A paired ATM pulls its operator pubkey + fee config over the already-
authenticated kind-21000 transport, instead of the operator pubkey being
provisioned into the machine's .env and the fee config learned only from an
operator-signed kind-30078 broadcast. This lets a seed-only machine (blank
.env, scanned spire-seed) leave "awaiting configuration" with zero per-machine
provisioning — closing the gap surfaced by bitspire#70. Client half: bitspire#71.
The transport is already per-machine authenticated (the ATM signs with its
bunker-minted spire key == dca_machines.machine_npub), so the handler resolves
the exact machine → operator from the verified request.sender_pubkey — same
lookup as cashin_transport, no client-supplied trust — and returns only the
caller's own config. Returns {operator_pubkey, fee_config, fiat_code,
machine_npub, wallet_id, created_at}; fee_config is None until the operator has
a super-config. Reuses build_fee_payload + get_account; AUTH_ACCOUNT; registers
soft-failing (older lnbits) like the roster hook. kind-30078 push stays
dual-run for live mid-run updates.
6 tests; full suite 235 pass; black + ruff clean.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
ci.yml / Merge pull request 'fix(ui): make admin dialogs mobile-friendly + add fullscreen QR zoom' (#40) from fix/mobile-friendly-dialogs-and-QR-zoom into main (push) Failing after 0s
lnbits-qrcode has no `options` prop — it renders width:100% of its
parent, capped by a `max-width` PROP that defaults to 450px. So the
previous `:options="{width: qrZoom.size}"` was dead: the QR only ever
grew to its container, and inside the zoom dialog's items-center flex
column the container collapsed to the QR's natural width, so "enlarge"
barely changed anything.
Wrap the zoom QR in an explicit full-width div (capped 96vw), feed the
real `max-width` prop, hide the component's own copy/download buttons
for a clean scan target, and size it to ~full shorter-viewport-edge.
Also swap the inline pair-dialog QR's dead `:options` for `max-width`.
The `min-width: 480px` on dialog cards overrode `max-width: 95vw` on
narrow viewports (CSS min-width wins on conflict), so add-machine / pair
/ etc. dialogs overflowed off-screen on phones. Switch every dialog card
from minWidth to width so maxWidth can shrink it to fit.
Also cap the tall add-machine form section at 65vh with a scroll
container so all fields stay reachable on short screens.
For pairing, the seed-URL QR is now tappable and has an "Enlarge for
scanning" button opening a fullscreen maximized QR sized to the shorter
viewport edge — maximises visibility to the spire's scan camera.
ci.yml / Merge pull request 'feat(pairing): slim the spire seed + carry lnbits_npub (bitspire-#70)' (#37) from bitspire-70-seed-lnbits-npub into main (push) Failing after 0s
The get_key_tokens retry only covered an empty token list; a transient
NsecBunkerTimeoutError on any admin RPC still failed pairing with a 502 (seen
live on aio-demo: create_new_key and get_key_tokens both 15s-timed-out, then a
manual retry succeeded). Generalise to `_bunker_retry`, wrapping every admin
call in the pair_spire chain (create_new_key, ensure_policy, create_new_token,
get_key_tokens): a NsecBunkerTimeoutError (and, for get_key_tokens, an empty
list) is transient → retry with backoff; a NsecBunkerRpcError rejection or
misconfig is terminal → fail fast. create_new_key is replace-by-name and
ensure_policy reconciles idempotently, so retrying on timeout is safe.
Also: _validate_relay now rejects a host-less ws:// (mint was laxer than the
consumer's parseSpireSeed), and stale "nostrclient" comments in the pair UI +
a test are corrected to "transport relay".
229 tests pass (incl. timeout-retry + fail-fast-rejection coverage).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The nostrclient endpoint is a subscription MULTIPLEXER, not a full relay: its
router forwards a client's EVENT upstream but never returns an OK ack (see
nostrclient/router.py). A transport client that awaits OK on publish therefore
times out ("publish timed out"), so kind-21000 RPCs never complete — verified
on the Sintra: connect succeeded but list_wallets hung, and switching to the
nostrrelay endpoint made the whole flow work (wallet, balance, availability).
default_relay_endpoint now derives from settings.nostr_transport_relays — the
relay the transport actually listens on: use it as-is when already
machine-reachable, or re-home its path on lnbits_baseurl when it's a co-located
loopback relay (the bundled nostrrelay). Validation/localhost-reject and the
pair-dialog pre-fill/hint carry over; wording updated to "transport relay".
