52">9</text>
                        <text x="336" y="52">0</text>
                        <text x="352" y="52">1</text>
                        <text x="368" y="52">2</text>
                        <text x="384" y="52">3</text>
                        <text x="400" y="52">4</text>
                        <text x="416" y="52">5</text>
                        <text x="432" y="52">6</text>
                        <text x="448" y="52">7</text>
                        <text x="464" y="52">8</text>
                        <text x="480" y="52">9</text>
                        <text x="496" y="52">0</text>
                        <text x="512" y="52">1</text>
                        <text x="136" y="84">0</text>
                        <text x="368" y="84">Acc</text>
                        <text x="580" y="84">Info</text>
                        <text x="584" y="100">Field</text>
                        <text x="264" y="116">Timestamp</text>
                        <text x="72" y="148">0</text>
                        <text x="200" y="148">ExpTime</text>
                        <text x="392" y="148">ConsIngress</text>
                        <text x="576" y="148">Hop</text>
                        <text x="584" y="164">Field</text>
                        <text x="132" y="180">ConsEgress</text>
                        <text x="392" y="180">0</text>
                      </g>
                    </svg>
                  </artwork>
                  <artwork type="ascii-art"><![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
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ <-+
|               0               |           Acc                 |   | Info
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+   | Field
|                           Timestamp                           |   |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ <-+
|       0       |    ExpTime    |          ConsIngress          |   | Hop
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+   | Field
|          ConsEgress           |               0               |   |
+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ <-+

]]></artwork>
                </artset>
              </figure>
            </section>
            <section anchor="mac-requirements">
              <name>Alternative Hop Field MAC Algorithms</name>
              <t>For alternative MAC algorithms, the following requirements <bcp14>MUST</bcp14> all be met:</t>
              <ul spacing="normal">
                <li>
                  <t>The Hop Field MAC field is computed as a function of the secret forwarding key, the <tt>Acc</tt> and <tt>Timestamp</tt> fields of the Info Field, and the <tt>ExpTime</tt>, <tt>ConsIngress</tt> and <tt>ConsEgress</tt> fields of the Hop Field. The term "function" is used in the mathematical sense that for for any values of these inputs there is exactly one result.</t>
                </li>
                <li>
                  <t>The algorithm returns an unforgeable 48-bit value. Unforgeable specifically means "existentially unforgeable under a chosen message attack" (<xref target="CRYPTOBOOK"/>). Informally, this means an attacker without access to the secret key has no computationally efficient means to create a valid MAC for some attacker chosen input values, even if it has access to an "oracle" providing a valid MAC for any other input values.</t>
                </li>
                <li>
                  <t>The truncation of the result value to the first 16 bits of the result value:
                  </t>
                  <ul spacing="normal">
                    <li>
                      <t>is not degenerate - i.e., any small change in any input value <bcp14>SHOULD</bcp14> have an "avalanche effect" on these bits, and;</t>
                    </li>
                    <li>
                      <t>is uniformly distributed when considering all possible input values.</t>
                    </li>
                  </ul>
                </li>
              </ul>
              <t>This additional requirement is naturally satisfied for MAC algorithms based on typical block ciphers or hash algorithms. It ensures that the MAC chaining via the <tt>Acc</tt> field is not degenerate.</t>
            </section>
          </section>
        </section>
        <section anchor="peerlink">
          <name>Peering Link MAC Computation</name>
          <t>The Hop Field MAC computation described in <xref target="hf-mac-calc"/> does not apply to a peering Hop Field - i.e., to a Hop Field that allows transiting from a child interface/link to a peering interface/link.</t>
          <t>The reason for this is that the MACs of the Hop Fields "after" the peering Hop Field (in beaconing direction) are not chained to the MAC of the peering Hop Field but to the MAC of the main Hop Field in the corresponding AS entry. To make this work, the MAC of the peering Hop Field is also chained to the MAC of the main Hop Field. This allows for the validation of the chained MAC for both the peering Hop Field and the following Hop Fields by using the same <tt>Acc</tt> field value.</t>
          <t>The peering Hop Field is defined as follows:</t>
          <t>Hop Field<sup>Peer</sup><sub>i</sub> = (ExpTime<sup>Peer</sup><sub>i</sub>, ConsIngress<sup>Peer</sup><sub>i</sub>, ConsEgress<sup>Peer</sup><sub>i</sub>, MAC<sup>Peer</sup><sub>i</sub>)</t>
          <t>See <xref target="I-D.dekater-scion-controlplane"/> for more information.</t>
          <t>This results in the calculation of the MAC for the peering Hop Field<sup>Peer</sup><sub>i</sub> as follows:</t>
          <t>MAC<sup>Peer</sup><sub>i</sub> = <br/> C<sup>Peer</sup><sub>ki</sub> (<tt>SegID</tt> XOR MAC<sub>0</sub> [:2] ... XOR MAC<sub>i</sub> [:2], Timestamp, ExpTime<sup>Peer</sup><sub>i</sub>, ConsIngress<sup>Peer</sup><sub>i</sub>, ConsEgress<sup>Peer</sup><sub>i</sub>)</t>
          <t><strong>Note:</strong> The XOR-sum of the MACs in the formula of the peering Hop Field <strong>also includes</strong> the MAC of the main Hop Field (whereas for the calculation of the MAC for the main Hop Field itself only the XOR-sum of the <em>previous</em> MACs is used).</t>
        </section>
      </section>
      <section anchor="packet-verif">
        <name>Path Initialization and Packet Processing</name>
        <t>As described in <xref target="header"/>, the path header of the data plane packets only contains a sequence of Info Fields and Hop Fields without any additional data from the corresponding PCBs. The SCION path also does not contain any AS numbers - except for the source and destination ASes - and there is no field explicitly defining the type of each segment (up, core, or down). This chapter describes the required steps for the source endpoint and SCION routers to respectively craft and forward a data packet.</t>
        <section anchor="initialization-at-source-endpoint">
          <name>Initialization at Source Endpoint</name>
          <t>The source endpoint <bcp14>MUST</bcp14> perform the following steps to correctly initialize a path:</t>
          <ol spacing="normal" type="1"><li>
              <t>Combine the preferred end-to-end path from the path segments obtained during path lookup.</t>
            </li>
            <li>
              <t>Extract the Info Fields and Hop Fields from the different path segments that together build the end-to-end path to the destination endpoint. Then insert the relevant information from the Info Fields and Hop Fields into the corresponding <tt>InfoFields</tt> and <tt>Hopfields</tt> in the data packet header.</t>
            </li>
            <li>
              <t>Each 8-byte <tt>InfoField</tt> in the packet header contains the updatable <tt>Acc</tt> field as well as a Peering flag <tt>P</tt> and a Construction Direction flag <tt>C</tt> (see also <xref target="inffield"/>). As a next step in the path initialization process, the source <bcp14>MUST</bcp14> correctly set the flags and the <tt>Acc</tt> field of all <tt>InfoFields</tt> included in the path, according to the following rules:
              </t>
              <ul spacing="normal">
                <li>
                  <t>The Construction Direction flag <tt>C</tt> <bcp14>MUST</bcp14> be set to "1" whenever the corresponding segment is traversed in construction direction, i.e.,, for down-path segments and potentially for core segments. It <bcp14>MUST</bcp14> be set to "0" for up-path segments and "reversed" core segments.</t>
                </li>
                <li>
                  <t>The Peering flag <tt>P</tt> <bcp14>MUST</bcp14> be set to "1" for up-segments and down-segments if the path contains a peering Hop Field.</t>
                </li>
              </ul>
              <t>
The following <tt>InfoField</tt> settings are possible, based on the following cases:  </t>
              <ul spacing="normal">
                <li>
                  <t><strong>Case 1</strong> <br/> The path segment is traversed in construction direction and includes no peering Hop Field. It starts at the <em>i</em>-th AS of the full segment discovered in beaconing. In this case:      </t>
                  <ul spacing="normal">
                    <li>
                      <t>The Peering flag <tt>P</tt> = "0"</t>
                    </li>
                    <li>
                      <t>The Construction Direction flag <tt>C</tt> = "1"</t>
                    </li>
                    <li>
                      <t>The value of the <tt>Acc</tt> = Acc<sub>i</sub>. For more details, see <xref target="def-acc"/>.</t>
                    </li>
                  </ul>
                </li>
                <li>
                  <t><strong>Case 2</strong> <br/> The path segment is traversed in construction direction and includes a peering Hop Field (which is the first Hop Field of the segment). It starts at the <em>i</em>-th AS of the full segment discovered in beaconing. In this case:      </t>
                  <ul spacing="normal">
                    <li>
