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To: Loa Andersson <loa@pi.nu>, Stewart Bryant <stewart.bryant@gmail.com>
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From: Fabian Ihle <fabian.ihle@uni-tuebingen.de>
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    <p>Hi Loa,</p>
    <p>comments inline below tagged with <b>&lt;FI&gt;</b><br>
    </p>
    <div class=3D"moz-cite-prefix">Am 26.10.2024 um 13:09 schrieb Loa
      Andersson:<br>
    </div>
    <blockquote type=3D"cite"
      cite=3D"mid:640ac998-5ed9-4145-b008-a3f9ff1a00e3@pi.nu">Fabian,
      <br>
      <br>
      We are very much on the same page. Though in addition to what you
      say, compatibility with RFC 9326 is important for me.
      <br>
      <br>
      Inline please.
      <br>
      <br>
      Den 25/10/2024 kl. 15:50, skrev Fabian Ihle:
      <br>
      <blockquote type=3D"cite">Stewart and Loa,
        <br>
        <br>
        the "a bit trickier" part of PSD is:
        <br>
        <br>
        =C2=A01. The presence of PSD needs to be indicated efficiently. W=
ith
        a single
        <br>
        =C2=A0=C2=A0=C2=A0 bit for indication (the "P-bit" from the jags =
draft), we
        still need
        <br>
        =C2=A0=C2=A0=C2=A0 8 bytes (Format A for in-stack NAS indication =
and Format B
        for a
        <br>
        =C2=A0=C2=A0=C2=A0 flag-based opcode with the P-bit set). If sele=
ct-scoped PSD
        <br>
        =C2=A0=C2=A0=C2=A0 indication is to be a thing, even more overhea=
d is added.
        <br>
        =C2=A02. In P4, the MPLS stack and the PSD must be within RLD. We=

        cannot skip
        <br>
        =C2=A0=C2=A0=C2=A0 parts of the MPLS stack that are not relevant =
to the current
        node
        <br>
        =C2=A0=C2=A0=C2=A0 but have to parse the entire stack. While thes=
e irrelevant
        LSEs do
        <br>
        =C2=A0=C2=A0=C2=A0 not need to be processed, we still have to all=
ocate
        resources to
        <br>
        =C2=A0=C2=A0=C2=A0 parse them. However, with an RLD of 51 LSEs, t=
his constraint
        is not
        <br>
        =C2=A0=C2=A0=C2=A0 a showstopper and PSD is definitely doable. Bu=
t it does
        emphasize
        <br>
        =C2=A0=C2=A0=C2=A0 the importance of the first point. Other hardw=
are may work
        <br>
        =C2=A0=C2=A0=C2=A0 differently and not have this limitation, or m=
ay be even
        more
        <br>
        =C2=A0=C2=A0=C2=A0 constrained. In the latter case, PSD might be =
difficult.
        <br>
      </blockquote>
      <br>
      Thought experiment:
      <br>
      <br>
      Assume we need to transport 4 octets or mutable or variable
      ancillary data.
      <br>
    </blockquote>
    <p><b>&lt;FI&gt; In this case, we're only speaking of the DEX
        option. There is not mutable or variable ancillary data in DEX.
        AD in DEX are only the 32-bit optional sequence number and flow
        ID which is pushed by the encapsulating node. I totally agree
        with you that if not using the DEX option, e.g., requiring
        mutable or variable data with tracing, PSD is much more
        efficient as more bits are available.</b></p>
    <p><b>However, lets assume mutable data in the thought experiment.<br=
>
      </b></p>
    <blockquote type=3D"cite"
      cite=3D"mid:640ac998-5ed9-4145-b008-a3f9ff1a00e3@pi.nu">
      <br>
      For ISD you would need
      <br>
      <br>
      - the MNA label
      <br>
      - a format B LSE, for the OpCode to tell what NA the AD belongs
      too.
      <br>
      - a Format C LSE that can carry 7 bit mutable/varaiable AD
      <br>
      - three Format D LSEs to carry 25 bits (11+11+3 bits) mutable or
      <br>
      =C2=A0 varaiable AD
      <br>
      <br>
      =3D 6 MNA LSEs.
