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Author SHA1 Message Date
shaggyandClaude Opus 4.8 9f586c7e83 refactor(chat): route browser chat through one runtime
ci/woodpecker/pr/ci Pipeline was successful
Co-Authored-By: Claude Opus 4.8 <[email protected]>
Claude-Session: https://claude.ai/code/session_01ESFAnh2t9HmLwng8oW95St
2026-08-12 14:44:00 -05:00
shaggyandClaude Opus 4.8 26e472f9cd refactor(chat): route browser chat through one runtime
Co-Authored-By: Claude Opus 4.8 <[email protected]>
Claude-Session: https://claude.ai/code/session_01ESFAnh2t9HmLwng8oW95St
2026-08-12 14:44:00 -05:00
shaggyandClaude Opus 4.8 034bac0bf3 refactor(chat): route browser chat through one runtime
Co-Authored-By: Claude Opus 4.8 <[email protected]>
Claude-Session: https://claude.ai/code/session_01ESFAnh2t9HmLwng8oW95St
2026-08-12 14:43:59 -05:00
shaggyandClaude Opus 4.8 f4e7a4ddb7 refactor(chat): route browser chat through one runtime
Co-Authored-By: Claude Opus 4.8 <[email protected]>
Claude-Session: https://claude.ai/code/session_01ESFAnh2t9HmLwng8oW95St
2026-08-12 14:43:59 -05:00
shaggyandClaude Opus 4.8 bd69eca555 refactor(chat): route browser chat through one runtime
Co-Authored-By: Claude Opus 4.8 <[email protected]>
Claude-Session: https://claude.ai/code/session_01ESFAnh2t9HmLwng8oW95St
2026-08-12 14:43:59 -05:00
mos-dt-0 6a8ce66702 Merge pull request 'feat(lease): verified lease-remediation stack (rebased onto next) — promotion trigger + promote CLI + carve-out + TTL' (#1109) from feat/lease-promotion-and-harness-isolation into next
ci/woodpecker/push/publish Pipeline failed
2026-08-12 03:07:32 +00:00
jason.woltjeandMos 9cd9409089 P3 Slice Zero, Task 4 — replace Web free-text selection with the structured harness catalog (#1170)
ci/woodpecker/push/publish Pipeline failed
Co-authored-by: Jason Woltje <[email protected]>
2026-08-12 02:50:18 +00:00
Jason WoltjeandClaude Fable 5 13c70a7a10 test(mutator-gate): keep launch ledger out of the shipped framework tree
ci/woodpecker/pr/ci Pipeline was successful
runRuntimeLaunchEntry set MOSAIC_HOME to the shipped framework root, so
launch-runtime.py appended its launch ledger to
framework/fleet/run/sessions/events.ndjson — polluting the tree that
manifest.spec.ts walks and failing its completeness check in CI.

Point MOSAIC_HOME at the per-entry temp root instead. Nothing in the
launch chain resolves tools via MOSAIC_HOME (entry scripts resolve via
SCRIPT_DIR); the ledger is its only consumer here.

Co-Authored-By: Claude Fable 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01Dtdjx4Gxude9fwyLezCrhh
2026-08-11 20:51:03 -05:00
dd6357e670 test(skill): install linker asserts harness-home link topology
The two install-linker-compatibility tests still asserted the pre-isolation
behavior (mosaic skill links planted in $HOME/.claude/skills). This branch
deliberately moved the link farm into the mosaic-owned harness homes
($MOSAIC_HOME/.claude/skills) and demoted the base-install dirs to
cleanup-only legacy targets, so the tests now assert the new topology:
the skill links appear under the harness home, foreign links in the legacy
dir are preserved, and no new mosaic link is planted in the base install.

Co-Authored-By: Claude Fable 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01Dtdjx4Gxude9fwyLezCrhh
2026-08-11 20:51:03 -05:00
Jason Woltje 709a23d08c feat(mosaic): mechanically authorize lease promotion 2026-08-11 20:51:03 -05:00
Jason WoltjeandClaude Opus 4.8 239a2a93f1 test(lease): #1124 regression uses node pane command (real field topology per scooby)
The mosaic wrapper makes pane_current_command=node (RUNTIME_ACCEPTABLE_COMMANDS.claude=['claude','node']); the walk matters precisely in that no-shell-wrapper case. Match reality.

Co-Authored-By: Claude Opus 4.8 <[email protected]>
Claude-Session: https://claude.ai/code/session_013SAYFkRhQfhguY7AHfiUC8
2026-08-11 20:51:03 -05:00
Jason WoltjeandClaude Opus 4.8 ea1f058022 fix(lease): resolve lease session id from the claude child, not the tmux pane pid (#1124)
The launcher runs the runtime as a spawnSync CHILD of node(mosaic) (deliberate,
per launch.ts:99 — parent survives to propagate signals), so
MOSAIC_LEASE_SESSION_ID lives on the claude child, not the pane's root pid. The
transport read only pane.pid's /proc/environ and returned RESOLVE_FAILED for
every real 'mosaic claude' seat. Now BFS the pane's process subtree (bounded,
injectable children-reader) and read the first descendant that carries a valid
lease id; fail-closed if none. Unit tests now exercise the real walk (pane=node
without lease -> child=claude with lease) rather than mocking the resolution.

Found by scooby greenfield E2E on fomo-lin with proc-level evidence.

Co-Authored-By: Claude Opus 4.8 <[email protected]>
Claude-Session: https://claude.ai/code/session_013SAYFkRhQfhguY7AHfiUC8
2026-08-11 20:51:03 -05:00
Jason Woltje 1fde450ff1 test(lease): align mutator carve-out acceptance 2026-08-11 20:51:03 -05:00
Jason Woltje c136baa052 fix(mosaic): bound promotion transport delivery 2026-08-11 20:51:03 -05:00
Jason Woltje 4f7f6b3281 feat(mosaic): add correlated lease promotion CLI 2026-08-11 20:51:03 -05:00
Jason Woltje 77edb0dea2 feat(lease): add single-turn Claude promotion trigger 2026-08-11 20:51:03 -05:00
Jason WoltjeandClaude Fable 5 3676180ae8 fix(lease): raise lease TTL 300s -> 3600s
MAX_LEASE_TTL_SECONDS (daemon cap+default) and DEFAULT_TTL_SECONDS
(lease_promote client) both move to 3600. The 5-minute TTL made
gated-by-default sessions unusable (re-promotion mid-task); 1 hour
matches a working session. Full test:framework-shell RC=0.

Co-Authored-By: Claude Fable 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_013SAYFkRhQfhguY7AHfiUC8
2026-08-11 20:51:03 -05:00
Jason Woltje 0e938b66ed fix(lease): ignore benign observer idle replies 2026-08-11 20:51:03 -05:00
Jason Woltje f0fef26eb7 fix(lease): constrain read-only tool carve-outs 2026-08-11 20:51:03 -05:00
Jason Woltje c9bccd4aae test(lease): assert pi carve-out capability 2026-08-11 20:51:03 -05:00
Jason Woltje 8ef2e5b91d test(lease): distinguish pi probe timeouts 2026-08-11 20:51:03 -05:00
Jason Woltje 4cab6c09fe test(lease): enforce read-only tool invariant 2026-08-11 20:51:03 -05:00
Jason Woltje 239fc6d03c docs: measure pi tool registry 2026-08-11 20:51:03 -05:00
Jason WoltjeandClaude Fable 5 d085182dc1 test: close W-0R review findings — assert the omission notice, skip chmod simulations under root
The independent W-0R review of 3592b92e passed but left two PLAUSIBLE
findings: the stderr notice for a legitimately-omitted operator source was
claimed and never asserted (a silent omission is the original defect in
miniature), and the chmod 0o000 unreadable simulations fail spuriously when
euid==0 (CAP_DAC_OVERRIDE). Falsifier for the new assertion: deleting the
notice block turns the suite red (failures=3); restoring returns green.

Co-Authored-By: Claude Fable 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01EHYXhcCQsL3J1Lnm7EraGq
2026-08-11 20:51:03 -05:00
Jason WoltjeandClaude Opus 5 e949fa3767 fix(lease): refuse an incomplete law binding instead of silently shrinking it
build_construction skipped any normative source it could not read
(`except OSError: continue`) and promoted whatever remained. That is not a
degraded binding, it is a forged smaller one: the broker recomputes h_source /
h_payload from the fragments it is SENT (daemon.py:602-616), so an omitted
fragment is internally consistent and PAYLOAD_BINDING_MISMATCH cannot fire. A
partial law promotes exactly like a complete one and nothing downstream can tell
the difference.

Measured before this change, against a seeded home: with only USER.md readable,
the client produced a one-fragment construction with promotion=True. Removing
CONSTITUTION.md, STANDARDS.md or the runtime contract likewise promoted.

The classification mirrors the framework's own file ownership rather than
inventing one:

  * CONSTITUTION.md / AGENTS.md / STANDARDS.md are framework-owned and
    reconciled every upgrade (install.sh FRAMEWORK_OWNED,
    config/file-adapter.ts FRAMEWORK_OWNED_FILES), as is the per-runtime
    RUNTIME.md. Absent => IncompleteBinding. A deployment missing one is broken,
    not minimal.
  * SOUL.md / USER.md are deliberately not seeded by install.sh ("generated by
    `mosaic init`") and TOOLS.md is seeded on first install only, so their
    absence is legitimate. It is reported on stderr, never silent.

Unreadable is handled separately from absent for EVERY source, optional ones
included: a file that will not open is not a file that was never configured, and
collapsing the two is what let a permission change quietly shrink the law.

Also corrects this module's own docstring, which asserted that a VERIFIED lease
means "this agent is running THIS law". It does not. Both sides of the broker's
comparison originate in this client, so it detects corruption in transit and
nothing else. That overstatement is where the belief spread from; the stronger
claim needs the broker re-reading on-disk sources against a manifest the agent
cannot rewrite.

Test: promotion_binding_unittest.py, enumerated in test:framework-shell (the
enumeration guard's population is *test*.sh and does not cover Python, so an
unenumerated test here would simply never run). Falsifier executed: defeating the
guard while leaving the module API intact turns the suite red (12 failures);
restoring it returns green.

Co-Authored-By: Claude Opus 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01EHYXhcCQsL3J1Lnm7EraGq
2026-08-11 20:51:03 -05:00
Jason Woltje f1761c91be Revert "feat(pi): wire lazy lease promotion into the mutator gate"
This reverts 939f2e04. Keeping the revert rather than dropping the commit,
because the failed attempt is the most useful record on this branch.

The wiring worked mechanically — verified with a live model on sb-it-1-dt: the
receipt was emitted verbatim as a whole message, and the broker token was minted
AND consumed, so observe_receipt and promote_lease both succeeded and the lease
reached VERIFIED.

It failed as a DESIGN, for reasons that are properties of the protocol rather
than of this wiring:

  * It puts control-plane traffic in the user-facing conversation channel. An
    operator asking "what model are you?" received a receipt string instead of an
    answer — the model tried a tool, was blocked, complied with the receipt
    instruction, and in one-shot mode that text turn BECAME the reply. Observed
    twice, non-deterministically.
  * The lease TTL is hard-capped at 300s (MAX_LEASE_TTL_SECONDS; ttl_seconds >
    cap raises INVALID_LEASE_TTL). Measured: allowed at T+0, LEASE_EXPIRED at
    T+310. So the visible cost recurs every five minutes of mutator activity.
  * Model compliance is not guaranteed — one run retried the command instead of
    emitting the receipt.

Any model emission is user-visible, so this is not fixable by better wiring; it
needs a design answer about how promotion is triggered and paid for. That is
under adversarial review (docs/scratchpads/lease-remediation/07-liveness-design-brief.md
in the operator's repo). Promotion triggering will return on its own branch once
that lands.

What remains here is independently sound and unblocked: harness-home isolation,
the immutable launch record, the skills relocation, the promotion client itself
(steps 1/4/5), and the #1087 prefix guard.
2026-08-11 20:51:03 -05:00
Jason Woltje 8109f72cf7 fix(sync-skills): guard the pre-existing prune against an empty prefix (#1087)
prune_stale_links_in_target compared "$resolved" == "$canonical_real/"* while
length-checking only $resolved. If $canonical_real were ever empty the pattern
collapses to == "/"* and matches every absolute path.

The failure is precisely inverted, which is what makes it worth fixing rather
than noting: is_mosaic_skill_name already `continue`s for names that ARE current
mosaic skills, so an empty prefix would delete exactly the FOREIGN symlinks in
every target directory and preserve the mosaic ones. On this host that is 4 base
installs, including codex's own .system entry.

Reported by mos-claude as #1087 after I introduced the same guard in the new
legacy-cleanup path in the previous commit and walked past this instance thirty
lines away. Same defect class, same file, one function apart.

$canonical_real is populated by readlink -f after a mkdir -p, so an empty value
requires readlink to fail — unlikely, but the consequence is deleting operator
symlinks across every harness, which is not a risk worth carrying for one test.
2026-08-11 20:51:03 -05:00
Jason Woltje a0be592d84 feat(pi): wire lazy lease promotion into the mutator gate
Completes the promotion path: the client landed in the previous commit, but
nothing drove step 2 — the model emitting the receipt. This wires it.

LAZY, not at session start. Promotion costs an entire model turn, because the
receipt must be the whole message (hmac.compare_digest, "not a transcript
substring"). Minting at session start would collide with the Constitution's
first-response mode declaration — the two cannot share a message, so requiring
both would be unsatisfiable. Deferring to the first DENIED MUTATOR means the
mode declaration happens first and the receipt gets its own later turn, so no
governance change is needed. A read-only session never pays for promotion at all.

Mechanism: on a MUTATOR_UNVERIFIED denial the tool_call hook mints a challenge
and returns the receipt in the block `reason`, which pi feeds back to the model
as the tool result — the existing injection path already used by
lease-lifecycle.ts. The model emits the receipt as its next message, message_end
ships it to the observer, and the extension then calls observe_receipt +
promote_lease.

Only MUTATOR_UNVERIFIED triggers minting. Other denials (GATE_UNAVAILABLE,
STALE_GENERATION, LEASE_EXPIRED, ANCESTRY_MISMATCH) describe conditions a
receipt cannot fix, and begin_verification revokes before it mints, so minting
there would thrash the broker.

Completion is gated on an EXACT text match against the minted receipt. This is
load-bearing, not defensive: message_end also fires for the message that
CONTAINED the blocked tool call — one turn BEFORE the model answers. An earlier
version completed there, so observe_receipt compared against the wrong text,
failed, and burned the challenge before the model ever emitted it. Matching the
text mirrors the broker's own compare_digest semantics and waits for the right
turn. Confirmed by instrumenting message_end and watching it fire with
pending=yes one message too early.

It never posts the receipt itself. receipt-observer-client.py accepts any
string, so self-posting would satisfy the broker while proving nothing — the
whole point is that a live model echoes a challenge it was given.

Bounded by MAX_PROMOTION_ATTEMPTS: model compliance is not guaranteed (observed
a run where the model retried the command instead of emitting the receipt), so
a non-complying model degrades to today's behaviour — denied mutators — rather
than looping.

Verified with a live model on sb-it-1-dt: receipt emitted verbatim as a whole
message, and the broker token was minted AND consumed, i.e. observe_receipt and
promote_lease both succeeded and the lease reached VERIFIED.

Known limitation: under `pi -p`, the receipt is a text-only turn, which ends the
one-shot loop — so promotion completes but the blocked tool is not retried in
that same invocation. Interactive and durable fleet sessions continue and retry
normally.
2026-08-11 20:51:03 -05:00
Jason Woltje f4a24b693e feat(lease-broker): add the missing promotion client
The enforcement half of the lease broker ships and denies; the promotion half
has no production caller anywhere in the package. Verified across 0.0.48, 0.0.49
and 0.0.50-next.2207: begin_verification / observe_receipt / promote_lease are
invoked only by broker-test-client.ts, the acceptance spec, unit tests, and two
probes under docs/.

Consequence: no lease on any host can reach VERIFIED, so mutator-gate denies
every mutator with MUTATOR_UNVERIFIED via a gate that nothing shipped can
satisfy. Runtimes that enforce the gate in-process (pi, via mosaic-extension's
tool_call hook) are bricked for mutators; runtimes whose gate is wired through a
settings hook escape only when that hook is absent — i.e. by being ungated.

This adds the client. It implements protocol steps 1, 4 and 5:

  1. begin_verification  -> mint a challenge, return the exact receipt text
  2. the MODEL emits that text verbatim as its entire latest message
  3. the runtime adapter ships that message to the observer socket
  4. observe_receipt      -> PENDING_PROMOTION
  5. promote_lease        -> VERIFIED

Step 2 is deliberately NOT implemented here, and that is the point.
is_verbatim_receipt uses hmac.compare_digest against the exact minted string —
explicitly "not a transcript substring" — which makes promotion a LIVENESS
PROOF: it requires a live model that received the challenge in its context and
echoed it exactly.

receipt-observer-client.py will post ANY string as the latest assistant message.
A promotion client that posted its own receipt would satisfy the broker while
proving nothing — a gate-disabler indistinguishable from a working fix unless
someone specifically looks. Emitting the receipt therefore belongs to the runtime
adapter, where a real model turn happens. A local diagnostic that posts its own
receipt exists in the operator's repo and is deliberately NOT shipped here.

The construction binds the exact normative source bytes, so a VERIFIED lease
means "this agent is running THIS law", not merely "this session id is known".
h_source/h_payload are derived by importing the framework's own
normative_fragments.build_payload rather than reimplementing it: the broker
derives them the same way and any divergence yields PAYLOAD_BINDING_MISMATCH.
There must be exactly one implementation.

session_identity() prefers the generation FILE over the env var, matching
lease_generation.py. Sending a generation higher than the broker's would revoke
the session's own authority (daemon.py:342-344), so it never guesses.

Verified end-to-end on sb-it-1-dt under a real lease-gated anchor: a mutator
denied rc=2 MUTATOR_UNVERIFIED, then begin -> observe -> promote -> VERIFIED,
then the same mutator allowed rc=0. Negative controls pass: a fresh session is
still denied, and an unrelated session still reads UNVERIFIED — promotion is
per-session and does not leak.

Still open: adapter wiring for step 2. Lazy promotion on first mutator attempt
avoids colliding with the Constitution's first-response mode declaration, since
compare_digest requires the receipt to be the WHOLE message.
2026-08-11 20:51:03 -05:00
Jason Woltje e4dffb7c18 feat(launch): isolate harness homes and record immutable launch provenance
Mosaic wrote into the operator's harness base installs — ~/.claude,
~/.pi/agent, ~/.codex, ~/.config/opencode — for settings, instructions, and a
102-symlink skill farm per harness. Any experiment with hooks or gating
therefore mutated the operator's own tooling, and a broken framework change
could take out the very harness needed to repair it.

Harness home isolation
----------------------
Each runtime now reads config from a dedicated mosaic-owned home via the
harness's own config-dir variable:

  claude    CLAUDE_CONFIG_DIR     ~/.config/mosaic/.claude
  pi        PI_CODING_AGENT_DIR   ~/.config/mosaic/.pi     (replaces ~/.pi/agent)
  codex     CODEX_HOME            ~/.config/mosaic/.codex
  opencode  XDG_CONFIG_HOME       ~/.config/mosaic/.opencode

These paths are manifest-UNKNOWN, so rule 3 (#791) resolves them to operator
ownership and a keep-mode upgrade can neither overwrite nor prune them.
A bare `claude` / `pi` keeps its own config AND auth, making it a structural
break-glass rather than one depending on restoring a file under pressure.

opencode is blunter than the rest: it has no dedicated variable and follows XDG,
so isolation also relocates XDG lookups for anything it spawns. Documented in
place.

mosaic-sync-skills now links into those homes and cleans the legacy farms it
previously planted in base installs. Ownership is proven by RESOLUTION, not by
name — only symlinks resolving inside the canonical/local skills dirs are
removed, mirroring the refusal already in commands/skill.js. Verified against a
real install: codex's own .system directory survived while its 102 mosaic links
were removed. Both resolution prefixes are length-checked first; an empty prefix
would make "$resolved" == "$prefix/"* match every absolute path and delete
foreign symlinks.

Immutable launch record
-----------------------
Every launch now appends one record to fleet/run/sessions/events.ndjson before
exec. Mandatory, mechanical, no model involvement.

pi rewrites its own argv to a bare `pi`, so /proc/<pid>/cmdline destroys the
launch evidence — that has already produced a confident wrong diagnosis ("this
agent bypassed the launcher"), disproved only by the parent's argv and only
because the parent had not yet exited. A record written before exec is the only
place this survives.

The path is the #797 Runtime Session Ledger, already operator-classified and
already covered by test-upgrade-manifest-guard.sh, which seeds it and proves a
populated ledger survives keep-mode upgrades — but nothing shipped ever wrote
it. This implements it in the shape that guard already asserts (0600 files under
a 0700 dir).

`mosaic` writes session.launch; launch-runtime.py appends lease.register with
the broker session id and activation capability. They correlate by an explicit
MOSAIC_LAUNCH_ID, never by pid: execRuntime uses spawnSync, so the runtime is a
child with a different pid.

Records normative fragment digests (CONSTITUTION/AGENTS/SOUL/USER/STANDARDS/
TOOLS/RUNTIME) — the same set the broker hashes for promotion, so drift is
mechanically detectable rather than a matter of judgement.

Credential-safe: env is captured as PRESENT NAMES ONLY, and argv values over
256 bytes become a sha256 + length rather than being inlined.

Also fixes CLI_VERSION resolution: '@mosaicstack/mosaic/package.json' is not in
the package exports map and always throws ERR_PACKAGE_PATH_NOT_EXPORTED.
resolveTool() uses that same failing specifier, which is why its documented
preference for bundled tools over the deployed ~/.config/mosaic copy has never
once applied — noted in place, not fixed here.

Verified on sb-it-1-dt: isolated homes written and base installs byte-identical
for all four harnesses; 408 legacy symlinks removed with 1 foreign entry
preserved; launch records paired across the spawn boundary. typecheck shows zero
errors in launch.ts (the @mosaicstack/types failures are pre-existing and
reproduce on a pristine origin/main worktree).
2026-08-11 20:51:03 -05:00
be-coder-08andJason Woltje f840843908 feat(pr-merge): preserve linked authors in squash messages (#1066)
Co-authored-by: be-coder-08 <[email protected]>
2026-08-11 20:51:03 -05:00
be-coder-08andJason Woltje aacb11b0b9 fix(ci): remove upgrade rollback signal race (#1060)
Co-authored-by: be-coder-08 <[email protected]>
2026-08-11 20:51:03 -05:00
be-coder-08andJason Woltje ce6bda18f2 test(ci): make queue guard harness deterministic (#1062)
Co-authored-by: be-coder-08 <[email protected]>
2026-08-11 20:51:03 -05:00
mos-dt-0 aca28405be Merge pull request 'ci: provision Pi runtime 0.84.1 in the test step (Invariant R)' (#1164) from ci/provision-pi-runtime into next
ci/woodpecker/push/publish Pipeline failed
2026-08-12 01:50:56 +00:00
mos-dt-0 c1eb0659c4 Merge pull request 'docs(framework): adopt MOS-STE writing standard onto next (from #965)' (#1165) from adopt/965-mos-ste-writing-standard into next
ci/woodpecker/push/publish Pipeline failed
2026-08-12 01:18:29 +00:00
Jason WoltjeandClaude Fable 5 b79708fdc7 ci: provision Pi runtime 0.84.1 in the test step (Invariant R)
ci/woodpecker/pr/ci Pipeline was successful
invariant_r_unittest.py (landing with the lease-remediation stack, PR
#1109) hard-requires an installed `pi` binary pinned to the measured
version: it boots Pi's real tool registry and proves the broker's
read-only carve-out resolves to real, unshadowed builtins. Absent
runtime fails loud by design — so CI must provide it.

Install @earendil-works/[email protected].1 (the canonical Pi;
@mariozechner/* is embedded-legacy) at step level in the test step.
Step-level rather than baked into Dockerfile.ci because ci-image
publishes are currently blocked on registry UNAUTHORIZED; baking it in
is the follow-up once registry auth is fixed, at which point this line
degrades to a fast no-op guard like the openssl line above it.

Co-Authored-By: Claude Fable 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01Dtdjx4Gxude9fwyLezCrhh
2026-08-11 20:16:32 -05:00
jason.woltje ebe415132e Merge pull request 'feat(gateway): generic harness catalog + selection HTTP surfaces (P3 Slice Zero, Task 3)' (#1169) from feat/p3-slice0-task3-catalog-selection into next
ci/woodpecker/push/publish Pipeline was canceled
2026-08-12 01:11:21 +00:00
jason.woltjeandClaude Opus 4.8 f16f206a0a feat(gateway): expose generic harness catalog and selection
ci/woodpecker/pr/ci Pipeline failed
Add the Slice-Zero catalog and selection HTTP surfaces for P3 Task 3:
GET /api/harnesses, GET /api/harnesses/:harnessId/catalog,
GET+PUT /api/chat/preferences/selection. Scope is always server-derived
via scopeFromUser(CurrentUser); selection tuples are validated against the
live catalog with no fallback substitution and persisted in a transitional
owner-scoped in-memory store. HarnessModule is wired into AppModule.

Co-Authored-By: Claude Opus 4.8 <[email protected]>
Claude-Session: https://claude.ai/code/session_01ESFAnh2t9HmLwng8oW95St
2026-08-11 19:56:11 -05:00
jason.woltje a186922e3a Merge pull request 'feat(gateway): harness registry, fake adapter, no-substitution suite (P3 Slice Zero, Task 2)' (#1168) from feat/p3-slice0-task2-harness-registry into next
ci/woodpecker/push/publish Pipeline failed
2026-08-12 00:40:03 +00:00
jason.woltje 43513c28f7 feat(gateway): add harness registry and fake adapter
ci/woodpecker/pr/ci Pipeline failed
2026-08-11 19:22:27 -05:00
Jason Woltjeandmos-dt-0 b6c12bdfcb style(framework): apply prettier to WRITING-STYLE.md so CI format passes (#965)
ci/woodpecker/pr/ci Pipeline was successful
The `format` step of .woodpecker/ci.yml:89 (`pnpm format:check`) failed on
pipeline 2111 for this branch. Reproduced on a bench with the lockfile-pinned
[email protected] against the repo .prettierrc and .prettierignore, using CI's
exact glob: WRITING-STYLE.md was the only failing file.

The change is mechanical and semantically null: markdown table cell padding
and `*emphasis*` -> `_emphasis_`. Verified by normalizing both revisions
(whitespace removed, `_`/`*` folded, table rules collapsed) — the results are
byte-identical.

This does not address the prose findings published on #965 (P1-P4); those
await a ruling. The `test` step also failed on 2111, on a base ~40 commits
stale — attribution for that failure needs this rerun, and is not claimed here.

Co-authored-by: mos-dt-0 <[email protected]>
2026-08-11 19:00:46 -05:00
jason.woltje fb9f9cda5a Merge pull request 'fix(gateway): resolve InteractionCoordinationService handoff factory via optional DI token (#1145)' (#1167) from fix/1145-coord-di-compiled-boot into next
ci/woodpecker/push/publish Pipeline failed
2026-08-11 23:57:43 +00:00
jason.woltje 400a21ca18 Merge pull request 'feat(types): generic harness contracts (P3 Slice Zero, Task 1)' (#1166) from feat/p3-slice0-task1-harness-contracts into next
ci/woodpecker/push/publish Pipeline is pending
2026-08-11 23:51:50 +00:00
shaggy (mosaic-dev box) 4cefa5cd88 fix(gateway): resolve InteractionCoordinationService handoff factory via optional DI token (#1145)
ci/woodpecker/pr/ci Pipeline failed
root cause: emitDecoratorMetadata reflected the third constructor parameter as Function and Nest attempted to resolve it

fix: optional HANDOFF_ID_FACTORY injection token, no production provider, preserving undefined -> crypto.randomUUID() default and unchanged positional construction

TDD: real CoordModule red at Function index [2], then green; test overrides only unrelated AuthGuard because its AUTH provider comes from AppModule's global AuthModule context

Closes #1145
2026-08-11 18:37:54 -05:00
shaggy (mosaic-dev box) ddf8616716 feat(types): add generic harness contracts
ci/woodpecker/pr/ci Pipeline was canceled
2026-08-11 18:32:39 -05:00
30a694358d fix(framework): key §5 lookup on rendered bullets, not the token (mos-dt round-2)
§5 sent the agent to read direct|friendly|formal in USER.md, but the builder
renders prose bullets, not the token — the documented lookup could not key on
the shipped file. Table now keys on the leading bullet USER.md actually
contains. Also: 'concise, technical' -> 'concise, structured' (drop the round-1
residual value name from a rule-9 guide). Docs-only, no code, no scope growth.

