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Author SHA1 Message Date
shaggy (mosaic-dev box) 7d84e4ee03 fix(gateway): sanitize raw exceptions in /mcp status + /reload sources (P3 re-review#5 blocker)
ci/woodpecker/pr/ci Pipeline was successful
2026-08-10 16:58:07 -05:00
shaggy (mosaic-dev box) 4aaf41dd1a fix(web,gateway): close P3 re-review#4 findings — sanitize all executor catches; lock pre-start turn boundary (wire turnId deferred) 2026-08-10 16:07:12 -05:00
shaggy (mosaic-dev box) d46a2d675a fix(web,gateway): close P3 re-review#3 findings — sanitize command errors, harden turn-lock & caps 2026-08-10 14:21:52 -05:00
shaggy (mosaic-dev box) 48bb19310d fix(web): close P3 chat re-review findings 2026-08-10 01:58:27 -05:00
shaggy (mosaic-dev box)andClaude Haiku 4.5 caebf9ef70 fix(web): harden typed SPA chat lifecycle
Co-Authored-By: Claude Haiku 4.5 <[email protected]>
2026-08-10 00:24:20 -05:00
shaggy (mosaic-dev box) b2e005f2b4 feat(web): add typed SPA chat
Bring the chat experience into the Vite/React-Router SPA on the exact typed
Socket.IO /chat contract from @mosaicstack/types, replacing the /chat
placeholder behind AuthGuard. Surfaces message:ack (with an accessible
status), agent:start, streamed agent:text/agent:thinking, tool start/end
status, agent:end with usage, session:info (thinking controls + routing
decision), commands:manifest, command:result, command:approval (with a
one-time approved-run affordance), system:reload (refreshing the rendered
manifest), and error, and emits message/abort/set:thinking/command:execute/
command:approve with exact payloads.

The gateway does not guarantee message:ack is the first event for a new
conversation (session:info, and error on auth/session-creation failure, can
both arrive first) — conversation-scoped events now adopt the conversation
from whichever scoped event names it first while a send is pending, then
filter everything else against that established conversation. A typed error
stops streaming instead of leaving Stop stuck active; agent:end no longer
appends an empty assistant turn when there is no text or thinking; and a
second message can no longer be sent while a turn is streaming.

Command approval is now integrity-checked end to end: only one
command:approve request may be outstanding at a time (a concurrent request
is ignored rather than overwriting the pending command/args), a stale or
mismatched command:approval response cannot replace active approval state,
and running an approved command clears its approval state immediately (via
a ref, before React re-renders) so a double-click cannot replay
command:execute.

The `/chat` socket is now typed at a single boundary: apps/web/src/lib/
socket.ts narrows socket.io-client's untyped `io()` return value to
`ChatSocket` (Socket<ServerToClientEvents, ClientToServerEvents>) once, at
creation, via the one assertion the library's types force; every consumer
(use-chat-connection.ts) then gets fully checked `on`/`emit` calls with no
further casts. The shared contract types live in the new
apps/web/src/lib/chat-contract.ts (replacing the old spa/chat/types.ts
shim), which re-exports them via type-only imports resolved directly
against packages/types/src (apps/web has no @mosaicstack/types package
dependency, so this stays source-only and is erased at compile time —
no package manifest or lockfile is touched). The two recorded-event test
suites now drive a shared, typed fake socket
(spa/chat/test-support/fake-chat-socket.ts) instead of an untyped
`(event: string, payload: unknown)` harness, so a wrong event name or
malformed payload fails to compile.
2026-08-09 21:39:16 -05:00
shaggy 87daa12976 Merge pull request 'P2 — web SPA data layer + same-origin auth' (#1144) from feat/webui-p2-data-auth into next
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2026-08-10 01:52:01 +00:00
shaggy (mosaic-dev box) 90cf286a09 fix(web): reject protocol-relative auth callbacks
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2026-08-09 20:43:27 -05:00
shaggy (mosaic-dev box) 0aef432052 docs(scratchpad): record P2 remediation evidence 2026-08-09 20:21:53 -05:00
shaggy 41a16cc916 Merge pull request 'fix(docker): gateway image — git in runner, MOSAIC_ROOT workspace dir, scripts/ in builder, EXPOSE 14242' (#1142) from fix/gateway-runner-image into next
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2026-08-10 01:21:30 +00:00
shaggy (mosaic-dev box) e16c08aa9f test(web): align jsdom abort signals with Node 2026-08-09 20:20:30 -05:00
shaggy (mosaic-dev box) a34e92cf39 fix(gateway): harden workspace repository cloning
ci/woodpecker/pr/ci Pipeline was successful
2026-08-09 20:12:39 -05:00
shaggy (mosaic-dev box) a4861c221f docs(scratchpad): record WebUI P2 verification 2026-08-09 20:02:22 -05:00
shaggy (mosaic-dev box) 46d68e1ff4 feat(web): add same-origin SPA authentication 2026-08-09 20:00:22 -05:00
shaggy c3496334a5 Merge pull request 'feat(web): P1 — Vite + React Router skeleton beside Next (Phase P RFC, increment 1/6)' (#1143) from feat/webui-p1-vite-skeleton into next
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2026-08-10 00:51:02 +00:00
shaggy 6f29d00149 Merge pull request 'fix: break-C — install-hooks no-ops without git; web image builds @mosaicstack/web' (#1141) from fix/break-c-hooks-and-web-image into next
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2026-08-10 00:50:19 +00:00
shaggy (mosaic-dev box)andClaude Fable 5 068d0f9b1c feat(web): P1 Vite skeleton beside Next — entry, router, guards, vitest 3
ci/woodpecker/pr/ci Pipeline was successful
First increment of the approved Phase P RFC (webui-mission). Adds a Vite + React
Router SPA scaffold coexisting with the Next app: index.html with the theme
anti-flash script, src/main.tsx entry, the v1 parity route table under Guest/Auth
guard shells, and a dev proxy (/api, /socket.io ws) to the gateway on 14242 so the
SPA is same-origin in dev. vitest bumped to v3 (vite 8 pairing); existing specs
pass unchanged. Next remains the served app until the P5 cutover.

Co-Authored-By: Claude Fable 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01ESFAnh2t9HmLwng8oW95St
2026-08-09 19:02:55 -05:00
shaggy (mosaic-dev box)andClaude Fable 5 13cd673d50 fix(docker): gateway runner needs git + MOSAIC_ROOT workspace dir; EXPOSE actual port 14242
ci/woodpecker/pr/ci Pipeline was successful
WorkspaceService shells out to git at runtime and roots workspaces at
$MOSAIC_ROOT/.workspaces — the runner image had no git binary and no
workspace directory. EXPOSE said 4000 but main.ts defaults to 14242.

Co-Authored-By: Claude Fable 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01ESFAnh2t9HmLwng8oW95St
2026-08-09 18:03:42 -05:00
shaggy (mosaic-dev box)andClaude Fable 5 620cc608e0 fix(docker): copy scripts/ into web builder — prepare runs install-hooks.mjs on install
ci/woodpecker/pr/ci Pipeline was successful
The layer-cached install copies only manifests and packages/, so the
root prepare script could not be found and pnpm install exited 1
before the git-absent guard could even run.

Co-Authored-By: Claude Fable 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01ESFAnh2t9HmLwng8oW95St
2026-08-09 18:03:18 -05:00
shaggy (mosaic-dev box)andClaude Fable 5 91e692e3e7 fix: break-C — install-hooks no-ops without git; web image builds @mosaicstack/web
ci/woodpecker/pr/ci Pipeline was canceled
install-hooks.mjs hard-failed (exit 1) in environments without a git
binary — e.g. the docker image builds, which have no git and no repo.
Hook installation is meaningless there; skip with a warning instead.

docker/web.Dockerfile filtered @mosaic/web, but the package is named
@mosaicstack/web, so the image build compiled nothing.

Co-Authored-By: Claude Fable 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01ESFAnh2t9HmLwng8oW95St
2026-08-09 17:58:13 -05:00
velmaandmos-dt-0 24bbd40dc7 docs: WebUI fleet Claude bridge — Task 0 decision plan (#1131)
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Docs-only plan PR. FRED_APPROVED_REF=0629361ca39a4dd7fb3e575d11c64bea9e545dae (review 147). Merged by fred (orchestrator) via API: pr-merge.sh policy predates the next lane (main-only hardcode) — wrapper fix tracked separately.

Co-authored-by: Velma <[email protected]>
2026-08-09 10:28:41 +00:00
mos-dt-0 4df478cdd1 Merge pull request 'chore(sync): merge main → next (B1) — resolve 8 conflicts, restore next current' (#1041) from sync/b1-main-into-next into next
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chore(sync): merge main → next (B1) — restore next current, resolve 8 conflicts (#1041)

Brings next current with main incl the RM-03 guard fix (482/5); preserves next's 10 in-flight commits. Closes #1040.
2026-08-03 10:17:06 +00:00
coder-mos2 b8844e1ff0 fix(sync): close local queue semantic merge gap
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2026-08-02 23:16:09 -05:00
coder-mos2 906ad8dc30 wip(sync): merge main into next with combined resolutions 2026-08-02 23:11:22 -05:00
coder-mos1andmos-dt-0 5916aeefd6 chore(release): @mosaicstack/mosaic 0.0.49 — ship RM-03 guard fix to release channel (#1036)
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Co-authored-by: coder-mos1 <[email protected]>
2026-08-02 20:09:11 +00:00
coder-mos1andmos-dt-0 58b971aba3 fix(rm-03): make CI queue guard fail on asserted non-readiness (#1032)
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Co-authored-by: coder-mos1 <[email protected]>
2026-08-01 18:55:26 +00:00
coder-mos1andmos-dt-0 f4fd5967fc RM-61: prove ci-postgres teardown discrimination (#1033)
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Co-authored-by: coder-mos1 <[email protected]>
2026-08-01 14:54:04 +00:00
mos-dt-0andMos f65e9ea656 docs(remediation): mission-state snapshot at the RM-01 seam (#1028)
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Co-authored-by: mos-dt-0 <[email protected]>
2026-08-01 01:08:11 +00:00
mos-dt-0andMos f58b3699a6 RM-01: reproducible checkout — the pre-push gate fails on code, not environment (#1027)
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Co-authored-by: mos-dt-0 <[email protected]>
2026-08-01 00:50:12 +00:00
mos-dt-0andMos 01e966f36d docs(remediation): mission charter + reconciled execution backlog (#1026)
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Co-authored-by: mos-dt-0 <[email protected]>
2026-07-31 22:47:03 +00:00
mos-dt-0andMos 524146055d fix(hygiene): .prettierignore must exclude Python build/test artifacts (#1025)
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Co-authored-by: mos-dt-0 <[email protected]>
2026-07-31 22:24:49 +00:00
mos-dt-0andMos 06e0d40352 feat(quality): CI test-membership guard — enumeration can no longer silently under-run the disk (#1017) (#1018)
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Co-authored-by: mos-dt-0 <[email protected]>
2026-07-31 14:08:41 +00:00
Mos 166ee8c90f fix(wake): close fd 9 in the detector's sleep child so a dead detector's lock dies with it (#993)
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2026-07-31 13:48:33 +00:00
mos-dt-0andMos 826a8b3b26 fix(git): pr-review.sh — surface the provider's stated reason, drop the hardcoded #865 attribution (#1006)
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Co-authored-by: mos-dt-0 <[email protected]>
2026-07-31 10:52:58 +00:00
mos-dt-0andMos a4280b9c98 fix(wake): #984 fatal source guard + #985 absorb re-scan — #973 follow-up batch (#1001)
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Co-authored-by: mos-dt-0 <[email protected]>
2026-07-31 10:16:22 +00:00
Mos 4fb44f6345 fix(wake): three-valued grep verdicts — has_match/count_lines across all ten suites (closes #973) (#983)
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2026-07-31 08:39:04 +00:00
Mos 089615f63b feat(git): push-guard — refuse verifications satisfied by the null case (closes #975) (#974)
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2026-07-31 03:35:24 +00:00
mos-dt-0andMos 76eef39a29 docs(wake): #953 dead-letter retention recorded as load-bearing at the write site (#968)
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Closes #953.

GATE RECORD: review CLEAR at this exact head (author != reviewer, pre-registered diff-blind checks) + terminal-green CI at this exact head + queue guard clear.
CI CAVEAT (#973): green on the wake suites is currently WEAKER THAN IT LOOKS, IN BOTH DIRECTIONS. grep error/spawn exit codes are read as absence across 257 assertion sites in six idiom forms; 36 inverted (&&-fail) sites — including 19 credential-security canaries — fail toward GREEN under load. These greens were obtained on solo reruns after load-correlated FALSE reds (2115/2116/2118; main itself was red). This merge's safety therefore rests on the CONTENT review, not on the green. Remediation charter fa551c2d0 is authored and in flight.

Co-authored-by: mos-dt-0 <[email protected]>
2026-07-30 23:25:38 +00:00
mos-dt-0andMos 47f8689231 fix(wake): #952 quarantine-audit clean sweep names BOTH unprovable residual classes (#967)
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Closes #952.

GATE RECORD: review CLEAR at this exact head (author != reviewer, pre-registered diff-blind checks) + terminal-green CI at this exact head + queue guard clear.
CI CAVEAT (#973): green on the wake suites is currently WEAKER THAN IT LOOKS, IN BOTH DIRECTIONS. grep error/spawn exit codes are read as absence across 257 assertion sites in six idiom forms; 36 inverted (&&-fail) sites — including 19 credential-security canaries — fail toward GREEN under load. These greens were obtained on solo reruns after load-correlated FALSE reds (2115/2116/2118; main itself was red). This merge's safety therefore rests on the CONTENT review, not on the green. Remediation charter fa551c2d0 is authored and in flight.

Co-authored-by: mos-dt-0 <[email protected]>
2026-07-30 23:25:34 +00:00
mos-dt-0andMos 8d1d6e5e76 feat(wake): #958 A11 preimage.sh — durable provenance for the operator-side preimage definition (#964)
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Closes #958.

The preimage definition (source-adapter.sh) is the single most consequential file in the wake pipeline — every observed_hash is a sha256 of what it emits — and it was UNVERSIONED: no git history, no backup. When it was edited at 07:27 on 2026-07-30, attribution was recoverable only because an agent transcript happened to still be on disk. A11 gives that file durable provenance (option (2) of #958: recorded content-addressed, not in-band).

DESIGN, per the pre-registration:
- Provenance is OUT-OF-BAND (never on the adapter's stdout) — an in-band record would advance observed_hash for every source at once and manufacture the re-baseline it exists to explain (B3).
- The obligation never depends on the provenance path: a missing/corrupt store cannot halt the detector or swallow a wake (#940 advisory-fields precedent; B4).
- DESC_FMT=d1 is NOT the provenance record — the tag versions the descriptor FORMAT; a behaviour change that keeps descriptor shape re-baselines every hash and leaves the tag unchanged (B6).

CREDENTIAL HARD GATE (rebuilt after the first verdict FAILED it): byte capture is now RECORD-ONLY BY DEFAULT (extras opt in via WAKE_PREIMAGE_CAPTURE), not allow-by-default-refuse-on-shape — because a shape list can only refuse the secrets someone already enumerated, and the tool's own usage text recommended adding detector.env (where HMAC material lives). Deny is evaluated on BOTH raw and resolved path forms with resolved anchors, ordered before allow — closing the realpath-before-deny ordering defect that let a renamed symlink target through.

VERIFICATION (reviewer, mos-dt, independent of the author's claims):
- Seven decoy cases by planted-marker-then-grep-whole-state-dir: known cred path / same-name symlink / RENAMED-target symlink / prefixed secret / prefixless secret / opted-in-symlink-to-DENIED-target all REFUSED; opted-in-symlink-to-ALLOWED-target CAPTURED (positive control that the harness can capture at all, and that C was not closed by breaking every symlink).
- Polarity-completeness self-test RE-RUN with the shape list stubbed always-allow AND both deny lists stubbed — case D still safe: the flip is complete, the shape list is not load-bearing. Each stub proven live first (a stub that silently fails to apply reports the dangerous state as safe).
- B11: rm-then-change fails LOUD (rc=1), refuses to re-baseline, leaves the ledger absent; absent-with-emptied-objects still first-installs cleanly (absent-is-not-corrupt not paid for by breaking first install).
- RED-first reproduced exactly P13-P16 pre-fix; each refusal corroborated three ways (loud stderr, ledger row captured:false WITH a hash so attribution survives refusal, objects/ holding only the adapter).

KNOWN RESIDUAL (filed #969, non-gating): the deny check is both-forms but the suite needles only the resolved form — a deny reduced to resolved-only survives 17/17 green and would leak a renamed-symlink case. No reachable leak at this head (shipped code correct on all seven decoys); it constrains a FUTURE edit. Doctrine: a both-forms fix needs a needle per form; a fixture that satisfies its assertion through a DIFFERENT rule is testing the rule it did not mean to test.

Authored by pepper (sb-it-1-dt); independently reviewed by mos-dt (sb-it-1-dt) under diff-blind pre-registration (7242688b1, predating first read) — NOT CLEAR on the first verdict (B2/B11 failed by decoy), CLEAR at 8aff7d8 after the polarity rebuild. Manifest version 0.7.0.

Co-authored-by: mos-dt-0 <[email protected]>
2026-07-30 21:48:06 +00:00
mos-dt-0andMos 6a7fce34bb fix(wake): #946 digest ack watermark clamped at quarantined seqs — disclose AND clamp (#951)
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Closes #946.

The digest omitted a quarantined entry's claim from disclosure while still advancing the ack watermark it instructed the consumer to run — converting a fail-safe HOLD into a silent DISCARD, through the documented normal path. Measured: the burial instruction was re-issued FIVE times, four fresh digests plus one system-initiated redelivery fired purely because the entry had gone unconsumed for 1826s. That redelivery is the proof of the 'indefinitely' half: the mechanism re-asserted itself with no new information.

SCOPE — this was NOT a missing check in the consume path. Measured before the fix: dead-letter occurrences were digest.sh 27, store.sh 0, ack.sh 0, detector.sh 0, reconcile.sh 0. Quarantine was owned ENTIRELY by the renderer; the store that advances the watermark had zero knowledge the ledger existed, so an entry could be quarantined by one subsystem and consumed by another with no possible interaction. The fix is therefore a deliberate cross-module decision — option (b), quarantine recorded into a store-owned file, preserving the existing direction of dependency — pre-registered by the consumer before any diff existed.

VERIFICATION
- Pipeline 2107 terminal SUCCESS at e11bc6622, read clone-inclusive from the provider API rather than through `pipeline-status.sh` (which filters `.type != "clone"` per workflow and would hide a clone failure behind an all-green table): 9/9 children success, exit 0 each, no non-success member. Its `test` step runs all nine wake harnesses via turbo -> packages/mosaic `test` -> `test:framework-shell`.
- Independent review by the consumer on the affected lane: eleven pre-registered acceptance checks, authored and delivered BEFORE the diff was read — the file list deliberately unlooked-at, because a filename alone would have disclosed which option was chosen. All eleven resolved, no blocker.
- The check that decides it: a RAW `ack.sh consumed --upto N` with no digest involved must refuse to advance past a quarantined seq — the case an agent hits when a digest is MISSED, and the one that would have sunk a disclosure-only fix. Covered at the head as a named assertion (T13 ordinary-path bypass), written independently of the reviewer's list.
- Mutation: one asserted site disabled -> TWELVE assertions die, every one BEHAVIOURAL, ZERO count assertions, including one killing across the module boundary the fix spans.
- RED control at base a6b5f6a: 34 and 10 assertions fail, matching the body exactly.
- Coordinator re-verify by a different instrument than the reviewer used: static reference counts across the base/head boundary — store.sh 0 -> 49, ack.sh 0 -> 6, `--agent` unchanged at 4 (so #949 correctly stayed out). A fix present-but-inert passes the count and fails the mutation; a fix behaviourally correct but smuggling #949 passes the mutation and fails the count. Neither result is reachable by repeating the other.

KNOWN RESIDUALS
- The `consumed-hashes` repair criterion is met only for keys that RE-EMIT. A corrupted row whose key never recurs stays false indefinitely; the sweep covers those, and the known-false row named in the acceptance criteria had already self-healed by re-emission rather than by design — safe by population, not by design.
- The audit's clean-sweep message names one unprovable class; a second exists (a surviving dead-letter row with an empty `observed_hash` cannot be convicted either). Wording, not logic. Filed separately.
- The audit's provability bound makes dead-letter RETENTION load-bearing for auditability. Nothing prunes it today, so this is latent — but any future rotation or size cap silently converts provable rows into unprovable ones with no signal at either end. This is not a defect; it is a property that BECAME load-bearing and is recorded nowhere. Filed separately.
- `test-wake-detector.sh` D4 fails at this head AND identically at base, with an empty diff over detector files — pre-existing, tracked, not introduced here.

Authored by pepper (sb-it-1-dt); reviewed independently by mos-dt (sb-it-1-dt). The mos-dt-0 commit and fork identity does not identify the author — attribution collapse tracked separately.

Co-authored-by: mos-dt-0 <[email protected]>
2026-07-30 15:41:03 +00:00
mos-dt-0andMos a6b5f6a01a fix(wake): #944 path becomes a hard-locator arm — detector-shape actionable entries pass the §2.1 gate (#945)
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Closes #944.

_has_hard_locator accepted only repo+issue / 40-hex sha / file — the forge vocabulary. The detector emits path (+snapshot_sha when attested) and NEVER emits file/issue/sha, so predicate and sole producer shared ZERO keys and every class=actionable board_file entry dead-lettered. Latent since #920, whose harness pinned the detector's own emission shape as its malformed example — the suite certified the gap it was written to guard.

Fix: `path` becomes a hard-locator arm, and ONLY path. Bare path-less snapshot_sha is a deliberate NON-arm (would widen past the board_file vocabulary); Q11(d) asserts it still quarantines at 7/40/64 chars, spanning the detector's ^[0-9a-f]{7,64}$ attestation range.

VERIFICATION
- Pipeline 2105 terminal-green at fa36da8. Its `test` step reaches all nine wake harnesses via turbo -> packages/mosaic `test` -> `test:framework-shell`, which names each suite explicitly. The two-levels-down indirection matters: no search of .woodpecker/* can see it, and that is exactly why this question was got wrong earlier today and then corrected. CI therefore DOES attest the quarantine suite and the detector suite at this head.
- Independent review (mos-dt, consumer on the affected lane) PASS at fa36da8, from a detached worktree: predicate provably unmoved from fb3c3c3 (comment-stripped sha256 identical, _has_hard_locator body byte-identical), RED control at base reproduced exactly 8 failures all Q11 including "got 6".
- Third reviewer (wake-judge) ACCEPT on both judgment calls: the Q1 assertion reversal is a legitimate correction (the flip was forced, not elective — base fixtures red 19 assertions against the head predicate) and path-alone satisfies §2.1, whose operative test is "one targeted call, never a search" — two of its four named exemplars already resolve to current state. Requiring path+snapshot_sha jointly would permanently dead-letter a declared source class and conflict with #940's advisory-fields ruling.
- Judge's mutation criterion met: with the reconciled exemption disabled, the gate-level assertion ("an ORIENTATION-tier enumeration must NOT be quarantined") dies at this head and did not exist as a casualty before F1.
- D4 (detector lock re-acquisition) fails intermittently at base AND head; git diff base..head over the detector files is EMPTY, so it is out of this PR's surface on structural grounds rather than on a re-roll. Known defect, fix identified (detector.sh:516, fd 9 leaked into sleep), tracked separately.

KNOWN RESIDUALS
- ENUM-B is now the sole address-free reconciled fixture, so the exemption's gate-level guard is a population of one. Safe by population, not by design. Author follow-up: assert ENUM-B carries no hard-locator arm so the harness guards its own premise.
- The binding spec (CONVERGED-DESIGN.md §2.1, separate repo) still enumerates four forge tokens and reads narrower than the shipped gate. Tracked as #948, sequenced after the dragon-lin reseed.
- Hard-locator arms are type-loose: repo/file/path accept any non-null JSON value. Pre-existing; `sha` fails closed only by accident of test(). Tracked separately.

Authored by pepper (sb-it-1-dt); reviewed independently by mos-dt (sb-it-1-dt) and wake-judge. The mos-dt-0 commit/fork identity does not identify the author — attribution collapse tracked in #3092.

Co-authored-by: mos-dt-0 <[email protected]>
2026-07-30 14:01:48 +00:00
mos-dt-0andMos 539b475a92 fix(wake): #943 whole-string validation for WAKE_SNAPSHOT_TS_FUTURE_SLACK + version 0.6.13
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grep is line-oriented, so a multi-line knob value passed the per-line anchors and was still fatal in arithmetic. Replaced with a case pattern matching the whole string, so an embedded or leading newline rejects. Manifest bumped 0.6.12 -> 0.6.13: three materially different detectors had shipped under one version string, and version= is the component sole self-identity claim.

Authored-by: pepper
Reviewed-by: mos-dt (independent, at this head; transfer proven by blob-hash equality)
Merged-by: Mos
Co-authored-by: mos-dt-0 <[email protected]>
2026-07-30 11:56:18 +00:00
mos-dt-0andMos 3e47fc076f fix(wake): #942 harden WAKE_SNAPSHOT_TS_FUTURE_SLACK — validate shape AND force base-10
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The slack knob was interpolated raw into $((...)) under set -u: a malformed value was FATAL to the poll, falsifying the poll-never-fails invariant, and a negative value inverted the guard to deny-all. Shape validation alone was insufficient — bash reads a leading zero as octal, so 08/09 passed the regex yet were fatal and 0300 silently meant 192. Now validated ^[0-9]{1,9}$ with a loud fallback to 300, then forced to base-10 via 10# so the knob means what the operator wrote.

Authored-by: pepper
Reviewed-by: mos-dt (independent, found both the original defect and the radix residual)
Merged-by: Mos
Co-authored-by: mos-dt-0 <[email protected]>
2026-07-30 11:17:51 +00:00
mos-dt-0andMos 8710d0f6d7 feat(wake): #940 snapshot-datable digests — fd-3 snapshot-metadata channel (#941)
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Adapter emits snapshot sha/ts out-of-band on fd 3 so a changing value never enters the delta-gate hash. Detector validates advisorily (sha regex, epoch sanity before arithmetic, future-skew slack); malformed metadata is dropped loudly and never gates the wake. Digest renders snapshot_sha/snapshot_ts plus a git-show re-verify hint. Adapters that never write fd 3 are byte-identical.

Reviewed-by: Mos (design, independent)
Reviewed-by: mos-dt (artifact, hardening §2)
Co-authored-by: mos-dt-0 <[email protected]>
2026-07-30 10:55:18 +00:00
jason.woltjeandMos b981b4ec10 fix(wake): #934 mount-free, privilege-invariant seq-integrity fault injection (T9/T11 run in non-priv CI) (#936)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 16:34:58 +00:00
jason.woltjeandMos 9e81ffd7fc fix(wake): #932 stop reconciler re-enumerating already-CONSUMED detector state (#935)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 15:48:40 +00:00
jason.woltjeandMos 9becaf877f fix(wake): #917 gate the final observed_seq cursor write + observed.set/cursor consistency (defense-in-depth) (#933)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 15:14:38 +00:00
jason.woltjeandMos 17087efe15 fix(wake): #925 framework-ship canon fallback-wake (systemd timer + schema bound + A10 install/validate) — F7 out of the box (#931)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 13:44:51 +00:00
jason.woltjeandMos 0ea41e848b fix(wake): #913 installer adoption gaps — _lib dep-check fail-loud + mosaic-wake.service systemd-search-path link+validate (#930)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 12:37:29 +00:00
jason.woltjeandMos 347c1d57c1 fix(wake): #924 route dead-letter quarantine alarm via WAKE_ALARM_SINK_CMD with per-observed_seq dedup (G2a) (#929)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 11:45:09 +00:00
jason.woltjeandMos 13e6ce5e5c fix(wake): #927 enqueue TOCTOU — move stale-tmp cleanup off the hot enqueue path (no concurrent in-flight-write clobber) (#928)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 10:56:40 +00:00
jason.woltjeandMos 90265ef550 test(wake): #923 de-flake T10 concurrent-enqueue race (deterministic barrier) (#926)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 10:23:07 +00:00
jason.woltjeandMos 937a276208 fix(wake): #920 quarantine render-refused drain entry (no head-of-line block) + reconciler enumerations render orientation-tier (reconciled:true, render-tier not class=digest) (#922)
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Co-committed-by: jason.woltje <[email protected]>
2026-07-26 08:45:51 +00:00
jason.woltjeandMos 712c770b7a fix(wake): #912 exercise the digest/HMAC trust suite in real CI (fix runner divergence + openssl + hard-require) (#921)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 08:11:28 +00:00
jason.woltjeandMos d967a4a926 fix(wake): #914 digest renderer — WAKE_AGENT-prefixed ack line + digest-class locator threading (#916)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 07:13:07 +00:00
jason.woltjeandMos c585ac3326 test(wake): #918 de-flake T7 ack-no-network-block (sub-second timing) (#919)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 06:46:28 +00:00
jason.woltjeandMos e2ec927b1c fix(wake): #908 unify observed_seq on a single store-side allocator (dissolve detector-private-counter seam) (#915)
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Co-committed-by: jason.woltje <[email protected]>
2026-07-26 06:02:02 +00:00
jason.woltjeandMos 2378665eaf feat(wake): W7 A10 idempotent installer + mosaic-wake.service (component-manifest, Gate-A, blank-reset retire, snapshot-guard, fail-closed install-validate) (#911)
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Co-committed-by: jason.woltje <[email protected]>
2026-07-26 04:19:09 +00:00
jason.woltjeandMos 003cdaa1a6 feat(wake): W6 — off-host dead-man beacon + pluggable alarm-sink adapter (#910)
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Co-committed-by: jason.woltje <[email protected]>
2026-07-26 02:30:28 +00:00
jason.woltjeandMos 320f5bfb6f feat(wake): W5 — synthetic-canary FN-oracle + source-parity reconciler (#909)
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2026-07-26 02:04:19 +00:00
jason.woltjeandMos 5df47e735e feat(wake): W4 — per-host delta-gated detector daemon (fail-loud source semantics, enqueues to W2 store) (#907)
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Co-committed-by: jason.woltje <[email protected]>
2026-07-26 01:04:55 +00:00
jason.woltjeandMos dd1391fd76 fix(wake): digest hard-locator gate covers top-level .claim entries (Closes #905) (#906)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 00:58:40 +00:00
jason.woltjeandMos 10d957d095 feat(wake): W3 — cumulative-state digest renderer + non-circular HMAC signer (#904)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-26 00:32:12 +00:00
jason.woltjeandMos dc45eb7c30 feat(kbn): land KBN-101 Envelope A v6 (rc.20) — declarative sink-RBAC + RLS write-source (Form A) (#902)
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2026-07-25 23:58:18 +00:00
jason.woltjeandMos 28f022d9c0 feat(wake): W2 — three-cursor durable store + RECEIVED/CONSUMED ack-wrapper + watch-list schema (#903)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-25 23:58:08 +00:00
jason.woltjeandMos 2726fab5e0 chore(framework): wire agent-send.test.sh into CI test:framework-shell (W1 follow-up) (#901)
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Co-committed-by: jason.woltje <[email protected]>
2026-07-25 23:23:24 +00:00
jason.woltjeandMos ab6e8e80dc fix(framework): send-message.sh fail-loud submission verdict + regression tests (Patch 6) (#895)
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Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-25 22:57:11 +00:00
jason.woltjeandMos 1933c6cb1d feat(framework): accept digest message class in agent-send.sh (W1) (#894)
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2026-07-25 22:56:46 +00:00
jason.woltjeandMos 48a0c86093 fix(lease-broker): recovery_runtime_unittest wait_ready() connect-probe (co-equal CI flake, cherry-pick #898) (#900)
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Co-committed-by: jason.woltje <[email protected]>
2026-07-25 22:26:38 +00:00
jason.woltjeandMos 79c8647fd9 fix(lease-broker): wait_ready() polls real connect-readiness not socket-file existence (flaky CI race) (#898)
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Co-committed-by: jason.woltje <[email protected]>
2026-07-25 22:10:15 +00:00
jason.woltjeandMos 2483dada33 fix(framework): pr-review.sh -r/--repo + -H/--host overrides + UA + repo preflight (Patches 5/5c) (#896)
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Co-committed-by: jason.woltje <[email protected]>
2026-07-25 22:08:08 +00:00
jason.woltjeandMos 4c117afe03 docs(framework): add WAKE-DOCTRINE.md guide (W0) (#893)
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2026-07-25 21:57:51 +00:00
jason.woltjeandMos 2698ddb7b5 feat(comms): P1 presence — minimal Synapse + fleet presence room + mosaic.presence heartbeat + liveness (#888)
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Co-committed-by: jason.woltje <[email protected]>
2026-07-25 21:03:18 +00:00
jason.woltjeandMos fabde1c834 docs(rfc): add RFC-001 (MACP/Matrix-native comms) + RFC-002 (install/config/topology) (#886)
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2026-07-25 21:02:54 +00:00
jason.woltjeandMos 3c7890f17f fix(framework): detect-platform get_gitea_token fail-loud on absent per-slot token (Patch 2b) (#890)
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Co-committed-by: jason.woltje <[email protected]>
2026-07-25 20:51:19 +00:00
jason.woltjeandMos 529c177830 fix(update): mosaic update runs the install-ordering guard post-reseed (#882 --sync-only bypass) (#883)
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2026-07-23 22:18:34 +00:00
jason.woltjeandMos a32ce4c8f9 feat(869-c4): activation version-coupling assertion (Part of #869)
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Part of #869

Mos (id-11) Gate-16 merge: independent APPROVE @90eb48fa (fail-closed identity locks byte-unchanged verified), author id2 != approver id11, clean mosaic-coder author, CI green wp1992. #869 Point-1 CODE COMPLETE (C1/C3/C5/C2/C4).

Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-23 19:07:27 +00:00
jason.woltjeandMos d351caad36 feat(869-c2): install-ordering enforcement-hook guard (Part of #869)
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Part of #869

Mos (id-11) Gate-16 merge: independent APPROVE @b6f36564 (8/8, verified vs real production settings template), author id2 != approver id11, clean mosaic-coder author, CI green wp1988.

Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-23 18:48:33 +00:00
jason.woltjeandMos 76b86a246e feat(869-c5): mosaic doctor activation-check (Part of #869)
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Part of #869

Mos (id-11) Gate-16 merge: independent APPROVE @e75e3238 (8/8), author id2 != approver id11, clean mosaic-coder author, CI green wp1987.

Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-23 18:38:21 +00:00
jason.woltjeandMos 4422231bdb feat: per-agent Gitea identity resolution (#873)
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Closes #873

Mos (id-11) Gate-16 merge: independent APPROVE @4b472a22 (author-blocker dissolved via (a) re-author, identical tree hash to tech-approved head), author id2 != approver id11, clean mosaic-coder commit-author, CI green wp1985. Framework train COMPLETE 6/6.

Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-23 18:09:34 +00:00
jason.woltjeandMos 8504216964 fix(pr-review): case-insensitive _belongs slug compare (#875)
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Closes #875

Mos (id-11) Gate-16 merge: independent APPROVE @9d8d58ae, author id2 != approver id11, clean mosaic-coder commit-author, CI green wp1982.

Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-23 17:53:26 +00:00
jason.woltjeandMos 7edc9b3121 fix(gitea): direct REST comment/review with fail-closed read-back (#865)
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Closes #865

Mos (id-11) Gate-16 merge: fresh confirmatory independent APPROVE @8ac7e70f (1241-case fuzz 0 fail-open), author id2 != approver id11, clean commit-author, CI green wp1966.

Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-23 17:25:32 +00:00
jason.woltjeandMos 2f50c0876b feat(869-c3): lease-broker supervisor unit (Part of #869)
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Part of #869

Mos (id-11) Gate-16 merge: independent APPROVE @75235ef8 (9/9, no live host mutation), author id2 != approver id11, CI green wp1971.

Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-23 17:19:48 +00:00
jason.woltjeandMos db90da347e feat(869-c1): activation-capability probe (Part of #869)
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Part of #869

Mos (id-11) Gate-16 merge: independent 3-round APPROVE @c5a2bcc5, author id2 != approver id11, CI green wp1973.

Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-23 17:14:57 +00:00
jason.woltjeandMos 48fd1df28a fix(ci-queue-wait): treat absent branch (404) as queue-clear (#872)
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Closes #872

Mos (id-11) Gate-16 merge: independent review APPROVE @23cbdaf8, author jason.woltje(id2) != approver Mos(id11), CI green wp1974.

Co-authored-by: jason.woltje <[email protected]>
Co-committed-by: jason.woltje <[email protected]>
2026-07-23 17:08:57 +00:00
jason.woltje b79336a8c1 feat(orchestrator): board-roll.sh — auto-roll LIVE board to LEDGER under byte cap (#868)
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feat(orchestrator): board-roll.sh - auto-roll LIVE board to LEDGER under byte cap

Closes #868
2026-07-22 09:20:03 +00:00
jason.woltje 4e5af23214 Merge pull request 'skills: add glpi-* family (solve, followup, sweep, list, create)' (#863) from feat/glpi-skills into main
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2026-07-21 01:09:50 +00:00
Hermes Agent 880c28b191 docs(glpi-skills): genericize operator-specific content per review
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Jason WoltjeandClaude Opus 4.8 7bc2dfb6c8 skills: add glpi-* family (solve, followup, sweep, list, create)
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GLPI helpdesk workflow skills written against the portable
tools/glpi/ tooling (session-init.sh, ticket-list.sh, ticket-create.sh),
cross-linked via [[glpi-*]]:

- glpi-solve    — close a ticket by setting status Solved (5); GLPI auto-closes
- glpi-followup — add a followup via the top-level /ITILFollowup endpoint
- glpi-sweep    — read-only hunt for done-but-open tickets needing Solve
- glpi-list     — query tickets by status/recency
- glpi-create   — open a new ticket

Core rule encoded: completing work means setting status Solved, not just
posting a resolution followup (a followup documents; only Solved auto-closes).

Note: illustrative examples in the bodies are USC-flavored (M2M / helpdesk
ticket numbers) and can be genericized in review if preferred.

Co-Authored-By: Claude Opus 4.8 <[email protected]>
Claude-Session: https://claude.ai/code/session_019GjBgrb9tHgvq414Fqj37c
2026-07-20 18:04:53 -05:00
jason.woltje b0d78d8632 fix(mosaic): de-flake mutator-class lease gate TTL-expiry test (#861)
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2026-07-20 10:32:45 +00:00
jason.woltje 344d86a635 fix(#812 follow-up): normalize detect-platform.sh host-match port comparison by scheme (#859)
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2026-07-20 10:13:29 +00:00
jason.woltje acd7d380f6 fix(framework): install deps on worktree bootstrap + legible deps-preflight at gate seam (#856) (#858)
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2026-07-20 09:38:12 +00:00
jason.woltje 3b70c66c07 fix(framework): drop unsupported --comment from tea pr approve/reject; route review body via durable comment (#835) (#857)
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2026-07-20 09:19:48 +00:00
jason.woltje 11d2818453 docs(tasks): FCM-M5-001 done — verified completion evidence (supersedes #848) (#853)
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2026-07-20 07:45:08 +00:00
jason.woltje aa999daf1b fix(framework): durable Gitea comment posting in pr-review.sh via REST + read-back verify (#812) (#852)
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2026-07-20 06:45:48 +00:00
jason.woltje 77c9a82614 fix(lease-broker): de-flake recovery_runtime b2 broker-socket ConnectionRefused race (#849) (#851)
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2026-07-20 06:44:37 +00:00
jason.woltje 627cf2bb38 docs(fleet): add operator configuration guide (#789)
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2026-07-20 05:22:25 +00:00
jason.woltje 0582a8912b WI-7 #834: T-C server-side branch-protection posture + R1 honesty amendment (#847)
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2026-07-20 04:20:02 +00:00
jason.woltje 2509eb7646 WI-6 (#833): constrained recovery command + mosaic-context-refresh skill wrapper (#846)
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2026-07-20 03:33:00 +00:00
jason.woltje 07553ead33 WI-5 #832: Receipt-challenge protocol (compaction-refresh, milestone 188) (#845)
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2026-07-19 23:18:56 +00:00
jason.woltje e522b22fa4 WI-4 (#831): verbatim-hashed normative fragments (B_payload/H_payload) (#844)
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2026-07-19 20:34:20 +00:00
jason.woltje e4d7d4502d WI-3 (#830): compaction observers → revoke + D4 same-PID generation auto-revoke (#842)
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2026-07-19 19:46:28 +00:00
jason.woltje 8dfcf1903e fix(#838): bound broker reply deadlines + fail-close empty-read; de-flake acceptance harness (#839)
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Bound broker reply deadlines (separate read/lock/send budgets, BROKER_BUSY-before-mutation, fresh post-handle send budget → closes drop-after-commit window); fail-close empty/truncated read → GATE_UNAVAILABLE deny. De-flakes the 1917 acceptance surface. terra CODE APPROVE (pi) + Opus SECREV APPROVED (claude) — RoR comment 18143. Promote-lease-lost-ACK residual = fail-safe two-generals observability-gap, routed to WI-3 D2-v5 as named-disclosed-bounded-residual (route i). Gate-16 3-principal author=gpt-sol.

closes #838
2026-07-18 07:15:50 +00:00
jason.woltje abd2791f59 feat(mosaic): WI-2 mutator-class guard for directive-freshness (#837)
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WI-2: mutator-class guard for the compaction directive-freshness mechanism — command-position parser (prefix x var-indirection unified) + primitive-anchored invariant backstop + all-tools-hook fail-close. Parser-complete on principle: realistic evasion matrix RED-regression-covered, residual exotic evasions proven backstop-caught (B-tests), lens-convergence reached.

closes #829
2026-07-18 05:51:58 +00:00
jason.woltje 8ec67a1126 feat(mosaic): add authenticated external lease broker (#836)
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2026-07-18 03:12:23 +00:00
jason.woltje d801d6c4c8 feat(mosaic): add secure skill registration CLI (#826)
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2026-07-17 23:45:35 +00:00
jason.woltje d3bf52898b fix: reject unknown installer arguments (#825)
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2026-07-17 22:16:51 +00:00
jason.woltje 3f77229e88 fix(#792): fleet roster ENOENT actionable exit + installer heading printf (#818)
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2026-07-17 21:36:36 +00:00
jason.woltje 686c881fe4 fix: fetch actual Gitea PR head for Codex reviews (#815)
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2026-07-17 19:44:56 +00:00
jason.woltje fe7a468c9d ci: bake jq into the prebuilt test image (#821)
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2026-07-17 19:12:43 +00:00
jason.woltje cabf02e7b9 ci: bake git into the prebuilt test image (#819)
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2026-07-17 18:11:16 +00:00
jason.woltje 9ddc6fbda8 feat(fleet): mosaic fleet regen — regenerate roster-derived projections (PR3 of #791) (#813)
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2026-07-17 03:17:55 +00:00
jason.woltje 31607a4af6 feat(mosaic): durable pre-update snapshot + verify net + restore CLI (#791 PR2) (#811)
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2026-07-17 00:43:18 +00:00
jason.woltje 32a0ffba13 feat(mosaic): manifest-owned upgrade guard so updates never wipe operator config (#791) (#802)
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2026-07-16 23:01:26 +00:00
jason.woltje 8536454257 fix(glpi): accept HTTP 206 in list wrappers (#807) (#810)
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2026-07-16 22:47:58 +00:00
jason.woltje 4f29cc604d fix(tmux): correct cross-socket sender identity (#808) (#809)
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2026-07-16 22:47:25 +00:00
jason.woltje 3be443c96d feat(mosaic): claudex isolated config + env-inject + yolo wiring (P2–P4 of #790) (#806)
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2026-07-16 22:10:33 +00:00
jason.woltje 59f5f51ffd feat(mosaic): claudex proxy preflight + lifecycle (P1 of #790) (#793)
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2026-07-16 21:15:33 +00:00
jason.woltje 9745bc3f29 feat(fleet): add reviewed v1-to-v2 migration preview (#788)
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2026-07-16 13:11:16 +00:00
jason.woltje adad486b6f fix(fleet): enforce exact comms authority (#787)
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2026-07-16 00:32:23 +00:00
jason.woltje c1aecfabe9 test(fleet): cover reconciler lifecycle gates (#786)
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2026-07-15 16:46:13 +00:00
jason.woltje 499090508e feat(fleet): reconcile local roster state (#785)
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2026-07-15 15:03:31 +00:00
jason.woltje c593a15ef8 docs(kbn): freeze KBN-101 database role split contract (#774)
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2026-07-15 13:34:29 +00:00
jason.woltje bc5e73629e feat(fleet): add generation-guarded agent CRUD (#773)
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2026-07-15 12:03:05 +00:00
jason.woltje 191efaefeb feat(fleet): enforce generated environment boundary (#772)
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2026-07-15 08:40:32 +00:00
jason.woltje e9c4aa3e8b test(fleet): validate shipped artifact dispositions (#770)
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2026-07-15 01:37:12 +00:00
jason.woltje a5e8e55401 feat(fleet): add shared role semantics (#768)
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2026-07-15 00:53:47 +00:00
jason.woltje eb4e14ae5c feat(mos): add logical identity connector fencing (#757)
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2026-07-14 23:33:06 +00:00
jason.woltje 2e2280070a docs(#753): clear KBN-010 threat and schema gate (#765)
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2026-07-14 21:46:44 +00:00
jason.woltje aa5b43bba2 feat(fleet): add roster v2 structural compiler (#764)
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2026-07-14 20:37:52 +00:00
jason.woltje ba13c08890 Fixes #756 (#763)
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2026-07-14 20:26:15 +00:00
jason.woltje c32d85a337 docs(fleet): define declarative configuration M0 (#760)
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2026-07-14 19:53:12 +00:00
jason.woltje 48b2bc42c9 docs(mos): format Option 2 qualification report (#762)
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2026-07-14 19:33:09 +00:00
jason.woltje 5e832049bb docs(mos): preserve Option 2 qualification evidence (#759)
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2026-07-14 19:16:11 +00:00
jason.woltje 193331544d fix(wizard): honor MOSAIC_GATEWAY_SKIP_NPM_INSTALL — unblock install.sh --dev gateway testing (#698)
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2026-07-10 01:30:10 +00:00
jason.woltje 495f73bfdb fix(wizard): avoid rerunning completed setup steps (#692)
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2026-06-25 18:44:35 +00:00
jason.woltje b96cc7982a fix(wizard): report gateway failures before success summary (#691)
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2026-06-25 18:14:40 +00:00
jason.woltje 0883fb91ec fix(wizard): resolve skills sync script path (#690)
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2026-06-25 17:35:19 +00:00
jason.woltje 56787fabf1 fix(gateway): disable Redis consumers on local tier (#689)
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2026-06-25 17:17:24 +00:00
jason.woltjeandClaude Opus 4.8 940ae3cc41 feat(installer): prefer npm next lane (#688)
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--next now prefers a fast npm @next install (CLI + gateway from the Gitea registry) and falls back to source build at next if the dist-tag is unavailable. Registry lane gated to non-dev, non-explicit-ref next installs; CLI/gateway prerelease versions must share a pipeline suffix. Adds tools/install-next-lane.test.sh (wired into CI). PR-event CI 1635 fully green + review-of-record APPROVE (functional install test, head 2fd7cfc3).

Co-Authored-By: Claude Opus 4.8 <[email protected]>
2026-06-25 07:14:24 +00:00
jason.woltjeandClaude Opus 4.8 c25a551c28 ci(#462): add durable next publish pipeline (#687)
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Durable @next integration-line publish: on next pushes, compute <patch+1>-next.<pipeline#> prerelease versions (in-CI, uncommitted) and publish @mosaicstack/* under the next dist-tag; gateway image sha-only on next. Strict guardrails: next-only, never writes latest, never tags from next; main path unchanged. PR-event CI 1631 fully green + review-of-record APPROVE (head b1a887a2). Guardrails independently verified.

Co-Authored-By: Claude Opus 4.8 <[email protected]>
2026-06-25 05:45:09 +00:00
jason.woltjeandClaude Opus 4.8 94d6538061 feat(installer): add next integration lane (#686)
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Add --next installer flag (build-from-source at the next integration branch; MOSAIC_NEXT=1 env equiv; explicit --ref wins). Three-lane install docs (stable @latest / --next prerelease / --dev source) + @next dist-tag pipeline design doc. Green PR-event CI 1626 + review-of-record APPROVE (head 3a5c12a5).

Co-Authored-By: Claude Opus 4.8 <[email protected]>
2026-06-25 05:14:32 +00:00
jason.woltjeandClaude Opus 4.8 a3c1ab923c test(#462): add federation M3 integration coverage (#685)
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FED-M3-10 integration tests for the federation M3 verbs (list/get/scope). Test-infra + docs only; green PR-event CI 1623 (all steps incl ci-postgres).

Co-Authored-By: Claude Opus 4.8 <[email protected]>
2026-06-25 04:14:56 +00:00
jason.woltjeandClaude Opus 4.8 838701bde2 feat(#462): add federation get verb (#683)
ci/woodpecker/push/ci Pipeline was successful
FED-M3-06 get verb. Trust boundary mirrors M3-05 AND-intersect (note returned only when owned by subject AND on an authorized mission). Reviewed (review-of-record APPROVE, head 80a259b2) + green PR-event CI 1620.