      <br>
      <br>
      For PSD you would need
      <br>
      <br>
      - the MNA label
      <br>
      - a format B LSE, for the -p-bit or an OpCode to tell what NA the
      AD
      <br>
      =C2=A0 belongs to
      <br>
      <br>
      After the stack you would need
      <br>
      <br>
      - 1 LSE carrying the type
      <br>
      - 1 LSE carrying the OpCOde + 16 bit of AD
      <br>
      - 1 LSE carrying 16 bits of data
      <br>
      <br>
      =3D 5 MNA LSEs
      <br>
      <br>
      It seems that RLD-wise in this case PSD will be more efficient.
      <br>
      <br>
    </blockquote>
    <p><b>&lt;FI&gt; The problem here is that (at least in our case) we
        cannot only look at the number of LSEs for the NAS/PSD, but must
        look at the entire MPLS stack. We have to parse the full MPLS
        stack to be able to parse the PSD. Lets assume we have two
        forwarding labels at the top, followed by a HBH NAS with the
        IOAM data, followed by 10 arbitrary LSEs until BoS. In the ISD
        case for your example this means:</b></p>
    <b>| MPLS forwarding label A |<br>
      | MPLS forwarding label B |<br>
      | MNA bSPL label |<br>
      | Format B LSE (e.g. HBH scope) |</b><br>
    <b>| Format C LSE with 7 bit mutable data |</b><br>
    <b>| 3 Format D LSEs to carry 25 bits (11+11+3 bits) mutable AD |=C2=A0=
=C2=A0
      --&gt; we can stop parsing the MPLS stack here. Assuming we have
      two forwarding labels at the top until we find our NAS we require
      an RLD of 8 LSEs in this example.<br>
      | Rest of the MPLS stack, lets say 10 LSEs until BoS |=C2=A0 --&gt;=

      ignored</b><br>
    <p><b>Same example for PSD:</b><br>
    </p>
    <b>| MPLS forwarding label A |<br>
      | MPLS forwarding label B |<br>
      | MNA bSPL label |<br>
      | Format B LSE (the PSD indicator) |<br>
      | Rest of the MPLS stack, lets say 10 LSEs until BoS |=C2=A0=C2=A0=C2=
=A0 --&gt;
      we MUST parse the remaining MPLS stack to be able to parse the
      post-stack. Those labels are not processed in the pipeline, but we
      have to allocate resources to parse them.<br>
      =C2=A0--- BoS, PSD begins now=C2=A0 ---</b><br>
    <b>| 1 LSE carrying the type
      |<br>
    </b><b>| 1 LSE carrying the OpCode + 16 bit of AD
      |</b><br>
    <b>| 1 LSE carrying 16 bits of data|=C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0=
 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0=C2=A0=C2=A0 --&gt;
      Total RLD of 4 LSE (top-of-stack + in-stack NAS) +=C2=A0 10 LSE (re=
st
      of the MPLS stack) + 3 LSE (PSD) =3D 17 LSE</b><br>
    <p><b>Other hardware may not be forced to parse the remaining MPLS
        stack and does not have to allocate resources for them. If that
        is the case, i.e., if there is an efficient way to go directly
        from the PSD indicator LSE to the actual PSD, for example by
        skipping over with the BoS bit without actually parsing those
        entries, the PSD case would be more efficient.</b></p>
    <p><b>With that in mind, a PSD solution is compatible with RFC 9326
        but has some more hardware requirements (either large RLD, or
        efficient way to parse PSD without parsing the entire stack). In
        contrast, the ISD solution does not have those requirements
        (probably better for legacy hardware), but has two bits less for
        flow ID / sequence numbers in DEX.</b><br>
    </p>
    <p><b>Best,</b></p>
    <p><b>Fabian<br>
      </b></p>
    <p><br>
    </p>
    <blockquote type=3D"cite"
      cite=3D"mid:640ac998-5ed9-4145-b008-a3f9ff1a00e3@pi.nu">
      <br>
      /Loa
      <br>
      <br>
      <blockquote type=3D"cite">
        <br>
        Our intention with a P4 implementation is not to deploy
        commercial MNA solutions but rather to show that a protocol
        extension such as the MNA framework can be implemented on
        constrained hardware. If it works on constrained P4 hardware,
        hardware engineers will most likely also be able to implement
        it. However, the reverse assumption, i.e., "if it does not work
        on P4 hardware, it will also not work on other hardware" does
        not apply.