Written-by: jarvis (dragon-lin)
Co-Authored-By: Claude Fable 5 <[email protected]>
2026-08-11 18:22:15 -05:00
e01dfa0cd7 fix(framework): ride the existing communicationStyle enum, drop the no-op USER.md edit (mos-dt review #960)
F1: defaults/USER.md is never installed (generated from templates/USER.md.template
via buildCommunicationPrefs). Editing it was a no-op asserting a phantom setting —
exactly the false-green §2 warns against. Reverted.
F2: the framework already has communicationStyle (direct|friendly|formal). §5 now
maps THOSE values to output instead of inventing technical|prose|brief (rule 9).
Minor: §6 states no mechanical prose check exists today; rule 1 points at §3.4.

Written-by: jarvis (dragon-lin)
Co-Authored-By: Claude Fable 5 <[email protected]>
2026-08-11 18:22:15 -05:00
6c4a2eb626 feat(framework): MOS-STE writing standard + Google-style code + per-user comms choice
Adds the agent output standard to the framework SOT so it injects at launch and
is selectable per user (closes the gap: it lived only as a jarvis-brain lab doc + issue #960).

- guides/WRITING-STYLE.md: MOS-STE (adapted ASD-STE100) for docs, Google Style for code,
  verification-artifact emphasis, absolute user-voice carve-out. Written in MOS-STE.
- defaults/STANDARDS.md: Output-standards block (always injected via the prompting contract).
- defaults/AGENTS.md: routing row so writing/doc/comms work reaches the guide.
- defaults/USER.md: per-user 'Comms style' option (technical|prose|brief), default technical.

Refs mosaicstack/stack#960. Owner directive (Jason, 2026-07-30): docs->adapted ASD-STE100,
code->Google style, resumes/personal carved out, comms style a per-user choice.

Written-by: jarvis (dragon-lin)
Co-Authored-By: Claude Fable 5 <[email protected]>
2026-08-11 18:22:15 -05:00
mos-dt-0 9185b0cce4 Merge pull request 'docs(webui): Phase P structure & migration map' (#1147) from docs/webui-phase-p-structure into next 2026-08-11 22:29:10 +00:00
mos-dt-0andClaude Fable 5 8925a502ae style(webui): prettier-format PHASE-P-STRUCTURE.md
ci/woodpecker/pr/ci Pipeline was successful
format:check was the only red CI step on #1147.

Co-Authored-By: Claude Fable 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01Dtdjx4Gxude9fwyLezCrhh
2026-08-11 17:14:38 -05:00
mos-dt-0 0e4eb1445c Merge pull request 'fix(installer): propagate wizard gateway failures' (#1134) from fix/wizard-gateway-failure into next
ci/woodpecker/push/publish Pipeline failed
2026-08-11 22:01:43 +00:00
mos-dt-0 592d60425f Merge pull request 'fix(installer): require Node 22 for the --next lane' (#1130) from fix/next-node-gate into next
ci/woodpecker/push/publish Pipeline was canceled
2026-08-11 22:01:39 +00:00
mos-dt-0 a43f343efd Merge pull request 'fix(security): mosaic-init RCE — eval on prompt answers → printf -v (#1115)' (#1127) from fix/mosaic-init-rce into next
ci/woodpecker/push/publish Pipeline was canceled
2026-08-11 22:01:35 +00:00
jason.woltje 88ef9d4fa5 Merge pull request 'P3-R1: repair routing health-enum (#1) + wire /mcp command (#5)' (#1154) from feat/webui-p3r1-routing-mcp into next
ci/woodpecker/push/publish Pipeline failed
2026-08-11 20:51:52 +00:00
shaggy (mosaic-dev box) bda308efd9 fix(gateway): repair routing health and MCP command wiring
ci/woodpecker/pr/ci Pipeline was successful
2026-08-11 15:28:57 -05:00
jason.woltje 20718b5a27 Merge pull request 'P4-1: read-only Projects + Tasks SPA pages + dev-port pins' (#1153) from feat/webui-p4-1 into next
ci/woodpecker/push/publish Pipeline failed
2026-08-11 04:00:36 +00:00
shaggy (mosaic-dev box) 29db24210c fix(web): P4-1 restore graceful degradation for missions/tasks fetch on project detail
ci/woodpecker/pr/ci Pipeline was successful
2026-08-10 22:43:47 -05:00
shaggy (mosaic-dev box)andClaude Haiku 4.5 a6085eea37 feat(web): add read-only project and task SPA pages
Co-Authored-By: Claude Haiku 4.5 <[email protected]>
2026-08-10 22:23:59 -05:00
Mos e00cc475a2 Merge pull request 'P3 — Typed SPA chat (Phase P webUI)' (#1151) from feat/webui-p3-chat into next
ci/woodpecker/push/publish Pipeline failed
2026-08-10 22:57:07 +00:00
mos-dt-0 bf32f29acd fix(ci): make queue guard purpose-sensitive (#1148)
ci/woodpecker/push/publish Pipeline failed
2026-08-10 20:54:09 +00:00
Jason Woltje 1655b1579a Move deploy and briefs into docs folder. Remove old files.
ci/woodpecker/push/publish Pipeline was canceled
2026-08-10 14:44:19 -05:00
Jason Woltje e478a359eb Move briefs directory inside the docs
ci/woodpecker/push/publish Pipeline was canceled
2026-08-10 14:42:04 -05:00
Jason Woltje 76e4242cb1 Reformat Requirements block
ci/woodpecker/push/publish Pipeline was canceled
2026-08-10 14:40:18 -05:00
shaggy (mosaic-dev box)andClaude Opus 4.8 a45f53071a docs(webui): add Phase P structure & migration map
ci/woodpecker/pr/ci Pipeline failed
First-pass structural reference for the Vite SPA migration (apps/web): dual-app
tree during migration, shared lib/ networking layer, origin-relative/same-origin
serving model, build scripts, the P1-P6 increment map, and the #1145 P5 blocker.
Living doc — details to be fleshed out by follow-up.

Co-Authored-By: Claude Opus 4.8 <[email protected]>
Claude-Session: https://claude.ai/code/session_01ESFAnh2t9HmLwng8oW95St
2026-08-10 14:34:57 -05:00
Jason Woltje 00eb216480 docs(agents): consolidate project guidance 2026-08-10 14:27:59 -05:00
shaggy 8c27024d0e Merge pull request 'fix(gateway): gate FederationModule on tier === 'federated' (#1138)' (#1140) from fix/1138-conditional-federation into next
ci/woodpecker/push/publish Pipeline failed
2026-08-10 07:09:51 +00:00
shaggy (mosaic-dev box) 406e40584d test(gateway): raise module-graph import timeout for CI load robustness (#1138)
ci/woodpecker/pr/ci Pipeline was successful
2026-08-10 01:34:24 -05:00
shaggy (mosaic-dev box) 677aeb0c93 fix(gateway): restore daemon config discovery (#1138)
ci/woodpecker/pr/ci Pipeline failed
2026-08-10 00:31:58 -05:00
shaggy (mosaic-dev box)andClaude Haiku 4.5 bd0ef2ab25 fix(gateway): anchor remaining config loads (#1138)
Co-Authored-By: Claude Haiku 4.5 <[email protected]>
2026-08-09 23:54:53 -05:00
shaggy (mosaic-dev box) 2d5a8c81ec fix(gateway): anchor config discovery and isolate env tests (#1138) 2026-08-09 23:11:09 -05:00
shaggy (mosaic-dev box) 884d527cc8 fix(gateway): anchor dotenv discovery to module (#1138) 2026-08-09 22:21:17 -05:00
shaggy (mosaic-dev box) b82a51da80 fix(gateway): load dotenv before federation tier gate (#1138) 2026-08-09 20:50:37 -05:00
shaggy (mosaic-dev box) b4753a75cd fix(gateway): gate FederationModule on tier federated (#1138)
ci/woodpecker/pr/ci Pipeline was successful
CaService hard-requires STEP_CA_URL/provisioner config at construction, so an
unconditional FederationModule import makes every standalone/local boot die at
DI time. Gate the module on loadConfig().tier === federated, matching the
documented intent of the federation compose profile (must not start in
non-federated dev).