Co-Authored-By: Claude Opus 4.8 <[email protected]>
2026-06-25 03:44:54 +00:00
533 changed files with 99170 additions and 3924 deletions
+1
View File
@@ -8,6 +8,7 @@ coverage
.env.local
*.tsbuildinfo
.pnpm-store
__pycache__/
docs/reports/
# Step-CA dev password — real file is gitignored; commit only the .example
+1 -1
View File
@@ -1 +1 @@
pnpm typecheck && pnpm lint && pnpm format:check
pnpm preflight && pnpm typecheck && pnpm lint && pnpm format:check
+4 -4
View File
@@ -1,5 +1,5 @@
@mosaicstack:registry=https://git.mosaicstack.dev/api/packages/mosaicstack/npm/
# Pin the pnpm store to the same path the ci-base image warms (Dockerfile.ci),
# so the pipeline `pnpm install --prefer-offline` consumes the baked store
# instead of repopulating a fresh one.
store-dir=/root/.local/share/pnpm/store
# HOME resolves to /root in the ci-base image, preserving its warmed-store path.
# Non-root checkouts use their own HOME. Override without editing this file via
# NPM_CONFIG_STORE_DIR (pnpm's environment form of the store-dir setting).
store-dir=${HOME}/.local/share/pnpm/store
+9
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@@ -4,6 +4,15 @@ pnpm-lock.yaml
**/node_modules
**/drizzle
**/.next
# Python build/test artifacts — same category as node_modules/dist/.next above.
# Prettier must never scan generated trees; without these a local venv poisons
# `pnpm format:check` with thousands of third-party files.
**/venv
**/__pycache__
**/.mypy_cache
**/.pytest_cache
**/htmlcov
.claude/
docs/tess/TASKS.md
docs/scratchpads/
packages/mosaic/src/fleet/testdata/documentation-publication-v1/inline-migration-v1.json
+33
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@@ -41,6 +41,32 @@ steps:
# (Constitution + dispatcher + each RUNTIME.md slice). See DESIGN §7 / R9.
- bash packages/mosaic/framework/tools/quality/scripts/check-resident-budget.sh --self-test
- bash packages/mosaic/framework/tools/quality/scripts/check-resident-budget.sh
# Test-membership guard (#1017): also first link of test:framework-shell.
# Invoked from BOTH surfaces it audits (F2, PR #1018) — the guard is link
# [0] of the pnpm chain, so severing that chain would silence it together
# with everything it guards; this direct line keeps one instrument running.
- bash packages/mosaic/framework/tools/quality/scripts/check-test-enumeration.sh
# Blocking gate (#791): a framework upgrade must never write or delete an
# operator-owned path. The HARD GATE proves an unanticipated operator sentinel
# survives a keep-mode reseed byte-identical (with rsync present AND absent —
# keep mode is a single cp-based path that must not depend on rsync), and that a
# corrupt/empty/missing manifest aborts fail-closed leaving operator files
# untouched (B2/B3). The rollback gate proves a mid-sync failure is rolled back
# from the pre-update snapshot (B1). The durable-snapshot gate (#791 PR2) proves
# the retained, operator-scoped pre-update backup is taken before any mutation
# (0700/0600, secret never logged, retention-pruned) and that the post-sync
# verify net restores any operator file a manifest bug lets the sync touch. The
# migration matrix pins the v2→v3 contract-file semantics. Pure bash, no
# node_modules — runs early alongside sanitization.
upgrade-guard:
image: *node_image
commands:
- apk add --no-cache bash rsync
- bash packages/mosaic/framework/tools/quality/scripts/test-upgrade-manifest-guard.sh
- bash packages/mosaic/framework/tools/quality/scripts/test-upgrade-rollback.sh
- bash packages/mosaic/framework/tools/quality/scripts/test-upgrade-durable-snapshot.sh
- bash packages/mosaic/framework/tools/quality/scripts/test-install-migration.sh
typecheck:
image: *node_image
@@ -50,6 +76,7 @@ steps:
depends_on:
- install
- sanitization
- upgrade-guard
# lint, format, and test are independent — run in parallel after typecheck
lint:
@@ -76,6 +103,12 @@ steps:
DATABASE_URL: postgresql://mosaic:mosaic@ci-postgres:5432/mosaic
commands:
- *enable_pnpm
# openssl (#912) is the wake HMAC signer: the digest H1/H2, beacon B12,
# and install I8 legs hard-require it in CI. It is baked into ci-base via
# Dockerfile.ci, but ci-base only rebuilds on push-to-main/tag — this
# `apk add` guarantees openssl is present on PR pipelines too (and is a
# fast no-op once the rebuilt image already ships it).
- apk add --no-cache openssl
# postgresql-client (pg_isready) is baked into ci-base.
# Wait up to 60s for CI postgres to be ready; fail fast if it never comes up.
- |
+104 -5
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@@ -1,5 +1,5 @@
# Build, publish npm packages, and push Docker images
# Runs only on main branch push/tag
# Runs on main for stable publishes and on next for integration-line prereleases/images
variables:
# Pre-baked CI base (see .woodpecker/ci-image.yml): node:24-alpine +
@@ -23,9 +23,21 @@ variables:
- 'docs/**'
- '**/*.md'
- '.woodpecker/**'
- event: [push, manual]
branch: next
- &main_image_build_when
- event: tag
- event: [push, manual]
branch: main
path:
exclude:
- 'packages/mosaic/**'
- 'docs/**'
- '**/*.md'
- '.woodpecker/**'
when:
- branch: [main]
- branch: [main, next]
event: [push, manual, tag]
steps:
@@ -103,6 +115,84 @@ steps:
depends_on:
- build
publish-next-npm:
image: *node_image
# Durable @next integration-line publish. Runs only on next; never writes
# the latest dist-tag and never commits the computed prerelease versions.
when:
- event: [push, manual]
branch: next
environment:
NPM_TOKEN:
from_secret: gitea_token
CI_COMMIT_BRANCH: ${CI_COMMIT_BRANCH}
CI_PIPELINE_NUMBER: ${CI_PIPELINE_NUMBER}
commands:
- *enable_pnpm
- |
if [ "$CI_COMMIT_BRANCH" != "next" ]; then
echo "[publish-next] FATAL: publish-next-npm may only run on next (got '$CI_COMMIT_BRANCH')" >&2
exit 1
fi
if [ -z "$CI_PIPELINE_NUMBER" ]; then
echo "[publish-next] FATAL: CI_PIPELINE_NUMBER is required for prerelease versioning" >&2
exit 1
fi
echo "//git.mosaicstack.dev/api/packages/mosaicstack/npm/:_authToken=$NPM_TOKEN" > ~/.npmrc
echo "@mosaicstack:registry=https://git.mosaicstack.dev/api/packages/mosaicstack/npm/" >> ~/.npmrc
DIST_TAGS_JSON="$(npm view @mosaicstack/mosaic dist-tags --registry https://git.mosaicstack.dev/api/packages/mosaicstack/npm/ --json)"
DIST_TAGS_JSON="$DIST_TAGS_JSON" node -e 'const tags = JSON.parse(process.env.DIST_TAGS_JSON || "{}"); if (!tags || typeof tags !== "object" || !Object.hasOwn(tags, "latest")) { throw new Error("Gitea npm registry did not return a usable dist-tags object"); } console.log("[publish-next] registry dist-tags OK: latest=" + tags.latest);'
node <<'NODE'
const fs = require('node:fs');
const path = require('node:path');
const pipelineNumber = process.env.CI_PIPELINE_NUMBER;
const roots = ['apps', 'packages', 'plugins'];
const updated = [];
function walk(dir) {
if (!fs.existsSync(dir)) return;
for (const entry of fs.readdirSync(dir, { withFileTypes: true })) {
if (entry.name === 'node_modules' || entry.name === 'dist' || entry.name === '.turbo') continue;
const fullPath = path.join(dir, entry.name);
if (entry.isDirectory()) {
const packagePath = path.join(fullPath, 'package.json');
if (fs.existsSync(packagePath)) updatePackage(packagePath);
walk(fullPath);
}
}
}
function updatePackage(packagePath) {
const manifest = JSON.parse(fs.readFileSync(packagePath, 'utf8'));
if (!manifest.name?.startsWith('@mosaicstack/') || manifest.private) return;
const stableMatch = /^(\d+)\.(\d+)\.(\d+)(?:[-+].*)?$/.exec(manifest.version);
if (!stableMatch) {
throw new Error(manifest.name + " has unsupported semver version '" + manifest.version + "'");
}
const [, major, minor, patch] = stableMatch;
const oldVersion = manifest.version;
manifest.version = major + '.' + minor + '.' + (Number(patch) + 1) + '-next.' + pipelineNumber;
fs.writeFileSync(packagePath, JSON.stringify(manifest, null, 2) + '\n');
updated.push(manifest.name + ' ' + oldVersion + ' -> ' + manifest.version);
}
for (const root of roots) walk(root);
if (updated.length === 0) throw new Error('No publishable @mosaicstack/* packages found');
console.log('[publish-next] computed prerelease versions for ' + updated.length + ' packages:');
for (const line of updated) console.log('[publish-next] ' + line);
NODE
pnpm --filter "@mosaicstack/*" --filter "!@mosaicstack/web" --filter "!@mosaicstack/mosaic-as" publish --no-git-checks --access public --tag next
EXPECTED_VERSION="$(node -p "require('./packages/mosaic/package.json').version")"
RESOLVED_VERSION="$(npm view @mosaicstack/mosaic@next version --registry https://git.mosaicstack.dev/api/packages/mosaicstack/npm/)"
if [ "$RESOLVED_VERSION" != "$EXPECTED_VERSION" ]; then
echo "[publish-next] FATAL: @mosaicstack/mosaic@next resolved '$RESOLVED_VERSION', expected '$EXPECTED_VERSION'" >&2
exit 1
fi
echo "[publish-next] @mosaicstack/mosaic@next resolves to $RESOLVED_VERSION"
depends_on:
- build
# TODO: Uncomment when ready to publish to npmjs.org
# publish-npmjs:
# image: *node_image
@@ -134,8 +224,17 @@ steps:
- echo "{\"auths\":{\"git.mosaicstack.dev\":{\"username\":\"$REGISTRY_USER\",\"password\":\"$REGISTRY_PASS\"}}}" > /kaniko/.docker/config.json
- |
DESTINATIONS="--destination git.mosaicstack.dev/mosaicstack/stack/gateway:sha-${CI_COMMIT_SHA:0:7}"
if [ "$CI_COMMIT_BRANCH" = "main" ]; then
if [ "$CI_COMMIT_BRANCH" = "next" ]; then
if [ -n "$CI_COMMIT_TAG" ]; then
echo "[publish] FATAL: next gateway publish must be sha-only; refusing tag '$CI_COMMIT_TAG'" >&2
exit 1
fi
echo "[publish] next gateway publish is sha-only"
elif [ "$CI_COMMIT_BRANCH" = "main" ]; then
DESTINATIONS="$DESTINATIONS --destination git.mosaicstack.dev/mosaicstack/stack/gateway:latest"
elif [ -z "$CI_COMMIT_TAG" ]; then
echo "[publish] FATAL: gateway image publish may only run for main, next, or tag events" >&2
exit 1
fi
if [ -n "$CI_COMMIT_TAG" ]; then
DESTINATIONS="$DESTINATIONS --destination git.mosaicstack.dev/mosaicstack/stack/gateway:$CI_COMMIT_TAG"
@@ -146,7 +245,7 @@ steps:
build-appservice:
image: gcr.io/kaniko-project/executor:debug
when: *image_build_when
when: *main_image_build_when
environment:
REGISTRY_USER:
from_secret: gitea_username
@@ -172,7 +271,7 @@ steps:
build-web:
image: gcr.io/kaniko-project/executor:debug
when: *image_build_when
when: *main_image_build_when
environment:
REGISTRY_USER:
from_secret: gitea_username
+7 -6
View File
@@ -26,13 +26,14 @@ pnpm test # Vitest (all packages)
pnpm build # Build all packages
# Database
pnpm --filter @mosaicstack/db db:push # Push schema to PG (dev)
pnpm --filter @mosaicstack/db db:generate # Generate migrations
pnpm --filter @mosaicstack/db db:migrate # Run migrations
pnpm --filter @mosaicstack/db db:generate # Offline migration artifact generation only
# PostgreSQL execution is held until KBN-101-00/-03/-05 land. Do not invoke a runner,
# init SQL, or Compose PostgreSQL service from this checkout.
# Dev
docker compose up -d # Start PG, Valkey, OTEL, Jaeger
pnpm --filter @mosaicstack/gateway exec tsx src/main.ts # Start gateway
# Dev: local PGlite data-layer work needs no PostgreSQL. Optional local queue service only:
docker compose up -d valkey
# Do not start Gateway/Web or root pnpm dev as a local PGlite route: the current unguarded dotenv
# loader can inherit a daemon PostgreSQL DSN. KBN-101-02 must make that state fail closed first.
```
## Conventions
+7 -4
View File
@@ -22,10 +22,13 @@
FROM node:24-alpine
# Native toolchain required to compile node-gyp deps on musl, plus the
# postgresql-client used by the test step's pg_isready readiness probe. `bash`
# is baked here too — the sanitization step in ci.yml otherwise does a per-run
# `apk add bash`.
RUN apk add --no-cache python3 make g++ postgresql-client bash
# postgresql-client used by the test step's pg_isready readiness probe. `bash`,
# `git`, and `jq` are baked here too — framework shell tests and the shipped
# Codex review wrappers require them without per-run installation in ci.yml.
# `openssl` (#912) is the non-circular HMAC signer for the wake trust layer:
# the digest H1/H2, beacon B12, and install I8 legs hard-require it in CI so the
# §4 G6 evidence comes from an actually-run HMAC leg, not a skipped one.
RUN apk add --no-cache python3 make g++ postgresql-client bash git jq openssl
# Pin pnpm to the repo's packageManager version via corepack.
RUN corepack enable && corepack prepare [email protected] --activate
+59 -20
View File
@@ -30,6 +30,16 @@ This installs both components:
| **Framework** | Bash launcher, guides, runtime configs, tools, skills | `~/.config/mosaic/` |
| **@mosaicstack/mosaic** | Unified `mosaic` CLI — TUI, gateway client, wizard, auto-updater | `~/.npm-global/bin/` |
### Install lanes
| Lane | Command | Use when | Source |
| ------------------------ | ------------------------------------- | ----------------------------------------------------- | ----------------------------------------------------------------------- |
| Stable | `bash tools/install.sh` | You want the released Mosaic CLI/framework | npm registry `@mosaicstack/mosaic@latest` + framework archive at `main` |
| Prerelease integration | `bash tools/install.sh --next` | You want the current `next` integration branch | Build-from-source at `next` |
| Contributor/source build | `bash tools/install.sh --dev --ref X` | You are testing a branch before release; `--ref` wins | Build-from-source at the requested ref |
`--next` is shorthand for the prerelease integration lane: it enables source-build mode and uses `next` unless an explicit `--ref` or `MOSAIC_REF` is provided.
After install, the wizard runs automatically or you can invoke it manually:
```bash
@@ -97,7 +107,10 @@ mosaic config path # Print config file path
```bash
mosaic doctor # Health audit — detect drift and missing files
mosaic sync # Sync skills from canonical source
mosaic update # Check for and install CLI updates
mosaic skill list # Audit Claude skill registrations and conflicts
mosaic skill register <name> # Register one canonical skill with Claude Code
mosaic skill unregister <name> # Remove one Mosaic-owned Claude link
mosaic update # Update CLI/framework and auto-register canonical skills
mosaic wizard # Full guided setup wizard
mosaic bootstrap <path> # Bootstrap a repo with Mosaic standards
mosaic coord init # Initialize a new orchestration mission
@@ -157,7 +170,12 @@ mosaic storage status
mosaic storage tier
mosaic storage export
mosaic storage import
mosaic storage migrate
# Schema migration is unavailable in this release. The current storage wrapper shells
# directly to `pnpm --filter @mosaicstack/db db:migrate`; it is legacy N-1,
# uncertified, and MUST NOT be invoked pending KBN-101-02/-03/-06/-08 activation.
# Future schema migration is non-operative: external bootstrap → TLS/roles → runner
# --run → runner --verify → readiness. Tier copy uses only the separately held secure
# migrate-tier route.
```
### Telemetry
@@ -192,33 +210,50 @@ Consent state is persisted in config. Remote upload is a no-op until you run `mo
git clone [email protected]:mosaicstack/stack.git
cd stack
# Start infrastructure (Postgres, Valkey, Jaeger)
docker compose up -d
# Install dependencies
# Install dependencies. The local tier uses in-process PGlite; leave DATABASE_URL unset.
# The pnpm store defaults to $HOME/.local/share/pnpm/store. Override it without
# editing the checkout with NPM_CONFIG_STORE_DIR=$HOME/another-store if needed.
pnpm install
# Run migrations
pnpm --filter @mosaicstack/db run db:migrate
# Verify dependencies and generated state before running source-quality gates.
# Missing dependencies exit 42; stale/foreign apps/web/.next state exits 43.
# The web build certifies its exact standalone symlink manifest; added, removed,
# retargeted, or manifest-only-tampered generated links also exit 43. This detects
# accidental, independent, stale, and foreign-residue mutation—the class exposed by
# a five-month-stale .next that produced 19 phantom TS2307 errors.
# It does NOT defend against a same-UID actor that can rewrite both manifest and
# marker consistently (CWE-345). RM-59 tracks the required executor/spine-side
# trust anchor outside worktree authority.
pnpm preflight
# Start all services in dev mode
pnpm dev
# Optional local queue service only. This does not start PostgreSQL.
docker compose up -d valkey
# The current Gateway/Web local process is held; see docs/guides/dev-guide.md.
# Do not start it until KBN-101-02 makes inherited dotenv/DSN state fail closed.
```
### Infrastructure
### Held future procedure
Docker Compose provides:
The checked-in Compose PostgreSQL service mounts legacy initialization SQL and is **not** a
current PostgreSQL, standalone, or federated developer route. Do not start it with Compose,
invoke initialization SQL, or treat the planned migrator as currently executable.
| Service | Port | Purpose |
| --------------------- | --------- | ---------------------- |
| PostgreSQL (pgvector) | 5433 | Primary database |
| Valkey | 6380 | Task queue + caching |
| Jaeger | 16686 | Distributed tracing UI |
| OTEL Collector | 4317/4318 | Telemetry ingestion |
**Held future activation procedure — non-operative and no current command authority until KBN-101-00, KBN-101-03, and KBN-101-05
land:** external bootstrap → TLS/roles → `mosaic-db-migrator --run`
`mosaic-db-migrator --verify` → Gateway/Compose readiness. The future deployment artifacts—not
this README—will provide the reviewed commands and secret-consumer interface.
For local data-layer work, PGlite needs no PostgreSQL service. The optional Compose command above
starts only Valkey; OTEL Collector and Jaeger may likewise be started individually if needed,
without starting PostgreSQL. A Gateway/Web local process is not currently a safe PGlite route:
its unguarded dotenv loader may inherit a daemon PostgreSQL DSN. Do not use root `pnpm dev` or a
Gateway start command until KBN-101-02 makes that state fail closed.
### Quality Gates
```bash
pnpm preflight # Checkout/dependency/generated-state validation
pnpm typecheck # TypeScript type checking (all packages)
pnpm lint # ESLint (all packages)
pnpm test # Vitest (all packages)
@@ -231,7 +266,7 @@ pnpm format # Prettier auto-fix
Woodpecker CI runs on every push:
- `pnpm install --frozen-lockfile`
- Database migration against a fresh Postgres
- **Legacy N-1 CI status only — active, uncertified, and non-authorizing as an operator route:** the checked-in job currently invokes `pnpm --filter @mosaicstack/db run db:migrate` with `DATABASE_URL` against an isolated disposable PostgreSQL CI database. It performs direct DDL in that CI database, is not approved ordinary behavior or an operator route, and remains a known exception pending KBN-101-06 removal/replacement by the certified runner-backed CI path.
- `pnpm test` (Turbo-orchestrated across all packages)
npm packages are published to the Gitea package registry on main merges.
@@ -336,11 +371,15 @@ The CLI also performs a background update check on every invocation (cached for
bash tools/install.sh --check # Version check only
bash tools/install.sh --framework # Framework only (skip npm CLI)
bash tools/install.sh --cli # npm CLI only (skip framework)
bash tools/install.sh --ref v1.0 # Install from a specific git ref
bash tools/install.sh --next # Prerelease lane: source build from next
bash tools/install.sh --dev # Contributor lane: source build at --ref/main
bash tools/install.sh --ref v1.0 # Install from a specific git ref (--ref wins over --next)
bash tools/install.sh --yes # Non-interactive, accept all defaults
bash tools/install.sh --no-auto-launch # Skip auto-launch of wizard
```
The installer rejects unrecognized flags or positional arguments before making changes and prints the supported-option usage.
## Contributing
```bash
@@ -0,0 +1,519 @@
/**
* Federation M3 single-gateway integration tests (FED-M3-10).
*
* Covers MILESTONES.md M3 acceptance:
* - #6: malformed certificate OIDs fail with 401; valid cert + revoked grant fails with 403.
* - #7: max_rows_per_query caps list results.
*
* Strategy:
* - Real PostgreSQL via @mosaicstack/db.
* - Mocked TLS context/Fastify request shim for FederationAuthGuard.
* - Direct controller calls using the real POST /api/federation/v1/list/:resource contract.
*
* Run:
* FEDERATED_INTEGRATION=1 pnpm --filter @mosaicstack/gateway test -- \
* src/__tests__/integration/federation-m3-list.integration.test.ts
*/
import 'reflect-metadata';
import * as crypto from 'node:crypto';
import type { ExecutionContext } from '@nestjs/common';
import { Test, type TestingModule } from '@nestjs/testing';
import type { FastifyReply, FastifyRequest } from 'fastify';
import {
and,
createDb,
eq,
federationGrants,
federationPeers,
inArray,
missionTasks,
missions,
projects,
tasks,
teamMembers,
teams,
type Db,
type DbHandle,
users,
} from '@mosaicstack/db';
import { afterAll, beforeAll, describe, expect, it } from 'vitest';
import { DB } from '../../database/database.module.js';
import { GrantsService } from '../../federation/grants.service.js';
import { FederationAuthGuard } from '../../federation/server/federation-auth.guard.js';
import { FederationScopeService } from '../../federation/server/scope.service.js';
import { FederationListQueryService } from '../../federation/server/verbs/list-query.service.js';
import { ListController } from '../../federation/server/verbs/list.controller.js';
import {
makeMosaicIssuedCert,
makeSelfSignedCert,
} from '../../federation/__tests__/helpers/test-cert.js';
const run = process.env['FEDERATED_INTEGRATION'] === '1';
const PG_URL = process.env['DATABASE_URL'] ?? 'postgresql://mosaic:mosaic@localhost:5433/mosaic';
const RUN_ID = `fed-m3-10-${crypto.randomUUID()}`;
const CERT_SERIAL_HEX = crypto.randomUUID().replace(/-/g, '').toUpperCase();
interface TestIds {
readonly subjectUserId: string;
readonly otherUserId: string;
readonly peerId: string;
readonly revokedPeerId: string;
readonly activeGrantId: string;
readonly revokedGrantId: string;
readonly subjectProjectId: string;
readonly subjectMissionId: string;
readonly otherProjectId: string;
readonly teamId: string;
readonly unauthorizedTeamId: string;
readonly teamProjectId: string;
readonly taskIds: readonly string[];
readonly excludedTaskIds: readonly string[];
readonly subjectNoteId: string;
readonly otherUserNoteId: string;
}
function pemToDer(pem: string): Buffer {
return Buffer.from(
pem
.replace(/-----BEGIN CERTIFICATE-----/, '')
.replace(/-----END CERTIFICATE-----/, '')
.replace(/\s+/g, ''),
'base64',
);
}
function makeFederationRequest(certPem: string): FastifyRequest {
return {
raw: {
socket: {
getPeerCertificate: () => ({
raw: pemToDer(certPem),
serialNumber: CERT_SERIAL_HEX,
}),
},
},
} as unknown as FastifyRequest;
}
function makeGuardContext(request: FastifyRequest): {
readonly context: ExecutionContext;
readonly sent: { statusCode?: number; payload?: unknown };
} {
const sent: { statusCode?: number; payload?: unknown } = {};
const reply = {
status: (statusCode: number) => {
sent.statusCode = statusCode;
return {
header: () => ({
send: (payload: unknown) => {
sent.payload = payload;
},
}),
};
},
} as unknown as FastifyReply;
const context = {
switchToHttp: () => ({
getRequest: () => request,
getResponse: () => reply,
}),
} as unknown as ExecutionContext;
return { context, sent };
}
async function insertUser(db: Db, id: string, label: string): Promise<void> {
await db.insert(users).values({
id,
name: `${RUN_ID}-${label}`,
email: `${RUN_ID}-${label}@federation-test.invalid`,
emailVerified: false,
});
}
async function seedFixtures(db: Db): Promise<TestIds> {
const subjectUserId = `${RUN_ID}-subject`;
const otherUserId = `${RUN_ID}-other`;
const peerId = crypto.randomUUID();
const revokedPeerId = crypto.randomUUID();
const activeGrantId = crypto.randomUUID();
const revokedGrantId = crypto.randomUUID();
const subjectProjectId = crypto.randomUUID();
const subjectMissionId = crypto.randomUUID();
const otherProjectId = crypto.randomUUID();
const teamId = crypto.randomUUID();
const unauthorizedTeamId = crypto.randomUUID();
const teamProjectId = crypto.randomUUID();
const taskIds = [crypto.randomUUID(), crypto.randomUUID(), crypto.randomUUID()] as const;
const excludedTaskIds = [crypto.randomUUID(), crypto.randomUUID()] as const;
const subjectNoteId = crypto.randomUUID();
const otherUserNoteId = crypto.randomUUID();
await insertUser(db, subjectUserId, 'subject');
await insertUser(db, otherUserId, 'other');
await db.insert(teams).values([
{
id: teamId,
name: `${RUN_ID} allowed team`,
slug: `${RUN_ID}-allowed-team`,
ownerId: subjectUserId,
managerId: subjectUserId,
},
{
id: unauthorizedTeamId,
name: `${RUN_ID} unauthorized team`,
slug: `${RUN_ID}-unauthorized-team`,
ownerId: otherUserId,
managerId: otherUserId,
},
]);
await db.insert(teamMembers).values([
{ teamId, userId: subjectUserId, role: 'member' },
{ teamId: unauthorizedTeamId, userId: subjectUserId, role: 'member' },
]);
await db.insert(projects).values([
{
id: subjectProjectId,
name: `${RUN_ID} subject personal project`,
ownerType: 'user',
ownerId: subjectUserId,
},
{
id: otherProjectId,
name: `${RUN_ID} other personal project`,
ownerType: 'user',
ownerId: otherUserId,
},
{
id: teamProjectId,
name: `${RUN_ID} unauthorized team project`,
ownerType: 'team',
teamId: unauthorizedTeamId,
},
]);
await db.insert(missions).values({
id: subjectMissionId,
name: `${RUN_ID} subject mission`,
projectId: subjectProjectId,
userId: subjectUserId,
});
await db.insert(tasks).values([
{
id: taskIds[0],
title: `${RUN_ID} visible task 1`,
missionId: subjectMissionId,
createdAt: new Date('2026-06-25T03:00:00.000Z'),
updatedAt: new Date('2026-06-25T03:00:00.000Z'),
},
{
id: taskIds[1],
title: `${RUN_ID} visible task 2`,
projectId: subjectProjectId,
createdAt: new Date('2026-06-25T02:00:00.000Z'),
updatedAt: new Date('2026-06-25T02:00:00.000Z'),
},
{
id: taskIds[2],
title: `${RUN_ID} visible task 3`,
projectId: subjectProjectId,
createdAt: new Date('2026-06-25T01:00:00.000Z'),
updatedAt: new Date('2026-06-25T01:00:00.000Z'),
},
{
id: excludedTaskIds[0],
title: `${RUN_ID} other user task`,
projectId: otherProjectId,
createdAt: new Date('2026-06-25T04:00:00.000Z'),
updatedAt: new Date('2026-06-25T04:00:00.000Z'),
},
{
id: excludedTaskIds[1],
title: `${RUN_ID} unauthorized team task`,
projectId: teamProjectId,
createdAt: new Date('2026-06-25T05:00:00.000Z'),
updatedAt: new Date('2026-06-25T05:00:00.000Z'),
},
]);
await db.insert(missionTasks).values([
{
id: subjectNoteId,
missionId: subjectMissionId,
userId: subjectUserId,
notes: `${RUN_ID} subject visible note`,
createdAt: new Date('2026-06-25T03:30:00.000Z'),
updatedAt: new Date('2026-06-25T03:30:00.000Z'),
},
{
id: otherUserNoteId,
missionId: subjectMissionId,
userId: otherUserId,
notes: `${RUN_ID} other user note on subject mission`,
createdAt: new Date('2026-06-25T04:30:00.000Z'),
updatedAt: new Date('2026-06-25T04:30:00.000Z'),
},
]);
await db.insert(federationPeers).values([
{
id: peerId,
commonName: `${RUN_ID}-active-peer`,
displayName: `${RUN_ID} Active Peer`,
certPem: '-----BEGIN CERTIFICATE-----\nMOCK\n-----END CERTIFICATE-----\n',
certSerial: CERT_SERIAL_HEX,
certNotAfter: new Date(Date.now() + 86_400_000),
state: 'active',
},
{
id: revokedPeerId,
commonName: `${RUN_ID}-revoked-peer`,
displayName: `${RUN_ID} Revoked Peer`,
certPem: '-----BEGIN CERTIFICATE-----\nMOCK\n-----END CERTIFICATE-----\n',
certSerial: `${CERT_SERIAL_HEX}${RUN_ID.replace(/-/g, '').slice(0, 8).toUpperCase()}`,
certNotAfter: new Date(Date.now() + 86_400_000),
state: 'active',
},
]);
await db.insert(federationGrants).values([
{
id: activeGrantId,
peerId,
subjectUserId,
status: 'active',
scope: {
resources: ['tasks', 'notes'],
excluded_resources: [],
filters: {
tasks: { include_personal: true, include_teams: [] },
notes: { include_personal: true, include_teams: [] },
},
max_rows_per_query: 2,
},
},
{
id: revokedGrantId,
peerId,
subjectUserId,
status: 'revoked',
revokedAt: new Date(),
revokedReason: `${RUN_ID} revoked grant fixture`,
scope: {
resources: ['tasks'],
excluded_resources: [],
max_rows_per_query: 2,
},
},
]);
return {
subjectUserId,
otherUserId,
peerId,
revokedPeerId,
activeGrantId,
revokedGrantId,
subjectProjectId,
subjectMissionId,
otherProjectId,
teamId,
unauthorizedTeamId,
teamProjectId,
taskIds,
excludedTaskIds,
subjectNoteId,
otherUserNoteId,
};
}
async function cleanupFixtures(db: Db, ids: TestIds | undefined): Promise<void> {
if (!ids) {
return;
}
await db
.delete(missionTasks)
.where(inArray(missionTasks.id, [ids.subjectNoteId, ids.otherUserNoteId]))
.catch(() => {});
await db
.delete(tasks)
.where(inArray(tasks.id, [...ids.taskIds, ...ids.excludedTaskIds]))
.catch(() => {});
await db
.delete(missions)
.where(eq(missions.id, ids.subjectMissionId))
.catch(() => {});
await db
.delete(projects)
.where(inArray(projects.id, [ids.subjectProjectId, ids.otherProjectId, ids.teamProjectId]))
.catch(() => {});
await db
.delete(teamMembers)
.where(
and(
eq(teamMembers.userId, ids.subjectUserId),
inArray(teamMembers.teamId, [ids.teamId, ids.unauthorizedTeamId]),
),
)
.catch(() => {});
await db
.delete(teams)
.where(inArray(teams.id, [ids.teamId, ids.unauthorizedTeamId]))
.catch(() => {});
await db
.delete(federationGrants)
.where(inArray(federationGrants.id, [ids.activeGrantId, ids.revokedGrantId]))
.catch(() => {});
await db
.delete(federationPeers)
.where(inArray(federationPeers.id, [ids.peerId, ids.revokedPeerId]))
.catch(() => {});
await db
.delete(users)
.where(inArray(users.id, [ids.subjectUserId, ids.otherUserId]))
.catch(() => {});
}
describe.skipIf(!run)('federation M3 list verb — single-gateway integration', () => {
let handle: DbHandle;
let db: Db;
let moduleRef: TestingModule;
let guard: FederationAuthGuard;
let listController: ListController;
let ids: TestIds | undefined;
beforeAll(async () => {
handle = createDb(PG_URL);
db = handle.db;
ids = await seedFixtures(db);
moduleRef = await Test.createTestingModule({
controllers: [ListController],
providers: [
{ provide: DB, useValue: db },
GrantsService,
FederationAuthGuard,
FederationScopeService,
FederationListQueryService,
],
}).compile();
guard = moduleRef.get(FederationAuthGuard);
listController = moduleRef.get(ListController);
}, 30_000);
afterAll(async () => {
await moduleRef?.close().catch((e: unknown) => console.error('[fed-m3-10 cleanup]', e));
await cleanupFixtures(db, ids).catch((e: unknown) => console.error('[fed-m3-10 cleanup]', e));
await handle?.close().catch((e: unknown) => console.error('[fed-m3-10 cleanup]', e));
});
it('#6 — rejects a client cert with malformed/missing Mosaic OIDs with 401', async () => {
const malformedOidCert = await makeSelfSignedCert();
const request = makeFederationRequest(malformedOidCert);
const { context, sent } = makeGuardContext(request);
await expect(guard.canActivate(context)).resolves.toBe(false);
expect(sent.statusCode).toBe(401);
expect(sent.payload).toMatchObject({
error: {
code: 'unauthorized',
message: expect.stringContaining('missing required OID'),
},
});
expect(request.federationContext).toBeUndefined();
});
it('#6 — rejects a valid client cert when its grant is revoked with 403', async () => {
expect(ids).toBeDefined();
const revokedCert = await makeMosaicIssuedCert({
grantId: ids!.revokedGrantId,
subjectUserId: ids!.subjectUserId,
});
const request = makeFederationRequest(revokedCert);
const { context, sent } = makeGuardContext(request);
await expect(guard.canActivate(context)).resolves.toBe(false);
expect(sent.statusCode).toBe(403);
expect(sent.payload).toMatchObject({
error: {
code: 'forbidden',
message: 'Federation access denied',
},
});
expect(request.federationContext).toBeUndefined();
});
it('#7 — enforces max_rows_per_query on POST /api/federation/v1/list/:resource', async () => {
expect(ids).toBeDefined();
const activeCert = await makeMosaicIssuedCert({
grantId: ids!.activeGrantId,
subjectUserId: ids!.subjectUserId,
});
const request = makeFederationRequest(activeCert);
const { context } = makeGuardContext(request);
await expect(guard.canActivate(context)).resolves.toBe(true);
const response = await listController.list('tasks', request, { limit: 100 });
const returnedIds = response.items.map((item) => item['id']);
expect(response.items).toHaveLength(2);
expect(response._truncated).toBe(true);
expect(response.nextCursor).toEqual(expect.any(String));
expect(returnedIds).toEqual([ids!.taskIds[0], ids!.taskIds[1]]);
expect(returnedIds).not.toContain(ids!.taskIds[2]);
for (const excludedId of ids!.excludedTaskIds) {
expect(returnedIds).not.toContain(excludedId);
}
expect(response.items.every((item) => item._source === 'local')).toBe(true);
});
it('excludes another user mission task notes on the same authorized mission', async () => {
expect(ids).toBeDefined();
const activeCert = await makeMosaicIssuedCert({
grantId: ids!.activeGrantId,
subjectUserId: ids!.subjectUserId,
});
const request = makeFederationRequest(activeCert);
const { context } = makeGuardContext(request);
await expect(guard.canActivate(context)).resolves.toBe(true);
const response = await listController.list('notes', request, { limit: 10 });
const returnedIds = response.items.map((item) => item['id']);
expect(returnedIds).toEqual([ids!.subjectNoteId]);
expect(returnedIds).not.toContain(ids!.otherUserNoteId);
expect(response.items.every((item) => item._source === 'local')).toBe(true);
});
it('fails closed for unsupported list resources', async () => {
expect(ids).toBeDefined();
const activeCert = await makeMosaicIssuedCert({
grantId: ids!.activeGrantId,
subjectUserId: ids!.subjectUserId,
});
const request = makeFederationRequest(activeCert);
const { context } = makeGuardContext(request);
await expect(guard.canActivate(context)).resolves.toBe(true);
await expect(listController.list('widgets', request, {})).rejects.toMatchObject({
response: {
error: {
code: 'scope_violation',
message: 'Requested federation resource is not supported',
},
},
status: 403,
});
});
});
@@ -1,9 +1,11 @@
import { Controller, Get, Inject, UseGuards } from '@nestjs/common';
import { Controller, Get, Inject, Optional, UseGuards } from '@nestjs/common';
import { sql, type Db } from '@mosaicstack/db';
import { createQueue } from '@mosaicstack/queue';
import type { MosaicConfig } from '@mosaicstack/config';
import { DB } from '../database/database.module.js';
import { AgentService } from '../agent/agent.service.js';
import { ProviderService } from '../agent/provider.service.js';
import { MOSAIC_CONFIG } from '../config/config.module.js';
import { AdminGuard } from './admin.guard.js';
import type { HealthStatusDto, ServiceStatusDto } from './admin.dto.js';
@@ -14,6 +16,9 @@ export class AdminHealthController {
@Inject(DB) private readonly db: Db,
@Inject(AgentService) private readonly agentService: AgentService,
@Inject(ProviderService) private readonly providerService: ProviderService,
@Optional()
@Inject(MOSAIC_CONFIG)
private readonly mosaicConfig: MosaicConfig | null,
) {}
@Get()
@@ -55,6 +60,14 @@ export class AdminHealthController {
}
private async checkCache(): Promise<ServiceStatusDto> {
// On Local tier there is no Redis. The cache is intentionally absent, which
// is a healthy state for this tier — report 'ok' rather than opening a new
// ioredis connection on every admin health check (which would spam
// ECONNREFUSED and create/destroy a connection per request). latencyMs 0
// signals "no cache backend to measure" for this tier.
if (this.mosaicConfig?.queue?.type === 'local') {
return { status: 'ok', latencyMs: 0 };
}
const start = Date.now();
const handle = createQueue();
try {
+14
View File
@@ -21,6 +21,12 @@ import { LogModule } from '../log/log.module.js';
import { CommandsModule } from '../commands/commands.module.js';
import { CommandRuntimeApprovalVerifier } from '../commands/runtime-approval-verifier.js';
import { GatewayHermesRuntimeTransport } from './hermes-runtime.transport.js';
import { ConnectorLeaseRepository } from './connector-lease.repository.js';
import {
CONNECTOR_LEASE_POLICY,
ConnectorLeaseService,
DenyConnectorLeasePolicy,
} from './connector-lease.service.js';
import {
AGENT_RUNTIME_PROVIDER_REGISTRY,
RUNTIME_APPROVAL_VERIFIER,
@@ -46,6 +52,13 @@ export function createGatewayRuntimeProviderRegistry(): AgentRuntimeProviderRegi
SkillLoaderService,
DurableSessionRepository,
DurableSessionService,
ConnectorLeaseRepository,
DenyConnectorLeasePolicy,
{
provide: CONNECTOR_LEASE_POLICY,
useExisting: DenyConnectorLeasePolicy,
},
ConnectorLeaseService,
{
provide: AGENT_RUNTIME_PROVIDER_REGISTRY,
useFactory: createGatewayRuntimeProviderRegistry,
@@ -78,6 +91,7 @@ export function createGatewayRuntimeProviderRegistry(): AgentRuntimeProviderRegi
SkillLoaderService,
DurableSessionService,
RuntimeProviderService,
ConnectorLeaseService,
AGENT_RUNTIME_PROVIDER_REGISTRY,
],
})
@@ -0,0 +1,341 @@
import { mkdtemp, rm } from 'node:fs/promises';
import { tmpdir } from 'node:os';
import { join } from 'node:path';
import { afterAll, beforeAll, describe, expect, it, vi } from 'vitest';
import { Test, type TestingModule } from '@nestjs/testing';
import {
connectorLeaseAuditLog,
createPgliteDb,
eq,
runPgliteMigrations,
type DbHandle,
} from '@mosaicstack/db';
import type { ConnectorExecutionContext, FencedConnectorAdapter } from '@mosaicstack/types';
import { DB } from '../database/database.module.js';
import { ConnectorLeaseRepository } from './connector-lease.repository.js';
import {
CONNECTOR_LEASE_POLICY,
ConnectorLeaseService,
type ConnectorLeasePolicy,
type ConnectorLeasePolicySubject,
} from './connector-lease.service.js';
const authorize = vi.fn().mockResolvedValue(true);
const policy: ConnectorLeasePolicy = { authorize };
const context = {
actorScope: { userId: 'operator-a', tenantId: 'tenant-a' },
correlationId: 'correlation-acquire',
};
describe('gateway connector lease fencing integration', (): void => {
let dataDir: string;
let handle: DbHandle;
let moduleRef: TestingModule;
let service: ConnectorLeaseService;
let repository: ConnectorLeaseRepository;
beforeAll(async (): Promise<void> => {
vi.useFakeTimers();
vi.setSystemTime(new Date('2026-07-14T17:00:00.000Z'));
dataDir = await mkdtemp(join(tmpdir(), 'mosaic-gateway-connector-lease-'));
handle = createPgliteDb(dataDir);
await runPgliteMigrations(handle);
moduleRef = await Test.createTestingModule({
providers: [
ConnectorLeaseRepository,
ConnectorLeaseService,
{ provide: DB, useValue: handle.db },
{ provide: CONNECTOR_LEASE_POLICY, useValue: policy },
],
}).compile();
service = moduleRef.get(ConnectorLeaseService);
repository = moduleRef.get(ConnectorLeaseRepository);
});
afterAll(async (): Promise<void> => {
vi.useRealTimers();
await moduleRef.close();
await handle.close();
await rm(dataDir, { recursive: true, force: true });
});
it('derives tenant authority at the gateway and validates a grant before side effects', async (): Promise<void> => {
const lease = await service.acquire(
{
logicalAgentId: 'Mos',
bindingId: 'operator-chat',
connectorId: 'pi-worker-a',
scopes: ['runtime.send'],
ttlMs: 60_000,
},
context,
);
const grant = await service.issueGrant(
{ lease, scopes: ['runtime.send'], ttlMs: 30_000 },
{ ...context, correlationId: 'correlation-grant' },
);
const execute = vi.fn(async (_message: string, leaseContext: ConnectorExecutionContext) => {
return leaseContext.leaseEpoch;
});
const adapter: FencedConnectorAdapter<string, string> = { execute };
await expect(service.executeGrant(grant, 'runtime.send', 'hello', adapter)).resolves.toBe('1');
expect(execute).toHaveBeenCalledOnce();
expect(authorize).toHaveBeenCalledWith(
expect.objectContaining({
action: 'grant.issue',
requestedScopes: ['runtime.send'],
requestedTtlMs: 30_000,
}),
);
expect(execute.mock.calls[0]?.[1]).toMatchObject({
identity: { tenantId: 'tenant-a', logicalAgentId: 'mos' },
bindingId: 'operator-chat',
connectorId: 'pi-worker-a',
});
});
it('normalizes lease-derived policy subjects before authorization', async (): Promise<void> => {
const lease = await service.acquire(
{
logicalAgentId: 'mos',
bindingId: 'operator-chat-policy',
connectorId: 'pi-worker-a',
scopes: ['runtime.send'],
ttlMs: 60_000,
},
{ ...context, correlationId: 'correlation-policy-setup' },
);
const aliasedLease = {
...lease,
identity: { ...lease.identity, logicalAgentId: ' MOS ' },
bindingId: ' Operator-Chat-Policy ',
connectorId: ' PI-Worker-A ',
scopes: [' Runtime.Send '],
leaseEpoch: `00${lease.leaseEpoch}`,
};
await service.heartbeat(aliasedLease, 30_000, {
...context,
correlationId: 'correlation-policy-heartbeat',
});
expect(authorize).toHaveBeenLastCalledWith(
expect.objectContaining({
action: 'lease.heartbeat',
logicalAgentId: 'mos',
bindingId: 'operator-chat-policy',
connectorId: 'pi-worker-a',
requestedScopes: ['runtime.send'],
}),
);
await service.issueGrant(
{ lease: aliasedLease, scopes: [' Runtime.Send '], ttlMs: 1_000 },
{ ...context, correlationId: 'correlation-policy-grant' },
);
expect(authorize).toHaveBeenLastCalledWith(
expect.objectContaining({
action: 'grant.issue',
logicalAgentId: 'mos',
bindingId: 'operator-chat-policy',
connectorId: 'pi-worker-a',
requestedScopes: ['runtime.send'],
}),
);
await service.release(aliasedLease, {
...context,
correlationId: 'correlation-policy-release',
});
expect(authorize).toHaveBeenLastCalledWith(
expect.objectContaining({
action: 'lease.release',
logicalAgentId: 'mos',
bindingId: 'operator-chat-policy',
connectorId: 'pi-worker-a',
requestedScopes: ['runtime.send'],
}),
);
});
it('denies stale, forged, expired, cross-tenant, and cross-binding grants before effects', async (): Promise<void> => {
const bindingId = 'operator-chat-denials';
const current = await service.acquire(
{
logicalAgentId: 'mos',
bindingId,
connectorId: 'pi-worker-a',
scopes: ['runtime.send'],
ttlMs: 60_000,
},
{ ...context, correlationId: 'correlation-denial-setup' },
);
const stale = await service.issueGrant(
{ lease: current, scopes: ['runtime.send'], ttlMs: 30_000 },
{ ...context, correlationId: 'correlation-stale' },
);
await service.takeover(
{
logicalAgentId: 'mos',
bindingId,
connectorId: 'pi-worker-b',
scopes: ['runtime.send'],
ttlMs: 60_000,
expectedEpoch: current.leaseEpoch,
},
{ ...context, correlationId: 'correlation-takeover' },
);
const adapter = { execute: vi.fn().mockResolvedValue(undefined) };
await expect(service.executeGrant(stale, 'runtime.send', undefined, adapter)).rejects.toThrow();
const active = await service.current('mos', bindingId, context);
if (!active) throw new Error('active lease fixture is unavailable');
const grant = await service.issueGrant(
{ lease: active, scopes: ['runtime.send'], ttlMs: 1_000 },
{ ...context, correlationId: 'correlation-active' },
);
await expect(
service.executeGrant({ ...grant }, 'runtime.send', undefined, adapter),
).rejects.toThrow();
await expect(
service.executeGrant(
{ ...grant, bindingId: 'other-binding' },
'runtime.send',
undefined,
adapter,
),
).rejects.toThrow();
await expect(
service.issueGrant(
{ lease: active, scopes: ['runtime.send'], ttlMs: 30_000 },
{
actorScope: { userId: 'operator-b', tenantId: 'tenant-b' },
correlationId: 'correlation-cross-tenant',
},
),
).rejects.toThrow();
const crossTenantAudit = await handle.db
.select()
.from(connectorLeaseAuditLog)
.where(eq(connectorLeaseAuditLog.correlationId, 'correlation-cross-tenant'));
expect(crossTenantAudit).toHaveLength(1);
expect(crossTenantAudit[0]).toMatchObject({
tenantId: 'tenant-b',
logicalAgentId: 'untrusted',
bindingId: 'untrusted',
connectorId: 'untrusted',
reason: 'policy_denied',
});
vi.setSystemTime(new Date('2026-07-14T17:00:02.000Z'));
await expect(service.executeGrant(grant, 'runtime.send', undefined, adapter)).rejects.toThrow();
expect(adapter.execute).not.toHaveBeenCalled();
});
it('rejects submitted lifecycle scopes that differ from durable authority before policy or mutation', async (): Promise<void> => {
authorize.mockResolvedValue(true);
const heartbeatLease = await service.acquire(
{
logicalAgentId: 'mos',
bindingId: 'operator-chat-heartbeat-scope',
connectorId: 'pi-worker-a',
scopes: ['runtime.send'],
ttlMs: 60_000,
},
{ ...context, correlationId: 'correlation-heartbeat-scope-setup' },
);
const releaseLease = await service.acquire(
{
logicalAgentId: 'mos',
bindingId: 'operator-chat-release-scope',
connectorId: 'pi-worker-a',
scopes: ['runtime.send'],
ttlMs: 60_000,
},
{ ...context, correlationId: 'correlation-release-scope-setup' },
);
const forgedHeartbeat = { ...heartbeatLease, scopes: ['tool.execute'] };
const forgedRelease = { ...releaseLease, scopes: ['tool.execute'] };
authorize.mockImplementation(async (subject: ConnectorLeasePolicySubject) => {
return subject.requestedScopes.length === 1 && subject.requestedScopes[0] === 'tool.execute';
});
authorize.mockClear();
await expect(
service.heartbeat(forgedHeartbeat, 30_000, {
...context,
correlationId: 'correlation-heartbeat-scope-forgery',
}),
).rejects.toThrow('Connector authority policy denied');
await expect(
service.release(forgedRelease, {
...context,
correlationId: 'correlation-release-scope-forgery',
}),
).rejects.toThrow('Connector authority policy denied');
expect(authorize).not.toHaveBeenCalled();
const currentHeartbeat = await repository.findCurrent({
identity: heartbeatLease.identity,
bindingId: heartbeatLease.bindingId,
});
const currentRelease = await repository.findCurrent({
identity: releaseLease.identity,
bindingId: releaseLease.bindingId,
});
expect(currentHeartbeat).toMatchObject({
leaseId: heartbeatLease.leaseId,
scopes: ['runtime.send'],
heartbeatAt: heartbeatLease.heartbeatAt,
expiresAt: heartbeatLease.expiresAt,
});
expect(currentRelease).toMatchObject({
leaseId: releaseLease.leaseId,
scopes: ['runtime.send'],
});
expect(currentRelease?.releasedAt).toBeUndefined();
const forgedAudits = await handle.db
.select()
.from(connectorLeaseAuditLog)
.where(eq(connectorLeaseAuditLog.correlationId, 'correlation-heartbeat-scope-forgery'));
expect(forgedAudits).toHaveLength(1);
expect(forgedAudits[0]).toMatchObject({
bindingId: heartbeatLease.bindingId,
connectorId: heartbeatLease.connectorId,
event: 'reject',
outcome: 'denied',
reason: 'policy_denied',
});
const forgedReleaseAudits = await handle.db
.select()
.from(connectorLeaseAuditLog)
.where(eq(connectorLeaseAuditLog.correlationId, 'correlation-release-scope-forgery'));
expect(forgedReleaseAudits).toHaveLength(1);
expect(forgedReleaseAudits[0]).toMatchObject({
bindingId: releaseLease.bindingId,
connectorId: releaseLease.connectorId,
event: 'reject',
outcome: 'denied',
reason: 'policy_denied',
});
authorize.mockImplementation(async (subject: ConnectorLeasePolicySubject) => {
return subject.requestedScopes.length === 1 && subject.requestedScopes[0] === 'runtime.send';
});
await expect(
service.heartbeat(heartbeatLease, 30_000, {
...context,
correlationId: 'correlation-heartbeat-scope-canonical',
}),
).resolves.toMatchObject({ scopes: ['runtime.send'] });
await expect(
service.release(releaseLease, {
...context,
correlationId: 'correlation-release-scope-canonical',
}),
).resolves.toBeUndefined();
});
});
@@ -0,0 +1,76 @@
import { randomUUID } from 'node:crypto';
import { afterAll, beforeAll, describe, expect, it } from 'vitest';
import {
connectorLeaseAuditLog,
createDb,
eq,
logicalAgentConnectorLeases,
type DbHandle,
} from '@mosaicstack/db';
import { ConnectorLeaseCoordinator } from '@mosaicstack/agent';
import { ConnectorLeaseRepository } from './connector-lease.repository.js';
const hasPostgres = Boolean(process.env['DATABASE_URL']);
const tenantId = `lease-test-${randomUUID()}`;
const identity = { tenantId, logicalAgentId: 'mos' } as const;
describe.skipIf(!hasPostgres)('ConnectorLeaseRepository real PostgreSQL integration', (): void => {
let handle: DbHandle;
beforeAll((): void => {
handle = createDb(process.env['DATABASE_URL']);
});
afterAll(async (): Promise<void> => {
if (!handle) return;
await handle.db
.delete(connectorLeaseAuditLog)
.where(eq(connectorLeaseAuditLog.tenantId, tenantId));
await handle.db
.delete(logicalAgentConnectorLeases)
.where(eq(logicalAgentConnectorLeases.tenantId, tenantId));
await handle.close();
});
it('preserves the exclusive CAS fence across a real pool close/reopen', async (): Promise<void> => {
const command = {
identity,
bindingId: 'operator-chat',
scopes: ['runtime.send'],
ttlMs: 60_000,
} as const;
const firstCoordinator = new ConnectorLeaseCoordinator(new ConnectorLeaseRepository(handle.db));
const contenders = await Promise.allSettled([
firstCoordinator.acquire({
...command,
connectorId: 'connector-a',
correlationId: 'postgres-acquire-a',
}),
firstCoordinator.acquire({
...command,
connectorId: 'connector-b',
correlationId: 'postgres-acquire-b',
}),
]);
const acquired = contenders.find((result) => result.status === 'fulfilled');
if (!acquired || acquired.status !== 'fulfilled') throw new Error('no lease contender won');
expect(contenders.filter((result) => result.status === 'fulfilled')).toHaveLength(1);
await handle.close();
handle = createDb(process.env['DATABASE_URL']);
const reopened = new ConnectorLeaseCoordinator(new ConnectorLeaseRepository(handle.db));
const persisted = await reopened.current({ identity, bindingId: 'operator-chat' });
expect(persisted).toMatchObject({
leaseId: acquired.value.leaseId,
leaseEpoch: '1',
});
const takeover = await reopened.takeover({
...command,
connectorId: 'connector-c',
correlationId: 'postgres-takeover',
expectedEpoch: acquired.value.leaseEpoch,
});
expect(takeover).toMatchObject({ connectorId: 'connector-c', leaseEpoch: '2' });
});
});
@@ -0,0 +1,149 @@
import { mkdtemp, rm } from 'node:fs/promises';
import { tmpdir } from 'node:os';
import { join } from 'node:path';
import { afterEach, beforeEach, describe, expect, it } from 'vitest';
import {
connectorLeaseAuditLog,
createPgliteDb,
eq,
runPgliteMigrations,
type DbHandle,
} from '@mosaicstack/db';
import { ConnectorLeaseCoordinator, ConnectorLeaseError } from '@mosaicstack/agent';
import { ConnectorLeaseRepository } from './connector-lease.repository.js';
const identity = { tenantId: 'tenant-a', logicalAgentId: 'mos' } as const;
function acquireCommand(connectorId: string, correlationId: string) {
return {
identity,
bindingId: 'operator-chat',
connectorId,
scopes: ['runtime.send', 'tool.execute'],
ttlMs: 60_000,
correlationId,
};
}
describe('ConnectorLeaseRepository PostgreSQL semantics', (): void => {
let dataDir: string;
let handle: DbHandle;
let now: Date;
let coordinator: ConnectorLeaseCoordinator;
beforeEach(async (): Promise<void> => {