        <br>
        <br>
        We have mainly focused on an ISD implementation for now, the
        next step will be an extensive evaluation of the PSD version.
        <br>
        <br>
        Best,
        <br>
        <br>
        Fabian
        <br>
        <br>
        <br>
        On 25.10.24 14:34, Loa Andersson wrote:
        <br>
        <blockquote type=3D"cite">Stewart and Fabian,
          <br>
          <br>
          I think all implementation experiences are useful, also if the
          they are done using the commercially non-deployed P4, you can
          always draw some conclusions.
          <br>
          <br>
          What I would like is why PSD is trickier, and if "a bit
          trickier" is significant enough to not go with PSD. Especially
          since we agree that draft-mb-mpls-ioam-dex is not compliant
          with RFC 9326.
          <br>
          <br>
          Is "a bit trickier" the prize we pay for compliance with RFC
          9326?
          <br>
          <br>
          /Loa
          <br>
          <br>
          Den 25/10/2024 kl. 13:13, skrev Stewart Bryant:
          <br>
          <blockquote type=3D"cite">
            <br>
            <br>
            <blockquote type=3D"cite">On 14 Oct 2024, at 10:34, Fabian
              Ihle <a class=3D"moz-txt-link-rfc2396E" href=3D"mailto:fabi=
an.ihle@uni-tuebingen.de">&lt;fabian.ihle@uni-tuebingen.de&gt;</a> wrote:=

              <br>
              <br>
              I think that ISD is the way to go for the DEX option as an
              PSD implementation has proven to be a bit trickier in our
              P4 version.
              <br>
            </blockquote>
            <br>
            Is this an issue with the protocol or an indication of
            deficiencies in P4?
            <br>
            <br>
            Is P4 deployed or likely to be deployed in a production
            environment, i.e. is this a consideration for protocol
            standardisation?
            <br>
            <br>
            Best regards
            <br>
            <br>
            Stewart
            <br>
            <br>
            <br>
            <br>
            _______________________________________________
            <br>
            mpls mailing list -- <a class=3D"moz-txt-link-abbreviated" hr=
ef=3D"mailto:mpls@ietf.org">mpls@ietf.org</a>
            <br>
            To unsubscribe send an email to <a class=3D"moz-txt-link-abbr=
eviated" href=3D"mailto:mpls-leave@ietf.org">mpls-leave@ietf.org</a>
            <br>
          </blockquote>
          <br>
        </blockquote>
        --=C2=A0<br>
        Fabian Ihle
        <br>
        Universit=C3=A4t T=C3=BCbingen
        <br>
        Fachbereich Informatik Lehrstuhl Kommunikationsnetze
        <br>
        Wilhelm-Schickard-Institut f=C3=BCr Informatik
        <br>
        Sand 13, 72076 T=C3=BCbingen
        <br>
        <br>
        Raum: B303
        <br>
        Telefonnr.: +49 7071 29-70545
        <br>
        <a class=3D"moz-txt-link-abbreviated" href=3D"mailto:E-Mail:fabia=
n.ihle@uni-tuebingen.de">E-Mail:fabian.ihle@uni-tuebingen.de</a>
        <br>
        Internet: uni-tuebingen.de
        <br>
        <br>
      </blockquote>
      <br>
    </blockquote>
    <pre class=3D"moz-signature" cols=3D"72">--=20
Fabian Ihle
Universit=C3=A4t T=C3=BCbingen
Fachbereich Informatik Lehrstuhl Kommunikationsnetze
Wilhelm-Schickard-Institut f=C3=BCr Informatik
Sand 13, 72076 T=C3=BCbingen=20

Raum: B303
Telefonnr.: +49 7071 29-70545
E-Mail: <a class=3D"moz-txt-link-abbreviated" href=3D"mailto:fabian.ihle@=
uni-tuebingen.de">fabian.ihle@uni-tuebingen.de</a>
Internet: uni-tuebingen.de</pre>
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