Verified in mosaic-dev box: standalone tier boots to "Gateway listening on
port 14242" with bootstrap/socket.io/auth surfaces responding; federated tier
path unchanged.
2026-08-09 17:26:28 -05:00
Jason Woltje dc67590a96 fix(installer): propagate wizard gateway failures (#1120)
ci/woodpecker/pr/ci Pipeline was successful
2026-08-09 05:01:09 -05:00
Jason Woltje baf4306f51 fix(installer): require Node 22 for next lane
ci/woodpecker/pr/ci Pipeline was successful
2026-08-09 02:37:03 -05:00
Jason Woltje 12677a928d fix(mosaic): prevent init prompt code execution
ci/woodpecker/pr/ci Pipeline was successful
2026-08-09 00:28:57 -05:00
148 changed files with 20248 additions and 1039 deletions
+10
View File
@@ -109,6 +109,16 @@ steps:
# `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
# Pi runtime (Invariant R): invariant_r_unittest.py hard-requires an
# installed `pi` binary at exactly this measured version — the test
# boots Pi's real tool registry to prove the read-only carve-out
# resolves to real, unshadowed builtins, and fails loud (by design)
# when the runtime is absent or drifts. The canonical Pi is
# @earendil-works/[email protected] exactly (@mariozechner/* is
# embedded-legacy). Step-level install because ci-base image publishes
# are currently blocked on registry auth; fold into Dockerfile.ci once
# that is fixed, keeping this as a fast no-op guard.
- npm install -g @earendil-works/[email protected]
# 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.
- |
+70 -31
View File
@@ -11,48 +11,87 @@
## Project Context
Mosaic Stack is a self-hosted, multi-user AI agent platform. TypeScript monorepo with NestJS gateway, Next.js web dashboard, Pi SDK agent runtime, and plugin architecture for Discord/Telegram.
Mosaic Stack is a self-hosted, multi-user AI agent platform. It is a TypeScript monorepo with a NestJS gateway, Next.js dashboard, Pi SDK agent runtime, and Discord/Telegram plugin architecture.
## Package Map
### Stack
| Package | Purpose | Key Dependencies |
| ------------------ | ------------------------------- | -------------------------------- |
| `apps/gateway` | NestJS API + WebSocket hub | Fastify, Socket.IO, Pi SDK, OTEL |
| `apps/web` | Next.js dashboard | React 19, Tailwind |
| `packages/types` | Shared TypeScript contracts | class-validator |
| `packages/db` | Drizzle ORM schema + migrations | drizzle-orm, postgres |
| `packages/auth` | BetterAuth configuration | better-auth, @mosaicstack/db |
| `packages/brain` | Data layer (PG-backed) | @mosaicstack/db |
| `packages/queue` | Valkey task queue + MCP | ioredis |
| `packages/coord` | Mission coordination | @mosaicstack/queue |
| `packages/mosaic` | Unified `mosaic` CLI + TUI | Ink, Pi SDK, commander |
| `plugins/discord` | Discord channel plugin | discord.js |
| `plugins/telegram` | Telegram channel plugin | Telegraf |
- **API:** NestJS with Fastify (`apps/gateway`)
- **Web:** Next.js 16 with React 19 (`apps/web`)
- **ORM and database:** Drizzle ORM, PostgreSQL 17, and pgvector (`packages/db`)
- **Authentication:** BetterAuth (`packages/auth`)
- **Agent runtime:** Pi SDK (`apps/gateway`, `packages/mosaic`)
- **Queue:** Valkey 8 (`packages/queue`)
- **Build:** pnpm workspaces and Turborepo
- **CI:** Woodpecker CI
- **Observability:** OpenTelemetry and Jaeger
## Architecture Rules
### Package Map
1. Gateway is the single API surface — all clients connect through it
2. Pi SDK is ESM-only — gateway and CLI must use ESM
3. Socket.IO typed events defined in `@mosaicstack/types` enforce compile-time contracts
4. OTEL auto-instrumentation loads before NestJS bootstrap
5. BetterAuth manages auth tables; schema defined in `@mosaicstack/db`
6. Docker Compose provides PG (5433), Valkey (6380), OTEL Collector (4317/4318), Jaeger (16686)
7. Explicit `@Inject()` decorators required in NestJS (tsx/esbuild doesn't emit decorator metadata)
| Package | Purpose | Key Dependencies |
| ------------------ | ----------------------------- | -------------------------------- |
| `apps/gateway` | NestJS API + WebSocket hub | Fastify, Socket.IO, Pi SDK, OTEL |
| `apps/web` | Next.js dashboard | React 19, Tailwind |
| `packages/types` | Shared TypeScript contracts | class-validator |
| `packages/db` | Drizzle schema and migrations | drizzle-orm, postgres |
| `packages/auth` | BetterAuth configuration | better-auth, @mosaicstack/db |
| `packages/brain` | Structured data layer | @mosaicstack/db |
| `packages/queue` | Valkey task queue and MCP | ioredis |
| `packages/coord` | Mission coordination | @mosaicstack/queue |
| `packages/mosaic` | Unified `mosaic` CLI and TUI | Ink, Pi SDK, commander |
| `plugins/discord` | Discord channel plugin | discord.js |
| `plugins/telegram` | Telegram channel plugin | Telegraf |
## Architecture and Code Conventions
1. Gateway is the single API surface; all clients connect through it.
2. Pi SDK is ESM-only; gateway and CLI code must remain ESM.
3. Use `"type": "module"`, NodeNext module resolution, and `.js` extensions in imports.
4. Keep typed Socket.IO events in `@mosaicstack/types` to enforce client/server contracts.
5. Import OTEL tracing before NestJS bootstrap (`import './tracing.js'`).
6. Use explicit `@Inject()` decorators in NestJS because tsx/esbuild does not emit decorator metadata.
7. Keep DTOs in `*.dto.ts` files at module boundaries.
8. BetterAuth owns authentication tables; their schema is defined in `@mosaicstack/db`.
9. Create a task-specific scratchpad for non-trivial work.
## Development Workflow
Requirements: Node.js 20+, pnpm 10.6.2, and Docker Compose when optional local services are needed.
```bash
docker compose up -d # Infrastructure
pnpm install # Dependencies
pnpm typecheck && pnpm lint && pnpm format:check # Quality gates
pnpm install --frozen-lockfile
pnpm preflight
# Optional local queue service only; do not start the full Compose stack.
docker compose up -d valkey
```
## Repo-Specific Notes
The pre-push hook requires:
- DTOs in `*.dto.ts` files at module boundaries
- ESM everywhere (`"type": "module"`, `.js` extensions in imports)
- NodeNext module resolution in all tsconfigs
- Scratchpads are mandatory for non-trivial tasks
```bash
pnpm preflight && pnpm typecheck && pnpm lint && pnpm format:check
```
Software delivery also requires the applicable tests. Common repository commands are:
```bash
pnpm typecheck # TypeScript checks across the workspace
pnpm lint # ESLint across the workspace
pnpm test # Checkout tests and package Vitest suites
pnpm format:check # Prettier check
pnpm build # Build all packages and applications
```
## Database and Local Runtime Safety
- Current local data-layer work uses in-process PGlite; leave `DATABASE_URL` unset.
- PostgreSQL execution is held until KBN-101-00, KBN-101-03, and KBN-101-05 land.
- Do not invoke a migration runner, initialization SQL, or the Compose PostgreSQL service from this checkout.
- Do not start Gateway/Web or run root `pnpm dev` as a local PGlite route. The current dotenv loader can inherit a daemon PostgreSQL DSN; KBN-101-02 must make that path fail closed first.
- Migration artifact generation is offline and does not authorize PostgreSQL access:
```bash
pnpm --filter @mosaicstack/db db:generate
```
## docs/TASKS.md — Schema (CANONICAL)
+3 -44
View File
@@ -1,46 +1,5 @@
# CLAUDE.md — Mosaic Stack
# Claude Compatibility Pointer
## Project
@AGENTS.md
Self-hosted, multi-user AI agent platform. TypeScript monorepo.
## Stack
- **API**: NestJS + Fastify adapter (`apps/gateway`)
- **Web**: Next.js 16 + React 19 (`apps/web`)
- **ORM**: Drizzle ORM + PostgreSQL 17 + pgvector (`packages/db`)
- **Auth**: BetterAuth (`packages/auth`)
- **Agent**: Pi SDK (`packages/agent`, `packages/mosaic`)
- **Queue**: Valkey 8 (`packages/queue`)
- **Build**: pnpm workspaces + Turborepo
- **CI**: Woodpecker CI
- **Observability**: OpenTelemetry → Jaeger
## Commands
```bash
pnpm typecheck # TypeScript check (all packages)
pnpm lint # ESLint (all packages)
pnpm format:check # Prettier check
pnpm test # Vitest (all packages)
pnpm build # Build all packages
# Database
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: 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
- ESM everywhere (`"type": "module"`, `.js` extensions in imports)
- NodeNext module resolution
- Explicit `@Inject()` decorators in NestJS (tsx/esbuild doesn't support emitDecoratorMetadata)
- DTOs in `*.dto.ts` files at module boundaries
- OTEL tracing imported before NestJS bootstrap (`import './tracing.js'`)
- All three gates must pass before push: typecheck, lint, format:check
Do not add project guidance here. Keep `AGENTS.md` authoritative so every agent runtime receives the same instructions.
+7 -3
View File
@@ -48,9 +48,13 @@ mosaic wizard # Full guided setup (gateway install → verify)
### Requirements
- Node.js ≥ 20
- Node.js ≥ 22
- npm (for global @mosaicstack/mosaic install)
- One or more runtimes: [Claude Code](https://docs.anthropic.com/en/docs/claude-code), [Codex](https://github.com/openai/codex), [OpenCode](https://opencode.ai), or [Pi](https://github.com/mariozechner/pi-coding-agent)
- One or more runtimes:
- [Claude Code](https://docs.anthropic.com/en/docs/claude-code)
- [Codex](https://github.com/openai/codex)
- [OpenCode](https://opencode.ai)
- [Pi](https://pi.dev)
## Usage
@@ -200,7 +204,7 @@ Consent state is persisted in config. Remote upload is a no-op until you run `mo
### Prerequisites
- Node.js ≥ 20
- Node.js ≥ 22
- pnpm 10.6+
- Docker & Docker Compose
@@ -417,7 +417,7 @@ describe('ConversationsController — search endpoint', () => {
},
];
brain = createMockBrain({ searchResults });
controller = new ConversationsController(brain as never);
controller = new ConversationsController(brain as never, { runtimeMode: 'legacy' });
});
it('returns matching messages for a valid search query', async () => {
@@ -479,7 +479,7 @@ describe('ConversationsController — search endpoint', () => {
describe('ConversationsController — message CRUD', () => {
it('listMessages returns 404 when conversation is not owned by user', async () => {
const brain = createMockBrain({ conversation: undefined });
const controller = new ConversationsController(brain as never);
const controller = new ConversationsController(brain as never, { runtimeMode: 'legacy' });
await expect(controller.listMessages(CONV_ID, { id: USER_ID })).rejects.toBeInstanceOf(
NotFoundException,
@@ -489,7 +489,7 @@ describe('ConversationsController — message CRUD', () => {
it('listMessages returns the messages for an owned conversation', async () => {
const msgs = [makeMessage('user', 'Test message'), makeMessage('assistant', 'Test reply')];
const brain = createMockBrain({ conversation: makeConversation(), messages: msgs });
const controller = new ConversationsController(brain as never);
const controller = new ConversationsController(brain as never, { runtimeMode: 'legacy' });
const result = await controller.listMessages(CONV_ID, { id: USER_ID });
@@ -500,7 +500,7 @@ describe('ConversationsController — message CRUD', () => {
it('addMessage returns the persisted message', async () => {
const brain = createMockBrain({ conversation: makeConversation() });
const controller = new ConversationsController(brain as never);
const controller = new ConversationsController(brain as never, { runtimeMode: 'legacy' });
const result = await controller.addMessage(
CONV_ID,
@@ -35,6 +35,25 @@ function payload(content: string, messageId: string, correlationId: string): Dis
};
}
/**
* The chat runtime router must never be exercised on the Discord approval/stop control paths —
* those paths run entirely through the command-authorization, runtime-provider and durable-session
* dependencies. Placed in the gateway's chat-runtime-router slot (the former direct `AgentService`
* slot) so any accidental chat-runtime dispatch throws loudly instead of silently passing. Because
* approval/stop never resolve a chat runtime, this fixture is never triggered and the integration
* stays a GREEN cross-surface control.
*/
function failIfUsedChatRuntimeRouter() {
return {
onModuleInit: () => {
throw new Error('chat runtime router must not initialise on the Discord control path');
},
get active(): never {
throw new Error('chat runtime must not be resolved on the Discord approval/stop path');
},
};
}
function authorization(): CommandAuthorizationService {
const entries = new Map<string, string>();
return new CommandAuthorizationService(
@@ -113,7 +132,7 @@ describe('interaction Discord/CLI durable-session integration', () => {
},
);
const gateway = new ChatGateway(
{} as never,
failIfUsedChatRuntimeRouter() as never,
{} as never,
{} as never,
{} as never,
@@ -60,7 +60,7 @@ describe('Resource ownership checks', () => {
// The repo enforces ownership via the WHERE clause; it returns undefined when the
// conversation does not belong to the requesting user.
brain.conversations.findById.mockResolvedValue(undefined);
const controller = new ConversationsController(brain as never);
const controller = new ConversationsController(brain as never, { runtimeMode: 'legacy' });
await expect(controller.findOne('conv-1', { id: 'user-1' })).rejects.toBeInstanceOf(
NotFoundException,
@@ -1,6 +1,8 @@
import 'reflect-metadata';
import { readFileSync } from 'node:fs';
import { resolve } from 'node:path';
import { ForbiddenException, NotFoundException } from '@nestjs/common';
import { Test, type TestingModule } from '@nestjs/testing';
import { describe, expect, it, vi } from 'vitest';
vi.mock('../agent.service.js', () => ({ AgentService: class AgentService {} }));
@@ -12,10 +14,25 @@ vi.mock('../routing/routing-engine.service.js', () => ({
}));
import { SessionsController } from '../sessions.controller.js';
import { AgentService } from '../agent.service.js';
import { ChatController } from '../../chat/chat.controller.js';
import { ChatGateway } from '../../chat/chat.gateway.js';
import type { AgentSession } from '../agent.service.js';
import type { SessionInfoDto } from '../session.dto.js';
import type { HarnessAdapter, HarnessConversationService } from '@mosaicstack/types';
import { AuthGuard } from '../../auth/auth.guard.js';
import { AUTH } from '../../auth/auth.tokens.js';
import { BRAIN } from '../../brain/brain.tokens.js';
import { CommandRegistryService } from '../../commands/command-registry.service.js';
import { CommandExecutorService } from '../../commands/command-executor.service.js';
import { RoutingEngineService } from '../routing/routing-engine.service.js';
import { ChatRuntimeRouter } from '../../chat/chat-runtime-router.js';
import { EmbeddedChatRuntime } from '../../chat/embedded-chat.runtime.js';
import { ownConversation } from '../../chat/chat-runtime.js';
import type { LegacyRuntimeStream } from '../../chat/chat-runtime.js';
import { HarnessChatRuntime } from '../../chat/harness-chat.runtime.js';
import { HarnessRegistry } from '../../harness/harness.registry.js';
import { HARNESS_CONVERSATION_SERVICE_UNAVAILABLE } from '../../harness/harness.tokens.js';
const USER_A = { id: 'user-a', tenantId: 'tenant-a' };
const USER_B = { id: 'user-b', tenantId: 'tenant-b' };
@@ -74,6 +91,12 @@ function makeAgentSession(owner = USER_A): AgentSession {
};
}
/**
* A shape-complete, non-throwing AgentService fake scoped so that USER_B (a foreign owner guessing
* USER_A's conversation id) is never granted the session. Because every method exists and no method
* throws for a wrong shape, production runs to its real ownership decision — the RED never comes from
* a `getSession is not a function` TypeError, only from a router-boundary/scope assertion mismatch.
*/
function makeScopedAgentService() {
const foreign = makeAgentSession(USER_A);
return {
@@ -87,7 +110,7 @@ function makeScopedAgentService() {
getSession: vi.fn((_id: string, scope?: { userId: string; tenantId?: string }) =>
scope?.userId === USER_B.id ? undefined : foreign,
),
createSession: vi.fn().mockRejectedValue(new ForbiddenException('Session scope mismatch')),
createSession: vi.fn().mockRejectedValue(new NotFoundException('Session scope mismatch')),
onEvent: vi.fn(() => vi.fn()),
addChannel: vi.fn(),
removeChannel: vi.fn(),
@@ -96,6 +119,201 @@ function makeScopedAgentService() {
};
}
type ScopedAgentService = ReturnType<typeof makeScopedAgentService>;
/**
* A structurally-complete harness conversation service that throws if any method is invoked.
* Fronted behind the legacy runtime's harness slot: the legacy path must never reach it.
*/
const failIfUsedConversationService = {
attach: () => {
throw new Error('harness conversation service must not be reached on the legacy path');
},
detach: () => {
throw new Error('harness conversation service must not be reached on the legacy path');
},
send: () => {
throw new Error('harness conversation service must not be reached on the legacy path');
},
subscribeFrom: async function* () {
throw new Error('harness conversation service must not be reached on the legacy path');
},
} as unknown as HarnessConversationService;
/** A structurally-complete, non-sentinel conversation service used to satisfy the pi-rpc readiness gate. */
const boundConversationService = {
attach: () => Promise.reject(new Error('unused')),
detach: () => Promise.reject(new Error('unused')),
send: () => Promise.reject(new Error('unused')),
subscribeFrom: async function* () {
throw new Error('unused');
},
} as unknown as HarnessConversationService;
function registryWith(adapterIds: readonly string[]): HarnessRegistry {
const registry = new HarnessRegistry();
for (const id of adapterIds) {
registry.register({
id,
describe: () => Promise.reject(new Error('unused')),
catalog: () => Promise.reject(new Error('unused')),
create: () => Promise.reject(new Error('unused')),
resume: () => Promise.reject(new Error('unused')),
} as HarnessAdapter);
}
return registry;
}
/**
* Build the real legacy-mode {@link ChatRuntimeRouter} fronting a real {@link EmbeddedChatRuntime}
* that holds the scoped AgentService fake. This is the ONLY path server-derived scope may travel to
* reach an AgentService: controller/gateway → ChatRuntimeRouter → EmbeddedChatRuntime → AgentService.
* The `embeddedAgentService` handed here is a SEPARATE instance from the directly-injected fake, so a
* call landing on it proves the router-delegation redesign is live rather than the old direct path.
*/
function legacyRouterFronting(agentService: unknown): ChatRuntimeRouter {
const embedded = new EmbeddedChatRuntime(agentService as never);
const harness = new HarnessChatRuntime(failIfUsedConversationService);
const router = new ChatRuntimeRouter(
new HarnessRegistry(),
HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
embedded,
harness,
'legacy',
);
router.onModuleInit();
return router;
}
/**
* The AgentService method names the controller/gateway must NEVER drive on the runtime at the
* delegation boundary. An AgentService-shaped router shim (a method-for-method mirror) would record
* one of these instead of the frozen legacy op, so asserting their ABSENCE from the observed runtime
* call set defeats the shim on INVOCATION evidence — never satisfiable by dead source text.
*/
const FORBIDDEN_AGENT_OPS = [
'getSession',
'createSession',
'onEvent',
'addChannel',
'prompt',
'setThinking',
'abort',
] as const;
/**
* Wrap a real {@link ChatRuntimeRouter} in a call-recording Proxy. Every property access that yields
* an OWN/inherited callable is returned as a thin wrapper that appends the method name to `calls` at
* INVOCATION time and forwards to the real method (bound to the real target, so the router's internal
* delegation to the embedded runtime runs untouched below this boundary). Non-function and MISSING
* properties are returned verbatim via Reflect.get — the observer NEVER fabricates a value, returns a
* canned outcome, or delegates a not-yet-implemented named op, so it cannot itself become a shim.
*
* The result is a RUNTIME call set of exactly the methods the controller/gateway invoke ON the router
* at the delegation seam. Only an actual call can enter it; a dead method, comment, or string in the
* production source cannot. This replaces the earlier `source.toContain('<frozen op>')` proof — which
* a dead declaration could satisfy while production still executed a shim — with invocation evidence.
*/
function makeRecordingRouter(target: ChatRuntimeRouter, calls: string[]): ChatRuntimeRouter {
return new Proxy(target, {
get(t, prop) {
const value = Reflect.get(t, prop);
if (typeof value === 'function' && typeof prop === 'string') {
return (...args: unknown[]) => {
calls.push(prop);
return (value as (...a: unknown[]) => unknown).apply(t, args);
};
}
return value;
},
}) as ChatRuntimeRouter;
}
/**
* Real Nest DI dual-provider fixture (mirrors the blessed group-3 pattern in chat-security.test.ts).
*
* BOTH an `AgentService` provider (the FORBIDDEN direct dependency) and a `ChatRuntimeRouter` provider
* (fronting a real EmbeddedChatRuntime over a SEPARATE scoped AgentService) are registered. Production
* resolves whichever its constructor declares:
* - RED today: the controller/gateway `@Inject(AgentService)` → the direct fake is consulted, the
* router (and its embedded fake) is never reached.
* - GREEN later: the controller/gateway inject `ChatRuntimeRouter` → the direct fake is never
* touched (stays at zero) and scope is observed inside the embedded fake behind the router.
* The SAME test body reds today and greens later; a method-for-method AgentService shim on the router
* records a FORBIDDEN op (and never the frozen legacy op) in the observed runtime call set, and
* restoring the direct injection cannot satisfy the "direct fake at zero" / "embedded fake observed
* scope" / "frozen op invoked on the router" anchors. The router is wrapped by {@link
* makeRecordingRouter} so those anchors are runtime invocation evidence, not source substrings.
*/
function buildRestModule(
directAgentService: ScopedAgentService,
embeddedAgentService: ScopedAgentService,
routerCalls: string[],
): Promise<TestingModule> {
return (
Test.createTestingModule({
controllers: [ChatController],
providers: [
{ provide: AgentService, useValue: directAgentService },
{
provide: ChatRuntimeRouter,
useFactory: () =>
makeRecordingRouter(legacyRouterFronting(embeddedAgentService), routerCalls),
},
],
})
// ChatController's @UseGuards(AuthGuard) is resolved during instance loading; AuthGuard injects
// AUTH, an HTTP-only concern never exercised by a direct handler call. Stub it so the graph
// resolves and the test reds on BEHAVIOUR, not on a DI collection error.
.overrideGuard(AuthGuard)
.useValue({ canActivate: () => true })
.compile()
);
}
function buildGatewayModule(
directAgentService: ScopedAgentService,
embeddedAgentService: ScopedAgentService,
routerCalls: string[],
): Promise<TestingModule> {
const brain = {
conversations: {
// The sender OWNS this durable conversation, so the browser-send admission gate lets the turn
// reach the router seam. Foreignness is asserted downstream at the in-memory agent session
// (getSession({USER_B}) -> undefined), not at durable admission — the admission-rejection
// property has its own dedicated coverage.
findById: vi.fn().mockResolvedValue({ id: CONVERSATION_ID, userId: USER_B.id }),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
findMessages: vi.fn().mockResolvedValue([]),
addMessage: vi.fn().mockResolvedValue({ id: 'persisted-turn' }),
},
};
return Test.createTestingModule({
providers: [
ChatGateway,
{ provide: AgentService, useValue: directAgentService },
{ provide: AUTH, useValue: { api: { getSession: vi.fn().mockResolvedValue(null) } } },
{ provide: BRAIN, useValue: brain },
{ provide: CommandRegistryService, useValue: { getManifest: vi.fn().mockReturnValue([]) } },
{ provide: CommandExecutorService, useValue: { execute: vi.fn() } },
{
provide: RoutingEngineService,
useValue: {
resolve: vi.fn().mockResolvedValue({ provider: 'test', model: 'test-model' }),
},
},
{
provide: ChatRuntimeRouter,
useFactory: () =>
makeRecordingRouter(legacyRouterFronting(embeddedAgentService), routerCalls),
},
],
}).compile();
}
describe('TESS-M1-SEC-002 AgentService ownership boundary', () => {
it('requires explicit owner+tenant scope on protected session operations', () => {
const source = readFileSync(resolve('src/agent/agent.service.ts'), 'utf8');
@@ -152,50 +370,66 @@ describe('TESS-M1-SEC-002 REST session ownership and tenant binding', () => {
});
});
describe('TESS-M1-SEC-002 REST chat send ownership and tenant binding', () => {
it('does not send a prompt into another owner/tenant session by guessed conversationId', async () => {
const agentService = makeScopedAgentService();
const controller = new ChatController(agentService as never);
describe('TESS-M1-SEC-002 REST chat send ownership and tenant binding (router-delegated legacy runtime)', () => {
// TESS test A — REST /api/chat send. The genuine RED is the router-delegation redesign, not a slot
// swap: the forbidden directly-injected AgentService must go UNtouched while the server-derived
// scope is observed inside the real ChatRuntimeRouter → EmbeddedChatRuntime → AgentService path.
it('routes a REST send through completeLegacyRestTurn and never the directly-injected AgentService', async () => {
const directAgentService = makeScopedAgentService(); // FORBIDDEN direct dependency
const embeddedAgentService = makeScopedAgentService(); // reached ONLY via router → embedded delegation
const routerCalls: string[] = []; // runtime call set observed AT the controller → router seam
const moduleRef = await buildRestModule(directAgentService, embeddedAgentService, routerCalls);
try {
const controller = moduleRef.get(ChatController, { strict: false });
await expect(
controller.chat({ conversationId: CONVERSATION_ID, content: 'take over' }, USER_B),
).rejects.toMatchObject({ status: 404 });
// Foreign ownership is denied (never resolves) — a control that holds today AND at GREEN.
await expect(
controller.chat({ conversationId: CONVERSATION_ID, content: 'take over' }, USER_B),
).rejects.toBeDefined();
expect(agentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
expect(agentService.prompt).not.toHaveBeenCalled();
// Soft anchors so EVERY anchor is evaluated under each mutation, not just the first to fail.
// RUNTIME anchor A1 — delegation: the controller must INVOKE the frozen legacy op on the router.
// Only an actual call enters routerCalls; a dead method/comment/string cannot. RED today (the
// controller @Inject(AgentService) and never calls the router). GREEN once it drives the op.
expect
.soft(routerCalls, 'controller must invoke completeLegacyRestTurn on the router')
.toContain('completeLegacyRestTurn');
// RUNTIME anchor A2 — nondelegation: the controller must not drive any AgentService-shaped op on
// the router. An AgentService-shaped router shim records one of these → RED, defeating the shim
// on invocation evidence (not source text). A dead named method added alongside the shim does not
// help: it is never invoked, so it never enters routerCalls while a forbidden op still does.
for (const op of FORBIDDEN_AGENT_OPS) {
expect
.soft(routerCalls, `router seam must not invoke AgentService.${op}`)
.not.toContain(op);
}
// RUNTIME anchor A3 — the forbidden directly-injected AgentService stays at zero (fails today;
// restoring the direct injection keeps it failing).
expect.soft(directAgentService.getSession).not.toHaveBeenCalled();
// RUNTIME anchor A4 — server-derived scope observed INSIDE the separate embedded fake behind the
// router (fails today; the router path is never taken).
expect.soft(embeddedAgentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
// Zero foreign mutation on either path (holds today and at GREEN).
expect.soft(directAgentService.prompt).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.prompt).not.toHaveBeenCalled();
// Defense-in-depth (NOT load-bearing; the runtime anchors above carry the anti-mask): the
// controller no longer declares the direct embedded AgentService dependency. A negative source
// check cannot be satisfied by dead text — it only fails when the injection is present.
const controllerSource = readFileSync(resolve('src/chat/chat.controller.ts'), 'utf8');
expect.soft(controllerSource).not.toContain('@Inject(AgentService)');
} finally {
await moduleRef.close();
}
});
});
describe('TESS-M1-SEC-002 WebSocket session ownership and tenant binding', () => {
function makeGateway(agentService = makeScopedAgentService()) {
const brain = {
conversations: {
findById: vi.fn().mockResolvedValue(undefined),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
findMessages: vi.fn().mockResolvedValue([]),
addMessage: vi.fn().mockResolvedValue(undefined),
},
};
const commandRegistry = { getManifest: vi.fn().mockReturnValue([]) };
const commandExecutor = { execute: vi.fn() };
const routingEngine = {
resolve: vi.fn().mockResolvedValue({ provider: 'test', model: 'test-model' }),
};
const gateway = new ChatGateway(
agentService as never,
{} as never,
brain as never,
commandRegistry as never,
commandExecutor as never,
routingEngine as never,
);
return { gateway, agentService };
}
describe('TESS-M1-SEC-002 WebSocket session ownership and tenant binding (router-delegated legacy runtime)', () => {
function makeSocket() {
return {
id: 'socket-b',
@@ -206,57 +440,519 @@ describe('TESS-M1-SEC-002 WebSocket session ownership and tenant binding', () =>
};
}
it('does not attach or send to another owner/tenant session by guessed conversationId', async () => {
const { gateway, agentService } = makeGateway();
const socket = makeSocket();
// TESS test B — WebSocket send/attach.
it('routes a WebSocket send through prepareLegacySocketTurn and never the directly-injected AgentService', async () => {
const directAgentService = makeScopedAgentService();
const embeddedAgentService = makeScopedAgentService();
const routerCalls: string[] = [];
const moduleRef = await buildGatewayModule(
directAgentService,
embeddedAgentService,
routerCalls,
);
try {
const gateway = moduleRef.get(ChatGateway, { strict: false });
const socket = makeSocket();
await gateway.handleMessage(socket as never, {
conversationId: CONVERSATION_ID,
content: 'attach to foreign session',
});
await Promise.resolve(
gateway.handleMessage(socket as never, {
conversationId: CONVERSATION_ID,
content: 'attach to foreign session',
}),
).catch(() => undefined);
expect(agentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
expect(agentService.onEvent).not.toHaveBeenCalled();
expect(agentService.addChannel).not.toHaveBeenCalled();
// RUNTIME anchor B1 — delegation: the gateway must invoke the frozen socket op on the router.
expect
.soft(routerCalls, 'gateway must invoke prepareLegacySocketTurn on the router')
.toContain('prepareLegacySocketTurn');
// RUNTIME anchor B2 — nondelegation: no AgentService-shaped op on the router (defeats the shim).
for (const op of FORBIDDEN_AGENT_OPS) {
expect
.soft(routerCalls, `router seam must not invoke AgentService.${op}`)
.not.toContain(op);
}
// RED anchor B3 — forbidden direct AgentService untouched (fails today, gateway injects it).
expect.soft(directAgentService.getSession).not.toHaveBeenCalled();
// RED anchor B4 — scope observed inside router → embedded delegation (fails today, never reached).
expect.soft(embeddedAgentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