                      <t>The Peering flag <tt>P</tt> = "1"</t>
                    </li>
                    <li>
                      <t>The Construction Direction flag <tt>C</tt> = "1"</t>
                    </li>
                    <li>
                      <t>The value of the <tt>Acc</tt> = Acc<sub>i+1</sub>. For more details, see <xref target="def-acc"/>.</t>
                    </li>
                  </ul>
                </li>
                <li>
                  <t><strong>Case 3</strong> <br/> The path segment is traversed against construction direction. The full segment has "n" hops. In this case:      </t>
                  <ul spacing="normal">
                    <li>
                      <t>The Peering flag <tt>P</tt> = "0" or "1" (depending on whether the last Hop Field in the up-segment is a peering Hop Field)</t>
                    </li>
                    <li>
                      <t>The Construction Direction flag <tt>C</tt> = "0"</t>
                    </li>
                    <li>
                      <t>The value of the <tt>Acc</tt> = Acc<sub>n-1</sub>. This is because seen from the direction of beaconing, the source endpoint is the last AS in the path segment. For more details, see <xref target="hf-mac-calc"/> and <xref target="def-acc"/>.</t>
                    </li>
                  </ul>
                </li>
              </ul>
            </li>
            <li>
              <t>Besides setting the flags and the <tt>Acc</tt> field, the source endpoint <bcp14>MUST</bcp14> also set the pointers in the <tt>CurrInf</tt> and <tt>CurrHF</tt> fields of the Path Meta Header <tt>PathMetaHdr</tt> (see <xref target="PathMetaHdr"/>). As the source endpoint builds the starting point of the forwarding, both pointers <bcp14>MUST</bcp14> be set to "0".</t>
            </li>
          </ol>
        </section>
        <section anchor="process-router">
          <name>Processing at Routers</name>
          <t>During forwarding, each SCION router verifies the path contained in the packet header. Each SCION router also <bcp14>MUST</bcp14> correctly verify or set the value of the Accumulator in the <tt>Acc</tt> field for the next AS to be able to verify its Hop Field. The exact operations differ based on the location of the AS on the path.</t>
          <t>The processing of SCION packets for ASes where a peering link is crossed between path segments is a special case. A path containing a peering link contains exactly two path segments, one against construction direction (up) and one in construction direction (down). On the path segment against construction direction (up), the peering Hop Field is the last hop of the segment. In construction direction (down), the peering Hop Field is the first hop of the segment.</t>
          <t>The following sections describe the tasks to be performed by the ingress and egress border routers of each on-path AS. Each operation is described from the perspective of AS<sub>i</sub>, where i belongs to [0 ... n-1], and n == the number of ASes in the path segment (counted from the first AS in the beaconing direction).</t>
          <section anchor="process-router-ingress">
            <name>Steps at Ingress Border Router</name>
            <t>A SCION ingress border router <bcp14>MUST</bcp14> perform the following steps when it receives a SCION packet:</t>
            <ol spacing="normal" type="1"><li>
                <t>Check that the interface through which the packet was received is equal to the ingress interface in the current Hop Field. If not, the router <bcp14>MUST</bcp14> drop the packet.</t>
              </li>
              <li>
                <t>If there is a segment switch at the current router, check that the ingress and egress interface links are either:  </t>
                <ul spacing="normal">
                  <li>
                    <t>Both core</t>
                  </li>
                  <li>
                    <t>Parent-child or vice-versa</t>
                  </li>
                  <li>
                    <t>Peering-child or vice-versa</t>
                  </li>
                </ul>
                <t>
Link types above are defined in 'Path and Links' in <xref target="I-D.dekater-scion-controlplane"/>. This check prevents valley use of peering links or hair-pin segments.</t>
              </li>
              <li>
                <t>Check if the current Hop Field is expired or originated in the future - i.e., the current Info Field <bcp14>MUST NOT</bcp14> have a timestamp in the future, as defined in <xref target="inffield"/>. If either is true, the router <bcp14>MUST</bcp14> drop the packet.</t>
              </li>
              <li>
                <t>If the packet traverses the path segment <strong>against construction direction</strong> (Construction Direction flag <tt>C</tt> = "0") perform this step:  </t>
                <ul spacing="normal">
                  <li>
                    <t><strong>Case 1</strong> <br/> The path segment includes <strong>no peering Hop Field</strong> (Peering flag <tt>P</tt> = "0"). In this case, the ingress border router <bcp14>MUST</bcp14> take the following step(s):      </t>
                    <ul spacing="normal">
                      <li>
                        <t>Compute the value of the Accumulator Acc as follows:          </t>
                        <t>
Acc = Acc<sub>i+1</sub> XOR MAC<sub>i</sub> <br/>
  where <br/>
  Acc<sub>i+1</sub> = the current value of the field <tt>Acc</tt> in the current Info Field <br/>
  MAC<sub>i</sub> = the value of MAC<sub>i</sub> in the current Hop Field representing AS<sub>i</sub>          </t>
                        <t><strong>Note:</strong> In the case described here, the packet travels against direction of beaconing, i.e., the packet comes from AS<sub>i+1</sub> and will enter AS<sub>i</sub>. This means that the <tt>Acc</tt> field of this incoming packet represents the value of Acc<sub>i+1</sub>, but to compute the MAC<sub>i</sub> for the current AS<sub>i</sub>, we need the value of Acc<sub>i</sub> (see <xref target="def-acc"/>). As the border router knows that the formula for Acc<sub>i+1</sub> = Acc<sub>i</sub> XOR MAC<sub>i</sub> [:2] (see also <xref target="def-acc"/>), and because the values of Acc<sub>i+1</sub> and MAC<sub>i</sub> are known, the router will be able to recover the value Acc<sub>i</sub> based on the aforementioned formula for Acc.</t>
                      </li>
                      <li>
                        <t>Replace the current value of the field <tt>Acc</tt> in the current Info Field with the newly calculated value of Acc.</t>
                      </li>
                      <li>
                        <t>Compute the MAC<sup>Verify</sup><sub>i</sub> over the Hop Field of the current AS<sub>i</sub>. For this, use the formula in <xref target="hf-mac-calc"/> but replace <tt>SegID XOR MAC_0[:2] ... XOR MAC_i-1 [:2]</tt> in the formula with the value of Acc as just set in the <tt>Acc</tt> field in the current Info Field.</t>
                      </li>
                      <li>
                        <t>If the MAC<sub>i</sub> in the current Hop Field does not match the just calculated MAC<sup>Verify</sup><sub>i</sub>, drop the packet.</t>
                      </li>
                      <li>
                        <t>If the current Hop Field is the last Hop Field in the path segment as determined by the value of the current <tt>SegLen</tt> and other metadata in the path meta header, increment both <tt>CurrInf</tt> and <tt>CurrHF</tt> in the path meta header. Proceed with step 5.</t>
                      </li>
                    </ul>
                  </li>
                  <li>
                    <t><strong>Case 2</strong> <br/> The path segment includes a <strong>peering Hop Field</strong> (<tt>P</tt> = "1"), but the current hop is <strong>not</strong> the peering hop (i.e., the current hop is <strong>neither</strong> the last hop of the first segment <strong>nor</strong> the first hop of the second segment). In this case, the ingress border router needs to perform the steps previously described for the path segment without peering Hop Field, but the border router <bcp14>MUST NOT</bcp14> increment <tt>CurrInf</tt> and <bcp14>MUST NOT</bcp14> increment <tt>CurrHF</tt> in the path meta header. Proceed with step 5.</t>
                  </li>
                  <li>
                    <t><strong>Case 3</strong> <br/> The path segment includes a <strong>peering Hop Field</strong> (<tt>P</tt> = "1"), and the current Hop Field <em>is</em> the peering Hop Field (i.e., the current hop is <strong>either</strong> the last hop of the first segment <strong>or</strong> the first hop of the second segment). In this case, the ingress border router <bcp14>MUST</bcp14> take the following step(s):      </t>
                    <ul spacing="normal">
                      <li>
                        <t>Compute MAC<sup>Peer</sup><sub>i</sub>. For this, use the formula in <xref target="peerlink"/>, but replace <tt>SegID XOR MAC_0[:2] ... XOR MAC_i [:2]</tt> in the formula with the value of Acc as set in the <tt>Acc</tt> field in the current Info Field (this is the value of Acc as it comes with the packet).</t>
                      </li>
                      <li>
                        <t>If the MAC<sub>i</sub> in the current Hop Field does not match the just calculated MAC<sup>Peer</sup><sub>i</sub>, drop the packet.</t>
                      </li>
                      <li>
                        <t>Increment both <tt>CurrInf</tt> and <tt>CurrHF</tt> in the path meta header. Proceed with step 5.</t>
                      </li>
                    </ul>
                  </li>
                </ul>
              </li>
              <li>
                <t>Forward the packet to the egress border router (based on the egress Interface ID in the current Hop Field) or to the destination endpoint, if this is the destination AS (see <xref target="intra-domain-forwarding"/>).</t>
              </li>