dataDir = await mkdtemp(join(tmpdir(), 'mosaic-connector-lease-'));
handle = createPgliteDb(dataDir);
await runPgliteMigrations(handle);
now = new Date('2026-07-14T17:00:00.000Z');
coordinator = new ConnectorLeaseCoordinator(new ConnectorLeaseRepository(handle.db), {
now: (): Date => now,
});
});
afterEach(async (): Promise<void> => {
await handle.close();
await rm(dataDir, { recursive: true, force: true });
});
it('allows only one concurrent contender to acquire a binding', async (): Promise<void> => {
const outcomes = await Promise.allSettled([
coordinator.acquire(acquireCommand('connector-a', 'correlation-a')),
coordinator.acquire(acquireCommand('connector-b', 'correlation-b')),
]);
expect(outcomes.filter((result) => result.status === 'fulfilled')).toHaveLength(1);
const rejected = outcomes.find((result) => result.status === 'rejected');
expect(rejected).toMatchObject({
reason: { code: 'lease_held' } satisfies Partial<ConnectorLeaseError>,
});
});
it('uses compare-and-swap takeover and increments the fencing epoch monotonically', async (): Promise<void> => {
const acquired = await coordinator.acquire(acquireCommand('connector-a', 'correlation-a'));
const results = await Promise.allSettled([
coordinator.takeover({
...acquireCommand('connector-b', 'correlation-b'),
expectedEpoch: acquired.leaseEpoch,
}),
coordinator.takeover({
...acquireCommand('connector-c', 'correlation-c'),
expectedEpoch: acquired.leaseEpoch,
}),
]);
const winner = results.find((result) => result.status === 'fulfilled');
expect(results.filter((result) => result.status === 'fulfilled')).toHaveLength(1);
expect(winner?.status === 'fulfilled' ? winner.value.leaseEpoch : null).toBe('2');
expect(results.find((result) => result.status === 'rejected')).toMatchObject({
reason: { code: 'cas_mismatch' } satisfies Partial<ConnectorLeaseError>,
});
});
it('heartbeats and releases only the current connector epoch', async (): Promise<void> => {
const acquired = await coordinator.acquire(acquireCommand('connector-a', 'correlation-a'));
now = new Date('2026-07-14T17:00:30.000Z');
const renewed = await coordinator.heartbeat({
lease: acquired,
ttlMs: 120_000,
correlationId: 'correlation-renew',
});
expect(renewed.expiresAt).toBe('2026-07-14T17:02:30.000Z');
await coordinator.release({ lease: renewed, correlationId: 'correlation-release' });
await expect(
coordinator.heartbeat({
lease: renewed,
ttlMs: 120_000,
correlationId: 'correlation-stale',
}),
).rejects.toMatchObject({ code: 'lease_released' } satisfies Partial<ConnectorLeaseError>);
});
it('survives close/reopen and requires CAS takeover to recover an expired lease', async (): Promise<void> => {
const acquired = await coordinator.acquire(acquireCommand('connector-a', 'correlation-a'));
await handle.close();
now = new Date('2026-07-14T17:02:00.000Z');
handle = createPgliteDb(dataDir);
await runPgliteMigrations(handle);
coordinator = new ConnectorLeaseCoordinator(new ConnectorLeaseRepository(handle.db), {
now: (): Date => now,
});
await expect(
coordinator.acquire(acquireCommand('connector-b', 'correlation-plain-acquire')),
).rejects.toMatchObject({ code: 'takeover_required' } satisfies Partial<ConnectorLeaseError>);
const recovered = await coordinator.takeover({
...acquireCommand('connector-b', 'correlation-takeover'),
expectedEpoch: acquired.leaseEpoch,
});
expect(recovered).toMatchObject({ connectorId: 'connector-b', leaseEpoch: '2' });
});
it('writes credential-safe lifecycle and rejection audit records', async (): Promise<void> => {
const acquired = await coordinator.acquire(acquireCommand('connector-a', 'correlation-a'));
await coordinator.heartbeat({
lease: acquired,
ttlMs: 60_000,
correlationId: 'correlation-renew',
});
await expect(
coordinator.acquire(acquireCommand('connector-b', 'correlation-reject')),
).rejects.toBeInstanceOf(ConnectorLeaseError);
const rows = await handle.db
.select()
.from(connectorLeaseAuditLog)
.where(eq(connectorLeaseAuditLog.tenantId, identity.tenantId));
expect(rows.map((row) => row.event)).toEqual(
expect.arrayContaining(['acquire', 'renew', 'reject']),
);
const serialized = JSON.stringify(rows, (_key: string, value: unknown): unknown =>
typeof value === 'bigint' ? value.toString(10) : value,
);
expect(serialized).not.toContain('tool.execute');
expect(serialized).not.toContain('runtime.send');
expect(serialized).not.toMatch(/token|secret|credential/i);
});
});
@@ -0,0 +1,354 @@
import { Inject, Injectable } from '@nestjs/common';
import {
and,
connectorLeaseAuditLog,
eq,
gt,
isNull,
logicalAgentConnectorLeases,
sql,
type Db,
} from '@mosaicstack/db';
import { ConnectorLeaseError } from '@mosaicstack/agent';
import type {
ConnectorLease,
ConnectorLeaseAcquireMutation,
ConnectorLeaseAuditEvent,
ConnectorLeaseHeartbeatMutation,
ConnectorLeaseRejectReason,
ConnectorLeaseReleaseMutation,
ConnectorLeaseStore,
ConnectorLeaseTakeoverMutation,
LogicalAgentBinding,
} from '@mosaicstack/types';
import { DB } from '../database/database.module.js';
interface SuccessfulMutation {
readonly ok: true;
readonly lease: ConnectorLease;
}
interface FailedMutation {
readonly ok: false;
readonly reason: ConnectorLeaseRejectReason;
}
type MutationResult = SuccessfulMutation | FailedMutation;
@Injectable()
export class ConnectorLeaseRepository implements ConnectorLeaseStore {
constructor(@Inject(DB) private readonly db: Db) {}
async acquire(input: ConnectorLeaseAcquireMutation): Promise<ConnectorLease> {
const result: MutationResult = await this.db.transaction(
async (tx): Promise<MutationResult> => {
const inserted = await tx
.insert(logicalAgentConnectorLeases)
.values({
leaseId: input.leaseId,
tenantId: input.identity.tenantId,
logicalAgentId: input.identity.logicalAgentId,
bindingId: input.bindingId,
connectorId: input.connectorId,
scopes: [...input.scopes],
leaseEpoch: 1n,
acquiredAt: new Date(input.now),
heartbeatAt: new Date(input.now),
expiresAt: new Date(input.expiresAt),
updatedAt: new Date(input.now),
})
.onConflictDoNothing()
.returning();
const row = inserted[0];
if (row) {
const lease = toLease(row);
await insertAudit(tx, lifecycleAudit(input, lease, 'acquire'));
return { ok: true, lease };
}
const current = await findRow(tx, input);
if (current && current.expiresAt <= new Date(input.now) && !current.releasedAt) {
await insertAudit(tx, lifecycleAudit(input, toLease(current), 'expiry'));
}
const reason: ConnectorLeaseRejectReason =
current && (current.releasedAt || current.expiresAt <= new Date(input.now))
? 'takeover_required'
: 'lease_held';
await insertAudit(tx, rejectionAudit(input, current ? toLease(current) : null, reason));
return { ok: false, reason };
},
);
return unwrap(result);
}
async takeover(input: ConnectorLeaseTakeoverMutation): Promise<ConnectorLease> {
const result: MutationResult = await this.db.transaction(
async (tx): Promise<MutationResult> => {
const current = await findRow(tx, input);
if (!current || current.leaseEpoch.toString(10) !== input.expectedEpoch) {
await insertAudit(
tx,
rejectionAudit(input, current ? toLease(current) : null, 'cas_mismatch'),
);
return { ok: false, reason: 'cas_mismatch' };
}
if (current.expiresAt <= new Date(input.now) && !current.releasedAt) {
await insertAudit(tx, lifecycleAudit(input, toLease(current), 'expiry'));
}
const updated = await tx
.update(logicalAgentConnectorLeases)
.set({
leaseId: input.leaseId,
connectorId: input.connectorId,
scopes: [...input.scopes],
leaseEpoch: sql`${logicalAgentConnectorLeases.leaseEpoch} + 1`,
acquiredAt: new Date(input.now),
heartbeatAt: new Date(input.now),
expiresAt: new Date(input.expiresAt),
releasedAt: null,
updatedAt: new Date(input.now),
})
.where(
and(
bindingPredicate(input),
eq(logicalAgentConnectorLeases.leaseId, current.leaseId),
eq(logicalAgentConnectorLeases.leaseEpoch, BigInt(input.expectedEpoch)),
),
)
.returning();
const row = updated[0];
if (!row) {
await insertAudit(tx, rejectionAudit(input, toLease(current), 'cas_mismatch'));
return { ok: false, reason: 'cas_mismatch' };
}
const lease = toLease(row);
await insertAudit(tx, lifecycleAudit(input, lease, 'takeover'));
return { ok: true, lease };
},
);
return unwrap(result);
}
async heartbeat(input: ConnectorLeaseHeartbeatMutation): Promise<ConnectorLease> {
const result: MutationResult = await this.db.transaction(
async (tx): Promise<MutationResult> => {
const updated = await tx
.update(logicalAgentConnectorLeases)
.set({
heartbeatAt: new Date(input.now),
expiresAt: new Date(input.expiresAt),
updatedAt: new Date(input.now),
})
.where(
and(
bindingPredicate(input.lease),
eq(logicalAgentConnectorLeases.leaseId, input.lease.leaseId),
eq(logicalAgentConnectorLeases.connectorId, input.lease.connectorId),
eq(logicalAgentConnectorLeases.leaseEpoch, BigInt(input.lease.leaseEpoch)),
isNull(logicalAgentConnectorLeases.releasedAt),
gt(logicalAgentConnectorLeases.expiresAt, new Date(input.now)),
),
)
.returning();
const row = updated[0];
if (row) {
const lease = toLease(row);
await insertAudit(tx, lifecycleAudit(input, lease, 'renew'));
return { ok: true, lease };
}
const current = await findRow(tx, input.lease);
const reason = classifyAuthorityFailure(
current ? toLease(current) : null,
input.lease,
input.now,
);
if (reason === 'lease_expired' && current) {
await insertAudit(tx, lifecycleAudit(input, toLease(current), 'expiry'));
}
await insertAudit(
tx,
rejectionAudit(
{ ...input.lease, correlationId: input.correlationId, now: input.now },
current ? toLease(current) : null,
reason,
),
);
return { ok: false, reason };
},
);
return unwrap(result);
}
async release(input: ConnectorLeaseReleaseMutation): Promise<void> {
const result: MutationResult = await this.db.transaction(
async (tx): Promise<MutationResult> => {
const updated = await tx
.update(logicalAgentConnectorLeases)
.set({
releasedAt: new Date(input.now),
expiresAt: new Date(input.now),
updatedAt: new Date(input.now),
})
.where(
and(
bindingPredicate(input.lease),
eq(logicalAgentConnectorLeases.leaseId, input.lease.leaseId),
eq(logicalAgentConnectorLeases.connectorId, input.lease.connectorId),
eq(logicalAgentConnectorLeases.leaseEpoch, BigInt(input.lease.leaseEpoch)),
isNull(logicalAgentConnectorLeases.releasedAt),
gt(logicalAgentConnectorLeases.expiresAt, new Date(input.now)),
),
)
.returning();
const row = updated[0];
if (row) {
const lease = toLease(row);
await insertAudit(tx, lifecycleAudit(input, lease, 'release'));
return { ok: true, lease };
}
const current = await findRow(tx, input.lease);
const reason = classifyAuthorityFailure(
current ? toLease(current) : null,
input.lease,
input.now,
);
if (reason === 'lease_expired' && current) {
await insertAudit(tx, lifecycleAudit(input, toLease(current), 'expiry'));
}
await insertAudit(
tx,
rejectionAudit(
{ ...input.lease, correlationId: input.correlationId, now: input.now },
current ? toLease(current) : null,
reason,
),
);
return { ok: false, reason };
},
);
unwrap(result);
}
async findCurrent(binding: LogicalAgentBinding): Promise<ConnectorLease | null> {
const row = await findRow(this.db, binding);
return row ? toLease(row) : null;
}
async recordAudit(event: ConnectorLeaseAuditEvent): Promise<void> {
await insertAudit(this.db, event);
}
}
function unwrap(result: MutationResult): ConnectorLease {
if (!result.ok) throw new ConnectorLeaseError(result.reason, safeErrorMessage(result.reason));
return result.lease;
}
function safeErrorMessage(reason: ConnectorLeaseRejectReason): string {
return `Connector lease mutation denied: ${reason}`;
}
function bindingPredicate(binding: LogicalAgentBinding) {
return and(
eq(logicalAgentConnectorLeases.tenantId, binding.identity.tenantId),
eq(logicalAgentConnectorLeases.logicalAgentId, binding.identity.logicalAgentId),
eq(logicalAgentConnectorLeases.bindingId, binding.bindingId),
);
}
async function findRow(
db: Pick<Db, 'select'>,
binding: LogicalAgentBinding,
): Promise<typeof logicalAgentConnectorLeases.$inferSelect | null> {
const rows = await db
.select()
.from(logicalAgentConnectorLeases)
.where(bindingPredicate(binding))
.limit(1);
return rows[0] ?? null;
}
function toLease(row: typeof logicalAgentConnectorLeases.$inferSelect): ConnectorLease {
return Object.freeze({
identity: Object.freeze({ tenantId: row.tenantId, logicalAgentId: row.logicalAgentId }),
bindingId: row.bindingId,
leaseId: row.leaseId,
connectorId: row.connectorId,
scopes: Object.freeze([...row.scopes]),
leaseEpoch: row.leaseEpoch.toString(10),
acquiredAt: row.acquiredAt.toISOString(),
heartbeatAt: row.heartbeatAt.toISOString(),
expiresAt: row.expiresAt.toISOString(),
...(row.releasedAt ? { releasedAt: row.releasedAt.toISOString() } : {}),
});
}
function classifyAuthorityFailure(
current: ConnectorLease | null,
claimed: ConnectorLease,
now: string,
): ConnectorLeaseRejectReason {
if (!current) return 'lease_missing';
if (current.releasedAt) return 'lease_released';
if (new Date(current.expiresAt) <= new Date(now)) return 'lease_expired';
if (current.leaseEpoch !== claimed.leaseEpoch) return 'stale_epoch';
return 'connector_mismatch';
}
function lifecycleAudit(
input: { readonly correlationId: string; readonly now: string },
lease: ConnectorLease,
event: Exclude<ConnectorLeaseAuditEvent['event'], 'reject'>,
): ConnectorLeaseAuditEvent {
return {
identity: lease.identity,
bindingId: lease.bindingId,
connectorId: lease.connectorId,
leaseId: lease.leaseId,
leaseEpoch: lease.leaseEpoch,
event,
outcome: 'succeeded',
correlationId: input.correlationId,
occurredAt: input.now,
};
}
function rejectionAudit(
input: {
readonly identity: ConnectorLease['identity'];
readonly bindingId: string;
readonly connectorId: string;
readonly correlationId: string;
readonly now: string;
},
current: ConnectorLease | null,
reason: ConnectorLeaseRejectReason,
): ConnectorLeaseAuditEvent {
return {
identity: input.identity,
bindingId: input.bindingId,
connectorId: input.connectorId,
event: 'reject',
outcome: 'denied',
correlationId: input.correlationId,
occurredAt: input.now,
...(current ? { leaseId: current.leaseId, leaseEpoch: current.leaseEpoch } : {}),
reason,
};
}
async function insertAudit(db: Pick<Db, 'insert'>, event: ConnectorLeaseAuditEvent): Promise<void> {
await db.insert(connectorLeaseAuditLog).values({
tenantId: event.identity.tenantId,
logicalAgentId: event.identity.logicalAgentId,
bindingId: event.bindingId,
connectorId: event.connectorId,
...(event.leaseId ? { leaseId: event.leaseId } : {}),
...(event.leaseEpoch ? { leaseEpoch: BigInt(event.leaseEpoch) } : {}),
event: event.event,
outcome: event.outcome,
...(event.reason ? { reason: event.reason } : {}),
correlationId: event.correlationId,
occurredAt: new Date(event.occurredAt),
});
}
@@ -0,0 +1,285 @@
import { ForbiddenException, Inject, Injectable } from '@nestjs/common';
import { ConnectorLeaseCoordinator, normalizeConnectorLease } from '@mosaicstack/agent';
import {
normalizeConnectorId,
normalizeConnectorScopes,
normalizeCorrelationId,
normalizeLogicalAgentIdentity,
normalizeLogicalBindingId,
type AcquireConnectorLeaseInput,
type ConnectorExecutionGrant,
type ConnectorLease,
type ConnectorLeaseAuditEvent,
type FencedConnectorAdapter,
} from '@mosaicstack/types';
import type { ActorTenantScope } from '../auth/session-scope.js';
import { ConnectorLeaseRepository } from './connector-lease.repository.js';
export const CONNECTOR_LEASE_POLICY = Symbol('CONNECTOR_LEASE_POLICY');
export type ConnectorLeasePolicyAction =
| 'lease.acquire'
| 'lease.takeover'
| 'lease.heartbeat'
| 'lease.release'
| 'lease.read'
| 'grant.issue';
export interface ConnectorLeaseRequestContext {
readonly actorScope: ActorTenantScope;
readonly correlationId: string;
}
export interface GatewayConnectorLeaseRequest {
readonly logicalAgentId: string;
readonly bindingId: string;
readonly connectorId: string;
readonly scopes: readonly string[];
readonly ttlMs: number;
}
export interface GatewayConnectorLeaseTakeoverRequest extends GatewayConnectorLeaseRequest {
readonly expectedEpoch: string;
}
export interface GatewayConnectorGrantRequest {
readonly lease: ConnectorLease;
readonly scopes: readonly string[];
readonly ttlMs: number;
}
export interface ConnectorLeasePolicySubject {
readonly action: ConnectorLeasePolicyAction;
readonly actorId: string;
readonly tenantId: string;
readonly logicalAgentId: string;
readonly bindingId: string;
readonly connectorId: string;
readonly requestedScopes: readonly string[];
readonly requestedTtlMs: number | null;
}
export interface ConnectorLeasePolicy {
authorize(subject: ConnectorLeasePolicySubject): Promise<boolean>;
}
/** M1 has no concrete cutover policy: unconfigured production use fails closed. */
@Injectable()
export class DenyConnectorLeasePolicy implements ConnectorLeasePolicy {
async authorize(_subject: ConnectorLeasePolicySubject): Promise<boolean> {
return false;
}
}
/** Gateway-owned policy surface for durable connector authority and fenced effects. */
@Injectable()
export class ConnectorLeaseService {
private readonly coordinator: ConnectorLeaseCoordinator;
constructor(
@Inject(ConnectorLeaseRepository) private readonly repository: ConnectorLeaseRepository,
@Inject(CONNECTOR_LEASE_POLICY) private readonly policy: ConnectorLeasePolicy,
) {
this.coordinator = new ConnectorLeaseCoordinator(repository);
}
async acquire(
request: GatewayConnectorLeaseRequest,
context: ConnectorLeaseRequestContext,
): Promise<ConnectorLease> {
const command = this.command(request, context);
await this.assertPolicy('lease.acquire', command, context, command.scopes, command.ttlMs);
return this.coordinator.acquire({ ...command, correlationId: this.correlation(context) });
}
async takeover(
request: GatewayConnectorLeaseTakeoverRequest,
context: ConnectorLeaseRequestContext,
): Promise<ConnectorLease> {
const command = this.command(request, context);
await this.assertPolicy('lease.takeover', command, context, command.scopes, command.ttlMs);
return this.coordinator.takeover({
...command,
expectedEpoch: request.expectedEpoch,
correlationId: this.correlation(context),
});
}
async heartbeat(
lease: ConnectorLease,
ttlMs: number,
context: ConnectorLeaseRequestContext,
): Promise<ConnectorLease> {
const normalizedLease = normalizeConnectorLease(lease);
const durableLease = await this.durableLifecycleLease(normalizedLease, context);
await this.assertPolicy('lease.heartbeat', durableLease, context, durableLease.scopes, ttlMs);
return this.coordinator.heartbeat({
lease: durableLease,
ttlMs,
correlationId: this.correlation(context),
});
}
async release(lease: ConnectorLease, context: ConnectorLeaseRequestContext): Promise<void> {
const normalizedLease = normalizeConnectorLease(lease);
const durableLease = await this.durableLifecycleLease(normalizedLease, context);
await this.assertPolicy('lease.release', durableLease, context, durableLease.scopes, null);
await this.coordinator.release({
lease: durableLease,
correlationId: this.correlation(context),
});
}
async current(
logicalAgentId: string,
bindingId: string,
context: ConnectorLeaseRequestContext,
): Promise<ConnectorLease | null> {
const binding = {
identity: normalizeLogicalAgentIdentity({
tenantId: context.actorScope.tenantId,
logicalAgentId,
}),
bindingId: normalizeLogicalBindingId(bindingId),
connectorId: 'gateway',
};
await this.assertPolicy('lease.read', binding, context, [], null);
return this.coordinator.current(binding);
}
async issueGrant(
request: GatewayConnectorGrantRequest,
context: ConnectorLeaseRequestContext,
): Promise<ConnectorExecutionGrant> {
const lease = normalizeConnectorLease(request.lease);
await this.assertTenant(lease, context);
const scopes = normalizeConnectorScopes(request.scopes);
await this.assertPolicy('grant.issue', lease, context, scopes, request.ttlMs);
return this.coordinator.issueGrant({
lease,
scopes,
ttlMs: request.ttlMs,
correlationId: this.correlation(context),
});
}
async executeGrant<TInput, TOutput>(
grant: ConnectorExecutionGrant,
requiredScope: string,
input: TInput,
adapter: FencedConnectorAdapter<TInput, TOutput>,
): Promise<TOutput> {
return this.coordinator.executeGrant(grant, requiredScope, input, adapter);
}
private command(
request: GatewayConnectorLeaseRequest,
context: ConnectorLeaseRequestContext,
): Omit<AcquireConnectorLeaseInput, 'correlationId'> {
return {
identity: normalizeLogicalAgentIdentity({
tenantId: context.actorScope.tenantId,
logicalAgentId: request.logicalAgentId,
}),
bindingId: normalizeLogicalBindingId(request.bindingId),
connectorId: normalizeConnectorId(request.connectorId),
scopes: normalizeConnectorScopes(request.scopes),
ttlMs: request.ttlMs,
};
}
private async assertTenant(
lease: Pick<ConnectorLease, 'identity' | 'bindingId' | 'connectorId'>,
context: ConnectorLeaseRequestContext,
): Promise<void> {
if (lease.identity.tenantId !== context.actorScope.tenantId) {
await this.recordPolicyDenial(
{
identity: {
tenantId: context.actorScope.tenantId,
logicalAgentId: 'untrusted',
},
bindingId: 'untrusted',
connectorId: 'untrusted',
},
context,
);
throw new ForbiddenException('Connector authority tenant scope denied');
}
}
private async durableLifecycleLease(
submittedLease: ConnectorLease,
context: ConnectorLeaseRequestContext,
): Promise<ConnectorLease> {
await this.assertTenant(submittedLease, context);
const durableLease = await this.coordinator.current(submittedLease);
if (!durableLease || !hasSameLifecycleAuthority(submittedLease, durableLease)) {
await this.recordPolicyDenial(durableLease ?? submittedLease, context);
throw new ForbiddenException('Connector authority policy denied');
}
return durableLease;
}
private async assertPolicy(
action: ConnectorLeasePolicyAction,
subject: Pick<ConnectorLease, 'identity' | 'bindingId' | 'connectorId'>,
context: ConnectorLeaseRequestContext,
requestedScopes: readonly string[],
requestedTtlMs: number | null,
): Promise<void> {
const allowed = await this.policy.authorize({
action,
actorId: context.actorScope.userId,
tenantId: subject.identity.tenantId,
logicalAgentId: subject.identity.logicalAgentId,
bindingId: subject.bindingId,
connectorId: subject.connectorId,
requestedScopes: Object.freeze([...requestedScopes]),
requestedTtlMs,
});
if (!allowed) {
await this.recordPolicyDenial(subject, context);
throw new ForbiddenException('Connector authority policy denied');
}
}
private async recordPolicyDenial(
subject: Pick<ConnectorLease, 'identity' | 'bindingId' | 'connectorId'>,
context: ConnectorLeaseRequestContext,
): Promise<void> {
const event: ConnectorLeaseAuditEvent = {
identity: subject.identity,
bindingId: subject.bindingId,
connectorId: subject.connectorId,
event: 'reject',
outcome: 'denied',
reason: 'policy_denied',
correlationId: this.correlation(context),
occurredAt: new Date().toISOString(),
};
await this.repository.recordAudit(event);
}
private correlation(context: ConnectorLeaseRequestContext): string {
return normalizeCorrelationId(context.correlationId);
}
}
function hasSameLifecycleAuthority(
submittedLease: ConnectorLease,
durableLease: ConnectorLease,
): boolean {
return (
submittedLease.identity.tenantId === durableLease.identity.tenantId &&
submittedLease.identity.logicalAgentId === durableLease.identity.logicalAgentId &&
submittedLease.bindingId === durableLease.bindingId &&
submittedLease.leaseId === durableLease.leaseId &&
submittedLease.connectorId === durableLease.connectorId &&
submittedLease.leaseEpoch === durableLease.leaseEpoch &&
submittedLease.scopes.length === durableLease.scopes.length &&
submittedLease.scopes.every((scope: string, index: number): boolean => {
return scope === durableLease.scopes[index];
})
);
}
@@ -1,3 +1,4 @@
import { Logger } from '@nestjs/common';
import { describe, it, expect, vi, beforeEach } from 'vitest';
import { CommandExecutorService } from './command-executor.service.js';
import type { SlashCommandPayload } from '@mosaicstack/types';
@@ -12,6 +13,7 @@ const mockRegistry = {
{ name: 'agent', aliases: ['a'], scope: 'agent', execution: 'socket', available: true },
{ name: 'prdy', aliases: [], scope: 'agent', execution: 'socket', available: true },
{ name: 'tools', aliases: [], scope: 'agent', execution: 'socket', available: true },
{ name: 'mcp', aliases: [], scope: 'agent', execution: 'socket', available: true },
],
skills: [],
})),
@@ -72,17 +74,24 @@ const mockChatGateway = {
broadcastSessionInfo: vi.fn(),
};
function buildService(): CommandExecutorService {
function buildService(
redis: typeof mockRedis | null = mockRedis,
mcpClient: {
reconnectServer: ReturnType<typeof vi.fn>;
getServerStatuses: ReturnType<typeof vi.fn>;
getToolDefinitions: ReturnType<typeof vi.fn>;
} | null = null,
): CommandExecutorService {
return new CommandExecutorService(
mockRegistry as never,
mockAgentService as never,
mockSystemOverride as never,
mockSessionGC as never,
mockRedis as never,
redis as never,
mockBrain as never,
null,
mockChatGateway as never,
null,
mcpClient as never,
);
}
@@ -131,6 +140,22 @@ describe('CommandExecutorService — P8-012 commands', () => {
expect(ttl).toBe(300);
});
it('/provider login remains available without Redis on the local tier', async () => {
const localService = buildService(null);
const payload: SlashCommandPayload = {
command: 'provider',
args: 'login anthropic',
conversationId,
};
const result = await localService.execute(payload, userScope);
expect(result.success).toBe(true);
expect(result.message).not.toContain('token=');
expect(result.data).toEqual({ provider: 'anthropic' });
expect(mockRedis.set).not.toHaveBeenCalled();
});
// /provider with no args — returns usage
it('/provider with no args returns usage message', async () => {
const payload: SlashCommandPayload = { command: 'provider', conversationId };
@@ -242,4 +267,124 @@ describe('CommandExecutorService — P8-012 commands', () => {
expect(result.command).toBe('tools');
expect(result.message).toContain('tools');
});
// Top-level catch sanitization (P3-4 re-review finding #1): a rejected
// Redis `set` inside /provider login is the only reachable path into the
// top-level catch in `execute()`. The raw exception must be logged
// server-side but never handed back to the socket client.
it('sanitizes the top-level command catch, logging the raw exception but never returning it to the client', async () => {
const distinctiveRawFailure = 'ECONNREFUSED distinctive-raw-redis-failure-token-9f31';
const rawError = new Error(distinctiveRawFailure);
const failingRedis = {
set: vi.fn().mockRejectedValue(rawError),
get: vi.fn(),
del: vi.fn(),
};
const failingService = buildService(failingRedis as unknown as typeof mockRedis);
const loggerErrorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const payload: SlashCommandPayload = {
command: 'provider',
args: 'login anthropic',
conversationId,
};
const result = await failingService.execute(payload, userScope);
expect(result.success).toBe(false);
expect(result.command).toBe('provider');
expect(result.message).toBe('Command failed due to an internal error.');
expect(result.message).not.toContain(distinctiveRawFailure);
expect(result.message).not.toContain('ECONNREFUSED');
// The real exception is still logged server-side, as the raw Error
// object itself (not stringified/interpolated into the log message).
expect(loggerErrorSpy).toHaveBeenCalled();
const loggedRawError = loggerErrorSpy.mock.calls.some((call) => call.includes(rawError));
expect(loggedRawError).toBe(true);
loggerErrorSpy.mockRestore();
});
// Inner catch sanitization (P3-5 operator ruling): every catch in
// command-executor.service.ts that returns a SlashCommandResultPayload
// must sanitize the client-facing message the same way the top-level
// catch does, while still logging the raw exception server-side.
it('/agent new sanitizes agent-creation failures, logging the raw exception but never returning it to the client', async () => {
const marker = new Error('distinctive-agent-create-failure-token-A17f');
mockBrain.agents.create.mockRejectedValueOnce(marker);
const loggerErrorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const payload: SlashCommandPayload = {
command: 'agent',
args: 'new my-new-agent',
conversationId,
};
const result = await service.execute(payload, userScope);
expect(result.success).toBe(false);
expect(result.command).toBe('agent');
expect(result.message).toBe('Failed to create agent due to an internal error.');
expect(result.message).not.toContain('distinctive-agent-create-failure-token-A17f');
expect(loggerErrorSpy).toHaveBeenCalled();
const loggedRawError = loggerErrorSpy.mock.calls.some((call) => call.includes(marker));
expect(loggedRawError).toBe(true);
loggerErrorSpy.mockRestore();
});
it('/agent <name> switch sanitizes agent-lookup failures, logging the raw exception but never returning it to the client', async () => {
const marker = new Error('distinctive-agent-switch-failure-token-B29c');
mockBrain.agents.findByName.mockRejectedValueOnce(marker);
const loggerErrorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const payload: SlashCommandPayload = {
command: 'agent',
args: 'some-other-agent',
conversationId,
};
const result = await service.execute(payload, userScope);
expect(result.success).toBe(false);
expect(result.command).toBe('agent');
expect(result.message).toBe('Failed to switch agent due to an internal error.');
expect(result.message).not.toContain('distinctive-agent-switch-failure-token-B29c');
expect(loggerErrorSpy).toHaveBeenCalled();
const loggedRawError = loggerErrorSpy.mock.calls.some((call) => call.includes(marker));
expect(loggedRawError).toBe(true);
loggerErrorSpy.mockRestore();
});
it('/mcp reconnect sanitizes MCP client failures, logging the raw exception but never returning it to the client', async () => {
const marker = new Error('distinctive-mcp-reconnect-failure-token-C33e');
const mockMcpClient = {
reconnectServer: vi.fn().mockRejectedValue(marker),
getServerStatuses: vi.fn(() => []),
getToolDefinitions: vi.fn(() => []),
};
const mcpService = buildService(mockRedis, mockMcpClient);
const loggerErrorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const payload: SlashCommandPayload = {
command: 'mcp',
args: 'reconnect my-server',
conversationId,
};
const result = await mcpService.execute(payload, userScope);
expect(result.success).toBe(false);
expect(result.command).toBe('mcp');
expect(result.message).toBe(
'Failed to reconnect MCP server "my-server" due to an internal error.',
);
expect(result.message).not.toContain('distinctive-mcp-reconnect-failure-token-C33e');
expect(loggerErrorSpy).toHaveBeenCalled();
const loggedRawError = loggerErrorSpy.mock.calls.some((call) => call.includes(marker));
expect(loggedRawError).toBe(true);
loggerErrorSpy.mockRestore();
});
});
@@ -23,7 +23,10 @@ export class CommandExecutorService {
@Inject(AgentService) private readonly agentService: AgentService,
@Inject(SystemOverrideService) private readonly systemOverride: SystemOverrideService,
@Inject(SessionGCService) private readonly sessionGC: SessionGCService,
@Inject(COMMANDS_REDIS) private readonly redis: QueueHandle['redis'],
// On Local tier COMMANDS_REDIS is null — provider login caching is skipped.
@Optional()
@Inject(COMMANDS_REDIS)
private readonly redis: QueueHandle['redis'] | null,
@Inject(BRAIN) private readonly brain: Brain,
@Optional()
@Inject(forwardRef(() => ReloadService))
@@ -156,8 +159,13 @@ export class CommandExecutorService {
};
}
} catch (err) {
this.logger.error(`Command /${command} failed: ${err}`);
return { command, conversationId, success: false, message: String(err) };
this.logger.error(`Command /${command} failed`, err);
return {
command,
conversationId,
success: false,
message: 'Command failed due to an internal error.',
};
}
}
@@ -333,11 +341,11 @@ export class CommandExecutorService {
data: { agentId: newAgent.id, agentName: newAgent.name },
};
} catch (err) {
this.logger.error(`Failed to create agent: ${err}`);
this.logger.error(`Failed to create agent "${namePart}" for user ${userId}`, err);
return {
command: 'agent',
success: false,
message: `Failed to create agent: ${String(err)}`,
message: 'Failed to create agent due to an internal error.',
conversationId,
};
}
@@ -388,11 +396,11 @@ export class CommandExecutorService {
data: { agentId: agentConfig.id, agentName: agentConfig.name, model: agentConfig.model },
};
} catch (err) {
this.logger.error(`Failed to switch agent "${agentName}": ${err}`);
this.logger.error(`Failed to switch agent "${agentName}"`, err);
return {
command: 'agent',
success: false,
message: `Failed to switch agent: ${String(err)}`,
message: 'Failed to switch agent due to an internal error.',
conversationId,
};
}
@@ -443,14 +451,16 @@ export class CommandExecutorService {
byte.toString(16).padStart(2, '0'),
).join('');
const key = `mosaic:auth:poll:${tokenHash}`;
// Persist only a short-lived token digest. The raw token is delivered only by
// the authenticated dashboard flow, never in chat output or command metadata.
await this.redis.set(
key,
JSON.stringify({ status: 'pending', provider: providerName, userId }),
'EX',
300,
);
if (this.redis) {
// Persist only a short-lived token digest. The raw token is delivered only by
// the authenticated dashboard flow, never in chat output or command metadata.
await this.redis.set(
key,
JSON.stringify({ status: 'pending', provider: providerName, userId }),
'EX',
300,
);
}
return {
command: 'provider',
success: true,
@@ -603,11 +613,12 @@ export class CommandExecutorService {
message: `MCP server "${serverName}" reconnected successfully.`,
};
} catch (err) {
this.logger.error(`Failed to reconnect MCP server "${serverName}"`, err);
return {
command: 'mcp',
conversationId,
success: false,
message: `Failed to reconnect MCP server "${serverName}": ${err instanceof Error ? err.message : String(err)}`,
message: `Failed to reconnect MCP server "${serverName}" due to an internal error.`,
};
}
}
+15 -5
View File
@@ -1,5 +1,7 @@
import { forwardRef, Inject, Module, type OnApplicationShutdown } from '@nestjs/common';
import { forwardRef, Inject, Module, Optional, type OnApplicationShutdown } from '@nestjs/common';
import { createQueue, type QueueHandle } from '@mosaicstack/queue';
import type { MosaicConfig } from '@mosaicstack/config';
import { MOSAIC_CONFIG } from '../config/config.module.js';
import { ChatModule } from '../chat/chat.module.js';
import { GCModule } from '../gc/gc.module.js';
import { ReloadModule } from '../reload/reload.module.js';
@@ -16,13 +18,17 @@ const COMMANDS_QUEUE_HANDLE = 'COMMANDS_QUEUE_HANDLE';
providers: [
{
provide: COMMANDS_QUEUE_HANDLE,
useFactory: (): QueueHandle => {
useFactory: (config: MosaicConfig | null): QueueHandle | null => {
// On Local tier there is no Redis — skip the ioredis connection.
// CommandExecutorService falls back to no-cache for /provider login on local.
if (config?.queue?.type === 'local') return null;
return createQueue();
},
inject: [MOSAIC_CONFIG],
},
{
provide: COMMANDS_REDIS,
useFactory: (handle: QueueHandle) => handle.redis,
useFactory: (handle: QueueHandle | null) => handle?.redis ?? null,
inject: [COMMANDS_QUEUE_HANDLE],
},
CommandRegistryService,
@@ -38,9 +44,13 @@ const COMMANDS_QUEUE_HANDLE = 'COMMANDS_QUEUE_HANDLE';
],
})
export class CommandsModule implements OnApplicationShutdown {
constructor(@Inject(COMMANDS_QUEUE_HANDLE) private readonly handle: QueueHandle) {}
constructor(
@Optional()
@Inject(COMMANDS_QUEUE_HANDLE)
private readonly handle: QueueHandle | null,
) {}
async onApplicationShutdown(): Promise<void> {
await this.handle.close().catch(() => {});
await this.handle?.close().catch(() => {});
}
}
@@ -5,6 +5,8 @@ import { EnrollmentController } from './enrollment.controller.js';
import { EnrollmentService } from './enrollment.service.js';
import { FederationController } from './federation.controller.js';
import { CapabilitiesController } from './server/verbs/capabilities.controller.js';
import { GetController } from './server/verbs/get.controller.js';
import { FederationGetQueryService } from './server/verbs/get-query.service.js';
import { GrantsService } from './grants.service.js';
import { FederationClientService, QuerySourceService } from './client/index.js';
import { FederationAuthGuard, FederationScopeService } from './server/index.js';
@@ -12,7 +14,13 @@ import { ListController } from './server/verbs/list.controller.js';
import { FederationListQueryService } from './server/verbs/list-query.service.js';
@Module({
controllers: [EnrollmentController, FederationController, CapabilitiesController, ListController],
controllers: [
EnrollmentController,
FederationController,
CapabilitiesController,
ListController,
GetController,
],
providers: [
AdminGuard,
CaService,
@@ -23,6 +31,7 @@ import { FederationListQueryService } from './server/verbs/list-query.service.js
FederationAuthGuard,
FederationScopeService,
FederationListQueryService,
FederationGetQueryService,
],
exports: [
CaService,
@@ -33,6 +42,7 @@ import { FederationListQueryService } from './server/verbs/list-query.service.js
FederationAuthGuard,
FederationScopeService,
FederationListQueryService,
FederationGetQueryService,
],
})
export class FederationModule {}
@@ -0,0 +1,348 @@
import { afterAll, beforeAll, describe, expect, it, vi } from 'vitest';
import {
createPgliteDb,
missionTasks,
missions,
projects,
runPgliteMigrations,
teams,
users,
type Db,
type DbHandle,
} from '@mosaicstack/db';
import type { FederationScopeQueryFilter } from '../../scope.service.js';
import { FederationGetQueryService } from '../get-query.service.js';
const CREDENTIAL_FILTER: FederationScopeQueryFilter = {
resource: 'credentials',
subjectUserId: 'user-1',
includePersonal: true,
teamIds: [],
limit: 1,
maxRowsPerQuery: 25,
};
const SUBJECT_USER_ID = 'fed-m3-06-subject';
const OTHER_USER_ID = 'fed-m3-06-other';
const TEAM_ID = '06000000-0000-4000-8000-000000000001';
const UNAUTHORIZED_TEAM_ID = '06000000-0000-4000-8000-000000000002';
const PERSONAL_PROJECT_ID = '06000000-0000-4000-8000-000000000101';
const TEAM_PROJECT_ID = '06000000-0000-4000-8000-000000000102';
const UNAUTHORIZED_PROJECT_ID = '06000000-0000-4000-8000-000000000103';
const PERSONAL_MISSION_ID = '06000000-0000-4000-8000-000000000201';
const TEAM_MISSION_ID = '06000000-0000-4000-8000-000000000202';
const UNAUTHORIZED_MISSION_ID = '06000000-0000-4000-8000-000000000203';
const SUBJECT_TEAM_NOTE_ID = '06000000-0000-4000-8000-000000000301';
const OTHER_TEAM_NOTE_ID = '06000000-0000-4000-8000-000000000302';
const SUBJECT_PERSONAL_NOTE_ID = '06000000-0000-4000-8000-000000000303';
const SUBJECT_UNAUTHORIZED_NOTE_ID = '06000000-0000-4000-8000-000000000304';
let dbHandle: DbHandle | undefined;
function makeService() {
return new FederationGetQueryService({} as Db);
}
function makeDbService() {
if (!dbHandle) {
throw new Error('test DB not initialized');
}
return new FederationGetQueryService(dbHandle.db);
}
async function seedNotesFixture() {
if (!dbHandle) {
throw new Error('test DB not initialized');
}
await dbHandle.db.insert(users).values([
{
id: SUBJECT_USER_ID,
name: 'Federation Subject',
email: `${SUBJECT_USER_ID}@example.test`,
emailVerified: false,
},
{
id: OTHER_USER_ID,
name: 'Federation Other',
email: `${OTHER_USER_ID}@example.test`,
emailVerified: false,
},
]);
await dbHandle.db.insert(teams).values([
{
id: TEAM_ID,
name: 'FED-M3-06 Team',
slug: 'fed-m3-06-team',
ownerId: SUBJECT_USER_ID,
managerId: SUBJECT_USER_ID,
},
{
id: UNAUTHORIZED_TEAM_ID,
name: 'FED-M3-06 Unauthorized Team',
slug: 'fed-m3-06-unauthorized-team',
ownerId: OTHER_USER_ID,
managerId: OTHER_USER_ID,
},
]);
await dbHandle.db.insert(projects).values([
{
id: PERSONAL_PROJECT_ID,
name: 'FED-M3-06 Personal Project',
ownerId: SUBJECT_USER_ID,
ownerType: 'user',
},
{
id: TEAM_PROJECT_ID,
name: 'FED-M3-06 Team Project',
teamId: TEAM_ID,
ownerType: 'team',
},
{
id: UNAUTHORIZED_PROJECT_ID,
name: 'FED-M3-06 Unauthorized Project',
teamId: UNAUTHORIZED_TEAM_ID,
ownerType: 'team',
},
]);
await dbHandle.db.insert(missions).values([
{
id: PERSONAL_MISSION_ID,
name: 'FED-M3-06 Personal Mission',
projectId: PERSONAL_PROJECT_ID,
userId: SUBJECT_USER_ID,
},
{
id: TEAM_MISSION_ID,
name: 'FED-M3-06 Team Mission',
projectId: TEAM_PROJECT_ID,
userId: SUBJECT_USER_ID,
},
{
id: UNAUTHORIZED_MISSION_ID,
name: 'FED-M3-06 Unauthorized Mission',
projectId: UNAUTHORIZED_PROJECT_ID,
userId: SUBJECT_USER_ID,
},
]);
await dbHandle.db.insert(missionTasks).values([
{
id: SUBJECT_TEAM_NOTE_ID,
missionId: TEAM_MISSION_ID,
userId: SUBJECT_USER_ID,
notes: 'subject note on team mission',
createdAt: new Date('2026-06-24T03:00:00.000Z'),
updatedAt: new Date('2026-06-24T03:00:00.000Z'),
},
{
id: OTHER_TEAM_NOTE_ID,
missionId: TEAM_MISSION_ID,
userId: OTHER_USER_ID,
notes: 'other user note on team mission',
createdAt: new Date('2026-06-24T02:00:00.000Z'),
updatedAt: new Date('2026-06-24T02:00:00.000Z'),
},
{
id: SUBJECT_PERSONAL_NOTE_ID,
missionId: PERSONAL_MISSION_ID,
userId: SUBJECT_USER_ID,
notes: 'subject note on personal mission',
createdAt: new Date('2026-06-24T01:00:00.000Z'),
updatedAt: new Date('2026-06-24T01:00:00.000Z'),
},
{
id: SUBJECT_UNAUTHORIZED_NOTE_ID,
missionId: UNAUTHORIZED_MISSION_ID,
userId: SUBJECT_USER_ID,
notes: 'subject note outside grant-visible missions',
createdAt: new Date('2026-06-24T04:00:00.000Z'),
updatedAt: new Date('2026-06-24T04:00:00.000Z'),
},
]);
}
describe('FederationGetQueryService', () => {
beforeAll(async () => {
dbHandle = createPgliteDb(`memory://fed-m3-06-get-${Date.now()}`);
await runPgliteMigrations(dbHandle);
await seedNotesFixture();
});
afterAll(async () => {
await dbHandle?.close();
dbHandle = undefined;
});
it('denies sensitive resources in native RBAC for M3 get reads', async () => {
const service = makeService();
await expect(
service.evaluateReadAccess({
grantId: 'grant-1',
peerId: 'peer-1',
subjectUserId: 'user-1',
resource: 'credentials',
}),
).resolves.toMatchObject({
allowed: false,
reason: 'credentials federation get access is not implemented in M3',
});
});
it('allows personal memory reads without requiring team lookup', async () => {
const service = makeService();
await expect(
service.evaluateReadAccess({
grantId: 'grant-1',
peerId: 'peer-1',
subjectUserId: 'user-1',
resource: 'memory',
}),
).resolves.toEqual({
allowed: true,
access: { includePersonal: true, teamIds: [] },
});
});
it('uses subject team membership as the native RBAC upper bound for task and note reads', async () => {
const service = makeService();
const listSubjectTeamIds = vi.fn().mockResolvedValue(['team-1', 'team-2']);
(
service as unknown as {
listSubjectTeamIds: (subjectUserId: string) => Promise<string[]>;
}
).listSubjectTeamIds = listSubjectTeamIds;
await expect(
service.evaluateReadAccess({
grantId: 'grant-1',
peerId: 'peer-1',
subjectUserId: 'user-1',
resource: 'tasks',
}),
).resolves.toEqual({
allowed: true,
access: { includePersonal: true, teamIds: ['team-1', 'team-2'] },
});
expect(listSubjectTeamIds).toHaveBeenCalledWith('user-1');
});
it('does not query storage for sensitive get resources even if scope allowed them', async () => {
const service = makeService();
await expect(service.get({ filter: CREDENTIAL_FILTER, id: 'cred-1' })).resolves.toEqual({
status: 'denied',
reason: 'credentials federation get is not implemented',
});
});
it('fails closed for unsupported resources instead of returning undefined', async () => {
const service = makeService();
await expect(
service.get({
filter: {
...CREDENTIAL_FILTER,
resource: 'unknown-resource' as FederationScopeQueryFilter['resource'],
},
id: 'row-1',
}),
).resolves.toEqual({
status: 'denied',
reason: 'Unsupported federation get resource: unknown-resource',
});
});
it('does not leak another user mission task note through team-scoped get reads', async () => {
const service = makeDbService();
await expect(
service.get({
filter: {
resource: 'notes',
subjectUserId: SUBJECT_USER_ID,
includePersonal: false,
teamIds: [TEAM_ID],
limit: 1,
maxRowsPerQuery: 10,
},
id: OTHER_TEAM_NOTE_ID,
}),
).resolves.toEqual({
status: 'denied',
reason: 'Note is outside the federated scope',
});
});
it('does not return subject notes from missions outside the grant-visible project set', async () => {
const service = makeDbService();
await expect(
service.get({
filter: {
resource: 'notes',
subjectUserId: SUBJECT_USER_ID,
includePersonal: true,
teamIds: [TEAM_ID],
limit: 1,
maxRowsPerQuery: 10,
},
id: SUBJECT_UNAUTHORIZED_NOTE_ID,
}),
).resolves.toEqual({
status: 'denied',
reason: 'Note is outside the federated scope',
});
});
it('returns a subject note only when subject ownership and authorized mission intersect', async () => {
const service = makeDbService();
await expect(
service.get({
filter: {
resource: 'notes',
subjectUserId: SUBJECT_USER_ID,
includePersonal: false,
teamIds: [TEAM_ID],
limit: 1,
maxRowsPerQuery: 10,
},
id: SUBJECT_TEAM_NOTE_ID,
}),
).resolves.toMatchObject({
status: 'found',
item: {
id: SUBJECT_TEAM_NOTE_ID,
missionId: TEAM_MISSION_ID,
content: 'subject note on team mission',
},
});
});
it('does not return subject personal notes when includePersonal is false', async () => {
const service = makeDbService();
await expect(
service.get({
filter: {
resource: 'notes',
subjectUserId: SUBJECT_USER_ID,
includePersonal: false,
teamIds: [TEAM_ID],
limit: 1,
maxRowsPerQuery: 10,
},
id: SUBJECT_PERSONAL_NOTE_ID,
}),
).resolves.toEqual({
status: 'denied',
reason: 'Note is outside the federated scope',
});
});
});
@@ -0,0 +1,207 @@
import 'reflect-metadata';
import { RequestMethod } from '@nestjs/common';
import type { FastifyRequest } from 'fastify';
import { beforeEach, describe, expect, it, vi } from 'vitest';
import { FederationAuthGuard } from '../../federation-auth.guard.js';
import type {
FederationScopeEvaluationResult,
FederationScopeQueryFilter,
} from '../../scope.service.js';
import { GetController } from '../get.controller.js';
import type { FederationGetQueryResult } from '../get-query.service.js';
const FEDERATION_CONTEXT = {
grantId: 'grant-1',
peerId: 'peer-1',
subjectUserId: 'user-1',
scope: { resources: ['tasks'], max_rows_per_query: 25 },
};
const TASK_FILTER: FederationScopeQueryFilter = {
resource: 'tasks',
subjectUserId: 'user-1',
includePersonal: true,
teamIds: ['team-1'],
limit: 1,
maxRowsPerQuery: 25,
};
function makeRequest(): FastifyRequest {
return { federationContext: FEDERATION_CONTEXT } as unknown as FastifyRequest;
}
function allowedScope(
filter: FederationScopeQueryFilter = TASK_FILTER,
): FederationScopeEvaluationResult {
return { allowed: true, filter };
}
function makeController(opts?: {
scopeResult?: FederationScopeEvaluationResult;
queryResult?: FederationGetQueryResult;
}) {
const scope = {
evaluateAccess: vi.fn().mockResolvedValue(opts?.scopeResult ?? allowedScope()),
};
const query = {
evaluateReadAccess: vi.fn(),
get: vi.fn().mockResolvedValue(
opts?.queryResult ?? {
status: 'found',
item: {
id: 'task-1',
title: 'Federated task',
createdAt: new Date('2026-06-24T00:00:00.000Z'),
},
},
),
};
return {
controller: new GetController(scope as never, query as never),
scope,
query,
};
}
describe('GetController', () => {
beforeEach(() => {
vi.clearAllMocks();
});
it('declares POST /api/federation/v1/get/:resource/:id protected only by FederationAuthGuard', () => {
expect(Reflect.getMetadata('path', GetController)).toBe('api/federation/v1/get');
expect(Reflect.getMetadata('path', GetController.prototype.get)).toBe(':resource/:id');
expect(Reflect.getMetadata('method', GetController.prototype.get)).toBe(RequestMethod.POST);
expect(Reflect.getMetadata('__guards__', GetController)).toEqual([FederationAuthGuard]);
});
it('runs AuthGuard context through ScopeService and returns one local-source tagged row', async () => {
const { controller, scope, query } = makeController();
const response = await controller.get('tasks', 'task-1', makeRequest());
expect(scope.evaluateAccess).toHaveBeenCalledWith({
context: FEDERATION_CONTEXT,
resource: 'tasks',
requestedLimit: 1,
nativeRbac: query,
});
expect(query.get).toHaveBeenCalledWith({ filter: TASK_FILTER, id: 'task-1' });
expect(response).toEqual({
item: {
id: 'task-1',
title: 'Federated task',
createdAt: new Date('2026-06-24T00:00:00.000Z'),
_source: 'local',
},
});
});
it('returns a federation error envelope when auth guard context is missing', async () => {
const { controller, scope, query } = makeController();
await expect(
controller.get('tasks', 'task-1', {} as unknown as FastifyRequest),
).rejects.toMatchObject({
response: {
error: {
code: 'unauthorized',
message: 'Federation context missing',
},
},
status: 401,
});
expect(scope.evaluateAccess).not.toHaveBeenCalled();
expect(query.get).not.toHaveBeenCalled();
});
it('returns a federation error envelope when scope evaluation denies access', async () => {
const { controller, query } = makeController({
scopeResult: {
allowed: false,
deny: {
code: 'resource_excluded',
stage: 'resource_exclusion',
statusCode: 403,
message: 'Requested federation resource is explicitly excluded by grant scope',
grantId: 'grant-1',
peerId: 'peer-1',
subjectUserId: 'user-1',
resource: 'credentials',
},
},
});
await expect(controller.get('credentials', 'cred-1', makeRequest())).rejects.toMatchObject({
response: {
error: {
code: 'scope_violation',
message: 'Requested federation resource is explicitly excluded by grant scope',
},
},
status: 403,
});
expect(query.get).not.toHaveBeenCalled();
});
it('returns 404 when the scoped query layer cannot find the resource id', async () => {
const { controller } = makeController({ queryResult: { status: 'not_found' } });
await expect(controller.get('tasks', 'missing-task', makeRequest())).rejects.toMatchObject({
response: { error: { code: 'not_found' } },
status: 404,
});
});
it('returns 403 when the resource exists outside the RBAC/scope intersection', async () => {
const { controller } = makeController({
queryResult: { status: 'denied', reason: 'Task is outside the federated scope' },
});
await expect(controller.get('tasks', 'task-2', makeRequest())).rejects.toMatchObject({
response: {
error: {
code: 'scope_violation',
message: 'Task is outside the federated scope',
},
},
status: 403,
});
});
it('fails closed when the query layer denies an unsupported resource', async () => {
const unsupportedFilter: FederationScopeQueryFilter = {
...TASK_FILTER,
resource: 'unknown-resource' as FederationScopeQueryFilter['resource'],
};
const { controller } = makeController({
scopeResult: allowedScope(unsupportedFilter),
queryResult: {
status: 'denied',
reason: 'Unsupported federation get resource: unknown-resource',
},
});
await expect(controller.get('unknown-resource', 'row-1', makeRequest())).rejects.toMatchObject({