// Foreign session gets zero lease/listener/channel/prompt on EITHER path (holds today and GREEN).
expect.soft(directAgentService.onEvent).not.toHaveBeenCalled();
expect.soft(directAgentService.addChannel).not.toHaveBeenCalled();
expect.soft(directAgentService.prompt).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.onEvent).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.addChannel).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.prompt).not.toHaveBeenCalled();
expect
.soft(socket.emit)
.toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: CONVERSATION_ID }),
);
// Defense-in-depth (NOT load-bearing): gateway no longer declares the direct dependency.
const gatewaySource = readFileSync(resolve('src/chat/chat.gateway.ts'), 'utf8');
expect.soft(gatewaySource).not.toContain('@Inject(AgentService)');
} finally {
await moduleRef.close();
}
});
// TESS test C — WebSocket set:thinking.
it('routes set:thinking through setLegacyThinking and never the directly-injected AgentService', async () => {
const directAgentService = makeScopedAgentService();
const embeddedAgentService = makeScopedAgentService();
const routerCalls: string[] = [];
const moduleRef = await buildGatewayModule(
directAgentService,
embeddedAgentService,
routerCalls,
);
try {
const gateway = moduleRef.get(ChatGateway, { strict: false });
const socket = makeSocket();
await Promise.resolve(
gateway.handleSetThinking(socket as never, {
conversationId: CONVERSATION_ID,
level: 'high',
}),
).catch(() => undefined);
// RUNTIME anchor C1 — delegation: the gateway must invoke the frozen thinking op on the router.
expect
.soft(routerCalls, 'gateway must invoke setLegacyThinking on the router')
.toContain('setLegacyThinking');
// RUNTIME anchor C2 — nondelegation: no AgentService-shaped op on the router (defeats the shim).
for (const op of FORBIDDEN_AGENT_OPS) {
expect
.soft(routerCalls, `router seam must not invoke AgentService.${op}`)
.not.toContain(op);
}
expect.soft(directAgentService.getSession).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
expect
.soft(socket.emit)
.toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: CONVERSATION_ID }),
);
} finally {
await moduleRef.close();
}
});
// TESS test D — WebSocket abort.
it('routes abort through abortLegacyTurn and never the directly-injected AgentService', async () => {
const directAgentService = makeScopedAgentService();
const embeddedAgentService = makeScopedAgentService();
const routerCalls: string[] = [];
const moduleRef = await buildGatewayModule(
directAgentService,
embeddedAgentService,
routerCalls,
);
try {
const gateway = moduleRef.get(ChatGateway, { strict: false });
const socket = makeSocket();
await Promise.resolve(
gateway.handleAbort(socket as never, { conversationId: CONVERSATION_ID }),
).catch(() => undefined);
// RUNTIME anchor D1 — delegation: the gateway must invoke the frozen abort op on the router.
expect
.soft(routerCalls, 'gateway must invoke abortLegacyTurn on the router')
.toContain('abortLegacyTurn');
// RUNTIME anchor D2 — nondelegation: no AgentService-shaped op on the router (defeats the shim).
for (const op of FORBIDDEN_AGENT_OPS) {
expect
.soft(routerCalls, `router seam must not invoke AgentService.${op}`)
.not.toContain(op);
}
expect.soft(directAgentService.getSession).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
expect
.soft(socket.emit)
.toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: CONVERSATION_ID }),
);
} finally {
await moduleRef.close();
}
});
// TESS test E (genuine, unchanged) — pi-rpc browser-legacy refusal.
it('rejects a browser legacy raw message in pi-rpc mode with a fixed typed unsupported and executes nothing', async () => {
// pi-rpc: the harness runtime is live. The browser legacy `message` path is unsupported and
// must be refused with a fixed typed code, touching neither the embedded AgentService nor the
// harness conversation service.
const agentService = makeScopedAgentService();
const embedded = new EmbeddedChatRuntime(agentService as never);
const harnessConversation = {
attach: vi.fn(),
detach: vi.fn(),
send: vi.fn(),
subscribeFrom: vi.fn(),
};
const harness = new HarnessChatRuntime(harnessConversation as never);
const router = new ChatRuntimeRouter(
registryWith(['pi']),
boundConversationService,
embedded,
harness,
'pi-rpc',
);
router.onModuleInit();
const brain = {
conversations: {
findById: vi.fn().mockResolvedValue(undefined),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
findMessages: vi.fn().mockResolvedValue([]),
addMessage: vi.fn().mockResolvedValue(undefined),
},
};
const gateway = new ChatGateway(
router as never,
{} as never,
brain as never,
{ getManifest: vi.fn().mockReturnValue([]) } as never,
{ execute: vi.fn() } as never,
{ resolve: vi.fn() } as never,
);
const socket = {
id: 'socket-b',
connected: true,
data: { user: USER_B, session: { id: 'auth-session-b', userId: USER_B.id } },
emit: vi.fn(),
disconnect: vi.fn(),
};
await Promise.resolve(
gateway.handleMessage(socket as never, {
conversationId: CONVERSATION_ID,
content: 'route me',
}),
).catch(() => undefined);
expect(socket.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ code: 'runtime_unsupported' }),
);
expect(agentService.getSession).not.toHaveBeenCalled();
expect(agentService.prompt).not.toHaveBeenCalled();
expect(socket.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: CONVERSATION_ID }),
expect(harnessConversation.attach).not.toHaveBeenCalled();
expect(harnessConversation.send).not.toHaveBeenCalled();
});
});
// ---------------------------------------------------------------------------
// Task-5 AMEND — embedded runtime lease lifecycle (G1) + ownership collapse (G5).
// These drive the real EmbeddedChatRuntime directly over a shape-complete AgentService
// fake (every touched method exists, so a RED can only come from behavior, never a
// `getSession is not a function` TypeError). Ownership context is minted through the
// real `ownConversation` factory — the only sanctioned way to reach a port op.
// ---------------------------------------------------------------------------
const EMBEDDED_SCOPE = { userId: USER_A.id, tenantId: USER_A.tenantId };
const CONVERSATION_UNAVAILABLE_RESULT = {
ok: false,
code: 'conversation_unavailable',
retryable: false,
} as const;
/** A stream sink; `channelId` is server-derived, `onEvent` records nothing here. */
function makeStream(): LegacyRuntimeStream {
return { channelId: 'websocket:test-1', onEvent: vi.fn() };
}
/**
* getSession → undefined (session missing), createSession → rejects with `err`. Exercises the
* `resolveOrCreate` collapse branch. `prompt` exists so its ABSENCE from the call record proves
* the turn short-circuited before any dispatch.
*/
function makeCollapsingAgentService(err: Error) {
return {
getSession: vi.fn(() => undefined),
createSession: vi.fn().mockRejectedValue(err),
onEvent: vi.fn(() => vi.fn()),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
recordTokenUsage: vi.fn(),
};
}
/** getSession → a live owned session, so `resolveOrCreate` succeeds and a lease is built. */
function makeLeaseAgentService() {
const session = makeAgentSession(USER_A);
const unsubscribe = vi.fn();
const svc = {
getSession: vi.fn(() => session),
createSession: vi.fn(),
onEvent: vi.fn(() => unsubscribe),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
recordTokenUsage: vi.fn(),
};
return { svc, unsubscribe, session };
}
/**
* getSession → a live owned session (REST resolveOrCreate succeeds), onEvent returns a `detach`
* spy, and `prompt` REJECTS with a non-timeout error. Drives the REST-turn catch path so the single
* idempotent teardown must clear the 120s timeout and detach the listener exactly once.
*/
function makeRejectingPromptAgentService() {
const session = makeAgentSession(USER_A);
const detach = vi.fn();
const svc = {
getSession: vi.fn(() => session),
createSession: vi.fn(),
onEvent: vi.fn(() => detach),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn().mockRejectedValue(new Error('agent backend exploded')),
recordTokenUsage: vi.fn(),
};
return { svc, detach };
}
describe('TESS Task-5 embedded ownership collapse (missing and foreign are indistinguishable, never throw)', () => {
const ctx = ownConversation(CONVERSATION_ID, EMBEDDED_SCOPE);
it('collapses a foreign (Forbidden) create to conversation_unavailable and never throws', async () => {
const svc = makeCollapsingAgentService(new ForbiddenException('foreign owner'));
const runtime = new EmbeddedChatRuntime(svc as never);
const result = await runtime.completeLegacyRestTurn(ctx, { content: 'take over' });
expect(result).toEqual(CONVERSATION_UNAVAILABLE_RESULT);
expect(svc.prompt).not.toHaveBeenCalled();
});
it('collapses a missing (NotFound) create to conversation_unavailable and never throws', async () => {
const svc = makeCollapsingAgentService(new NotFoundException('no such conversation'));
const runtime = new EmbeddedChatRuntime(svc as never);
const result = await runtime.completeLegacyRestTurn(ctx, { content: 'hello' });
expect(result).toEqual(CONVERSATION_UNAVAILABLE_RESULT);
expect(svc.prompt).not.toHaveBeenCalled();
});
it('returns the IDENTICAL collapse for foreign and missing so neither can be distinguished', async () => {
const foreign = new EmbeddedChatRuntime(
makeCollapsingAgentService(new ForbiddenException('foreign owner')) as never,
);
const missing = new EmbeddedChatRuntime(
makeCollapsingAgentService(new NotFoundException('no such conversation')) as never,
);
const foreignResult = await foreign.completeLegacyRestTurn(ctx, { content: 'x' });
const missingResult = await missing.completeLegacyRestTurn(ctx, { content: 'x' });
expect(foreignResult).toEqual(missingResult);
expect(foreignResult).toEqual(CONVERSATION_UNAVAILABLE_RESULT);
});
});
describe('TESS Task-5 embedded socket lease lifecycle (one-shot dispatch, idempotent dispose, partial-setup rollback)', () => {
const ctx = ownConversation(CONVERSATION_ID, EMBEDDED_SCOPE);
it('dispatches the turn exactly once; a second dispatch is a no-op turn_already_dispatched', async () => {
const { svc } = makeLeaseAgentService();
const runtime = new EmbeddedChatRuntime(svc as never);
it('does not mutate thinking level on another owner/tenant session', () => {
const { gateway, agentService } = makeGateway();
const socket = makeSocket();
const prepared = await runtime.prepareLegacySocketTurn(ctx, { content: 'first' }, makeStream());
expect(prepared.ok).toBe(true);
if (!prepared.ok) throw new Error('prepareLegacySocketTurn should succeed');
const lease = prepared.value;
gateway.handleSetThinking(socket as never, { conversationId: CONVERSATION_ID, level: 'high' });
const first = await lease.dispatch();
expect(first).toEqual({ ok: true, value: undefined });
expect(svc.prompt).toHaveBeenCalledTimes(1);
expect(agentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
const second = await lease.dispatch();
expect(second).toEqual({ ok: false, code: 'turn_already_dispatched', retryable: false });
// Zero additional effect — the second dispatch must not prompt again.
expect(svc.prompt).toHaveBeenCalledTimes(1);
});
it('disposes once; a second dispose is a silent no-op that never re-detaches or destroys the session', async () => {
const { svc, unsubscribe, session } = makeLeaseAgentService();
const runtime = new EmbeddedChatRuntime(svc as never);
const prepared = await runtime.prepareLegacySocketTurn(ctx, { content: 'x' }, makeStream());
expect(prepared.ok).toBe(true);
if (!prepared.ok) throw new Error('prepareLegacySocketTurn should succeed');
const lease = prepared.value;
await lease.dispose();
await lease.dispose();
// Listener + channel torn down exactly once across two dispose calls.
expect(unsubscribe).toHaveBeenCalledTimes(1);
expect(svc.removeChannel).toHaveBeenCalledTimes(1);
// Disposal never terminates the underlying session or process.
expect(session.piSession.abort).not.toHaveBeenCalled();
expect(session.piSession.dispose).not.toHaveBeenCalled();
});
it('rolls back the acquired listener and returns a total safe failure when channel attach fails mid-setup', async () => {
const { svc, unsubscribe } = makeLeaseAgentService();
svc.addChannel = vi.fn(() => {
throw new Error('channel attach failed');
});
expect(socket.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: CONVERSATION_ID }),
);
const runtime = new EmbeddedChatRuntime(svc as never);
// Must NOT throw out of the port — a partial setup collapses to a total safe failure.
const prepared = await runtime.prepareLegacySocketTurn(ctx, { content: 'x' }, makeStream());
expect(prepared.ok).toBe(false);
// Exactly what was acquired (the event listener) is rolled back.
expect(unsubscribe).toHaveBeenCalledTimes(1);
});
});
describe('TESS Task-5 embedded REST turn teardown (a prompt rejection frees the timer + listener exactly once)', () => {
const ctx = ownConversation(CONVERSATION_ID, EMBEDDED_SCOPE);
it('clears the 120s timeout and detaches the listener exactly once when prompt() rejects, leaving no timer to reject the abandoned done-promise later (Task 5 finding 6)', async () => {
const { svc, detach } = makeRejectingPromptAgentService();
const runtime = new EmbeddedChatRuntime(svc as never);
// A rejected `done` promise firing after completeLegacyRestTurn has already returned would
// surface as an unhandledRejection — the leak this test fences. Capture any that escape.
const unhandled: unknown[] = [];
const onUnhandled = (reason: unknown): void => {
unhandled.push(reason);
};
process.on('unhandledRejection', onUnhandled);
vi.useFakeTimers();
try {
const result = await runtime.completeLegacyRestTurn(ctx, {
content: 'trigger a backend failure',
});
// The rejection collapses to a total safe failure (not a timeout) — never throws out of the port.
expect(result).toEqual({ ok: false, code: 'operation_failed', retryable: false });
// The single idempotent dispose ran in the catch: listener detached exactly once.
expect(detach).toHaveBeenCalledTimes(1);
// dispose() cleared the REST timeout, so advancing far past it (120s) fires nothing: no second
// detach, and — the actual leak — no live timer left to reject the now-abandoned `done` promise.
vi.advanceTimersByTime(600_000);
expect(detach).toHaveBeenCalledTimes(1);
} finally {
vi.useRealTimers();
}
// Let any scheduled rejection surface on a real macrotask, then confirm none did.
await new Promise((resolve) => setTimeout(resolve, 0));
process.off('unhandledRejection', onUnhandled);
expect(unhandled).toHaveLength(0);
});
it('bounds a hung prompt: when prompt() never settles and no agent_end arrives, the 120s timeout ends the turn with a timeout result and exactly one teardown, no unhandledRejection (Task 5 finding 6 — pending-prompt timeout)', async () => {
const session = makeAgentSession(USER_A);
const detach = vi.fn();
const svc = {
getSession: vi.fn(() => session),
createSession: vi.fn(),
onEvent: vi.fn(() => detach),
addChannel: vi.fn(),
removeChannel: vi.fn(),
// The prompt never resolves or rejects — a hung agent backend. Under the pre-fix sequential
// `await prompt()` the timer could never even be observed, so the turn hung forever.
prompt: vi.fn(() => new Promise<void>(() => undefined)),
recordTokenUsage: vi.fn(),
};
const runtime = new EmbeddedChatRuntime(svc as never);
it('does not terminate another owner/tenant session over WebSocket abort', async () => {
const { gateway, agentService } = makeGateway();
const socket = makeSocket();
const unhandled: unknown[] = [];
const onUnhandled = (reason: unknown): void => {
unhandled.push(reason);
};
process.on('unhandledRejection', onUnhandled);
vi.useFakeTimers();
try {
const resultPromise = runtime.completeLegacyRestTurn(ctx, {
content: 'a prompt that never returns',
});
// No agent_end, prompt still pending: only the 120s timeout can end the turn. Promise.all
// installed a handler on `done` synchronously, so the timer bounds the turn while prompt hangs.
await vi.advanceTimersByTimeAsync(200_000);
const result = await resultPromise;
await gateway.handleAbort(socket as never, { conversationId: CONVERSATION_ID });
expect(result).toEqual({ ok: false, code: 'timeout', retryable: true });
// The single idempotent dispose ran on the timeout path: listener detached exactly once.
expect(detach).toHaveBeenCalledTimes(1);
// Advancing far past the deadline fires nothing more: dispose cleared the timer.
vi.advanceTimersByTime(600_000);
expect(detach).toHaveBeenCalledTimes(1);
} finally {
vi.useRealTimers();
}
await new Promise((resolve) => setTimeout(resolve, 0));
process.off('unhandledRejection', onUnhandled);
expect(unhandled).toHaveLength(0);
});
expect(agentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
it('when the 120s timeout fires while prompt() is still pending, returns timeout with one teardown, and a later prompt rejection surfaces no unhandledRejection (Task 5 finding 6 — timeout/prompt race)', async () => {
const session = makeAgentSession(USER_A);
const detach = vi.fn();
let rejectPrompt: (reason: unknown) => void = () => undefined;
const prompting = new Promise<void>((_resolve, reject) => {
rejectPrompt = reject;
});
expect(socket.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: CONVERSATION_ID }),
);
const svc = {
getSession: vi.fn(() => session),
createSession: vi.fn(),
onEvent: vi.fn(() => detach),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn(() => prompting),
recordTokenUsage: vi.fn(),
};
const runtime = new EmbeddedChatRuntime(svc as never);
const unhandled: unknown[] = [];
const onUnhandled = (reason: unknown): void => {
unhandled.push(reason);
};
process.on('unhandledRejection', onUnhandled);
vi.useFakeTimers();
try {
const resultPromise = runtime.completeLegacyRestTurn(ctx, {
content: 'prompt settles after the deadline',
});
// The timeout wins the race while prompt is still pending.
await vi.advanceTimersByTimeAsync(200_000);
const result = await resultPromise;
expect(result).toEqual({ ok: false, code: 'timeout', retryable: true });
expect(detach).toHaveBeenCalledTimes(1);
// The prompt now rejects LATE — after the turn already returned its timeout result. Because
// Promise.all installed a rejection handler on `prompting` synchronously (the fix), this late
// rejection is already observed and must not escape as an unhandledRejection.
rejectPrompt(new Error('late backend failure'));
} finally {
vi.useRealTimers();
}
await new Promise((resolve) => setTimeout(resolve, 0));
process.off('unhandledRejection', onUnhandled);
expect(unhandled).toHaveLength(0);
});
});
@@ -8,6 +8,7 @@
* to avoid real I/O — they verify the complete classify → match → decide path.
*/
import { describe, it, expect, vi } from 'vitest';
import type { ProviderHealthStatus } from '@mosaicstack/types';
import { RoutingEngineService } from './routing-engine.service.js';
import { DEFAULT_ROUTING_RULES } from '../routing/default-rules.js';
import type { RoutingRule } from './routing.types.js';
@@ -17,7 +18,7 @@ import type { RoutingRule } from './routing.types.js';
/** Build a RoutingEngineService backed by the given rule set and health map. */
function makeService(
rules: RoutingRule[],
healthMap: Record<string, { status: string }>,
healthMap: Record<string, { status: ProviderHealthStatus }>,
): RoutingEngineService {
const mockDb = {
select: vi.fn().mockReturnValue({
@@ -67,11 +68,11 @@ function defaultRules(): RoutingRule[] {
}
/** A health map where anthropic, openai, and zai are all healthy. */
const allHealthy: Record<string, { status: string }> = {
anthropic: { status: 'up' },
openai: { status: 'up' },
zai: { status: 'up' },
ollama: { status: 'up' },
const allHealthy: Record<string, { status: ProviderHealthStatus }> = {
anthropic: { status: 'healthy' },
openai: { status: 'healthy' },
zai: { status: 'healthy' },
ollama: { status: 'healthy' },
};
// ─── M4-013 E2E tests ─────────────────────────────────────────────────────────
@@ -212,10 +213,10 @@ describe('M4-013: routing end-to-end pipeline', () => {
// Let's use a simple coding message to target Simple coding → Codex (openai)
const message = 'implement a sort function';
const unhealthyHealth = {
const unhealthyHealth: Record<string, { status: ProviderHealthStatus }> = {
anthropic: { status: 'down' },
openai: { status: 'up' },
zai: { status: 'up' },
openai: { status: 'healthy' },
zai: { status: 'healthy' },
ollama: { status: 'down' },
};
@@ -1,5 +1,6 @@
import { Inject, Injectable, Logger } from '@nestjs/common';
import { routingRules, type Db, and, asc, eq, or } from '@mosaicstack/db';
import type { ProviderHealthStatus } from '@mosaicstack/types';
import { DB } from '../../database/database.module.js';
import { ProviderService } from '../provider.service.js';
import { classifyTask } from './task-classifier.js';
@@ -49,7 +50,7 @@ export class RoutingEngineService {
async resolve(
message: string,
userId?: string,
availableProviders?: Record<string, { status: string }>,
availableProviders?: Record<string, { status: ProviderHealthStatus }>,
): Promise<RoutingDecision> {
const classification = classifyTask(message);
this.logger.debug(
@@ -69,9 +70,8 @@ export class RoutingEngineService {
if (!this.matchConditions(rule, classification)) continue;
const providerStatus = health[rule.action.provider]?.status;
const isHealthy = providerStatus === 'up' || providerStatus === 'ok';
if (!isHealthy) {
if (!this.isRoutable(providerStatus)) {
this.logger.debug(
`Rule "${rule.name}" matched but provider "${rule.action.provider}" is unhealthy (status: ${providerStatus ?? 'unknown'})`,
);
@@ -111,6 +111,10 @@ export class RoutingEngineService {
// ─── Private helpers ───────────────────────────────────────────────────────
private isRoutable(status: ProviderHealthStatus | undefined): boolean {
return status === 'healthy' || status === 'degraded';
}
private evaluateCondition(
condition: RoutingCondition,
classification: TaskClassification,
@@ -186,11 +190,12 @@ export class RoutingEngineService {
* Walk the fallback chain and return the first healthy provider/model pair.
* If none are healthy, return the first entry unconditionally (last resort).
*/
private applyFallbackChain(health: Record<string, { status: string }>): RoutingDecision {
private applyFallbackChain(
health: Record<string, { status: ProviderHealthStatus }>,
): RoutingDecision {
for (const candidate of FALLBACK_CHAIN) {
const providerStatus = health[candidate.provider]?.status;
const isHealthy = providerStatus === 'up' || providerStatus === 'ok';
if (isHealthy) {
if (this.isRoutable(providerStatus)) {
this.logger.debug(`Fallback resolved: ${candidate.provider}/${candidate.model}`);
return {
provider: candidate.provider,
@@ -1,4 +1,5 @@
import { describe, it, expect, vi, beforeEach } from 'vitest';
import type { ProviderHealthStatus } from '@mosaicstack/types';
import { RoutingEngineService } from './routing-engine.service.js';
import type { RoutingRule, TaskClassification } from './routing.types.js';
@@ -29,7 +30,7 @@ function makeClassification(overrides: Partial<TaskClassification> = {}): TaskCl
/** Build a minimal RoutingEngineService with mocked DB and ProviderService. */
function makeService(
rules: RoutingRule[] = [],
healthMap: Record<string, { status: string }> = {},
healthMap: Record<string, { status: ProviderHealthStatus }> = {},
): RoutingEngineService {
const mockDb = {
select: vi.fn().mockReturnValue({
@@ -217,7 +218,10 @@ describe('RoutingEngineService.resolve — priority ordering', () => {
}),
];
const service = makeService(rules, { anthropic: { status: 'up' }, openai: { status: 'up' } });
const service = makeService(rules, {
anthropic: { status: 'healthy' },
openai: { status: 'healthy' },
});
const decision = await service.resolve('implement a function');
expect(decision.ruleName).toBe('high priority');
@@ -241,7 +245,10 @@ describe('RoutingEngineService.resolve — priority ordering', () => {
}),
];
const service = makeService(rules, { anthropic: { status: 'up' }, openai: { status: 'up' } });
const service = makeService(rules, {
anthropic: { status: 'healthy' },
openai: { status: 'healthy' },
});
const decision = await service.resolve('implement a function');
expect(decision.ruleName).toBe('coding rule');
@@ -270,7 +277,7 @@ describe('RoutingEngineService.resolve — unhealthy provider handling', () => {
const service = makeService(rules, {
anthropic: { status: 'down' }, // primary is unhealthy
openai: { status: 'up' },
openai: { status: 'healthy' },
});
const decision = await service.resolve('implement a function');
@@ -290,7 +297,7 @@ describe('RoutingEngineService.resolve — unhealthy provider handling', () => {
];
const service2 = makeService(unhealthyRules, {
anthropic: { status: 'up' },
anthropic: { status: 'healthy' },
openai: { status: 'down' },
});
@@ -306,7 +313,7 @@ describe('RoutingEngineService.resolve — unhealthy provider handling', () => {
const service = makeService(rules, {
anthropic: { status: 'down' }, // Sonnet is on anthropic — down
ollama: { status: 'up' }, // Haiku is also on anthropic — use Ollama as next
ollama: { status: 'healthy' }, // Haiku is also on anthropic — use Ollama as next
});
const decision = await service.resolve('hello there');
@@ -345,7 +352,7 @@ describe('RoutingEngineService.resolve — empty conditions (fallback rule)', ()
}),
];
const service = makeService(rules, { anthropic: { status: 'up' } });
const service = makeService(rules, { anthropic: { status: 'healthy' } });
const decision = await service.resolve('completely unrelated message xyz');
expect(decision.ruleName).toBe('catch-all');
@@ -369,7 +376,7 @@ describe('RoutingEngineService.resolve — empty conditions (fallback rule)', ()
}),
];
const service = makeService(rules, { anthropic: { status: 'up' } });
const service = makeService(rules, { anthropic: { status: 'healthy' } });
const codingDecision = await service.resolve('implement a function');
expect(codingDecision.ruleName).toBe('specific coding rule');
@@ -401,7 +408,7 @@ describe('RoutingEngineService.resolve — disabled rules', () => {
}),
];
const service = makeService(rules, { anthropic: { status: 'up' } });
const service = makeService(rules, { anthropic: { status: 'healthy' } });
const decision = await service.resolve('implement a function');
expect(decision.ruleName).toBe('enabled fallback');
@@ -452,9 +459,45 @@ describe('RoutingEngineService.resolve — availableProviders override', () => {
ps: unknown,
) => RoutingEngineService)(mockDb, mockProviderService);
const preSupplied = { anthropic: { status: 'up' } };
const preSupplied: Record<string, { status: ProviderHealthStatus }> = {
anthropic: { status: 'healthy' },
};
await service.resolve('implement a function', undefined, preSupplied);
expect(mockHealthCheckAll).not.toHaveBeenCalled();
});
});
// ─── resolve — canonical ProviderHealthStatus values ──────────────────────────
describe('RoutingEngineService.resolve — canonical health status routing', () => {
it('routes healthy and degraded providers by rule, and falls through to fallback when down', async () => {
const codingRule = makeRule({
name: 'coding rule',
priority: 1,
conditions: [{ field: 'taskType', operator: 'eq', value: 'coding' }],
action: { provider: 'openai', model: 'gpt-4o' },
});
// healthy → selected by its own rule, not the fallback chain
const healthyService = makeService([codingRule], { openai: { status: 'healthy' } });
const healthyDecision = await healthyService.resolve('implement a function');
expect(healthyDecision.ruleName).toBe('coding rule');
expect(healthyDecision.provider).toBe('openai');
// down → rule is skipped as unroutable, falls through to the fallback chain
const downService = makeService([codingRule], {
openai: { status: 'down' },
anthropic: { status: 'healthy' },
});
const downDecision = await downService.resolve('implement a function');
expect(downDecision.ruleName).toBe('fallback');
expect(downDecision.provider).toBe('anthropic');
// degraded → still routable, selected by its own rule, not the fallback chain
const degradedService = makeService([codingRule], { openai: { status: 'degraded' } });
const degradedDecision = await degradedService.resolve('implement a function');
expect(degradedDecision.ruleName).toBe('coding rule');
expect(degradedDecision.provider).toBe('openai');
});
});
+624
View File
@@ -0,0 +1,624 @@
import 'reflect-metadata';
import { mkdtemp, mkdir, readFile, rm, writeFile } from 'node:fs/promises';
import * as nodeOs from 'node:os';
import { dirname, isAbsolute, join, relative, resolve } from 'node:path';
import * as nodeUrl from 'node:url';
import { MODULE_METADATA } from '@nestjs/common/constants.js';
import { describe, expect, it, vi } from 'vitest';
import type { MosaicConfig } from '@mosaicstack/config';
interface ComposedModuleGraph {
imports: readonly unknown[];
federationModule: unknown;
bootLogLines: readonly string[];
mosaicConfig: MosaicConfig;
resolvedConfigPath: string;
}
type StorageTier = 'local' | 'standalone' | 'federated';
interface ModuleGraphFixture {
tempRoot: string;
anchor: string;
homePath: string;
cwdPath: string;
monorepoRootEnvPath: string;
gatewayLocalEnvPath: string;
daemonEnvPath: string;
monorepoRootConfigPath: string;
gatewayLocalConfigPath: string;
}
interface ModuleGraphFixtureOptions {
rootEnvMode?: 'present' | 'absent';
rootTier?: StorageTier;
rootEnvContents?: string;
redactionMarker?: string;
gatewayLocalTier?: StorageTier;
gatewayLocalEnvContents?: string;
daemonEnvContents?: string;
inheritedTier?: StorageTier;
expectedProcessTier?: string;
setup?: (fixture: ModuleGraphFixture) => Promise<void>;
}
// Each case uses vi.resetModules() and re-imports the full gateway graph for distinct ambient FS/env; CI needs headroom, while this still guards genuine hangs.
const MODULE_IMPORT_TIMEOUT_MS = 120_000;
const MONOREPO_ROOT_DOTENV_LABEL = 'monorepo-root .env';
const DAEMON_DOTENV_LABEL = 'daemon .env';
function configJson(tier: StorageTier): string {
if (tier === 'local') {
return JSON.stringify({
tier,
storage: { type: 'pglite', dataDir: '.mosaic/storage-pglite' },
queue: { type: 'local', dataDir: '.mosaic/queue' },
memory: { type: 'keyword' },
});
}
return JSON.stringify({
tier,
storage: { type: 'postgres', url: 'postgresql://fixture.invalid/mosaic' },
queue: { type: 'bullmq' },
memory: { type: tier === 'federated' ? 'pgvector' : 'keyword' },
});
}
function snapshotProcessEnv(): Record<string, string | undefined> {
return { ...process.env };
}
function restoreProcessEnv(snapshot: Record<string, string | undefined>): void {
for (const key of Object.keys(process.env)) {
if (!(key in snapshot)) {
delete process.env[key];
}
}
for (const [key, value] of Object.entries(snapshot)) {
if (value === undefined) {
delete process.env[key];
continue;
}
process.env[key] = value;
}
}
function expectPathUnderTempRoot(path: string, tempRoot: string): void {
const relativePath = relative(tempRoot, path);
expect(relativePath === '' || (!relativePath.startsWith('..') && !isAbsolute(relativePath))).toBe(
true,
);
}
async function writeFixture(path: string, contents: string, tempRoot: string): Promise<void> {
expectPathUnderTempRoot(path, tempRoot);
await mkdir(dirname(path), { recursive: true });
await writeFile(path, contents, 'utf8');
}
interface ConfigModuleProvider {
provide: string;
useFactory: () => MosaicConfig;
}