227 tests pass.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
pair_spire failed with "bunker returned no tokens after create_new_token" when
the nsecbunkerd was briefly slow — get_key_tokens listed nothing in the few ms
after create_new_token before the write landed. Observed live: a nip44_decrypt
timeout, then a 502 on pair, then the identical call 25s later succeeding.
Retry get_key_tokens up to 5x with a 0.4s backoff before giving up, so pairing
survives a sluggish bunker instead of flaking. Tests cover the transient-empty
recovery and the exhausted-attempts failure.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The backend now defaults an omitted relay to the nostrclient proxy endpoint,
but the pair dialog still showed an empty, client-side-required field — so the
operator saw "no default". Wire it through:
- GET /api/v1/dca/default-relay returns default_relay_endpoint() (the derived
ws(s)://<host>/nostrclient/api/v1/relay).
- openPairDialog pre-fills the relay textarea with it; the operator can override
or clear it (blank → same server-side default). Drops the client-side
"at least one relay is required" guard.
- Hint updated to explain the default.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Two robustness fixes for on-machine pairing (bitspire-#70), after a QR scan
silently corrupted a seed's relay (ws://→As://) and crash-looped a machine on
an unreachable relay:
- Default relays: when the operator omits `relays`, derive the seed's relay from
THIS lnbits' own nostrclient proxy endpoint — `<ws(s)>://<host>/nostrclient/api/v1/relay`,
built from `lnbits_baseurl` (default_relay_endpoint). Operators configure
upstream relays once in the nostrclient extension (public_ws must be on) and
every seed points at one stable, operator-independent URL. `relays` is now
optional on PairMachineData + the /pair endpoint.
- Validate every relay (+ bunker_relay) is a `ws://`/`wss://` URL AND reject
loopback hosts (localhost/127.0.0.1/::1/0.0.0.0) — a seed is redeemed by a
REMOTE machine, so a localhost relay is exactly the unreachable case. Catches
both the ws://→As:// corruption and the localhost /pair gotcha at mint time.
Consumer side (bitspire): parseSpireSeed rejects non-ws relays, and the wizard
gained a "test relay" reachability button before committing.
223 tests pass.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Mint the new-shape seed the bitspire consumer now expects: the pubkey rides
once as spire_npub (consumer derives the hex + reconstructs bunker_url from
bunker_secret + bunker_relay|relays[0]), and lnbits_npub is embedded so a paired
machine reaches this lnbits' nostr-transport with nothing else provisioned.
- build_seed_url emits {spire_npub, lnbits_npub, bunker_secret, relays} and
bunker_relay only when it differs from relays[0] (omitted in the common case).
Drops spire_pubkey + the full bunker_url from the payload.
- pair_spire reads settings.nostr_transport_public_key, hex_to_npub's it, and
raises PairingError when it's empty (transport not running → can't mint a
self-sufficient seed). bunker_url is still returned in PairResult for operator
display / audit; only the seed stops embedding it.
Consumer side: bitspire packages/nostr-client/src/seed.ts + the #70 machine
wiring. Kept as v: 1 (redefined in place; no shipped seed to preserve).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The pairing endpoint tests' fake_pair predated the bunker_relay parameter
(views_api passes bunker_relay=data.bunker_relay), so it raised TypeError; and
api_pair_machine later grew a get_super_config() read for the post-pair fee
publish that the doubles never mocked, hitting a DB with no spirekeeper.super_config
table. Both were pre-existing failures on main (masked one behind the other).