            </ol>
          </section>
          <section anchor="steps-at-egress-border-router">
            <name>Steps at Egress Border Router</name>
            <t>A SCION egress border router <bcp14>MUST</bcp14> perform the following steps when it receives a SCION packet:</t>
            <ol spacing="normal" type="1"><li>
                <t>If the packet path indicates an origin outside of the local AS, verify that the packet underlay source address matches a known border router in the local AS.</t>
              </li>
              <li>
                <t>Check the settings of the Construction Direction flag <tt>C</tt> and the Peering flag <tt>P</tt> in the currently valid Info Field. The following cases are possible:  </t>
                <ul spacing="normal">
                  <li>
                    <t><strong>Case 1</strong> <br/> The packet traverses the path segment in <strong>construction direction</strong> (<tt>C</tt> = "1"). The path segment either includes <strong>no peering Hop Field</strong> (<tt>P</tt> = "0") or the path segment does include a <strong>peering Hop Field</strong> (<tt>P</tt> = "1"), but the current hop is not the peering hop (i.e., the current hop is <strong>neither</strong> the last hop of the first segment <strong>nor</strong> the first hop of the second segment). In this case, the egress border router <bcp14>MUST</bcp14> take the following step(s):      </t>
                    <ul spacing="normal">
                      <li>
                        <t>Compute MAC<sup>Verify</sup><sub>i</sub> over the Hop Field of the current AS<sub>i</sub>. For this, use the formula in <xref target="hf-mac-calc"/>, but replace <tt>SegID XOR MAC_0[:2] ... XOR MAC_i-1 [:2]</tt> in the formula with the value of Acc as set in the <tt>Acc</tt> field in the current Info Field.</t>
                      </li>
                      <li>
                        <t>If the just calculated MAC<sup>Verify</sup><sub>i</sub> does not match the MAC<sub>i</sub> in the Hop Field of the current AS<sub>i</sub>, drop the packet.</t>
                      </li>
                      <li>
                        <t>Compute the value of Acc<sub>i+1</sub>. For this, use the formula in <xref target="def-acc"/>. Replace Acc<sub>i</sub> in the formula with the current value of Acc as set in the <tt>Acc</tt> field of the current Info Field.</t>
                      </li>
                      <li>
                        <t>Replace the value of the <tt>Acc</tt> field in the current Info Field with the just calculated value of Acc<sub>i+1</sub>.</t>
                      </li>
                    </ul>
                  </li>
                  <li>
                    <t><strong>Case 2</strong> <br/> The packet traverses the path segment in <strong>construction direction</strong> (<tt>C</tt> = "1") where the path segment includes a <strong>peering Hop Field</strong> (<tt>P</tt> = "1") and the current Hop Field <em>is</em> the peering Hop Field (i.e., the current hop is <strong>either</strong> the last hop of the first segment <strong>or</strong> the first hop of the second segment). In this case, the egress border router <bcp14>MUST</bcp14> take the following steps:      </t>
                    <ul spacing="normal">
                      <li>
                        <t>Compute MAC<sup>Peer</sup><sub>i</sub>. For this, use the formula in <xref target="peerlink"/>, but replace <tt>SegID XOR MAC_0 [:2] ... XOR MAC_i [:2]</tt> with the value in the <tt>Acc</tt> field of the current Info Field.</t>
                      </li>
                      <li>
                        <t>If the MAC<sub>i</sub> in the Hop Field of the current AS<sub>i</sub> does not match the just calculated MAC<sup>Peer</sup><sub>i</sub>, drop the packet.</t>
                      </li>
                    </ul>
                  </li>
                  <li>
                    <t><strong>Case 3</strong> <br/> The packet traverses the path segment <strong>against construction direction</strong> (<tt>C</tt> = "0" and <tt>P</tt> = "0" or "1"). In this case, proceed with Step 3.</t>
                  </li>
                </ul>
              </li>
              <li>
                <t>Increment <tt>CurrHF</tt> in the path meta header.</t>
              </li>
              <li>
                <t>Forward the packet to the neighbor AS.</t>
              </li>
            </ol>
          </section>
          <section anchor="clock-inaccuracy">
            <name>Effects of Clock Inaccuracy</name>
            <t>Coarse time synchronization between core AS control services and SCION routers is required because path segments are generated by core AS control services and subsequently validated by routers in the data plane. Specifically, routers rely on the timestamp in the Info Field and the expiration time of Hop Fields to verify Hop Field validity, see <xref target="process-router-ingress"/>.</t>
            <t>Clock offsets between the originating control service and the validating router impact this process:</t>
            <ul spacing="normal">
              <li>
                <t>A fast clock at origination or a slow clock at validation will yield a lengthened expiration time for hops, and possibly an origination time in the future.</t>
              </li>
              <li>
                <t>A slow clock at origination or a fast clock at validation will yield a shortened expiration time for hops, and possibly an expiration time in the past.</t>
              </li>
            </ul>
            <t>Given the minimum Hop Field expiration of 337.5 seconds (see <xref target="hopfld"/>), offsets between a router and core ASes in the order of minutes are tolerable.</t>
            <t>Operators should ensure that control plane instances and routers maintain coarse time synchronization, though the specific methods used to achieve this are outside the scope of this document.</t>
            <t>For details on clock inaccuracies relative to beaconing, and for related security considerations, see <xref target="I-D.dekater-scion-controlplane"/>.</t>
          </section>
        </section>
      </section>
    </section>
    <section anchor="deployment-considerations">
      <name>Deployment Considerations</name>
      <section anchor="mtu">
        <name>MTU</name>
        <t>SCION requires its underlay protocol to provide a minimum MTU of 1232 bytes. This number results from 1280, the minimum IPv6 MTU as of <xref target="RFC8200"/>), minus 48, assuming UDP/IPv6 as underlay. Higher layer protocols such as SCMP rely only on such minimum MTU.</t>
        <t>The MTU of a SCION path is defined as the minimum of the MTUs of the intra-AS and inter-AS links traversed by that path. The control plane disseminates such values and makes them available to the source endpoint (see 'Path MTU in <xref target="I-D.dekater-scion-controlplane"/>).</t>
        <t>The MTU of each link may be discovered or administratively configured (current practice is for it to be configured). It must be less than or equal to the MTU of the link's underlay encapsulation or native link-layer in either direction.</t>
        <t>SCION assumes that the MTUs of a path segment remains correct for the life time of that segment. This is generally a safe assumption because:</t>
        <ul spacing="normal">
          <li>
            <t>Intra-AS network MTUs are a result of the network configuration of each AS and therefore predictable.</t>
          </li>
          <li>
            <t>Inter-AS links MTU are normally under the joint control of the administrators of the two ASes involved and therefore equally predictable.</t>
          </li>
        </ul>
        <t>Should the inter-AS link MTU be unpredictable (e.g., because the inter-AS link is deployed as an overlay), then the link's MTU <bcp14>MUST</bcp14> be configured statically to a conservative value. For a UDP/IP underlay, 1232 is a safe value.</t>
      </section>
      <section anchor="fragmentation">
        <name>Packet Fragmentation</name>
        <t>The SCION network layer does not support packet fragmentation; not even at the source endpoint. Upper layer protocols and applications <bcp14>MUST</bcp14> comply with the MTU of the paths that they use.</t>
        <t>SCION is agnostic to datagram fragmentation by the underlay network layer (e.g., used for intra-AS communication). Implementations <bcp14>SHOULD</bcp14> allow MTU discovery mechanisms such as <xref target="RFC4821"/> to be enabled in the underlay and avoid fragmentation. For inter-AS links, using a different configuration is the joint decision of the administrators of the two ASes involved. For intra-AS interfaces using a different configuration is the choice of that AS's administrator alone.</t>
      </section>
      <section anchor="sig">
        <name>SCION IP Gateway</name>
        <t>The SCION IP Gateway (SIG) enables IP packets to be tunneled over SCION to support communication between hosts that do not run a SCION implementation. A SIG acts as a router from the perspective of IP, whilst acting as SCION endpoint from the perspective of the SCION network. It is typically deployed inside the same AS internal network as its non-SCION hosts, or at the edge of an enterprise network. Tunneling IP traffic over SCION requires a pair of SIGs: at the ingress and egress points of the SCION network.</t>
        <t>IP tunneling over SCION is an application from the perspective of the Data Plane and is outside the scope of this document.</t>
        <t>More information about the reference open source SCION IP Gateway implementation can be found at <xref target="SIG"/>.</t>
      </section>
    </section>
    <section anchor="handling-link-failures">
      <name>Handling Link Failures</name>
      <section anchor="scion-bfd">
        <name>Link Failure Detection - BFD</name>