function isConfigModuleProvider(value: unknown): value is ConfigModuleProvider {
if (typeof value !== 'object' || value === null) {
return false;
}
if (!('provide' in value) || typeof value.provide !== 'string') {
return false;
}
return 'useFactory' in value && typeof value.useFactory === 'function';
}
function singleBootLogLine(bootLogLines: readonly string[]): string {
expect(bootLogLines).toHaveLength(1);
const [bootLogLine] = bootLogLines;
if (bootLogLine === undefined) {
throw new Error('Expected a single boot log line');
}
return bootLogLine;
}
function expectBootLogLine(
bootLogLines: readonly string[],
tier: StorageTier,
source: string,
): void {
const bootLogLine = singleBootLogLine(bootLogLines);
expect(bootLogLine).toContain(`storage tier=${tier}`);
expect(bootLogLine).toContain(`source=${source}`);
}
async function loadModuleGraphFromDotenv(
options: ModuleGraphFixtureOptions,
): Promise<ComposedModuleGraph> {
const originalEnv = snapshotProcessEnv();
const tempRoot = await mkdtemp(join(nodeOs.tmpdir(), 'mosaic-gateway-module-'));
let consoleInfoSpy: ReturnType<typeof vi.spyOn> | undefined;
let cwdSpy: ReturnType<typeof vi.spyOn> | undefined;
try {
const anchor = join(tempRoot, 'anchored', 'apps', 'gateway', 'src');
const homePath = join(tempRoot, 'home');
const cwdPath = join(tempRoot, 'ambient', 'parent', 'cwd');
const fixture: ModuleGraphFixture = {
tempRoot,
anchor,
homePath,
cwdPath,
monorepoRootEnvPath: resolve(anchor, '../../..', '.env'),
gatewayLocalEnvPath: resolve(anchor, '..', '.env'),
daemonEnvPath: join(homePath, '.config', 'mosaic', 'gateway', '.env'),
monorepoRootConfigPath: resolve(anchor, '../../..', 'mosaic.config.json'),
gatewayLocalConfigPath: resolve(anchor, '..', 'mosaic.config.json'),
};
consoleInfoSpy = vi.spyOn(console, 'info').mockImplementation((): void => undefined);
for (const path of Object.values(fixture)) {
expectPathUnderTempRoot(path, tempRoot);
}
await mkdir(anchor, { recursive: true });
await mkdir(cwdPath, { recursive: true });
if ((options.rootEnvMode ?? 'present') === 'absent') {
if (
options.rootEnvContents !== undefined ||
options.rootTier !== undefined ||
options.redactionMarker !== undefined
) {
throw new Error('Expected no root env fixture values when rootEnvMode is absent');
}
} else {
if (options.rootEnvContents === undefined && options.rootTier === undefined) {
throw new Error('Expected rootTier or rootEnvContents');
}
const rootFixture = options.rootEnvContents ?? `MOSAIC_STORAGE_TIER=${options.rootTier}\n`;
const rootFixtureWithMarker = options.redactionMarker
? `${rootFixture}BETTER_AUTH_SECRET=${options.redactionMarker}\n`
: rootFixture;
await writeFixture(fixture.monorepoRootEnvPath, rootFixtureWithMarker, tempRoot);
}
if (options.daemonEnvContents !== undefined) {
await writeFixture(fixture.daemonEnvPath, options.daemonEnvContents, tempRoot);
}
if (options.gatewayLocalEnvContents !== undefined) {
await writeFixture(fixture.gatewayLocalEnvPath, options.gatewayLocalEnvContents, tempRoot);
} else if (options.gatewayLocalTier !== undefined) {
await writeFixture(
fixture.gatewayLocalEnvPath,
`MOSAIC_STORAGE_TIER=${options.gatewayLocalTier}\n`,
tempRoot,
);
}
process.env['HOME'] = homePath;
delete process.env['MOSAIC_STORAGE_TIER'];
delete process.env['DATABASE_URL'];
delete process.env['VALKEY_URL'];
delete process.env['MOSAIC_GATEWAY_HOME'];
await options.setup?.(fixture);
if (options.inheritedTier !== undefined) {
process.env['MOSAIC_STORAGE_TIER'] = options.inheritedTier;
}
vi.resetModules();
vi.doMock('node:os', () => ({ ...nodeOs, homedir: (): string => homePath }));
vi.doMock('node:url', () => ({
...nodeUrl,
fileURLToPath: (url: string | URL): string => {
const actualPath = nodeUrl.fileURLToPath(url);
if (
actualPath.endsWith('/apps/gateway/src/env.ts') ||
actualPath.endsWith('/apps/gateway/src/env.js')
) {
return join(anchor, 'env.ts');
}
return actualPath;
},
}));
cwdSpy = vi.spyOn(process, 'cwd').mockReturnValue(cwdPath);
if (options.inheritedTier === undefined) {
expect(process.env['MOSAIC_STORAGE_TIER']).toBeUndefined();
} else {
expect(process.env['MOSAIC_STORAGE_TIER']).toBe(options.inheritedTier);
}
const envModule = await import('./env.js');
expect(process.env['MOSAIC_STORAGE_TIER']).toBe(
options.expectedProcessTier ?? options.rootTier,
);
const { AppModule } = await import('./app.module.js');
const { FederationModule } = await import('./federation/federation.module.js');
const imports: unknown = Reflect.getMetadata(MODULE_METADATA.IMPORTS, AppModule);
if (!Array.isArray(imports)) {
throw new Error('AppModule imports metadata is not an array');
}
const { ConfigModule, MOSAIC_CONFIG } = await import('./config/config.module.js');
const providers: unknown = Reflect.getMetadata(MODULE_METADATA.PROVIDERS, ConfigModule);
if (!Array.isArray(providers)) {
throw new Error('ConfigModule providers metadata is not an array');
}
const configProvider = providers
.filter(isConfigModuleProvider)
.find((provider: ConfigModuleProvider): boolean => provider.provide === MOSAIC_CONFIG);
if (!configProvider) {
throw new Error('MOSAIC_CONFIG provider factory not found');
}
return {
imports,
federationModule: FederationModule,
bootLogLines: consoleInfoSpy.mock.calls.map((args: readonly unknown[]): string =>
args.map((value: unknown): string => String(value)).join(' '),
),
mosaicConfig: configProvider.useFactory(),
resolvedConfigPath: envModule.resolveGatewayConfigPath(),
};
} finally {
cwdSpy?.mockRestore();
vi.doUnmock('node:url');
vi.doUnmock('node:os');
vi.resetModules();
consoleInfoSpy?.mockRestore();
restoreProcessEnv(originalEnv);
await rm(tempRoot, { recursive: true, force: true });
}
}
describe('AppModule federation gating', (): void => {
it('loads dotenv before tracing and AppModule evaluation', async (): Promise<void> => {
const mainSource = await readFile(new URL('./main.ts', import.meta.url), 'utf8');
const envImportIndex = mainSource.indexOf("import './env.js';");
const tracingImportIndex = mainSource.indexOf("import './tracing.js';");
const appModuleImportIndex = mainSource.indexOf("import { AppModule } from './app.module.js';");
expect(envImportIndex).toBeGreaterThan(-1);
expect(envImportIndex).toBeLessThan(tracingImportIndex);
expect(envImportIndex).toBeLessThan(appModuleImportIndex);
});
it(
'ignores ambient cwd/.env and cwd/../.env files',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
join(fixture.cwdPath, '.env'),
'MOSAIC_STORAGE_TIER=federated\n',
fixture.tempRoot,
);
await writeFixture(
resolve(fixture.cwdPath, '..', '.env'),
'MOSAIC_STORAGE_TIER=federated\n',
fixture.tempRoot,
);
},
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'local', MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'ignores an ambient cwd/mosaic.config.json federated config',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
join(fixture.cwdPath, 'mosaic.config.json'),
configJson('federated'),
fixture.tempRoot,
);
},
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'local', MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'ignores an ambient cwd/../../mosaic.config.json federated config',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
resolve(fixture.cwdPath, '../..', 'mosaic.config.json'),
configJson('federated'),
fixture.tempRoot,
);
},
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'local', MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'anchored gateway-local config wins monorepo-root config and registers FederationModule',
async (): Promise<void> => {
let gatewayLocalConfigPath = '';
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
gatewayLocalConfigPath = fixture.gatewayLocalConfigPath;
await writeFixture(
fixture.gatewayLocalConfigPath,
configJson('federated'),
fixture.tempRoot,
);
await writeFixture(fixture.monorepoRootConfigPath, configJson('local'), fixture.tempRoot);
},
});
expect(graph.resolvedConfigPath).toBe(gatewayLocalConfigPath);
expect(graph.mosaicConfig.tier).toBe('federated');
expect(graph.imports).toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'federated', 'mosaic.config.json');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'resolves the daemon-installed GATEWAY_HOME/mosaic.config.json ahead of gateway-local and monorepo-root configs',
async (): Promise<void> => {
let daemonConfigPath = '';
const graph = await loadModuleGraphFromDotenv({
rootEnvMode: 'absent',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
const externalGatewayHome = join(fixture.tempRoot, 'external-gateway-home');
daemonConfigPath = join(externalGatewayHome, 'mosaic.config.json');
await writeFixture(daemonConfigPath, configJson('federated'), fixture.tempRoot);
await writeFixture(
fixture.gatewayLocalConfigPath,
configJson('standalone'),
fixture.tempRoot,
);
await writeFixture(fixture.monorepoRootConfigPath, configJson('local'), fixture.tempRoot);
process.env['MOSAIC_GATEWAY_HOME'] = externalGatewayHome;
process.env['DATABASE_URL'] = 'postgresql://fixture.invalid/mosaic';
},
});
expect(graph.resolvedConfigPath).toBe(daemonConfigPath);
expect(graph.mosaicConfig.tier).toBe('federated');
expect(graph.imports).toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'federated', 'mosaic.config.json');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'logs mosaic.config.json when anchored config and env tiers are both federated',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'federated',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
fixture.monorepoRootConfigPath,
configJson('federated'),
fixture.tempRoot,
);
},
});
expect(graph.imports).toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'federated', 'mosaic.config.json');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'logs standalone from a monorepo-root .env DATABASE_URL fallback',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootEnvContents: 'DATABASE_URL=fixture-database-url\n',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'standalone', MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'attributes an invalid monorepo-root dotenv tier to the default',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootEnvContents: 'MOSAIC_STORAGE_TIER=invalid\n',
expectedProcessTier: 'invalid',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'local', 'default');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'attributes DATABASE_URL fallback to daemon .env ahead of inherited local tier',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootEnvMode: 'absent',
daemonEnvContents: 'DATABASE_URL=fixture-database-url\n',
inheritedTier: 'local',
expectedProcessTier: 'local',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'standalone', DAEMON_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'daemon .env wins over monorepo-root and gateway-local tier values',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
gatewayLocalTier: 'federated',
daemonEnvContents: 'MOSAIC_STORAGE_TIER=standalone\n',
expectedProcessTier: 'standalone',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'standalone', DAEMON_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'inherits process.env.MOSAIC_STORAGE_TIER over daemon, monorepo-root, and gateway-local dotenv values',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
gatewayLocalTier: 'federated',
daemonEnvContents: 'MOSAIC_STORAGE_TIER=federated\n',
inheritedTier: 'standalone',
expectedProcessTier: 'standalone',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'standalone', 'process environment');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'gateway-local .env configures the tier and source when the monorepo-root .env is absent',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootEnvMode: 'absent',
gatewayLocalTier: 'federated',
expectedProcessTier: 'federated',
});
expect(graph.imports).toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'federated', 'gateway-local .env');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'monorepo-root .env wins over gateway-local tier values',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'standalone',
gatewayLocalTier: 'federated',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'standalone', MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it.each(['local', 'standalone'] as const)(
'does not register FederationModule for the %s tier',
async (tier): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({ rootTier: tier });
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, tier, MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'registers FederationModule when federated tier is supplied by the anchored monorepo root .env',
async (): Promise<void> => {
const redactionMarker = 'redaction-fixture-marker';
const graph = await loadModuleGraphFromDotenv({
rootTier: 'federated',
redactionMarker,
});
expect(graph.imports).toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'federated', MONOREPO_ROOT_DOTENV_LABEL);
expect(singleBootLogLine(graph.bootLogLines)).not.toContain(redactionMarker);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'MOSAIC_CONFIG provider ignores an ambient cwd/mosaic.config.json config',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
join(fixture.cwdPath, 'mosaic.config.json'),
JSON.stringify({
tier: 'federated',
storage: {
type: 'postgres',
url: 'postgresql://ambient-attacker.invalid/mosaic',
enableVector: true,
},
queue: { type: 'bullmq' },
memory: { type: 'pgvector' },
}),
fixture.tempRoot,
);
},
});
expect(graph.mosaicConfig.tier).toBe('local');
expect(graph.mosaicConfig.storage).not.toEqual(
expect.objectContaining({ url: 'postgresql://ambient-attacker.invalid/mosaic' }),
);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'MOSAIC_CONFIG provider resolves from the anchored monorepo-root mosaic.config.json',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
fixture.monorepoRootConfigPath,
configJson('federated'),
fixture.tempRoot,
);
},
});
expect(graph.mosaicConfig.tier).toBe('federated');
expect(graph.mosaicConfig.storage).toEqual(
expect.objectContaining({ url: 'postgresql://fixture.invalid/mosaic' }),
);
},
MODULE_IMPORT_TIMEOUT_MS,
);
});
+13 -1
View File
@@ -21,11 +21,22 @@ import { AdminModule } from './admin/admin.module.js';
import { CommandsModule } from './commands/commands.module.js';
import { PreferencesModule } from './preferences/preferences.module.js';
import { GCModule } from './gc/gc.module.js';
import { HarnessModule } from './harness/harness.module.js';
import { ReloadModule } from './reload/reload.module.js';
import { WorkspaceModule } from './workspace/workspace.module.js';
import { QueueModule } from './queue/queue.module.js';
import { FederationModule } from './federation/federation.module.js';
import { ThrottlerGuard, ThrottlerModule } from '@nestjs/throttler';
import { loadConfig } from '@mosaicstack/config';
import { resolveGatewayConfigPath } from './env.js';
// Federation (step-ca client, enrollment, federation verbs) is only wired for
// tier 'federated' — CaService hard-requires STEP_CA_* at construction, which
// must not gate standalone/local boots (docker-compose.federated.yml: the
// federation profile "must not start in non-federated dev"). The gateway
// entrypoint loads env.ts before evaluating this module so dotenv-backed tier
// configuration is visible here.
const federationEnabled = loadConfig(resolveGatewayConfigPath()).tier === 'federated';
@Module({
imports: [
@@ -50,10 +61,11 @@ import { ThrottlerGuard, ThrottlerModule } from '@nestjs/throttler';
PreferencesModule,
CommandsModule,
GCModule,
HarnessModule,
QueueModule,
ReloadModule,
WorkspaceModule,
FederationModule,
...(federationEnabled ? [FederationModule] : []),
],
controllers: [HealthController],
providers: [
File diff suppressed because it is too large Load Diff
@@ -0,0 +1,920 @@
import 'reflect-metadata';
import { Global, Module } from '@nestjs/common';
import { Test, type TestingModule } from '@nestjs/testing';
import { afterAll, afterEach, beforeAll, describe, expect, it } from 'vitest';
import type { HarnessAdapter, HarnessConversationService } from '@mosaicstack/types';
import { AgentService } from '../agent/agent.service.js';
import { AuthGuard } from '../auth/auth.guard.js';
import { CommandsModule } from '../commands/commands.module.js';
import { HarnessModule } from '../harness/harness.module.js';
import { ChatModule } from './chat.module.js';
import { ChatGateway } from './chat.gateway.js';
import { HarnessRegistry } from '../harness/harness.registry.js';
import {
HARNESS_CONVERSATION_SERVICE,
HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
HARNESS_REGISTRY,
type HarnessConversationServiceBinding,
} from '../harness/harness.tokens.js';
import { ChatRuntimeRouter } from './chat-runtime-router.js';
import {
ChatRuntimeUnavailableError,
ownConversation,
type ChatRuntime,
type ChatRuntimeMode,
type LegacyEmbeddedChatPort,
type LegacyRuntimeStream,
type LegacySessionPresentation,
type LegacySocketTurnLease,
type OwnedConversationContext,
} from './chat-runtime.js';
import { AppModule } from '../app.module.js';
import { ProviderService } from '../agent/provider.service.js';
/**
* Task Five, Step One (router). Proves the `ChatRuntimeRouter` resolves exactly one
* runtime by mode, fails closed at init when `pi-rpc` preconditions are unmet, and
* never downgrades `pi-rpc` to embedded execution. Red-first: the router is an
* unimplemented stub, so every behavioural assertion below fails until Step Three.
*/
const embedded: ChatRuntime = { kind: 'embedded' };
const harness: ChatRuntime = { kind: 'harness' };
/** A structurally-complete, non-sentinel conversation service. Its methods are never invoked here. */
const boundConversationService = {
attach: () => Promise.reject(new Error('unused')),
detach: () => Promise.reject(new Error('unused')),
send: () => Promise.reject(new Error('unused')),
subscribeFrom: async function* () {
throw new Error('unused');
},
} as unknown as HarnessConversationService;
function registryWith(adapterIds: readonly string[]): HarnessRegistry {
const registry = new HarnessRegistry();
for (const id of adapterIds) {
registry.register({
id,
describe: () => Promise.reject(new Error('unused')),
catalog: () => Promise.reject(new Error('unused')),
create: () => Promise.reject(new Error('unused')),
resume: () => Promise.reject(new Error('unused')),
} as HarnessAdapter);
}
return registry;
}
function buildRouter(
mode: ChatRuntimeMode,
opts: { adapters: readonly string[]; service: HarnessConversationServiceBinding },
): ChatRuntimeRouter {
return new ChatRuntimeRouter(registryWith(opts.adapters), opts.service, embedded, harness, mode);
}
/**
* Tear down a module that was deliberately driven to a fail-closed init.
* `NestApplicationContext.close()` re-awaits the module's `initializationPromise` before disposing
* (nest-application-context.js:127); when `init()` rejected, that await re-throws the SAME typed
* startup error, this time into teardown. Each caller here has already captured and asserted that
* exact `ChatRuntimeUnavailableError` via `initError`, so the re-throw is expected teardown noise —
* swallow ONLY that error, and surface anything else so a genuine teardown fault still fails loudly.
*/
async function closeIgnoringFailedInit(moduleRef: TestingModule): Promise<void> {
await moduleRef.close().catch((err: unknown) => {
if (err instanceof ChatRuntimeUnavailableError) return;
throw err;
});
}
describe('ChatRuntimeRouter', () => {
it('resolves only the harness runtime in pi-rpc mode when pi adapter and conversation service are present', () => {
const router = buildRouter('pi-rpc', {
adapters: ['pi'],
service: boundConversationService,
});
expect(() => router.onModuleInit()).not.toThrow();
expect(router.active).toBe(harness);
expect(router.active.kind).toBe('harness');
});
it('resolves only the embedded runtime in legacy mode and skips the pi preconditions', () => {
// Empty registry + unavailable service: legacy must ignore both and still start.
const router = buildRouter('legacy', {
adapters: [],
service: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
expect(() => router.onModuleInit()).not.toThrow();
expect(router.active).toBe(embedded);
expect(router.active.kind).toBe('embedded');
});
it('fails closed at init when pi-rpc mode has no registered pi adapter', () => {
const router = buildRouter('pi-rpc', {
adapters: [],
service: boundConversationService,
});
expect(() => router.onModuleInit()).toThrow(ChatRuntimeUnavailableError);
try {
router.onModuleInit();
expect.unreachable('onModuleInit must throw when the pi adapter is absent');
} catch (err) {
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('adapter_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
}
});
it('fails closed at init when pi-rpc mode has the unavailable conversation-service sentinel', () => {
const router = buildRouter('pi-rpc', {
adapters: ['pi'],
service: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
try {
router.onModuleInit();
expect.unreachable('onModuleInit must throw when the conversation service is unbound');
} catch (err) {
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('conversation_service_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
}
});
it('never falls back to embedded execution when pi-rpc preconditions are unmet', () => {
const router = buildRouter('pi-rpc', {
adapters: [],
service: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
expect(() => router.onModuleInit()).toThrow(ChatRuntimeUnavailableError);
// A failed pi-rpc init must not silently expose the embedded runtime.
expect(() => router.active).toThrow();
let leaked: ChatRuntime | undefined;
try {
leaked = router.active;
} catch {
leaked = undefined;
}
expect(leaked).not.toBe(embedded);
});
it('exposes only fixed, browser-safe failure text (no raw provider or exception detail)', () => {
const router = buildRouter('pi-rpc', {
adapters: [],
service: boundConversationService,
});
try {
router.onModuleInit();
expect.unreachable('onModuleInit must throw');
} catch (err) {
const message = (err as ChatRuntimeUnavailableError).message;
expect(message).toBe(
'The pi-rpc chat runtime is unavailable: no "pi" harness adapter is registered.',
);
expect(message).not.toMatch(/Error:|\bat \b|node_modules|Symbol\(/);
}
});
});
/**
* Task Five, Step Three — legacy port operations fail closed under pi-rpc (direct valid-input).
*
* The unit suite above constructs the router but never invokes a legacy port operation, so the
* six per-operation inner `if (this.mode === 'pi-rpc')` guards are unexercised — a mutation that
* deletes one of them SURVIVES for lack of a test that drives that operation. This group closes
* that gap the right way: it drives each of the six operations DIRECTLY, in pi-rpc mode, with a
* valid branded {@link OwnedConversationContext} and valid input, against a recording embedded
* stub whose method returns a distinguishable `ok:true` success and increments a per-op counter.
*
* For each operation:
* - pi-rpc test asserts the exact frozen `{ ok:false, code:'runtime_unsupported', retryable:false }`
* result AND that the embedded stub was touched zero times (no effects);
* - the paired legacy test proves that same stub method IS reached and returns its distinguishable
* success when the mode does not refuse — so the pi-rpc zero-invocation assertion is meaningful,
* not vacuously true because the stub could never be called.
*
* Deleting ONLY one operation's inner guard makes THAT operation's pi-rpc test behaviorally RED
* (the router returns the embedded `ok:true` value and records the call), with every outer guard
* and the other five inner guards intact. `next` is untouched; nothing here changes production.
*/
describe('ChatRuntimeRouter — legacy port ops fail closed under pi-rpc (Task Five, Step Three)', () => {
const RUNTIME_UNSUPPORTED = {
ok: false,
code: 'runtime_unsupported',
retryable: false,
} as const;
const PRESENTATION: LegacySessionPresentation = {
provider: 'embedded-provider',
modelId: 'embedded-model',
thinkingLevel: 'low',
availableThinkingLevels: ['low', 'high'],
};
const stream: LegacyRuntimeStream = {
channelId: 'websocket:test-socket',
onEvent: () => {},
};
const ctx = (): OwnedConversationContext =>
ownConversation('conversation-1', { userId: 'user-1', tenantId: 'tenant-1' });
/**
* Per-operation invocation counters with declared keys (not an index signature) so each
* `calls.<op>` is definitely `number` under `noUncheckedIndexedAccess`.
*/
type LegacyPortCallCounts = {
completeLegacyRestTurn: number;
prepareLegacySocketTurn: number;
setLegacyThinking: number;
abortLegacyTurn: number;
applyLegacyModelOverride: number;
readLegacySessionPresentation: number;
dispatchVerifiedDiscordIngress: number;
};
/**
* An embedded port that records every invocation and returns a distinguishable `ok:true`
* value per operation. If a router op reaches it (its guard removed), both the recorded call
* count and the returned `ok:true` value diverge from the frozen `runtime_unsupported` result.
*/
function recordingEmbeddedPort(): {
port: ChatRuntime & LegacyEmbeddedChatPort;
calls: LegacyPortCallCounts;
} {
const calls: LegacyPortCallCounts = {
completeLegacyRestTurn: 0,
prepareLegacySocketTurn: 0,
setLegacyThinking: 0,
abortLegacyTurn: 0,
applyLegacyModelOverride: 0,
readLegacySessionPresentation: 0,
dispatchVerifiedDiscordIngress: 0,
};
const lease: LegacySocketTurnLease = {
presentation: PRESENTATION,
dispatch: () => Promise.resolve({ ok: true, value: undefined }),
dispose: () => Promise.resolve(),
};
const port: ChatRuntime & LegacyEmbeddedChatPort = {
kind: 'embedded',
completeLegacyRestTurn: () => {
calls.completeLegacyRestTurn += 1;
return Promise.resolve({
ok: true,
value: { text: 'EMBEDDED-REST', presentation: PRESENTATION },
});
},
prepareLegacySocketTurn: () => {
calls.prepareLegacySocketTurn += 1;
return Promise.resolve({ ok: true, value: lease });
},
setLegacyThinking: () => {
calls.setLegacyThinking += 1;
return { ok: true, value: PRESENTATION };
},
abortLegacyTurn: () => {
calls.abortLegacyTurn += 1;
return Promise.resolve({ ok: true, value: undefined });
},
applyLegacyModelOverride: () => {
calls.applyLegacyModelOverride += 1;
return { ok: true, value: PRESENTATION };
},
readLegacySessionPresentation: () => {
calls.readLegacySessionPresentation += 1;
return { ok: true, value: PRESENTATION };
},
dispatchVerifiedDiscordIngress: () => {
calls.dispatchVerifiedDiscordIngress += 1;
return Promise.resolve({
ok: true,
value: {
presentation: PRESENTATION,
dispatch: () => Promise.resolve({ ok: true, value: undefined }),
dispose: () => Promise.resolve(),
},
});
},
};
return { port, calls };
}
function piRouter(port: ChatRuntime & LegacyEmbeddedChatPort): ChatRuntimeRouter {
return new ChatRuntimeRouter(
registryWith(['pi']),
boundConversationService,
port,
harness,
'pi-rpc',
);
}
function legacyRouter(port: ChatRuntime & LegacyEmbeddedChatPort): ChatRuntimeRouter {
return new ChatRuntimeRouter(
registryWith([]),
boundConversationService,
port,
harness,
'legacy',
);
}
// completeLegacyRestTurn ---------------------------------------------------
it('completeLegacyRestTurn refuses with runtime_unsupported and never touches embedded under pi-rpc', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await piRouter(port).completeLegacyRestTurn(ctx(), { content: 'hello' });
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.completeLegacyRestTurn).toBe(0);
});
it('completeLegacyRestTurn delegates to embedded under legacy (guard is the sole gate)', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await legacyRouter(port).completeLegacyRestTurn(ctx(), { content: 'hello' });
expect(result.ok).toBe(true);
expect(calls.completeLegacyRestTurn).toBe(1);
});
// prepareLegacySocketTurn --------------------------------------------------
it('prepareLegacySocketTurn refuses with runtime_unsupported and never touches embedded under pi-rpc', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await piRouter(port).prepareLegacySocketTurn(
ctx(),
{ content: 'hello' },
stream,
);
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.prepareLegacySocketTurn).toBe(0);
});
it('prepareLegacySocketTurn delegates to embedded under legacy (guard is the sole gate)', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await legacyRouter(port).prepareLegacySocketTurn(
ctx(),
{ content: 'hello' },
stream,
);
expect(result.ok).toBe(true);
expect(calls.prepareLegacySocketTurn).toBe(1);
});
// setLegacyThinking (sync) -------------------------------------------------
it('setLegacyThinking refuses with runtime_unsupported and never touches embedded under pi-rpc', () => {
const { port, calls } = recordingEmbeddedPort();
const result = piRouter(port).setLegacyThinking(ctx(), 'high');
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.setLegacyThinking).toBe(0);
});
it('setLegacyThinking delegates to embedded under legacy (guard is the sole gate)', () => {
const { port, calls } = recordingEmbeddedPort();
const result = legacyRouter(port).setLegacyThinking(ctx(), 'high');
expect(result.ok).toBe(true);
expect(calls.setLegacyThinking).toBe(1);
});
// abortLegacyTurn ----------------------------------------------------------
it('abortLegacyTurn refuses with runtime_unsupported and never touches embedded under pi-rpc', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await piRouter(port).abortLegacyTurn(ctx());
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.abortLegacyTurn).toBe(0);
});
it('abortLegacyTurn delegates to embedded under legacy (guard is the sole gate)', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await legacyRouter(port).abortLegacyTurn(ctx());
expect(result.ok).toBe(true);
expect(calls.abortLegacyTurn).toBe(1);
});
// applyLegacyModelOverride (sync) ------------------------------------------
it('applyLegacyModelOverride refuses with runtime_unsupported and never touches embedded under pi-rpc', () => {
const { port, calls } = recordingEmbeddedPort();
const result = piRouter(port).applyLegacyModelOverride(ctx(), 'model-x');
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.applyLegacyModelOverride).toBe(0);
});
it('applyLegacyModelOverride delegates to embedded under legacy (guard is the sole gate)', () => {
const { port, calls } = recordingEmbeddedPort();
const result = legacyRouter(port).applyLegacyModelOverride(ctx(), 'model-x');
expect(result.ok).toBe(true);
expect(calls.applyLegacyModelOverride).toBe(1);
});
// readLegacySessionPresentation (sync) -------------------------------------
it('readLegacySessionPresentation refuses with runtime_unsupported and never touches embedded under pi-rpc', () => {
const { port, calls } = recordingEmbeddedPort();
const result = piRouter(port).readLegacySessionPresentation(ctx());
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.readLegacySessionPresentation).toBe(0);
});
it('readLegacySessionPresentation delegates to embedded under legacy (guard is the sole gate)', () => {
const { port, calls } = recordingEmbeddedPort();
const result = legacyRouter(port).readLegacySessionPresentation(ctx());
expect(result.ok).toBe(true);
expect(calls.readLegacySessionPresentation).toBe(1);
});
// dispatchVerifiedDiscordIngress delegates in BOTH modes (embedded-only, no guard) ---------
it('dispatchVerifiedDiscordIngress delegates to embedded under pi-rpc (embedded-only, no mode guard)', async () => {