Add bunker_relay to the fake_pair signature and mock get_super_config → None
(the happy path doesn't exercise fee publishing). Suite green.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
ci.yml / Merge pull request 'fix(pairing): default bunker_relay to the spire's public event relay, not localhost' (#35) from fix/pair-bunker-relay-default into main (push) Failing after 0s
The seed minted via the Pair UI baked an unreachable bunker relay into
bunker_url. The UI form has no bunker_relay field, so pair_spire fell back to
its default `settings.lnbits_nsec_bunker_url` — which on a deployed instance is
the INTERNAL relay lnbits uses to reach the co-located bunker (e.g.
ws://127.0.0.1:5000/nostrrelay/demo). The remote ATM can't reach localhost, so
connectNewSeed hangs -> BunkerTimeoutError "Signer Unreachable". (Flagged by
bitspire on the demo; the localhost-relay /pair gotcha the coord thread called out.)
Default bunker_relay to the spire's own public event relay (relays[0]) instead:
the bunker lives on the same operator nostrrelay the spire publishes its events
to, so that URL is machine-reachable. An explicit `bunker_relay` still overrides
for split-relay deploys. An empty override now falls back to the same default
rather than raising.
Regression test: with no (or empty) bunker_relay, bunker_url embeds relays[0]
and contains no 127.0.0.1.
NOTE: relays[0] is a pragmatic default; whether the seed should carry multiple
relays / be sourced from the operator's nostrclient relay is a follow-up.
ci.yml / Merge pull request 'fix: guard every machine_npub deref against unpaired machines (500 + cassette-consumer crash)' (#33) from fix/unpaired-machine-npub-guards into main (push) Failing after 0s
Full sweep of every machine_npub deref found one more reachable crash:
_record_rejected (tasks.py) logs machine_npub[:12], and the
assert_nostr_attribution guard now routes an unpaired machine there, so
None[:12] -> TypeError. Fall back to machine.id.
Every other deref is safe by the attribution-gate invariant: a settlement only
flows past assert_nostr_attribution (now rejecting unpaired) for a paired
machine, so the downstream distribution / parse-path / "landed" logs can't see
None; the collision-loop display already uses `(m.machine_npub or m.id)`.
Adds tests/test_unpaired_machine_guards.py: attribution rejects an unpaired
machine with the domain SettlementAttributionError (not AttributeError), and
build_state_d_tags skips it. New tests + every guard-affected suite pass.
(Two pre-existing test_pair_endpoint failures — #29 drift: fake_pair lacks
bunker_relay, and the test DB lacks super_config — are out of scope; filed
separately.)
machine_npub became nullable in #29/m011 (register-unpaired flow), but
several consumers still assumed it's non-None and crashed
`normalize_public_key(None)` with `AttributeError: 'NoneType' object has no
attribute 'startswith'`. On the demo (which had an unpaired machine) this
broke the platform-fee update (500) and spammed the cassette consumer with
errors every 2s. The #29 create/pair paths were guarded; these were missed:
- views_api `api_update_super_config`: the "republish fee to every active
machine" loop → skip unpaired (they get their config at pairing).
- cassette_transport `build_state_d_tags_for_machines`: skip unpaired (no
state-beacon d-tag yet) — the cassette-consumer loop crash.
- crud `get_machine_by_atm_pubkey_hex`: its `except (ValueError,
AssertionError)` didn't catch the AttributeError; skip unpaired before
normalize — the cassette event-handler crash.
- bitspire `assert_nostr_attribution`: reject (SettlementAttributionError) an
unpaired machine instead of crashing the payment listener.
- views_api cassettes/publish endpoint: 400 (not paired) instead of crashing
publish_to_atm.
Verified on the dev stack: with an unpaired active machine present, the
cassette consumer registers (skipping it) and runs clean — no AttributeError.
ci.yml / Merge pull request 'feat(cash-in): secure `create_withdraw` nostr-transport RPC (#31)' (#32) from feat/secure-cashin-rpc into main (push) Failing after 0s
`Lnurl.__str__` is the underlying URL, so `str(lnurl)` returned
`http://<baseurl>/withdraw/...` instead of the bech32 `LNURL1…` — wallets
need the encoded LNURL-withdraw (lud01). Use `str(lnurl.bech32)` and add
`lnurl_url` (the raw URL) alongside, mirroring withdraw's _populate_lnurl
field convention. (Note: the encoded URL still derives from LNBITS_BASEURL —
that must be an externally reachable https URL for a real wallet to claim.)
