Hi Emelia, Karl,

Thanks for the detailed explanation. I'll dive deeper into the latest CIMD, 
ABCA and Client Instance Assertion drafts as I certainly do not have the full 
picture yet.

One thought I have when reading your email, Karl: Am I correct that in your 
proposal, if the client can't use a generic/shared CIMD (because it isn't 
hosted, for instance), the client can use DCR with any AS it wants to register 
as a client with (agent frameworks, cli tools, ... might need to register with 
a wide range of authorization servers)? If that's correct, then AB-DCR is still 
a possible improvement on that process if the AS does not want open 
registration (IAT remains another alternative). I believe the instance and 
per-request binding would still be viable on top?

Perhaps I'm misreading something and I'm happy to be corrected.

Regards,
Philippe

From: Karl McGuinness <[email protected]>
Date: Monday, July 20, 2026 at 10:58 PM
To: Emelia S. <[email protected]>
Cc: Lombardo, Jeff <[email protected]>; Aaron Parecki <[email protected]>; 
Dellaert, Philippe <[email protected]>; Jaryn Sabey <[email protected]>; 
Max Gerber <[email protected]>; [email protected] <[email protected]>; 
[email protected] <[email protected]>; [email protected] 
<[email protected]>; [email protected] 
<[email protected]>
Subject: RE: [EXTERNAL] [OAUTH-WG] Re: New Internet-Draft: Approval-Based 
Dynamic Client Registration


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Hi Emelia,

CIMD's identity stays generic/shared as intended; instance and user binding 
happen at the layers above it that perform client authentication.

+1, I think this is the right model: the shared identity stays put, and the 
binding problems get solved by the authentication and authorization layers 
above it.

One clarification on Jeff's earlier comment, since the draft is probably new to 
most here:

Having a differentiated CIMD needs some enrollment with the provider of the 
client (here ACME), something which is not always possible. Therefore this also 
leaves Karl McGuinness's Client Instance Assertion draft as a not usable 
solution.

Client Instance Assertion 
(https://datatracker.ietf.org/doc/draft-mcguinness-oauth-client-instance-assertion/)
 doesn't need a differentiated CIMD per instance; avoiding that is its central 
design decision. One client_id covers many runtime instances, and instances are 
differentiated at the token endpoint by a short-lived assertion from an 
"instance issuer" the client's metadata endorses. That endorsement comes from 
the client's metadata in either registration model the draft supports: the 
published CIMD, or RFC 7591-shaped metadata registered at the AS, so a 
deployment that can't get anything from ACME can still adopt it by registering 
the agent locally. Either way the identity stays shared: one registration 
covering every instance, never a registration per instance. And the instance 
key is never published; it rides as a cnf thumbprint inside the assertion.

Building on the ABCA point: agreed that we can start using it, and the 
instance-issuer model is designed to enable exactly that kind of composition 
rather than new registration machinery. The AI Agent Instance profile 
(https://datatracker.ietf.org/doc/draft-mcguinness-oauth-ai-agent-instance/) is 
one example: the same agent instance claims ride in either a Client Instance 
Assertion or an ABCA Client Attestation in DPoP combined mode, with the same 
claims and token surfacing on both carriers. Jeff's user_code ceremony could be 
another: an enrollment service that authenticates the resource owner, runs the 
approval once, and mints instance assertions afterward is an instance issuer in 
the draft's terms. The user becomes the attestation authority, and AS token 
processing stays standard.

One nit on the ABCA-only stack: ABCA authenticates the instance at the token 
endpoint but defines no representation of it in the issued token. With DPoP the 
RS sees at most a key thumbprint, which rotates with the key and carries no 
provenance; it's not a stable, attested instance identity. Surfacing the 
validated instance in the token (act.sub when acting for a user, sub when 
self-acting, sender-constrained to the instance key) is the missing layer, and 
that's the layer these drafts add.

Net: CIMD for the generic identity, PAR for request integrity, the resource 
owner's grant-level approval, instance evidence via ABCA or an instance 
assertion, and the instance surfaced in the issued token. I think that covers 
Jeff's case with no per-instance registrations and nothing per-instance to 
publish, but I may be lacking the full story.