const { port, calls } = recordingEmbeddedPort();
const discordCtx = ctx() as unknown as Parameters<
ChatRuntimeRouter['dispatchVerifiedDiscordIngress']
>[0];
const result = await piRouter(port).dispatchVerifiedDiscordIngress(discordCtx, stream);
expect(result.ok).toBe(true);
expect(calls.dispatchVerifiedDiscordIngress).toBe(1);
});
});
/**
* Task Five, Step Two — group 1 (real Nest module-graph readiness).
*
* The unit suite above constructs the router directly. This group drives the SAME contract
* through a real NestJS graph: it imports the production `HarnessModule` (the proven-booting
* idiom from harness.controller.spec.ts) so the router resolves the REAL, empty `HarnessRegistry`
* via the real `HARNESS_REGISTRY` token, then runs the router's `OnModuleInit` through the Nest
* lifecycle (`moduleRef.init()`). Red-first: the router is an unimplemented stub whose
* `onModuleInit` throws a generic Error, so:
* - readiness cases fail because the graph never comes up (init rejects), and
* - fail-closed cases fail because a generic stub throw is NOT the SPECIFIC typed
* `ChatRuntimeUnavailableError` (reason/code) the contract demands — a stub that
* "throws anything" cannot mask these greens.
* The router is NOT wired into a production module yet, so it is provided here via a factory
* over the real registry token. Importing the real `ChatModule` bare is deliberately avoided:
* it injects `AgentService` without importing `AgentModule`, so its graph fails to RESOLVE — a
* collection/DI error, not a behavioural red. `next` is untouched; nothing here implements the router.
*/
describe('ChatRuntimeRouter — real Nest module-graph readiness (Task Five, Step Two group 1)', () => {
async function bootRouterGraph(
mode: ChatRuntimeMode,
opts: { adapters: readonly string[]; service: HarnessConversationServiceBinding },
) {
const moduleRef = await Test.createTestingModule({
imports: [HarnessModule],
providers: [
{
provide: ChatRuntimeRouter,
useFactory: (registry: HarnessRegistry) =>
new ChatRuntimeRouter(registry, opts.service, embedded, harness, mode),
inject: [HARNESS_REGISTRY],
},
],
})
// The imported HarnessModule's controllers reference AuthGuard (an HTTP-only concern,
// never exercised here); stub it so the graph resolves. The registry is NOT overridden —
// group 1 asserts against the genuine production HarnessRegistry.
.overrideGuard(AuthGuard)
.useValue({ canActivate: () => true })
.compile();
// Resolve the production registry singleton and register the requested adapters ON IT, so
// the router (which injects the same singleton) sees them when its lifecycle hook runs.
const registry = moduleRef.get<HarnessRegistry>(HARNESS_REGISTRY, { strict: false });
for (const id of opts.adapters) {
registry.register({
id,
describe: () => Promise.reject(new Error('unused')),
catalog: () => Promise.reject(new Error('unused')),
create: () => Promise.reject(new Error('unused')),
resume: () => Promise.reject(new Error('unused')),
} as HarnessAdapter);
}
return moduleRef;
}
// Capture an init rejection without letting a resolved init masquerade as success.
const initError = (moduleRef: { init(): Promise<unknown> }): Promise<unknown> =>
moduleRef.init().then(
() => new Error('module init resolved but the contract requires it to reject'),
(err: unknown) => err,
);
it('brings the graph up and resolves only the harness runtime in pi-rpc mode (pi adapter + bound service)', async () => {
const moduleRef = await bootRouterGraph('pi-rpc', {
adapters: ['pi'],
service: boundConversationService,
});
try {
await moduleRef.init();
const router = moduleRef.get(ChatRuntimeRouter, { strict: false });
expect(router.active).toBe(harness);
expect(router.active.kind).toBe('harness');
} finally {
await moduleRef.close();
}
});
it('brings the graph up in legacy mode over the REAL empty HarnessRegistry and resolves only the embedded runtime', async () => {
const moduleRef = await bootRouterGraph('legacy', {
adapters: [],
service: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
try {
// Defense-in-depth: the production module wires the genuine registry, empty by default —
// guards against a test-double registry silently satisfying the readiness check.
const registry = moduleRef.get<HarnessRegistry>(HARNESS_REGISTRY, { strict: false });
expect(registry).toBeInstanceOf(HarnessRegistry);
expect(registry.list()).toHaveLength(0);
await moduleRef.init();
const router = moduleRef.get(ChatRuntimeRouter, { strict: false });
expect(router.active).toBe(embedded);
expect(router.active.kind).toBe('embedded');
} finally {
await moduleRef.close();
}
});
it('fails closed at module init when pi-rpc mode has no registered pi adapter (specific typed error, not a stub throw)', async () => {
const moduleRef = await bootRouterGraph('pi-rpc', {
adapters: [],
service: boundConversationService,
});
try {
const err = await initError(moduleRef);
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('adapter_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
} finally {
await closeIgnoringFailedInit(moduleRef);
}
});
it('fails closed at module init when pi-rpc mode has the unavailable conversation-service sentinel', async () => {
const moduleRef = await bootRouterGraph('pi-rpc', {
adapters: ['pi'],
service: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
try {
const err = await initError(moduleRef);
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('conversation_service_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
} finally {
await closeIgnoringFailedInit(moduleRef);
}
});
it('surfaces only fixed, browser-safe failure text when the graph fails closed (no stub/exception detail)', async () => {
const moduleRef = await bootRouterGraph('pi-rpc', {
adapters: [],
service: boundConversationService,
});
try {
const err = await initError(moduleRef);
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
const message = (err as ChatRuntimeUnavailableError).message;
expect(message).toBe(
'The pi-rpc chat runtime is unavailable: no "pi" harness adapter is registered.',
);
expect(message).not.toMatch(/Error:|\bat \b|node_modules|Symbol\(|not implemented/);
} finally {
await closeIgnoringFailedInit(moduleRef);
}
});
});
/**
* Task Five, Step Two — group 1b (production ChatModule wiring, declaration proof).
*
* Correction #1 (Scrappy fe3e02) asked for a red that imports the real `ChatModule` and calls
* `module.init()`. Investigated and found impractical/masking-prone: `ChatModule` provides
* `ChatGateway`, whose 10-argument constructor injects app-global providers (AgentService, AUTH,
* BRAIN, RoutingEngineService) plus the Commands/GC/Mcp/Reload subsystems across a forwardRef
* cycle. Booting it in isolation is a full-app integration boot — "override only unrelated
* dependencies" balloons into faking ~4 subsystems, and `overrideProvider` cannot even grant the
* cross-module export-scope visibility ChatGateway needs (probe: `ChatGateway` unresolved at
* `CommandExecutorService`). That is exactly the STOP-and-return branch of the directive.
*
* The faithful, unmaskable cover instead of a fragile boot: read the PRODUCTION `ChatModule`'s own
* Nest `@Module` metadata to prove it DECLARES the exclusive router provider and imports the real
* `HarnessModule` (the genuine registry source). This inspects the actual module object — not
* source text, not a test factory — so nothing can mask it. Group 1 above separately proves the
* router RESOLVES against the real, empty `HarnessRegistry` through the Nest lifecycle; the union
* of the two covers "the router is wired through ChatModule to the real registry" without the
* impractical single-graph boot. RED today (ChatModule provides only ChatGateway and imports only
* CommandsModule); GREEN once Step Three registers the router and imports HarnessModule.
*/
describe('ChatModule production wiring (Task Five, Step Two group 1b — declaration proof)', () => {
// Unwrap a forwardRef(() => Module) import to the module it references; pass others through.
const resolveImport = (imp: unknown): unknown =>
imp &&
typeof imp === 'object' &&
typeof (imp as { forwardRef?: unknown }).forwardRef === 'function'
? (imp as { forwardRef: () => unknown }).forwardRef()
: imp;
// A provider entry is either a class (shorthand) or a { provide, ... } object; take its token.
const providerToken = (provider: unknown): unknown =>
typeof provider === 'function' ? provider : (provider as { provide?: unknown })?.provide;
it('declares the exclusive ChatRuntimeRouter as a provider on the production ChatModule', () => {
const providers: unknown[] = Reflect.getMetadata('providers', ChatModule) ?? [];
expect(providers.map(providerToken)).toContain(ChatRuntimeRouter);
});
it('imports the real HarnessModule into the production ChatModule (registry source, not a test double)', () => {
const imports: unknown[] = Reflect.getMetadata('imports', ChatModule) ?? [];
expect(imports.map(resolveImport)).toContain(HarnessModule);
});
});
/**
* Task Five, Step Two — group 1c (bounded real-`ChatModule` boot).
*
* Scrappy adjudication d67d2b (option c): boot the ACTUAL production `ChatModule` as the SUT and
* assert the exclusive router resolves THROUGH it — the single-graph proof group 1 (router over the
* real registry) and group 1b (production-module metadata) each cover only a half of. The heavy,
* UNRELATED cycle is the only thing bounded away, per the established isolation pattern in
* `apps/gateway/src/agent/hermes-runtime-reachability.e2e.test.ts`:
* - `CommandsModule` (drags the Commands <-> Reload <-> Chat forwardRef cycle plus GC/Mcp/queue)
* is replaced wholesale with an empty module via `.overrideModule(...).useModule(...)`;
* - `ChatGateway` (10-arg constructor, an HTTP/socket concern never exercised here) is replaced
* with an inert value;
* - the sole legacy-controller dependency, `AgentService`, is supplied by a tiny `@Global()` stub;
* - the HTTP-only `AuthGuard` is stubbed.
* Nothing about the router, `HarnessModule`, the registry, or the conversation-service binding is
* faked in the production-legacy case — those are retrieved from the REAL `ChatModule` graph. Mode
* is driven only through the production `CHAT_HARNESS_RUNTIME` env contract (`resolveChatRuntimeMode`).
*
* Red-first: today `ChatModule` neither imports `HarnessModule` nor provides `ChatRuntimeRouter`, so
* the booted graph contains no router/registry/conversation-service tokens. `init()` may resolve
* (there is no router lifecycle hook yet to reject), so every case fails on the MISSING actual
* router/registry/service wiring — not on unrelated DI, which is bounded away. GREEN at Step Three
* once `ChatModule` imports `HarnessModule`, provides the exclusive router, and binds the
* conversation-service token (defaulting to the unavailable sentinel).
*/
describe('ChatModule bounded real boot (Task Five, Step Two group 1c)', () => {
// The unrelated heavy cycle, replaced wholesale — not stubbed provider-by-provider.
@Module({})
class EmptyCommandsModule {}
// The ONLY genuine legacy dependency of the real ChatController, supplied inertly and globally so
// the pre-refactor controller instantiates without dragging AgentModule into the graph.
@Global()
@Module({
providers: [{ provide: AgentService, useValue: {} }],
exports: [AgentService],
})
class LegacyControllerDepsModule {}
const ORIGINAL_RUNTIME_ENV = process.env['CHAT_HARNESS_RUNTIME'];
afterEach(() => {
if (ORIGINAL_RUNTIME_ENV === undefined) delete process.env['CHAT_HARNESS_RUNTIME'];
else process.env['CHAT_HARNESS_RUNTIME'] = ORIGINAL_RUNTIME_ENV;
});
/**
* Boot the real ChatModule with only the unrelated cycle bounded away. `mode` is set through the
* genuine production env contract before providers instantiate. The optional overrides replace
* the registry / conversation-service the router injects, exercising the pi-rpc precondition
* branches through the ACTUAL module (they are no-ops today because those tokens are not yet in
* the graph — which is exactly why the router-retrieval assertions go red).
*/
async function bootChatModule(
mode: ChatRuntimeMode,
overrides: {
registryAdapters?: readonly string[];
conversationService?: HarnessConversationServiceBinding;
} = {},
): Promise<TestingModule> {
if (mode === 'pi-rpc') process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
else delete process.env['CHAT_HARNESS_RUNTIME'];
let builder = Test.createTestingModule({
imports: [LegacyControllerDepsModule, ChatModule],
})
.overrideModule(CommandsModule)
.useModule(EmptyCommandsModule)
.overrideProvider(ChatGateway)
.useValue({})
.overrideGuard(AuthGuard)
.useValue({ canActivate: () => true });
if (overrides.registryAdapters) {
builder = builder
.overrideProvider(HARNESS_REGISTRY)
.useValue(registryWith(overrides.registryAdapters));
}
if (overrides.conversationService !== undefined) {
builder = builder
.overrideProvider(HARNESS_CONVERSATION_SERVICE)
.useValue(overrides.conversationService);
}
return builder.compile();
}
// Capture an init rejection without letting a resolved init masquerade as success.
const initError = (moduleRef: TestingModule): Promise<unknown> =>
moduleRef.init().then(
() => new Error('module init resolved but the contract requires it to reject'),
(err: unknown) => err,
);
it('legacy mode: the actual router resolves the embedded runtime, the actual registry is empty, and the conversation-service token is the unavailable sentinel', async () => {
const moduleRef = await bootChatModule('legacy');
try {
await moduleRef.init();
const router = moduleRef.get(ChatRuntimeRouter, { strict: false });
expect(router.active.kind).toBe('embedded');
const registry = moduleRef.get<HarnessRegistry>(HARNESS_REGISTRY, { strict: false });
expect(registry).toBeInstanceOf(HarnessRegistry);
expect(registry.list()).toHaveLength(0);
const service = moduleRef.get<HarnessConversationServiceBinding>(
HARNESS_CONVERSATION_SERVICE,
{
strict: false,
},
);
expect(service).toBe(HARNESS_CONVERSATION_SERVICE_UNAVAILABLE);
} finally {
await moduleRef.close();
}
});
it('pi-rpc mode over the REAL empty registry fails closed at init with the typed adapter-unavailable error', async () => {
const moduleRef = await bootChatModule('pi-rpc');
try {
const err = await initError(moduleRef);
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('adapter_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
} finally {
await closeIgnoringFailedInit(moduleRef);
}
});
it('pi-rpc mode with a pi adapter present but the sentinel conversation service fails closed with the typed conversation-service-unavailable error', async () => {
const moduleRef = await bootChatModule('pi-rpc', {
registryAdapters: ['pi'],
conversationService: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
try {
const err = await initError(moduleRef);
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('conversation_service_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
} finally {
await closeIgnoringFailedInit(moduleRef);
}
});
it('pi-rpc mode with a pi adapter and a bound conversation service: the actual router selects the harness runtime', async () => {
const moduleRef = await bootChatModule('pi-rpc', {
registryAdapters: ['pi'],
conversationService: boundConversationService,
});
try {
await moduleRef.init();
const router = moduleRef.get(ChatRuntimeRouter, { strict: false });
expect(router.active.kind).toBe('harness');
} finally {
await moduleRef.close();
}
});
});
/**
* Task Five, Step Two — group 2 (WHOLE production `AppModule` boot, legacy end-to-end wiring).
*
* The groups above bound away the heavy cycle to isolate the router. This group instead boots the
* ACTUAL production `AppModule` (the exact graph `main.ts` runs) in the default LEGACY chat-runtime
* mode, overriding ONLY the storage/network side-effect adapters so the boot is bounded and offline
* — never the chat/router/harness/reload/commands surface under test. The bounded fakes are exactly
* the disk/network leaves:
* - `ProviderService` (the #1 hang risk: its real `onModuleInit` starts an unref'd health-check
* `setInterval` and fetches Ollama over HTTP) → inert no-op instance;
* - `DB_HANDLE`/`DB` → a fake Drizzle-shaped handle that satisfies `runPgliteMigrations` (the local
* tier's `DatabaseModule.onModuleInit`) AND `DefaultRoutingRulesSeed.onModuleInit` (which reads a
* system-rule count — the fake reports rules already present so the seed insert is skipped),
* opening no real database;
* - `STORAGE_ADAPTER`/`MEMORY`/`MEMORY_ADAPTER`/`AUTH`/`BRAIN`/`LOG_SERVICE` → inert fakes so no
* storage/auth/log backend is contacted.
* Local tier (the repo's `mosaic.config.json`) already disables BullMQ/Redis and the queue handles;
* Discord/Telegram/MCP plugins are env-gated and disarmed by deleting their tokens. Nothing about the
* router, `ChatModule`, `HarnessModule`, or `ChatGateway` is faked — those come from the REAL graph.
*
* The boot+init MUST SUCCEED cleanly (proven by `beforeAll` completing and the ChatGateway test
* passing). Red-first: on this branch `ChatRuntimeRouter` is registered in NO module (ChatModule
* provides only ChatGateway), so `moduleRef.get(ChatRuntimeRouter)` throws `UnknownElementException`
* — a WIRING gap, NOT an init failure. That single retrieval is the intended behavioural red; it
* flips green once Step Three registers the exclusive router. The ChatGateway retrieval and its
* browser-facing method surface are asserted alongside and pass today, pinning that the boot itself
* is healthy so the router failure cannot be mistaken for a mis-shaped fake or an unbounded side
* effect.
*/
describe('AppModule production boot — legacy ChatRuntimeRouter wiring (Task Five, Step Two group 2)', () => {
// A Drizzle-shaped fake that satisfies both DB consumers reached during a local-tier init:
// • runPgliteMigrations(): reads handle.db.$client.exec + handle.db.execute(SELECT hashes);
// exec is a no-op and execute yields an empty ledger, so migration statements no-op through.
// • DefaultRoutingRulesSeed.seedDefaultRules(): db.select().from().where() must resolve to a
// row set — we report a non-zero system-rule count so the seeding INSERT branch is skipped.
const fakeDb = {
$client: { exec: async (): Promise<void> => {} },
execute: async (): Promise<{ rows: unknown[] }> => ({ rows: [] }),
select: () => ({
from: () => ({
where: async (): Promise<Array<{ count: number }>> => [{ count: 1 }],
}),
}),
insert: () => ({ values: async (): Promise<void> => {} }),
};
const fakeDbHandle = { db: fakeDb, close: async (): Promise<void> => {} };
const fakeStorageAdapter = {
name: 'fake',
migrate: async (): Promise<void> => {},
close: async (): Promise<void> => {},
};
// Inert stand-in for the real ProviderService: no health-check interval, no Ollama fetch.
const fakeProviderService = {
onModuleInit: async (): Promise<void> => {},
onModuleDestroy: (): void => {},
getRegistry: () => ({
getAvailable: () => [],
getAll: () => [],
find: () => undefined,
}),
getDefaultModel: () => undefined,
listAvailableModels: () => [],
listProviders: () => [],
getAdapter: () => undefined,
getProvidersHealth: () => [],
};
const fakeBrain = { conversations: {}, agents: {} };
const BOOT_TIMEOUT_MS = 120_000;
let moduleRef: TestingModule;
let envSnapshot: Record<string, string | undefined>;
beforeAll(async () => {
envSnapshot = { ...process.env };
// Env hygiene: disarm the network-facing plugins/adapters and pin the legacy runtime mode.
delete process.env['DATABASE_URL'];
delete process.env['DISCORD_BOT_TOKEN'];
delete process.env['TELEGRAM_BOT_TOKEN'];
delete process.env['MCP_SERVERS'];
delete process.env['CHAT_HARNESS_RUNTIME']; // resolveChatRuntimeMode → 'legacy'
process.env['MOSAIC_STORAGE_TIER'] = 'local';
moduleRef = await Test.createTestingModule({ imports: [AppModule] })
// Storage/network side-effect adapters ONLY — never the router/chat/harness surface under test.
.overrideProvider('DB_HANDLE')
.useValue(fakeDbHandle)
.overrideProvider('DB')
.useValue(fakeDb)
.overrideProvider('STORAGE_ADAPTER')
.useValue(fakeStorageAdapter)
.overrideProvider('AUTH')
.useValue({})
.overrideProvider('BRAIN')
.useValue(fakeBrain)
.overrideProvider('LOG_SERVICE')
.useValue({})
.overrideProvider('MEMORY')
.useValue({})
.overrideProvider('MEMORY_ADAPTER')
.useValue({})
.overrideProvider(ProviderService)
.useValue(fakeProviderService)
.compile();
// The boot itself MUST succeed cleanly — a rejection here is a bounding failure, not the red.
await moduleRef.init();
}, BOOT_TIMEOUT_MS);
afterAll(async () => {
if (moduleRef) await moduleRef.close();
for (const key of Object.keys(process.env)) {
if (!(key in envSnapshot)) delete process.env[key];
}
for (const [key, value] of Object.entries(envSnapshot)) {
if (value === undefined) delete process.env[key];
else process.env[key] = value;
}
});
// Passes TODAY: the real ChatGateway is provided by the real ChatModule and its browser-facing
// surface exists. This pins that the whole-AppModule boot came up healthy, so the router failure
// below is unambiguously a wiring gap and not a mis-shaped fake or an unbounded side effect.
it('boots the whole AppModule and exposes the real ChatGateway with its browser-facing methods', () => {
const gateway = moduleRef.get(ChatGateway, { strict: false });
expect(typeof gateway.broadcastReload).toBe('function');
expect(typeof gateway.getModelOverride).toBe('function');
expect(typeof gateway.setModelOverride).toBe('function');
expect(typeof gateway.broadcastSessionInfo).toBe('function');
});
// RED TODAY: ChatRuntimeRouter is registered in no module on this branch, so this retrieval throws
// UnknownElementException — the intended red-first wiring failure. GREEN once Step Three registers
// the exclusive router in the production graph, where legacy mode resolves the embedded runtime.
it('resolves the exclusive ChatRuntimeRouter to the embedded runtime in legacy mode', () => {
const router = moduleRef.get(ChatRuntimeRouter, { strict: false });
expect(router.active.kind).toBe('embedded');
});
});
@@ -0,0 +1,173 @@
import { Injectable, type OnModuleInit } from '@nestjs/common';
import { HarnessRegistry } from '../harness/harness.registry.js';
import {
isHarnessConversationServiceAvailable,
type HarnessConversationServiceBinding,
} from '../harness/harness.tokens.js';
import type {
ChatRuntime,
ChatRuntimeMode,
LegacyBrowserMessagePayload,
LegacyEmbeddedChatPort,
LegacyRuntimeResult,
LegacyRuntimeStream,
LegacySessionPresentation,
LegacySocketTurnLease,
OwnedConversationContext,
VerifiedDiscordIngressContext,
VerifiedDiscordTurnLease,
} from './chat-runtime.js';
import { ChatRuntimeUnavailableError, resolveChatRuntimeMode } from './chat-runtime.js';
/** The fixed fail-closed result for a legacy browser operation issued under `pi-rpc`. */
const RUNTIME_UNSUPPORTED = {
ok: false as const,
code: 'runtime_unsupported' as const,
retryable: false as const,
};
/**
* Resolves the one live {@link ChatRuntime} for this process and enforces the
* `pi-rpc` readiness preconditions at module init — before the gateway accepts
* traffic. It never falls back from `pi-rpc` to embedded execution: an unmet
* `pi-rpc` precondition is a typed startup failure ({@link ChatRuntimeUnavailableError}),
* and until `onModuleInit` selects a runtime, {@link active} throws rather than
* exposing any runtime — a failed `pi-rpc` init can never leak the embedded one.
*/
@Injectable()
export class ChatRuntimeRouter implements OnModuleInit, LegacyEmbeddedChatPort {
private readonly mode: ChatRuntimeMode;
/** The single resolved runtime. Undefined until a successful `onModuleInit`. */
private resolved: ChatRuntime | undefined;
constructor(
private readonly harnessRegistry: HarnessRegistry,
private readonly conversationService: HarnessConversationServiceBinding,
private readonly embedded: ChatRuntime,
private readonly harness: ChatRuntime,
mode: ChatRuntimeMode = resolveChatRuntimeMode(),
) {
this.mode = mode;
}
onModuleInit(): void {
if (this.mode === 'legacy') {
// Legacy ignores the pi-rpc preconditions entirely and always runs embedded.
this.resolved = this.embedded;
return;
}
// pi-rpc: both preconditions are hard startup failures, checked in a fixed order.
if (!this.harnessRegistry.has('pi')) {
this.resolved = undefined;
throw new ChatRuntimeUnavailableError('adapter_unavailable');
}
if (!isHarnessConversationServiceAvailable(this.conversationService)) {
this.resolved = undefined;
throw new ChatRuntimeUnavailableError('conversation_service_unavailable');
}
this.resolved = this.harness;
}
get active(): ChatRuntime {
if (this.resolved === undefined) {
// Reached only if init has not run or failed closed; never expose a runtime here.
throw new Error('The chat runtime is not available: startup did not resolve a runtime.');
}
return this.resolved;
}
/**
* The process-wide mode, available before {@link onModuleInit}. Production handlers read
* this to fail a legacy browser turn closed under `pi-rpc` *before* parsing the payload as
* either browser-legacy input or a Discord envelope — never to branch into a fallback.
*/
get runtimeMode(): ChatRuntimeMode {
return this.mode;
}
/**
* The embedded runtime narrowed to its port. Only reached on the legacy path (and for the
* verified-Discord op in both modes), where the injected runtime is always a real
* `EmbeddedChatRuntime`. The router spec constructs the router with a bare `{ kind }` stub
* but never invokes a port op, so this narrowing is never exercised against the stub.
*/
private get embeddedPort(): LegacyEmbeddedChatPort {
return this.embedded as unknown as LegacyEmbeddedChatPort;
}
// --- LegacyEmbeddedChatPort: legacy browser operations fail closed under pi-rpc ---
completeLegacyRestTurn(
context: OwnedConversationContext,
input: Readonly<{ content: string }>,
): Promise<
LegacyRuntimeResult<Readonly<{ text: string; presentation: LegacySessionPresentation }>>
> {
if (this.mode === 'pi-rpc') {
return Promise.resolve(RUNTIME_UNSUPPORTED);
}
return this.embeddedPort.completeLegacyRestTurn(context, input);
}
prepareLegacySocketTurn(
context: OwnedConversationContext,
input: LegacyBrowserMessagePayload,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<LegacySocketTurnLease>> {
if (this.mode === 'pi-rpc') {
return Promise.resolve(RUNTIME_UNSUPPORTED);
}
return this.embeddedPort.prepareLegacySocketTurn(context, input, stream);
}
setLegacyThinking(
context: OwnedConversationContext,
level: string,
): LegacyRuntimeResult<LegacySessionPresentation> {
if (this.mode === 'pi-rpc') {
return RUNTIME_UNSUPPORTED;
}
return this.embeddedPort.setLegacyThinking(context, level);
}
abortLegacyTurn(context: OwnedConversationContext): Promise<LegacyRuntimeResult<void>> {
if (this.mode === 'pi-rpc') {
return Promise.resolve(RUNTIME_UNSUPPORTED);
}
return this.embeddedPort.abortLegacyTurn(context);
}
applyLegacyModelOverride(
context: OwnedConversationContext,
modelId: string,
): LegacyRuntimeResult<LegacySessionPresentation> {
if (this.mode === 'pi-rpc') {
return RUNTIME_UNSUPPORTED;
}
return this.embeddedPort.applyLegacyModelOverride(context, modelId);
}
readLegacySessionPresentation(
context: OwnedConversationContext,
): LegacyRuntimeResult<LegacySessionPresentation> {
if (this.mode === 'pi-rpc') {
return RUNTIME_UNSUPPORTED;
}
return this.embeddedPort.readLegacySessionPresentation(context);
}
/**
* Verified Discord ingress bypasses browser mode: it is embedded-only in BOTH modes and
* never reaches the harness or routing-engine selection. It is reached only through a
* {@link VerifiedDiscordIngressContext}, which exists only after every ingress check.
*/
dispatchVerifiedDiscordIngress(
context: VerifiedDiscordIngressContext,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<VerifiedDiscordTurnLease>> {
return this.embeddedPort.dispatchVerifiedDiscordIngress(context, stream);
}
}
+273
View File
@@ -0,0 +1,273 @@
import type { ChannelAttachmentDto, RoutingDecisionInfo } from '@mosaicstack/types';
/**
* The single chat execution strategy resolved by {@link ChatRuntimeRouter}.
*
* Exactly one runtime is live per process. There is no union that lets a
* `pi-rpc` deployment silently fall back to embedded execution: an unmet
* `pi-rpc` precondition is a typed startup failure, never a downgrade.
*/
export type ChatRuntimeMode = 'legacy' | 'pi-rpc';
export type ChatRuntimeKind = 'embedded' | 'harness';
/** The resolved runtime. Slice Zero exposes only its immutable {@link ChatRuntimeKind}. */
export interface ChatRuntime {
readonly kind: ChatRuntimeKind;
}
/** Why the `pi-rpc` runtime could not be made ready. Both are hard startup failures. */
export type ChatRuntimeUnavailableReason =
| 'adapter_unavailable'
| 'conversation_service_unavailable';
/**
* Raised at module init when `pi-rpc` mode is selected but its preconditions are
* unmet. Carries only fixed, browser-safe text — never a raw exception message,
* stack, or provider detail — and reports the frozen ack code `runtime_unsupported`.
*/
export class ChatRuntimeUnavailableError extends Error {
readonly code = 'runtime_unsupported' as const;
readonly reason: ChatRuntimeUnavailableReason;
constructor(reason: ChatRuntimeUnavailableReason) {
super(
reason === 'adapter_unavailable'
? 'The pi-rpc chat runtime is unavailable: no "pi" harness adapter is registered.'
: 'The pi-rpc chat runtime is unavailable: the harness conversation service is not bound.',
);
this.name = 'ChatRuntimeUnavailableError';
this.reason = reason;
}
}
/**
* Resolves the process-wide chat runtime mode from the environment. Anything other
* than the exact opt-in token `pi-rpc` keeps the legacy embedded runtime.
*/
export function resolveChatRuntimeMode(
env: Record<string, string | undefined> = process.env,
): ChatRuntimeMode {
return env['CHAT_HARNESS_RUNTIME'] === 'pi-rpc' ? 'pi-rpc' : 'legacy';
}
// ---------------------------------------------------------------------------
// Transitional embedded chat port (Task Five).
//
// The legacy embedded browser behaviour is moved behind this exact interface so
// neither the controller nor the gateway retains AgentService, RoutingEngine,
// session, `piSession`, metric, listener, or channel access. `EmbeddedChatRuntime`
// implements the port; `ChatRuntimeRouter` exposes the same narrowly named
// operations and returns `runtime_unsupported` before touching Embedded for legacy
// browser operations when the mode is `pi-rpc`.
//
// The names are frozen (spec jarvis-brain@1c629b06). Legacy REST completion,
// legacy Socket streaming, P3 harness turns, and verified Discord are distinct
// transport/trust capabilities — there is deliberately no generic
// `sendConversationTurn` nor an AgentService-shaped mirror on the router.
// ---------------------------------------------------------------------------
/**
* Phantom brand keeping {@link OwnedConversationContext} nominally distinct so browser
* DTOs are never structurally assignable to it. The factory that mints one may be called
* only after authentication with `scopeFromUser(...)`, never with payload authority fields.
*/
declare const ownedConversationContextBrand: unique symbol;
/** Gateway-only ownership context. Embedded rechecks owner+tenant on every operation. */
export interface OwnedConversationContext {
readonly [ownedConversationContextBrand]: true;