Wires the server-side per-transaction cash-in ceiling the `create_withdraw`
handler already enforces (it read the value defensively via getattr; this
makes it a first-class config field).
- migrations.py m012: ADD COLUMN super_config.max_cash_in_sats INTEGER (NULL
= no cap).
- models.py: SuperConfig.max_cash_in_sats + UpdateSuperConfigData field with a
>= 0 validator.
- super-fee dialog: a "Max cash-in per transaction (sats)" input; blank sends
null (the PUT skips null, preserving the current value — set 0 to reject
every cash-in). crud `update_super_config` and the PUT endpoint flow the
field through automatically (dynamic dict update; check_super_user gated).
Why a sats cap and not the bunker ACL: the ACL / usage caps (#28) gate call
*rate*, not *sats*, and `principal_sats` is necessarily ATM-attested — so a
single in-rate call could request an arbitrarily large payout. This bounds a
compromised/buggy machine to one capped transaction.
Verified on the dev stack: m012 runs, the model round-trips the column
(GET returns the set value), and a negative value is rejected.
Adds a server-side cash-in RPC so the ATM no longer supplies the withdraw
amount, fee, or attribution. The ATM sends a bunker-signed kind-21000
`create_withdraw` with just the gross `principal_sats` (the hardware-
attested fiat value); the handler derives everything else SERVER-SIDE:
- attribution = the VERIFIED transport `sender_pubkey` (never read from the
body), matched to an active machine on the authenticated wallet;
- fee = round(principal × super_cash_in) + round(principal × operator_cash_in),
per-leg rounding so it matches parse_settlement exactly (fee_mismatch=0);
- net = principal − fee → the withdraw amount the customer receives;
- stamps `extra={source:bitspire, type:cash_in, principal_sats, fee_sats,
nostr_sender_pubkey:<verified>, nostr_event_id}` onto the link.
The customer claims the NET link; the payout carries the stamped extra
(aiolabs/withdraw#3) and `_handle_payment` records the cash_in settlement
(spirekeeper#30) with cryptographic attribution — closing the vector where
`lnurlw_create_link` let the ATM set amount/fee/attribution freely.
Registered via `register_rpc("create_withdraw", …, AUTH_WALLET)` (extensions
register RPCs directly — withdraw already does). Soft-fails on lnbits without
`register_rpc`. Per-tx cap reads `super_config.max_cash_in_sats` defensively
(getattr) — the config field/UI is a fast-follow.
Wire schema pinned in #31. Depends on #30 (consumer-side settlement fix).
ci.yml / Merge pull request 'fix(settlements): process cash-in (outbound) payments, not just cash-out' (#30) from fix/cash-in-settlement into main (push) Failing after 0s
The `_handle_payment` cash-in branch existed but had never been exercised
end-to-end — bitSpire cash-in payouts only started reaching it once the
withdraw extension learned to stamp `source=bitspire` on an LNURL-withdraw
payout (aiolabs/withdraw#3). With that wired up, the first real cash-in
exposed two bugs:
1. `payment.sat` is signed by protocol direction — negative for an
outbound (cash-in) payout. It was passed straight to `parse_settlement`
as `wire_sats`, which enforces `wire_sats >= 0`, so every cash-in was
rejected ("wire_sats must be >= 0, got -75795"). A settlement's
`wire_sats` is a magnitude (direction lives in `tx_type`); pass
`abs(payment.sat)`. Same in `_record_rejected`.
2. `_record_rejected` hard-coded `tx_type="cash_out"`, so a rejected
cash-in showed the wrong direction in the operator dashboard. The
parsed tx_type isn't available on the rejection path, but the
authenticated protocol direction is — derive it: outbound → cash_in,
inbound → cash_out.
Verified on the dev stack: a stamped cash-in now lands a `cash_in`
settlement (net 75795, principal 82386, fee 6591), pays the super its 3%
(2472 sats), and correctly skips the DCA leg (principal stays in the
operator's wallet as liquidity from the cash-in customer).
Three changes from the nsecbunkerd#27 bunker-pairing smoke (validated
end-to-end on the Sintra, 2026-06-21); intermingled per-file, so landed
together.
