Hello Christian,

Many thanks for bringing the topic to the 6lo mailing list!

I am personally not aware of documents or efforts to fill the gaps that you
mentioned.

It would be great if anyone aware of such efforts (if any) could provide
any details.

Cheers,

Carles



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On Tue, 4 Nov 2025 at 13:50, Christian Amsüss <[email protected]> wrote:

> Hello 6lo group,
>
> since RFC8105 has been published, ETSI has completed a new iteration of
> the DECT standard, markeded as DECT-2020 NR+, technically ETSI TS
> 103-636-1 and -v5 (those are the IP-relevant ones), which unlike the ULE
> used in 8105 merely coexists with (and is not part of the same stack as)
> the classical DECT service.
>
> Their codepoint allocations reserve an "endpoint value" (multiplex point
> for different protocols) fo 0x8003 for compressed IPv6 datagrams
> following RFC6282, but no document for details -- for example, RFC8105
> talked about how their 40- and 20-bit addresses could or could not be
> used, and what level of assembly is expected from the DECT layers. For
> comparison, DECT-2020 uses long 32-bit and short 16-bit addresses (now
> random), and hop-by-hop retransmission and fragmentation/reassembly.
>
> While I think that some choices in how to actually do 6lo over DECT-2020
> have obvious deductions from RFC8105, some (such as address
> reconstruction or considerations for the DECT mesh) could need explicit
> spelling-out.
>
> Do you known of any public or WIP documents or efforts to fill those
> gaps?
>
> Best regards
> Christian
>
> [1]:
> https://portal.etsi.org/PNNS/Protocol-Specification-Allocation/DECT-2020-NR-Endpoint-Multiplexing-Addresses
>
> --
> To use raw power is to make yourself infinitely vulnerable to greater
> powers.
>   -- Bene Gesserit axiom
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