        <t>To detect link failures quickly and reliably, SCION uses the Bidirectional Forwarding Detection (BFD) protocol (<xref target="RFC5880"/>) on links between SCION routers. If a router does not receive a BFD message from its peer at some regular interval, it considers the link to be down (in both directions) until messages are received again.</t>
        <t>A SCION BFD message consists of a SCION packet with a <tt>NextHdr</tt> value of <tt>203</tt> (<tt>BFD/SCION</tt>) and a path type of either <tt>00</tt> (<tt>Empty</tt> - used on intra-AS links) or <tt>2</tt> (<tt>OneHopPath</tt> - used on inter-AS links). The BFD header itself is a BFD Control Header as described in <xref target="RFC5880"/>. More information on one-hop and empty paths is available in <xref target="onehop"/> and <xref target="empty"/>.</t>
        <t>A SCION router <bcp14>SHOULD</bcp14> accept BFD connections from its peers and <bcp14>SHOULD</bcp14> attempt to establish BFD connections to its peers. While a link is considered to be down, a SCION router should drop packets destined to that link. In that case, it <bcp14>SHOULD</bcp14> send a <xref target="link-down-notification">notification</xref> to the originator.</t>
      </section>
      <section anchor="link-down-notification">
        <name>Link Failure Notification - SCMP</name>
        <t>In SCION, an intermediate router cannot change the path followed by a packet, only the source endpoint can chose a different path. Therefore, to enable fast recovery, a router <bcp14>SHOULD</bcp14> signal forwarding failures to the source, via a SCMP notification (see 'SCMP/Error messages' in <xref target="I-D.dekater-scion-controlplane"/>). This allows the source endpoint to quickly switch to a different path, and the source end-point <bcp14>SHOULD</bcp14> give lower preference to the broken path. Current implementations use a negative cache with entries retained for 10s.</t>
        <t>Sending an SCMP error notification is <bcp14>OPTIONAL</bcp14>. Endpoints should therefore implement additional mechanisms to validate or detect link down signals. To reduce exposure to denial-of-service attacks, SCION routers <bcp14>SHOULD</bcp14> employ rate limiting when sending recommended SCMP notifications (especially identical ones). Rate limit policies are up to each AS's administrator.</t>
      </section>
    </section>
    <section anchor="security-considerations">
      <name>Security Considerations</name>
      <t>This section describes the possible security risks and attacks that the SCION Data Plane may be prone to, and how these attacks may be mitigated. It first discusses security risks that pertain to path authorization, followed by a section on other forwarding related security considerations.</t>
      <section anchor="path-authorization-1">
        <name>Path Authorization</name>
        <t>A central property of the SCION path-aware data plane is path authorization. Path authorization guarantees that data packets always traverse the network along path segments authorized in the control plane by all on-path ASes. This section discusses how an adversary may attempt to violate the path authorization property, as well as SCION's prevention mechanisms. Either an attacker can attempt to create unauthorized Hop Fields, or they can attempt to create illegitimate paths assembled from authentic individual Hop Fields.</t>
        <t>The main protection mechanism is the Hop Field MAC (see <xref target="auth-chained-macs"/>) that authenticates the Hop Field content comprised of ingress/egress interface identifiers, creation and expiration timestamp and the preceding Hop Field MACs in the path segment. Each Hop Field MAC is computed using the secret forwarding key of the respective AS, which is shared across the SCION routers and control plane services within each AS.</t>
        <section anchor="forwarding-key-compromise">
          <name>Forwarding key compromise</name>
          <t>For the current default MAC algorithm - AES-CMAC truncated to 48 bits - key recovery attacks from (any number of) known plaintext/MAC combinations is computationally infeasible as far as publicly known. In addition, the MAC algorithm can be freely chosen by each AS, enabling algorithmic agility for MAC computations. Should a MAC algorithm be discovered to be weak or insecure, each AS can quickly switch to a secure algorithm without the need for coordination with other ASes.</t>
          <t>A more realistic risk to the secrecy of the forwarding key is exfiltration from a compromised router or control plane service. An AS can optionally rotate its forwarding key at regular intervals to limit the exposure after a temporary device compromise. However, such a key rotation scheme cannot mitigate the impact of an undiscovered compromise of a device.
Key rotation is outside of the scope of this document and may leverage an out-of-band mechanism.</t>
          <t>When an AS's forwarding key is compromised, an attacker can forge Hop Field MACs and undermine path authorization. As path segments are checked for validity and policy compliance during the path discovery phase and during forwarding, routers only validate the MAC and basic validity of the current the Hop Field. Consequently, creating fraudulent Hop Fields with valid MACs allows an attacker to bypass most path segment validity checks and to create path segments that violate the AS's local policy and/or general path segment validity requirements. In particular, an attacker could create paths that include loops (limited by the maximum number of Hop Fields of a path).</t>
          <t>Unless an attacker has access to the forwarding keys of all ASes on the illegitimate path it wants to fabricate, it will need to splice fragments of two legitimate path segments with an illegitimate Hop Field. For this, it needs to create a Hop Field with a MAC that fits into the MAC chain expected by the second path segment fragment. The only input that the attacker can vary relatively freely is the 8-bit <tt>ExpTime</tt>, but the resulting MAC needs to match a specific 16 bit <tt>Acc</tt> value. While there is a low probability of this working for a specific attempt (1/256), the attack will succeed eventually if the attacker can keep retrying over a longer time period or with many different path segment fragments.</t>
          <t>While a forwarding key compromise and the resulting loss of path authorization is a serious degradation of SCION's routing security properties, this does not affect access control or data security for the hosts in the affected AS. Unauthorized paths are available to the attacker, but the routing of packets from legitimate senders is not affected. Such compromise can be mitigated with a forwarding key rotation.</t>
        </section>
        <section anchor="forging-hop-field-mac">
          <name>Forging Hop Field MAC</name>
          <t>Another method to break path authorization is to directly forge a Hop Field in an online attack, using the router as an oracle to determine the validity of the Hop Field MAC. The adversary needs to send one packet per guess for verification and for 6-byte MAC, an adversary would need an expected 2<sup>47</sup> (~140 trillion) tries to successfully forge the MAC of a single Hop Field.</t>
          <t>As the router only checks MACs during the encoded validity period of the Hop Field, which is limited by the packet header format to at most 24 hours, these tries need to occur in a limited time period. This results in a seemingly infeasible number of ~1.6e9 guesses per second.</t>
          <t>In the unlikely case that an online brute-force attack succeeds, the obtained Hop Field can be used until its inevitable expiration after the just mentioned 24 hour limit.</t>
        </section>
        <section anchor="path-splicing">
          <name>Path Splicing</name>
          <t>In a path splicing attack, an adversary source endpoint takes valid Hop Fields of multiple path segments and splices them together to obtain a new unauthorized path.</t>
          <t>Candidate path segments for splicing must have at least one AS interface in common as a connection point, and the same origination timestamp as this is directly protected by the Hop Field MAC. This can occur by chance or if the two candidate path segments were originated as the same segment that diverged and converged back.</t>
          <t>The Hop Field MAC protects the 16-bit aggregation of path segment identifier and preceding MACs, see <xref target="auth-chained-macs"/>. This MAC chaining prevents splicing even in the case that the AS interface and segment timestamp match.</t>
          <t>As the segment identifier and aggregation of preceding MACs is only 16-bits wide, a chance collision among compatible path segments can occur rarely. Successful path splicing would allow an attacker to briefly use a path that violates an ASes path policy - e.g., making a special transit link available to a customer AS that is not billed accordingly, or violate general path segment validity requirements.</t>
          <t>In particular, a spliced path segment could traverse one or multiple links twice. However, creating a loop traversing a link an arbitrary number of times would involve multiple path splices and therefore multiple random collisions happening simultaneously, which is exceedingly unlikely. A wider security margin against path splicing could be obtained by increasing the width of the segment identifier / <tt>Acc</tt> field, e.g., by extending it into the 8-bit reserved field next to it in the Info Field.</t>
        </section>
      </section>
      <section anchor="on-path-attacks">
        <name>On-Path Attacks</name>
        <t>When an adversary sits on the path between the source and destination endpoint, it is able to intercept the data packets that are being forwarded and would allow the adversary to hijack traffic onto a path that is different from the intended one selected by the source endpoint. Possible on-path attacks in the data plane are modifications of the SCION path header and SCION address header, or by simply dropping packets. This kind of attack generally cannot be prevented, although an endpoint can use SCION's path awareness to immediately select an alternate path if available.</t>
