95 lines
4.3 KiB
Markdown
95 lines
4.3 KiB
Markdown
---
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status: resolved
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opened: 2026-08-31
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located-in: [mesh-control, mesh-lab]
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fixed-by: mesh-lab multiple-fixes — the bed, not the proxy: its backend stub never listened and its check read a subject the authority leaves empty; against both Pebble and the catalogue's step-ca the same proxy now orders, answers the challenge, is issued and serves
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amended-design:
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---
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# 020 — A certificate is issued and never collected
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## Symptom
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Against a real ACME server in the lab, the proxy orders a certificate for a name the mesh routes,
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the challenge is answered, the authority **issues the certificate** — and the proxy never obtains
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it. Every TLS handshake then fails, and the order is retried indefinitely.
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The client's error, once per attempt:
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```
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http: TLS handshake error: Post "": unsupported protocol scheme ""
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```
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A POST to an empty URL: the certificate's location, on an order the authority considers valid.
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## What is proven, and it is most of it
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Read from the authority's own log rather than inferred:
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```
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Starting 3 validations
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authz … set VALID by completed challenge …
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POST /finalize-order/ → Order … is fully authorized. Processing finalization
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Issued certificate serial 3ef142939115ee88
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```
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**The hard half works.** The order is created, the HTTP-01 challenge is answered *at the name being
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certified* on port 80 through the proxy itself, the authorisation goes valid, finalisation is
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accepted, and a certificate is issued. Across one run the authority issued **two** certificates and
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accepted finalise **three** times — the client reaches issuance every attempt and fails at the same
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step after it.
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**And the policy that guards the quota is proven too.** The second assertion in the same file
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passes: no certificate is ordered for a name nothing routes, so a scan cannot spend an account's
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rate limit.
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## What is not known
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**Whether this happens against a real authority at all.** Everything above is against Pebble, which
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exists to be a test server. The failure is in the last hop between one client and one server, and
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may say nothing about behaviour against a public authority.
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## Ruled out
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|---|---|
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| the directory | fetched and complete — `newAccount`, `newNonce`, `newOrder`, `revokeCert` all present |
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| the authority's API certificate | covers `127.0.0.1`; the bundle is named explicitly and verification is not skipped |
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| a hand-written server config | suspected, and wrong. Replacing it with the server's **own** default config, changing only the challenge port, gives the identical error |
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| the finalize URL being empty | the authority logs finalisation being accepted |
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| the challenge path | the authorisation goes valid |
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| the server version | pinned 2.5.0 behaves exactly as `latest`, so the draft profiles extension is not it |
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## Where it might be
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- **The order's `certificate` field is absent when the client reads it.** The client waits for the
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order to become valid and only then fetches, so an empty location on a valid order is the
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remaining shape.
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- ~~**A moving tag was used.**~~ **Ruled out.** `pebble:latest` advertises a draft *profiles*
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extension, so a pinned 2.5.0 was tried: **identical failure**. The scenario now pins it anyway,
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which it should have from the start.
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## Why this is filed rather than pursued
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**The mesh-side behaviour is proven and the remainder is interop between two libraries.** Continuing
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would be several more twenty-minute lab runs against a server that is not the one production uses,
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to chase a defect that may not exist there.
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**What the mesh needed to show, it showed**: a name it routes gets a certificate ordered from a
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configured authority, and a name it does not route gets nothing. The configuration is right, the
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challenge path is right, and issuance happens.
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## What would close it
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- The same scenario against a different ACME implementation — a second server, or a real staging
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endpoint from a machine that can reach one. **If it passes there, this is a Pebble interop
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detail and the issue closes with that recorded.**
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- Or the client's request captured on the wire, showing what the order actually contained when the
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location was read.
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## Evidence
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- `mesh-lab test/integration/certificates.test.ts`, scenario `a-public-name`
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- One assertion passes (no certificate for an unrouted name); one fails (a routed name is never
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served).
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