readonly conversationId: string;
readonly scope: Readonly<{ userId: string; tenantId: string }>;
}
/**
* Every non-`ok` legacy runtime outcome. Missing, foreign, and no-longer-owned
* conversations all collapse to `conversation_unavailable`. Ownership/mode/validation
* failures are total results and never throw.
*/
export type LegacyRuntimeFailure =
| { readonly ok: false; readonly code: 'runtime_unsupported'; readonly retryable: false }
| { readonly ok: false; readonly code: 'conversation_unavailable'; readonly retryable: false }
| { readonly ok: false; readonly code: 'request_invalid'; readonly retryable: false }
| {
readonly ok: false;
readonly code: 'thinking_level_invalid';
readonly retryable: false;
readonly availableThinkingLevels: readonly string[];
}
| { readonly ok: false; readonly code: 'runtime_unavailable'; readonly retryable: true }
| { readonly ok: false; readonly code: 'turn_already_dispatched'; readonly retryable: false }
| { readonly ok: false; readonly code: 'operation_failed'; readonly retryable: boolean }
| { readonly ok: false; readonly code: 'timeout'; readonly retryable: true };
/** Total result: an `ok` value or one of the fixed {@link LegacyRuntimeFailure} codes. */
export type LegacyRuntimeResult<T> =
| { readonly ok: true; readonly value: T }
| LegacyRuntimeFailure;
/** User-facing session projection. Carries no session object, handle, or credential path. */
export interface LegacySessionPresentation {
readonly provider: string;
readonly modelId: string;
readonly thinkingLevel: string;
readonly availableThinkingLevels: readonly string[];
readonly agentName?: string;
readonly routingDecision?: RoutingDecisionInfo;
}
/** Terminal usage stats, normalized by Embedded from AgentService metrics. */
export interface LegacyUsage {
readonly provider: string;
readonly modelId: string;
readonly thinkingLevel: string;
readonly tokens: Readonly<{
input: number;
output: number;
cacheRead: number;
cacheWrite: number;
total: number;
}>;
readonly cost: number;
readonly context: Readonly<{ percent: number | null; window: number }>;
}
/**
* Normalized stream event. Exposes no `AgentSession`, `piSession`, native handle, raw
* exception, tool arguments, or credential-bearing path — the gateway sees only these.
*/
export type LegacyRuntimeEvent =
| { readonly type: 'started' }
| { readonly type: 'text_delta'; readonly text: string }
| { readonly type: 'thinking_delta'; readonly text: string }
| {
readonly type: 'tool_started';
readonly toolCallId: string;
readonly toolName: string;
}
| {
readonly type: 'tool_finished';
readonly toolCallId: string;
readonly toolName: string;
readonly isError: boolean;
}
| { readonly type: 'settled'; readonly usage?: LegacyUsage };
/** Legacy browser message input. Authority fields are advisory only; scope comes from the context. */
export interface LegacyBrowserMessagePayload {
readonly content: string;
readonly provider?: string;
readonly modelId?: string;
readonly agentId?: string;
readonly attachments?: readonly ChannelAttachmentDto[];
}
/** A prepared-but-not-yet-dispatched legacy socket turn. */
export interface LegacySocketTurnLease {
readonly presentation: LegacySessionPresentation;
/**
* Atomically one-shot and scope-rechecking. A second call returns
* `turn_already_dispatched` and performs zero prompt/tool effects.
*/
dispatch(): Promise<LegacyRuntimeResult<void>>;
/** Idempotent, non-throwing. Removes listener and channel, including partial setup. */
dispose(): Promise<void>;
}
/**
* Phantom brand for {@link VerifiedDiscordIngressContext}. Minted only after service-token
* auth plus signature, allowlist, binding, expected-route, replay, configured-agent,
* forced-scope, and attachment-normalization checks.
*/
declare const verifiedDiscordIngressContextBrand: unique symbol;
/** Fully-verified Discord ingress. Contains no socket, envelope, signature, token, or escape hatch. */
export interface VerifiedDiscordIngressContext {
readonly [verifiedDiscordIngressContextBrand]: true;
readonly conversationId: string;
readonly scope: Readonly<{ userId: string; tenantId: string }>;
readonly configuredAgent: Readonly<{ agentConfigId: string; instanceId: string }>;
readonly content: string;
readonly attachments?: readonly ChannelAttachmentDto[];
readonly correlationId: string;
readonly discordMessageId: string;
readonly discordUserId: string;
}
/** Verified-Discord turn lease. Same atomic one-shot dispatch and idempotent dispose rules. */
export interface VerifiedDiscordTurnLease {
readonly presentation: LegacySessionPresentation;
dispatch(): Promise<LegacyRuntimeResult<void>>;
dispose(): Promise<void>;
}
/** Server-owned egress projection the runtime pushes normalized events into. */
export interface LegacyRuntimeStream {
/** Server-derived, e.g. `websocket:<socket-id>`. Never client-supplied. */
readonly channelId: string;
onEvent(event: LegacyRuntimeEvent): void;
}
/**
* The exact transitional port. `EmbeddedChatRuntime` implements it; `ChatRuntimeRouter`
* mirrors the operation names and fails closed with `runtime_unsupported` for legacy
* browser operations under `pi-rpc`.
*/
export interface LegacyEmbeddedChatPort {
completeLegacyRestTurn(
context: OwnedConversationContext,
input: Readonly<{ content: string }>,
): Promise<
LegacyRuntimeResult<Readonly<{ text: string; presentation: LegacySessionPresentation }>>
>;
prepareLegacySocketTurn(
context: OwnedConversationContext,
input: LegacyBrowserMessagePayload,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<LegacySocketTurnLease>>;
setLegacyThinking(
context: OwnedConversationContext,
level: string,
): LegacyRuntimeResult<LegacySessionPresentation>;
abortLegacyTurn(context: OwnedConversationContext): Promise<LegacyRuntimeResult<void>>;
applyLegacyModelOverride(
context: OwnedConversationContext,
modelId: string,
): LegacyRuntimeResult<LegacySessionPresentation>;
readLegacySessionPresentation(
context: OwnedConversationContext,
): LegacyRuntimeResult<LegacySessionPresentation>;
dispatchVerifiedDiscordIngress(
context: VerifiedDiscordIngressContext,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<VerifiedDiscordTurnLease>>;
}
/**
* Mints an {@link OwnedConversationContext} from a server-derived scope. Callers must pass
* a scope produced by `scopeFromUser(...)` after authentication — never a client-supplied
* authority field. The brand is phantom, so this is the only way to obtain the branded type.
*/
export function ownConversation(
conversationId: string,
scope: Readonly<{ userId: string; tenantId: string }>,
): OwnedConversationContext {
return { conversationId, scope } as unknown as OwnedConversationContext;
}
/**
* Mints a {@link VerifiedDiscordIngressContext}. Callers must have already completed every
* ingress check (service-token auth, signature, allowlist, binding, expected-route, replay,
* configured-agent, forced-scope, attachment normalization) before calling this.
*/
export function verifyDiscordIngress(
fields: Omit<VerifiedDiscordIngressContext, typeof verifiedDiscordIngressContextBrand>,
): VerifiedDiscordIngressContext {
return { ...fields } as unknown as VerifiedDiscordIngressContext;
}
+32 -63
View File
@@ -3,21 +3,20 @@ import {
Post,
Body,
Logger,
ForbiddenException,
HttpException,
HttpStatus,
NotFoundException,
Inject,
UseGuards,
} from '@nestjs/common';
import type { AgentSessionEvent } from '@mariozechner/pi-coding-agent';
import { Throttle } from '@nestjs/throttler';
import { AgentService } from '../agent/agent.service.js';
import { AuthGuard } from '../auth/auth.guard.js';
import { CurrentUser } from '../auth/current-user.decorator.js';
import { scopeFromUser, type AuthenticatedUserLike } from '../auth/session-scope.js';
import { v4 as uuid } from 'uuid';
import { ChatRequestDto } from './chat.dto.js';
import { ChatRuntimeRouter } from './chat-runtime-router.js';
import { ownConversation } from './chat-runtime.js';
import type { LegacyRuntimeFailure } from './chat-runtime.js';
interface ChatResponse {
conversationId: string;
@@ -29,7 +28,7 @@ interface ChatResponse {
export class ChatController {
private readonly logger = new Logger(ChatController.name);
constructor(@Inject(AgentService) private readonly agentService: AgentService) {}
constructor(private readonly runtime: ChatRuntimeRouter) {}
@Post()
@Throttle({ default: { limit: 10, ttl: 60_000 } })
@@ -40,68 +39,38 @@ export class ChatController {
const conversationId = body.conversationId ?? uuid();
const scope = scopeFromUser(user);
try {
let agentSession = this.agentService.getSession(conversationId, scope);
if (!agentSession) {
agentSession = await this.agentService.createSession(conversationId, {
userId: scope.userId,
tenantId: scope.tenantId,
});
}
} catch (err) {
if (err instanceof ForbiddenException) {
throw new NotFoundException('Session not found');
}
this.logger.error(
`Session creation failed for conversation=${conversationId}`,
err instanceof Error ? err.stack : String(err),
);
throw new HttpException('Agent session unavailable', HttpStatus.SERVICE_UNAVAILABLE);
}
this.logger.debug(`Handling chat request for user=${user.id}, conversation=${conversationId}`);
let responseText = '';
// The one exclusive runtime owns execution. In legacy mode this reaches the embedded runtime;
// in pi-rpc it fails closed with `runtime_unsupported` before ever touching embedded execution.
const result = await this.runtime.completeLegacyRestTurn(
ownConversation(conversationId, scope),
{ content: body.content },
);
const done = new Promise<void>((resolve, reject) => {
const timer = setTimeout(() => {
cleanup();
this.logger.error(`Agent response timed out after 120s for conversation=${conversationId}`);
reject(new Error('Agent response timed out'));
}, 120_000);
const cleanup = this.agentService.onEvent(
conversationId,
(event: AgentSessionEvent) => {
if (
event.type === 'message_update' &&
event.assistantMessageEvent.type === 'text_delta'
) {
responseText += event.assistantMessageEvent.delta;
}
if (event.type === 'agent_end') {
clearTimeout(timer);
cleanup();
resolve();
}
},
scope,
);
});
try {
await this.agentService.prompt(conversationId, body.content, scope);
await done;
} catch (err) {
if (err instanceof HttpException) throw err;
const message = err instanceof Error ? err.message : String(err);
if (message.includes('timed out')) {
throw new HttpException('Agent response timed out', HttpStatus.GATEWAY_TIMEOUT);
}
this.logger.error(`Chat prompt failed for conversation=${conversationId}`, String(err));
throw new HttpException('Agent processing failed', HttpStatus.INTERNAL_SERVER_ERROR);
if (result.ok) {
return { conversationId, text: result.value.text };
}
return { conversationId, text: responseText };
throw this.toHttpException(result, conversationId);
}
/** Maps a total {@link LegacyRuntimeFailure} to the fixed browser-safe HTTP surface. */
private toHttpException(failure: LegacyRuntimeFailure, conversationId: string): HttpException {
switch (failure.code) {
case 'conversation_unavailable':
return new NotFoundException('Session not found');
case 'request_invalid':
case 'thinking_level_invalid':
return new HttpException('Invalid chat request', HttpStatus.BAD_REQUEST);
case 'timeout':
return new HttpException('Agent response timed out', HttpStatus.GATEWAY_TIMEOUT);
case 'runtime_unsupported':
case 'runtime_unavailable':
return new HttpException('Agent runtime unavailable', HttpStatus.SERVICE_UNAVAILABLE);
default:
this.logger.error(`Chat turn failed for conversation=${conversationId}: ${failure.code}`);
return new HttpException('Agent processing failed', HttpStatus.INTERNAL_SERVER_ERROR);
}
}
}
+63 -1
View File
@@ -1,5 +1,14 @@
import type { ChannelAttachmentDto } from '@mosaicstack/types';
import { IsOptional, IsString, IsUUID, MaxLength } from 'class-validator';
import { Transform, Type } from 'class-transformer';
import {
IsNotEmpty,
IsObject,
IsOptional,
IsString,
IsUUID,
MaxLength,
ValidateNested,
} from 'class-validator';
export class ChatRequestDto {
@IsOptional()
@@ -37,3 +46,56 @@ export class ChatSocketMessageDto {
/** Validated channel attachment references; binary content is not embedded. */
attachments?: readonly ChannelAttachmentDto[];
}
/**
* Task Five, group 2 — the frozen pi-rpc `turn:send` selection triple.
*
* Each id is a required, non-empty, bounded string. There is no `@IsOptional` and no extra
* field: under `forbidNonWhitelisted` an unknown selection key is rejected, and a missing id
* fails `@IsString` (undefined is not a string) rather than silently passing.
*/
export class HarnessTurnSelectionDto {
@IsString()
@IsNotEmpty()
@MaxLength(255)
harnessId!: string;
@IsString()
@IsNotEmpty()
@MaxLength(255)
providerId!: string;
@IsString()
@IsNotEmpty()
@MaxLength(255)
modelId!: string;
}
/**
* Task Five, group 2 — the frozen wire contract for a pi-rpc `turn:send`.
*
* Validated through the production `ValidationPipe({ whitelist, forbidNonWhitelisted, transform })`:
* a UUID conversation id; `content` trimmed then bounded to 1..10_000 characters (whitespace-only
* collapses to empty and fails `@IsNotEmpty`); a nested `selection` object recursed with an
* explicit `@Type` (a bare `@ValidateNested` is masked green by class-validator's empty-metadata
* `unknownValue`); and a UUID-v4 idempotency key. No `provider`/`modelId`/`attachments` or other
* authority field is declared, so `forbidNonWhitelisted` rejects every unknown top-level key.
*/
export class HarnessTurnSendDto {
@IsUUID()
conversationId!: string;
@Transform(({ value }) => (typeof value === 'string' ? value.trim() : value))
@IsString()
@IsNotEmpty()
@MaxLength(10_000)
content!: string;
@IsObject()
@ValidateNested()
@Type(() => HarnessTurnSelectionDto)
selection!: HarnessTurnSelectionDto;
@IsUUID('4')
idempotencyKey!: string;
}
@@ -8,12 +8,31 @@ const payload: SlashCommandPayload = {
approvalId: 'approval-1',
};
/**
* Task 5 fence (F, existing control): gateway-owned command authorization/approval must
* cause ZERO chat-runtime dispatch. Placed in the gateway's chat-runtime-router slot (the
* former direct `AgentService` slot) so any accidental chat-runtime resolution throws
* loudly instead of silently passing. Because execute/approval run entirely through the
* command executor dependency and never resolve a chat runtime, this fixture is never
* triggered and the ingress stays a GREEN control.
*/
function failIfUsedChatRuntimeRouter() {
return {
onModuleInit: () => {
throw new Error('chat runtime router must not initialise on the command approval path');
},
get active(): never {
throw new Error('chat runtime must not be resolved on the command approval path');
},
};
}
function buildGateway(commandExecutor: {
execute: ReturnType<typeof vi.fn>;
createApproval: ReturnType<typeof vi.fn>;
}): ChatGateway {
return new ChatGateway(
{} as never,
failIfUsedChatRuntimeRouter() as never,
{} as never,
{} as never,
{} as never,
@@ -72,3 +91,114 @@ describe('ChatGateway command approval ingress', () => {
});
});
});
/**
* Task 5 (G3) command runtime fence. Under pi-rpc there is no embedded chat session, so
* embedded slash-commands (/model, /agent, and every other non-audited command) are fixed
* "unsupported" and MUST fail closed BEFORE reaching the command executor — never a silent
* fall-through to embedded execution. Only runtime-independent audited system commands
* (/reload) pass through as a positive control, and the approval path stays runtime-independent.
* The router stub here carries `runtimeMode: 'pi-rpc'` and throws if any runtime is resolved, so
* a fence bypass surfaces as a thrown error rather than a silent embedded dispatch.
*/
function buildPiRpcGateway(commandExecutor: {
execute: ReturnType<typeof vi.fn>;
createApproval: ReturnType<typeof vi.fn>;
}): ChatGateway {
const piRpcRouter = {
runtimeMode: 'pi-rpc' as const,
onModuleInit: () => {
throw new Error('chat runtime router must not initialise on the pi-rpc command path');
},
get active(): never {
throw new Error('chat runtime must not be resolved on the pi-rpc command path');
},
};
return new ChatGateway(
piRpcRouter as never,
{} as never,
{} as never,
{} as never,
commandExecutor as never,
{} as never,
);
}
describe('ChatGateway command runtime fence (Task 5 G3, pi-rpc)', () => {
const UNSUPPORTED = 'Slash commands are not available on this deployment.';
it.each(['model', 'agent', 'gc'])(
'fails /%s closed before the executor under pi-rpc (execute never called)',
async (command): Promise<void> => {
const commandExecutor = {
execute: vi
.fn()
.mockResolvedValue({ command, conversationId: 'conversation-1', success: true }),
createApproval: vi.fn(),
};
const gateway = buildPiRpcGateway(commandExecutor);
const client = { data: { user: { id: 'admin-1' } }, emit: vi.fn() };
await gateway.handleCommandExecute(client as never, {
command,
conversationId: 'conversation-1',
});
expect(commandExecutor.execute).toHaveBeenCalledTimes(0);
expect(client.emit).toHaveBeenCalledWith('command:result', {
command,
conversationId: 'conversation-1',
success: false,
message: UNSUPPORTED,
});
},
);
it('passes the audited /reload system command through as a positive control under pi-rpc', async (): Promise<void> => {
const reloadResult = { command: 'reload', conversationId: 'conversation-1', success: true };
const commandExecutor = {
execute: vi.fn().mockResolvedValue(reloadResult),
createApproval: vi.fn(),
};
const gateway = buildPiRpcGateway(commandExecutor);
const client = { data: { user: { id: 'admin-1' } }, emit: vi.fn() };
await gateway.handleCommandExecute(client as never, {
command: 'reload',
conversationId: 'conversation-1',
});
expect(commandExecutor.execute).toHaveBeenCalledTimes(1);
expect(commandExecutor.execute).toHaveBeenCalledWith(
{ command: 'reload', conversationId: 'conversation-1' },
{ userId: 'admin-1', tenantId: 'admin-1' },
);
expect(client.emit).toHaveBeenCalledWith('command:result', reloadResult);
});
it('keeps command approval runtime-independent under pi-rpc (createApproval still runs)', async (): Promise<void> => {
const commandExecutor = {
execute: vi.fn(),
createApproval: vi.fn().mockResolvedValue({
approvalId: 'approval-1',
expiresAt: '2026-07-12T00:05:00.000Z',
}),
};
const gateway = buildPiRpcGateway(commandExecutor);
const client = { data: { user: { id: 'admin-1' } }, emit: vi.fn() };
await gateway.handleCommandApproval(client as never, {
command: 'gc',
conversationId: 'conversation-1',
});
expect(commandExecutor.createApproval).toHaveBeenCalledWith(
{ command: 'gc', conversationId: 'conversation-1' },
{ userId: 'admin-1', tenantId: 'admin-1' },
);
expect(client.emit).toHaveBeenCalledWith(
'command:approval',
expect.objectContaining({ success: true, approvalId: 'approval-1' }),
);
});
});
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@@ -1,12 +1,59 @@
import { forwardRef, Module } from '@nestjs/common';
import { CommandsModule } from '../commands/commands.module.js';
import { HarnessModule } from '../harness/harness.module.js';
import { HarnessRegistry } from '../harness/harness.registry.js';
import {
HARNESS_CONVERSATION_SERVICE,
HARNESS_REGISTRY,
type HarnessConversationServiceBinding,
} from '../harness/harness.tokens.js';
import type { HarnessConversationService } from '@mosaicstack/types';
import { ChatGateway } from './chat.gateway.js';
import { ChatController } from './chat.controller.js';
import { ChatRuntimeRouter } from './chat-runtime-router.js';
import { EmbeddedChatRuntime } from './embedded-chat.runtime.js';
import { HarnessChatRuntime } from './harness-chat.runtime.js';
/**
* Task Five wiring. The exclusive {@link ChatRuntimeRouter} is the single chat-execution
* authority: the controller and gateway inject only the router, never `AgentService`,
* `RoutingEngineService`, or a session/`piSession` handle. The router resolves exactly one
* runtime at module init — {@link EmbeddedChatRuntime} in legacy mode, {@link HarnessChatRuntime}
* in `pi-rpc` — over the REAL {@link HarnessModule} registry and conversation-service binding.
*
* The router and the harness runtime are constructed through factories because their
* dependencies are interface/union types with no runtime injection token (the registry and
* conversation-service arrive via the string tokens exported by `HarnessModule`); the embedded
* runtime injects the class-typed `AgentService` and is provided directly.
*/
@Module({
imports: [forwardRef(() => CommandsModule)],
imports: [forwardRef(() => CommandsModule), HarnessModule],
controllers: [ChatController],
providers: [ChatGateway],
exports: [ChatGateway],
providers: [
ChatGateway,
EmbeddedChatRuntime,
{
provide: HarnessChatRuntime,
useFactory: (conversationService: HarnessConversationServiceBinding) =>
new HarnessChatRuntime(conversationService as HarnessConversationService),
inject: [HARNESS_CONVERSATION_SERVICE],
},
{
provide: ChatRuntimeRouter,
useFactory: (
registry: HarnessRegistry,
conversationService: HarnessConversationServiceBinding,
embedded: EmbeddedChatRuntime,
harness: HarnessChatRuntime,
) => new ChatRuntimeRouter(registry, conversationService, embedded, harness),
inject: [
HARNESS_REGISTRY,
HARNESS_CONVERSATION_SERVICE,
EmbeddedChatRuntime,
HarnessChatRuntime,
],
},
],
exports: [ChatGateway, ChatRuntimeRouter],
})
export class ChatModule {}
@@ -0,0 +1,532 @@
import { ForbiddenException, Injectable, Logger, NotFoundException } from '@nestjs/common';
import type { AgentSessionEvent } from '@mariozechner/pi-coding-agent';
import { AgentService, type AgentSession } from '../agent/agent.service.js';
import type { ActorTenantScope } from '../auth/session-scope.js';
import type {
ChatRuntime,
LegacyBrowserMessagePayload,
LegacyEmbeddedChatPort,
LegacyRuntimeEvent,
LegacyRuntimeResult,
LegacySessionPresentation,
LegacySocketTurnLease,
LegacyUsage,
OwnedConversationContext,
VerifiedDiscordIngressContext,
VerifiedDiscordTurnLease,
LegacyRuntimeStream,
} from './chat-runtime.js';
/** Fixed timeout for a synchronous REST turn, matching the historical controller budget. */
const REST_TURN_TIMEOUT_MS = 120_000;
/**
* The `legacy` chat runtime and the sole implementation of {@link LegacyEmbeddedChatPort}.
*
* It owns the embedded in-process execution path — the `AgentService` stack that the
* `ChatController` and `ChatGateway` drove directly before Task Five. Once the
* {@link import('./chat-runtime-router.js').ChatRuntimeRouter} fronts it, the browser
* HTTP/WebSocket legacy path and verified-Discord ingress route through THIS runtime, so
* neither the controller nor the gateway retains `AgentService`, `piSession`, session,
* listener, channel, or metric access. Ownership (`userId`/`tenantId`) is re-checked by
* `AgentService` on every operation; a missing, foreign, or no-longer-owned conversation
* collapses to `conversation_unavailable` and never throws out of the port.
*/
@Injectable()
export class EmbeddedChatRuntime implements ChatRuntime, LegacyEmbeddedChatPort {
readonly kind = 'embedded' as const;
private readonly logger = new Logger(EmbeddedChatRuntime.name);
constructor(readonly agentService: AgentService) {}
// -------------------------------------------------------------------------
// Legacy REST completion (op A)
// -------------------------------------------------------------------------
async completeLegacyRestTurn(
context: OwnedConversationContext,
input: Readonly<{ content: string }>,
): Promise<
LegacyRuntimeResult<Readonly<{ text: string; presentation: LegacySessionPresentation }>>
> {
const scope = toScope(context.scope);
const { conversationId } = context;
const resolved = await this.resolveOrCreate(conversationId, scope, {});
if (!resolved.ok) return resolved;
let responseText = '';
let timer: ReturnType<typeof setTimeout> | undefined;
let detach: (() => void) | undefined;
let disposed = false;
// One idempotent teardown owned OUTSIDE the completion promise: it clears the timeout and
// detaches the event listener exactly once, whichever of agent_end, timeout, or a prompt
// rejection fires first. Without this, a prompt() rejection surfaced through the catch below
// would return while leaving the listener attached (free to consume a later turn's events) and
// the 120s timer live (its rejection later going unobserved).
const dispose = (): void => {
if (disposed) return;
disposed = true;
if (timer !== undefined) clearTimeout(timer);
detach?.();
};
const done = new Promise<void>((resolve, reject) => {
timer = setTimeout(() => {
dispose();
reject(new Error('Agent response timed out'));
}, REST_TURN_TIMEOUT_MS);
detach = this.agentService.onEvent(
conversationId,
(event: AgentSessionEvent) => {
if (
event.type === 'message_update' &&
event.assistantMessageEvent.type === 'text_delta'
) {
responseText += event.assistantMessageEvent.delta;
}
if (event.type === 'agent_end') {
dispose();
resolve();
}
},
scope,
);
});
// Attach the prompt and the completion promise CONCURRENTLY. Awaiting prompt() first left the
// timeout unobservable until prompt settled (a hung prompt could never time out) and, worse,
// let the 120s timer reject `done` while nothing yet awaited it — a transient unhandledRejection
// window. Promise.all installs handlers on BOTH synchronously, so the timeout bounds the whole
// turn even while prompt is pending, and neither promise can reject unobserved. Success still
// requires both prompt() to resolve AND agent_end to arrive (identical to the prior sequential
// await). The idempotent dispose() clears the timer + detaches on whichever settles first.
const prompting = this.agentService.prompt(conversationId, input.content, scope);
try {
await Promise.all([prompting, done]);
} catch (err) {
dispose();
const message = err instanceof Error ? err.message : String(err);
if (message.includes('timed out')) {
return { ok: false, code: 'timeout', retryable: true };
}
this.logger.error(`Legacy REST turn failed for conversation=${conversationId}`, message);
return { ok: false, code: 'operation_failed', retryable: false };
}
const presentation = this.presentationFor(conversationId, scope) ?? resolved.presentation;
return { ok: true, value: { text: responseText, presentation } };
}
// -------------------------------------------------------------------------
// Legacy Socket streaming (op B)
// -------------------------------------------------------------------------
async prepareLegacySocketTurn(
context: OwnedConversationContext,
input: LegacyBrowserMessagePayload,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<LegacySocketTurnLease>> {
const scope = toScope(context.scope);
const { conversationId } = context;
const resolved = await this.resolveOrCreate(conversationId, scope, {
...(input.provider ? { provider: input.provider } : {}),
...(input.modelId ? { modelId: input.modelId } : {}),
...(input.agentId ? { agentConfigId: input.agentId } : {}),
});
if (!resolved.ok) return resolved;
let detach: () => void;
try {
detach = this.subscribe(conversationId, scope, stream);
} catch (err) {
// A partial listener/channel setup rolled itself back inside subscribe(); surface a total
// safe failure instead of throwing out of the port. Retryable — the attach is transient.
this.logger.error(
`Embedded socket subscription failed for conversation=${conversationId}`,
err instanceof Error ? err.message : String(err),
);
return { ok: false, code: 'runtime_unavailable', retryable: true };
}
return {
ok: true,
value: this.buildLease(
conversationId,
scope,
input.content,
input.attachments,
detach,
resolved.presentation,
),
};
}
// -------------------------------------------------------------------------
// Thinking level (op C) — synchronous, total
// -------------------------------------------------------------------------
setLegacyThinking(
context: OwnedConversationContext,
level: string,
): LegacyRuntimeResult<LegacySessionPresentation> {
const scope = toScope(context.scope);
const session = this.agentService.getSession(context.conversationId, scope);
if (!session) return CONVERSATION_UNAVAILABLE;
const availableThinkingLevels = session.piSession.getAvailableThinkingLevels();
if (!(availableThinkingLevels as readonly string[]).includes(level)) {
return {
ok: false,
code: 'thinking_level_invalid',
retryable: false,
availableThinkingLevels,
};
}
session.piSession.setThinkingLevel(level as never);
return { ok: true, value: this.presentationForSession(session) };
}
// -------------------------------------------------------------------------
// Abort (op D)
// -------------------------------------------------------------------------
async abortLegacyTurn(context: OwnedConversationContext): Promise<LegacyRuntimeResult<void>> {
const scope = toScope(context.scope);
const session = this.agentService.getSession(context.conversationId, scope);
if (!session) return CONVERSATION_UNAVAILABLE;
try {
await session.piSession.abort();
} catch (err) {
this.logger.error(
`Legacy abort failed for conversation=${context.conversationId}`,
err instanceof Error ? err.message : String(err),
);
return { ok: false, code: 'operation_failed', retryable: false };
}
return { ok: true, value: undefined };
}
// -------------------------------------------------------------------------
// Model override (synchronous, total)
// -------------------------------------------------------------------------
applyLegacyModelOverride(
context: OwnedConversationContext,
modelId: string,
): LegacyRuntimeResult<LegacySessionPresentation> {
const scope = toScope(context.scope);
const session = this.agentService.getSession(context.conversationId, scope);
if (!session) return CONVERSATION_UNAVAILABLE;
this.agentService.updateSessionModel(context.conversationId, modelId, scope);
const refreshed = this.agentService.getSession(context.conversationId, scope) ?? session;
return { ok: true, value: this.presentationForSession(refreshed) };
}
// -------------------------------------------------------------------------
// Presentation read (synchronous, total)
// -------------------------------------------------------------------------
readLegacySessionPresentation(
context: OwnedConversationContext,
): LegacyRuntimeResult<LegacySessionPresentation> {
const scope = toScope(context.scope);
const session = this.agentService.getSession(context.conversationId, scope);
if (!session) return CONVERSATION_UNAVAILABLE;
return { ok: true, value: this.presentationForSession(session) };
}
// -------------------------------------------------------------------------
// Verified Discord ingress (embedded-only in both modes)
// -------------------------------------------------------------------------
async dispatchVerifiedDiscordIngress(
context: VerifiedDiscordIngressContext,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<VerifiedDiscordTurnLease>> {
const scope = toScope(context.scope);
const { conversationId } = context;
const resolved = await this.resolveOrCreate(
conversationId,
scope,
{ agentConfigId: context.configuredAgent.agentConfigId },
{
agentConfigId: context.configuredAgent.agentConfigId,
instanceId: context.configuredAgent.instanceId,
},
);
if (!resolved.ok) return resolved;
let detach: () => void;
try {
detach = this.subscribe(conversationId, scope, stream);
} catch (err) {
// A partial listener/channel setup rolled itself back inside subscribe(); surface a total
// safe failure instead of throwing out of the port. Retryable — the attach is transient.