        <section anchor="modification-of-the-path-header">
          <name>Modification of the Path Header</name>
          <t>An on-path adversary could modify the SCION path header and replace the remaining part of path segments to the destination with different segments. Such replaced segments must include authorized segments as otherwise the packet would be simply dropped on its way to the destination.</t>
          <t>The already traversed portion of the current segment and past segments can also be modified by the adversary (e.g., by deleting and adding valid and invalid Hop Fields). On reply packets from the destination, the adversary can transparently revert the changes to the path header again. For example, if an adversary M is an intermediate AS on the path of a packet from A to B, then M can replace the packet’s past path (leading up to, but not including M) where the new path may not be a valid end-to-end path. However, when B reverses the path and sends a reply packet, that packet would go via M which can then transparently change the invalid path back to the valid path to A. In addition, the endpoint address header can also be modified.</t>
          <t>Modifications of the SCION path and address header can be discovered by the destination endpoint by a data integrity protection system. Such a data integrity protection system, loosely analogous to the IPsec Authentication Header, exists for SCION but is out of scope for this document. This is described as the SCION Packet Authentication Option (SPAO) in <xref target="CHUAT22"/>.</t>
          <t>Moreover, packet integrity protection is not enough if there are two colluding adversaries on the path who can forward the packet between them using a different path than selected by the source endpoint. The first on-path attacker remodels the packet header arbitrarily, and the second on-path attacker changes the path back to the original source-selected path, such that the integrity check by the destination endpoint succeeds. However, such an attack is of little value. An on-path adversary may inspect/copy/disrupt its traffic without diverting it away from the sender-chosen path. For this reason proof-of-transit, which would be required to detect such an attack, has marginal benefit in the context of SCION and it is not in scope for this document.</t>
        </section>
        <section anchor="payload-integrity">
          <name>Payload Integrity and Encryption</name>
          <t>The SCION Data Plane does not natively provide payload integrity or encryption. An on-path attacker can inspect or alter the packet payload. Existing higher layer protocols can mitigate such attacks independently of the network layer. For that reason, payload integrity is not in scope for this specification. An experimental extension, SPAO, exists to authenticate addresses, provide payload integrity protection, and replay protection. This is still experimental and it not used in the production network.</t>
        </section>
      </section>
      <section anchor="off-path-attacks">
        <name>Off-Path Attacks</name>
        <t>SCION's path awareness limits the abilities of an off-path adversary to influence forwarding in the data plane. Once a packet is en-route it will follow its determined path regardless of the actions of the adversary. An adversary can attempt to disrupt the connectivity of the path by flooding a link with excessive traffic (see <xref target="dos"/> below), but after detecting congestion, the endpoint can switch to another non-congested path for subsequent packets.</t>
      </section>
      <section anchor="dos">
        <name>Volumetric Denial of Service Attacks</name>
        <t>An adversary can attempt to disrupt the connectivity of a network path by flooding a link with excessive traffic. In this case, the endpoint can switch to another non-congested path for subsequent packets.</t>
        <t>SCION provides protection against certain reflection-based DoS attacks. Here, the adversary sends requests to a server with the source address set to the address of the victim, and the server will send a reply that is typically larger than the request to the victim. This can be prevented in SCION as long as the attacker and the victim are located in different ASes as the reply packets are simply returned along reversed path to the actual sender regardless of the source address information. Thus, the reply packets will be forwarded to the attacker's AS where they will be discarded because the destination AS does not match. The SPAO experimental extension can further help mitigate such attacks through endpoint address authentication and replay protection.</t>
        <t>However, the path choice of the endpoint may possibly be exploited by an attacker to create intermittent congestion with a relatively low send rate. The attacker can exploit the latency differences of the available paths, sending at precisely timed intervals to cause short, synchronized bursts of packets near the victim.</t>
        <t>SCION does not protect against two other types of DoS attacks, namely transport protocol attacks and application layer attacks. Such attacks are out of SCION's scope although additional information contained in the SCION header enables more targeted filtering - e.g., by ISD, AS or path length.</t>
      </section>
    </section>
    <section anchor="iana-considerations">
      <name>IANA Considerations</name>
      <t>This document has no IANA actions.</t>
      <t>The ISD and SCION AS number are SCION-specific numbers. They are allocated by the SCION Association (see <xref target="ISD-AS-assignments"/>).</t>
    </section>
  </middle>
  <back>
    <references anchor="sec-combined-references">
      <name>References</name>
      <references anchor="sec-normative-references">
        <name>Normative References</name>
        <reference anchor="I-D.dekater-scion-pki">
          <front>
            <title>SCION Control Plane PKI</title>
            <author fullname="Corine de Kater" initials="C." surname="de Kater">
              <organization>SCION Association</organization>
            </author>
            <author fullname="Nicola Rustignoli" initials="N." surname="Rustignoli">
              <organization>SCION Association</organization>
            </author>
            <author fullname="Samuel Hitz" initials="S." surname="Hitz">
              <organization>Anapaya Systems</organization>
            </author>
            <date day="16" month="January" year="2026"/>
            <abstract>
              <t>   This document presents the trust concept and design of the SCION
   _Control Plane Public Key Infrastructure (CP-PKI)_. SCION
   (Scalability, Control, and Isolation On Next-generation networks) is
   a path-aware, inter-domain network architecture where the Control
   Plane PKI handles cryptographic material and is the foundation of the
   authentication procedures in SCION.  It is used by SCION's Control
   Plane ([I-D.dekater-scion-controlplane]) to authenticate and verify
   path information, and provisions SCION's trust model based on
   Isolation Domains.

   This document describes the trust model behind the SCION Control
   Plane PKI, including the specifications of the different types of
   certificates and the Trust Root Configuration.  It also describes how
   to deploy the Control Plane PKI infrastructure.

   This document contains new approaches to secure path aware
   networking.  It is not an Internet Standard, has not received any
   formal review of the IETF, nor was the work developed through the
   rough consensus process.  The approaches offered in this work are
   offered to the community for its consideration in the further
   evolution of the Internet.

              </t>
            </abstract>
          </front>
          <seriesInfo name="Internet-Draft" value="draft-dekater-scion-pki-11"/>
        </reference>
        <reference anchor="I-D.dekater-scion-controlplane">
          <front>
            <title>SCION Control Plane</title>
            <author fullname="Corine de Kater" initials="C." surname="de Kater">
              <organization>SCION Association</organization>
            </author>
            <author fullname="Nicola Rustignoli" initials="N." surname="Rustignoli">
              <organization>SCION Association</organization>
            </author>
            <author fullname="Samuel Hitz" initials="S." surname="Hitz">
              <organization>Anapaya Systems</organization>
            </author>
            <date day="2" month="April" year="2026"/>
            <abstract>
              <t>   This document describes the Control Plane of the path-aware, inter-
   domain network architecture SCION (Scalability, Control, and
   Isolation On Next-generation networks).  A fundamental characteristic
   of SCION is that it gives path control to SCION-capable endpoints
   that can choose between multiple path options, thereby enabling the
   optimization of network paths.  The SCION Control Plane is
   responsible for discovering these paths and making them available to
   the endpoints.

   The SCION Control Plane creates and securely disseminates path
   segments between SCION Autonomous Systems (AS) which can then be
   combined into forwarding paths to transmit packets in the data plane.
   This document describes mechanisms of path exploration through
   beaconing and path registration.  In addition, it describes how
   Endpoints construct end-to-end paths by combining path segments
   obtained through a path lookup process.

   This document contains new approaches to secure path aware
   networking.  It is not an Internet Standard, has not received any
   formal review of the IETF, nor was the work developed through the
   rough consensus process.  The approaches in this work are offered to
   the community for its consideration in the further evolution of the
   Internet.

