approval-engine raised APPROVAL-IN-0002: secrets-engine's PEP validator expects a flex-auth ActionAuthorization but fetches the approval-claim endpoint that GH-DEC-2026-003 names as step 1. Two objects on one path. GH-IN-0002 records the intake; GH-DEC-2026-005 resolves it. The claim is the step-1 artifact and always was — ActionAuthorization is unratified, has no valid_now field, and cannot be served from a step-1 call. The addition beyond confirmation is doctrine: a PEP validates each artifact against the layer that owns its data, and no PIP republishes the PDP's decision. The provenance.authority == "state-hub" requirement is struck; State Hub is a read model and holds no runtime approval authority. docs/contracts/approval-consumption.md carries the amendment at the sequence itself so implementers find it there. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01WtJBr77gMFLrN93iEevqQJ Assistant: claude-code Assistant-Model: opus Assistant-Process: 425128@bnt-lap001 Assistant-Session: f5944d8b-dac4-4e1a-87eb-8b3d8f314a63
7.7 KiB
Approval consumption ordering
Owner: gate-house
PIP: approval-engine
PDP: access-engine (currently flex-auth)
Status: normative for GH-WP-0002-T06; recorded as GH-DEC-2026-003,
amended by GH-DEC-2026-005 (step-1 artifact and split validation)
Date: 2026-09-06
Statute: net-kingdom/canon/standards/security-layer-model_v0.7.md §9.4, §9.7.3–4, §16
Blocks: APPROVAL-WP-0001-T05, FLEX-WP-0017-T05
This contract settles who marks an approval consumed, at what point relative
to the decision, and who owns each of the three named failure modes. Nothing
in approval-engine may implement a public consume by guessing this.
Sequence
1. PIP GET /v1/approvals/{id}/claim → valid_now (a fact, not permission)
2. PDP Check / decide → ALLOW | DENY | …
3. PEP POST /v1/approvals/{id}/consume → CAS valid → consumed
4. PEP protected side effect → only after consume succeeds
The PDP never mutates. Staff never calls consume. audit-core never
calls consume. The signaler is the PEP-shaped consumer that is about to cause
the protected side effect named in the binding — today secrets-engine for
OpenBao writes, ops-warden for the SSH signing lane, and any other consumer
companion §5 already treats as PEP-shaped.
Holding a claim with valid_now: true, or an ALLOW against that claim, is not
authority to act. The consume is.
What each step's artifact is
Amended by GH-DEC-2026-005.
Step 1 serves the approval-claim (approval-engine/docs/approval-claim.md).
That is the artifact valid_now belongs to, and it is the only object the claim
endpoint serves. flex-auth's proposed ActionAuthorization is not required
here, is not served here, and MUST NOT be served from this endpoint: a step-1
response cannot contain a step-2 decision.
A PEP validates across both artifacts it already fetches, and each against the layer that owns its data:
| Artifact | Source | What the PEP checks |
|---|---|---|
| approval-claim | step 1, approval-engine (PIP) |
binding digest, validity window, consumption state, observation freshness, issuer |
DecisionEnvelope |
step 2, access-engine (PDP) |
exact CheckRequest match, policy package and version pin |
A PIP MUST NOT republish the PDP's decision, and a PEP MUST NOT accept the approval fact from the decision artifact or the decision from the approval artifact. Composing the two into one served object is a separate, post-decision artifact at a separate endpoint if it is ever ratified — not a change to the claim.
Claim provenance is not State Hub. A PEP MUST NOT require
provenance.authority == "state-hub" on the claim. State Hub is a read model and
holds no runtime approval authority; the issuer to check is the engine that
served the claim.
Why consume is before the side effect
§9.7.3 says consumption MUST NOT be inferred from a decision record. That stands. A decision record proves an intent to act, not an act. The consume mutation is the act's evidence at this engine.