Best,

Karl

On Mon, Jul 20, 2026 at 10:31 PM Emelia S. 
<[email protected]<mailto:[email protected]>>
 wrote:

Hi Jeff,

I think this (if it is a) device code grant flow is already achievable, but 
there's a finer point: the per-instance/resource-owner binding here is done via:

  *   Attestation-Based Client Authentication [1] in DPoP/PoP mode, to bind the 
authorization to a specific instance key, carried through on every subsequent 
request
  *   Device code grant's existing approval step to bind the authorization to a 
specific resource owner (I think Aaron has a draft that explains how DPoP/PoP's 
work with Device Code Grant Flow.
  *   Pushed Authorization Requests to lock down request parameters ahead of 
the flow, preventing user tampering.

CIMD's identity stays generic/shared as intended; instance and user binding 
happen at the layers above it that perform client authentication.

ABCA is still a draft, but that doesn't mean we can't start to use it — I think 
AB-DCR may duplicate something that ABCA + CIMD + PAR may make already possible.

[1] 
https://datatracker.ietf.org/doc/draft-ietf-oauth-attestation-based-client-auth/

Yours,
Emelia Smith

On 21 Jul 2026, at 07:13, Lombardo, Jeff 
<[email protected]<mailto:[email protected]>> wrote:

Hi Aaron,

Thanks for the feedback.

Here are some answers on my peer Draft.

As far as I understand it, 
https://www.ietf.org/archive/id/draft-richer-oauth-pushed-client-registration-00.html
 has been proposed for “ephemeral or transactional OAuth 2.0 client to signal 
to the AS that the client does not need or expect to have an identified state 
outside the existence of any issued access and refresh tokens” which sounds 
logic under the assumption of your use case. The fact that is piggyback on PAR 
as the only objective are issuance of tokens is fair.

The live use case behind this proposal provides the ability to bind a general 
AI Agent (client), provided by ACME and that could not possess a differentiated 
CIMD per installed instance (i.e. generic https://acme.abc/my-ai-agent), to a 
subject / resource owner.

This answer your question: the approving party is the resource owner (user 
running the client).

Having a differentiated CIMD needs some enrollment with the provider of the 
client (here ACME), something which is not always possible. Therefore this also 
leaves Karl McGuinness'sClient Instance Assertion 
draft<https://datatracker.ietf.org/doc/html/draft-mcguinness-oauth-client-instance-assertion-01>
 as a not usable solution.

The behavior proposed here is:


  *   Starting a DCR registration flow as usual but with a new parameter
  *   Pausing the process with a similar approach as for Deferred Token 
Response, except it embeds also a user_code à la Device Code Grant Flow to be 
redeemed by an authenticated resource owner / user running the client.
  *   The Resource owner effectively redeem the code after proper 
authentication at the OP
  *   Once redeemed, the client can through its Polling retrieve its set of 
unique client id and associated credential
     *   There is some place for being to support client that could generate a 
secret client side
     *   Still we will have to live with the constraint that the Client cannot 
advertise the public part of its credential publicly as it cannot posses a 
specific CIMD


If the process is successful, as indicated, the client is now registered AND 
bound to the user, which unlocks additional capabilities as the origin, 
purpose, and usage controls possess more contextual information.

Jeff

Jean-François “Jeff” Lombardo | Amazon Web Services

Architecte Principal de Solutions, Stratégie de Sécurité
Principal Solution Architect, Security Strategy
Montréal, Canada

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From: Aaron Parecki 
<[email protected]<mailto:[email protected]>>
Sent: July 20, 2026 8:08 PM
To: Philippe Dellaert 
<[email protected]<mailto:[email protected]>>
Cc: Jaryn Sabey <[email protected]<mailto:[email protected]>>; Max Gerber 
<[email protected]<mailto:[email protected]>>;
 [email protected]<mailto:[email protected]>; 
[email protected]<mailto:[email protected]>; 
[email protected]<mailto:[email protected]>;
 [email protected]<mailto:[email protected]>; 
[email protected]<mailto:[email protected]>
Subject: [EXT] [OAUTH-WG] Re: New Internet-Draft: Approval-Based Dynamic Client 
Registration


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I'm clearly a lot less optimistic about this draft than others on this thread, 
but I will give my 2¢ anyway.

I see called out in the intro that the "approving party" is likely to be the 
user running the client. In that case, there is no benefit to this flow over 
either CIMD or an idea that Justin and I were playing around with called 
"Pushed Client Registration" 
https://www.ietf.org/archive/id/draft-richer-oauth-pushed-client-registration-00.html
 which pushes the client reg info in the PAR request.