1. Optional machine_npub (model A1) — register UNPAIRED, bunker mints the
identity at pairing:
- machine_npub now nullable (migration m011 rebuilds dca_machines for
sqlite / ALTER ... DROP NOT NULL for postgres; UNIQUE stays, NULLs
don't collide so any number of unpaired machines coexist).
- CreateMachineData.machine_npub -> str | None; create skips the
collision-check + fee publish when blank; api_pair_machine now
publishes the fee config after minting, so an unpaired machine clears
its awaiting-fees gate once paired.
- Supplying an npub up front is the DEVELOPMENT self-key path (a machine
holding its own signing key) — available to anyone but the form field
is explicitly marked DEVELOPMENT ONLY.
- Frontend: npub field optional, required rule dropped, null-safe
display (shortNpub -> "unpaired", guarded slices), empty -> null.
2. bunker_relay override on POST /machines/{id}/pair: PairMachineData gains
bunker_relay; api_pair_machine threads it to pair_spire. Lets the seed's
bunker:// relay differ from the relay lnbits uses to reach the bunker
(internal docker host vs LAN/public) — needed for split-relay / dev
deploys. Without it the smoke had to mint via a script.
3. Fees are decimal fractions, not percents: relabel super + operator fee
inputs ("decimal fraction, 0-0.15") + a shared _assertFeesDecimal()
guard (super/add/edit submits) so a percent typo (3 instead of 0.03)
gets a clear toast, not a raw 400.
refs: nsecbunkerd#27/#36; aiolabs/bitspire#52; coordination smoke 2026-06-21
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
ci.yml / Merge pull request 'docs(pairing): TTL + token-revoke now enforced post-bind (nsecbunkerd#27)' (#28) from docs/ttl-revoke-enforced-post-bind into main (push) Failing after 0s
nsecbunkerd#27 (deployed 2026-06-19) reverses the #24 finding: the
sign-time ACL now evaluates token lifecycle live on every request
(checkIfPubkeyAllowed step 4 joins through a liveWhere filter;
applyToken stopped photocopying grants into SigningConditions). So:
- duration_hours / token expiresAt now bounds an ESTABLISHED binding —
an expired token stops signing post-bind, not just at connect. The
prior docstring (connect-window-only, pointing at the now-closed
nsecbunkerd#24) is corrected.
- Token-revoke is no longer a post-redeem no-op (closes the #22
mechanism bunker-side). revoke_spire keeps using revoke_key_user
because that's the subject-level ban cutting the whole binding, not
just one token's grant — rationale updated, behavior unchanged.
Doc/comment only; 20 pairing tests green.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
duration_hours stamps Token.expiresAt, but nsecbunkerd reads expiresAt
only in validateToken at connect/redeem time — the sign-time ACL never
checks it (materialised SigningConditions carry no expiry; the policy
join filters revokedAt only). So TTL bounds only the un-redeemed connect
window, not an established binding; revoke_key_user is the real post-bind
cutoff. Same ACL-ordering class as the revoke finding (#22). Tracked at
aiolabs/nsecbunkerd#24.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The Pair dialog had two interleaved v-if/v-else sibling pairs
(q-card-section + q-card-actions per step). Vue requires v-else to
immediately follow its v-if sibling, so the second v-else (actions)
trailed a v-else (section) — illegal, throwing compiler error 30
("v-else has no adjacent v-if") and breaking the entire Vue mount.
Wrap each step's section+actions in one <template v-if> / <template
v-else> so there's exactly one adjacent pair. Verified with
@vue/compiler-dom and a live pair/revoke round-trip against regtest.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
bitspire#52 consumer review (2026-06-18) enumerated the kinds the spire
signs as its OWN identity and found NIP-42 relay AUTH (kind 22242) missing
from SPIRE_POLICY_RULES — a silent bunker reject the moment a relay
challenges with AUTH. It must be bunker-signed (AUTH proves control of
spire_pubkey, which only the bunker holds; can't use the local client_nsec).
Adds 22242. Records the confirmed set in the policy comment: live = 21000 +
30078 + 22242; CLINK 21001-21003 dormant but kept; nip04 unused (v1 path is
dead code). New test locks the required-kinds contract so 22242 can't
silently regress.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Builds on the seed-URL pairing in #21 (stacked).