response: {
error: {
code: 'scope_violation',
message: 'Unsupported federation get resource: unknown-resource',
},
},
status: 403,
});
});
it('rejects empty ids before evaluating scope', async () => {
const { controller, scope, query } = makeController();
await expect(controller.get('tasks', ' ', makeRequest())).rejects.toMatchObject({
response: { error: { code: 'invalid_request' } },
status: 400,
});
expect(scope.evaluateAccess).not.toHaveBeenCalled();
expect(query.get).not.toHaveBeenCalled();
});
});
@@ -0,0 +1,311 @@
/**
* Federation get query layer (FED-M3-06).
*
* Read-only DB adapter used by GetController after FederationAuthGuard and
* FederationScopeService have established the subject user, allowed resource,
* native-RBAC intersection, and row cap. Audit writes are intentionally
* deferred to M4.
*/
import { Inject, Injectable } from '@nestjs/common';
import {
and,
eq,
inArray,
insights,
or,
missionTasks,
missions,
preferences,
projects,
tasks,
teamMembers,
type Db,
} from '@mosaicstack/db';
import { DB } from '../../../database/database.module.js';
import type {
FederationNativeRbacEvaluator,
FederationNativeRbacRequest,
FederationNativeRbacResult,
FederationScopeQueryFilter,
} from '../scope.service.js';
export interface FederationGetQueryRequest {
readonly filter: FederationScopeQueryFilter;
readonly id: string;
}
export interface FederationGetQueryFoundResult<T extends object = Record<string, unknown>> {
readonly status: 'found';
readonly item: T;
}
export interface FederationGetQueryNotFoundResult {
readonly status: 'not_found';
}
export interface FederationGetQueryDeniedResult {
readonly status: 'denied';
readonly reason: string;
}
export type FederationGetQueryResult<T extends object = Record<string, unknown>> =
| FederationGetQueryFoundResult<T>
| FederationGetQueryNotFoundResult
| FederationGetQueryDeniedResult;
type RowObject = Record<string, unknown>;
function firstRow<T>(rows: T[]): T | undefined {
return rows[0];
}
function rowBelongsToAccessibleProjectOrMission(
row: { projectId?: string | null; missionId?: string | null },
projectIds: readonly string[],
missionIds: readonly string[],
): boolean {
return (
(typeof row.projectId === 'string' && projectIds.includes(row.projectId)) ||
(typeof row.missionId === 'string' && missionIds.includes(row.missionId))
);
}
@Injectable()
export class FederationGetQueryService implements FederationNativeRbacEvaluator {
constructor(@Inject(DB) private readonly db: Db) {}
async evaluateReadAccess(
request: FederationNativeRbacRequest,
): Promise<FederationNativeRbacResult> {
if (request.resource === 'credentials' || request.resource === 'api_keys') {
return {
allowed: false,
reason: `${request.resource} federation get access is not implemented in M3`,
details: { resource: request.resource },
};
}
if (request.resource === 'memory') {
return { allowed: true, access: { includePersonal: true, teamIds: [] } };
}
const teamIds = await this.listSubjectTeamIds(request.subjectUserId);
return { allowed: true, access: { includePersonal: true, teamIds } };
}
async get<T extends RowObject = RowObject>(
request: FederationGetQueryRequest,
): Promise<FederationGetQueryResult<T>> {
return this.getByResource(request.filter, request.id) as Promise<FederationGetQueryResult<T>>;
}
private async getByResource(
filter: FederationScopeQueryFilter,
id: string,
): Promise<FederationGetQueryResult> {
switch (filter.resource) {
case 'tasks':
return this.getTask(filter, id);
case 'notes':
return this.getNote(filter, id);
case 'memory':
return this.getMemory(filter, id);
case 'credentials':
case 'api_keys':
return { status: 'denied', reason: `${filter.resource} federation get is not implemented` };
default:
return {
status: 'denied',
reason: `Unsupported federation get resource: ${String(filter.resource)}`,
};
}
}
private async listSubjectTeamIds(subjectUserId: string): Promise<string[]> {
const rows = await this.db
.select({ teamId: teamMembers.teamId })
.from(teamMembers)
.where(eq(teamMembers.userId, subjectUserId));
return rows.map((row) => row.teamId);
}
private async listAccessibleProjectIds(filter: FederationScopeQueryFilter): Promise<string[]> {
const clauses = [];
if (filter.includePersonal) {
clauses.push(and(eq(projects.ownerType, 'user'), eq(projects.ownerId, filter.subjectUserId)));
}
if (filter.teamIds.length > 0) {
// Project team ownership follows TeamsService.canAccessProject: team-owned
// rows are authorized through projects.teamId, while ownerId remains the
// user who created/bootstrapped the project.
clauses.push(
and(eq(projects.ownerType, 'team'), inArray(projects.teamId, [...filter.teamIds])),
);
}
if (clauses.length === 0) {
return [];
}
const rows = await this.db
.select({ id: projects.id })
.from(projects)
.where(clauses.length === 1 ? clauses[0] : or(...clauses));
return rows.map((row) => row.id);
}
private async listMissionIds(projectIds: readonly string[]): Promise<string[]> {
if (projectIds.length === 0) {
return [];
}
const rows = await this.db
.select({ id: missions.id })
.from(missions)
.where(inArray(missions.projectId, [...projectIds]));
return rows.map((row) => row.id);
}
private async getTask(
filter: FederationScopeQueryFilter,
id: string,
): Promise<FederationGetQueryResult> {
const row = firstRow(
await this.db
.select({
id: tasks.id,
title: tasks.title,
description: tasks.description,
status: tasks.status,
priority: tasks.priority,
projectId: tasks.projectId,
missionId: tasks.missionId,
assignee: tasks.assignee,
tags: tasks.tags,
dueDate: tasks.dueDate,
metadata: tasks.metadata,
createdAt: tasks.createdAt,
updatedAt: tasks.updatedAt,
})
.from(tasks)
.where(eq(tasks.id, id))
.limit(1),
);
if (!row) {
return { status: 'not_found' };
}
const projectIds = await this.listAccessibleProjectIds(filter);
const missionIds = await this.listMissionIds(projectIds);
if (!rowBelongsToAccessibleProjectOrMission(row, projectIds, missionIds)) {
return { status: 'denied', reason: 'Task is outside the federated scope' };
}
return { status: 'found', item: row as RowObject };
}
private async getNote(
filter: FederationScopeQueryFilter,
id: string,
): Promise<FederationGetQueryResult> {
const row = firstRow(
await this.db
.select({
id: missionTasks.id,
missionId: missionTasks.missionId,
taskId: missionTasks.taskId,
userId: missionTasks.userId,
status: missionTasks.status,
content: missionTasks.notes,
createdAt: missionTasks.createdAt,
updatedAt: missionTasks.updatedAt,
})
.from(missionTasks)
.where(eq(missionTasks.id, id))
.limit(1),
);
if (!row || row.content === null || row.content === '') {
return { status: 'not_found' };
}
const projectIds = await this.listAccessibleProjectIds(filter);
const missionIds = await this.listMissionIds(projectIds);
// mission_tasks rows are user-scoped even when the mission belongs to a team.
// Scope-visible missions must intersect with subject ownership; team scope
// narrows mission IDs but never widens note reads to another user's rows.
if (row.userId !== filter.subjectUserId || !missionIds.includes(row.missionId)) {
return { status: 'denied', reason: 'Note is outside the federated scope' };
}
const item = { ...row } as RowObject;
delete item['userId'];
return { status: 'found', item };
}
private async getMemory(
filter: FederationScopeQueryFilter,
id: string,
): Promise<FederationGetQueryResult> {
const [insightRow, preferenceRow] = await Promise.all([
this.db
.select({
id: insights.id,
userId: insights.userId,
kind: insights.source,
content: insights.content,
category: insights.category,
relevanceScore: insights.relevanceScore,
metadata: insights.metadata,
createdAt: insights.createdAt,
updatedAt: insights.updatedAt,
})
.from(insights)
.where(eq(insights.id, id))
.limit(1)
.then(firstRow),
this.db
.select({
id: preferences.id,
userId: preferences.userId,
kind: preferences.category,
key: preferences.key,
value: preferences.value,
source: preferences.source,
mutable: preferences.mutable,
createdAt: preferences.createdAt,
updatedAt: preferences.updatedAt,
})
.from(preferences)
.where(eq(preferences.id, id))
.limit(1)
.then(firstRow),
]);
const candidates = [insightRow, preferenceRow].filter(
(row): row is NonNullable<typeof row> => row !== undefined,
);
if (candidates.length === 0) {
return { status: 'not_found' };
}
if (!filter.includePersonal) {
return { status: 'denied', reason: 'Memory personal rows are outside the federated scope' };
}
const accessible = candidates.find((row) => row.userId === filter.subjectUserId);
if (!accessible) {
return { status: 'denied', reason: 'Memory row belongs to another subject user' };
}
const item = { ...accessible } as RowObject;
delete item['userId'];
return { status: 'found', item };
}
}
@@ -0,0 +1,100 @@
/**
* Federation get verb (FED-M3-06).
*
* POST /api/federation/v1/get/:resource/:id
*
* Pipeline: FederationAuthGuard attaches the active grant context, then
* FederationScopeService enforces grant scope + native RBAC intersection, then
* the read-only query layer fetches one local row and tags it with `_source`.
* Read audit-log writes are deferred to M4; this controller does not persist
* request or response bodies.
*/
import { Controller, HttpException, Inject, Param, Post, Req, UseGuards } from '@nestjs/common';
import type { FastifyRequest } from 'fastify';
import {
FederationInvalidRequestError,
FederationNotFoundError,
FederationScopeViolationError,
FederationUnauthorizedError,
SOURCE_LOCAL,
type FederationGetResponse,
type SourceTag,
} from '@mosaicstack/types';
import { FederationAuthGuard } from '../federation-auth.guard.js';
import '../federation-context.js';
import { FederationScopeService } from '../scope.service.js';
import { FederationGetQueryService } from './get-query.service.js';
type FederatedRow = Record<string, unknown> & SourceTag;
function scopeDenyToHttpException(deny: {
readonly statusCode: 400 | 403;
readonly message: string;
}): HttpException {
const ErrorClass =
deny.statusCode === 400 ? FederationInvalidRequestError : FederationScopeViolationError;
return new HttpException(new ErrorClass(deny.message, deny).toEnvelope(), deny.statusCode);
}
@Controller('api/federation/v1/get')
@UseGuards(FederationAuthGuard)
export class GetController {
constructor(
@Inject(FederationScopeService) private readonly scope: FederationScopeService,
@Inject(FederationGetQueryService) private readonly query: FederationGetQueryService,
) {}
@Post(':resource/:id')
async get(
@Param('resource') resource: string,
@Param('id') id: string,
@Req() request: FastifyRequest,
): Promise<FederationGetResponse<FederatedRow>> {
if (!request.federationContext) {
throw new HttpException(
new FederationUnauthorizedError('Federation context missing').toEnvelope(),
401,
);
}
if (id.trim().length === 0) {
throw new HttpException(
new FederationInvalidRequestError('Federation get id must not be empty').toEnvelope(),
400,
);
}
const scopeResult = await this.scope.evaluateAccess({
context: request.federationContext,
resource,
requestedLimit: 1,
nativeRbac: this.query,
});
if (!scopeResult.allowed) {
throw scopeDenyToHttpException(scopeResult.deny);
}
const result = await this.query.get({ filter: scopeResult.filter, id });
if (result.status === 'not_found') {
throw new HttpException(
new FederationNotFoundError('Requested federation resource was not found').toEnvelope(),
404,
);
}
if (result.status === 'denied') {
throw new HttpException(
new FederationScopeViolationError(result.reason, {
resource,
id,
grantId: request.federationContext.grantId,
peerId: request.federationContext.peerId,
subjectUserId: request.federationContext.subjectUserId,
}).toEnvelope(),
403,
);
}
return { item: { ...result.item, _source: SOURCE_LOCAL } };
}
}
+15 -5
View File
@@ -1,5 +1,7 @@
import { Module, type OnApplicationShutdown, Inject } from '@nestjs/common';
import { Module, type OnApplicationShutdown, Inject, Optional } from '@nestjs/common';
import { createQueue, type QueueHandle } from '@mosaicstack/queue';
import type { MosaicConfig } from '@mosaicstack/config';
import { MOSAIC_CONFIG } from '../config/config.module.js';
import { SessionGCService } from './session-gc.service.js';
import { REDIS } from './gc.tokens.js';
@@ -9,13 +11,17 @@ const GC_QUEUE_HANDLE = 'GC_QUEUE_HANDLE';
providers: [
{
provide: GC_QUEUE_HANDLE,
useFactory: (): QueueHandle => {
useFactory: (config: MosaicConfig | null): QueueHandle | null => {
// On Local tier there is no Redis — skip the ioredis connection entirely.
// The Valkey GC sweep is a no-op on Local (no session keys stored there).
if (config?.queue?.type === 'local') return null;
return createQueue();
},
inject: [MOSAIC_CONFIG],
},
{
provide: REDIS,
useFactory: (handle: QueueHandle) => handle.redis,
useFactory: (handle: QueueHandle | null) => handle?.redis ?? null,
inject: [GC_QUEUE_HANDLE],
},
SessionGCService,
@@ -23,9 +29,13 @@ const GC_QUEUE_HANDLE = 'GC_QUEUE_HANDLE';
exports: [SessionGCService],
})
export class GCModule implements OnApplicationShutdown {
constructor(@Inject(GC_QUEUE_HANDLE) private readonly handle: QueueHandle) {}
constructor(
@Optional()
@Inject(GC_QUEUE_HANDLE)
private readonly handle: QueueHandle | null,
) {}
async onApplicationShutdown(): Promise<void> {
await this.handle.close().catch(() => {});
await this.handle?.close().catch(() => {});
}
}
@@ -119,6 +119,19 @@ describe('SessionGCService', () => {
).resolves.toEqual({ allowed: true });
});
it('collect() skips Valkey but still demotes only the requested session on local tier', async () => {
const localService = new SessionGCService(null, mockLogService as unknown as LogService);
const result = await localService.collect('local-session');
expect(result.sessionId).toBe('local-session');
expect(result.cleaned.valkeyKeys).toBeUndefined();
expect(mockLogService.logs.promoteSessionToWarm).toHaveBeenCalledWith(
'local-session',
expect.any(Date),
);
});
it('collect() returns sessionId in result', async () => {
const result = await service.collect('test-session-id');
expect(result.sessionId).toBe('test-session-id');
+15 -8
View File
@@ -1,4 +1,4 @@
import { Inject, Injectable } from '@nestjs/common';
import { Inject, Injectable, Optional } from '@nestjs/common';
import type { QueueHandle } from '@mosaicstack/queue';
import type { LogService } from '@mosaicstack/log';
import { LOG_SERVICE } from '../log/log.tokens.js';
@@ -21,7 +21,10 @@ function escapeRedisGlobLiteral(value: string): string {
@Injectable()
export class SessionGCService {
constructor(
@Inject(REDIS) private readonly redis: QueueHandle['redis'],
// Local tier has no Redis; lifecycle cleanup still demotes this session's logs.
@Optional()
@Inject(REDIS)
private readonly redis: QueueHandle['redis'] | null,
@Inject(LOG_SERVICE) private readonly logService: LogService,
) {}
@@ -29,8 +32,10 @@ export class SessionGCService {
* Scan Valkey for all keys matching a pattern using SCAN (non-blocking).
* KEYS is avoided because it blocks the Valkey event loop for the full scan
* duration, which can cause latency spikes under production key volumes.
* Returns an empty population on the Local tier where Redis is disabled.
*/
private async scanKeys(pattern: string): Promise<string[]> {
if (!this.redis) return [];
const collected: string[] = [];
let cursor = '0';
do {
@@ -47,12 +52,14 @@ export class SessionGCService {
async collect(sessionId: string): Promise<GCResult> {
const result: GCResult = { sessionId, cleaned: {} };
// 1. Valkey: delete all session-scoped keys
const pattern = `mosaic:session:${escapeRedisGlobLiteral(sessionId)}:*`;
const valkeyKeys = await this.scanKeys(pattern);
if (valkeyKeys.length > 0) {
await this.redis.del(...valkeyKeys);
result.cleaned.valkeyKeys = valkeyKeys.length;
// 1. Valkey: delete all session-scoped keys (skipped on Local tier).
if (this.redis) {
const pattern = `mosaic:session:${escapeRedisGlobLiteral(sessionId)}:*`;
const valkeyKeys = await this.scanKeys(pattern);
if (valkeyKeys.length > 0) {
await this.redis.del(...valkeyKeys);
result.cleaned.valkeyKeys = valkeyKeys.length;
}
}
// 2. PG: demote hot-tier agent logs for this session only.
+9 -3
View File
@@ -18,7 +18,7 @@ import type { MosaicJobData } from '../queue/queue.service.js';
@Injectable()
export class CronService implements OnModuleInit, OnModuleDestroy {
private readonly logger = new Logger(CronService.name);
private readonly registeredWorkers: Worker<MosaicJobData>[] = [];
private readonly registeredWorkers: Array<Worker<MosaicJobData>> = [];
constructor(
@Inject(SummarizationService) private readonly summarization: SummarizationService,
@@ -26,6 +26,12 @@ export class CronService implements OnModuleInit, OnModuleDestroy {
) {}
async onModuleInit(): Promise<void> {
// Local tier deliberately has no BullMQ consumers or repeatable jobs.
if (!this.queueService.isEnabled()) {
this.logger.log('CronService: BullMQ disabled on local tier — no jobs will be scheduled');
return;
}
const summarizationSchedule = process.env['SUMMARIZATION_CRON'] ?? '0 */6 * * *'; // every 6 hours
const tierManagementSchedule = process.env['TIER_MANAGEMENT_CRON'] ?? '0 3 * * *'; // daily at 3am
@@ -39,7 +45,7 @@ export class CronService implements OnModuleInit, OnModuleDestroy {
const summarizationWorker = this.queueService.registerWorker(QUEUE_SUMMARIZATION, async () => {
await this.summarization.runSummarization();
});
this.registeredWorkers.push(summarizationWorker);
if (summarizationWorker) this.registeredWorkers.push(summarizationWorker);
// M6-005: Tier management repeatable job
await this.queueService.addRepeatableJob(
@@ -51,7 +57,7 @@ export class CronService implements OnModuleInit, OnModuleDestroy {
const tierWorker = this.queueService.registerWorker(QUEUE_TIER_MANAGEMENT, async () => {
await this.summarization.runTierManagement();
});
this.registeredWorkers.push(tierWorker);
if (tierWorker) this.registeredWorkers.push(tierWorker);
// Retire any repeatable global GC schedule created by older deployments.
// Session cleanup is now triggered only by an authorized session lifecycle operation.
@@ -0,0 +1,44 @@
import { Logger } from '@nestjs/common';
import { Client } from '@modelcontextprotocol/sdk/client/index.js';
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
import { McpClientService } from './mcp-client.service.js';
const MCP_LEAK_MARKER = 'MCP_LEAK_MARKER /srv/secret';
describe('McpClientService — failed connect error sanitization', () => {
const originalMcpServers = process.env['MCP_SERVERS'];
beforeEach(() => {
process.env['MCP_SERVERS'] = JSON.stringify([
{ name: 'leaky-server', url: 'http://localhost:9999/mcp' },
]);
});
afterEach(() => {
vi.restoreAllMocks();
if (originalMcpServers === undefined) {
delete process.env['MCP_SERVERS'];
} else {
process.env['MCP_SERVERS'] = originalMcpServers;
}
});
it('stores a generic serverEntry.error while logging the raw exception server-side', async () => {
vi.spyOn(Client.prototype, 'connect').mockRejectedValue(new Error(MCP_LEAK_MARKER));
const errorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const service = new McpClientService();
await service.onModuleInit();
const statuses = service.getServerStatuses();
expect(statuses).toHaveLength(1);
expect(statuses[0]?.connected).toBe(false);
expect(statuses[0]?.error).toBe('Connection failed (see server logs).');
expect(statuses[0]?.error).not.toContain(MCP_LEAK_MARKER);
const loggedRawMarker = errorSpy.mock.calls.some((call) =>
call.some((arg) => typeof arg === 'string' && arg.includes(MCP_LEAK_MARKER)),
);
expect(loggedRawMarker).toBe(true);
});
});
@@ -189,7 +189,7 @@ export class McpClientService implements OnModuleInit, OnModuleDestroy {
);
} catch (err) {
const message = err instanceof Error ? err.message : String(err);
serverEntry.error = message;
serverEntry.error = 'Connection failed (see server logs).';
serverEntry.connected = false;
this.logger.error(`Failed to connect to MCP server "${config.name}": ${message}`);
}
@@ -0,0 +1,23 @@
import { describe, expect, it } from 'vitest';
import type { MosaicConfig } from '@mosaicstack/config';
import { SystemOverrideService } from './system-override.service.js';
const localConfig = { queue: { type: 'local' } } as MosaicConfig;
describe('SystemOverrideService local tier', () => {
it('keeps ephemeral overrides isolated by tenant and user scope', async () => {
const service = new SystemOverrideService(localConfig);
const firstScope = { tenantId: 'tenant-a', userId: 'user-a' };
const secondScope = { tenantId: 'tenant-b', userId: 'user-b' };
await service.set('shared-session', 'first override', firstScope);
await service.set('shared-session', 'second override', secondScope);
await expect(service.get('shared-session', firstScope)).resolves.toBe('first override');
await expect(service.get('shared-session', secondScope)).resolves.toBe('second override');
await service.clear('shared-session', firstScope);
await expect(service.get('shared-session', firstScope)).resolves.toBeNull();
await expect(service.get('shared-session', secondScope)).resolves.toBe('second override');
});
});
@@ -1,6 +1,8 @@
import { Injectable, Logger } from '@nestjs/common';
import { Inject, Injectable, Logger, Optional, type OnApplicationShutdown } from '@nestjs/common';
import { createQueue, type QueueHandle } from '@mosaicstack/queue';
import type { MosaicConfig } from '@mosaicstack/config';
import type { ActorTenantScope } from '../auth/session-scope.js';
import { MOSAIC_CONFIG } from '../config/config.module.js';
const scopedSessionId = (sessionId: string, scope: ActorTenantScope) =>
`${scope.tenantId}:${scope.userId}:${sessionId}`;
@@ -15,16 +17,45 @@ interface OverrideFragment {
addedAt: number;
}
@Injectable()
export class SystemOverrideService {
private readonly logger = new Logger(SystemOverrideService.name);
private readonly handle: QueueHandle;
interface LocalOverrideEntry {
condensed: string;
fragments: OverrideFragment[];
}
constructor() {
this.handle = createQueue();
@Injectable()
export class SystemOverrideService implements OnApplicationShutdown {
private readonly logger = new Logger(SystemOverrideService.name);
private readonly handle: QueueHandle | null;
/** Local-tier fallback, keyed by the same tenant/user/session scope as Redis. */
private readonly localStore = new Map<string, LocalOverrideEntry>();
constructor(
@Optional()
@Inject(MOSAIC_CONFIG)
private readonly mosaicConfig: MosaicConfig | null,
) {
this.handle = this.mosaicConfig?.queue?.type === 'local' ? null : createQueue();
}
async onApplicationShutdown(): Promise<void> {
await this.handle?.close().catch(() => {});
}
async set(sessionId: string, override: string, scope: ActorTenantScope): Promise<void> {
if (!this.handle) {
const key = scopedSessionId(sessionId, scope);
const entry = this.localStore.get(key) ?? { condensed: '', fragments: [] };
entry.fragments.push({ text: override, addedAt: Date.now() });
entry.condensed = await this.condenseOverrides(
entry.fragments.map((fragment) => fragment.text),
);
this.localStore.set(key, entry);
this.logger.debug(
`Set system override for session ${sessionId} (local, ${entry.fragments.length} fragment(s))`,
);
return;
}
// Load existing fragments
const existing = await this.handle.redis.get(SESSION_SYSTEM_FRAGMENTS_KEY(sessionId, scope));
const fragments: OverrideFragment[] = existing
@@ -54,10 +85,14 @@ export class SystemOverrideService {
}
async get(sessionId: string, scope: ActorTenantScope): Promise<string | null> {
if (!this.handle) {
return this.localStore.get(scopedSessionId(sessionId, scope))?.condensed ?? null;
}
return this.handle.redis.get(SESSION_SYSTEM_KEY(sessionId, scope));
}
async renew(sessionId: string, scope: ActorTenantScope): Promise<void> {
if (!this.handle) return;
const pipeline = this.handle.redis.pipeline();
pipeline.expire(SESSION_SYSTEM_KEY(sessionId, scope), SYSTEM_OVERRIDE_TTL_SECONDS);
pipeline.expire(SESSION_SYSTEM_FRAGMENTS_KEY(sessionId, scope), SYSTEM_OVERRIDE_TTL_SECONDS);
@@ -65,6 +100,11 @@ export class SystemOverrideService {
}
async clear(sessionId: string, scope: ActorTenantScope): Promise<void> {
if (!this.handle) {
this.localStore.delete(scopedSessionId(sessionId, scope));
this.logger.debug(`Cleared system override for session ${sessionId} (local)`);
return;
}
await this.handle.redis.del(
SESSION_SYSTEM_KEY(sessionId, scope),
SESSION_SYSTEM_FRAGMENTS_KEY(sessionId, scope),
@@ -0,0 +1,36 @@
import { describe, expect, it, vi } from 'vitest';
import type { MosaicConfig } from '@mosaicstack/config';
import { QueueService } from './queue.service.js';
const localConfig = {
queue: { type: 'local' },
} as MosaicConfig;
describe('QueueService local tier', () => {
it('disables BullMQ and treats queue operations as local no-ops', async () => {
const service = new QueueService(null, localConfig);
expect(service.isEnabled()).toBe(false);
expect(service.getQueue('mosaic-test')).toBeNull();
expect(service.registerWorker('mosaic-test', vi.fn())).toBeNull();
await expect(
service.addRepeatableJob('mosaic-test', 'local-noop', {}, '* * * * *'),
).resolves.toBeUndefined();
await expect(service.removeRepeatableJobs('mosaic-test', 'local-noop')).resolves.toBe(0);
await expect(service.getHealthStatus()).resolves.toEqual({ queues: {}, healthy: true });
await expect(service.listJobs()).resolves.toEqual([]);
await expect(service.retryJob('mosaic-test__1')).resolves.toEqual({
ok: false,
message: 'BullMQ is disabled on local tier.',
});
await expect(service.pauseQueue('mosaic-test')).resolves.toEqual({
ok: false,
message: 'BullMQ is disabled on local tier.',
});
await expect(service.resumeQueue('mosaic-test')).resolves.toEqual({
ok: false,
message: 'BullMQ is disabled on local tier.',
});
});
});
+65 -6
View File
@@ -8,7 +8,9 @@ import {
} from '@nestjs/common';
import { Queue, Worker, type Job, type ConnectionOptions } from 'bullmq';
import type { LogService } from '@mosaicstack/log';
import type { MosaicConfig } from '@mosaicstack/config';
import { LOG_SERVICE } from '../log/log.tokens.js';
import { MOSAIC_CONFIG } from '../config/config.module.js';
import type { JobDto, JobStatus } from './queue-admin.dto.js';
// ---------------------------------------------------------------------------
@@ -108,21 +110,42 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
private readonly connection: ConnectionOptions;
private readonly queues = new Map<string, Queue<MosaicJobData>>();
private readonly workers = new Map<string, Worker<MosaicJobData>>();
/** False on Local tier — BullMQ/Redis operations become no-ops. */
private readonly enabled: boolean;
constructor(
@Optional()
@Inject(LOG_SERVICE)
private readonly logService: LogService | null,
@Optional()
@Inject(MOSAIC_CONFIG)
private readonly mosaicConfig: MosaicConfig | null,
) {
this.connection = getConnection();
this.enabled = this.mosaicConfig?.queue?.type !== 'local';
this.connection = this.enabled
? getConnection()
: ({ host: '127.0.0.1', port: 6380 } as ConnectionOptions);
}
/** Returns true when BullMQ/Redis is active (Standalone and Federated tiers). */
isEnabled(): boolean {
return this.enabled;
}
onModuleInit(): void {
this.logger.log('QueueService initialised (BullMQ)');
if (this.enabled) {
this.logger.log('QueueService initialised (BullMQ)');
} else {
this.logger.log(
'QueueService: BullMQ disabled for local tier — no Redis connections will be opened',
);
}
}
async onModuleDestroy(): Promise<void> {
await this.closeAll();
if (this.enabled) {
await this.closeAll();
}
}
// -------------------------------------------------------------------------
@@ -131,8 +154,10 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
/**
* Get or create a BullMQ Queue for the given queue name.
* Returns null on Local tier where BullMQ is disabled.
*/
getQueue<T extends MosaicJobData = MosaicJobData>(name: string): Queue<T> {
getQueue<T extends MosaicJobData = MosaicJobData>(name: string): Queue<T> | null {
if (!this.enabled) return null;
let queue = this.queues.get(name) as Queue<T> | undefined;
if (!queue) {
queue = new Queue<T>(name, { connection: this.connection });
@@ -144,6 +169,7 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
/**
* Add a BullMQ repeatable job (cron-style).
* Uses `jobId` as a deterministic key so duplicate registrations are idempotent.
* No-op on Local tier.
*/
async addRepeatableJob<T extends MosaicJobData>(
queueName: string,
@@ -151,7 +177,13 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
data: T,
cronExpression: string,
): Promise<void> {
const queue = this.getQueue<T>(queueName);
if (!this.enabled) {
this.logger.debug(
`Skipping repeatable job "${jobName}" on "${queueName}" (local tier — BullMQ disabled)`,
);
return;
}
const queue = this.getQueue<T>(queueName)!;
// eslint-disable-next-line @typescript-eslint/no-explicit-any
await (queue as Queue<any>).add(jobName, data, {
repeat: { pattern: cronExpression },
@@ -167,7 +199,14 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
* safe retirement of previously registered system-wide jobs.
*/
async removeRepeatableJobs(queueName: string, jobName: string): Promise<number> {
if (!this.enabled) {
this.logger.debug(
`Skipping repeatable-job removal for "${jobName}" on "${queueName}" (local tier — BullMQ disabled)`,
);
return 0;
}
const queue = this.getQueue(queueName);
if (!queue) return 0;
const jobs = await queue.getRepeatableJobs();
const matchingJobs = jobs.filter((job) => job.name === jobName);
await Promise.all(matchingJobs.map((job) => queue.removeRepeatableByKey(job.key)));
@@ -182,8 +221,18 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
/**
* Register a Worker for the given queue name with error handling and
* exponential backoff.
* Returns null on Local tier where BullMQ is disabled.
*/
registerWorker<T extends MosaicJobData>(queueName: string, handler: JobHandler<T>): Worker<T> {
registerWorker<T extends MosaicJobData>(
queueName: string,
handler: JobHandler<T>,
): Worker<T> | null {
if (!this.enabled) {
this.logger.debug(
`Skipping worker registration for "${queueName}" (local tier — BullMQ disabled)`,
);
return null;
}
const worker = new Worker<T>(
queueName,
async (job) => {
@@ -240,8 +289,12 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
/**
* Return queue health statistics for all managed queues.
* Returns an empty healthy result on Local tier.
*/
async getHealthStatus(): Promise<QueueHealthStatus> {
if (!this.enabled) {
return { queues: {}, healthy: true };
}
const queues: QueueHealthStatus['queues'] = {};
let healthy = true;
@@ -272,8 +325,10 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
/**
* List jobs across all managed queues, optionally filtered by status.
* BullMQ jobs are fetched by state type from each queue.
* Returns empty array on Local tier.
*/
async listJobs(status?: JobStatus): Promise<JobDto[]> {
if (!this.enabled) return [];
const jobs: JobDto[] = [];
const states: JobStatus[] = status
? [status]
@@ -300,8 +355,10 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
* Retry a specific failed job by its BullMQ job ID (format: "queueName:id").
* The caller passes "<queueName>__<jobId>" as the composite ID because BullMQ
* job IDs are not globally unique — they are scoped to their queue.
* Returns an error on Local tier.
*/
async retryJob(compositeId: string): Promise<{ ok: boolean; message: string }> {
if (!this.enabled) return { ok: false, message: 'BullMQ is disabled on local tier.' };
const sep = compositeId.lastIndexOf('__');
if (sep === -1) {
return { ok: false, message: 'Invalid job id format. Expected "<queue>__<jobId>".' };
@@ -333,6 +390,7 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
* Pause a queue by name.
*/
async pauseQueue(name: string): Promise<{ ok: boolean; message: string }> {
if (!this.enabled) return { ok: false, message: 'BullMQ is disabled on local tier.' };
const queue = this.queues.get(name);
if (!queue) return { ok: false, message: `Queue "${name}" not found.` };
await queue.pause();
@@ -344,6 +402,7 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
* Resume a paused queue by name.
*/
async resumeQueue(name: string): Promise<{ ok: boolean; message: string }> {
if (!this.enabled) return { ok: false, message: 'BullMQ is disabled on local tier.' };
const queue = this.queues.get(name);
if (!queue) return { ok: false, message: `Queue "${name}" not found.` };
await queue.resume();
@@ -1,5 +1,8 @@
import { Logger } from '@nestjs/common';
import { describe, expect, it, vi } from 'vitest';
import type { SlashCommandPayload, SystemReloadPayload } from '@mosaicstack/types';
import { ReloadService } from './reload.service.js';
import { CommandExecutorService } from '../commands/command-executor.service.js';
function createMockCommandRegistry() {
return {
@@ -104,3 +107,79 @@ describe('ReloadService', () => {
expect(() => service.registerPlugin('my-plugin', {})).not.toThrow();
});
});
describe('ReloadService — /reload command sanitizes plugin errors', () => {
it('generic per-plugin errors reach the chat surface while raw markers stay server-side only', async () => {
const registry = {
getManifest: vi.fn().mockReturnValue({
version: 1,
commands: [
{ name: 'reload', aliases: [], scope: 'core', execution: 'socket', available: true },
],
skills: [],
}),
};
const reloadService = new ReloadService(registry as never);
const RELOAD_LOAD_LEAK_MARKER = 'RELOAD_LOAD_LEAK_MARKER /srv/load-secret';
const RELOAD_UNLOAD_LEAK_MARKER = 'RELOAD_UNLOAD_LEAK_MARKER /srv/unload-secret';
reloadService.registerPlugin('unload-fails', {
pluginName: 'unload-fails',
onLoad: vi.fn().mockResolvedValue(undefined),
onUnload: vi.fn().mockRejectedValue(new Error(RELOAD_UNLOAD_LEAK_MARKER)),
});
reloadService.registerPlugin('load-fails', {
pluginName: 'load-fails',
onLoad: vi.fn().mockRejectedValue(new Error(RELOAD_LOAD_LEAK_MARKER)),
onUnload: vi.fn().mockResolvedValue(undefined),
});
const errorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const broadcastReload = vi.fn();
const mockChatGateway = { broadcastReload };
const mockAgentService = { getSession: vi.fn(), applyAgentConfig: vi.fn() };
const mockSystemOverride = { set: vi.fn(), get: vi.fn(), clear: vi.fn() };
const mockSessionGC = { sweepOrphans: vi.fn() };
const mockBrain = { agents: { findByName: vi.fn(), findById: vi.fn(), create: vi.fn() } };
const executor = new CommandExecutorService(
registry as never,
mockAgentService as never,
mockSystemOverride as never,
mockSessionGC as never,
null,
mockBrain as never,
reloadService,
mockChatGateway as never,
null,
);
const payload: SlashCommandPayload = { command: 'reload', conversationId: 'conv-1' };
const result = await executor.execute(payload, { userId: 'user-1', tenantId: 'user-1' });
expect(result.success).toBe(true);
expect(result.message).toContain('unload-fails: unload failed (internal error)');
expect(result.message).toContain('load-fails: load failed (internal error)');
expect(result.message).not.toContain(RELOAD_UNLOAD_LEAK_MARKER);
expect(result.message).not.toContain(RELOAD_LOAD_LEAK_MARKER);
expect(broadcastReload).toHaveBeenCalledOnce();
const broadcastPayload = broadcastReload.mock.calls[0]?.[0] as SystemReloadPayload;
expect(broadcastPayload.message).toContain('unload-fails: unload failed (internal error)');
expect(broadcastPayload.message).toContain('load-fails: load failed (internal error)');
expect(broadcastPayload.message).not.toContain(RELOAD_UNLOAD_LEAK_MARKER);
expect(broadcastPayload.message).not.toContain(RELOAD_LOAD_LEAK_MARKER);
const loggedUnloadMarker = errorSpy.mock.calls.some((call) =>
call.some((arg) => typeof arg === 'string' && arg.includes(RELOAD_UNLOAD_LEAK_MARKER)),
);
const loggedLoadMarker = errorSpy.mock.calls.some((call) =>
call.some((arg) => typeof arg === 'string' && arg.includes(RELOAD_LOAD_LEAK_MARKER)),
);
expect(loggedUnloadMarker).toBe(true);
expect(loggedLoadMarker).toBe(true);
errorSpy.mockRestore();
});
});
+4 -2
View File
@@ -58,7 +58,8 @@ export class ReloadService implements OnApplicationBootstrap, OnApplicationShutd
await plugin.onUnload();
reloaded.push(name);
} catch (err) {
errors.push(`${name}: unload failed — ${err}`);
this.logger.error(`Plugin "${name}" failed during onUnload: ${err}`);
errors.push(`${name}: unload failed (internal error)`);
}
}
}
@@ -69,7 +70,8 @@ export class ReloadService implements OnApplicationBootstrap, OnApplicationShutd
try {
await plugin.onLoad();
} catch (err) {
errors.push(`${name}: load failed ${err}`);
this.logger.error(`Plugin "${name}" failed during onLoad: ${err}`);
errors.push(`${name}: load failed (internal error)`);
}
}
}
@@ -0,0 +1,104 @@
import 'reflect-metadata';
import {
type CanActivate,
type ExecutionContext,
type INestApplication,
ValidationPipe,
} from '@nestjs/common';
import { FastifyAdapter, type NestFastifyApplication } from '@nestjs/platform-fastify';
import { Test } from '@nestjs/testing';
import request from 'supertest';
import { afterAll, beforeAll, beforeEach, describe, expect, it, vi } from 'vitest';
import { AuthGuard } from '../auth/auth.guard.js';
import { ProjectBootstrapService } from './project-bootstrap.service.js';
import { WorkspaceController } from './workspace.controller.js';
const bootstrapMock = vi.fn(() =>
Promise.resolve({
projectId: 'project-1',
workspacePath: '/opt/mosaic/.workspaces/users/user-1/project-1',
}),
);
const authGuard: CanActivate = {
canActivate(context: ExecutionContext): boolean {
const requestContext = context.switchToHttp().getRequest<{ user?: { id: string } }>();
requestContext.user = { id: 'user-1' };
return true;
},
};
describe('POST /api/workspaces repoUrl validation', () => {
let app: INestApplication;
beforeAll(async () => {
const moduleRef = await Test.createTestingModule({
controllers: [WorkspaceController],
providers: [
{
provide: ProjectBootstrapService,
useValue: { bootstrap: bootstrapMock },
},
],
})
.overrideGuard(AuthGuard)
.useValue(authGuard)
.compile();
app = moduleRef.createNestApplication<NestFastifyApplication>(new FastifyAdapter());
app.useGlobalPipes(
new ValidationPipe({
whitelist: true,
forbidNonWhitelisted: true,
transform: true,
}),
);
await app.init();
await app.getHttpAdapter().getInstance().ready();
});
beforeEach(() => {
bootstrapMock.mockClear();
});
afterAll(async () => {
await app.close();
});
it.each([
['a leading-dash value', '--upload-pack=sh -c id'],
['an ext remote helper', 'ext::sh -c id'],
['a file URL', 'file:///tmp/repository'],
['an unparseable value', 'not a url'],
['an SSH shorthand', '[email protected]:acme/repository.git'],
['a scheme without //', 'https:example.com/acme/repository.git'],
['a hostless git URL', 'git:///tmp/repository'],
])('returns 400 for %s', async (_description, repoUrl) => {
const response = await request(app.getHttpServer())
.post('/api/workspaces')
.send({ name: 'Example', repoUrl })
.set('Content-Type', 'application/json');
expect(response.status).toBe(400);
expect(bootstrapMock).not.toHaveBeenCalled();
});
it.each([
['a plain HTTPS repository URL', 'https://example.com/acme/repository.git'],
['a git protocol repository URL', 'git://example.com/acme/repository.git'],
])('accepts %s', async (_description, repoUrl) => {
const response = await request(app.getHttpServer())
.post('/api/workspaces')
.send({ name: 'Example', repoUrl })
.set('Content-Type', 'application/json');
expect(response.status).toBe(201);
expect(bootstrapMock).toHaveBeenCalledWith({
name: 'Example',
description: undefined,
userId: 'user-1',
teamId: undefined,
repoUrl,
});
});
});
@@ -1,7 +1,11 @@
import { Body, Controller, Post, UseGuards } from '@nestjs/common';
import { AuthGuard } from '../auth/auth.guard.js';
import { CurrentUser } from '../auth/current-user.decorator.js';
import { ProjectBootstrapService } from './project-bootstrap.service.js';
import {
ProjectBootstrapService,
type BootstrapProjectResult,
} from './project-bootstrap.service.js';
import { CreateWorkspaceDto } from './workspace.dto.js';
@Controller('api/workspaces')
@UseGuards(AuthGuard)
@@ -11,20 +15,14 @@ export class WorkspaceController {
@Post()
async create(
@CurrentUser() user: { id: string },
@Body()
body: {
name: string;
description?: string;
teamId?: string;
repoUrl?: string;
},
) {
@Body() dto: CreateWorkspaceDto,
): Promise<BootstrapProjectResult> {
return this.bootstrap.bootstrap({
name: body.name,
description: body.description,
name: dto.name,
description: dto.description,
userId: user.id,
teamId: body.teamId,
repoUrl: body.repoUrl,
teamId: dto.teamId,
repoUrl: dto.repoUrl,
});
}
}
@@ -0,0 +1,33 @@
import { IsOptional, IsString, IsUrl, Matches, MaxLength } from 'class-validator';
export class CreateWorkspaceDto {
@IsString()
@MaxLength(255)
name!: string;
@IsOptional()
@IsString()
@MaxLength(10_000)
description?: string;
@IsOptional()
@IsString()
teamId?: string;
@IsOptional()
@IsString()
@Matches(/^(?:https|git):\/\//i, {
message: 'repoUrl must be a valid https:// or git:// URL',
})
@IsUrl(
{
protocols: ['https', 'git'],
require_host: true,
require_protocol: true,
require_tld: false,
require_valid_protocol: true,
},
{ message: 'repoUrl must be a valid https:// or git:// URL' },
)
repoUrl?: string;
}
@@ -1,11 +1,33 @@
import { describe, it, expect, beforeEach } from 'vitest';
import { WorkspaceService } from './workspace.service.js';
import { BadRequestException } from '@nestjs/common';
import fs from 'node:fs/promises';
import os from 'node:os';
import path from 'node:path';
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
import { WorkspaceService } from './workspace.service.js';
type ExecFileMock = (
command: string,
args: readonly string[],
options: { cwd: string },
callback: (error: Error | null, stdout: string, stderr: string) => void,
) => void;
const { execFileMock } = vi.hoisted(() => ({
execFileMock: vi.fn<ExecFileMock>(),
}));
vi.mock('node:child_process', () => ({
execFile: execFileMock,
}));
describe('WorkspaceService', () => {
let service: WorkspaceService;
beforeEach(() => {
execFileMock.mockReset();
execFileMock.mockImplementation((_command, _args, _options, callback) => {
callback(null, '', '');
});
service = new WorkspaceService();
});
@@ -76,4 +98,69 @@ describe('WorkspaceService', () => {
}
});
});
describe('create', () => {
const project = {
id: 'project-1',
ownerType: 'user',
userId: 'user-1',
teamId: null,
} as const;
let originalRoot: string | undefined;
let temporaryRoot: string;
beforeEach(async () => {
originalRoot = process.env['MOSAIC_ROOT'];
temporaryRoot = await fs.mkdtemp(path.join(os.tmpdir(), 'mosaic-workspace-'));
process.env['MOSAIC_ROOT'] = temporaryRoot;
service = new WorkspaceService();
});
afterEach(async () => {
if (originalRoot === undefined) {
delete process.env['MOSAIC_ROOT'];
} else {
process.env['MOSAIC_ROOT'] = originalRoot;
}
await fs.rm(temporaryRoot, { recursive: true, force: true });
});
it.each([
['a leading-dash URL', '--upload-pack=sh -c id'],
['an ext remote helper', 'ext::sh -c id'],
['a file URL', 'file:///tmp/repository'],
['an unparseable value', 'not a url'],
['an SSH shorthand', '[email protected]:acme/repository.git'],
['a scheme without //', 'https:example.com/acme/repository.git'],
['a hostless git URL', 'git:///tmp/repository'],
])('rejects %s before invoking git', async (_description, repoUrl) => {
await expect(service.create(project, repoUrl)).rejects.toBeInstanceOf(BadRequestException);
expect(execFileMock).not.toHaveBeenCalled();
});
it.each([
['an HTTPS URL', 'https://example.com/acme/repository.git'],
['a git protocol URL', 'git://example.com/acme/repository.git'],
])('accepts %s and invokes hardened git clone arguments', async (_description, repoUrl) => {
const workspacePath = await service.create(project, repoUrl);
expect(execFileMock).toHaveBeenCalledOnce();
expect(execFileMock).toHaveBeenCalledWith(
'git',
[
'-c',
'protocol.ext.allow=never',
'-c',
'protocol.file.allow=never',
'clone',
'--',
repoUrl,
'.',
],
{ cwd: workspacePath },
expect.any(Function),
);
});
});
});
@@ -1,10 +1,30 @@
import { Injectable, Logger } from '@nestjs/common';
import { BadRequestException, Injectable, Logger } from '@nestjs/common';
import fs from 'node:fs/promises';
import path from 'node:path';
import { execFile } from 'node:child_process';
import { promisify } from 'node:util';
const execFileAsync = promisify(execFile);
const allowedRepositoryProtocols = new Set(['https:', 'git:']);
const repositoryUrlPrefixPattern = /^(?:https|git):\/\//i;
const repositoryUrlError = 'repoUrl must be a valid https:// or git:// URL';
function assertAllowedRepositoryUrl(repoUrl: string): void {
if (repoUrl.startsWith('-') || !repositoryUrlPrefixPattern.test(repoUrl)) {
throw new BadRequestException(repositoryUrlError);
}
let parsedUrl: URL;
try {
parsedUrl = new URL(repoUrl);
} catch {
throw new BadRequestException(repositoryUrlError);
}
if (!allowedRepositoryProtocols.has(parsedUrl.protocol) || parsedUrl.hostname.length === 0) {
throw new BadRequestException(repositoryUrlError);
}
}
export interface WorkspaceProject {
id: string;
@@ -39,14 +59,32 @@ export class WorkspaceService {
* If repoUrl is provided, clone instead of init.
*/
async create(project: WorkspaceProject, repoUrl?: string): Promise<string> {
if (repoUrl !== undefined) {
assertAllowedRepositoryUrl(repoUrl);
}
const workspacePath = this.resolvePath(project);
// Create directory
await fs.mkdir(workspacePath, { recursive: true });
if (repoUrl) {
// Clone existing repo
await execFileAsync('git', ['clone', repoUrl, '.'], { cwd: workspacePath });
if (repoUrl !== undefined) {
// Clone existing repo. Defense in depth keeps dangerous local helpers
// disabled and terminates option parsing before positional arguments.
await execFileAsync(
'git',
[
'-c',
'protocol.ext.allow=never',
'-c',
'protocol.file.allow=never',
'clone',
'--',
repoUrl,
'.',
],
{ cwd: workspacePath },
);
this.logger.log(`Cloned ${repoUrl} into workspace ${workspacePath}`);
} else {
// Init new git repo
+30
View File
@@ -0,0 +1,30 @@
<!doctype html>
<html lang="en">
<head>
<meta charset="UTF-8" />
<meta name="viewport" content="width=device-width, initial-scale=1.0" />
<title>Mosaic</title>
<meta name="description" content="Mosaic Stack Dashboard" />
<link rel="preconnect" href="https://fonts.googleapis.com" />
<link rel="preconnect" href="https://fonts.gstatic.com" crossorigin />
<link
rel="stylesheet"
href="https://fonts.googleapis.com/css2?family=Outfit:wght@300;400;500;600;700&family=Fira+Code:wght@400;500&display=swap"
/>
<script>
// set data-theme before first paint so the stored theme never flashes
(function () {
try {
var theme = window.localStorage.getItem('mosaic-theme') || 'dark';
document.documentElement.setAttribute('data-theme', theme === 'light' ? 'light' : 'dark');
} catch (error) {
document.documentElement.setAttribute('data-theme', 'dark');
}
})();
</script>
</head>
<body>
<div id="root"></div>
<script type="module" src="/src/main.tsx"></script>
</body>
</html>
+8 -2
View File
@@ -3,8 +3,10 @@
"version": "0.0.2",
"private": true,
"scripts": {
"build": "next build",
"build": "node ../../scripts/build-web.mjs",
"build:vite": "vite build",
"dev": "next dev",
"dev:vite": "vite",
"lint": "eslint src",
"typecheck": "tsc --noEmit",
"test": "vitest run --passWithNoTests",
@@ -13,12 +15,14 @@
},
"dependencies": {
"@mosaicstack/design-tokens": "workspace:^",
"@mosaicstack/types": "workspace:^",
"better-auth": "^1.5.5",
"clsx": "^2.1.0",
"next": "^16.0.0",
"react": "^19.0.0",
"react-dom": "^19.0.0",
"react-markdown": "^10.1.0",
"react-router-dom": "^7.18.2",
"socket.io-client": "^4.8.0",
"tailwind-merge": "^3.5.0"
},
@@ -28,9 +32,11 @@
"@types/node": "^22.0.0",
"@types/react": "^19.0.0",
"@types/react-dom": "^19.0.0",
"@vitejs/plugin-react": "^6.0.5",
"jsdom": "^29.0.0",
"tailwindcss": "^4.0.0",
"typescript": "^5.8.0",
"vitest": "^2.0.0"
"vite": "^8.2.1",
"vitest": "^3.2.7"
}
}
@@ -3,41 +3,56 @@
import Link from 'next/link';
import { useEffect, useState } from 'react';
import { useParams, useSearchParams } from 'next/navigation';
import { api } from '@/lib/api';
import { resolveAuthCallbackURL } from '@/lib/auth-redirect';
import { signIn } from '@/lib/auth-client';
import { getSsoProvider } from '@/lib/sso-providers';
import type { SsoProviderDiscovery } from '@/lib/sso';
export default function AuthProviderRedirectPage(): React.ReactElement {
const params = useParams<{ provider: string }>();
const searchParams = useSearchParams();
const providerId = typeof params.provider === 'string' ? params.provider : '';
const provider = getSsoProvider(providerId);
const callbackURL = searchParams.get('callbackURL') ?? '/chat';
const requestedCallbackURL = searchParams.get('callbackURL');
const [providerName, setProviderName] = useState<string | null>(null);
const [error, setError] = useState<string | null>(null);
useEffect(() => {
const currentProvider = provider;
if (!currentProvider) {
setError('Unknown SSO provider.');
return;
}
if (!currentProvider.enabled) {
setError(`${currentProvider.buttonLabel} is not enabled in this deployment.`);
return;
}
const activeProvider = currentProvider;
let cancelled = false;
async function redirectToProvider(): Promise<void> {
const result = await signIn.oauth2({
providerId: activeProvider.id,
callbackURL,
});
try {
const callbackURL = resolveAuthCallbackURL(requestedCallbackURL, window.location.origin);
const providers = await api<SsoProviderDiscovery[]>('/api/sso/providers');
if (cancelled) return;
if (!cancelled && result?.error) {
setError(result.error.message ?? `${activeProvider.buttonLabel} sign in failed.`);
const provider = providers.find((candidate) => candidate.id === providerId);
if (!provider) {
setError('Unknown SSO provider.');
return;
}
setProviderName(provider.name);
if (!provider.configured) {
setError(`${provider.name} is not enabled in this deployment.`);
return;
}
if (provider.loginMode !== 'oidc') {
setError(`${provider.name} is not available for OIDC sign in.`);
return;
}
const result = await signIn.oauth2({
providerId: provider.id,
callbackURL,
});
if (!cancelled && result?.error) {
setError(result.error.message ?? `${provider.name} sign in failed.`);
}
} catch (caught: unknown) {
if (!cancelled) {
setError(caught instanceof Error ? caught.message : 'Unable to start single sign-on.');
}
}
}
@@ -46,19 +61,22 @@ export default function AuthProviderRedirectPage(): React.ReactElement {
return () => {
cancelled = true;
};
}, [callbackURL, provider]);
}, [providerId, requestedCallbackURL]);
return (
<div className="mx-auto flex min-h-[50vh] max-w-md flex-col justify-center">