If the approving party is not the user, but the operator of the AS, then this 
can't realistically be expected to be used during an OAuth transaction anyway.

I am struggling to understand the uses of this that aren't better solved using 
Client ID Metadata Document.

Aaron



On Mon, Jul 20, 2026 at 7:32 PM Emelia S. 
<[email protected]<mailto:[email protected]>>
 wrote:
Yeah, that would make sense! In the "CIMD Service" idea in the CIMD Appendix A, 
the reference implementation actually uses JSON to CBOR encoding to generate a 
CID (content identifier) from the CIMD pushed to the service, such that changes 
are super easy to detect, and deduplication is easy. Obviously that's a very 
specific thing to that reference implementation, but the reason for it is 
because JSON is unordered, keys can be in any order without a change to the 
document meaning. CBOR hashes stabilise the key sorting so same document but 
different ordering = same CID.

https://github.com/ThisIsMissEm/cimd-service/

- Emelia


On 20 Jul 2026, at 19:17, Jaryn Sabey 
<[email protected]<mailto:[email protected]>> wrote:

A thought on the approval step, following Neil’s question: as drafted, AB-DCR 
specifies how approval happens (202, verification URI, polling) but not what 
evidence it leaves behind. If the approval is load-bearing (and the enterprise 
onboarding cases CIMD §7.2 gestures at suggest it is), the artifact that 
matters afterward is a verifiable record of who approved, under what policy, 
bound to exactly what was approved.

Concretely: bind the approval to a hash of the canonical registered document. 
For the CIMD composition Emelia describes, that would be the document as 
fetched at approval time. This answers “what did the approver actually see” 
(the client-asserted-values problem), and it gives §8.4 a clean semantics: an 
updated document provably differs from the approved one, so AS policy can 
decide whether the prior approval carries forward under key continuity or 
requires re-approval, and either decision is itself recordable. Denials deserve 
the same treatment: a signed refusal carrying its ground is worth as much to an 
auditor as the approval.

Neil’s “any user can approve a client for everyone” concern also gets easier to 
reason about when approvals are attributable records rather than side effects. 
The AS policy Max describes becomes checkable after the fact, not just 
enforceable in the moment.

FWIW, I’ve been working exactly this evidence layer for authority transitions 
generally, in draft-sabey-succession-receipts (policy-gated transitions, 
refused before recorded, portable offline-verifiable receipts hash-bound to 
what was approved). Happy to compare notes if any of it maps.

Jaryn


On Jul 20, 2026, at 10:49 AM, Emelia S. 
<[email protected]<mailto:[email protected]>> wrote:
Hi all,

In the new -02 of the CIMD draft, published recently, we have a new two new 
sections of §7.2 (pre-registration) and §8.4 (changes in client metadata), both 
of which could actually work really nicely with this proposal. Essentially a 
"push" to AS for a given CIMD saying "I want to enrol this CIMD with the AS" 
and "I want to update the AS on a changed CIMD", as for how that process 
happens (the knowledge of which AS's exist for a given CIMD, a server-based or 
app-based client can track metrics for users/AS as to have data to say "send 
updates to these AS's" whilst remaining with no exact formal arrangement 
between AS and Client, that is the client is still able to use any AS that 
conforms to it's needs.

For this case we'd be doing a push of the Client Identifier URL, not the 
contents of the document, whereas DCR would be the push of the content. Where 
AB-DCR's status codes would map:

  *   201 → AS fetched immediately, pre-registration/refresh accepted, no 
approval needed (open policy)
  *   202 + registration code / verification URI → AS requires a human to 
review the fetched document before trusting it (the enterprise onboarding case 
§7.2 already gestures at)
  *   429 + Retry-After → same backoff signal
  *   400 → fetch failed, document invalid, etc. (this one's actually more 
natural for CIMD than for DCR, since "the AS tried to fetch and it 404'd" is a 
real distinct failure mode you don't have in classic DCR)

So I think it'd be a nice complement. In practice I've not really seen the DCR 
management protocol particularly used, it may be something IDP's / AS's bigger 
than I have worked with have used, I'm not sure. It'd be great to have some 
stats on usage of the various specs to further inform writing new specs, maybe 
that's a topic for IETF 126 this week? Just like a survey that we can publish 
through our networks and hopefully gain insights on.