              </t>
            </abstract>
          </front>
          <seriesInfo name="Internet-Draft" value="draft-dekater-scion-controlplane-17"/>
        </reference>
        <reference anchor="POSIX.1-2024" target="https://pubs.opengroup.org/onlinepubs/9799919799/basedefs/V1_chap04.html">
          <front>
            <title>Standard for Information Technology--Portable Operating System Interface (POSIX™) Base Specifications, Issue 8</title>
            <author>
              <organization/>
            </author>
            <date year="2024"/>
          </front>
        </reference>
        <reference anchor="RFC8200">
          <front>
            <title>Internet Protocol, Version 6 (IPv6) Specification</title>
            <author fullname="S. Deering" initials="S." surname="Deering"/>
            <author fullname="R. Hinden" initials="R." surname="Hinden"/>
            <date month="July" year="2017"/>
            <abstract>
              <t>This document specifies version 6 of the Internet Protocol (IPv6). It obsoletes RFC 2460.</t>
            </abstract>
          </front>
          <seriesInfo name="STD" value="86"/>
          <seriesInfo name="RFC" value="8200"/>
          <seriesInfo name="DOI" value="10.17487/RFC8200"/>
        </reference>
        <reference anchor="RFC2474">
          <front>
            <title>Definition of the Differentiated Services Field (DS Field) in the IPv4 and IPv6 Headers</title>
            <author fullname="K. Nichols" initials="K." surname="Nichols"/>
            <author fullname="S. Blake" initials="S." surname="Blake"/>
            <author fullname="F. Baker" initials="F." surname="Baker"/>
            <author fullname="D. Black" initials="D." surname="Black"/>
            <date month="December" year="1998"/>
            <abstract>
              <t>This document defines the IP header field, called the DS (for differentiated services) field. [STANDARDS-TRACK]</t>
            </abstract>
          </front>
          <seriesInfo name="RFC" value="2474"/>
          <seriesInfo name="DOI" value="10.17487/RFC2474"/>
        </reference>
        <reference anchor="RFC3168">
          <front>
            <title>The Addition of Explicit Congestion Notification (ECN) to IP</title>
            <author fullname="K. Ramakrishnan" initials="K." surname="Ramakrishnan"/>
            <author fullname="S. Floyd" initials="S." surname="Floyd"/>
            <author fullname="D. Black" initials="D." surname="Black"/>
            <date month="September" year="2001"/>
            <abstract>
              <t>This memo specifies the incorporation of ECN (Explicit Congestion Notification) to TCP and IP, including ECN's use of two bits in the IP header. [STANDARDS-TRACK]</t>
            </abstract>
          </front>
          <seriesInfo name="RFC" value="3168"/>
          <seriesInfo name="DOI" value="10.17487/RFC3168"/>
        </reference>
        <reference anchor="RFC4493">
          <front>
            <title>The AES-CMAC Algorithm</title>
            <author fullname="JH. Song" initials="JH." surname="Song"/>
            <author fullname="R. Poovendran" initials="R." surname="Poovendran"/>
            <author fullname="J. Lee" initials="J." surname="Lee"/>
            <author fullname="T. Iwata" initials="T." surname="Iwata"/>
            <date month="June" year="2006"/>
            <abstract>
              <t>The National Institute of Standards and Technology (NIST) has recently specified the Cipher-based Message Authentication Code (CMAC), which is equivalent to the One-Key CBC MAC1 (OMAC1) submitted by Iwata and Kurosawa. This memo specifies an authentication algorithm based on CMAC with the 128-bit Advanced Encryption Standard (AES). This new authentication algorithm is named AES-CMAC. The purpose of this document is to make the AES-CMAC algorithm conveniently available to the Internet Community. This memo provides information for the Internet community.</t>
            </abstract>
          </front>
          <seriesInfo name="RFC" value="4493"/>
          <seriesInfo name="DOI" value="10.17487/RFC4493"/>
        </reference>
        <reference anchor="RFC5880">
          <front>
            <title>Bidirectional Forwarding Detection (BFD)</title>
            <author fullname="D. Katz" initials="D." surname="Katz"/>
            <author fullname="D. Ward" initials="D." surname="Ward"/>
            <date month="June" year="2010"/>
            <abstract>
              <t>This document describes a protocol intended to detect faults in the bidirectional path between two forwarding engines, including interfaces, data link(s), and to the extent possible the forwarding engines themselves, with potentially very low latency. It operates independently of media, data protocols, and routing protocols. [STANDARDS-TRACK]</t>
            </abstract>
          </front>
          <seriesInfo name="RFC" value="5880"/>
          <seriesInfo name="DOI" value="10.17487/RFC5880"/>
        </reference>
        <reference anchor="RFC6437">
          <front>
            <title>IPv6 Flow Label Specification</title>
            <author fullname="S. Amante" initials="S." surname="Amante"/>
            <author fullname="B. Carpenter" initials="B." surname="Carpenter"/>
            <author fullname="S. Jiang" initials="S." surname="Jiang"/>
            <author fullname="J. Rajahalme" initials="J." surname="Rajahalme"/>
            <date month="November" year="2011"/>
            <abstract>
              <t>This document specifies the IPv6 Flow Label field and the minimum requirements for IPv6 nodes labeling flows, IPv6 nodes forwarding labeled packets, and flow state establishment methods. Even when mentioned as examples of possible uses of the flow labeling, more detailed requirements for specific use cases are out of the scope for this document.</t>
              <t>The usage of the Flow Label field enables efficient IPv6 flow classification based only on IPv6 main header fields in fixed positions. [STANDARDS-TRACK]</t>
            </abstract>
          </front>
          <seriesInfo name="RFC" value="6437"/>
          <seriesInfo name="DOI" value="10.17487/RFC6437"/>
        </reference>
        <reference anchor="RFC2119">
          <front>
            <title>Key words for use in RFCs to Indicate Requirement Levels</title>
            <author fullname="S. Bradner" initials="S." surname="Bradner"/>
            <date month="March" year="1997"/>
            <abstract>
              <t>In many standards track documents several words are used to signify the requirements in the specification. These words are often capitalized. This document defines these words as they should be interpreted in IETF documents. This document specifies an Internet Best Current Practices for the Internet Community, and requests discussion and suggestions for improvements.</t>
            </abstract>
          </front>
          <seriesInfo name="BCP" value="14"/>
          <seriesInfo name="RFC" value="2119"/>
          <seriesInfo name="DOI" value="10.17487/RFC2119"/>
        </reference>
        <reference anchor="RFC8174">
          <front>
            <title>Ambiguity of Uppercase vs Lowercase in RFC 2119 Key Words</title>
            <author fullname="B. Leiba" initials="B." surname="Leiba"/>
            <date month="May" year="2017"/>
            <abstract>
              <t>RFC 2119 specifies common key words that may be used in protocol specifications. This document aims to reduce the ambiguity by clarifying that only UPPERCASE usage of the key words have the defined special meanings.</t>
            </abstract>
          </front>
          <seriesInfo name="BCP" value="14"/>
          <seriesInfo name="RFC" value="8174"/>
          <seriesInfo name="DOI" value="10.17487/RFC8174"/>
        </reference>
      </references>
      <references anchor="sec-informative-references">
        <name>Informative References</name>
        <reference anchor="CHUAT22" target="https://doi.org/10.1007/978-3-031-05288-0">
          <front>
            <title>The Complete Guide to SCION</title>
            <author initials="L." surname="Chuat" fullname="Laurent Chuat">
              <organization>ETH Zuerich</organization>
            </author>
            <author initials="M." surname="Legner" fullname="Markus Legner">
              <organization>ETH Zuerich</organization>
            </author>
            <author initials="D." surname="Basin" fullname="David Basin">
              <organization>ETH Zuerich</organization>
            </author>
            <author initials="D." surname="Hausheer" fullname="David Hausheer">
              <organization>Otto von Guericke University Magdeburg</organization>
            </author>
            <author initials="S." surname="Hitz" fullname="Samuel Hitz">
              <organization>Anapaya Systems</organization>
            </author>
            <author initials="P." surname="Mueller" fullname="Peter Mueller">
              <organization>ETH Zuerich</organization>
            </author>
            <author initials="A." surname="Perrig" fullname="Adrian Perrig">
              <organization>ETH Zuerich</organization>
            </author>
            <date year="2022"/>
          </front>
          <seriesInfo name="ISBN" value="978-3-031-05287-3"/>
        </reference>
        <reference anchor="ISD-AS-assignments" target="http://scion.org/registry/">
          <front>
            <title>SCION Registry</title>
            <author>
              <organization/>
            </author>
            <date year="2026"/>
          </front>
        </reference>
        <reference anchor="RFC1918">
          <front>
            <title>Address Allocation for Private Internets</title>
            <author fullname="Y. Rekhter" initials="Y." surname="Rekhter"/>
            <author fullname="B. Moskowitz" initials="B." surname="Moskowitz"/>
            <author fullname="D. Karrenberg" initials="D." surname="Karrenberg"/>
            <author fullname="G. J. de Groot" initials="G. J." surname="de Groot"/>
            <author fullname="E. Lear" initials="E." surname="Lear"/>
            <date month="February" year="1996"/>
            <abstract>
              <t>This document describes address allocation for private internets. This document specifies an Internet Best Current Practices for the Internet Community, and requests discussion and suggestions for improvements.</t>
            </abstract>
          </front>
          <seriesInfo name="BCP" value="5"/>
          <seriesInfo name="RFC" value="1918"/>
          <seriesInfo name="DOI" value="10.17487/RFC1918"/>
        </reference>
        <reference anchor="RFC2711">
          <front>
            <title>IPv6 Router Alert Option</title>
            <author fullname="C. Partridge" initials="C." surname="Partridge"/>
            <author fullname="A. Jackson" initials="A." surname="Jackson"/>
            <date month="October" year="1999"/>
            <abstract>
              <t>This memo describes a new IPv6 Hop-by-Hop Option type that alerts transit routers to more closely examine the contents of an IP datagram. [STANDARDS-TRACK]</t>
            </abstract>
          </front>
          <seriesInfo name="RFC" value="2711"/>
          <seriesInfo name="DOI" value="10.17487/RFC2711"/>
        </reference>
        <reference anchor="RFC4821">
          <front>
            <title>Packetization Layer Path MTU Discovery</title>