<h1 className="text-2xl font-semibold text-text-primary">Single sign-on</h1>
<p className="mt-2 text-sm text-text-secondary">
{provider
? `Redirecting you to ${provider.buttonLabel.replace('Continue with ', '')}...`
{providerName
? `Redirecting you to ${providerName}...`
: 'Preparing your sign-in request...'}
</p>
{error ? (
<div className="mt-6 rounded-lg border border-error/30 bg-error/10 px-4 py-3 text-sm text-error">
<div
role="alert"
className="mt-6 rounded-lg border border-error/30 bg-error/10 px-4 py-3 text-sm text-error"
>
<p>{error}</p>
<Link
href="/login"
+57
View File
@@ -0,0 +1,57 @@
import { afterEach, describe, expect, it, vi } from 'vitest';
import { api } from './api';
describe('api', () => {
afterEach(() => {
vi.unstubAllGlobals();
});
it('fetches the supplied relative path with credentials and a JSON body', async () => {
const fetchMock = vi.fn<typeof fetch>();
fetchMock.mockResolvedValue(
new Response(JSON.stringify({ ok: true }), {
status: 200,
headers: { 'Content-Type': 'application/json' },
}),
);
vi.stubGlobal('fetch', fetchMock);
await expect(
api<{ ok: boolean }>('/api/projects', {
method: 'POST',
body: { name: 'Mosaic' },
}),
).resolves.toEqual({ ok: true });
expect(fetchMock).toHaveBeenCalledOnce();
expect(fetchMock).toHaveBeenCalledWith(
'/api/projects',
expect.objectContaining({
method: 'POST',
credentials: 'include',
body: JSON.stringify({ name: 'Mosaic' }),
headers: expect.objectContaining({
Accept: 'application/json',
'Content-Type': 'application/json',
}),
}),
);
});
it('throws the gateway JSON error with its statusCode', async () => {
const fetchMock = vi.fn<typeof fetch>();
fetchMock.mockResolvedValue(
new Response(JSON.stringify({ statusCode: 403, message: 'Forbidden' }), {
status: 403,
headers: { 'Content-Type': 'application/json' },
}),
);
vi.stubGlobal('fetch', fetchMock);
await expect(api('/api/admin/users')).rejects.toMatchObject({
name: 'Error',
message: 'Forbidden',
statusCode: 403,
});
});
});
+1 -3
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@@ -1,5 +1,3 @@
const GATEWAY_URL = process.env['NEXT_PUBLIC_GATEWAY_URL'] ?? 'http://localhost:14242';
export interface ApiRequestInit extends Omit<RequestInit, 'body'> {
body?: unknown;
}
@@ -25,7 +23,7 @@ export async function api<T>(path: string, init?: ApiRequestInit): Promise<T> {
headers['Content-Type'] = 'application/json';
}
const res = await fetch(`${GATEWAY_URL}${path}`, {
const res = await fetch(path, {
credentials: 'include',
...rest,
headers,
+29
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@@ -0,0 +1,29 @@
import { afterEach, describe, expect, it, vi } from 'vitest';
describe('auth client origin contract', () => {
afterEach(() => {
vi.unstubAllGlobals();
vi.resetModules();
});
it('uses the same-origin BetterAuth mount at /api/auth', async () => {
const fetchMock = vi.fn<typeof fetch>();
fetchMock.mockResolvedValue(
new Response(JSON.stringify({ session: null, user: null }), {
status: 200,
headers: { 'Content-Type': 'application/json' },
}),
);
vi.stubGlobal('fetch', fetchMock);
const { authClient } = await import('./auth-client');
await authClient.getSession();
expect(fetchMock).toHaveBeenCalledOnce();
const firstCall = fetchMock.mock.calls.at(0);
expect(firstCall).toBeDefined();
const requestURL = new URL(String(firstCall?.[0]), window.location.origin);
expect(requestURL.origin).toBe(window.location.origin);
expect(requestURL.pathname).toBe('/api/auth/get-session');
});
});
+2 -1
View File
@@ -1,8 +1,9 @@
import { createAuthClient } from 'better-auth/react';
import { adminClient, genericOAuthClient } from 'better-auth/client/plugins';
// The gateway and BetterAuth client both use /api/auth. Omitting baseURL keeps
// every browser request on the current origin in development and production.
export const authClient = createAuthClient({
baseURL: process.env['NEXT_PUBLIC_GATEWAY_URL'] ?? 'http://localhost:14242',
plugins: [adminClient(), genericOAuthClient()],
});
+30
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@@ -0,0 +1,30 @@
import { describe, expect, it } from 'vitest';
import { resolveAuthCallbackURL } from './auth-redirect';
const CURRENT_ORIGIN = 'https://mosaic.example';
describe('resolveAuthCallbackURL', () => {
it('preserves a canonical same-origin path with search and hash', () => {
expect(resolveAuthCallbackURL('/projects?view=active#current', CURRENT_ORIGIN)).toBe(
'/projects?view=active#current',
);
});
it.each([
null,
'chat',
'//evil.example',
'/..//evil.com',
'/..//evil.com/x',
'/./..//evil.com',
'/../..//evil.com',
'/foo/..//evil.com',
'/\\evil.example',
'/\n//evil.example',
'/\r//evil.example',
'/\t//evil.example',
'https://evil.example/phish',
])('falls back to chat for an unsafe callback target %#', (candidate) => {
expect(resolveAuthCallbackURL(candidate, CURRENT_ORIGIN)).toBe('/chat');
});
});
+23
View File
@@ -0,0 +1,23 @@
const DEFAULT_AUTH_CALLBACK_URL = '/chat';
/**
* Return a canonical same-origin path for post-auth navigation.
*
* Parsing before comparing origins rejects protocol-relative URLs, backslash
* variants, and control characters that the WHATWG parser normalizes away.
*/
export function resolveAuthCallbackURL(candidate: string | null, currentOrigin: string): string {
if (!candidate?.startsWith('/')) return DEFAULT_AUTH_CALLBACK_URL;
try {
const expectedOrigin = new URL(currentOrigin).origin;
const resolved = new URL(candidate, expectedOrigin);
if (resolved.origin !== expectedOrigin || resolved.pathname.startsWith('//')) {
return DEFAULT_AUTH_CALLBACK_URL;
}
return `${resolved.pathname}${resolved.search}${resolved.hash}`;
} catch {
return DEFAULT_AUTH_CALLBACK_URL;
}
}
+61
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@@ -0,0 +1,61 @@
// Centralizes the type-only import of the shared `/chat` Socket.IO contract from
// the public `@mosaicstack/types` package. `import type` is erased at compile
// time, so this introduces no runtime dependency — it only reuses the exact
// payload shapes instead of redeclaring them.
import type { Socket } from 'socket.io-client';
import type {
AbortPayload,
AgentEndPayload,
AgentStartPayload,
AgentTextPayload,
AgentThinkingPayload,
ChatMessagePayload,
ClientToServerEvents,
CommandDef,
CommandManifest,
CommandManifestPayload,
ErrorPayload,
MessageAckPayload,
RoutingDecisionInfo,
ServerToClientEvents,
SessionInfoPayload,
SessionUsagePayload,
SetThinkingPayload,
SkillCommandDef,
SlashCommandApprovalResultPayload,
SlashCommandPayload,
SlashCommandResultPayload,
SystemReloadPayload,
ToolEndPayload,
ToolStartPayload,
} from '@mosaicstack/types';
export type {
AbortPayload,
AgentEndPayload,
AgentStartPayload,
AgentTextPayload,
AgentThinkingPayload,
ChatMessagePayload,
ClientToServerEvents,
CommandDef,
CommandManifest,
CommandManifestPayload,
ErrorPayload,
MessageAckPayload,
RoutingDecisionInfo,
ServerToClientEvents,
SessionInfoPayload,
SessionUsagePayload,
SetThinkingPayload,
SkillCommandDef,
SlashCommandApprovalResultPayload,
SlashCommandPayload,
SlashCommandResultPayload,
SystemReloadPayload,
ToolEndPayload,
ToolStartPayload,
};
/** The `/chat` namespace socket, narrowed to the exact typed event contract. */
export type ChatSocket = Socket<ServerToClientEvents, ClientToServerEvents>;
+98
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@@ -0,0 +1,98 @@
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
const { ioMock } = vi.hoisted(() => ({
ioMock: vi.fn(),
}));
vi.mock('socket.io-client', () => ({
io: ioMock,
}));
import { destroySocket, getSocket } from './socket';
interface MockChatSocket {
on: ReturnType<typeof vi.fn>;
offAny: ReturnType<typeof vi.fn>;
disconnect: ReturnType<typeof vi.fn>;
/** Test-only helper: fires every handler registered for `event` via
* `.on`, mirroring how a real socket.io-client instance invokes its own
* listeners (e.g. calling the registered `disconnect` handler(s) on a
* real transient disconnect). */
trigger(event: string): void;
}
function createMockSocket(): MockChatSocket {
const handlers = new Map<string, Set<() => void>>();
const mockSocket: MockChatSocket = {
on: vi.fn((event: string, handler: () => void) => {
if (!handlers.has(event)) handlers.set(event, new Set());
handlers.get(event)?.add(handler);
return mockSocket;
}),
offAny: vi.fn(() => mockSocket),
disconnect: vi.fn(() => mockSocket),
trigger(event: string): void {
for (const handler of handlers.get(event) ?? []) handler();
},
};
return mockSocket;
}
let currentMock!: MockChatSocket;
describe('chat socket', () => {
beforeEach(() => {
ioMock.mockReset();
// A fresh object per io() call so identity assertions (same singleton vs.
// a genuinely new instance) are meaningful.
ioMock.mockImplementation(() => {
currentMock = createMockSocket();
return currentMock;
});
});
afterEach(() => {
destroySocket();
});
it('creates one same-origin /chat namespace socket', () => {
const first = getSocket();
const second = getSocket();
expect(first).toBe(second);
expect(ioMock).toHaveBeenCalledOnce();
expect(ioMock).toHaveBeenCalledWith('/chat', {
withCredentials: true,
autoConnect: false,
transports: ['websocket', 'polling'],
});
});
it('keeps the same singleton instance across a transient disconnect', () => {
const first = getSocket();
// socket.ts must not react to a real socket's `disconnect` event by
// nulling the singleton — it registers no such handler at all now.
// Actually fire every handler registered via `.on('disconnect', ...)`
// (mirroring a real socket.io-client reconnect) instead of merely
// calling getSocket() again: this is what makes the test fail if
// production reintroduces `socket.on('disconnect', () => { socket =
// null; })`, since that handler would run here and null the singleton
// before the next getSocket() call.
currentMock.trigger('disconnect');
const second = getSocket();
expect(second).toBe(first);
expect(ioMock).toHaveBeenCalledOnce();
});
it('only creates a new singleton after an explicit destroySocket()', () => {
const first = getSocket();
destroySocket();
const second = getSocket();
expect(second).not.toBe(first);
expect(ioMock).toHaveBeenCalledTimes(2);
});
});
+17 -13
View File
@@ -1,23 +1,27 @@
import { io, type Socket } from 'socket.io-client';
import { io } from 'socket.io-client';
import type { ChatSocket } from './chat-contract';
const GATEWAY_URL = process.env['NEXT_PUBLIC_GATEWAY_URL'] ?? 'http://localhost:14242';
let socket: ChatSocket | null = null;
let socket: Socket | null = null;
export function getSocket(): Socket {
export function getSocket(): ChatSocket {
if (!socket) {
socket = io(`${GATEWAY_URL}/chat`, {
// socket.io-client 4.8.3's `io()` factory declaration always returns the
// default unparameterized Socket (it accepts no <ListenEvents, EmitEvents>
// generics), so this one cast is the unavoidable boundary between that and the
// typed `/chat` contract. Every other call site uses the resulting ChatSocket
// with no further assertions.
socket = io('/chat', {
withCredentials: true,
autoConnect: false,
transports: ['websocket', 'polling'],
});
}) as unknown as ChatSocket;
// Reset singleton reference when socket is fully closed so the next
// getSocket() call creates a fresh instance instead of returning a
// closed/dead socket.
socket.on('disconnect', () => {
socket = null;
});
// A transient `disconnect` (network blip, server restart) must NOT null
// the singleton: socket.io-client auto-reconnects this same instance,
// and its listeners stay registered across that reconnect. Nulling here
// previously orphaned those listeners on the next getSocket() call by
// handing back a brand-new, unconnected instance. Only destroySocket()
// (an explicit, intentional teardown) may reset the singleton.
}
return socket;
}
-48
View File
@@ -1,48 +0,0 @@
import { afterEach, describe, expect, it, vi } from 'vitest';
import { getEnabledSsoProviders, getSsoProvider } from './sso-providers';
describe('sso-providers', () => {
afterEach(() => {
vi.unstubAllEnvs();
});
it('returns the enabled providers in login button order', () => {
vi.stubEnv('NEXT_PUBLIC_WORKOS_ENABLED', 'true');
vi.stubEnv('NEXT_PUBLIC_KEYCLOAK_ENABLED', 'true');
expect(getEnabledSsoProviders()).toEqual([
{
id: 'workos',
buttonLabel: 'Continue with WorkOS',
description: 'Enterprise SSO via WorkOS',
enabled: true,
href: '/auth/provider/workos',
},
{
id: 'keycloak',
buttonLabel: 'Continue with Keycloak',
description: 'Enterprise SSO via Keycloak',
enabled: true,
href: '/auth/provider/keycloak',
},
]);
});
it('marks disabled providers without exposing them in the enabled list', () => {
vi.stubEnv('NEXT_PUBLIC_WORKOS_ENABLED', 'true');
vi.stubEnv('NEXT_PUBLIC_KEYCLOAK_ENABLED', 'false');
expect(getEnabledSsoProviders().map((provider) => provider.id)).toEqual(['workos']);
expect(getSsoProvider('keycloak')).toEqual({
id: 'keycloak',
buttonLabel: 'Continue with Keycloak',
description: 'Enterprise SSO via Keycloak',
enabled: false,
href: '/auth/provider/keycloak',
});
});
it('returns null for unknown providers', () => {
expect(getSsoProvider('authentik')).toBeNull();
});
});
-53
View File
@@ -1,53 +0,0 @@
export type SsoProviderId = 'workos' | 'keycloak';
export interface SsoProvider {
id: SsoProviderId;
buttonLabel: string;
description: string;
enabled: boolean;
href: string;
}
const PROVIDER_METADATA: Record<SsoProviderId, Omit<SsoProvider, 'enabled' | 'href'>> = {
workos: {
id: 'workos',
buttonLabel: 'Continue with WorkOS',
description: 'Enterprise SSO via WorkOS',
},
keycloak: {
id: 'keycloak',
buttonLabel: 'Continue with Keycloak',
description: 'Enterprise SSO via Keycloak',
},
};
export function getEnabledSsoProviders(): SsoProvider[] {
return (Object.keys(PROVIDER_METADATA) as SsoProviderId[])
.map((providerId) => getSsoProvider(providerId))
.filter((provider): provider is SsoProvider => provider?.enabled === true);
}
export function getSsoProvider(providerId: string): SsoProvider | null {
if (!isSsoProviderId(providerId)) {
return null;
}
return {
...PROVIDER_METADATA[providerId],
enabled: isSsoProviderEnabled(providerId),
href: `/auth/provider/${providerId}`,
};
}
function isSsoProviderId(value: string): value is SsoProviderId {
return value === 'workos' || value === 'keycloak';
}
function isSsoProviderEnabled(providerId: SsoProviderId): boolean {
switch (providerId) {
case 'workos':
return process.env['NEXT_PUBLIC_WORKOS_ENABLED'] === 'true';
case 'keycloak':
return process.env['NEXT_PUBLIC_KEYCLOAK_ENABLED'] === 'true';
}
}
+19
View File
@@ -0,0 +1,19 @@
import { StrictMode } from 'react';
import { createRoot } from 'react-dom/client';
import { RouterProvider } from 'react-router-dom';
import { ThemeProvider } from '@/providers/theme-provider';
import { createAppRouter } from '@/routes';
import '@/app/globals.css';
const container = document.getElementById('root');
if (!container) {
throw new Error('missing #root element');
}
createRoot(container).render(
<StrictMode>
<ThemeProvider>
<RouterProvider router={createAppRouter()} />
</ThemeProvider>
</StrictMode>,
);
+51
View File
@@ -0,0 +1,51 @@
import type { ReactElement } from 'react';
import { createBrowserRouter, Navigate, Outlet, type RouteObject } from 'react-router-dom';
import { LoginPage } from '@/spa/pages/login';
import { RegisterPage } from '@/spa/pages/register';
import { SsoCallbackPage } from '@/spa/pages/sso-callback';
import { ChatPage } from '@/spa/pages/chat';
import { ChatRouteErrorBoundary } from '@/spa/pages/chat-error-boundary';
import { AuthGuard, GuestGuard } from '@/spa/guards';
import { Placeholder } from '@/spa/placeholder';
function GuestLayout(): ReactElement {
return (
<div className="flex min-h-screen items-center justify-center bg-surface-bg px-4 py-8">
<div className="w-full max-w-md rounded-xl border border-surface-border bg-surface-card p-8 shadow-lg">
<Outlet />
</div>
</div>
);
}
export const routes: RouteObject[] = [
{
element: <GuestGuard />,
children: [
{
element: <GuestLayout />,
children: [
{ path: '/login', element: <LoginPage /> },
{ path: '/register', element: <RegisterPage /> },
{ path: '/auth/provider/:provider', element: <SsoCallbackPage /> },
],
},
],
},
{
element: <AuthGuard />,
children: [
{ path: '/', element: <Navigate to="/chat" replace /> },
{ path: '/chat', element: <ChatPage />, errorElement: <ChatRouteErrorBoundary /> },
{ path: '/projects', element: <Placeholder title="Projects" /> },
{ path: '/projects/:id', element: <Placeholder title="Project" /> },
{ path: '/tasks', element: <Placeholder title="Tasks" /> },
{ path: '/settings', element: <Placeholder title="Settings" /> },
{ path: '/admin', element: <Placeholder title="Admin" /> },
],
},
];
export function createAppRouter(): ReturnType<typeof createBrowserRouter> {
return createBrowserRouter(routes);
}
@@ -0,0 +1,280 @@
import { act } from 'react';
import { createRoot, type Root } from 'react-dom/client';
import { afterAll, afterEach, beforeAll, describe, expect, it, vi } from 'vitest';
import { CommandsPanel } from './commands-panel';
beforeAll(() => {
Object.defineProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT', {
configurable: true,
value: true,
});
});
afterAll(() => {
Reflect.deleteProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT');
});
let root: Root | null;
let container: HTMLElement | null;
async function render(node: Parameters<Root['render']>[0]): Promise<void> {
container = document.createElement('div');
document.body.append(container);
root = createRoot(container);
await act(async () => {
root?.render(node);
});
}
afterEach(async () => {
await act(async () => {
root?.unmount();
});
document.body.replaceChildren();
root = null;
container = null;
});
describe('CommandsPanel', () => {
it('shows the frozen local pendingApproval args in the confirmation area, regardless of misleading server message text', async () => {
await render(
<CommandsPanel
manifest={null}
results={[]}
approval={{
conversationId: 'c1',
command: 'deploy', // matches pendingApproval — this is a legitimately approved request
success: true,
approvalId: 'ap1',
expiresAt: '2026-01-01T00:00:00.000Z',
// Free-text server message claims a different, less alarming target
// than what will actually be sent — the UI must not rely on this.
message: 'This will only affect the staging environment.',
}}
pendingApproval={{ command: 'deploy', args: 'prod' }}
hasConversation
onExecute={vi.fn()}
onApprove={vi.fn()}
onRunApproved={vi.fn()}
/>,
);
// The exact frozen combined action is visible...
expect(container?.textContent).toContain('/deploy');
expect(container?.textContent).toContain('prod');
// ...and the misleading server free-text is never shown next to it.
expect(container?.textContent).not.toContain('staging environment');
});
it('does not throw when a manifest commands entry is null', async () => {
const manifest = {
commands: [
null,
{
name: 'model',
aliases: [],
description: 'Change the active model',
scope: 'core',
execution: 'socket',
available: true,
},
],
skills: [null],
version: 1,
} as unknown as Parameters<typeof CommandsPanel>[0]['manifest'];
await expect(
render(
<CommandsPanel
manifest={manifest}
results={[]}
approval={null}
pendingApproval={null}
hasConversation={false}
onExecute={vi.fn()}
onApprove={vi.fn()}
onRunApproved={vi.fn()}
/>,
),
).resolves.not.toThrow();
expect(container?.textContent).toContain('model');
});
it('shows an explicit no-args fallback when the frozen pendingApproval has no args', async () => {
await render(
<CommandsPanel
manifest={null}
results={[]}
approval={{
conversationId: 'c1',
command: 'deploy',
success: true,
approvalId: 'ap1',
expiresAt: '2026-01-01T00:00:00.000Z',
}}
pendingApproval={{ command: 'deploy' }}
hasConversation
onExecute={vi.fn()}
onApprove={vi.fn()}
onRunApproved={vi.fn()}
/>,
);
expect(container?.textContent?.toLowerCase()).toContain('no args');
});
it('renders skills from a skills-only manifest', async () => {
await render(
<CommandsPanel
manifest={{
commands: [],
skills: [{ name: 'brave-search', description: 'Search the web', available: true }],
version: 1,
}}
results={[]}
approval={null}
pendingApproval={null}
hasConversation={false}
onExecute={vi.fn()}
onApprove={vi.fn()}
onRunApproved={vi.fn()}
/>,
);
expect(container?.textContent).toContain('brave-search');
expect(container?.textContent).toContain('Search the web');
});
it('does not show the Run affordance when approval.success/approvalId are objects, even though command matches pendingApproval', async () => {
const approval = {
conversationId: 'c1',
command: 'deploy',
success: { truthy: 'object' },
approvalId: { also: 'object' },
} as unknown as Parameters<typeof CommandsPanel>[0]['approval'];
await render(
<CommandsPanel
manifest={null}
results={[]}
approval={approval}
pendingApproval={{ command: 'deploy', args: 'prod' }}
hasConversation
onExecute={vi.fn()}
onApprove={vi.fn()}
onRunApproved={vi.fn()}
/>,
);
expect(
[...(container?.querySelectorAll('button') ?? [])].some((button) =>
button.textContent?.includes('Run approved command'),
),
).toBe(false);
});
it('shows the guarded server-provided denial reason for a denied approval', async () => {
await render(
<CommandsPanel
manifest={null}
results={[]}
approval={{
conversationId: 'c1',
command: 'deploy',
success: false,
message: 'Not authorized',
}}
pendingApproval={{ command: 'deploy', args: 'prod' }}
hasConversation
onExecute={vi.fn()}
onApprove={vi.fn()}
onRunApproved={vi.fn()}
/>,
);
expect(container?.textContent).toContain('Not authorized');
});
it('falls back to a stable "Denied." copy when a denial has no usable message', async () => {
await render(
<CommandsPanel
manifest={null}
results={[]}
approval={{ conversationId: 'c1', command: 'deploy', success: false }}
pendingApproval={{ command: 'deploy', args: 'prod' }}
hasConversation
onExecute={vi.fn()}
onApprove={vi.fn()}
onRunApproved={vi.fn()}
/>,
);
expect(container?.textContent).toContain('Denied.');
});
it('shows the guarded contract-provided reason for a failed command result, falling back to a stable copy only when absent', async () => {
await render(
<CommandsPanel
manifest={null}
results={[
{ conversationId: 'c1', command: 'model', success: false, message: 'Unknown model' },
{ conversationId: 'c1', command: 'deploy', success: false },
]}
approval={null}
pendingApproval={null}
hasConversation={false}
onExecute={vi.fn()}
onApprove={vi.fn()}
onRunApproved={vi.fn()}
/>,
);
expect(container?.textContent).toContain('Unknown model');
expect(container?.textContent).toContain('Command failed.');
});
it('bounds an oversized command result message at the render site as defense-in-depth', async () => {
const hostileMessage = 'y'.repeat(50_000);
await render(
<CommandsPanel
manifest={null}
results={[
{ conversationId: 'c1', command: 'model', success: false, message: hostileMessage },
]}
approval={null}
pendingApproval={null}
hasConversation={false}
onExecute={vi.fn()}
onApprove={vi.fn()}
onRunApproved={vi.fn()}
/>,
);
const text = container?.textContent ?? '';
expect(text.length).toBeLessThan(hostileMessage.length);
});
it('does not throw when the manifest fields are malformed (non-array commands/skills)', async () => {
const manifest = {
commands: 'not-an-array',
skills: null,
version: 1,
} as unknown as Parameters<typeof CommandsPanel>[0]['manifest'];
await expect(
render(
<CommandsPanel
manifest={manifest}
results={[]}
approval={null}
pendingApproval={null}
hasConversation={false}
onExecute={vi.fn()}
onApprove={vi.fn()}
onRunApproved={vi.fn()}
/>,
),
).resolves.not.toThrow();
});
});
+164
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@@ -0,0 +1,164 @@
import { useState, type ReactElement } from 'react';
import type { PendingApproval } from './use-chat-connection';
import { MAX_COMMAND_MESSAGE_CHARS } from './limits';
import { asNonEmptyString, asString } from './runtime-guards';
import type {
CommandManifest,
SlashCommandApprovalResultPayload,
SlashCommandResultPayload,
} from '@/lib/chat-contract';
/** Stable fallback copy shown for a failed command only when the server's
* own guarded, non-empty `message` (e.g. "Unknown model") is absent or
* malformed the structured contract reason itself is otherwise shown
* directly, never a raw thrown exception, stack trace, or object value. */
const COMMAND_FAILURE_COPY = 'Command failed.';
/** Render-site defense-in-depth: `use-chat-connection.ts` already bounds a
* stored command:result message at ingestion, but this component must never
* assume every caller went through that path bounding again here means a
* hostile/oversized message can never force an unbounded render. */
function boundMessage(value: string): string {
return value.length > MAX_COMMAND_MESSAGE_CHARS
? value.slice(0, MAX_COMMAND_MESSAGE_CHARS)
: value;
}
interface CommandsPanelProps {
manifest: CommandManifest | null;
results: SlashCommandResultPayload[];
approval: SlashCommandApprovalResultPayload | null;
pendingApproval: PendingApproval | null;
hasConversation: boolean;
onExecute: (input: { command: string; args?: string }) => void;
onApprove: (input: { command: string; args?: string }) => void;
onRunApproved: () => void;
}
export function CommandsPanel({
manifest,
results,
approval,
pendingApproval,
hasConversation,
onExecute,
onApprove,
onRunApproved,
}: CommandsPanelProps): ReactElement {
const [command, setCommand] = useState('');
const [args, setArgs] = useState('');
// Defense-in-depth: the reducer already normalizes success/approvalId
// before storing `approval`, but a matching command string alone must
// never be trusted here either — require the literal boolean `true` and a
// non-empty string approvalId, not merely truthy values.
const canRunApproved =
approval?.success === true &&
typeof approval.approvalId === 'string' &&
approval.approvalId.length > 0 &&
!!pendingApproval &&
pendingApproval.command === approval.command;
// A manifest arrives from the server as untyped JSON at runtime — guard
// both collections before mapping so a malformed manifest cannot throw.
const commands = Array.isArray(manifest?.commands) ? manifest.commands : [];
const skills = Array.isArray(manifest?.skills) ? manifest.skills : [];
return (
<section aria-label="Commands" className="flex flex-col gap-2 border-b px-4 py-3 text-xs">
{commands.length > 0 ? (
<ul aria-label="Available commands" className="flex flex-col gap-1">
{commands.map((cmd, index) => (
<li key={asString(cmd?.name) || `cmd-${index}`}>
<strong>/{asString(cmd?.name)}</strong> {asString(cmd?.description)}
</li>
))}
</ul>
) : null}
{skills.length > 0 ? (
<ul aria-label="Available skills" className="flex flex-col gap-1">
{skills.map((skill, index) => (
<li key={asString(skill?.name) || `skill-${index}`}>
<strong>/skill:{asString(skill?.name)}</strong> {asString(skill?.description)}
</li>
))}
</ul>
) : null}
<div className="flex flex-wrap items-center gap-2">
<input
aria-label="Command name"
value={command}
onChange={(event) => setCommand(event.target.value)}
placeholder="command"
/>
<input
aria-label="Command arguments"
value={args}
onChange={(event) => setArgs(event.target.value)}
placeholder="args (optional)"
/>
<button
type="button"
disabled={!hasConversation || !command.trim()}
onClick={() => onExecute({ command: command.trim(), args: args.trim() || undefined })}
>
Run command
</button>
<button
type="button"
disabled={!hasConversation || !command.trim()}
onClick={() => onApprove({ command: command.trim(), args: args.trim() || undefined })}
>
Request approval
</button>
</div>
{approval ? (
<div role={approval.success ? 'status' : 'alert'} className="flex items-center gap-2">
{/* A successful approval shows stable client copy only never
the server-controlled approval.message or echoed
approval.command as the primary confirmation. The frozen local
pendingApproval below (not this line) is the sole authoritative
statement of what will run. A denial, by contrast, is not an
execution authority and safely surfaces the guarded structured
reason the server gave (e.g. "Not authorized"), falling back to
a stable copy only when absent/malformed. */}
<span>
{approval.success ? 'Approved.' : asNonEmptyString(approval.message, 'Denied.')}
</span>
{canRunApproved && pendingApproval ? (
<>
{/* Authoritative frozen local command+args what the click below
will actually emit. The server's `approval` above is display-only
and must never be trusted to represent the executed payload. */}
<span>
Will run: /{pendingApproval.command}{' '}
{pendingApproval.args ? pendingApproval.args : '(no args)'}
</span>
<button type="button" onClick={onRunApproved}>
Run approved command
</button>
</>
) : null}
</div>
) : null}
{results.length > 0 ? (
<ul aria-label="Command results" className="flex flex-col gap-1">
{results.map((result, index) => (
<li key={`${result.command}-${index}`} role={result.success ? 'status' : 'alert'}>
/{asString(result.command)}: {result.success ? 'success' : 'failed'}
{result.success
? typeof result.message === 'string' && result.message
? `${boundMessage(result.message)}`
: ''
: `${boundMessage(asNonEmptyString(result.message, COMMAND_FAILURE_COPY))}`}
</li>
))}
</ul>
) : null}
</section>
);
}
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import { useState, type KeyboardEvent, type ReactElement } from 'react';
interface ComposerProps {
onSend: (input: { content: string; provider?: string; modelId?: string }) => void;
onStop: () => void;
streaming: boolean;
/** True from local send time through server turn startup/ack and
* throughout streaming a superset of `streaming` that also covers the
* pre-ack window where a second send could otherwise slip through. */
sending: boolean;
hasConversation: boolean;
}
export function Composer({
onSend,
onStop,
streaming,
sending,
hasConversation,
}: ComposerProps): ReactElement {
const [content, setContent] = useState('');
const [provider, setProvider] = useState('');
const [modelId, setModelId] = useState('');
const busy = streaming || sending;
function submit(): void {
if (busy) return;
const trimmed = content.trim();
if (!trimmed) return;
onSend({
content: trimmed,
provider: provider.trim() || undefined,
modelId: modelId.trim() || undefined,
});
setContent('');
}
function handleKeyDown(event: KeyboardEvent<HTMLTextAreaElement>): void {
if (event.key === 'Enter' && !event.shiftKey) {
event.preventDefault();
submit();
}
}
return (
<form
onSubmit={(event) => {
event.preventDefault();
submit();
}}
className="flex flex-col gap-2 border-t p-4"
>
<div className="flex flex-wrap gap-2">
<input
aria-label="Provider"
value={provider}
onChange={(event) => setProvider(event.target.value)}
placeholder="Provider (optional)"
className="rounded border px-2 py-1 text-xs"
/>
<input
aria-label="Model"
value={modelId}
onChange={(event) => setModelId(event.target.value)}
placeholder="Model (optional)"
className="rounded border px-2 py-1 text-xs"
/>
</div>
<div className="flex items-end gap-2">
<textarea
aria-label="Message"
value={content}
onChange={(event) => setContent(event.target.value)}
onKeyDown={handleKeyDown}
rows={2}
placeholder="Message… (Enter to send, Shift+Enter for a new line)"
className="flex-1 resize-none rounded border px-3 py-2 text-sm"
/>
<button
type="submit"
disabled={!content.trim() || busy}
className="rounded px-3 py-2 text-sm font-medium"
>
Send
</button>
<button
type="button"
aria-label="Stop"
disabled={!hasConversation || !streaming}
onClick={onStop}
className="rounded px-3 py-2 text-sm font-medium"
>
Stop
</button>
</div>
</form>
);
}
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/**
* Bounds on server-fed chat state. A hostile or malfunctioning gateway can
* flood any of these collections; caps keep memory/render cost flat instead
* of growing unboundedly for the lifetime of the connection.
*/
/** Max characters retained for the in-flight streamed text/thinking buffers. */
export const MAX_STREAM_CHARS = 20_000;
/** Max transcript turns retained (oldest dropped first). */
export const MAX_MESSAGES = 500;
/** Max tool-call entries (including anomaly entries) retained per turn history. */
export const MAX_TOOLS = 200;
/** Max slash-command results retained. */
export const MAX_COMMAND_RESULTS = 200;
/** Max commands/skills accepted from a single manifest push. */
export const MAX_MANIFEST_ITEMS = 500;
/** Max executed approval IDs remembered for single-flight dedup. */
export const MAX_EXECUTED_APPROVAL_IDS = 200;
/** Max characters retained for a single command:result message a hostile
* or malfunctioning gateway must not be able to push an unbounded curated
* success/failure reason into state (or, defensively, onto the page). */
export const MAX_COMMAND_MESSAGE_CHARS = 1_000;
@@ -0,0 +1,39 @@
import type { ReactElement } from 'react';
import type { ChatTranscriptMessage } from './use-chat-connection';
interface MessageTranscriptProps {
messages: ChatTranscriptMessage[];
streaming: boolean;
text: string;
}
export function MessageTranscript({
messages,
streaming,
text,
}: MessageTranscriptProps): ReactElement {
return (
<div
role="log"
aria-live="polite"
aria-label="Conversation"
className="flex flex-1 flex-col gap-3 overflow-y-auto p-4"
>
{messages.map((message) => (
<div key={message.id} data-role={message.role} className="whitespace-pre-wrap text-sm">
<span className="font-medium">{message.role === 'user' ? 'You' : 'Assistant'}: </span>
<span>{message.text}</span>
{message.thinking ? (
<div className="pt-1 text-xs italic opacity-70">{message.thinking}</div>
) : null}
</div>
))}
{streaming ? (
<div data-role="assistant-streaming" className="whitespace-pre-wrap text-sm">
<span className="font-medium">Assistant: </span>
<span>{text || 'Thinking…'}</span>
</div>
) : null}
</div>
);
}
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/**
* Socket.IO payloads are only statically typed at the call site a
* misbehaving or compromised gateway can send anything at runtime. These
* guards protect the dereference sites that would otherwise throw (`.map` on
* a non-array, `.toFixed` on a non-number) or render an object as a React
* child.
*/
export function asString(value: unknown, fallback = ''): string {
return typeof value === 'string' ? value : fallback;
}
/** Like `asString`, but an empty string also falls back used for guarded
* contract-provided reason strings (e.g. a denial or failure message) where
* an empty string is not a meaningful value to display in place of the
* stable fallback copy. */
export function asNonEmptyString(value: unknown, fallback: string): string {
return typeof value === 'string' && value.length > 0 ? value : fallback;
}
export function asFiniteNumber(value: unknown, fallback = 0): number {
return typeof value === 'number' && Number.isFinite(value) ? value : fallback;
}
/** Like `asFiniteNumber`, but returns `null` on failure instead of a numeric
* fallback callers that must not fabricate a plausible-looking value (e.g.
* `0 tokens` / `$0.0000` for genuinely unknown usage) use this to render an
* honest "unavailable" label instead. */
export function asFiniteNumberOrNull(value: unknown): number | null {
return typeof value === 'number' && Number.isFinite(value) ? value : null;
}
export function asStringArray(value: unknown): string[] {
return Array.isArray(value) && value.every((item) => typeof item === 'string') ? value : [];
}
export function isRecord(value: unknown): value is Record<string, unknown> {
return typeof value === 'object' && value !== null;
}
/** The single point of truth for what counts as a valid conversation ID
* anywhere a scoped server event may adopt one into state a non-empty
* string, nothing else. Every site that establishes or compares
* `state.conversationId` against a raw socket payload must route through
* this guard so a malformed first frame (null/object/number/empty string)
* can never be adopted verbatim. */
export function asConversationId(value: unknown): string | null {
return typeof value === 'string' && value.length > 0 ? value : null;
}
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import type { ReactElement } from 'react';
import type { SessionInfoPayload } from '@/lib/chat-contract';
import { MAX_MANIFEST_ITEMS } from './limits';
import { asString, asStringArray } from './runtime-guards';
interface SessionPanelProps {
sessionInfo: SessionInfoPayload | null;
onSetThinking: (level: string) => void;
}
const THINKING_LEVEL_UNAVAILABLE = '';
export function SessionPanel({
sessionInfo,
onSetThinking,
}: SessionPanelProps): ReactElement | null {
if (!sessionInfo) return null;
// The reducer already caps this before storing it, but the render site
// defends independently — a hostile payload must never be able to force
// this <select> to lay out an unbounded number of options.
const availableThinkingLevels = asStringArray(sessionInfo.availableThinkingLevels).slice(
0,
MAX_MANIFEST_ITEMS,
);
const hasThinkingLevels = availableThinkingLevels.length > 0;
return (
<section
aria-label="Session info"
className="flex flex-wrap items-center gap-3 border-b px-4 py-2 text-xs"
>
<span>{asString(sessionInfo.provider, 'unknown')}</span>
<span>{asString(sessionInfo.modelId, 'unknown')}</span>
<label className="flex items-center gap-2">
<span>Thinking level</span>
<select
aria-label="Thinking level"
value={
hasThinkingLevels ? asString(sessionInfo.thinkingLevel) : THINKING_LEVEL_UNAVAILABLE
}
onChange={(event) => {
// The placeholder option is not a real, settable level — a
// malformed availableThinkingLevels list must never let the
// client emit set:thinking for it.
if (!hasThinkingLevels) return;
onSetThinking(event.target.value);
}}
>
{hasThinkingLevels ? (
availableThinkingLevels.map((level) => (
<option key={level} value={level}>
{level}
</option>
))
) : (
<option value={THINKING_LEVEL_UNAVAILABLE}>Thinking level unavailable</option>
)}
</select>
</label>
{sessionInfo.routingDecision ? (
<span title={asString(sessionInfo.routingDecision.ruleName)}>
{asString(sessionInfo.routingDecision.reason)}
</span>
) : null}
</section>
);
}
@@ -0,0 +1,125 @@
import { vi } from 'vitest';
import type { ClientToServerEvents, ServerToClientEvents } from '@/lib/chat-contract';
type ServerEvent = keyof ServerToClientEvents;
type ClientEvent = keyof ClientToServerEvents;
type ServerHandler<K extends ServerEvent> = ServerToClientEvents[K];
type ClientPayload<K extends ClientEvent> = Parameters<ClientToServerEvents[K]>[0];
export interface EmittedEvent<K extends ClientEvent = ClientEvent> {
event: K;
payload: ClientPayload<K>;
}
/** The subset of a Socket.IO `ChatSocket` that `useChatConnection` drives. */
export interface FakeChatSocket {
connected: boolean;
connect(): FakeChatSocket;
on<K extends ServerEvent>(event: K, handler: ServerHandler<K>): FakeChatSocket;
off<K extends ServerEvent>(event: K, handler: ServerHandler<K>): FakeChatSocket;
emit<K extends ClientEvent>(event: K, payload: ClientPayload<K>): FakeChatSocket;
}
/**
* A typed in-memory stand-in for `getSocket()`. Unlike a bare
* `(event: string, payload: unknown) => void` mock, every public method here is
* checked against the real `/chat` contract a typo'd event name or a payload
* missing a required field fails to compile instead of silently no-op'ing at
* runtime.
*/
/** Socket.IO's built-in connection-state events. Not part of the app-level
* ServerToClientEvents contract, but real sockets always support them and
* `useChatConnection` registers a `disconnect` handler on the real socket. */
type LifecycleEvent = 'connect' | 'disconnect';
export function createFakeChatSocket(): {
socket: FakeChatSocket;
listeners: Map<ServerEvent, Set<(payload: never) => void>>;
emitted: EmittedEvent[];
serverEmit<K extends ServerEvent>(
event: K,
payload: Parameters<ServerToClientEvents[K]>[0],
): void;
/** Escape hatch for malformed-payload tests: bypasses the compile-time
* payload contract to simulate a genuinely untrusted runtime value from the
* server, e.g. a `session:info` with a non-array `availableThinkingLevels`. */
serverEmitRaw(event: ServerEvent, payload: unknown): void;
/** Simulates a transient Socket.IO `disconnect` fires any handler(s)
* registered via `socket.on('disconnect', ...)` without clearing any
* listeners, mirroring how a real reconnecting socket behaves. */
simulateDisconnect(): void;
/** Simulates socket.io-client's automatic reconnect of the *same*
* instance after a transient disconnect: marks the socket connected again
* and fires any handler(s) registered via `socket.on('connect', ...)`,
* without clearing or replacing any listeners. */
simulateReconnect(): void;
} {
const listeners = new Map<ServerEvent, Set<(payload: never) => void>>();
const emitted: EmittedEvent[] = [];
// Internal storage is intentionally keyed loosely (the per-event handler shape
// varies by K, which a single Map can't express); the generic signatures on the
// exported `socket`/`serverEmit` above and below are what keep test call sites
// type-checked against ServerToClientEvents/ClientToServerEvents.
const socket = {
connected: false,
connect: vi.fn(function connect(this: void) {
socket.connected = true;
return socket;
}),
on: vi.fn(function on(this: void, event: ServerEvent, handler: (payload: never) => void) {
if (!listeners.has(event)) listeners.set(event, new Set());
listeners.get(event)?.add(handler);
return socket;
}),
off: vi.fn(function off(this: void, event: ServerEvent, handler: (payload: never) => void) {
listeners.get(event)?.delete(handler);
return socket;
}),
emit: vi.fn(function emit(this: void, event: ClientEvent, payload: unknown) {
emitted.push({ event, payload } as EmittedEvent);
return socket;
}),
} as unknown as FakeChatSocket;
function serverEmit<K extends ServerEvent>(
event: K,
payload: Parameters<ServerToClientEvents[K]>[0],
): void {
for (const handler of listeners.get(event) ?? []) {
(handler as (payload: Parameters<ServerToClientEvents[K]>[0]) => void)(payload);
}
}
function serverEmitRaw(event: ServerEvent, payload: unknown): void {
for (const handler of listeners.get(event) ?? []) {
(handler as (payload: unknown) => void)(payload);
}
}
function simulateDisconnect(): void {
socket.connected = false;
const lifecycleKey = 'disconnect' satisfies LifecycleEvent as unknown as ServerEvent;
for (const handler of listeners.get(lifecycleKey) ?? []) {
(handler as () => void)();
}
}
function simulateReconnect(): void {
socket.connected = true;
const lifecycleKey = 'connect' satisfies LifecycleEvent as unknown as ServerEvent;
for (const handler of listeners.get(lifecycleKey) ?? []) {
(handler as () => void)();
}
}
return {
socket,
listeners,
emitted,
serverEmit,
serverEmitRaw,
simulateDisconnect,
simulateReconnect,
};
}
@@ -0,0 +1,63 @@
import { act } from 'react';
import { createRoot, type Root } from 'react-dom/client';
import { afterAll, afterEach, beforeAll, describe, expect, it, vi } from 'vitest';
import { ToolCallList } from './tool-call-list';
beforeAll(() => {
Object.defineProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT', {
configurable: true,
value: true,
});
});
afterAll(() => {
Reflect.deleteProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT');
});
let root: Root | null;
let container: HTMLElement | null;
async function render(node: Parameters<Root['render']>[0]): Promise<void> {
container = document.createElement('div');
document.body.append(container);
root = createRoot(container);
await act(async () => {
root?.render(node);
});
}
afterEach(async () => {
await act(async () => {
root?.unmount();
});
document.body.replaceChildren();
root = null;
container = null;
});
describe('ToolCallList', () => {
it('renders two entries independently, without a duplicate-key warning, when a valid toolCallId is shared', async () => {
const consoleError = vi.spyOn(console, 'error').mockImplementation(() => {});
await render(
<ToolCallList
tools={[
{ toolCallId: 'dup', toolName: 'search', status: 'success' },
{ toolCallId: 'dup', toolName: 'search', status: 'running' },
]}
/>,
);
const items = [...(container?.querySelectorAll('li') ?? [])];
expect(items).toHaveLength(2);
expect(items[0]?.textContent).toContain('success');
expect(items[1]?.textContent).toContain('running');
const duplicateKeyWarning = consoleError.mock.calls.some((args) =>
args.some((arg) => typeof arg === 'string' && arg.includes('same key')),
);
expect(duplicateKeyWarning).toBe(false);
consoleError.mockRestore();
});
});
+24
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import type { ReactElement } from 'react';
import type { ToolCallState } from './use-chat-connection';
export function ToolCallList({ tools }: { tools: ToolCallState[] }): ReactElement | null {
if (tools.length === 0) return null;
return (
<ul aria-label="Tool calls" className="flex flex-col gap-1 px-4 pb-2 text-xs">
{tools.map((tool, index) => (
<li
// A valid server-controlled toolCallId can legitimately repeat
// (e.g. two tool:start events sharing one id) — keying on it alone
// would give React two identical keys. Pairing it with its
// (stable, append-only) render index keeps every key unique.
key={`${tool.toolCallId}-${index}`}
role={tool.status === 'error' || tool.status === 'anomaly' ? 'alert' : 'status'}
>
{tool.toolName} {' '}
{tool.status === 'anomaly' ? 'unexpected end (unknown tool call)' : tool.status}
</li>
))}
</ul>
);
}
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import { act } from 'react';
import { createRoot, type Root } from 'react-dom/client';
import { createMemoryRouter, RouterProvider, type RouteObject } from 'react-router-dom';
import { afterAll, afterEach, beforeAll, describe, expect, it, vi } from 'vitest';
const { useSessionMock } = vi.hoisted(() => ({
useSessionMock: vi.fn(),
}));
vi.mock('@/lib/auth-client', () => ({
useSession: useSessionMock,
}));
import { AuthGuard, GuestGuard } from './guards';
interface RenderedRouter {
container: HTMLDivElement;
router: ReturnType<typeof createMemoryRouter>;
}
const mountedRoots: Root[] = [];
beforeAll(() => {
Object.defineProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT', {
configurable: true,
value: true,
});
});
afterAll(() => {
Reflect.deleteProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT');
});
async function renderRouter(
routeObjects: RouteObject[],
initialEntry: string,
): Promise<RenderedRouter> {
const container = document.createElement('div');
document.body.append(container);
const router = createMemoryRouter(routeObjects, { initialEntries: [initialEntry] });
const root = createRoot(container);
mountedRoots.push(root);
await act(async () => {
root.render(<RouterProvider router={router} />);
});
return { container, router };
}
afterEach(async () => {
for (const root of mountedRoots.splice(0)) {
await act(async () => {
root.unmount();
});
}
document.body.replaceChildren();
useSessionMock.mockReset();
});
const guestRoutes: RouteObject[] = [
{
path: '/login',
element: <GuestGuard />,
children: [{ index: true, element: <p>Guest page</p> }],
},
{ path: '/chat', element: <p>Chat page</p> },
];
const authenticatedRoutes: RouteObject[] = [
{
path: '/chat',
element: <AuthGuard />,
children: [{ index: true, element: <p>Private page</p> }],
},
{ path: '/login', element: <p>Login page</p> },
];
describe('GuestGuard', () => {
it('renders the guest outlet while session lookup is pending', async () => {
useSessionMock.mockReturnValue({ data: null, isPending: true });
const view = await renderRouter(guestRoutes, '/login');
expect(view.container.textContent).toContain('Guest page');
expect(view.router.state.location.pathname).toBe('/login');
});
it('renders the guest outlet when no session exists', async () => {
useSessionMock.mockReturnValue({ data: null, isPending: false });
const view = await renderRouter(guestRoutes, '/login');
expect(view.container.textContent).toContain('Guest page');
expect(view.router.state.location.pathname).toBe('/login');
});
it('redirects an authenticated session to chat', async () => {
useSessionMock.mockReturnValue({ data: { user: { id: 'user-1' } }, isPending: false });
const view = await renderRouter(guestRoutes, '/login');
expect(view.container.textContent).toContain('Chat page');
expect(view.router.state.location.pathname).toBe('/chat');
});
});
describe('AuthGuard', () => {
it('renders the existing loading treatment while session lookup is pending', async () => {
useSessionMock.mockReturnValue({ data: null, isPending: true });
const view = await renderRouter(authenticatedRoutes, '/chat');
expect(view.container.textContent).toContain('Loading...');
expect(view.router.state.location.pathname).toBe('/chat');
});
it('redirects an unauthenticated visitor to login', async () => {
useSessionMock.mockReturnValue({ data: null, isPending: false });
const view = await renderRouter(authenticatedRoutes, '/chat');
expect(view.container.textContent).toContain('Login page');
expect(view.router.state.location.pathname).toBe('/login');
});
it('renders the authenticated outlet when a session exists', async () => {
useSessionMock.mockReturnValue({ data: { user: { id: 'user-1' } }, isPending: false });
const view = await renderRouter(authenticatedRoutes, '/chat');
expect(view.container.textContent).toContain('Private page');
expect(view.router.state.location.pathname).toBe('/chat');
});
});
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import type { ReactElement } from 'react';
import { Navigate, Outlet } from 'react-router-dom';
import { useSession } from '@/lib/auth-client';
export function GuestGuard(): ReactElement {
const { data: session } = useSession();
return session ? <Navigate to="/chat" replace /> : <Outlet />;
}
export function AuthGuard(): ReactElement {
const { data: session, isPending } = useSession();
if (isPending) {
return (
<div className="flex min-h-screen items-center justify-center">
<div className="text-sm text-text-muted">Loading...</div>
</div>
);
}
return session ? <Outlet /> : <Navigate to="/login" replace />;
}
@@ -0,0 +1,87 @@
import { act } from 'react';
import { createRoot, type Root } from 'react-dom/client';
import { createMemoryRouter, RouterProvider, type RouteObject } from 'react-router-dom';
import { afterAll, afterEach, beforeAll, describe, expect, it, vi } from 'vitest';
const { useSessionMock } = vi.hoisted(() => ({
useSessionMock: vi.fn(),
}));
vi.mock('@/lib/auth-client', () => ({
useSession: useSessionMock,
}));
import { routes } from '@/routes';
beforeAll(() => {
Object.defineProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT', {
configurable: true,
value: true,
});
});
afterAll(() => {
Reflect.deleteProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT');
});
function Boom(): never {
throw new Error('render blew up');