Auth on push probably also needs to be thought through here, perhaps reusing 
mechanisms like JWKS signing or the new client attestation draft (CBAC? CABC?), 
and then the client can effectively auth for the content's in the current 
document using the same signing keys if doing an update. I think DCR management 
may already specify that, but it's been a long time since I've fully read that 
spec.

Yours,
Emelia



On 20 Jul 2026, at 13:19, Max Gerber 
<[email protected]<mailto:[email protected]>> wrote:

A few scattered thoughts:
- The latest 
spec<https://modelcontextprotocol.io/specification/draft/basic/authorization/client-registration#dynamic-client-registration>
 of MCP has deprecated DCR in favor of CIMD. It is only included for backward 
compatibility now.
- I would appreciate concrete examples of how AB-DCR compares to CIMD, and 
where AB-DCR might be more appropriate to use. Off the top of my head - this 
would be primarily for clients unable to host a CIMD URL? So primarily native 
applications or CLI tools that are not associated with a website or domain?
- I would be interested in exploring mechanisms that combine the approval of 
the client with an authorization grant, so that the user doesn't need to click 
through multiple flows back-to-back.

Niel wrote:

> clients are not tied to one particular user, so this seems dangerous if any 
> user can approve a client for everyone

I think this is an issue the AS is already equipped to solve. The AS must 
already have a policy defining which user or developer can register a client 
manually, and that same policy should extend to which user can approve a client 
registration. If the AS allows any developer to self-serve sign up and create a 
client, then that same policy should govern client approval. If the AS requires 
developers to be onboarded in some manner, those developers should be onboarded 
before making the client globally available. Additionally, several ASs 
currently have concepts of organization-bound or user-bound clients, which can 
only be used with a subset of users as determined by AS policy.

On Mon, Jul 20, 2026 at 10:55 AM Neil Madden 
<[email protected]<mailto:[email protected]>> wrote:
It would be good to understand exactly what approval you are expecting to 
happen during this flow? The draft says “an explicit approval step performed by 
an approving party, typically the user running the client”. But clients are not 
tied to one particular user, so this seems dangerous if any user can approve a 
client for everyone.

Dynamic client registration always has the problem of what exactly the AS or an 
approver is supposed to base their decision on, when all they have is 
client-asserted values. Software statements improve this somewhat, where 
supported. The only approval steps I can think of that make sense are things 
like reviewing policy/privacy documents etc for compliance. But that’s not 
something that can be completed in a few minutes while the client sits around 
polling for a response.


On 20 Jul 2026, at 05:41, Dellaert, Philippe 
<[email protected]<mailto:[email protected]>> 
wrote:

Hi all,

As you might have noticed, I’ve submitted a new Internet-Draft: Approval-Based 
Dynamic Client 
Registration:https://datatracker.ietf.org/doc/draft-dellaert-oauth-approval-based-dcr/

Dynamic Client Registration provides a way for new clients to register 
themselves using an open registration mechanism, or registering using an 
Initial Access Token for extra security. For certain clients like native 
applications, CLI tools, or applications at scale, providing an IAT is not 
always an option and open registration is something many operators prefer to 
avoid.

I propose an approval-based registration using the existing DCR registration 
endpoint where the client opts-in for this new mode. If the authorization 
server’s policy supports and requires an approval before the client is 
registered, it returns a registration code, a verification code and a 
verification URI. The client polls the registration endpoint while an approver 
approves or denies the registration request out of band using the verification 
code and the verification URI. Once approved, on the next poll, the client 
receives a normal DCR response.

A lot of this is inspired by the Device Authorization Grant (RFC 8628) and the 
Deferred Token Response draft. I do diverge from these proposals by using 
specific HTTP response codes instead of using error responses. Registration 
success remains 201, a pending registration waiting for approval returns 202, 
both for initial request and polling, and 429 with a Retry-After response 
header is used to indicate to the client to slow down the requests. 400 is 
still used for errors.

I’d welcome feedback from the group, and especially from the authors of Dynamic 
Client Registration as this is an addition to DCR, and from the authors of 
Device Authorization Grant and Deferred Token Response as they are a source of 
inspiration. I have cc’d the DCR and DTR authors out of courtesy, not out of 
any expectation.

Regards,
Philippe
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