The same paragraph currently reads as if the action must precede the
consume call. That reading is a protocol, and it is the wrong one. If the
PEP acts and then consumes, two racing PEPs can both observe valid_now,
both receive ALLOW, and both act; CAS then prevents only the second
record, not the second side effect. Single consumption would be theatre.
The PEP MUST obtain a successful consume before the protected side effect.
In-flight duplicate ALLOWs are expected; the CAS serializes use. A later
CheckRequest sees valid_now: false and cannot mint a new ALLOW against the
same object.
This is a protocol clarification of §9.7.3, not a retraction of the forensic claim. It lands in statute v0.8. Until then this contract governs the implementers who were blocked on it.
Consume request
POST /v1/approvals/{id}/consume
{
"request_digest": "<canonical request digest from the decision binding>",
"decision_id": "<optional; the ALLOW this consume discharges>"
}
request_digest is the same digest companion §5.2 already uses as the
mechanical replay test (NewDecisionBinding.request_digest in flex-auth).
Go's json.Marshal of a CheckRequest is not this digest. Compare to the
binding the PDP already computed, not to a re-serialized CheckRequest.
The mutation is compare-and-swap:
| Current status | Digest on the object | Result |
|---|---|---|
approved, inside validity window |
none | consumed; store this digest; emit use |
consumed |
same digest | idempotent success — same logical request, a retry |
consumed |
different digest | conflict — already used for another request |
revoked / superseded / expired / outside window / not approved |
— | conflict; MUST NOT act |
The use outbox row is inserted in the same transaction as the status change
(approval-outbox.md). A failed insert rolls the
consume back. An audit-core outage does not.
There is no unconsume. There is no reserve/release. An approval authorizes one attempt, not one success.
The three failure modes
1. Allow rendered, never consumed
Cause. PEP crash or abandonment between ALLOW and consume.
Effect. The object stays approved. A later PEP can still consume it,
inside the remaining validity window and inside the ALLOW's own lifetime
(§9.7.1). That is a delayed first use, not a replay of a completed one.
Owner. The PEP is obligated to consume before the side effect. The
approval-engine does not auto-consume from the existence of a decision.
The PDP bounds the window with the decision lifetime. Detection of a
stale ALLOW with no matching use is a finding on this surface
(approval-emission-detection.md), not a
consume.
2. Double consumption by racing callers
Cause. Two PEPs, two ALLOWs in flight, both presenting consume.
Effect. CAS: one success; the other is idempotent success if and only if the digest matches, otherwise conflict.
Owner. approval-engine performs the CAS. The PEP that receives conflict
MUST NOT perform the side effect. The PDP that rendered the second ALLOW has
done nothing wrong — it decided on a still-valid claim.
Same-digest idempotent success is a retry of one logical request. Companion §5.2 already permits reusing an ALLOW inside its binding and lifetime. The side effect MUST itself be idempotent under that digest; that is the PEP's obligation, not this engine's.
3. Consumed, then the authorized action fails
Cause. Consume succeeded; the protected side effect then failed or was never reached (crash after consume).
Effect. The approval is spent. Retry requires a new approval object.
Owner. Accepted here as the cost of closing (2). Unconsume would reopen replay. A flake is an issuance problem, not a reason to make consumption reversible. The PEP MAY request a new approval; it MUST NOT infer that the spent object is still valid.
What this is not
- Not a second decision. Consume answers "did this engine accept the use", never "may this actor do X".
- Not an inference from
audit-core. The archive reports what it received. - Not a PDP duty.
access-enginereads the claim and never mutates. - Not implemented until
approval-enginewiresPOST /consumeto the CAS that already exists internally, with the digest column this contract adds.
Acceptance
APPROVAL-WP-0001-T05 may implement the public consume against this
document. FLEX-WP-0017-T05 may require the PEP (secrets-engine, for that
task) to consume before the OpenBao call. Canon T-06 consume-side replay —
a second, different digest against a consumed object — becomes in-scope with
that implementation.