}
/** Recursively clones the real exported route table, replacing only the
* `/chat` route's `element` with `<Boom />` every other route (including
* the real `AuthGuard` nesting and the real `/chat` `errorElement`) is left
* exactly as exported. This is what makes the test fail if a future change
* removes the real route's `errorElement`, unlike a hand-built independent
* route tree that could drift from production undetected. */
function replaceChatElementWithBoom(nodes: RouteObject[]): RouteObject[] {
return nodes.map((node) => {
const cloned: RouteObject = { ...node };
if (cloned.path === '/chat') {
cloned.element = <Boom />;
}
if (cloned.children) {
cloned.children = replaceChatElementWithBoom(cloned.children);
}
return cloned;
});
}
let root: Root | null;
let container: HTMLElement;
afterEach(async () => {
await act(async () => {
root?.unmount();
});
document.body.replaceChildren();
root = null;
useSessionMock.mockReset();
});
describe('ChatRouteErrorBoundary', () => {
it('renders a recoverable, non-blank fallback when the /chat route element throws during render', async () => {
useSessionMock.mockReturnValue({ data: { user: { id: 'user-1' } }, isPending: false });
const routeObjects = replaceChatElementWithBoom(routes);
const router = createMemoryRouter(routeObjects, { initialEntries: ['/chat'] });
container = document.createElement('div');
document.body.append(container);
root = createRoot(container);
const consoleErrorSpy = vi.spyOn(console, 'error').mockImplementation(() => {});
try {
await act(async () => {
root?.render(<RouterProvider router={router} />);
});
expect(consoleErrorSpy).toHaveBeenCalled();
} finally {
consoleErrorSpy.mockRestore();
}
expect(container.textContent).not.toBe('');
expect(container.querySelector('[role="alert"]')).toBeTruthy();
});
});
@@ -0,0 +1,22 @@
import type { ReactElement } from 'react';
import { useRouteError } from 'react-router-dom';
/**
* `/chat` renders live, server-driven state (streamed text, tool calls,
* manifests) that can carry malformed payloads no compile-time contract can
* fully rule out at every dereference site. This is the last line of
* defense: if something still throws during render, show a recoverable
* alert instead of leaving the user on a blank/white screen.
*/
export function ChatRouteErrorBoundary(): ReactElement {
useRouteError();
return (
<div role="alert" className="flex min-h-screen flex-col items-center justify-center gap-3 p-8">
<p className="text-sm font-medium">Something went wrong loading chat.</p>
<a href="/chat" className="text-sm underline">
Reload chat
</a>
</div>
);
}
+636
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@@ -0,0 +1,636 @@
import { act } from 'react';
import { createRoot, type Root } from 'react-dom/client';
import { afterAll, afterEach, beforeAll, beforeEach, describe, expect, it, vi } from 'vitest';
import { createFakeChatSocket } from '@/spa/chat/test-support/fake-chat-socket';
import { MAX_MANIFEST_ITEMS } from '@/spa/chat/limits';
const { getSocketMock, destroySocketMock } = vi.hoisted(() => ({
getSocketMock: vi.fn(),
destroySocketMock: vi.fn(),
}));
vi.mock('@/lib/socket', () => ({
getSocket: getSocketMock,
destroySocket: destroySocketMock,
}));
import { ChatPage } from './chat';
function setValue(el: HTMLInputElement | HTMLTextAreaElement, value: string): void {
const proto =
el instanceof HTMLTextAreaElement ? HTMLTextAreaElement.prototype : HTMLInputElement.prototype;
const setter = Object.getOwnPropertyDescriptor(proto, 'value')?.set;
setter?.call(el, value);
el.dispatchEvent(new Event('input', { bubbles: true }));
}
function selectValue(el: HTMLSelectElement, value: string): void {
const setter = Object.getOwnPropertyDescriptor(HTMLSelectElement.prototype, 'value')?.set;
setter?.call(el, value);
el.dispatchEvent(new Event('change', { bubbles: true }));
}
function findButton(container: HTMLElement, text: string): HTMLButtonElement {
const button = [...container.querySelectorAll('button')].find((candidate) =>
candidate.textContent?.includes(text),
);
if (!button) throw new Error(`Button with text "${text}" not found`);
return button;
}
let fake: ReturnType<typeof createFakeChatSocket>;
let root: Root | null;
let container: HTMLElement;
beforeAll(() => {
Object.defineProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT', {
configurable: true,
value: true,
});
});
afterAll(() => {
Reflect.deleteProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT');
});
beforeEach(async () => {
fake = createFakeChatSocket();
getSocketMock.mockReset().mockReturnValue(fake.socket);
destroySocketMock.mockReset();
container = document.createElement('div');
document.body.append(container);
root = createRoot(container);
await act(async () => {
root?.render(<ChatPage />);
});
});
afterEach(async () => {
await act(async () => {
root?.unmount();
});
document.body.replaceChildren();
});
describe('ChatPage', () => {
it('streams agent:text and agent:thinking, shows tool status, and finalizes on agent:end with usage', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
fake.serverEmit('agent:start', { conversationId: 'c1' });
});
await act(async () => {
fake.serverEmit('agent:thinking', { conversationId: 'c1', text: 'pondering…' });
fake.serverEmit('agent:text', { conversationId: 'c1', text: 'Hel' });
fake.serverEmit('agent:text', { conversationId: 'c1', text: 'lo!' });
fake.serverEmit('agent:tool:start', {
conversationId: 'c1',
toolCallId: 't1',
toolName: 'web_search',
});
});
expect(container.textContent).toContain('pondering…');
expect(container.textContent).toContain('Hello!');
expect(container.textContent).toContain('web_search');
expect(container.textContent).toMatch(/running/i);
await act(async () => {
fake.serverEmit('agent:tool:end', {
conversationId: 'c1',
toolCallId: 't1',
toolName: 'web_search',
isError: false,
});
fake.serverEmit('agent:end', {
conversationId: 'c1',
usage: {
provider: 'anthropic',
modelId: 'claude',
thinkingLevel: 'medium',
tokens: { input: 12, output: 34, cacheRead: 0, cacheWrite: 0, total: 46 },
cost: 0.02,
context: { percent: 3, window: 200000 },
},
});
});
expect(container.textContent).toMatch(/success/i);
expect(container.textContent).toContain('Hello!');
expect(container.textContent).toMatch(/46/);
});
it('renders the commands manifest and session info, and lets the user pick a thinking level', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
fake.serverEmit('commands:manifest', {
manifest: {
commands: [
{
name: 'model',
aliases: ['m'],
description: 'Change the active model',
scope: 'core',
execution: 'socket',
available: true,
},
],
skills: [],
version: 1,
},
});
fake.serverEmit('session:info', {
conversationId: 'c1',
provider: 'anthropic',
modelId: 'claude',
thinkingLevel: 'medium',
availableThinkingLevels: ['low', 'medium', 'high'],
routingDecision: {
model: 'claude',
provider: 'anthropic',
ruleName: 'default',
reason: 'default routing',
},
});
});
expect(container.textContent).toContain('model');
expect(container.textContent).toContain('Change the active model');
expect(container.textContent).toContain('anthropic');
expect(container.textContent).toContain('default routing');
const select = container.querySelector(
'select[aria-label="Thinking level"]',
) as HTMLSelectElement;
expect(select).toBeTruthy();
expect([...select.options].map((o) => o.value)).toEqual(['low', 'medium', 'high']);
await act(async () => {
selectValue(select, 'high');
});
expect(fake.emitted).toContainEqual({
event: 'set:thinking',
payload: { conversationId: 'c1', level: 'high' },
});
});
it('executes and approves commands with exact payloads and surfaces the approval affordance', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
const commandInput = container.querySelector(
'input[aria-label="Command name"]',
) as HTMLInputElement;
const argsInput = container.querySelector(
'input[aria-label="Command arguments"]',
) as HTMLInputElement;
await act(async () => {
setValue(commandInput, 'model');
setValue(argsInput, 'gpt-5');
});
await act(async () => {
findButton(container, 'Run command').click();
});
expect(fake.emitted).toContainEqual({
event: 'command:execute',
payload: { conversationId: 'c1', command: 'model', args: 'gpt-5' },
});
await act(async () => {
setValue(commandInput, 'deploy');
setValue(argsInput, 'prod');
});
await act(async () => {
findButton(container, 'Request approval').click();
});
expect(fake.emitted).toContainEqual({
event: 'command:approve',
payload: { conversationId: 'c1', command: 'deploy', args: 'prod' },
});
await act(async () => {
fake.serverEmit('command:approval', {
conversationId: 'c1',
command: 'deploy',
success: true,
approvalId: 'ap1',
expiresAt: '2026-01-01T00:00:00.000Z',
});
});
expect(container.textContent).toMatch(/approved/i);
await act(async () => {
findButton(container, 'Run approved command').click();
});
expect(fake.emitted).toContainEqual({
event: 'command:execute',
payload: { conversationId: 'c1', command: 'deploy', args: 'prod', approvalId: 'ap1' },
});
});
it('shows visible alert surfaces for a server error and the structured contract reason for a failed command result', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
fake.serverEmit('error', { conversationId: 'c1', error: 'The model is unavailable' });
fake.serverEmit('command:result', {
conversationId: 'c1',
command: 'model',
success: false,
message: 'Unknown model',
});
});
const alerts = [...container.querySelectorAll('[role="alert"]')];
const alertText = alerts.map((node) => node.textContent).join(' ');
expect(alertText).toContain('The model is unavailable');
// The structured, contract-provided denial reason is visibly rendered.
expect(alertText).toContain('Unknown model');
});
it('falls back to a stable "Command failed." copy when a failed command result has no usable message', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
fake.serverEmitRaw('command:result', {
conversationId: 'c1',
command: 'model',
success: false,
message: { bad: 'object' },
});
});
const alerts = [...container.querySelectorAll('[role="alert"]')];
const alertText = alerts.map((node) => node.textContent).join(' ');
expect(alertText).toContain('Command failed.');
});
it('caps availableThinkingLevels before storing and rendering a hostile session payload', async () => {
const hostileLevels = Array.from({ length: MAX_MANIFEST_ITEMS + 50 }, (_, i) => `level-${i}`);
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
fake.serverEmit('session:info', {
conversationId: 'c1',
provider: 'anthropic',
modelId: 'claude',
thinkingLevel: 'level-0',
availableThinkingLevels: hostileLevels,
});
});
const select = container.querySelector(
'select[aria-label="Thinking level"]',
) as HTMLSelectElement;
expect(select).toBeTruthy();
expect(select.options.length).toBeLessThanOrEqual(MAX_MANIFEST_ITEMS);
});
it('renders a safe fallback when session:info arrives with a malformed (non-array) availableThinkingLevels, without throwing', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
fake.serverEmitRaw('session:info', {
conversationId: 'c1',
provider: 'anthropic',
modelId: 'claude',
thinkingLevel: 'medium',
availableThinkingLevels: null,
});
});
expect(container.querySelector('section[aria-label="Session info"]')).toBeTruthy();
const select = container.querySelector(
'select[aria-label="Thinking level"]',
) as HTMLSelectElement;
expect(select).toBeTruthy();
// A malformed level list still shows a visible, safe placeholder option
// rather than a silently empty select.
expect([...select.options]).toHaveLength(1);
expect(select.options[0]?.textContent).toMatch(/unavailable/i);
await act(async () => {
selectValue(select, '');
});
expect(fake.emitted.filter((e) => e.event === 'set:thinking')).toHaveLength(0);
});
it('renders honest unavailable labels — not fabricated zeros — when agent:end usage has malformed/missing numeric fields', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
fake.serverEmit('agent:start', { conversationId: 'c1' });
fake.serverEmitRaw('agent:end', {
conversationId: 'c1',
usage: {
provider: { nested: 'object' },
modelId: undefined,
thinkingLevel: 'medium',
tokens: { total: 'not-a-number' },
cost: undefined,
context: { percent: null, window: 200000 },
},
});
});
const usage = container.querySelector('[aria-label="Usage"]');
expect(usage).toBeTruthy();
expect(usage?.textContent).toContain('tokens unavailable');
expect(usage?.textContent).toContain('cost unavailable');
expect(usage?.textContent).not.toContain('0 tokens');
expect(usage?.textContent).not.toContain('$0.0000');
expect(usage?.textContent).toContain('unknown/unknown');
});
it('renders a safe fallback for message:ack when messageId is a malformed non-string value, without throwing', async () => {
await expect(
act(async () => {
fake.serverEmitRaw('message:ack', { conversationId: 'c1', messageId: { bad: 'object' } });
}),
).resolves.not.toThrow();
const status = [...container.querySelectorAll('[role="status"]')].find((node) =>
node.textContent?.includes('Message accepted'),
);
expect(status).toBeTruthy();
// A malformed messageId gets a stable, visible fallback — never blank,
// never the raw object.
expect(status?.textContent).toContain('unknown');
});
it('renders safely and does not throw when system:reload.message is a malformed non-string value', async () => {
await expect(
act(async () => {
fake.serverEmitRaw('system:reload', {
commands: [],
skills: [],
providers: [],
message: { bad: 'object' },
});
}),
).resolves.not.toThrow();
const status = container.querySelector('[role="status"]');
expect(status).toBeTruthy();
// A malformed reload message renders a stable, visible fallback rather
// than a silently empty status line.
expect(status?.textContent).toContain('Commands reloaded.');
});
it('renders safely and does not throw when a scoped error carries a malformed non-string error value', async () => {
await expect(
act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
fake.serverEmitRaw('error', { conversationId: 'c1', error: ['not', 'a', 'string'] });
}),
).resolves.not.toThrow();
expect(container.querySelector('[role="alert"]')).toBeTruthy();
});
it('sends a message with optional provider/model fields and emits abort from the Stop control', async () => {
const textarea = container.querySelector(
'textarea[aria-label="Message"]',
) as HTMLTextAreaElement;
const providerInput = container.querySelector(
'input[aria-label="Provider"]',
) as HTMLInputElement;
const modelInput = container.querySelector('input[aria-label="Model"]') as HTMLInputElement;
const stopButtonBefore = container.querySelector(
'button[aria-label="Stop"]',
) as HTMLButtonElement;
expect(stopButtonBefore.disabled).toBe(true);
await act(async () => {
setValue(textarea, 'hello there');
setValue(providerInput, 'anthropic');
setValue(modelInput, 'claude');
});
await act(async () => {
textarea.dispatchEvent(
new KeyboardEvent('keydown', { key: 'Enter', bubbles: true, cancelable: true }),
);
});
expect(fake.emitted).toContainEqual({
event: 'message',
payload: {
conversationId: undefined,
content: 'hello there',
provider: 'anthropic',
modelId: 'claude',
},
});
expect(container.textContent).toContain('hello there');
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
fake.serverEmit('agent:start', { conversationId: 'c1' });
});
const stopButtonDuring = container.querySelector(
'button[aria-label="Stop"]',
) as HTMLButtonElement;
expect(stopButtonDuring.disabled).toBe(false);
await act(async () => {
stopButtonDuring.click();
});
expect(fake.emitted).toContainEqual({ event: 'abort', payload: { conversationId: 'c1' } });
});
it('renders the session panel from a pre-ack session:info and keeps it visible after the later ack', async () => {
const textarea = container.querySelector(
'textarea[aria-label="Message"]',
) as HTMLTextAreaElement;
await act(async () => {
setValue(textarea, 'hello');
});
await act(async () => {
textarea.dispatchEvent(
new KeyboardEvent('keydown', { key: 'Enter', bubbles: true, cancelable: true }),
);
});
await act(async () => {
fake.serverEmit('session:info', {
conversationId: 'c1',
provider: 'anthropic',
modelId: 'claude',
thinkingLevel: 'medium',
availableThinkingLevels: ['low', 'medium', 'high'],
});
});
expect(container.querySelector('section[aria-label="Session info"]')).toBeTruthy();
expect(container.textContent).toContain('anthropic');
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
expect(container.querySelector('section[aria-label="Session info"]')).toBeTruthy();
expect(container.textContent).toContain('anthropic');
});
it('surfaces a pre-ack error as an alert without leaving the Stop control stuck active', async () => {
const textarea = container.querySelector(
'textarea[aria-label="Message"]',
) as HTMLTextAreaElement;
await act(async () => {
setValue(textarea, 'hello');
});
await act(async () => {
textarea.dispatchEvent(
new KeyboardEvent('keydown', { key: 'Enter', bubbles: true, cancelable: true }),
);
});
await act(async () => {
fake.serverEmit('error', {
conversationId: 'c1',
error: 'Failed to start agent session. Please try again.',
});
});
const alerts = [...container.querySelectorAll('[role="alert"]')];
expect(alerts.some((node) => node.textContent?.includes('Failed to start agent session'))).toBe(
true,
);
const stopButton = container.querySelector('button[aria-label="Stop"]') as HTMLButtonElement;
expect(stopButton.disabled).toBe(true);
});
it('shows an accessible status once the message is acknowledged', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
const statuses = [...container.querySelectorAll('[role="status"]')];
expect(statuses.some((node) => node.textContent?.includes('m1'))).toBe(true);
});
it('renders finalized thinking text in the transcript after agent:end, not only while streaming', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
fake.serverEmit('agent:start', { conversationId: 'c1' });
fake.serverEmit('agent:thinking', { conversationId: 'c1', text: 'reasoning about it' });
fake.serverEmit('agent:text', { conversationId: 'c1', text: 'Done.' });
});
expect(container.textContent).toContain('reasoning about it');
await act(async () => {
fake.serverEmit('agent:end', { conversationId: 'c1' });
});
expect(container.textContent).toContain('reasoning about it');
expect(container.textContent).toContain('Done.');
});
it('ignores a concurrent approval request and only executes the approved command once', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
const commandInput = container.querySelector(
'input[aria-label="Command name"]',
) as HTMLInputElement;
const argsInput = container.querySelector(
'input[aria-label="Command arguments"]',
) as HTMLInputElement;
await act(async () => {
setValue(commandInput, 'deploy');
setValue(argsInput, 'prod');
});
await act(async () => {
findButton(container, 'Request approval').click();
});
await act(async () => {
setValue(argsInput, 'staging');
});
await act(async () => {
findButton(container, 'Request approval').click();
});
expect(fake.emitted.filter((e) => e.event === 'command:approve')).toHaveLength(1);
expect(fake.emitted).toContainEqual({
event: 'command:approve',
payload: { conversationId: 'c1', command: 'deploy', args: 'prod' },
});
await act(async () => {
fake.serverEmit('command:approval', {
conversationId: 'c1',
command: 'deploy',
success: true,
approvalId: 'ap1',
expiresAt: '2026-01-01T00:00:00.000Z',
});
});
await act(async () => {
findButton(container, 'Run approved command').click();
findButton(container, 'Run approved command').click();
});
expect(fake.emitted.filter((e) => e.event === 'command:execute')).toHaveLength(1);
expect(fake.emitted).toContainEqual({
event: 'command:execute',
payload: { conversationId: 'c1', command: 'deploy', args: 'prod', approvalId: 'ap1' },
});
});
it('disables sending a second message while a turn is streaming', async () => {
const textarea = container.querySelector(
'textarea[aria-label="Message"]',
) as HTMLTextAreaElement;
await act(async () => {
setValue(textarea, 'first');
});
await act(async () => {
textarea.dispatchEvent(
new KeyboardEvent('keydown', { key: 'Enter', bubbles: true, cancelable: true }),
);
});
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
fake.serverEmit('agent:start', { conversationId: 'c1' });
});
const sendButton = findButton(container, 'Send');
expect(sendButton.disabled).toBe(true);
await act(async () => {
setValue(textarea, 'second');
});
await act(async () => {
textarea.dispatchEvent(
new KeyboardEvent('keydown', { key: 'Enter', bubbles: true, cancelable: true }),
);
});
expect(fake.emitted.filter((e) => e.event === 'message')).toHaveLength(1);
});
it('removes socket handlers and tears down the socket on unmount, with no network calls', async () => {
expect(fake.listeners.size).toBeGreaterThan(0);
await act(async () => {
root?.unmount();
});
root = null;
for (const [, handlers] of fake.listeners) {
expect(handlers.size).toBe(0);
}
expect(destroySocketMock).toHaveBeenCalledOnce();
});
});
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import type { ReactElement } from 'react';
import { CommandsPanel } from '@/spa/chat/commands-panel';
import { Composer } from '@/spa/chat/composer';
import { MessageTranscript } from '@/spa/chat/message-transcript';
import { asFiniteNumberOrNull, asString } from '@/spa/chat/runtime-guards';
import { SessionPanel } from '@/spa/chat/session-panel';
import { ToolCallList } from '@/spa/chat/tool-call-list';
import { useChatConnection } from '@/spa/chat/use-chat-connection';
/** Renders a real value normally, but an honest "unavailable" label instead
* of a fabricated `0` for a missing/malformed count a real `0 tokens` and
* an unknown token count must never look the same. */
function formatTokens(value: unknown): string {
const tokens = asFiniteNumberOrNull(value);
return tokens === null ? 'tokens unavailable' : `${tokens} tokens`;
}
/** Same honesty guarantee as `formatTokens`, for cost. */
function formatCost(value: unknown): string {
const cost = asFiniteNumberOrNull(value);
return cost === null ? 'cost unavailable' : `$${cost.toFixed(4)}`;
}
export function ChatPage(): ReactElement {
const { state, actions } = useChatConnection();
const hasConversation = state.conversationId !== null;
return (
<div className="flex h-[calc(100vh-3.5rem)] min-h-0 flex-col overflow-hidden md:h-screen">
<header className="border-b px-4 py-3">
<h1 className="text-lg font-semibold">Chat</h1>
</header>
{state.systemReload ? (
<div role="status" className="border-b px-4 py-2 text-sm">
{asString(state.systemReload.message)}
</div>
) : null}
{state.error ? (
<div role="alert" className="border-b px-4 py-2 text-sm">
{asString(state.error)}
</div>
) : null}
{state.ack ? (
<div role="status" className="border-b px-4 py-1 text-xs opacity-70">
Message accepted · conversation {asString(state.ack.conversationId, 'unknown')} · id{' '}
{asString(state.ack.messageId, 'unknown')}
</div>
) : null}
<SessionPanel sessionInfo={state.sessionInfo} onSetThinking={actions.setThinking} />
<MessageTranscript messages={state.messages} streaming={state.streaming} text={state.text} />
{state.thinking ? (
<section aria-label="Thinking" className="px-4 pb-2 text-xs italic opacity-80">
{state.thinking}
</section>
) : null}
<ToolCallList tools={state.tools} />
{state.usage ? (
<div aria-label="Usage" className="px-4 pb-2 text-xs opacity-80">
{formatTokens(state.usage.tokens?.total)} · {formatCost(state.usage.cost)} ·{' '}
{asString(state.usage.provider, 'unknown')}/{asString(state.usage.modelId, 'unknown')}
</div>
) : null}
<CommandsPanel
manifest={state.manifest}
results={state.commandResults}
approval={state.approval}
pendingApproval={state.pendingApproval}
hasConversation={hasConversation}
onExecute={actions.executeCommand}
onApprove={actions.approveCommand}
onRunApproved={actions.runApprovedCommand}
/>
<Composer
onSend={actions.sendMessage}
onStop={actions.abort}
streaming={state.streaming}
sending={state.sending}
hasConversation={hasConversation}
/>
</div>
);
}
+152
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@@ -0,0 +1,152 @@
import { useEffect, useState, type FormEvent, type ReactElement } from 'react';
import { Link, useNavigate } from 'react-router-dom';
import { SsoProviderButtons } from '@/components/auth/sso-provider-buttons';
import { api } from '@/lib/api';
import { authClient, signIn } from '@/lib/auth-client';
import type { SsoProviderDiscovery } from '@/lib/sso';
export function LoginPage(): ReactElement {
const navigate = useNavigate();
const [error, setError] = useState<string | null>(null);
const [loading, setLoading] = useState(false);
const [ssoProviders, setSsoProviders] = useState<SsoProviderDiscovery[]>([]);
const [ssoLoadingProviderId, setSsoLoadingProviderId] = useState<
SsoProviderDiscovery['id'] | null
>(null);
useEffect(() => {
let active = true;
void api<SsoProviderDiscovery[]>('/api/sso/providers').then(
(providers) => {
if (active) setSsoProviders(providers.filter((provider) => provider.configured));
},
() => {
if (active) setSsoProviders([]);
},
);
return () => {
active = false;
};
}, []);
async function handleSubmit(event: FormEvent<HTMLFormElement>): Promise<void> {
event.preventDefault();
setError(null);
setLoading(true);
const form = new FormData(event.currentTarget);
const email = String(form.get('email') ?? '');
const password = String(form.get('password') ?? '');
try {
const result = await signIn.email({ email, password });
if (result.error) {
setError(result.error.message ?? 'Sign in failed');
return;
}
navigate('/chat', { replace: true });
} catch (caught: unknown) {
setError(caught instanceof Error ? caught.message : 'Sign in failed');
} finally {
setLoading(false);
}
}
async function handleSsoSignIn(providerId: SsoProviderDiscovery['id']): Promise<void> {
setError(null);
setSsoLoadingProviderId(providerId);
try {
const result = await authClient.signIn.oauth2({
providerId,
callbackURL: '/chat',
newUserCallbackURL: '/chat',
});
if (result.error) {
setError(result.error.message ?? `Sign in with ${providerId} failed`);
setSsoLoadingProviderId(null);
}
} catch (caught: unknown) {
setError(caught instanceof Error ? caught.message : `Sign in with ${providerId} failed`);
setSsoLoadingProviderId(null);
}
}
return (
<div>
<h1 className="text-2xl font-semibold">Sign in</h1>
<p className="mt-1 text-sm text-text-secondary">Sign in to your Mosaic account</p>
{error ? (
<div
role="alert"
className="mt-4 rounded-lg border border-error/30 bg-error/10 px-4 py-3 text-sm text-error"
>
{error}
</div>
) : null}
<form className="mt-6 space-y-4" onSubmit={handleSubmit}>
<div>
<label htmlFor="email" className="block text-sm font-medium text-text-secondary">
Email
</label>
<input
id="email"
name="email"
type="email"
autoComplete="email"
required
disabled={loading}
className="mt-1 block w-full rounded-lg border border-surface-border bg-surface-elevated px-3 py-2 text-sm text-text-primary placeholder:text-text-muted focus:border-blue-500 focus:outline-none focus:ring-1 focus:ring-blue-500 disabled:opacity-50"
placeholder="[email protected]"
/>
</div>
<div>
<label htmlFor="password" className="block text-sm font-medium text-text-secondary">
Password
</label>
<input
id="password"
name="password"
type="password"
autoComplete="current-password"
required
disabled={loading}
className="mt-1 block w-full rounded-lg border border-surface-border bg-surface-elevated px-3 py-2 text-sm text-text-primary placeholder:text-text-muted focus:border-blue-500 focus:outline-none focus:ring-1 focus:ring-blue-500 disabled:opacity-50"
placeholder="••••••••"
/>
</div>
<button
type="submit"
disabled={loading}
className="w-full rounded-lg bg-blue-600 px-4 py-2.5 text-sm font-medium text-white transition-colors hover:bg-blue-700 focus:outline-none focus:ring-2 focus:ring-blue-500 focus:ring-offset-2 focus:ring-offset-surface-card disabled:opacity-50"
>
{loading ? 'Signing in...' : 'Sign in'}
</button>
</form>
<SsoProviderButtons
providers={ssoProviders}
loadingProviderId={ssoLoadingProviderId}
onOidcSignIn={(providerId) => {
void handleSsoSignIn(providerId);
}}
/>
<p className="mt-4 text-center text-sm text-text-muted">
Don&apos;t have an account?{' '}
<Link to="/register" className="text-blue-400 hover:text-blue-300">
Sign up
</Link>
</p>
</div>
);
}
+116
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@@ -0,0 +1,116 @@
import { useState, type FormEvent, type ReactElement } from 'react';
import { Link, useNavigate } from 'react-router-dom';
import { signUp } from '@/lib/auth-client';
export function RegisterPage(): ReactElement {
const navigate = useNavigate();
const [error, setError] = useState<string | null>(null);
const [loading, setLoading] = useState(false);
async function handleSubmit(event: FormEvent<HTMLFormElement>): Promise<void> {
event.preventDefault();
setError(null);
setLoading(true);
const form = new FormData(event.currentTarget);
const name = String(form.get('name') ?? '');
const email = String(form.get('email') ?? '');
const password = String(form.get('password') ?? '');
try {
const result = await signUp.email({ name, email, password });
if (result.error) {
setError(result.error.message ?? 'Registration failed');
return;
}
navigate('/chat', { replace: true });
} catch (caught: unknown) {
setError(caught instanceof Error ? caught.message : 'Registration failed');
} finally {
setLoading(false);
}
}
return (
<div>
<h1 className="text-2xl font-semibold">Create account</h1>
<p className="mt-1 text-sm text-text-secondary">Get started with Mosaic</p>
{error ? (
<div
role="alert"
className="mt-4 rounded-lg border border-error/30 bg-error/10 px-4 py-3 text-sm text-error"
>
{error}
</div>
) : null}
<form className="mt-6 space-y-4" onSubmit={handleSubmit}>
<div>
<label htmlFor="name" className="block text-sm font-medium text-text-secondary">
Name
</label>
<input
id="name"
name="name"
type="text"
autoComplete="name"
required
disabled={loading}
className="mt-1 block w-full rounded-lg border border-surface-border bg-surface-elevated px-3 py-2 text-sm text-text-primary placeholder:text-text-muted focus:border-blue-500 focus:outline-none focus:ring-1 focus:ring-blue-500 disabled:opacity-50"
placeholder="Your name"
/>
</div>
<div>
<label htmlFor="email" className="block text-sm font-medium text-text-secondary">
Email
</label>
<input
id="email"
name="email"
type="email"
autoComplete="email"
required
disabled={loading}
className="mt-1 block w-full rounded-lg border border-surface-border bg-surface-elevated px-3 py-2 text-sm text-text-primary placeholder:text-text-muted focus:border-blue-500 focus:outline-none focus:ring-1 focus:ring-blue-500 disabled:opacity-50"
placeholder="[email protected]"
/>
</div>
<div>
<label htmlFor="password" className="block text-sm font-medium text-text-secondary">
Password
</label>
<input
id="password"
name="password"
type="password"
autoComplete="new-password"
required
disabled={loading}
className="mt-1 block w-full rounded-lg border border-surface-border bg-surface-elevated px-3 py-2 text-sm text-text-primary placeholder:text-text-muted focus:border-blue-500 focus:outline-none focus:ring-1 focus:ring-blue-500 disabled:opacity-50"
placeholder="••••••••"
/>
</div>
<button
type="submit"
disabled={loading}
className="w-full rounded-lg bg-blue-600 px-4 py-2.5 text-sm font-medium text-white transition-colors hover:bg-blue-700 focus:outline-none focus:ring-2 focus:ring-blue-500 focus:ring-offset-2 focus:ring-offset-surface-card disabled:opacity-50"
>
{loading ? 'Creating account...' : 'Create account'}
</button>
</form>
<p className="mt-4 text-center text-sm text-text-muted">
Already have an account?{' '}
<Link to="/login" className="text-blue-400 hover:text-blue-300">
Sign in
</Link>
</p>
</div>
);
}
@@ -0,0 +1,90 @@
import { act } from 'react';
import { createRoot, type Root } from 'react-dom/client';
import { createMemoryRouter, RouterProvider } from 'react-router-dom';
import { afterAll, afterEach, beforeAll, beforeEach, describe, expect, it, vi } from 'vitest';
const { apiMock, oauth2Mock } = vi.hoisted(() => ({
apiMock: vi.fn(),
oauth2Mock: vi.fn(),
}));
vi.mock('@/lib/api', () => ({
api: apiMock,
}));
vi.mock('@/lib/auth-client', () => ({
signIn: { oauth2: oauth2Mock },
}));
import { SsoCallbackPage } from './sso-callback';
const mountedRoots: Root[] = [];
beforeAll(() => {
Object.defineProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT', {
configurable: true,
value: true,
});
});
beforeEach(() => {
apiMock.mockResolvedValue([
{
id: 'authentik',
name: 'Authentik',
protocols: ['oidc'],
configured: true,
loginMode: 'oidc',
callbackPath: '/api/auth/oauth2/callback/authentik',
teamSync: { enabled: false, claim: null },
samlFallback: { configured: false, loginUrl: null },
warnings: [],
},
]);
oauth2Mock.mockResolvedValue({ data: null, error: null });
});
afterEach(async () => {
for (const root of mountedRoots.splice(0)) {
await act(async () => {
root.unmount();
});
}
document.body.replaceChildren();
apiMock.mockReset();
oauth2Mock.mockReset();
});
afterAll(() => {
Reflect.deleteProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT');
});
describe('SsoCallbackPage', () => {
it('rejects a control-character callback that normalizes to an external origin', async () => {
const router = createMemoryRouter(
[
{
path: '/auth/provider/:provider',
element: <SsoCallbackPage />,
},
],
{
initialEntries: ['/auth/provider/authentik?callbackURL=%2F%0A%2F%2Fevil.example'],
},
);
const container = document.createElement('div');
document.body.append(container);
const root = createRoot(container);
mountedRoots.push(root);
await act(async () => {
root.render(<RouterProvider router={router} />);
await new Promise((resolve) => setTimeout(resolve, 0));
});
expect(oauth2Mock).toHaveBeenCalledWith({
providerId: 'authentik',
callbackURL: '/chat',
});
});
});
+91
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@@ -0,0 +1,91 @@
import { useEffect, useState, type ReactElement } from 'react';
import { Link, useParams, useSearchParams } from 'react-router-dom';
import { api } from '@/lib/api';
import { resolveAuthCallbackURL } from '@/lib/auth-redirect';
import { signIn } from '@/lib/auth-client';
import type { SsoProviderDiscovery } from '@/lib/sso';
export function SsoCallbackPage(): ReactElement {
const { provider: providerId = '' } = useParams<'provider'>();
const [searchParams] = useSearchParams();
const requestedCallbackURL = searchParams.get('callbackURL');
const [providerName, setProviderName] = useState<string | null>(null);
const [error, setError] = useState<string | null>(null);
useEffect(() => {
let cancelled = false;
async function redirectToProvider(): Promise<void> {
try {
const callbackURL = resolveAuthCallbackURL(requestedCallbackURL, window.location.origin);
const providers = await api<SsoProviderDiscovery[]>('/api/sso/providers');
if (cancelled) return;
const provider = providers.find((candidate) => candidate.id === providerId);
if (!provider) {
setError('Unknown SSO provider.');
return;
}
setProviderName(provider.name);
if (!provider.configured) {
setError(`${provider.name} is not enabled in this deployment.`);
return;
}
if (provider.loginMode !== 'oidc') {
setError(`${provider.name} is not available for OIDC sign in.`);
return;
}
const result = await signIn.oauth2({
providerId: provider.id,
callbackURL,
});
if (!cancelled && result?.error) {
setError(result.error.message ?? `${provider.name} sign in failed.`);
}
} catch (caught: unknown) {
if (!cancelled) {
setError(caught instanceof Error ? caught.message : 'Unable to start single sign-on.');
}
}
}
void redirectToProvider();
return () => {
cancelled = true;
};
}, [providerId, requestedCallbackURL]);
return (
<div className="mx-auto flex min-h-[50vh] max-w-md flex-col justify-center">
<h1 className="text-2xl font-semibold text-text-primary">Single sign-on</h1>
<p className="mt-2 text-sm text-text-secondary">
{providerName
? `Redirecting you to ${providerName}...`
: 'Preparing your sign-in request...'}
</p>
{error ? (
<div
role="alert"
className="mt-6 rounded-lg border border-error/30 bg-error/10 px-4 py-3 text-sm text-error"
>
<p>{error}</p>
<Link
to="/login"
className="mt-3 inline-block font-medium text-blue-400 hover:text-blue-300"
>
Return to login
</Link>
</div>
) : (
<div className="mt-6 rounded-lg border border-surface-border bg-surface-elevated px-4 py-3 text-sm text-text-secondary">
If the redirect does not start automatically, return to the login page and try again.
</div>
)}
</div>
);
}
+9
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@@ -0,0 +1,9 @@
import type { ReactElement } from 'react';
export function Placeholder({ title }: { title: string }): ReactElement {
return (
<main className="flex min-h-screen items-center justify-center">
<h1 className="text-xl font-medium">{title}</h1>
</main>
);
}
+70
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@@ -0,0 +1,70 @@
import { isValidElement } from 'react';
import { describe, expect, it } from 'vitest';
import type { RouteObject } from 'react-router-dom';
import { routes } from '@/routes';
import { Placeholder } from '@/spa/placeholder';
import { ChatPage } from '@/spa/pages/chat';
function collectPaths(routeObjects: RouteObject[]): string[] {
return routeObjects.flatMap((route) => [
...(route.path ? [route.path] : []),
...(route.children ? collectPaths(route.children) : []),
]);
}
function findRoute(routeObjects: RouteObject[], path: string): RouteObject | undefined {
for (const route of routeObjects) {
if (route.path === path) return route;
const nested = route.children ? findRoute(route.children, path) : undefined;
if (nested) return nested;
}
return undefined;
}
describe('SPA route table', () => {
it('covers every v1 parity route from the Phase P RFC', () => {
expect(collectPaths(routes).sort()).toEqual(
[
'/',
'/admin',
'/auth/provider/:provider',
'/chat',
'/login',
'/projects',
'/projects/:id',
'/register',
'/settings',
'/tasks',
].sort(),
);
});
it('separates guest and authenticated route groups', () => {
const guestPaths = collectPaths(routes.at(0)?.children ?? []);
const authPaths = collectPaths(routes.at(1)?.children ?? []);
expect(guestPaths).toContain('/login');
expect(guestPaths).not.toContain('/chat');
expect(authPaths).toContain('/chat');
});
it.each(['/login', '/register', '/auth/provider/:provider'])(
'renders a real guest page instead of the P1 placeholder at %s',
(path) => {
const element = findRoute(routes, path)?.element;
expect(isValidElement(element)).toBe(true);
if (!isValidElement(element)) throw new Error(`Missing route element for ${path}`);
expect(element.type).not.toBe(Placeholder);
},
);
it('renders the real chat page instead of the P1 placeholder at /chat, inside the authenticated group', () => {
const authPaths = collectPaths(routes.at(1)?.children ?? []);
expect(authPaths).toContain('/chat');
const element = findRoute(routes, '/chat')?.element;
expect(isValidElement(element)).toBe(true);
if (!isValidElement(element)) throw new Error('Missing route element for /chat');
expect(element.type).not.toBe(Placeholder);
expect(element.type).toBe(ChatPage);
});
});
+14
View File
@@ -0,0 +1,14 @@
import { describe, expect, it } from 'vitest';
describe('Vitest abort-controller realm', () => {
it('provides a global signal accepted by Node native Request', () => {
const controller = new AbortController();
const request = new Request('https://mosaic.invalid/navigation', {
signal: controller.signal,
});
expect(request.signal).toBeInstanceOf(AbortSignal);
controller.abort();
expect(request.signal.aborted).toBe(true);
});
});
+23
View File
@@ -0,0 +1,23 @@
import { transferableAbortController } from 'node:util';
// jsdom installs realm-local abort constructors while Node's undici Request
// remains native. React Router passes a global AbortSignal to Request, so both
// constructors must come from Node's native realm during tests.
const nativeController = transferableAbortController();
const nativeAbortController = nativeController.constructor;
const nativeAbortSignal = nativeController.signal.constructor;
for (const target of [globalThis, window]) {
Object.defineProperties(target, {
AbortController: {
configurable: true,
writable: true,
value: nativeAbortController,
},
AbortSignal: {
configurable: true,
writable: true,
value: nativeAbortSignal,
},
});
}
+24
View File
@@ -0,0 +1,24 @@
import { fileURLToPath } from 'node:url';
import react from '@vitejs/plugin-react';
import { defineConfig } from 'vite';
// The proxy exists only in dev; in production the SPA is same-origin with the gateway
// (served by it under Candidate A, or behind one FQDN under Candidate B) and every
// request uses a relative path, so no origin may ever be configured here or in src/.
const gatewayTarget = 'http://localhost:14242';
export default defineConfig({
plugins: [react()],
resolve: {
alias: {
'@': fileURLToPath(new URL('./src', import.meta.url)),
},
},
server: {
port: 3100,
proxy: {
'/api': gatewayTarget,
'/socket.io': { target: gatewayTarget, ws: true },
},
},
});
+12
View File
@@ -1,9 +1,21 @@
import { fileURLToPath } from 'node:url';
import { defineConfig } from 'vitest/config';
export default defineConfig({
resolve: {
alias: {
'@': fileURLToPath(new URL('./src', import.meta.url)),
},
},
// tsconfig uses "jsx": "preserve" for Next; tests need esbuild to compile it
esbuild: {
jsx: 'automatic',
},
test: {
globals: true,
environment: 'jsdom',
setupFiles: ['./src/test/setup.ts'],
isolate: true,
exclude: ['e2e/**', 'node_modules/**'],
},
});
+17 -4
View File
@@ -10,6 +10,8 @@ COPY pnpm-workspace.yaml pnpm-lock.yaml package.json ./
COPY apps/gateway/package.json ./apps/gateway/
COPY packages/ ./packages/
COPY plugins/ ./plugins/
# the root prepare script runs scripts/install-hooks.mjs on install
COPY scripts/ ./scripts/
RUN pnpm install --frozen-lockfile
COPY . .
# Build gateway and all of its workspace dependencies via turbo dependency graph
@@ -21,11 +23,22 @@ RUN pnpm --filter @mosaicstack/gateway --prod deploy --legacy /deploy
FROM base AS runner
WORKDIR /app
ENV NODE_ENV=production
# WorkspaceService shells out to git at runtime and roots workspaces at
# $MOSAIC_ROOT/.workspaces (apps/gateway/src/workspace/workspace.service.ts);
# mount a volume over /opt/mosaic to persist workspaces across container restarts.
# Intentionally unpinned: Alpine's signed repository is the trust anchor; pinning
# git was declined so routine base-image security updates remain maintainable.
RUN apk add --no-cache git \
&& mkdir -p /opt/mosaic/.workspaces \
&& chown -R node:node /opt/mosaic /app
ENV MOSAIC_ROOT=/opt/mosaic
# Use the pnpm deploy output — resolves all deps into a flat, self-contained node_modules
COPY --from=builder /deploy/node_modules ./node_modules
COPY --from=builder /deploy/package.json ./package.json
COPY --chown=node:node --from=builder /deploy/node_modules ./node_modules
COPY --chown=node:node --from=builder /deploy/package.json ./package.json
# dist is declared in package.json "files" so pnpm deploy copies it into /deploy;
# copy from builder explicitly as belt-and-suspenders
COPY --from=builder /app/apps/gateway/dist ./dist
EXPOSE 4000
COPY --chown=node:node --from=builder /app/apps/gateway/dist ./dist
# gateway defaults to port 14242 (apps/gateway/src/main.ts)
EXPOSE 14242
USER node
CMD ["node", "dist/main.js"]
+3 -1
View File
@@ -8,9 +8,11 @@ WORKDIR /app
COPY pnpm-workspace.yaml pnpm-lock.yaml package.json ./
COPY apps/web/package.json ./apps/web/
COPY packages/ ./packages/
# the root prepare script runs scripts/install-hooks.mjs on install
COPY scripts/ ./scripts/
RUN pnpm install --frozen-lockfile
COPY . .
RUN pnpm --filter @mosaic/web build
RUN pnpm --filter @mosaicstack/web build
FROM base AS runner
WORKDIR /app
+2 -8
View File
@@ -149,15 +149,9 @@ for any `<Image>` components added in the future.
---
## How to Apply
## Held future procedure
```bash
# Run the DB migration (requires a live DB)
pnpm --filter @mosaicstack/db exec drizzle-kit migrate
# Or, in Docker/Swarm — migrations run automatically on gateway startup
# via runMigrations() in packages/db/src/migrate.ts
```
This report is non-operative evidence, not a current runbook. Until **KBN-101-00, KBN-101-03, and KBN-101-05** land, do not execute a PostgreSQL runner from this checkout. The approved future procedure is exactly: external bootstrap → TLS/roles → `mosaic-db-migrator --run``mosaic-db-migrator --verify` → Gateway/Compose readiness. Deployment will supply the reviewed runner, migration-only credentials, and TLS material; Gateway startup only verifies readiness.
---
+203 -4
View File
@@ -79,6 +79,174 @@ Jarvis (v0.2.0) is a self-hosted AI assistant with a Python FastAPI backend and
---
## Compaction Refresh Trust Lifecycle (M1, #827#830)
### Problem and objective
Context compaction, session replacement, and same-PID runtime reloads can leave a previously VERIFIED runtime lease attached to stale directives. M1 must revoke that authority mechanically for Claude (including Claudex) and Pi without trusting caller-asserted identity or forking the external broker state machine.
### Requirements
1. `CR-REQ-01`: Claude `PreCompact` and `SessionStart` with matcher `compact`, plus Pi `session_before_compact` and the first post-`session_compact` `context`, SHALL independently revoke the active broker lease.
2. `CR-REQ-02`: Runtime generation increases—including same-PID Pi reload/new/resume/fork and Claude resume/clear—SHALL monotonically replace the prior broker incarnation and inherit no VERIFIED lease.
3. `CR-REQ-03`: A fired observer that cannot confirm broker revocation SHALL fail closed through lifecycle cancellation, a private local generation fence, and/or a runtime-local tool latch. The existing all-tools broker gate remains authoritative.
4. `CR-REQ-04`: The lease TTL SHALL remain monotonic and capped at 300 seconds. If both observers are missed, within-TTL consequential actions remain allowed and after-TTL actions are denied. This named bounded residual stale window SHALL be documented without claiming a mutator-action bound inside the window.
5. `CR-REQ-05`: Hook descendants SHALL use the broker-minted session and owner-only current-generation state inherited from register-before-exec. Caller-minted sessions and parallel lease state machines remain forbidden.
### Acceptance criteria
1. `AC-CR-01`: Real-socket tests prove each Claude observer revokes, Pi lifecycle tests prove both observer paths, and Claudex isolated settings preserve and install the mandatory hooks.
2. `AC-CR-02`: A same-PID generation test proves the old generation is stale and the replacement generation is UNVERIFIED across reload/resume/fork-equivalent lifecycle events.
3. `AC-CR-03`: RED-first T12b/T30 evidence explicitly reports dual-hook miss within TTL as **ALLOWED** and after TTL as **DENIED**.
4. `AC-CR-04`: Attributable executable coverage is at least 85%, the full repository suite is green on deterministic main, and independent code/security review completes before merge.
---
## Fleet Declarative Configuration Management Workstream (FCM, #758)
### Problem and objective
The local Mosaic fleet has a roster, generated agent environment files, user-systemd units, tmux
sessions, heartbeat files, examples, profiles, and separate gateway-backed agent records. These
planes have drifted and are not one safe operator lifecycle. The objective is one **local fleet
roster** as the desired-state SSOT, with generated environment, systemd, tmux, and heartbeat
artifacts as rebuildable projections; it does not merge the local fleet control plane with the
gateway-backed agent catalog.
### Normative requirements
| ID | Requirement |
| ------------ | ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- |
| `FCM-REQ-01` | The roster SHALL be the sole writable desired-state source for local fleet membership, launch policy, and persisted lifecycle target. Generated environment files, systemd enablement, tmux sessions, and heartbeat state SHALL be non-authoritative projections. |
| `FCM-REQ-02` | The implementation SHALL provide one executable structural contract for YAML/JSON input and one shared semantic validator. Roster load, profile validation, provision, migration, and apply SHALL reuse the existing baseline-plus-`roles.local` profile/persona resolver; a parallel role resolver is forbidden. |
| `FCM-REQ-03` | The local fleet CLI SHALL expose documented programmatic validate, show, plan, apply/reconcile, create, inspect, update, delete, start, stop, restart, status, verify, and doctor operations with stable JSON and exit-code behavior. Existing `fleet add/remove` compatibility aliases may remain during the stated deprecation window. |
| `FCM-REQ-04` | A fresh create SHALL persist `enabled:true` and `desired_state:stopped` unless an explicit persisted start is requested. The model SHALL distinguish enabled state, persisted desired state, and observed state. Migration, apply, reboot, and rollback SHALL not start an agent that was observed stopped before cutover. |
| `FCM-REQ-05` | The launch chain SHALL consume deterministic, digest-stamped generated input only. Optional local overrides SHALL be parsed as strict data, may not shadow authoritative generated keys, and may not contain arbitrary commands, credential values, channels, or unknown `MOSAIC_AGENT_*` keys. Forbidden legacy keys, including `MOSAIC_AGENT_COMMAND`, SHALL be privately quarantined before launch and reported only by key name and content hash. |
| `FCM-REQ-06` | Mutations and apply SHALL validate before mutation, use an expected generation/lock, write projections atomically, produce a deterministic plan, and emit recovery information on partial failure. Reconciliation SHALL act only on local, enabled, roster-owned projections and SHALL not kill unmanaged tmux sessions by fuzzy name. |
| `FCM-REQ-07` | Canonical required classes are `code`, `review`, `validator`, `orchestrator`, `team-leader`, `enhancer`, and `interaction`. `validator` issues an independent final certificate but has no merge authority; `merge-gate` remains sole approve-to-land/merge authority. Team-leader capacity is bounded by an orchestrator-issued lease, and interaction is request/status only. Tess and Ultron are configurable instance/display names, not required machine identities. |