(b) TTL — PairMachineData.duration_hours (validated > 0) threads through
pair_spire -> create_new_token (lnbits#55). None = non-expiring.
(c) Revoke — POST /machines/{id}/revoke -> revoke_spire ->
admin_client.revoke_key_user(spire-<id>). Per spirekeeper#22, revoke
MUST go through KeyUser.revokedAt (revoke_key_user), NOT token revoke:
lnbits eager-binds (redeems) the connect token at provision, so
nsecbunkerd has materialised the policy into per-KeyUser grants its
ACL checks BEFORE the Token.revokedAt filter -> token revoke is a
silent no-op. Returns RevokeResult{revoked_count}: >=1 = cut, 0 =
never bound. set_machine_unpaired clears paired_at (keeps npub +
bunker_spire_key_name for audit / re-pair).
7 new tests (duration threading + default-None; revoke routes to
revoke_key_user and never token-revoke + error mapping; endpoint wiring
revoke happy/zero/502). 210 green; new code black/ruff-clean.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Adopts aiolabs/lnbits#55 (merged b5fba561): pair_spire now calls the
public ensure_policy(client, name='spirekeeper-spire', rules=...,
methods_no_kind=...) instead of spirekeeper's cache-free
_ensure_spire_policy copy. #55 re-keyed _POLICY_ID_CACHE on
(admin_pubkey, policy_name), so the shared helper no longer returns the
wrong (lnbits-default) id for a non-default policy name — the exact
reason the duplicate existed. Net -45 LOC, one less fork-divergent
reimplementation to keep in sync.
Requires lnbits >= the #55 merge (ensure_policy importable) — already
true on dev/demo.
Tests: FakeBunker gains admin_pubkey; an autouse fixture clears lnbits'
_POLICY_ID_CACHE between tests (the shared helper caches, unlike the old
local one). 203 green.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Operator-side producer for seed-URL pairing (S0/#9, model A1). pair_spire()
orchestrates the nsecbunkerd admin chain via lnbits' NsecBunkerAdminClient:
create_new_key(spire-<id>) -> _ensure_spire_policy -> create_new_token ->
get_key_tokens -> package the <npub>#secret token into a bunker:// URL +
base64url seed URL {spire_npub, spire_pubkey, bunker_url, relays}.
The spire later self-signs all its events as that bunker-held key; lnbits'
path-B roster maps the npub to the operator wallet — no nsec on the spire.
spirekeeper does steps 1-4 only; the NIP-46 connect/bind happens spire-side
(bitspire#52) with the spire's own client keypair.
Scoped policy 'spirekeeper-spire': sign_event 21000/21001-3/30078 + nip44
(kind-less via add_policy_rule). Local _ensure_spire_policy (no cache)
avoids lnbits' admin-pubkey-keyed _ensure_policy cache (policy-name-blind).
9 unit tests with a fake bunker (orchestration, policy reconcile, seed/
bunker:// wire shape, error paths); npub<->hex via lnbits' real helpers.
200 tests green.
Known gaps (lnbits NsecBunkerAdminClient): no token-expiry param, no revoke
RPC — re-pair works; 'revoke spire access' deferred to a bunker follow-up.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Schema checkpoint for seed-URL pairing (S0 / #9; spire-side bitspire#52),
model A1 — the spire's signing key lives in the operator's nsecbunkerd,
not on the spire's disk.
dca_machines gains:
- bunker_spire_key_name — the spire's key name in the bunker
(spire-<machine_id>); used to re-issue connect tokens on re-pair.
- paired_at — last successful pair; NULL = never paired.
Both nullable, idempotent column-probe add (m009 pattern). Machine model
gains the matching optional fields. Validated on the regtest dev db
(columns present, migrations clean); 191 tests green.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Replaces the inherited v1 'Lamassu ATM' wording with the bitSpire/
Nostr-native description used in the lnbits-extensions catalog entry.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Follow-up to the satmachineadmin->spirekeeper issue migration. The 20
open issues were recreated on aiolabs/spirekeeper with reassigned
numbers; this repoints in-repo references to the migrated issues at
their new spirekeeper numbers (#3->#1, #4->#2, #8->#4, #9->#5, #10->#6,
#17->#11, #21->#12, #28->#16, #44->#20). References to closed/non-
migrated satmachineadmin issues (#20/#22/#26/#29/#32/#37/#38/#39) stay
pointing at the original repo where they were resolved.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
SQLite (cp the ext DB file) and Postgres (rename/copy schema) recipes.