            <author fullname="M. Mathis" initials="M." surname="Mathis"/>
            <author fullname="J. Heffner" initials="J." surname="Heffner"/>
            <date month="March" year="2007"/>
            <abstract>
              <t>This document describes a robust method for Path MTU Discovery (PMTUD) that relies on TCP or some other Packetization Layer to probe an Internet path with progressively larger packets. This method is described as an extension to RFC 1191 and RFC 1981, which specify ICMP-based Path MTU Discovery for IP versions 4 and 6, respectively. [STANDARDS-TRACK]</t>
            </abstract>
          </front>
          <seriesInfo name="RFC" value="4821"/>
          <seriesInfo name="DOI" value="10.17487/RFC4821"/>
        </reference>
        <reference anchor="RFC9217">
          <front>
            <title>Current Open Questions in Path-Aware Networking</title>
            <author fullname="B. Trammell" initials="B." surname="Trammell"/>
            <date month="March" year="2022"/>
            <abstract>
              <t>In contrast to the present Internet architecture, a path-aware internetworking architecture has two important properties: it exposes the properties of available Internet paths to endpoints, and it provides for endpoints and applications to use these properties to select paths through the Internet for their traffic. While this property of "path awareness" already exists in many Internet-connected networks within single domains and via administrative interfaces to the network layer, a fully path-aware internetwork expands these concepts across layers and across the Internet.</t>
              <t>This document poses questions in path-aware networking, open as of 2021, that must be answered in the design, development, and deployment of path-aware internetworks. It was originally written to frame discussions in the Path Aware Networking Research Group (PANRG), and has been published to snapshot current thinking in this space.</t>
            </abstract>
          </front>
          <seriesInfo name="RFC" value="9217"/>
          <seriesInfo name="DOI" value="10.17487/RFC9217"/>
        </reference>
        <reference anchor="RFC9473">
          <front>
            <title>A Vocabulary of Path Properties</title>
            <author fullname="R. Enghardt" initials="R." surname="Enghardt"/>
            <author fullname="C. Krähenbühl" initials="C." surname="Krähenbühl"/>
            <date month="September" year="2023"/>
            <abstract>
              <t>Path properties express information about paths across a network and the services provided via such paths. In a path-aware network, path properties may be fully or partially available to entities such as endpoints. This document defines and categorizes path properties. Furthermore, the document identifies several path properties that might be useful to endpoints or other entities, e.g., for selecting between paths or for invoking some of the provided services. This document is a product of the Path Aware Networking Research Group (PANRG).</t>
            </abstract>
          </front>
          <seriesInfo name="RFC" value="9473"/>
          <seriesInfo name="DOI" value="10.17487/RFC9473"/>
        </reference>
        <reference anchor="CRYPTOBOOK" target="https://toc.cryptobook.us/">
          <front>
            <title>A Graduate Course in Applied Cryptography</title>
            <author initials="D." surname="Boneh" fullname="Dan Boneh">
              <organization/>
            </author>
            <author initials="V." surname="Shoup" fullname="Victor Shoup">
              <organization/>
            </author>
            <date year="2023"/>
          </front>
        </reference>
        <reference anchor="PEREIRA2025">
          <front>
            <title>Protocols to Code: Formal Verification of a Secure Next-Generation Internet Router</title>
            <author initials="J." surname="Pereira" fullname="João Pereira">
              <organization>ETH Zürich</organization>
            </author>
            <author initials="T." surname="Klenze" fullname="Tobias Klenze">
              <organization>Independent</organization>
            </author>
            <author initials="S." surname="Giampietro" fullname="Sofia Giampietro">
              <organization>ETH Zürich</organization>
            </author>
            <author initials="M." surname="Limbeck" fullname="Markus Limbeck">
              <organization>ETH Zürich</organization>
            </author>
            <author initials="" surname="Dionysios Spiliopoulos" fullname="D. Spiliopoulos">
              <organization>ETH Zürich</organization>
            </author>
            <author initials="F." surname="Wolf" fullname="Felix Wolf">
              <organization>ETH Zürich</organization>
            </author>
            <author initials="M." surname="Eilers" fullname="Marco Eilers">
              <organization>ETH Zürich</organization>
            </author>
            <author initials="C." surname="Sprenger" fullname="Christoph Sprenger">
              <organization>ETH Zürich</organization>
            </author>
            <author initials="D." surname="Basin" fullname="David Basin">
              <organization>ETH Zürich</organization>
            </author>
            <author initials="P." surname="Müller" fullname="Peter Müller">
              <organization>ETH Zürich</organization>
            </author>
            <author initials="A." surname="Perrig" fullname="Adrian Perrig">
              <organization>ETH Zürich</organization>
            </author>
            <date year="2025"/>
          </front>
        </reference>
        <reference anchor="SCIONLAB" target="https://ieeexplore.ieee.org/abstract/document/9259355">
          <front>
            <title>SCIONLAB - A Next-Generation Internet Testbed</title>
            <author initials="J." surname="Kown" fullname="Jonghoon Kwon">
              <organization>ETH Zuerich</organization>
            </author>
            <author initials="J." surname="García-Pardo" fullname="Juan A. García-Pardo">
              <organization>ETH Zuerich</organization>
            </author>
            <author initials="M." surname="Legner" fullname="Markus Legner">
              <organization>ETH Zuerich</organization>
            </author>
            <author initials="F." surname="Wirz" fullname="François Wirz">
              <organization>ETH Zuerich</organization>
            </author>
            <author initials="M." surname="Frei" fullname="Matthias Frei">
              <organization>ETH Zuerich</organization>
            </author>
            <author initials="D." surname="Hausheer" fullname="David Hausheer">
              <organization>Otto von Guericke University Magdeburg</organization>
            </author>
            <author initials="A." surname="Perrig" fullname="Adrian Perrig">
              <organization>ETH Zuerich</organization>
            </author>
            <date year="2020"/>
          </front>
        </reference>
        <reference anchor="SCIONLAB_WEBSITE" target="https://www.scionlab.org/">
          <front>
            <title>SCIONLab website</title>
            <author>
              <organization/>
            </author>
            <date year="2024"/>
          </front>
        </reference>
        <reference anchor="SIG" target="https://docs.scion.org/en/latest/sig.html">
          <front>
            <title>SCION IP Gateway Documentation</title>
            <author initials="" surname="Anapaya">
              <organization>Anapaya Systems</organization>
            </author>
            <author initials="" surname="ETH">
              <organization>ETH Zuerich</organization>
            </author>
            <author initials="" surname="SCION">
              <organization>SCION Association</organization>
            </author>
            <date year="2026"/>
          </front>
        </reference>
        <reference anchor="SCION-UDP" target="https://docs.scion.org/en/latest/protocols/underlay.html">
          <front>
            <title>SCION IP/UDP underlay</title>
            <author initials="" surname="Anapaya">
              <organization>Anapaya Systems</organization>
            </author>
            <author initials="" surname="ETH">
              <organization>ETH Zuerich</organization>
            </author>
            <author initials="" surname="SCION">
              <organization>SCION Association</organization>
            </author>
            <date year="2026"/>
          </front>
        </reference>
      </references>
    </references>
    <?line 1554?>

<section numbered="false" anchor="deployment-testing-scionlab">
      <name>Deployment Testing: SCIONLab</name>
      <t>SCIONLab is a global research network that is available to test the SCION architecture. You can create and use your ASes using your own computation resources which allows you to gain real-world experience of deploying and managing a SCION network.</t>
      <t>More information can be found at <xref target="SCIONLAB_WEBSITE"/> and in the <xref target="SCIONLAB"/> paper.</t>
    </section>
    <section numbered="false" anchor="protnum">
      <name>Assigned SCION Protocol Numbers</name>
      <t>This appendix lists the assigned SCION protocol numbers.</t>
      <section numbered="false" anchor="considerations">
        <name>Considerations</name>
        <t>SCION attempts to take the IANA's assigned Internet protocol numbers into consideration. Widely employed protocols have the same protocol number as the one assigned by IANA. SCION specific protocol numbers start at 200.</t>
        <t>The protocol numbers are used in the SCION header to identify the upper layer protocol.</t>
      </section>
      <section numbered="false" anchor="protnum-table">
        <name>Assignment</name>
        <table>
          <name>The assigned SCION protocol numbers</name>
          <thead>
            <tr>
              <th align="left">Decimal</th>
              <th align="left">Keyword</th>
              <th align="left">Protocol</th>
            </tr>
          </thead>
          <tbody>
            <tr>
              <td align="left">0-5</td>
              <td align="left"> </td>
              <td align="left">Unassigned</td>
            </tr>
            <tr>
              <td align="left">6</td>
              <td align="left">TCP/SCION</td>
              <td align="left">Transmission Control Protocol over SCION</td>
            </tr>
            <tr>
              <td align="left">7-16</td>
              <td align="left"> </td>
              <td align="left">Unassigned</td>
            </tr>
            <tr>
              <td align="left">17</td>
              <td align="left">UDP/SCION</td>
              <td align="left">User Datagram Protocol over SCION</td>
            </tr>
            <tr>
              <td align="left">18-199</td>
              <td align="left"> </td>
              <td align="left">Unassigned</td>
            </tr>
            <tr>
              <td align="left">200</td>
              <td align="left">HBH</td>
              <td align="left">SCION Hop-by-Hop Options</td>
            </tr>
            <tr>
              <td align="left">201</td>
              <td align="left">E2E</td>
              <td align="left">SCION End-to-End Options</td>
            </tr>
            <tr>
              <td align="left">202</td>