| `FCM-REQ-08` | v1 migration SHALL be field-complete, reversible, and explicit about aliases, unresolved classes, lifecycle inference, generated-file regeneration, local override quarantine, schema-only remote/connector fields, and rollback. Every shipped example, profile, and service preset SHALL be migrated and executable, retained as an explicitly versioned v1 fixture, or retired with a replacement and deprecation note. |
| `FCM-REQ-09` | M1M5 SHALL remain local tmux/systemd control-plane work. Remote/SSH reconciliation, connector mutation, secret references, arbitrary command/channel overrides, gateway/API convergence, and UI configuration storage are excluded and require a separate PRD/threat model. |
| `FCM-REQ-10` | Documentation and examples are delivery gates. The M0 checklist at [docs/fleet/FLEET-CONFIG-DOCS-IA-CHECKLIST.md](./fleet/FLEET-CONFIG-DOCS-IA-CHECKLIST.md) and the baseline disposition inventory at [docs/fleet/LEGACY-EXAMPLE-PROFILE-DISPOSITION-INVENTORY.md](./fleet/LEGACY-EXAMPLE-PROFILE-DISPOSITION-INVENTORY.md) SHALL be maintained as acceptance evidence. |
### Acceptance criteria
1. `AC-FCM-01`: A valid local v2 roster can be parsed from YAML or JSON, validated structurally and semantically through the shared resolver, and rendered canonically; invalid fields, duplicate names, unresolved classes, unsupported runtime/model combinations, socket ambiguity, and incompatible options fail closed.
2. `AC-FCM-02`: `plan` reports deterministic desired-versus-observed differences for roster, generated environment, systemd enablement, tmux/session, heartbeat, installed-asset revision, and provable orphans without mutation; `apply --check` reports drift without mutation.
3. `AC-FCM-03`: Local create/update/delete is generation-guarded, atomic, idempotent, and safe by default; it permits supported runtime/model/harness/effort/workdir/role changes without direct editing of generated environment files and does not start a newly created agent unless explicitly persisted.
4. `AC-FCM-04`: The generated-env/local-override launch chain rejects generated-key shadowing, arbitrary command override, unknown keys, shell evaluation, and sensitive-value diagnostics before any agent starts; known-safe legacy input is regenerated or strictly relocated, and forbidden input is quarantined.
5. `AC-FCM-05`: Local lifecycle reconciliation implements the persisted/transient start-stop rules, exact default/named tmux socket targeting, systemd/tmux status, stale generated state, unmanaged-session reporting, and rollback without surprise restarts or fuzzy destructive targeting.
6. `AC-FCM-06`: A v1 roster migration previews field-by-field disposition, preserves observed stopped/running state, inventories rather than reconciles remote/schema-only entries, supports a canary and rollback, and classifies every shipped example, profile, and service preset according to the M0 inventory.
7. `AC-FCM-07`: Required role authority is validated: validator certificate is consumed but does not merge, merge-gate is the sole merge authority, team-leader leases do not change roster/credentials/authority, and interaction/Tess cannot claim orchestration or merge powers.
8. `AC-FCM-08`: Documentation, examples, migration, troubleshooting, operational recovery, package/update asset drift, schema/example/profile validation, independent code/security review, validator certificate, and terminal-green CI are complete before #758 closes.
### M0 implementation gate
No source, schema, role, example, profile, systemd, or live-fleet change is authorized before M0
lands. M0 consists only of these normative requirements, the complete task DAG, the scoped
documentation IA checklist, and the legacy example/profile disposition inventory. Subsequent cards
are defined in [docs/TASKS.md](./TASKS.md) and must remain one card/one PR.
---
## Exact Cross-Harness Fleet Communications Contract (#766)
### Problem and objective
Fleet runtime contracts currently combine exact peer rows with generic operational metavariables and
independently parsed roster data. Non-Claude harnesses can mistake those metavariables for values to
infer, producing incorrect host, session, socket, or helper targets. The objective is one
roster-resolved communications contract that every supported harness receives unchanged.
### Normative requirements
1. `FCOM-REQ-01`: Fleet commands and runtime composition SHALL use one shared v1 roster structural
resolver. A second lenient communications parser is forbidden.
2. `FCOM-REQ-02`: The composed contract SHALL render the local roster member's authoritative host,
exact agent/session name, resolved tmux socket, exact helper path, and deterministic communications
generation.
3. `FCOM-REQ-03`: Every known peer SHALL have one exact executable command. Same-host commands SHALL
omit `-H`; cross-host commands SHALL use only that peer's explicit roster `ssh` target; the one
supported fleet-wide named socket SHALL use `-L` with its exact value. A per-agent socket declaration
must equal that fleet-wide value; unsupported independent sockets and missing cross-host SSH data SHALL
fail closed.
4. `FCOM-REQ-04`: Operational fleet examples SHALL not contain unresolved host, session, socket, or
helper-path metavariables. Agents SHALL select an exact rendered peer row and SHALL NOT infer,
substitute, or fuzzy-match targeting values.
5. `FCOM-REQ-05`: An unknown local member or requested peer SHALL fail closed with exact-name discovery
guidance. Runtime composition SHALL not silently omit a requested fleet member's communications
contract.
6. `FCOM-REQ-06`: Claude Code, Codex, OpenCode, and Pi SHALL receive equivalent authoritative
communications data through the common runtime composer.
7. `FCOM-REQ-07`: Tests SHALL prove the contract from framework-source `TOOLS.md`, through a fresh
installed `TOOLS.md`, to final runtime composition and helper executability. User-owned installed
`TOOLS.md` content SHALL remain preserved.
8. `FCOM-REQ-08`: Stale installed or active composed context SHALL be reported with deterministic
generation/repair/relaunch guidance. Currency requires the expected source and installed contract
marker/version plus bounded byte equality. The supported current-version repair SHALL run independently
of package updates, preserve divergent `TOOLS.md` bytes in a digest-qualified no-clobber backup, restore
a regular executable helper without following symlinks, and be idempotent. Detection and reporting SHALL
NOT rewrite active context, restart a session, or mutate a live fleet.
9. `FCOM-REQ-09`: The shared resolver SHALL preserve and strictly validate every schema-supported v1
connector kind (`tmux`, `discord`, and `matrix`) from YAML and JSON. Every accepted snake/camel alias
pair SHALL reject differing dual declarations and accept identical declarations. JSON roster fallback
SHALL occur only when `roster.yaml` is absent; all other YAML access failures SHALL fail closed.
10. `FCOM-REQ-10`: The communications generation SHALL cover the complete canonical rendered semantic
contract, including identity, role/class, resolved host/socket/helper, peer metadata, and exact commands.
Installed helpers SHALL be validated with no-follow filesystem inspection as regular executable files.
Keep-mode reseed and relaunch discovery SHALL preserve and support both YAML and JSON rosters.
### Acceptance criteria
1. `AC-FCOM-01`: Contract fixtures contain no unresolved operational targeting metavariables; local
identity contains exact host/session/socket/helper values.
2. `AC-FCOM-02`: Same-host, cross-host, named-socket, literal-default-socket, and missing-SSH tests prove
exact targeting and fail-closed behavior.
3. `AC-FCOM-03`: Unknown identities and peers report known exact names plus an exact self-scoped
discovery command; no fuzzy session selection is emitted.
4. `AC-FCOM-04`: Four-harness tests prove byte-equal authoritative communications sections.
5. `AC-FCOM-05`: Source, fresh-install, preserved-custom-install, stale-installed, composed-generation,
helper executable, agent-send socket isolation, and exact-target tests pass.
6. `AC-FCOM-06`: Documentation defines non-mutating stale-context detection and operator-authorized,
exact-agent relaunch; no implementation path performs automatic session mutation.
7. `AC-FCOM-07`: YAML and JSON fixtures cover every connector kind; all snake/camel aliases cover
identical acceptance and conflicting rejection; non-`ENOENT` YAML failures do not fall back.
8. `AC-FCOM-08`: Missing, directory, symlink, and non-executable installed helpers fail closed. Explicit
current-version repair proves partial-deletion recovery, digest-qualified backup collision safety,
symlink-target safety, and repeated-run idempotence.
9. `AC-FCOM-09`: Markerless-equal and wrong-version source/installed contracts are stale, and a rendered
role/class change produces a different communications generation.
---
## KBN-101 Database Runtime/Migration Role Split (#771)
### Problem and objective
PostgreSQL Gateway/storage currently uses one `DATABASE_URL` for runtime queries and migrations. That makes the deployed application identity an owner and prevents certification that KBN immutable event, artifact, checkpoint, and evidence relations reject runtime `UPDATE`/`DELETE`. KBN-101 freezes a least-privilege runtime/migration split before KBN-100 schema work.
### Normative requirements
1. `K101-REQ-01`: `DATABASE_URL` SHALL be the non-owner PostgreSQL runtime connection and `DATABASE_MIGRATION_URL` SHALL be the migration-only owner/migrator connection. They are required respectively for runtime and the dedicated `mosaic-db-migrator --run|--verify` phase in `standalone`/`federated`; local PGlite is the explicit exception. The published `@mosaicstack/db` bin maps exactly `mosaic-db-migrator` to `./dist/cli.js`, its image entrypoint is exactly `mosaic-db-migrator`, accepts no URL/SQL/schema/role argv, and returns stable sanitized exits. Every current/future PostgreSQL DDL entrypoint SHALL route to that runner or be denied, and SHALL reject `DATABASE_URL`-only execution before connection/DDL. Data migration may connect only after the runner prepares and verifies the PostgreSQL target, through dedicated non-DDL `mosaic_data_importer` and exactly `--target-url-file /run/secrets/mosaic-migrate-target-url`, its fixed paired authenticated provider-version file `/run/secrets/mosaic-migrate-target-version`, plus `--target-attestation-file /run/mosaic-attestations/migrate-target.v1.json`. KBN-101-05 obtains URL key `url` and version only from the same successful Vault KV-v2 response at `secret-{env}/mosaic-stack/database/importer` (`data.metadata.version`), renders them as one immutable generation into separate consumer copies, and never infers a provider version from DSN bytes. The trusted runner verifies TLS/identity/manifest, reads its fixed importer URL/version copies only for binding through safe no-follow fd checks, and signs a credential-free JCS/Ed25519 attestation using its runner-only fixed root-owned private-key file; no signing key reaches importer/runtime. The artifact binds secret version and SHA-256 of exact high-entropy credential-file bytes, canonical TLS host/port/database, CA/SPKI, PostgreSQL system identifier/database OID, importer role, manifest/schema fingerprints, producer invocation/build/image digest, issued/expires/nonce, and correlation. Before target connection the importer validates URL/version/attestation/public-key files, signature/key/expiry/replay/authenticated provider version/digest/generation/bindings and the importer-only CA at exact `DATABASE_TLS_CA_CERT_PATH`; after verified TLS and before DML it validates server/database/role/CA/schema identity, with same-fd/in-memory-byte TOCTOU protection, rotation/revocation, a privileged producer-only-to-importer-only artifact handoff controller that verifies/copies/fsyncs/atomically renames/seals before importer start, consumer isolation/no logging-oracle, and sanitized errors. Raw `--target-url`, `DATABASE_URL` fallback, runtime-owner use, missing/unsafe/substituted files, stale/replayed/tampered/wrong-key attestation, wrong binding, and DDL attempt fail before target connection/DDL; post-connect mismatch closes with zero DML/DDL. A reviewed finite classifier inventories executable current source/scripts/package bins, operator docs, deploy manifests, and exact normative contracts by path; active secure records pin both options/files, producer/key/bindings/tests, while normative contracts cannot mask instructions. Unknown active commands, duplicate-owner, ownerless, missing-path, and historical/status-only masking hits fail. `db:push` is forbidden outside an explicitly disposable local developer database and cannot accept a production-like URL.
2. `K101-REQ-02`: Gateway runtime/replicas SHALL not execute migrations or DDL. The runner SHALL hold one `max:1` session and fixed two-int advisory namespace `1297044289` (`MOSA`), `1262636593` (`KBN1`) across preflight, reconciliation, migration, verification, and release. It SHALL compare the versioned canonical manifest v1 tuple (journal logical index/tag plus exact SQL-byte SHA-256) to the complete observed ledger mapping; count/set-only, timestamps, and physical insertion order are non-normative and insufficient.
3. `K101-REQ-03`: PostgreSQL SHALL separate non-login platform database owner, non-login schema owner, dedicated `NOLOGIN SUPERUSER` `mosaic_extension_owner`, login migrator, dedicated login non-DDL data importer, non-login runtime capability, and login runtime roles. For PostgreSQL 17 + pgvector 0.8.2, `vector` is untrusted (`trusted` is absent and `relocatable=true`): only an externally controlled audited platform-bootstrap superuser session may `SET ROLE mosaic_extension_owner` for CREATE/UPDATE/SET SCHEMA, then `RESET ROLE`; the role has `rolcanlogin=false`, `rolsuper=true`, zero members, no runtime credential/Vault secret, and is never provided to app containers. It owns `mosaic_extensions`, fresh `vector`, and owner-bearing extension members, while `mosaic_schema_owner` receives only `USAGE` for type resolution and never ownership/`CREATE`/`ALTER`/`DROP`/member-change/default-privilege authority there. Superuser cannot be constrained by `GRANT`/`REVOKE`; this is identity/non-login/no-membership/external-control/audit isolation, not a false least-privilege claim. Extension operations require control-plane change, independent review, backup/rollback, maintenance window, and audit evidence. Managed targets that cannot establish this exact role are ineligible until an independently approved versioned provider-owned extension-owner profile exists; app/migrator ownership is never silently retained. Existing approved-owner extension relocation validates exact `pg_namespace.nspowner`, `pg_extension.extowner`, member ownership/schema/version, while legacy runtime-owned extension fails closed to a controlled shadow-database migration—never unsupported ownership alteration, catalog mutation, ownership adoption, or `DROP CASCADE`. Runtime, migrator, schema owner, importer, and all service roles must fail `SET ROLE`, catalog/direct `ALTER`/`UPDATE`/`DROP`/membership-change denial, role ownership, superuser/role-creation/schema-creation/TEMPORARY, unsafe membership, untrusted search path, missing grants, unauthenticated TLS, and immutable privilege drift checks. Application schema is fixed `mosaic` with exact `pg_catalog,mosaic` session path; historical public migrations remain byte-immutable legacy bootstrap only, every future Drizzle application declaration targets `mosaic`, and `vector` is explicitly qualified from non-writable `mosaic_extensions`. No config-derived SQL identifier is permitted.
4. `K101-REQ-04`: `mosaicstack/stack` KBN-101-00 SHALL exclusively own `infra/pg-bootstrap/roles.sql`, `infra/pg-bootstrap/extensions.sql`, `infra/pg-bootstrap/README.md`, and bootstrap tests; KBN-101-05 SHALL exclusively own `tools/db/render-postgres-secrets.ts`, its tests, and current Compose/Portainer/two-gateway deployment declarations, consuming the versioned bootstrap interface without overlap. Environment IaC/Vault is named input and Mosaic deployment control plane/Jason is activation authority. Distinct runtime/migrator/importer URL, importer authenticated provider-version, DB-client CA, Gateway leaf, and PostgreSQL server key/certificate materials are provisioned before a production-like database starts. Importer and migrator have separate immutable URL/version copies at fixed `10002:10002`/`10003:10003` identities; runtime/unrelated containers receive neither importer material, attestation private key, or importer artifact. Runtime, migrator, and importer require their mounted CA plus `sslmode=verify-full`. Exact UID/GID/mode/rendering, service-DNS SANs, Vault/compose/Swarm consumer isolation, two-gateway pair ordering, server activation, pre-enforcement legacy-client drain and `hostssl` zero-plaintext-session proof, fresh/existing transition, CA-overlap rotation, TLS-only rollback, and standalone/federated/Swarm/two-gateway positive/negative TLS evidence are required. No application-generated production certificate or plaintext bootstrap exception is permitted.
5. `K101-REQ-05`: KBN immutable relations SHALL permit the real runtime role INSERT/SELECT only and deny UPDATE/DELETE; parent retention remains RESTRICT/no-cascade. Role/password/Vault creation is external platform control, never application migration/source.
6. `K101-REQ-06`: N-1 single-URL compatibility, rollout/rollback, Vault ownership/rotation/redaction, CI, installer, compose/Portainer, observability, and deployment handoffs SHALL be separately bounded one-card/one-PR work. Prepared slices remain inactive while current owner-runtime deployments stay N-1; Mosaic control plane/Jason alone authorizes one final atomic activation or rollback, with no force-on-red/bypass. KBN-101 planning itself SHALL not mutate production.
7. `K101-REQ-07`: KBN-100 SHALL begin only after the KBN-101 foundation role/schema-boundary certificate; it SHALL rebase on that main head, restore generated Drizzle declaration/snapshot/journal consistency, and bound procedural immutable-table grant/trigger/backfill additions to its schema slice. KBN-101 real deployed-role immutable-operation certification SHALL complete after KBN-100 creates those relations and before KBN-105.
### Acceptance criteria
1. `AC-K101-01`: DTO/command-matrix tests prove required modes, PGlite exception, `mosaic-db-migrator --help|--run|--verify`/stable exits/argv refusal, public-import negative, every finite classified DDL/static-bypass inventory path and both harness pairs reject `DATABASE_URL`-only before connection/DDL, no migration-to-runtime fallback, and `db:push` refusal outside an allowlisted disposable DB. Before inventory, ownership, or status masking, the semantic fixture fails README's exact former commented code-fence generic-wrapper form and the user guide's exact former executable generic-wrapper form; source-consistency proves current `packages/storage/src/cli.ts` directly `execSync`s `pnpm --filter @mosaicstack/db db:migrate` and no `mosaic-db-migrator` bin exists, so runner-delegation documentation fails. The active `docs/guides/migrate-tier.md` route is inventoried to KBN-101-07 and proves runner-produced `--target-url-file /run/secrets/mosaic-migrate-target-url`, fixed paired provider-version file, and `--target-attestation-file /run/mosaic-attestations/migrate-target.v1.json`; runner-only signing/private-key isolation; Vault KV-v2 same-response version provenance, separate immutable generation mounts, importer CA, JCS/Ed25519 signature/key rotation/revocation, atomic artifact, expiry/replay, safe-fd secret-version/digest, canonical TLS/CA/server/database/role/manifest/schema bindings, dedicated non-DDL importer, consumer isolation/no log-oracle, and exact no-connection versus zero-DML rejection for missing/wrong/stale/replayed/tampered/wrong-key/substituted/generation-mismatched inputs. The full current non-normative docs inventory—including user guide, federation historical task/MILESTONES status, and non-operative SETUP—has an exact safe disposition. Scanner semantic checks reject automatic first-boot/startup extension/schema/migration wording, Compose-up-before-runner, init-script authority, production `.env`/monorepo auto-load/`EnvironmentFile=`/credential-export-or-argv/restart-as-secret-activation routes, and every unqualified operator-document `mosaic-db-migrator --run|--verify` hit regardless of named/normative/status classification. The exact former README/dev/deployment Compose-first sequences, former SETUP wording, exact former MILESTONES wording `pgvector extension installed + verified on startup`, former architecture-plan/PERFORMANCE/backlog runner routes, and any unqualified runner fixture fail before inventory masking. Only one `Held future procedure` Markdown section—bounded through the next equal-or-higher heading—may contain the explicit non-operative/no-current-command-authority form that names KBN-101-00/-03/-05 and preserves external bootstrap → TLS/roles → `mosaic-db-migrator --run``mosaic-db-migrator --verify` → Gateway/Compose readiness; every runner hit outside that section fails. The README assertion for the checked-in direct CI `pnpm --filter @mosaicstack/db run db:migrate` with `DATABASE_URL` passes only as active legacy N-1, uncertified, non-authorizing-as-an-operator-route status against an isolated disposable CI database pending KBN-101-06 removal—not as an ordinary operator or approved DDL-authority route. Only local PGlite data-layer work or non-PostgreSQL Compose is current (Gateway/Web local startup is held pending daemon/inherited/project-DSN rejection).
2. `AC-K101-02`: Fixed namespace lock contention/crash/readiness/non-interference and exact manifest-v1 reconciliation tests prove no replica race/runtime auto-migration and fail closed on every missing/unknown/duplicate/ambiguous/corrupt/stale ledger state.
3. `AC-K101-03`: Actual PostgreSQL 17 + pgvector 0.8.2 control-file, catalog, Drizzle-generation, vector-query/operator, fresh/approved-owner/legacy-shadow/partial/resume/rollback/N-1, and real deployed-role tests prove `trusted` absent/untrusted plus relocatability, external-superuser `SET ROLE` create/update/`RESET ROLE` audit, exact `rolcanlogin=false`/`rolsuper=true`/zero-membership/no-runtime-secret state, platform/schema/extension-owner/migrator/importer/runtime separation, `pg_extension.extowner` plus owner-bearing extension-member/schema/version assertions, and runtime/migrator/schema-owner/importer/all-service-role `SET ROLE`/ALTER/DROP/member-update denial. They also prove `pg_catalog,mosaic` per-session pool safety, `mosaic_extensions` qualification, identifier injection denial, ownership/membership/ledger-read/TEMP/default grants, and unsafe privilege denial.
4. `AC-K101-04`: Disposable standalone, federated/Swarm, and two-gateway verified-TLS positives plus for both pairs missing CA/wrong CA/wrong SAN/sslmode downgrade, server/Gateway key mode, UID/GID, secret-consumer isolation, and legacy-drain/`hostssl` negatives prove server bootstrap, ordering, and readiness; PGlite is expressly excluded from this PostgreSQL evidence.
5. `AC-K101-05`: Real runtime-role evidence proves INSERT/SELECT succeeds and UPDATE/DELETE fails for every frozen immutable KBN relation.
6. `AC-K101-06`: N-1/atomic activation/rollback, Vault/CA-overlap rotation/redaction, health/operator behavior, CI/deployment handoff, independent exact-head security review, and terminal-green CI evidence the foundation before KBN-100; after KBN-100, the real deployed-role immutable-operation certificate and Ultron approval release KBN-105.
**Normative implementation contract:** [`docs/native-kanban-sot/KBN-101-DB-ROLE-SPLIT.md`](./native-kanban-sot/KBN-101-DB-ROLE-SPLIT.md). `ASSUMPTION:` existing `standalone` and `federated` are all PostgreSQL production-like modes; any new PostgreSQL tier inherits these requirements until an explicit versioned amendment.
---
## Tess Interaction Agent Workstream (TESS)
### Problem and Objective
@@ -238,6 +406,37 @@ Use TDD for remote-ingress routing and permission boundaries. Required evidence
---
## Mos Runtime Portability Workstream (MOS-PORT)
### Problem and Objective
Mos is currently identified partly by a harness-native session and communication process. Replacement/rebinding exists, but no gateway-enforced logical identity or fencing prevents a stale harness from continuing to reply or execute effects after takeover.
The objective is to make Mos a server-derived logical Mosaic identity whose authority can move safely among runtime connectors. The gateway owns identity, lease, policy, and audit; harnesses remain replaceable adapters.
### M1 Requirements
1. `MOS-PORT-ID-001`: Define a normalized logical-agent identity independent of Claude Code, Pi, Codex, tmux, Matrix, and provider-native session IDs.
2. `MOS-PORT-LEASE-001`: Persist one exclusive connector lease per tenant/logical-agent/binding with CAS acquisition, monotonic fencing epoch, TTL, heartbeat, explicit release, and takeover.
3. `MOS-PORT-FENCE-001`: Bind every connector dispatch/execution grant to the current server-derived tenant, logical identity, binding, connector, scopes, expiry, and lease epoch.
4. `MOS-PORT-FENCE-002`: Reject and audit stale, expired, forged, cross-tenant, cross-binding, and unauthorized grants before connector, channel, provider, or tool side effects.
5. `MOS-PORT-OBS-001`: Emit credential-safe correlation/audit events for lease acquire, renew, takeover, reject, release, and expiry.
6. `MOS-PORT-ARCH-001`: Runtime/provider adapters consume normalized lease context without adding harness-native schemas to Mosaic core.
### M1 Acceptance Criteria
1. `AC-MOS-PORT-01`: Two contenders for one binding cannot simultaneously hold current authority under concurrency.
2. `AC-MOS-PORT-02`: Successful takeover increments the fencing epoch and every operation from the old epoch fails closed before side effects.
3. `AC-MOS-PORT-03`: Gateway/database restart preserves lease and epoch state; expired leases can be recovered only through the authorized takeover path.
4. `AC-MOS-PORT-04`: Cross-tenant, cross-agent, cross-binding, forged, and expired lease/grant cases are denied and audited.
5. `AC-MOS-PORT-05`: Unit, migration, repository close/reopen, concurrency, abuse, gateway integration, independent security review, CI, and documentation gates pass.
### Deferred to Later #754 Milestones
Canonical checkpoint/handoff payloads, exactly-once connector receipts, concrete Claude/Pi/Codex adapters, channel cutover, and full cross-harness failover/rollback E2E are explicitly out of M1 scope.
---
## Architecture
### High-Level System Diagram
@@ -1005,10 +1204,10 @@ Telegram remote control channel.
### AC-10: Deployment
- [ ] `docker compose up` starts full stack from clean state
- [ ] `mosaic` CLI installable and functional on bare metal
- [ ] Database migrations run automatically on first start
- [ ] `.env.example` documents all required configuration
- [ ] PGlite data-layer work uses no PostgreSQL; optional Compose services are selected individually and do not start PostgreSQL; Gateway/Web local start remains held until KBN-101-02 rejects daemon/inherited/project DSNs before connection or DDL
- [ ] PostgreSQL/federated activation is unavailable until KBN-101-00/-03/-05 deliver external bootstrap, TLS/roles, runner `--run`, runner `--verify`, and Gateway/Compose readiness in that order
- [ ] `mosaic` CLI installable and functional on bare metal after the reviewed KBN-101-05 secret-renderer/process-exec or `LoadCredential` interface exists
- [ ] Local-only configuration documentation is distinct from production generation-pinned Vault-rendered consumer material
### AC-11: @mosaicstack/\* Packages
+52
View File
@@ -1,5 +1,40 @@
# Documentation Sitemap
## Compaction refresh lease broker
- [Internal broker protocol](architecture/lease-broker-protocol.md) — kernel identity, ancestry and generation invariants, framed requests, responses, and persisted cycle bindings.
- [Broker operations](guides/lease-broker-operations.md) — protected paths, startup, constrained recovery, fail-closed posture, distinct-principal deployment, and residual risk.
- [Constrained recovery skill](../packages/mosaic/framework/skills/mosaic-context-refresh/SKILL.md) — source-resident thin wrapper, receipt scope, C4 replay boundary, and T-C middle-drop disclosure.
- [Lease-broker security notes](architecture/lease-broker-security.md) — identity, whole-class authorization, threat boundaries, and coordinator review requirements.
- [Whole mutator-class gate](architecture/mutator-class-gate.md) — default-deny policy, revoke-first/promote-last state machine, TTL, runtime adapters, and T-B/T-C assurance boundary.
- [Compaction revocation lifecycle](architecture/compaction-revocation.md) — Claude/Pi observer matrix, same-PID generation rollover, failure fencing, and the named bounded residual stale window.
## CLI and skill management
- [Skill registration user guide](guides/user-guide.md#claude-code-skill-registration) — register, unregister, list statuses, automatic install/update reconciliation, and Claude reload behavior.
- [Skill bridge developer guide](guides/dev-guide.md#claude-code-skill-bridge) — path-validation, ownership, clobber-protection, install/update wiring, tests, and Pi/Codex scope notes.
## Fleet configuration management
- [Fleet configuration entry point](fleet/README.md) — desired-versus-observed decision tree and complete operator link map.
- [Desired, derived, and observed state](fleet/concepts/desired-vs-observed-state.md) — roster authority, generation, ownership, and drift.
- [Identity, class, and runtime](fleet/concepts/identity-class-runtime.md) — stable name, display alias, class, runtime, provider, and model separation.
- [Role authority and leases](fleet/concepts/role-authority-and-leases.md) — validator/merge-gate separation and bounded lease authority.
- [Generated launch chain](fleet/concepts/generated-env-launch-chain.md) — strict data parsing, precedence, and quarantine.
- [Roster v2 structural contract](fleet/reference/roster-v2-fields.md) — schema, supported values, required fields, defaults, and constraints.
- [Fleet CLI reference](fleet/reference/cli.md) — local desired-state commands, JSON/exit behavior, and gateway-catalog separation.
- [Lifecycle transitions](fleet/reference/lifecycle-transitions.md) — create/apply/reboot/migration/rollback boundaries.
- [Status and drift](fleet/reference/status-and-drift.md) — desired/managed/observed state and current/future classifications.
- [Safe agent CRUD](fleet/how-to/create-update-delete-agent.md) — expected generation, dry-run, and partial-failure recovery.
- [Local lifecycle operations](fleet/how-to/start-stop-restart.md) — persisted versus one-shot actions.
- [Configurable interaction instance](fleet/how-to/configure-tess-interaction.md) and [validator instance](fleet/how-to/configure-ultron-validator.md) — generic identities and protected limits.
- [Reconcile and recover](fleet/operations/reconcile-and-recover.md) — plan/apply lock and recovery behavior.
- [Environment quarantine](fleet/operations/env-quarantine.md) — private evidence and value-free diagnostics.
- [Systemd/tmux troubleshooting](fleet/operations/systemd-tmux-troubleshooting.md) — socket, holder, unmanaged-session, and lock decisions.
- [Backup/restore boundary](fleet/operations/backup-restore.md) and [upgrade-assets hold](fleet/operations/upgrade-assets.md).
- [v1-to-v2 migration preview](fleet/migration/v1-to-v2.md) and [executable artifact dispositions](fleet/migration/example-profile-disposition.md).
- [FCM M5 closure evidence](reports/documentation/758-fleet-config-ia-closure.md) and [approved deferrals](reports/deferred/758-fleet-config-deferrals.md).
## Official channel plugins
- [Channel protocol architecture](architecture/channel-protocol.md) — shared lifecycle, message, stable-route, authorization, and response-target contracts.
@@ -14,7 +49,10 @@
- [Workstream index](native-kanban-sot/INDEX.md) — artifact map, lane partition, and delivery order.
- [Mission manifest](native-kanban-sot/MISSION-MANIFEST.md) — scope, authority, invariants, and gate model.
- [Task decomposition](native-kanban-sot/TASKS.md) — dependency-ordered implementation slices and ownership boundaries.
- [KBN-101 database role split](native-kanban-sot/KBN-101-DB-ROLE-SPLIT.md) — rc.16 direct-Drizzle storage-wrapper hold: legacy N-1/uncertified/non-operative pending -02/-03/-06/-08; exact README/user-guide wrapper forms fail before masking and source-consistency rejects runner-delegation copy; held bootstrap → TLS/roles → run → verify → readiness; plus prior attestation, pgvector owner, classifier, TLS, activation, and certification prerequisite.
- [Federated tier data migration](guides/migrate-tier.md) — active KBN-101-07 operator route: runner-produced target attestation, dedicated non-DDL importer, and paired credential-/attestation-file references only.
- [Frozen shared contract](native-kanban-sot/SHARED-CONTRACT.md) — schema, API, Coordinator, health, recovery, and migration contracts.
- [KBN-101 exact-head security review](reports/native-kanban-sot/kbn-101-contract-security-review-82ce325.md) — retained prior REQUEST CHANGES evidence for `da742ca`; rc.16 awaits independent exact-head re-review after closing the current generic storage-wrapper authority HIGH finding.
- [Initial independent review](reports/native-kanban-sot/canon-initial-review-no-go.md) — KCR-001016 findings that blocked the first draft.
- [Final independent re-review](reports/native-kanban-sot/canon-final-rereview-go.md) — closure evidence and GO verdict.
- [Ultron final gate](reports/native-kanban-sot/ultron-final-go.md) — final requirements, authority, schema, migration, recovery, and evidence review.
@@ -49,3 +87,17 @@
- [Retention and deprecation evidence](tess/M5-MIGRATION-RETENTION-DEPRECATION.md)
- [Verification matrix](tess/VERIFICATION-MATRIX.md)
- [Documentation checklist](tess/M5-003-DOCUMENTATION-CHECKLIST.md)
- [Independent Option 2 runtime-portability qualification (2026-07-14)](tess/qualification/2026-07-14-option2-runtime-portability.md)
## Runtime-neutral Mos portability
- [Optional AI egress gateway ADR](architecture/ADR-MOS-EGRESS-GATEWAYS.md) — placement and gates for LiteLLM, Bifrost, and purpose-built translation proxies.
- [Runtime-neutral Mos identity and failover mission](https://git.mosaicstack.dev/mosaicstack/stack/issues/754)
- [Logical identity and connector lease/fencing implementation](https://git.mosaicstack.dev/mosaicstack/stack/issues/755)
- [M1 logical identity and fencing architecture](architecture/mos-runtime-portability-m1.md)
- [M1 connector lease operations](guides/mos-connector-lease-operations.md)
## Comms evolution — Matrix-native MACP (design, draft)
- [RFC-001 — MACP: a Mosaic-native, Matrix-native comms layer](rfcs/RFC-001-MACP-MATRIX-NATIVE.md) — Synapse + Mosaic appservice backbone, MACP v1 protocol, presence/escalation, federation, strangler migration off the Hermes MCP bridge.
- [RFC-002 — Install, configuration & topology for the Matrix/MACP comms system](rfcs/RFC-002-INSTALL-CONFIG-TOPOLOGY.md) — open-source install topology modes, ACME cert provisioning, pluggable secret backend, and config precedence.
+30 -5
View File
@@ -14,11 +14,12 @@
## Workstream Rollup
| id | status | workstream | progress | tasks file | notes |
| --- | ----------------- | ---------------------- | ---------------- | --------------------------------------------------------------- | -------------------------------------------------------------------------------- |
| W1 | planning-complete | Federation v1 (FED) | 0 / 7 milestones | [docs/federation/TASKS.md](./federation/TASKS.md) | M1 task breakdown populated; M2M7 deferred to mission planning |
| W2 | planning-complete | Tess interaction agent | 0 / 5 milestones | [docs/tess/TASKS.md](./tess/TASKS.md) | Issue #706; independent planning gate PASS; M1 issue #707 ready |
| W3 | planning-complete | Native Kanban/SOT | 0 / 4 phases | [docs/native-kanban-sot/TASKS.md](./native-kanban-sot/TASKS.md) | Issue #751; canon independently approved; implementation held until canon merges |
| id | status | workstream | progress | tasks file | notes |
| --- | ----------------- | ------------------------------ | ---------------- | --------------------------------------------------------------- | --------------------------------------------------------------------------------- |
| W1 | planning-complete | Federation v1 (FED) | 0 / 7 milestones | [docs/federation/TASKS.md](./federation/TASKS.md) | M1 task breakdown populated; M2M7 deferred to mission planning |
| W2 | planning-complete | Tess interaction agent | 0 / 5 milestones | [docs/tess/TASKS.md](./tess/TASKS.md) | Issue #706; independent planning gate PASS; M1 issue #707 ready |
| W3 | planning-complete | Native Kanban/SOT | 0 / 4 phases | [docs/native-kanban-sot/TASKS.md](./native-kanban-sot/TASKS.md) | Issue #751; canon independently approved; implementation held until canon merges |
| W4 | planning-complete | Fleet configuration management | 0 / 12 cards | This file (§ Fleet configuration management #758) | Issue #758; M0 docs gate defines the implementation DAG before any fleet mutation |
## Cross-Cutting Tracking
@@ -42,6 +43,30 @@ Active workstream is **W1 — Federation v1**. Workers should:
2. Read [docs/federation/TASKS.md](./federation/TASKS.md) for the next pending task
3. Follow per-task agent + tier guidance from the workstream manifest
## Fleet configuration management (#758) — M0M5 implementation DAG
> **PRD:** [Fleet declarative configuration management](./PRD.md#fleet-declarative-configuration-management-workstream-fcm-758) · **M0 acceptance:** [docs IA checklist](./fleet/FLEET-CONFIG-DOCS-IA-CHECKLIST.md) · **baseline dispositions:** [legacy example/profile inventory](./fleet/LEGACY-EXAMPLE-PROFILE-DISPOSITION-INVENTORY.md)
>
> Every row below is one independently reviewable card and **one PR**. `depends_on` is a
> hard DAG edge; no card may silently absorb another card's scope. All source cards require
> the repository quality gates, independent code and security review, terminal-green CI, and
> the applicable acceptance evidence before merge. Issue #758 remains open until M5 closes.
| id | status | description | issue | agent | repo | branch | depends_on | estimate | notes |
| ---------- | ----------- | ---------------------------------------------------------------------------------------------------------------------------------------------------------------------- | ----- | ------------- | ----------------- | --------------------------------------- | ---------------------------------------------- | -------- | ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------ |
| FCM-M0-001 | done | Publish normative PRD requirements/acceptance criteria, this M0M5 DAG, docs-IA checklist, and legacy example/profile disposition inventory; no implementation changes | #758 | sonnet | mosaicstack/stack | `docs/758-fleet-config-management` | — | 18K | Merged via #760 (`c32d85a`); parent #758 intentionally remains open through M5 |
| FCM-M1-001 | done | Implement narrow local-tmux v2 roster structural contract/compiler with YAML/JSON canonicalization and schema/parser parity tests | #758 | coder0 | mosaicstack/stack | `feat/758-roster-v2-compiler` | FCM-M0-001 | 30K | #764 squash `aa5b43b`; exact-head RoR and PR/main terminal-green CI; no lifecycle or live mutation |
| FCM-M1-002 | done | Reuse existing profile/persona/provision resolver for roster semantics; add canonical class/authority validation and approved aliases | #758 | native-sonnet | mosaicstack/stack | `feat/758-shared-role-resolution` | FCM-M0-001 | 25K | #768 squash `a5e8e55`; shared resolver and canonical authority/alias validation delivered |
| FCM-M1-003 | done | Convert the M0 legacy inventory into executable example/profile/service-preset validation and explicit v1-version/retirement checks | #758 | codex | mosaicstack/stack | `test/758-example-profile-dispositions` | FCM-M1-001, FCM-M1-002 | 20K | #770 squash `e9c4aa3`; shipped artifact disposition validation delivered |
| FCM-M2-001 | done | Migrate generic launch chain to deterministic `.env.generated` plus strict data-only `.env.local`; quarantine forbidden legacy keys | #758 | codex | mosaicstack/stack | `feat/758-generated-env-boundary` | FCM-M1-001, FCM-M1-002 | 30K | #772 squash `191efae`; generated/local boundary and private quarantine delivered |
| FCM-M2-002 | done | Add generation-guarded local fleet agent create/get/update/delete mutations with plan/dry-run, atomic roster writes, and recovery output | #758 | codex | mosaicstack/stack | `feat/758-fleet-agent-crud` | FCM-M1-001, FCM-M2-001 | 30K | #773 squash `bc5e736`; generation-guarded atomic CRUD and recovery contracts delivered |
| FCM-M3-001 | done | Implement local roster-owned reconcile/apply plus lifecycle/status/verify/doctor contracts and stable JSON/exit codes | #758 | codex | mosaicstack/stack | `feat/758-local-reconciler` | FCM-M2-001, FCM-M2-002 | 35K | #785 squash `4990905`; exact roster-owned systemd/tmux reconcile and lifecycle contracts delivered |
| FCM-M3-002 | in-progress | Add isolated systemd/tmux lifecycle, drift, socket, unmanaged-session, crash, and rollback acceptance coverage | #758 | sonnet | mosaicstack/stack | `test/758-reconciler-lifecycle-gates` | FCM-M3-001 | 25K | Canonical v2 named-socket + legacy-v1 default-server boundaries; fake adapters/temp fixtures only |
| FCM-M4-001 | done | Implement field-complete v1-to-v2 inventory/preview/migrator with alias, lifecycle, env-quarantine, and remote/connector disposition evidence | #758 | codex | mosaicstack/stack | `feat/758-v1-v2-migrator` | FCM-M1-003, FCM-M3-001 | 35K | PR #788; final head `d63bb0206a1d312ab8352ec1d3ca3631146b0baa`; tree `4da210da9a71b035130d4160a4a2e691bdfde2da`; squash `9745bc3f29c26b021a478b7ad03cfb494f6c9de3`; descendant-main pipeline 1855 terminal success |
| FCM-M4-002 | not-started | Add reversible canary migration, rollback, stale-projection/orphan classification, and current-host 9-managed/3-unmanaged fixture coverage | #758 | sonnet | mosaicstack/stack | `test/758-migration-rollback-gates` | FCM-M4-001, FCM-M3-002 | 25K | HOLD: never starts a previously stopped agent or kills an unproven unmanaged session; not authorized by FCM-M5-001 |
| FCM-M5-001 | done | Deliver the accepted fleet documentation IA, how-to/operations/migration references, and link/example validation | #758 | haiku | mosaicstack/stack | `docs/758-fleet-config-operator-docs` | FCM-M1-003, FCM-M2-002, FCM-M3-001, FCM-M4-001 | 24K | #789 content squash 627cf2bb; de-flake repair PR#851/#849 squash 77c9a826; completion proof wp1937 @aa999daf push/ci step 49632 recovery_runtime_unittest.py 3/3 OK (closes wp1932 step 49576 Errno111) |
| FCM-M5-002 | not-started | Package/update asset-drift checks, rolling local canary, independent validation certificate, and release evidence | #758 | sonnet | mosaicstack/stack | `feat/758-fleet-config-release-gate` | FCM-M3-002, FCM-M4-002, FCM-M5-001 | 30K | HOLD: final #758 gate; quality, independent code/security review, validator certificate, merge-gate approval, and green CI remain out of M5-001 |
## Thin-core prompt diet (#528) — feat/contract-thin-core
- Status: PR open, awaiting maintainer merge ratification (fleet-governing change).
@@ -0,0 +1,151 @@
# ADR: Optional AI egress gateways for runtime-neutral Mos
**Status:** Proposed for controlled prototypes; not approved as Mosaic core
**Date:** 2026-07-14
**Issues:** #754, #755
**Decision owner:** Mosaic Gateway / provider-adapter architecture
## Context
The emergency Mos continuity path kept Claude Code as the harness and translated Anthropic Messages traffic to Codex OAuth through a small localhost proxy. That preserved the existing Claude Discord plugin and transcript, but exposed two architectural facts:
1. Harness identity, channel entitlement, provider credentials, and inference transport are separate concerns.
2. A generic AI gateway can improve provider routing, budgets, and observability, but must not become Mosaic's identity, authorization, tenant, or orchestration boundary.
The Tess qualification report also found that current provider rebinding is not identity-continuous failover. Mosaic still needs a logical agent identity, durable connector lease/fencing, canonical handoff/checkpoint, exactly-once receipts, concrete harness adapters, and cross-harness rollback E2E.
## Decision
Mosaic MAY support LiteLLM, Bifrost, the purpose-built Claude/Codex proxy, or future gateways as optional egress implementations behind `IProviderAdapter` / `AgentRuntimeProvider`.
Mosaic Gateway remains authoritative for:
- authenticated actor and tenant identity;
- logical agent identity and connector binding;
- authorization, approval, and policy;
- lease epoch and stale-holder fencing;
- audit correlation and redaction;
- canonical handoff/checkpoint state;
- idempotency and side-effect receipts.
An egress gateway MUST NOT:
- receive channel ingress directly;
- authorize tools or connector ownership;
- define Mosaic tenant or agent identity;
- persist raw Mosaic handoffs or channel credentials;
- bypass adapter capability negotiation;
- silently fail over when policy, lease, or provider health is uncertain.
Allowed topology:
```text
Discord / Matrix / CLI / web
Mosaic Gateway: identity, authz, lease/fence, approvals, audit
IProviderAdapter / AgentRuntimeProvider
optional egress gateway
upstream provider or subscription-backed OAuth session
```
## Candidate assessment
### Purpose-built `raine/claude-code-proxy`
**Disposition:** Approved only for the verified emergency localhost bridge.
Strengths:
- explicit Codex device OAuth flow;
- small operational surface;
- Anthropic Messages translation suitable for Claude Code;
- model and reasoning-effort enforcement;
- straightforward loopback systemd supervision and rollback.
Constraints:
- not a Mosaic multi-tenant control plane;
- Claude built-in channels still depend on Claude subscription entitlement and feature lookup;
- model aliases can obscure the upstream model unless proxy policy/logs are treated as evidence;
- no replacement for connector leasing, canonical handoff, or exactly-once effects.
### LiteLLM
**Disposition:** Candidate for a formal adapter-only prototype and terms/security review.
Current documentation states that ChatGPT subscription access is available through an OAuth device-code flow. LiteLLM also provides broad provider routing, virtual keys, budgets, observability, and OpenAI/Anthropic-compatible surfaces.
Required prototype gates:
- verify the exact ChatGPT subscription OAuth flow and supported models against current provider terms;
- document token location, encryption, revocation, refresh, scope, and incident response;
- prove tenant isolation and prevent virtual keys from becoming Mosaic principals;
- verify streaming, tool calls, reasoning controls, cancellation, and idempotency metadata;
- fail closed instead of selecting an unhealthy provider merely to return a result;
- demonstrate that Mosaic audit correlation survives gateway retries/failover;
- keep channel ingress and connector credentials outside LiteLLM.
Source references:
- [LiteLLM ChatGPT subscription provider](https://docs.litellm.ai/docs/providers/chatgpt)
- [LiteLLM providers](https://docs.litellm.ai/docs/providers)
### Bifrost
**Disposition:** Candidate for governance/routing research; subscription OAuth compatibility unverified.
Useful concepts include virtual keys, budgets, rate limits, weighted load balancing, and automatic provider failover. Those features may inform Mosaic egress policy, but Bifrost virtual keys are downstream credentials—not Mosaic actors or tenants.
Required prototype gates:
- verify Codex/ChatGPT subscription OAuth rather than assuming API-key compatibility;
- map budgets and virtual keys to server-derived Mosaic tenants without duplicating authority;
- prove failover does not violate connector lease, approval, or exactly-once semantics;
- ensure request/response logs are redacted before persistence;
- disable or constrain automatic failover when policy or side-effect state is ambiguous.
Source references:
- [Bifrost overview](https://docs.getbifrost.ai/overview)
- [Bifrost repository](https://github.com/maximhq/bifrost)
### `teremterem/claude-code-gpt-5-codex`
**Disposition:** Not selected as the emergency implementation; useful as a historical LiteLLM recipe.
The reviewed repository uses `OPENAI_API_KEY`, tells previously authenticated Claude users to log out, and documents a Claude Web Search schema incompatibility. Logging Claude out conflicts with the channel-entitlement requirement observed in the live Mos cutover. The repository therefore does not, as provided, satisfy subscription-OAuth plus built-in-channel continuity.
Source references:
- [Repository](https://github.com/teremterem/claude-code-gpt-5-codex)
- [Environment template](https://github.com/teremterem/claude-code-gpt-5-codex/blob/main/.env.template)
## Security consequences
- Subscription OAuth grants are high-value credentials and require the same lifecycle controls as service credentials.
- Downstream virtual keys reduce provider-key exposure but do not establish user, tenant, or agent authority.
- Automatic retry/failover can duplicate tool or external side effects unless Mosaic owns operation IDs and receipts.
- Gateway telemetry can contain prompts, tool schemas, and model output; redaction and retention policy must apply before persistence.
- A localhost unauthenticated translation endpoint must remain loopback-only and process-isolated.
## Acceptance before production use
1. Threat model and provider-terms review approved.
2. Credential lifecycle and revocation drill documented and exercised.
3. Adapter contract tests pass for streaming, tools, cancellation, reasoning policy, errors, and audit correlation.
4. Tenant-bound authorization remains entirely in Mosaic Gateway.
5. Failure injection proves no duplicate side effects across retries or provider failover.
6. Rollback to the prior provider path is exercised.
7. Independent code and security reviews approve the exact deployed revision.