Key trap documented: dbversions is keyed by ext id and m001 drops the
legacy v1 tables, so the new install must seed dbversions['spirekeeper']
>= 1 to skip m001 and preserve copied data. Validated on the regtest
dev instance (10 tables, 52 dca_payments etc. preserved across boot).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Runbook SQL (spirekeeper.dca_*), ext URL paths, code-location paths,
and the DB-schema name in docs/CLAUDE/README move to the new identity.
Rewrites the placeholder description.md with a real one. Historical
aiolabs/satmachineadmin#N issue/repo links stay pointing at the
original repo.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Fork of satmachineadmin's v2-bitspire line into its own repo. Renames
both identifiers so this extension is fully independent of the original
satmachineadmin install (which remains in service):
- extension id satmachineadmin -> spirekeeper
(router prefix, static path/static_url_for, module symbols, task
names, templates dir, config/manifest paths)
- database name satoshimachine -> spirekeeper
(Database(ext_spirekeeper), all schema-qualified table refs)
Also resets versioning to 0.1.0, sets the display name + manifest to
spirekeeper/aiolabs, and fixes the placeholder pyproject description.
Historical aiolabs/satmachineadmin#N issue references in comments are
left pointing at the original repo where those issues live.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
S3 settlement-receipt kind was provisionally 21001, but that kind is
claimed by CLINK (Offers). Replace the speculative kind text in the
cash-out diagram and the S3 row with an explicit DO-NOT-USE alert
citing the 2026-06-02 collision, the aiolabs/satmachineadmin#44
rotation tracker, and the 22000-22099 target band.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Three trigger points wire fee_transport.publish_fee_config into the
satmachineadmin API endpoints per the #39 spec. All three soft-fail on
transport errors — the underlying CRUD operation (machine create /
update / super-config save) succeeds even when the publish couldn't
reach the relay or the signer, and the operator can re-trigger by
editing again.
views_api.py:
- api_create_machine — publishes always after create, even when
operator fees default to 0/0 (the resulting super-only payload is
what unblocks the ATM past its `awaiting-fees` maintenance gate).
Reads super_config singleton; if absent (m001 should have inserted
it, so this is an impossible state), skips the publish to avoid
crashing create.
- api_update_machine — publishes only when either
operator_cash_*_fee_fraction is in the patch payload. Skip on
name/location/wallet_id/is_active/fiat_code edits since those don't
affect the fee model the ATM enforces (avoids unnecessary relay
churn).
- api_update_super_config — publishes to every active machine when
either super fraction changes. Per-machine: that machine's
operator_user_id is the signer (machines owned by different
operators sign with different keys); each soft-fail is independent.
Skip if only super_fee_wallet_id changed (no fee-model impact).
Tests (9 cases, all green):
- 3 create-machine triggers: default 0/0 operator fees still publishes
super-only payload, nonzero operator fees publish full payload,
None super_config short-circuits without crashing
- 4 update-machine triggers: publishes on cash_in change, publishes on
cash_out change, skips on name-only, skips on is_active-only
- 2 super-config triggers: publishes per-active-machine signed by
each machine's operator on fraction change, skips entirely on
wallet-id-only change (with an assertion that list_all_active_machines
is never called, proving the short-circuit path)
191/191 tests green. Layer 2 (#39) complete; ready for joint smoke
once bitspire fixes the three deploy gaps from coord-log §2026-06-01T18:30Z
(`relay.aiolabs.dev` default, `VITE_LNBITS_HTTP_URL` dead echo,
operator-fees subscriber not running in maintenance state).
Refs: aiolabs/satmachineadmin#37 (parent), #39 (closes Layer 2),
aiolabs/lamassu-next#57 (Layer 3 consumer — blocked on bitspire-side
gaps).
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>