              <td align="left">SCMP</td>
              <td align="left">SCION Control Message Protocol</td>
            </tr>
            <tr>
              <td align="left">203</td>
              <td align="left">BFD/SCION</td>
              <td align="left">BFD over SCION</td>
            </tr>
            <tr>
              <td align="left">204-252</td>
              <td align="left"> </td>
              <td align="left">Unassigned</td>
            </tr>
            <tr>
              <td align="left">253</td>
              <td align="left"> </td>
              <td align="left">Use for experimentation and testing</td>
            </tr>
            <tr>
              <td align="left">254</td>
              <td align="left"> </td>
              <td align="left">Use for experimentation and testing</td>
            </tr>
            <tr>
              <td align="left">255</td>
              <td align="left"> </td>
              <td align="left">Reserved</td>
            </tr>
          </tbody>
        </table>
      </section>
    </section>
    <section numbered="false" anchor="change-log">
      <name>Change Log</name>
      <t>Changes made to drafts since ISE submission. This section is to be removed before publication.</t>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-14">
        <name>draft-dekater-scion-dataplane-14</name>
        <ul spacing="normal">
          <li>
            <t>Life of a packet: clarify that private ports are not registered</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-13">
        <name>draft-dekater-scion-dataplane-13</name>
        <ul spacing="normal">
          <li>
            <t>Life of a packet: use private ports in examples</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-12">
        <name>draft-dekater-scion-dataplane-12</name>
        <ul spacing="normal">
          <li>
            <t>1.3.2.  Intra-Domain Forwarding Process: clarify relation to UDP/IP underlay, add informative reference. CLarify use of underlay ports in 3.  Life of a SCION Data Packet</t>
          </li>
          <li>
            <t>Accumulator field: clarify that it is initialized to SegID</t>
          </li>
          <li>
            <t>Processing at Egress Border Router: mention check that packet comes from neighbor router</t>
          </li>
          <li>
            <t>Security considerations: clarify that forwarding key rotation may use OOB mechanisms, mention SPAO in Volumetric DoS section</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-11">
        <name>draft-dekater-scion-dataplane-11</name>
        <ul spacing="normal">
          <li>
            <t>Reduce use of passive tense and clarify subject</t>
          </li>
          <li>
            <t>Abstract, Introduction: reworded and shortened, with reference to longer -controlplane introduction</t>
          </li>
          <li>
            <t>Tables 1-4: move them to dedicated subsections to increase readability</t>
          </li>
          <li>
            <t>Figures 2, 3: move text to after figures</t>
          </li>
          <li>
            <t>Life of a SCION Data Packet: restructure section and clarify role of example topology</t>
          </li>
          <li>
            <t>Effects of Clock Inaccuracy: reword, clarify tolerable offset, remove duplicated part about beacon propagation and point to -controlplane</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-10">
        <name>draft-dekater-scion-dataplane-10</name>
        <ul spacing="normal">
          <li>
            <t>Add normative reference to POSIX time and clarify timestamp behavior at wraparound</t>
          </li>
          <li>
            <t>Clarify distinction between SCION ASes and BGP ASes through the text</t>
          </li>
          <li>
            <t>Figure 1: split into two smaller figures to fit in a single page</t>
          </li>
          <li>
            <t>Figure 9 (Path construction example): shorten and remove superfluous AS chain</t>
          </li>
          <li>
            <t>Configuration: clarify text on intra vs inter-domain interface id mappings</t>
          </li>
          <li>
            <t>Remove unused informative reference to I-D.dekater-panrg-scion-overview, to RFC5280, and to Anapaya's ISD assignments, since they are taken over by SCION Association in 2026</t>
          </li>
          <li>
            <t>Overall review and wording polish</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-09">
        <name>draft-dekater-scion-dataplane-09</name>
        <ul spacing="normal">
          <li>
            <t>Intro: remove duplicated motivation and component description and add a reference to the same text in -controlplane</t>
          </li>
          <li>
            <t>Clarify coarse time synchronization requirement between routers and control services and add reference to -controlplane security considerations</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-08">
        <name>draft-dekater-scion-dataplane-08</name>
        <ul spacing="normal">
          <li>
            <t>Small clarifications and nits (e.g, replace RFC2460 reference with more recent RFC8200)</t>
          </li>
          <li>
            <t>Life of a SCION Data Packet: improve clarity in text and tables</t>
          </li>
          <li>
            <t>Remove use of decimal notation in tables 3 and 4</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-07">
        <name>draft-dekater-scion-dataplane-07</name>
        <ul spacing="normal">
          <li>
            <t>Clarify MTU of reversed paths and MAC algorithm</t>
          </li>
          <li>
            <t>Fix and reduce nested indentations in "Steps at Ingress Border Router"</t>
          </li>
          <li>
            <t>Reference formal verification work and acknowledge reviewers</t>
          </li>
          <li>
            <t>Nits, improve figure 2</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-06">
        <name>draft-dekater-scion-dataplane-06</name>
        <ul spacing="normal">
          <li>
            <t>Figures: redraw and add aasvg version when possible</t>
          </li>
          <li>
            <t>Clarify 0 as "unspecified" Interface ID</t>
          </li>
          <li>
            <t>Use ASes within the documentation range in examples</t>
          </li>
          <li>
            <t>Remove one-hop path type figure</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-05">
        <name>draft-dekater-scion-dataplane-05</name>
        <ul spacing="normal">
          <li>
            <t>Abstract: mention goal and that document is not an Internet Standard</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-04">
        <name>draft-dekater-scion-dataplane-04</name>
        <ul spacing="normal">
          <li>
            <t>Moved SCMP specification to draft-dekater-scion-controlplane</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-03">
        <name>draft-dekater-scion-dataplane-03</name>
        <t>Major changes:</t>
        <ul spacing="normal">
          <li>
            <t>Introduction: clarified document goal and added Figure showing SCION Header within the stack</t>
          </li>
          <li>
            <t>Added section with SCMP specification</t>
          </li>
          <li>
            <t>Added section on Handling Link Failures and BFD</t>
          </li>
          <li>
            <t>Added sections on MTU and fragmentation</t>
          </li>
          <li>
            <t>Clarified router checks in Processing at Routers</t>
          </li>
          <li>
            <t>Security Considerations: add section on Payload Modifications</t>
          </li>
        </ul>
        <t>Minor changes:</t>
        <ul spacing="normal">
          <li>
            <t>Added short section mentioning SCION IP Gateway</t>
          </li>
          <li>
            <t>Clarified the router alert flags and relationship to the ConsIngress/Egress fields.</t>
          </li>
          <li>
            <t>Clarifications in the SCION Header Specification section (router alert flags, service addresses, one-hop paths, text clarifications, validity of peering links)</t>
          </li>
          <li>
            <t>Added mention of why proof of transit is not needed.</t>
          </li>
          <li>
            <t>Rename flow ID to Flow Label and document by reference to <xref target="RFC6437"/>.</t>
          </li>
          <li>
            <t>Added reference to SCIONLab as a testbed for implementors</t>
          </li>
          <li>
            <t>Added J. C. Hugly as author.</t>
          </li>
          <li>
            <t>Introduced this change log</t>
          </li>
          <li>
            <t>Clarify addressing and avoid confusing claim of communication between two endpoints with the same IP (section 1.3.1)</t>
          </li>
        </ul>
      </section>
      <section numbered="false" anchor="draft-dekater-scion-dataplane-02">
        <name>draft-dekater-scion-dataplane-02</name>
        <t>Major changes:</t>
        <ul spacing="normal">
          <li>
            <t>Added overview of SCION components to Introduction section.</t>
          </li>
          <li>
            <t>Introduced AES-CMAC as default MAC algorithm and elaborated on MAC chaining and path splicing.</t>
          </li>
          <li>
            <t>Added section to describe Effects of Clock Inaccuracy / time synchronization requirements</t>
          </li>
          <li>
            <t>Added section to describe required router Configuration</t>
          </li>
          <li>
            <t>Added service field table.</t>
          </li>
        </ul>
        <t>Minor changes:</t>
        <ul spacing="normal">
          <li>
            <t>Removed forward references.</t>
          </li>
          <li>
            <t>General edits to make terminology consistent, remove duplication and rationalize text.</t>
          </li>
          <li>
            <t>Added and capitalized RFC2119 compliant terminology.</t>
          </li>
          <li>
            <t>Clarified implications of AS forwarding key compromise and path splicing in security considerations</t>
          </li>
          <li>
            <t>Clarified the computation of ExtLen.</t>
          </li>
        </ul>
      </section>
    </section>
    <section numbered="false" anchor="acknowledgments">
      <name>Acknowledgments</name>
      <t>Many thanks go to Harald Alvestrand (Google), Joel Halpern (Ericsson), Michael McBride (Futurewei), Ron Bonica (Juniper), Brian Trammel (Google) for reviewing this document. We also thank Matthias Frei (SCION Association), Juan A. Garcia Prado (ETH Zurich) and Kevin Meynell (SCION Association), Adrian Perrig (ETH Zurich) for providing inputs to this document. We also thank the Information Security Group at ETH Zurich for their inputs based on their formal verification work of the SCION open source router implementation <xref target="PEREIRA2025"/>. Finally, we are indebted to the SCION development teams of Anapaya, ETH Zurich, and SCION Association for their practical knowledge and for the documentation about the SCION Data Plane, as well as to the authors of <xref target="CHUAT22"/> - the book is an important source of input and inspiration for this draft.</t>
    </section>
  </back>
  <!-- ##markdown-source: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-->

</rfc>