## Follow-up
- #754 owns cross-harness logical identity, checkpoint, receipt, adapter, and failover work.
- #755 / PR #757 implements the first logical identity and connector lease/fencing boundary.
- A later issue should prototype LiteLLM and Bifrost behind the provider adapter after #755 is merged and independently qualified.
@@ -0,0 +1,59 @@
# Compaction observer revocation and runtime generations
WI-3 connects Claude and Pi compaction/session lifecycle events to the existing authenticated lease-broker state machine. It does not add a second lease store or let runtime hooks assert identity. Each observer inherits the broker-minted session, resolves the current private runtime generation, and sends the existing `revoke_lease` action over the authenticated Unix socket.
## Observer matrix
| Runtime | Lifecycle signal | Action |
| ---------------- | ---------------------------------------------------------------- | ---------------------------------------------------------------------------------------------------------------------------- |
| Claude / Claudex | `PreCompact` | Revoke the current lease before compaction. A non-zero hook result blocks the lifecycle transition. |
| Claude / Claudex | `SessionStart` with matcher `compact` | Revoke again after compacted context starts. |
| Claude / Claudex | `SessionStart` with matcher `resume\|clear` | Atomically advance the private generation, then revoke the replacement incarnation. |
| Pi | `session_before_compact` | Revoke before compaction; return `{ cancel: true }` if revocation cannot be confirmed. |
| Pi | `session_compact` then the first `context` | Arm and run an independent post-compaction revoke. A failed post observer blocks later tools locally until a retry succeeds. |
| Pi | `session_start` with reason `reload`, `new`, `resume`, or `fork` | Atomically advance the private generation, then revoke the replacement incarnation before reuse. |
The first observer that reaches the broker deletes pending promotion tokens and makes the lease `UNVERIFIED`. The second compaction observer is deliberate redundancy, not a prerequisite for the first. Claudex receives the same mandatory hooks in its isolated `CLAUDE_CONFIG_DIR`; hook merging preserves unrelated isolated settings and rejects malformed or symlinked settings fail-closed.
## Private generation authority
`launch-runtime.py` still registers before `exec`, preserving the kernel-authenticated PID/starttime anchor. It now also creates `generation-<broker-session>.state` beside the broker socket. The file is owner-only mode `0600` under the broker's mode-`0700` directory. Hook descendants read that file instead of relying only on an immutable inherited environment value.
Generation changes use an exclusive file lock, validate owner/type/mode/size, increment monotonically, truncate and write the complete new value, and `fsync` before contacting the broker. Therefore reload, new-session, resume, and fork events may retain the same PID/starttime while still becoming a new broker incarnation. The higher generation causes the broker to atomically discard prior tokens and lease authority; the replacement generation inherits no VERIFIED lease.
If an observer fires while broker transport is unavailable, `revoke-lease.py` advances the private generation as a local fence before returning non-zero. Every later all-tools gate reads that higher value. When the broker is reachable again, authentication of that value performs the same old-generation revocation before authorization. Pi also keeps a process-local post-compaction/rollover failure latch that blocks tool calls. An unsafe or unreadable generation file itself makes both lifecycle revocation and tool authorization fail closed.
## Threat contract and stopping boundary
### BOUNDED RESIDUAL STALE WINDOW
If **both** pre- and post-compaction observers are missed entirely, no revocation signal exists. During the remaining unexpired lease, **within-TTL consequential actions are allowed**. Their count and timing are **bounded by lease expiry, not by the mutator gate**. WI-3 makes no claim that it bounds mutator actions inside this stale interval. The broker's monotonic lease TTL is capped at 300 seconds; after expiry, the next consequential tool is denied with `LEASE_EXPIRED`.
This is the named D2-v5 T-A residual. It is distinct from an observer that fires but cannot contact the broker: the latter creates a local generation fence and fails closed. It is also distinct from T-C total rot, where the lifecycle observers and the all-tools gate are both absent or replaced. Server-side branch protection, required CI, and independent review remain the irreducible backstop for T-C.
| Condition | Result |
| --------------------------------------------------------------- | --------------------------------------------------------------------------------------------------------------------- |
| Either compaction observer succeeds | Existing lease and pending promotion tokens are revoked immediately. |
| Observer runs but broker confirmation fails | Lifecycle transition is denied where supported; local generation fence and runtime latch prevent inherited authority. |
| Both observers are missed, lease unexpired | **ALLOWED** inside the bounded residual stale window. No within-window mutator bound is claimed. |
| Both observers are missed, lease expired | **DENIED** by monotonic TTL expiry. |
| Generation advances on reload/new/resume/fork | Prior incarnation revoked; replacement starts `UNVERIFIED`. |
| Lifecycle observers and all-tools gate both fail or are removed | T-C total-hook-miss residual; protected-branch controls remain required. |
## T-C server-side branch-protection posture
The required posture is that `main` is push-blocked and PR-only-merge is **MANDATORY**, regardless
of client-gate state. The client-side gate narrows the exposure window only; it is not the T-C
guarantee. The server-side protected-branch configuration is the irreducible guarantee for protected
repository actions. Status-check enforcement and approval enforcement are **RECOMMENDED**.
## Current-vs-required gap (recorded, not enacted)
The current empirical configuration is recorded here without re-probing or mutating live branch
protection. `enable_push=False` (push-block present), so the mandatory push-block/PR-only-merge core
holds. `require_approvals=0` (approvals not enforced), `enable_status_check=False` (status checks not
enforced), and `block_on_official_review=False` (official review not enforced). Those recommended
merge-quality controls are the current gap; changing them is a separate, owner-gated operations
decision and is not enacted by this documentation change.
The permanent T12b/T30 acceptance case prints both required outcomes: dual-hook miss within TTL is **ALLOWED**, and the same lease after TTL is **DENIED**. Separate real-socket tests prove each Claude observer and same-PID generation rollover; Pi lifecycle tests exercise pre/post observers, all four replacement reasons, and local failure closure.
@@ -0,0 +1,35 @@
# Authenticated external lease broker protocol
The compaction-refresh lease broker is a Linux-only, newline-framed JSON protocol over a Unix stream socket. It is runtime-neutral; M1 consumers are limited to Claude and Pi. This is an internal process boundary, not an HTTP API, so it is intentionally absent from OpenAPI.
The broker, never the caller, obtains `(pid, uid, gid)` from kernel `SO_PEERCRED`. It correlates the PID with `/proc/<pid>/stat` field 22 (`starttime`) and mints `session_id` on `register_anchor`. Presence of `session_id` in that request is refused even when its value is `null` or empty. Later requests must originate from the anchor or a descendant. The broker walks parent PIDs to the `(pid,starttime)` anchor and then rereads every walked PID's starttime before accepting the chain.
## Request and response boundary
Each connection carries exactly one UTF-8 JSON object followed by one newline, capped at 64 KiB. The protocol deliberately uses EOF to prove that there is exactly one frame: immediately after writing the newline, the client **MUST half-close its write side** with `shutdown(SHUT_WR)` (or Node `socket.end()`) before awaiting the response. A client that writes a newline but leaves its write side open receives no successful response; the broker's one-second connection deadline fails closed. Malformed, unterminated, multiple (including a delayed second frame), or oversized frames fail closed. Responses are one JSON object and one newline. Success has `{"ok":true,...}`; refusal has `{"ok":false,"code":"TYPED_CODE"}`. Requests are:
- `register_anchor`: `action`, non-negative `runtime_generation`; no `session_id` field.
- `authenticate`: `action`, broker-minted `session_id`, non-negative `runtime_generation`.
- `mint_token`: authenticated identity plus `binding` containing exactly `compaction_epoch`, `request_epoch`, `h_source`, `h_payload`, and `schema_version`.
- `consume_token`: authenticated identity plus `token`.
- `begin_verification`: authenticated identity, runtime (`claude` or `pi`), cycle `binding`, and a TTL no greater than 300 seconds. The broker revokes existing authority first, enters `PENDING_VERIFICATION`, and returns a single-use promotion token.
- `begin_recovery`: the constrained recovery entrypoint. It rejects caller-provided receipt/challenge fields and delegates to the same `begin_verification` transition, but reports `PENDING_DELIVERY` and marks the volatile cycle as recovery-owned.
- `complete_recovery`: authenticated identity only. It rejects caller-provided receipt/challenge fields, obtains the current recovery challenge only from broker state, and delegates to the same trusted-observer → evidence → consume → promote sequence. An observation failure revokes recovery authority; retry starts a fresh challenge.
The daemon owns a second protected production observer socket (mode `0600`) unless a private `--test-observer-file` fixture is selected. That transport accepts only the exact `record_runtime_observation` schema after kernel `SO_PEERCRED` plus the existing anchor/ancestry authentication; it validates the pending runtime/generation before storing one finalized assistant entry for the in-process `RuntimeReceiptObserver`. It is **not** a broker request action. Claude sends its latest assistant entry from the Stop-hook transport; Pi sends only finalized `message_end` assistant content. The public broker socket continues to reject request-supplied `latest_assistant_message` in begin, observe, and complete paths.
- `promote_lease`: authenticated identity plus the exact pending promotion token. The broker commits token consumption before making `VERIFIED` visible.
- `revoke_lease`: authenticated observer signal; deletes pending tokens and makes the session `UNVERIFIED` immediately. WI-3 Claude/Pi hooks send this existing action; `runtime` and bounded `reason` fields are diagnostic input only and never identity authority.
- `authorize_tool`: authenticated identity, runtime, and exact runtime-reported tool name. The broker returns an explicit allow/deny decision from the whole-class policy and current lease.
A higher generation for the same anchor atomically replaces the stored incarnation and deletes all prior tokens and lease authority for that session. A lower generation is stale. Runtime descendants resolve the current generation from an owner-only, locked generation file created by the register-before-exec launcher; reload/new/resume/fork observers advance and `fsync` it before broker revocation. This supports generation replacement even when PID/starttime do not change. Tokens are 256-bit values from the operating-system cryptographic RNG and are single use. At most 256 pending tokens may be persisted; another mint fails with `TOKEN_CAPACITY` before mutation. Successful consumption deletes the token, while a replay still fails with `TOKEN_REPLAY`. Live v1 token records retain the existing `consumed: false` schema.
VERIFIED leases are volatile and monotonic-time bounded: broker restart, generation change, explicit observer revocation, or expiry returns the session to `UNVERIFIED`. `begin_verification` always revokes before minting a new prerequisite. `begin_recovery` reuses that exact transition and mints a new challenge, so a normal-path receipt/challenge cannot be replayed through recovery. `promote_lease` is valid only from the matching pending cycle; persistence failure rolls token and lease state back, while post-rename durability uncertainty terminates the broker. The WI-1 token is the atomic promotion prerequisite substrate.
## Receipt boundary and T-C residual (R1)
Receipt evidence is a T-A delivery/liveness prerequisite only; it cannot replace the mechanical
mutator gate as safety authority. The receipt detects an **ABSENT** or **PREFIX-TRUNCATED** terminal
token. A **MIDDLE-DROP** that preserves the tail is a T-C contract violation that is **NOT receipt-detectable**. It is covered by server-side protected-branch controls, **NOT** by the receipt; no category-wide receipt-detection claim is made for that tail-preserving transformation.
State replacement serializes and enforces the 4 MiB maximum before opening a temporary file, then uses a mode-`0600` temporary file, `fsync`, atomic rename, and parent-directory `fsync`. Every broker mutation snapshots the prior v1 state. A commit failure before rename restores that snapshot and leaves durable state unchanged. A failure after rename makes durability uncertain, so the store is poisoned without rolling memory back and the daemon terminates rather than serving with divergent state. Existing state is opened without following symlinks, must be a bounded regular file at mode `0600`, and is fully schema- and invariant-validated before use. Persisted tokens must be unconsumed, match their session's current generation, and remain within the 256-token cap. Session identity is uniquely keyed by `(anchor_pid,anchor_starttime)`; duplicate logical sessions for one anchor refuse startup. State integrity or mode failures refuse startup. The daemon does not log session IDs or tokens.
@@ -0,0 +1,26 @@
# WI-1 lease broker security notes
- Trusted identity comes only from Linux `SO_PEERCRED` plus `/proc` starttime, never request identity fields.
- Descendant authorization is anchored to `(pid,starttime)` and uses a complete second starttime pass to fail closed on disappearance or PID-reuse races.
- Runtime generations are monotonic per anchor; a bump revokes prior-incarnation tokens before persistence commits. WI-3 stores the live generation in an owner-only locked file so same-PID Pi reload/new/resume/fork and Claude resume/clear transitions cannot inherit a VERIFIED lease.
- Session IDs and cycle tokens use the OS cryptographic RNG. `Math.random` and model output are not token sources.
- Framing and persistence failures fail closed. Sensitive tokens are not logged.
- Built-in `0700`/`0600` filesystem modes provide same-principal hardening only, not socket authenticity against the same UID. WI-1 provides no distinct-principal isolation. That stronger deployment requires an external protected proxy, ACL, or service boundary, and the boundary must preserve authenticated client identity for the broker's `SO_PEERCRED` and ancestry authorization rather than substituting a shared proxy identity.
- WI-2 whole-class authorization denies every consequential, unknown, and custom tool while UNVERIFIED; it does not inspect shell strings or trust wrapper selection. First-class Claude/Pi, both Claudex dispatch modes, PRDY, QA remediation, coord, orchestrator, and fleet starts converge on broker register-before-exec; Claudex additionally installs the mandatory all-tools hook inside its preserved isolated config and fails closed on unsafe settings.
- The permanent `check-runtime-launches.py` suite/CI guard scans production source for direct literal, absolute-path, process-API, command-array, and dynamic Claude/Pi launches. It has no bypass allowlist: an unrecognized launch form fails CI until routed through the common boundary.
- WI-2 promotion consumes a WI-1 cycle token before VERIFIED becomes visible. Observer revocation, runtime-generation replacement, broker restart, and monotonic TTL expiry remove authority.
- WI-3 wires redundant Claude `PreCompact`/`SessionStart(compact)` and Pi `session_before_compact`/post-`session_compact` `context` observers to that same revoke action. If broker confirmation fails after an observer fires, the revoker advances the private generation as a local fence; subsequent authorization revokes the stale broker incarnation before any consequential allow.
- Dual observer absence while a lease remains live is the named **bounded residual stale window**: consequential tools remain allowed until monotonic expiry, with no claimed within-window action bound. After expiry they are denied. Total observer-plus-gate absence remains T-C.
- Receipt observation, payload construction, and constrained recovery implementation remain later surfaces. A receipt can become a promotion prerequisite but is never the safety mechanism.
## Named residual: promote-lease-lost-ACK (WI-3 D2-v5)
A valid `promote_lease` can leave a session `VERIFIED` in the broker while the client never learns of it. This is a named, bounded D2-v5 T-A residual — an **authority-observability divergence, not an authority divergence, not an ALLOW-risk, and not a retry double-apply**. It is disclosed here, not laundered.
**Window — where it can occur.** The broker commits token consumption and durable `VERIFIED` state _before_ the success reply becomes visible (see the promotion order in `lease-broker-protocol.md`). The residual is confined to the interval after that commit+fsync when the broker→client reply or peer-ACK is lost — for example an extreme-contention send failure or peer disconnect after `handle()` has already mutated and persisted state (the #838 fail-closed transport path). The lease mutation is already durable broker-side; only the acknowledgement to the client is lost. No uncommitted or partially-applied state is involved: the commit either happened (and is authoritative) or it did not (and no lease exists).
**Fail-safe direction — the client can only under-claim.** Broker intent is the ceiling; client authority is always ≤ broker intent, never more. Client-side authority-belief is granted only by a _received_ acknowledgement; a lost acknowledgement conveys nothing, so the client cannot conclude "verified" and continues to treat itself as `UNVERIFIED` (it re-verifies or recovers). If the client retries `promote_lease` with the same token, the token is already consumed and the broker rejects the retry (`PROMOTION_TOKEN_MISMATCH` / `INVALID_LEASE_TRANSITION`); there is no double-apply. The committed `VERIFIED` state the broker holds is authority the lease _legitimately earned_ from a real promotion — the broker authorizing consequential tools under it is correct, not inflation. Divergence is therefore strictly toward _less_ client authority than the broker granted; it never produces authority the broker did not grant.
**Bound — TTL plus the observer/gen-bump revoke backstop, self-healing.** The orphaned `VERIFIED` lease is indistinguishable to the broker from any other legitimately verified lease, so the identical D2-v5 revocation backstops dispose of it: any compaction observer (`PreCompact` / `SessionStart(compact)` for Claude; `session_before_compact` / post-`session_compact` `context` for Pi), any same-PID runtime-generation bump (reload/new/resume/fork), broker restart, or monotonic-time expiry returns the session to `UNVERIFIED`. Monotonic TTL expiry (capped at 300 seconds) is **unconditional** — it requires no observer at all — so the maximum exposure of the orphaned lease is one TTL, ≤ 300 s, after which the next consequential tool is denied with `LEASE_EXPIRED`. Any observer that fires shortens the window further. The residual self-heals: "≥1 observer fires OR expiry ⇒ revoke" catches the lost-ACK lease on the same terms as every other stale lease. As with the dual-observer-miss stale window, WI-3 makes no claim that the mutator gate bounds actions inside the residual interval; the interval is bounded by TTL and the revoke backstop, and the server-side branch-protection / required-CI / independent-review line remains the irreducible backstop for protected-repository mutations.
Coordinator security review must rerun the real socket/peercred and mutator-gate acceptance suites on an unrestricted Linux runner and obtain the mandated independent Opus-SECREV review before integration.
@@ -0,0 +1,49 @@
# Mos Runtime Portability M1 — Logical Identity and Fencing
## Boundary
M1 separates the logical Mosaic agent from any Claude, Pi, Codex, tmux, Matrix, or provider-native session. The normalized identity is:
```text
(tenant_id, logical_agent_id, binding_id)
```
`logical_agent_id` is a server-owned stable identifier. A connector is a replaceable holder of a lease for one binding; it is not the agent identity.
## Durable lease model
PostgreSQL table `logical_agent_connector_leases` has one unique row per identity/binding tuple. The current row records:
- an opaque lease UUID;
- connector ID and normalized allowed scopes;
- a positive decimal fencing epoch stored as PostgreSQL `bigint`;
- acquired, heartbeat, expiry, release, and update timestamps.
Initial acquisition is insert-only. An existing active row causes `lease_held`. An expired or released row causes `takeover_required`; ordinary acquisition cannot recover it. Authorized takeover uses compare-and-swap against the expected epoch, rotates the lease UUID, and increments the epoch atomically. Heartbeat and release match the full identity, binding, connector, lease UUID, and epoch.
The companion `connector_lease_audit_log` is append-only metadata. It stores lifecycle event, outcome/reason, identity/binding/connector, epoch, correlation ID, and timestamp. It deliberately excludes scopes, grant objects, payloads, approval references, tokens, and credentials.
## Execution grants
`ConnectorLeaseCoordinator` issues a short-lived internal grant only after rereading the durable current lease. Defense-in-depth caps leases at 5 minutes and grants at 30 seconds by default; constructor options may tighten these limits. A grant is bound to tenant, logical agent, binding, connector, lease UUID, scope subset, expiry, and epoch.
Validation occurs immediately before adapter invocation and rereads PostgreSQL. The adapter receives only `ConnectorExecutionContext`; harness-native schemas remain behind the adapter. Validation denies:
- grants not minted by the current gateway process (including cloned/forged objects);
- expired grants or leases;
- released leases;
- stale epochs or replaced connector/lease UUIDs;
- missing/cross-tenant/cross-agent/cross-binding leases;
- scopes not authorized by both grant and current lease.
A gateway restart intentionally invalidates process-local grants. The durable lease and epoch survive, and a fresh grant may be issued only after current-lease and gateway-policy validation.
## Concurrency and side-effect rule
The database CAS determines the sole current holder. A successful takeover makes every old-epoch validation fail. Connector adapters must consume and propagate the normalized lease epoch/context so downstream effect boundaries can also fence races that occur after gateway validation.
M1 does not provide exactly-once receipts or a side-effect journal. Those remain later #754 work; callers must not infer exactly-once delivery from lease fencing.
## Extension boundary
`ConnectorLeaseService` is the gateway-owned policy surface. Every policy decision receives the normalized requested scopes and TTL (or explicit `null` where no TTL applies), so a concrete policy can enforce least privilege and duration limits. Its production default policy denies every lease/grant operation until a server-configured connector policy is supplied. No M1 HTTP endpoint accepts caller-controlled tenant or logical identity, and no concrete Claude/Pi/Codex adapter or channel cutover is included.
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@@ -0,0 +1,72 @@
# Whole mutator-class lease gate
WI-2 adds the framework-native authorization boundary for Claude (including the supported Claudex overlay) and Pi. Every runtime-reported tool name reaches the lease broker before execution. The gate classifies capabilities by the whole tool class; it never parses a Bash command to decide whether that particular string looks read-only.
## Default-deny policy
While a session is not VERIFIED, only these exact classes are allowed:
- Claude: `Read`, `Grep`, `Glob`, `Ls`, `Find`
- Pi: `read`, `grep`, `find`, `ls`
- Both runtimes: the fixed `mosaic_context_recover` primitive
Every other built-in, unknown tool, and custom/MCP tool is consequential by default and is denied. This includes Claude `Bash`, `Edit`, `Write`, and `NotebookEdit`, plus Pi `bash`, `edit`, and `write`. A compromised model therefore cannot bypass Mosaic wrappers by selecting raw `git`, `curl`, `kubectl`, provider, deployment, or filesystem commands inside a generic mutator—the generic mutator itself is blocked before its input executes.
## Broker-owned transition order
The authenticated broker is the sole lease writer:
1. `begin_verification` revokes existing authority and pending tokens first, then records `PENDING_VERIFICATION` and mints one WI-1 single-use promotion token bound to the exact cycle.
2. `promote_lease` accepts only that session/generation/binding/token combination.
3. Token consumption commits before the volatile lease becomes VERIFIED. Promotion is last and cannot be reached directly from UNVERIFIED.
4. `revoke_lease`, a runtime-generation increase, broker restart, or monotonic expiry removes mutator authority.
The initial TTL is capped at the ratified 300-second maximum. A caller may request a shorter positive TTL but cannot lengthen the maximum. WI-3 installs the [compaction observer and generation lifecycle](compaction-revocation.md). Dual compaction-hook miss within an unexpired lease remains the ratified bounded T-A residual: consequential tools are allowed until expiry, with no claimed within-window action bound; once either observer revokes or TTL expires, the next consequential tool is denied.
A receipt is only a future promotion prerequisite. It is not an obedience, residency, or safety proof and never replaces this mechanical gate.
## Runtime adapters
`launch-runtime.py` registers itself with the broker and then `exec`s Claude or Pi so PID/starttime remain the authenticated parent anchor. It exports the broker-minted session ID and an owner-only generation-file reference to descendants; lifecycle hooks advance that file for same-PID replacement generations.
- Claude installs `mutator-gate.py` as an all-tools (`.*`) `PreToolUse` hook.
- `mosaic claudex` and `mosaic yolo claudex` preserve their isolated `CLAUDE_CONFIG_DIR`, merge the mandatory hook into that isolated `settings.json`, and use the same register-before-exec launcher. Malformed or symlinked isolated settings deny launch.
- Pi invokes the same executable from its `tool_call` handler.
The executable submits the runtime's actual tool name to `authorize_tool`. Missing identity, malformed input/reply, timeout, broker unavailability, or denial exits with status 2 and blocks fail-closed.
## Runtime-launch choke-point and permanent guard
Every repository-owned Claude/Pi launch entry converges on `launch-runtime.py`, either directly or through `mosaic``execLeaseGatedRuntime`. PRDY init/update and QA remediation invoke the wrapper directly so their existing prompts, dangerous-permission behavior, working directory, and environment survive without skipping broker registration. The raw Claude `--dangerously-skip-permissions` primitive is owned only by `launch-runtime.py`; callers request semantic `--dangerous` mode, and the wrapper validates Claude before injecting the primitive. `@mosaicstack/coord` rewrites direct Claude commands to `mosaic claude` and rejects unknown custom Claude launchers.
`check-runtime-launches.py` is the permanent completeness guard. It scans production shell, TypeScript/JavaScript, Python, and data launch definitions under `packages/`, `apps/`, `plugins/`, and `tools/`; direct literal, absolute-path, process-API, dynamic, command-substitution, `eval`, and variable-execution runtime launches fail. Shell comments are stripped with quote awareness, wrapper prefixes are tokenized with `shlex`, and only an invocation in command position with `--runtime` before the command separator is gated. Literal and tracked-variable command tokens use one terminal resolver after any nesting of `exec`, `command`, `nohup`, or `env` plus assignments. A direct command always wins over an inert marker on the same line. Independently, the raw dangerous primitive anywhere outside the choke-point is RED.
The command parser is a best-effort CI defense, not a complete shell interpreter. Alias/function redefinition, sourced commands, generated scripts, and encoded pipelines are intentionally residual rather than an invitation to chase an unbounded shell language. Two runtime controls backstop that residual surface: primitive ownership rejects a dangerous launch even when command identity is alias-indirected, and Claude's global `.*` `PreToolUse` hook invokes the broker gate for non-dangerous launches. Without `MOSAIC_LEASE_SESSION_ID`, representative read, mutator, and custom/MCP tools all fail closed with `GATE_UNAVAILABLE`. Hook absence or replacement remains in the documented T-C boundary.
### Parser stopping criterion
- **A — realistic parser matrix:** comments, inert strings/assignments, heredocs, continuations, chained commands, command substitution, `eval`, bare tracked variables, and quoted/unquoted tracked variables behind `exec`, `command`, `nohup`, or `env` are permanent RED regressions. Prefix-variable forms are covered in both multiline and same-line assignment shapes.
- **B — residual backstops:** a dangerous alias-indirected launch is RED solely through primitive anchoring; a parser-missed non-dangerous alias launch is paired with an acceptance test proving the global all-tools hook denies every representative tool class as `GATE_UNAVAILABLE` without a lease.
- **C — independent fresh review:** the parser class is considered complete only when reviewers find no new non-overlapping realistic evasion on the exact head. A and B are repository evidence; C is supplied by the fresh review round.
All three layers are load-bearing and complementary. The guard is mandatory in `@mosaicstack/mosaic`'s test script, so root CI fails on a future realistic bypass. Real-socket tests separately prove PRDY init/update and QA receive broker sessions and deny an unverified mutator.
The live inventory is emitted by:
```bash
python3 packages/mosaic/framework/tools/lease-broker/check-runtime-launches.py --root . --json
```
| Production launch family | Gated entries |
| ------------------------------------------------------ | ------------: |
| `@mosaicstack/coord` default/configured Claude command | 2 |
| Fleet runtime start | 1 |
| QA remediation + generated QA command | 2 |
| Orchestrator command construction/session launches | 3 |
| PRDY init/update | 2 |
| Mosaic Claude/Pi/Claudex adapter and wrapper boundary | 4 |
| **Total** | **14 / 14** |
## Assurance boundary
This closes T-A after an observer fires or lease expiry and T-B for in-runtime tool calls. Hook/extension absence, a runtime executing outside the gated launcher, ptrace/same-UID broker replacement, and other fully rotted behavior remain T-C. Server-side branch protection and required PR review/CI remain the irreducible line for protected repository mutations.
@@ -0,0 +1,228 @@
#!/usr/bin/env python3
"""P5 Gate0 replay probe; BUILT ONLY, execution is Mos-gated.
Run only under fresh-executor authorization:
python3 -I -S -B docs/compaction-refresh/probes/p5_receipt_replay.py
Each of the default three isolated runs launches the shipped lease-broker daemon
in a distinct private temporary directory. This driver never changes broker
state directly and does not replace the promote gate: every transition is sent
over the daemon's real Unix socket. It proves the shipped order is
PENDING_DELIVERY -> observe/evidence commit -> consume -> VERIFIED and that a
consumed challenge cannot be replayed or reopen/renew its lease.
"""
from __future__ import annotations
import argparse
import base64
import importlib.util
import json
import os
import shutil
import socket
import subprocess
import sys
import tempfile
import time
from pathlib import Path
HERE = Path(__file__).resolve().parent
REPOSITORY = HERE.parents[2]
TOOLS = REPOSITORY / "packages/mosaic/framework/tools/lease-broker"
DAEMON = TOOLS / "daemon.py"
FRAGMENTS = TOOLS / "normative_fragments.py"
def load_shipped_fragments():
if not FRAGMENTS.is_file():
raise RuntimeError(f"shipped normative construction missing: {FRAGMENTS}")
spec = importlib.util.spec_from_file_location("p5_shipped_normative_fragments", FRAGMENTS)
if spec is None or spec.loader is None:
raise RuntimeError("unable to load shipped normative construction")
module = importlib.util.module_from_spec(spec)
spec.loader.exec_module(module)
return module
def request(socket_path: Path, value: dict[str, object]) -> dict[str, object]:
with socket.socket(socket.AF_UNIX, socket.SOCK_STREAM) as connection:
connection.settimeout(3.0)
connection.connect(str(socket_path))
connection.sendall((json.dumps(value, separators=(",", ":")) + "\n").encode())
connection.shutdown(socket.SHUT_WR)
response = bytearray()
while True:
chunk = connection.recv(4096)
if not chunk:
break
response.extend(chunk)
if not response.endswith(b"\n") or response.count(b"\n") != 1:
raise AssertionError(f"unframed broker reply: {bytes(response)!r}")
parsed = json.loads(response[:-1])
if not isinstance(parsed, dict):
raise AssertionError(f"non-object broker reply: {parsed!r}")
return parsed
def wait_ready(process: subprocess.Popen[str], socket_path: Path) -> None:
deadline = time.monotonic() + 5.0
while time.monotonic() < deadline:
if socket_path.exists():
return
if process.poll() is not None:
output = process.stdout.read() if process.stdout is not None else ""
raise RuntimeError(f"shipped daemon exited before READY: {output}")
time.sleep(0.02)
raise TimeoutError("shipped daemon did not create private probe socket")
def expect_refused(reply: dict[str, object], code: str) -> None:
if reply != {"ok": False, "code": code}:
raise AssertionError(f"expected refusal {code}, got {reply!r}")
def run_once(index: int) -> str:
fragments = load_shipped_fragments()
root = Path(tempfile.mkdtemp(prefix=f"mosaic-p5-replay-{index}-"))
os.chmod(root, 0o700)
socket_path = root / "broker.sock"
state_path = root / "state.json"
observer_path = root / "test-observer.json"
process = subprocess.Popen(
[
sys.executable, "-I", "-S", "-B", str(DAEMON), "--socket", str(socket_path),
"--state", str(state_path), "--test-observer-file", str(observer_path),
],
stdin=subprocess.DEVNULL,
stdout=subprocess.PIPE,
stderr=subprocess.STDOUT,
text=True,
)
try:
wait_ready(process, socket_path)
registered = request(socket_path, {"action": "register_anchor", "runtime_generation": 1})
if registered.get("ok") is not True or not isinstance(registered.get("session_id"), str):
raise AssertionError(f"registration failed: {registered!r}")
session_id = registered["session_id"]
construction = fragments.build_payload(
manifest_version=1,
generator_version="p5-replay-probe",
fragments=[
fragments.NormativeFragment(
"authority/probe",
b"P5 shipped transition driver\n",
"63537df1a6cb0d80195a96757ab11d629e5b5e1f23be167218b84cb195b1c1d6",
),
],
)
if construction.injectionDecision != "ACCEPTED" or not construction.promotion:
raise AssertionError("shipped normative construction refused P5 fixture")
binding = {
"compaction_epoch": index,
"request_epoch": index + 100,
"h_source": construction.h_source,
"h_payload": construction.h_payload,
"schema_version": 1,
}
construction_request = {
"manifest_version": 1,
"generator_version": "p5-replay-probe",
"fragments": [{
"source_id": "authority/probe",
"content_base64": base64.b64encode(b"P5 shipped transition driver\n").decode("ascii"),
"expected_sha256": "63537df1a6cb0d80195a96757ab11d629e5b5e1f23be167218b84cb195b1c1d6",
}],
}
pending = request(socket_path, {
"action": "begin_verification",
"session_id": session_id,
"runtime_generation": 1,
"runtime": "pi",
"binding": binding,
"construction": construction_request,
})
if pending.get("ok") is not True or pending.get("state") != "PENDING_VERIFICATION":
raise AssertionError(f"shipped pending-delivery transition failed: {pending!r}")
challenge = pending.get("receipt_challenge")
receipt = pending.get("receipt")
if not isinstance(challenge, str) or not isinstance(receipt, str):
raise AssertionError(f"shipped broker did not mint a receipt challenge: {pending!r}")
# Promotion before observation/evidence/consumption is forbidden.
expect_refused(request(socket_path, {
"action": "promote_lease",
"session_id": session_id,
"runtime_generation": 1,
"receipt_challenge": challenge,
}), "INVALID_LEASE_TRANSITION")
observer_path.write_text(json.dumps({
"session_id": session_id,
"runtime_generation": 1,
"latest_assistant_message": receipt,
}), encoding="utf-8")
os.chmod(observer_path, 0o600)
observed = request(socket_path, {
"action": "observe_receipt",
"session_id": session_id,
"runtime_generation": 1,
"receipt_challenge": challenge,
})
if observed.get("ok") is not True or observed.get("state") != "PENDING_PROMOTION":
raise AssertionError(f"shipped evidence transition failed: {observed!r}")
durable = json.loads(state_path.read_text(encoding="utf-8"))
evidence = durable["tokens"][challenge].get("evidence")
if not isinstance(evidence, dict) or not isinstance(evidence.get("h_latest_assistant"), str):
raise AssertionError("shipped receipt evidence was not committed before consume/promote")
promoted = request(socket_path, {
"action": "promote_lease",
"session_id": session_id,
"runtime_generation": 1,
"receipt_challenge": challenge,
})
if promoted.get("ok") is not True or promoted.get("state") != "VERIFIED":
raise AssertionError(f"shipped consume-before-promote transition failed: {promoted!r}")
# T25/T28: the actual consumed challenge, re-presented through the
# shipped daemon, can neither be observed again nor re-promote/reopen.
expect_refused(request(socket_path, {
"action": "observe_receipt",
"session_id": session_id,
"runtime_generation": 1,
"receipt_challenge": challenge,
}), "RECEIPT_REPLAY")
expect_refused(request(socket_path, {
"action": "promote_lease",
"session_id": session_id,
"runtime_generation": 1,
"receipt_challenge": challenge,
}), "RECEIPT_REPLAY")
return challenge
finally:
if process.poll() is None:
process.terminate()
try:
process.wait(timeout=3.0)
except subprocess.TimeoutExpired:
process.kill()
process.wait()
shutil.rmtree(root, ignore_errors=True)
def main() -> None:
parser = argparse.ArgumentParser()
parser.add_argument("--runs", type=int, default=3)
arguments = parser.parse_args()
if arguments.runs != 3:
raise SystemExit("P5 requires exactly three isolated runs")
challenges = [run_once(index) for index in range(arguments.runs)]
if len(set(challenges)) != arguments.runs:
raise AssertionError("separate shipped cycles did not mint unique challenges")
print("P5 receipt replay probe PASS: 3 isolated shipped-daemon runs")
if __name__ == "__main__":
main()
@@ -0,0 +1,255 @@
#!/usr/bin/env python3
"""P6 constrained-recovery probe; BUILT ONLY and Mos-gated.
DO NOT self-fire. Under Mos authorization only:
python3 -I -S -B docs/compaction-refresh/probes/p6_constrained_recovery.py
The default three isolated runs launch the shipped daemon plus its production
observer transport on private sockets. The driver invokes the shipped recovery
command and adapter gate identity; it never resets broker state, mocks promote,
or taps a live model-output stream.
"""
from __future__ import annotations
import argparse
import base64
import hashlib
import importlib.util
import json
import os
import shutil
import socket
import subprocess
import sys
import tempfile
import time
from pathlib import Path
HERE = Path(__file__).resolve().parent
REPOSITORY = HERE.parents[2]
TOOLS = REPOSITORY / "packages/mosaic/framework/tools/lease-broker"
DAEMON = TOOLS / "daemon.py"
GATE = TOOLS / "mutator-gate.py"
RECOVERY_COMMAND = TOOLS / "recover-context.py"
OBSERVER_CLIENT = TOOLS / "receipt-observer-client.py"
FRAGMENTS = TOOLS / "normative_fragments.py"
CLAUDE_SETTINGS = REPOSITORY / "packages/mosaic/framework/runtime/claude/settings.json"
PI_EXTENSION = REPOSITORY / "packages/mosaic/framework/runtime/pi/mosaic-extension.ts"
def load_shipped_fragments():
spec = importlib.util.spec_from_file_location("p6_shipped_fragments", FRAGMENTS)
if spec is None or spec.loader is None:
raise RuntimeError("shipped normative construction unavailable")
module = importlib.util.module_from_spec(spec)
spec.loader.exec_module(module)
return module
def request(socket_path: Path, value: dict[str, object]) -> dict[str, object]:
with socket.socket(socket.AF_UNIX, socket.SOCK_STREAM) as connection:
connection.settimeout(3.0)
connection.connect(str(socket_path))
connection.sendall((json.dumps(value, separators=(",", ":")) + "\n").encode())
connection.shutdown(socket.SHUT_WR)
response = bytearray()
while True:
chunk = connection.recv(4096)
if not chunk:
break
response.extend(chunk)
if not response.endswith(b"\n") or response.count(b"\n") != 1:
raise AssertionError(f"unframed broker reply: {bytes(response)!r}")
reply = json.loads(response[:-1])
if not isinstance(reply, dict):
raise AssertionError("broker reply is not an object")
return reply
def wait_ready(process: subprocess.Popen[str], socket_path: Path) -> None:
deadline = time.monotonic() + 5.0
while time.monotonic() < deadline:
if socket_path.exists():
return
if process.poll() is not None:
output = process.stdout.read() if process.stdout is not None else ""
raise RuntimeError(f"shipped daemon exited before READY: {output}")
time.sleep(0.02)
raise TimeoutError("shipped daemon did not create private probe socket")
def run_json(command: list[str], environment: dict[str, str], input_value: object | None = None) -> dict[str, object]:
completed = subprocess.run(
command,
input=None if input_value is None else json.dumps(input_value),
text=True,
capture_output=True,
env=environment,
check=False,
)
if not completed.stdout.endswith("\n"):
raise AssertionError(f"command omitted framed result: {completed.stderr!r}")
reply = json.loads(completed.stdout)
if not isinstance(reply, dict):
raise AssertionError("command result is not an object")
return reply
def gate_recovery(runtime: str, phase: str, environment: dict[str, str]) -> None:
command = [sys.executable, "-I", "-S", "-B", str(GATE), "--runtime", runtime]
if runtime == "claude":
command.extend(["--recovery-command", str(RECOVERY_COMMAND)])
recovery_invocation = (
f"python3 {RECOVERY_COMMAND} begin --construction /tmp/p6.json "
"--compaction-epoch 1 --request-epoch 1"
if phase == "begin"
else f"python3 {RECOVERY_COMMAND} complete"
)
value = {"tool_name": "Bash", "tool_input": {"command": recovery_invocation}}
else:
value = {"tool_name": "mosaic_context_recover"}
completed = subprocess.run(command, input=json.dumps(value), text=True, capture_output=True, env=environment, check=False)
if completed.returncode != 0:
raise AssertionError(f"{runtime} recovery invocation remained gated: {completed.stderr!r}")
def record_production_observation(runtime: str, message: str, root: Path, environment: dict[str, str]) -> None:
command = [sys.executable, "-I", "-S", "-B", str(OBSERVER_CLIENT), "--runtime", runtime]
if runtime == "claude":
transcript = root / "claude-transcript.jsonl"
transcript.write_text(json.dumps({"message": {"role": "assistant", "content": message}}) + "\n", encoding="utf-8")
payload = {"transcript_path": str(transcript)}
command.append("--latest-entry")
else:
payload = {"latest_assistant_message": message}
completed = subprocess.run(command, input=json.dumps(payload), text=True, capture_output=True, env=environment, check=False)
if completed.returncode != 0:
raise AssertionError(f"{runtime} production observer transport refused: {completed.stderr!r}")
def run_once(index: int, runtime: str) -> None:
# Parity guard: drive the shipped command and the repaired adapter/observer
# bytes, not a shadow receipt or promotion implementation.
recovery_source = RECOVERY_COMMAND.read_text(encoding="utf-8")
if '"action": "begin_recovery"' not in recovery_source or '"action": "complete_recovery"' not in recovery_source:
raise AssertionError("P6 parity guard: recovery command no longer drives shipped broker entrypoints")
gate_source = GATE.read_text(encoding="utf-8")
if "--recovery-command" not in CLAUDE_SETTINGS.read_text(encoding="utf-8"):
raise AssertionError("P6 parity guard: Claude recovery mapping is missing")
if "_SHELL_ACTIVE" not in gate_source or "argv[1] != str(recovery_command)" not in gate_source:
raise AssertionError("P6 parity guard: Claude mapping is not literal-only")
if "const RECOVERY_TOOL = 'mosaic_context_recover'" not in PI_EXTENSION.read_text(encoding="utf-8"):
raise AssertionError("P6 parity guard: Pi recovery tool mapping is missing")
fragments = load_shipped_fragments()
root = Path(tempfile.mkdtemp(prefix=f"mosaic-p6-recovery-{index}-"))
os.chmod(root, 0o700)
socket_path = root / "broker.sock"
observer_socket = root / "observer.sock"
state_path = root / "state.json"
construction_path = root / "construction.json"
content = b"P6 constrained recovery fixture\n"
construction = {
"manifest_version": 1,
"generator_version": "p6-constrained-recovery",
"fragments": [{
"source_id": "authority/p6",
"content_base64": base64.b64encode(content).decode("ascii"),
"expected_sha256": hashlib.sha256(content).hexdigest(),
}],
}
construction_path.write_text(json.dumps(construction), encoding="utf-8")
os.chmod(construction_path, 0o600)
process = subprocess.Popen(
[sys.executable, "-I", "-S", "-B", str(DAEMON), "--socket", str(socket_path),
"--state", str(state_path), "--observer-socket", str(observer_socket)],
stdin=subprocess.DEVNULL,
stdout=subprocess.PIPE,
stderr=subprocess.STDOUT,
text=True,
)
try:
wait_ready(process, socket_path)
registered = request(socket_path, {"action": "register_anchor", "runtime_generation": 1})
session_id = registered.get("session_id")
if registered.get("ok") is not True or not isinstance(session_id, str):
raise AssertionError(f"broker anchor registration failed: {registered!r}")
built = fragments.build_payload_from_wire(construction)
normal = request(socket_path, {
"action": "begin_verification", "session_id": session_id, "runtime_generation": 1,
"runtime": runtime, "construction": construction,
"binding": {"compaction_epoch": index, "request_epoch": index + 100,
"h_source": built.h_source, "h_payload": built.h_payload, "schema_version": 1},
})
normal_challenge = normal.get("receipt_challenge")
normal_receipt = normal.get("receipt")
if not isinstance(normal_challenge, str) or not isinstance(normal_receipt, str):
raise AssertionError("normal path did not mint a receipt challenge")
environment = {
**os.environ,
"MOSAIC_LEASE_BROKER_SOCKET": str(socket_path),
"MOSAIC_RECEIPT_OBSERVER_SOCKET": str(observer_socket),
"MOSAIC_LEASE_SESSION_ID": session_id,
"MOSAIC_RUNTIME_GENERATION": "1",
"MOSAIC_LEASE_RUNTIME": runtime,
}
gate_recovery(runtime, "begin", environment)
recovery = run_json([
sys.executable, "-I", "-S", "-B", str(RECOVERY_COMMAND), "begin", "--construction", str(construction_path),
"--compaction-epoch", str(index + 10), "--request-epoch", str(index + 110),
], environment)
challenge = recovery.get("receipt_challenge")
receipt = recovery.get("receipt")
if recovery.get("state") != "PENDING_DELIVERY" or not isinstance(challenge, str) or not isinstance(receipt, str):
raise AssertionError(f"recovery command did not drive pending delivery: {recovery!r}")
if challenge == normal_challenge:
raise AssertionError("recovery reused a normal-path challenge")
# C4: production observer content is still exact-current-cycle only.
record_production_observation(runtime, normal_receipt, root, environment)
refused = run_json([sys.executable, "-I", "-S", "-B", str(RECOVERY_COMMAND), "complete"], environment)
if refused.get("ok") is not False or refused.get("code") != "RECEIPT_MISMATCH":
raise AssertionError(f"normal-path receipt replay was not refused: {refused!r}")
gate_recovery(runtime, "begin", environment)
recovery = run_json([
sys.executable, "-I", "-S", "-B", str(RECOVERY_COMMAND), "begin", "--construction", str(construction_path),
"--compaction-epoch", str(index + 20), "--request-epoch", str(index + 120),
], environment)
receipt = recovery.get("receipt")
if recovery.get("state") != "PENDING_DELIVERY" or not isinstance(receipt, str):
raise AssertionError(f"fresh recovery retry did not pend: {recovery!r}")
record_production_observation(runtime, receipt, root, environment)
gate_recovery(runtime, "complete", environment)
promoted = run_json([sys.executable, "-I", "-S", "-B", str(RECOVERY_COMMAND), "complete"], environment)
if promoted.get("ok") is not True or promoted.get("state") != "VERIFIED":
raise AssertionError(f"recovery consume-before-promote failed: {promoted!r}")
replay = run_json([sys.executable, "-I", "-S", "-B", str(RECOVERY_COMMAND), "complete"], environment)
if replay.get("ok") is not False or replay.get("code") != "INVALID_LEASE_TRANSITION":
raise AssertionError(f"consumed recovery challenge re-promoted: {replay!r}")
finally:
if process.poll() is None:
process.terminate()
try:
process.wait(timeout=3.0)
except subprocess.TimeoutExpired:
process.kill()
process.wait()
shutil.rmtree(root, ignore_errors=True)
def main() -> None:
parser = argparse.ArgumentParser()
parser.add_argument("--runs", type=int, default=3)
arguments = parser.parse_args()
if arguments.runs != 3:
raise SystemExit("P6 requires exactly three isolated runs")
for index, runtime in enumerate(("pi", "claude", "pi")):
run_once(index, runtime)
print("P6 constrained recovery probe PASS: 3 isolated shipped recovery-command runs")
if __name__ == "__main__":
main()

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