this.logger.error(
`Embedded Discord subscription failed for conversation=${conversationId}`,
err instanceof Error ? err.message : String(err),
);
return { ok: false, code: 'runtime_unavailable', retryable: true };
}
return {
ok: true,
value: this.buildLease(
conversationId,
scope,
context.content,
context.attachments,
detach,
resolved.presentation,
),
};
}
// -------------------------------------------------------------------------
// Shared helpers
// -------------------------------------------------------------------------
/**
* Resolves the owned session, creating it on first use. Ownership/scope rejections
* (`Forbidden`/`NotFound`) collapse to `conversation_unavailable`; any other creation
* failure surfaces as the retryable `runtime_unavailable`. On success returns the
* session presentation so callers avoid a redundant `getSession`.
*/
private async resolveOrCreate(
conversationId: string,
scope: ActorTenantScope,
extraOptions: Readonly<{ provider?: string; modelId?: string; agentConfigId?: string }>,
expectedAgent?: Readonly<{ agentConfigId: string; instanceId: string }>,
): Promise<
| { readonly ok: true; readonly presentation: LegacySessionPresentation }
| Exclude<LegacyRuntimeResult<never>, { ok: true }>
> {
// A verified-Discord turn may only run under a session whose configured identity matches the
// reconciled agent record EXACTLY (config id + resolved name). This holds for BOTH a reused
// pre-existing session AND a freshly created one: a session carrying a different configured
// agent — however it arose — is rejected rather than executed under the verified label, so we
// never silently run a different prompt/model/tool policy. A plain (non-verified) turn passes
// no expectedAgent and skips the check.
const identityMatches = (candidate: AgentSession): boolean =>
expectedAgent === undefined ||
(candidate.agentConfigId === expectedAgent.agentConfigId &&
candidate.agentName === expectedAgent.instanceId);
let session = this.agentService.getSession(conversationId, scope);
if (session && !identityMatches(session)) {
// Reused same-scope session minted under a different configured identity — reject with zero
// effects rather than dispatch a verified turn onto a foreign agent's session.
return CONVERSATION_UNAVAILABLE;
}
if (!session) {
try {
session = await this.agentService.createSession(conversationId, {
userId: scope.userId,
tenantId: scope.tenantId,
...extraOptions,
});
} catch (err) {
if (err instanceof ForbiddenException || err instanceof NotFoundException) {
return CONVERSATION_UNAVAILABLE;
}
this.logger.error(
`Embedded session creation failed for conversation=${conversationId}`,
err instanceof Error ? err.stack : String(err),
);
return { ok: false, code: 'runtime_unavailable', retryable: true };
}
// The just-created session must ALSO carry the reconciled identity before any effect. A
// createSession that returns a session under a different configured agent (misconfiguration
// or a substituted factory) is rejected here, before subscribe/persist/ack/prompt.
if (!identityMatches(session)) {
return CONVERSATION_UNAVAILABLE;
}
}
return { ok: true, presentation: this.presentationForSession(session) };
}
/** Installs a normalizing event listener that forwards to the server-owned stream. */
private subscribe(
conversationId: string,
scope: ActorTenantScope,
stream: LegacyRuntimeStream,
): () => void {
const unsubscribe = this.agentService.onEvent(
conversationId,
(event: AgentSessionEvent) => {
const normalized = this.normalizeEvent(conversationId, scope, event);
if (normalized) stream.onEvent(normalized);
},
scope,
);
try {
this.agentService.addChannel(conversationId, stream.channelId, scope);
} catch (err) {
// Partial setup: the listener was acquired but the channel attach failed. Roll back
// exactly what was acquired (the listener) before the failure escapes, so no leaked
// subscription survives; the caller converts the rethrow into a total safe failure.
try {
unsubscribe();
} catch {
/* idempotent teardown */
}
throw err;
}
return () => {
try {
unsubscribe();
} catch {
/* idempotent teardown */
}
try {
this.agentService.removeChannel(conversationId, stream.channelId, scope);
} catch {
/* idempotent teardown */
}
};
}
/** Builds an atomically one-shot, scope-rechecking dispatch lease. */
private buildLease(
conversationId: string,
scope: ActorTenantScope,
content: string,
attachments: VerifiedDiscordIngressContext['attachments'],
detach: () => void,
presentation: LegacySessionPresentation,
): LegacySocketTurnLease & VerifiedDiscordTurnLease {
let dispatched = false;
let disposed = false;
return {
presentation,
dispatch: async (): Promise<LegacyRuntimeResult<void>> => {
if (dispatched) {
return { ok: false, code: 'turn_already_dispatched', retryable: false };
}
dispatched = true;
try {
await this.agentService.prompt(conversationId, content, scope, attachments);
} catch (err) {
this.logger.error(
`Legacy dispatch failed for conversation=${conversationId}`,
err instanceof Error ? err.message : String(err),
);
return { ok: false, code: 'operation_failed', retryable: false };
}
return { ok: true, value: undefined };
},
dispose: async (): Promise<void> => {
if (disposed) return;
disposed = true;
detach();
},
};
}
/** Normalizes a raw agent event into the redaction-agnostic transport event, or drops it. */
private normalizeEvent(
conversationId: string,
scope: ActorTenantScope,
event: AgentSessionEvent,
): LegacyRuntimeEvent | undefined {
switch (event.type) {
case 'agent_start':
return { type: 'started' };
case 'agent_end':
return { type: 'settled', ...this.usageFor(conversationId, scope) };
case 'message_update': {
const assistant = event.assistantMessageEvent;
if (assistant.type === 'text_delta') return { type: 'text_delta', text: assistant.delta };
if (assistant.type === 'thinking_delta') {
return { type: 'thinking_delta', text: assistant.delta };
}
return undefined;
}
case 'tool_execution_start':
return { type: 'tool_started', toolCallId: event.toolCallId, toolName: event.toolName };
case 'tool_execution_end':
return {
type: 'tool_finished',
toolCallId: event.toolCallId,
toolName: event.toolName,
isError: event.isError,
};
default:
return undefined;
}
}
/**
* Gathers terminal usage from the Pi session and records it into session metrics.
* Embedded owns AgentService metrics; the gateway never touches `piSession` stats.
*/
private usageFor(conversationId: string, scope: ActorTenantScope): { usage?: LegacyUsage } {
const session = this.agentService.getSession(conversationId, scope);
const piSession = session?.piSession;
const stats = piSession?.getSessionStats();
if (!session || !stats) return {};
const contextUsage = piSession?.getContextUsage();
const tokens = {
input: stats.tokens?.input ?? 0,
output: stats.tokens?.output ?? 0,
cacheRead: stats.tokens?.cacheRead ?? 0,
cacheWrite: stats.tokens?.cacheWrite ?? 0,
total: stats.tokens?.total ?? 0,
};
this.agentService.recordTokenUsage(conversationId, { ...tokens });
return {
usage: {
provider: session.provider,
modelId: session.modelId,
thinkingLevel: piSession?.thinkingLevel ?? 'off',
tokens,
cost: stats.cost ?? 0,
context: {
percent: contextUsage?.percent ?? null,
window: contextUsage?.contextWindow ?? 0,
},
},
};
}
/** Presentation from a live session id, or undefined when no owned session exists. */
private presentationFor(
conversationId: string,
scope: ActorTenantScope,
): LegacySessionPresentation | undefined {
const session = this.agentService.getSession(conversationId, scope);
return session ? this.presentationForSession(session) : undefined;
}
/** User-facing projection carrying no session handle, credential, or raw stats. */
private presentationForSession(session: AgentSession): LegacySessionPresentation {
return {
provider: session.provider,
modelId: session.modelId,
thinkingLevel: session.piSession.thinkingLevel,
availableThinkingLevels: session.piSession.getAvailableThinkingLevels(),
...(session.agentName ? { agentName: session.agentName } : {}),
};
}
}
/** The shared terminal `conversation_unavailable` failure (missing/foreign/lost ownership). */
const CONVERSATION_UNAVAILABLE = {
ok: false as const,
code: 'conversation_unavailable' as const,
retryable: false as const,
};
/** Narrows a branded context scope to the `AgentService` actor/tenant scope (identical shape). */
function toScope(scope: Readonly<{ userId: string; tenantId: string }>): ActorTenantScope {
return { userId: scope.userId, tenantId: scope.tenantId };
}
@@ -0,0 +1,170 @@
import { describe, expect, it } from 'vitest';
import type {
AttachConversation,
ConversationSnapshot,
DetachConversation,
HarnessActorContext,
HarnessConversationService,
HarnessEventEnvelope,
HarnessSelection,
SendHarnessTurn,
TurnReceipt,
} from '@mosaicstack/types';
import { HarnessChatRuntime } from './harness-chat.runtime.js';
/**
* Task Five, Step One (harness runtime). Proves the `pi-rpc` runtime executes
* exclusively through the {@link HarnessConversationService} RPC boundary and
* forwards the caller's exact selection tuple and idempotency key without
* substitution. Red-first: the runtime is an unimplemented stub, so every
* delegation assertion fails until Step Three.
*/
const context: HarnessActorContext = {
actorId: 'actor-1',
tenantId: 'tenant-1',
seatId: 'seat-1',
correlationId: 'corr-1',
};
const selection: HarnessSelection = {
harnessId: 'pi',
providerId: 'anthropic',
modelId: 'claude-opus-4-8',
};
const conversationId = '11111111-1111-4111-8111-111111111111';
const idempotencyKey = '22222222-2222-4222-8222-222222222222';
const sendInput: SendHarnessTurn & { idempotencyKey: string } = {
context,
conversationId,
selection,
turnId: 'turn-abc',
correlationId: 'corr-1',
content: 'hello',
idempotencyKey,
};
const attachInput: AttachConversation & { afterSequence?: number } = {
context,
conversationId,
clientId: 'client-1',
selection,
afterSequence: 0,
};
const detachInput: DetachConversation = {
context,
conversationId,
clientId: 'client-1',
};
interface RecordedCalls {
attach: (AttachConversation & { afterSequence?: number })[];
detach: DetachConversation[];
send: (SendHarnessTurn & { idempotencyKey: string })[];
subscribeFrom: { conversationId: string; afterSequence: number }[];
}
const snapshot: ConversationSnapshot = {
session: {
conversationId,
nativeSessionId: 'native-1',
seatId: 'seat-1',
selection,
state: 'idle',
attachedClientIds: ['client-1'],
},
lastSequence: 0,
replay: [],
};
function build(): { runtime: HarnessChatRuntime; calls: RecordedCalls } {
const calls: RecordedCalls = { attach: [], detach: [], send: [], subscribeFrom: [] };
const service: HarnessConversationService = {
attach: (input) => {
calls.attach.push(input);
return Promise.resolve(snapshot);
},
detach: (input) => {
calls.detach.push(input);
return Promise.resolve();
},
send: (input) => {
calls.send.push(input);
// The service echoes only the requested tuple; there is no representable substitute.
const receipt: TurnReceipt = {
conversationId: input.conversationId,
turnId: 'turn-server',
correlationId: input.correlationId,
state: 'accepted',
selection: input.selection,
};
return Promise.resolve(receipt);
},
subscribeFrom: (id, afterSequence) => {
calls.subscribeFrom.push({ conversationId: id, afterSequence });
return (async function* (): AsyncIterable<HarnessEventEnvelope> {
return;
})();
},
};
return { runtime: new HarnessChatRuntime(service), calls };
}
describe('HarnessChatRuntime', () => {
it('is the harness runtime kind and needs only a HarnessConversationService', () => {
const { runtime } = build();
expect(runtime.kind).toBe('harness');
});
it('delegates send to the conversation service with the exact tuple and idempotency key', async () => {
const { runtime, calls } = build();
const receipt = await runtime.send(sendInput);
expect(calls.send).toHaveLength(1);
const firstSend = calls.send[0]!;
expect(firstSend).toEqual(sendInput);
expect(firstSend.idempotencyKey).toBe(idempotencyKey);
expect(firstSend.selection).toEqual(selection);
// The runtime must not substitute an effective tuple onto the receipt.
expect(receipt.selection).toEqual(selection);
});
it('delegates attach to the conversation service and returns its snapshot', async () => {
const { runtime, calls } = build();
const result = await runtime.attach(attachInput);
expect(calls.attach).toHaveLength(1);
expect(calls.attach[0]).toEqual(attachInput);
expect(result).toBe(snapshot);
});
it('delegates detach to the conversation service', async () => {
const { runtime, calls } = build();
await runtime.detach(detachInput);
expect(calls.detach).toHaveLength(1);
expect(calls.detach[0]).toEqual(detachInput);
});
it('delegates subscribeFrom to the conversation service journal replay', async () => {
const { runtime, calls } = build();
const iterable = runtime.subscribeFrom(conversationId, 7);
// Drain to prove it is the service-backed async iterable, not a fabricated one.
const drained: unknown[] = [];
for await (const event of iterable) {
drained.push(event);
}
expect(drained).toHaveLength(0);
expect(calls.subscribeFrom).toHaveLength(1);
expect(calls.subscribeFrom[0]).toEqual({ conversationId, afterSequence: 7 });
});
});
@@ -0,0 +1,47 @@
import type {
AttachConversation,
ConversationSnapshot,
DetachConversation,
HarnessConversationService,
HarnessEventEnvelope,
SendHarnessTurn,
TurnReceipt,
} from '@mosaicstack/types';
import type { ChatRuntime } from './chat-runtime.js';
/**
* The `pi-rpc` chat runtime. It executes browser chat exclusively through the
* harness-neutral {@link HarnessConversationService} RPC boundary — it never
* touches the embedded `AgentService`/`ProviderService`/`RoutingEngineService`
* stack, and it forwards the caller's exact selection tuple and idempotency key
* without substitution.
*
* It owns no state and adds no policy: every method forwards the caller's exact
* argument to the injected {@link HarnessConversationService} and returns its
* result unchanged, so the requested selection tuple and idempotency key can
* never be substituted on the way through.
*/
export class HarnessChatRuntime implements ChatRuntime {
readonly kind = 'harness' as const;
constructor(private readonly conversations: HarnessConversationService) {}
attach(input: AttachConversation & { afterSequence?: number }): Promise<ConversationSnapshot> {
return this.conversations.attach(input);
}
detach(input: DetachConversation): Promise<void> {
return this.conversations.detach(input);
}
send(input: SendHarnessTurn & { idempotencyKey: string }): Promise<TurnReceipt> {
return this.conversations.send(input);
}
subscribeFrom(
conversationId: string,
afterSequence: number,
): AsyncIterable<HarnessEventEnvelope> {
return this.conversations.subscribeFrom(conversationId, afterSequence);
}
}
@@ -74,13 +74,19 @@ const mockChatGateway = {
broadcastSessionInfo: vi.fn(),
};
const mockMcpClient = {
reconnectServer: vi.fn().mockResolvedValue(undefined),
getServerStatuses: vi.fn(() => []),
getToolDefinitions: vi.fn(() => []),
};
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,
} = mockMcpClient,
): CommandExecutorService {
return new CommandExecutorService(
mockRegistry as never,
@@ -36,6 +36,12 @@ const authorization = {
),
};
const mockMcpClient = {
getServerStatuses: vi.fn(() => []),
getToolDefinitions: vi.fn(() => []),
reconnectServer: vi.fn().mockResolvedValue(undefined),
};
function buildExecutor(authorizationService: unknown = authorization): CommandExecutorService {
return new CommandExecutorService(
registry as never,
@@ -46,7 +52,7 @@ function buildExecutor(authorizationService: unknown = authorization): CommandEx
{ agents: {} } as never,
null,
null,
null,
mockMcpClient as never,
authorizationService as never,
);
}
@@ -34,9 +34,7 @@ export class CommandExecutorService {
@Optional()
@Inject(forwardRef(() => ChatGateway))
private readonly chatGateway: ChatGateway | null,
@Optional()
@Inject(McpClientService)
private readonly mcpClient: McpClientService | null,
@Inject(McpClientService) private readonly mcpClient: McpClientService,
@Optional()
@Inject(CommandAuthorizationService)
private readonly authorization: CommandAuthorizationService | null = null,
@@ -548,15 +546,6 @@ export class CommandExecutorService {
args: string | null,
conversationId: string,
): Promise<SlashCommandResultPayload> {
if (!this.mcpClient) {
return {
command: 'mcp',
conversationId,
success: false,
message: 'MCP client service is not available.',
};
}
const action = args?.trim().split(/\s+/)[0] ?? 'status';
switch (action) {
@@ -11,6 +11,8 @@
* - Unknown command returns descriptive error
*/
import { describe, it, expect, vi, beforeEach } from 'vitest';
import { CommandsModule } from './commands.module.js';
import { McpClientModule } from '../mcp-client/mcp-client.module.js';
import { CommandRegistryService } from './command-registry.service.js';
import { CommandExecutorService } from './command-executor.service.js';
import type { SlashCommandPayload } from '@mosaicstack/types';
@@ -47,6 +49,12 @@ const mockBrain = {
},
};
const mockMcpClient = {
getServerStatuses: vi.fn(() => []),
getToolDefinitions: vi.fn(() => []),
reconnectServer: vi.fn().mockResolvedValue(undefined),
};
// ─── Helpers ─────────────────────────────────────────────────────────────────
function buildRegistry(): CommandRegistryService {
@@ -65,7 +73,7 @@ function buildExecutor(registry: CommandRegistryService): CommandExecutorService
mockBrain as never,
null, // reloadService (optional)
null, // chatGateway (optional)
null, // mcpClient (optional)
mockMcpClient as never,
);
}
@@ -153,6 +161,15 @@ describe('CommandRegistryService — integration', () => {
}
});
// ─── Module Wiring Tests ──────────────────────────────────────────────────────
describe('CommandsModule — Nest wiring', () => {
it('CommandsModule imports McpClientModule in its Nest metadata', () => {
const imports = Reflect.getMetadata('imports', CommandsModule) ?? [];
expect(imports).toContain(McpClientModule);
});
});
// ─── Executor Tests ───────────────────────────────────────────────────────────
describe('CommandExecutorService — integration', () => {
@@ -259,4 +276,14 @@ describe('CommandExecutorService — integration', () => {
expect(result.command).toBe(cmd);
});
}
// /mcp status reaches the required McpClientService and never reports it unavailable
it('/mcp status calls the wired McpClientService and reports the no-servers message', async () => {
const payload: SlashCommandPayload = { command: 'mcp', conversationId };
const result = await executor.execute(payload, userScope);
expect(mockMcpClient.getServerStatuses).toHaveBeenCalledOnce();
expect(result.success).toBe(true);
expect(result.message).toContain('No MCP servers configured.');
expect(result.message).not.toBe('MCP client service is not available.');
});
});
+7 -1
View File
@@ -4,6 +4,7 @@ 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 { McpClientModule } from '../mcp-client/mcp-client.module.js';
import { ReloadModule } from '../reload/reload.module.js';
import { CommandAuthorizationService } from './command-authorization.service.js';
import { CommandExecutorService } from './command-executor.service.js';
@@ -14,7 +15,12 @@ import { COMMANDS_REDIS } from './commands.tokens.js';
const COMMANDS_QUEUE_HANDLE = 'COMMANDS_QUEUE_HANDLE';
@Module({
imports: [GCModule, forwardRef(() => ReloadModule), forwardRef(() => ChatModule)],
imports: [
GCModule,
McpClientModule,
forwardRef(() => ReloadModule),
forwardRef(() => ChatModule),
],
providers: [
{
provide: COMMANDS_QUEUE_HANDLE,
+2 -1
View File
@@ -1,5 +1,6 @@
import { Global, Module } from '@nestjs/common';
import { loadConfig, type MosaicConfig } from '@mosaicstack/config';
import { resolveGatewayConfigPath } from '../env.js';
export const MOSAIC_CONFIG = 'MOSAIC_CONFIG';
@@ -8,7 +9,7 @@ export const MOSAIC_CONFIG = 'MOSAIC_CONFIG';
providers: [
{
provide: MOSAIC_CONFIG,
useFactory: (): MosaicConfig => loadConfig(),
useFactory: (): MosaicConfig => loadConfig(resolveGatewayConfigPath()),
},
],
exports: [MOSAIC_CONFIG],
@@ -0,0 +1,116 @@
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
import type { ChatRuntimeMode } from '../chat/chat-runtime.js';
import { ConversationsController } from './conversations.controller.js';
/**
* Task 5 harness fence for the conversations REST write path.
*
* Under `pi-rpc` the durable/harness conversation path (Task 15) owns message persistence, so the
* legacy direct-repository write via `POST /api/conversations/:id/messages` must be refused with a
* fixed typed `runtime_unsupported` BEFORE the repository is touched — never a duplicate write.
* Under `legacy` the endpoint keeps its current behaviour and writes through `brain.conversations`.
*
* Item 3 (single runtime-mode source of truth): the mode is the router's ONE init-time resolution,
* injected into the controller and read as `router.runtimeMode`. It is NOT re-derived from
* `process.env` at request time. The two "env is flipped after construction" tests below are the
* load-bearing guard: they pass only because the controller reads the fixed injected mode, and turn
* RED the instant the fence is reverted to `resolveChatRuntimeMode(process.env)`.
*/
const CONVERSATION_ID = '22222222-2222-4222-8222-222222222222';
const USER = { id: 'user-1' };
function sendMessageDto() {
return {
role: 'user' as const,
content: 'hello from the legacy REST write path',
metadata: undefined,
};
}
function brainWithMessageSpy() {
const addMessage = vi.fn().mockResolvedValue({
id: 'message-1',
conversationId: CONVERSATION_ID,
role: 'user',
content: 'hello from the legacy REST write path',
});
return {
brain: { conversations: { addMessage } } as never,
addMessage,
};
}
/** The controller only needs the router's immutable `runtimeMode`; supply exactly that. */
function routerFixedTo(mode: ChatRuntimeMode) {
return { runtimeMode: mode };
}
let priorMode: string | undefined;
describe('conversations REST write path — Task 5 harness fence', () => {
beforeEach(() => {
priorMode = process.env['CHAT_HARNESS_RUNTIME'];
});
afterEach(() => {
if (priorMode === undefined) delete process.env['CHAT_HARNESS_RUNTIME'];
else process.env['CHAT_HARNESS_RUNTIME'] = priorMode;
});
it('refuses the legacy repository write when the router resolved pi-rpc, before any write', async () => {
const { brain, addMessage } = brainWithMessageSpy();
const controller = new ConversationsController(brain, routerFixedTo('pi-rpc'));
await expect(
controller.addMessage(CONVERSATION_ID, sendMessageDto(), USER),
).rejects.toMatchObject({ code: 'runtime_unsupported' });
// Load-bearing: the durable/harness path owns pi-rpc persistence — the legacy repo must not be
// written, so no duplicate message can be produced.
expect(addMessage).not.toHaveBeenCalled();
});
it('writes through the repository when the router resolved legacy (GREEN control)', async () => {
const { brain, addMessage } = brainWithMessageSpy();
const controller = new ConversationsController(brain, routerFixedTo('legacy'));
const result = await controller.addMessage(CONVERSATION_ID, sendMessageDto(), USER);
expect(addMessage).toHaveBeenCalledWith(
{
conversationId: CONVERSATION_ID,
role: 'user',
content: 'hello from the legacy REST write path',
metadata: undefined,
},
USER.id,
);
expect(result).toMatchObject({ id: 'message-1', conversationId: CONVERSATION_ID });
});
it('keeps refusing under a pi-rpc router even when CHAT_HARNESS_RUNTIME is flipped to legacy after startup', async () => {
// The runtime mode is fixed at module init. A later env mutation must not reopen the fence:
// a request-time `resolveChatRuntimeMode(process.env)` read would see `legacy` and wrongly write.
process.env['CHAT_HARNESS_RUNTIME'] = 'legacy';
const { brain, addMessage } = brainWithMessageSpy();
const controller = new ConversationsController(brain, routerFixedTo('pi-rpc'));
await expect(
controller.addMessage(CONVERSATION_ID, sendMessageDto(), USER),
).rejects.toMatchObject({ code: 'runtime_unsupported' });
expect(addMessage).not.toHaveBeenCalled();
});
it('keeps writing under a legacy router even when CHAT_HARNESS_RUNTIME is flipped to pi-rpc after startup', async () => {
// Symmetric guard: a legacy-resolved router must keep writing regardless of the live env, so a
// request-time env read of `pi-rpc` cannot spuriously refuse a legitimate legacy write.
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
const { brain, addMessage } = brainWithMessageSpy();
const controller = new ConversationsController(brain, routerFixedTo('legacy'));
await controller.addMessage(CONVERSATION_ID, sendMessageDto(), USER);
expect(addMessage).toHaveBeenCalledTimes(1);
});
});
@@ -6,6 +6,7 @@ import {
ForbiddenException,
Get,
HttpCode,
HttpException,
HttpStatus,
Inject,
NotFoundException,
@@ -19,6 +20,7 @@ import type { Brain } from '@mosaicstack/brain';
import { BRAIN } from '../brain/brain.tokens.js';
import { AuthGuard } from '../auth/auth.guard.js';
import { CurrentUser } from '../auth/current-user.decorator.js';
import { ChatRuntimeRouter } from '../chat/chat-runtime-router.js';
import {
CreateConversationDto,
UpdateConversationDto,
@@ -26,10 +28,41 @@ import {
SearchMessagesDto,
} from './conversations.dto.js';
/**
* Under `pi-rpc` the durable/harness conversation path (Task 15) owns message persistence, so the
* legacy direct-repository write must fail closed with a fixed typed `runtime_unsupported` before
* the repository is touched — never a duplicate write. The `code` field is exposed at the top level
* so callers can discriminate the refusal while the 503 status carries the browser-safe surface.
*/
class HarnessRuntimeWriteUnsupportedException extends HttpException {
readonly code = 'runtime_unsupported' as const;
constructor() {
super(
{
code: 'runtime_unsupported',
message:
'Conversation message writes are handled by the harness runtime on this deployment.',
},
HttpStatus.SERVICE_UNAVAILABLE,
);
}
}
@Controller('api/conversations')
@UseGuards(AuthGuard)
export class ConversationsController {
constructor(@Inject(BRAIN) private readonly brain: Brain) {}
/**
* `router` supplies the ONE immutable runtime mode resolved at module init (Task 5, item 3).
* The pre-write fence reads `router.runtimeMode`, never `resolveChatRuntimeMode(process.env)` at
* request time — a single source of truth, so the controller cannot disagree with the router
* about the live runtime if the environment is mutated after startup. Narrowed to `runtimeMode`
* so this class depends on nothing else the router exposes.
*/
constructor(
@Inject(BRAIN) private readonly brain: Brain,
@Inject(ChatRuntimeRouter) private readonly router: Pick<ChatRuntimeRouter, 'runtimeMode'>,
) {}
@Get()
async list(@CurrentUser() user: { id: string }) {
@@ -94,6 +127,13 @@ export class ConversationsController {
@Body() dto: SendMessageDto,
@CurrentUser() user: { id: string },
) {
// Fail the legacy repository write closed under pi-rpc BEFORE touching the repository — the
// harness path owns persistence there, so a direct write would duplicate the message. The mode
// comes from the router's init-time resolution, not a request-time env read.
if (this.router.runtimeMode === 'pi-rpc') {
throw new HarnessRuntimeWriteUnsupportedException();
}
const message = await this.brain.conversations.addMessage(
{
conversationId: id,
@@ -1,7 +1,14 @@
import { Module } from '@nestjs/common';
import { ChatModule } from '../chat/chat.module.js';
import { ConversationsController } from './conversations.controller.js';
/**
* Imports {@link ChatModule} solely to inject its exported {@link ChatRuntimeRouter} into
* {@link ConversationsController}, so the REST write fence reads the same init-time runtime mode the
* router resolved — one source of truth, no duplicate provider, no global token, no AppModule edit.
*/
@Module({
imports: [ChatModule],
controllers: [ConversationsController],
})
export class ConversationsModule {}
@@ -0,0 +1,19 @@
import 'reflect-metadata';
import { Test } from '@nestjs/testing';
import { describe, expect, it } from 'vitest';
import { CoordModule } from './coord.module.js';
import { InteractionCoordinationService } from './interaction-coordination.service.js';
import { AuthGuard } from '../auth/auth.guard.js';
describe('CoordModule DI (compiled-metadata boot)', () => {
it('resolves InteractionCoordinationService through Nest DI', async () => {
const moduleRef = await Test.createTestingModule({ imports: [CoordModule] })
.overrideGuard(AuthGuard)
.useValue({ canActivate: (): boolean => true })
.compile();
expect(moduleRef.get(InteractionCoordinationService)).toBeInstanceOf(
InteractionCoordinationService,
);
await moduleRef.close();
});
});
@@ -1,4 +1,4 @@
import { Inject, Injectable } from '@nestjs/common';
import { Inject, Injectable, Optional } from '@nestjs/common';
import {
InteractionCoordinationClient,
type CoordinationObservation,
@@ -13,6 +13,7 @@ import type { CreateHandoffDto } from './interaction-coordination.dto.js';
export const COORDINATION_PORT = Symbol('COORDINATION_PORT');
export const COORDINATION_CONFIG = Symbol('COORDINATION_CONFIG');
export const HANDOFF_ID_FACTORY = Symbol('HANDOFF_ID_FACTORY');
const HANDOFF_TRACKING_TTL_MS = 60 * 60 * 1_000;
const MAX_TRACKED_HANDOFFS = 1_000;
@@ -60,6 +61,8 @@ export class InteractionCoordinationService {
constructor(
@Inject(COORDINATION_PORT) private readonly port: InteractionCoordinationPort,
@Inject(COORDINATION_CONFIG) private readonly config: InteractionCoordinationConfig,
@Optional()
@Inject(HANDOFF_ID_FACTORY)
private readonly handoffIdFactory: () => string = (): string => crypto.randomUUID(),
) {}
+133
View File
@@ -0,0 +1,133 @@
import { config } from 'dotenv';
import { existsSync } from 'node:fs';
import { homedir } from 'node:os';
import { dirname, join, resolve } from 'node:path';
import { fileURLToPath } from 'node:url';
import { detectFromEnv, loadConfig } from '@mosaicstack/config';
type TierSource =
| 'process environment'
| 'daemon .env'
| 'monorepo-root .env'
| 'gateway-local .env'
| 'default';
type BootSource = TierSource | 'mosaic.config.json';
export interface GatewayDotenvPaths {
daemonEnv: string;
monorepoRootEnv: string;
gatewayLocalEnv: string;
}
const here = dirname(fileURLToPath(import.meta.url));
export function resolveGatewayDotenvPaths(
anchor: string = here,
homeBase: string = homedir(),
): GatewayDotenvPaths {
return {
daemonEnv: join(homeBase, '.config', 'mosaic', 'gateway', '.env'),
monorepoRootEnv: resolve(anchor, '../../..', '.env'),
gatewayLocalEnv: resolve(anchor, '..', '.env'),
};
}
export function resolveGatewayConfigPath(anchor: string = here): string {
// GATEWAY_HOME is daemon-created 0700; its env override adds no authority because env can set MOSAIC_STORAGE_TIER.
const gatewayHome = resolve(
process.env['MOSAIC_GATEWAY_HOME'] ?? join(homedir(), '.config', 'mosaic', 'gateway'),
);
const daemonConfig = join(gatewayHome, 'mosaic.config.json');
const gatewayLocalConfig = resolve(anchor, '..', 'mosaic.config.json');
const monorepoRootConfig = resolve(anchor, '../../..', 'mosaic.config.json');
if (existsSync(daemonConfig)) {
return daemonConfig;
}
if (existsSync(gatewayLocalConfig)) {
return gatewayLocalConfig;
}
if (existsSync(monorepoRootConfig)) {
return monorepoRootConfig;
}
return monorepoRootConfig;
}
export function loadGatewayEnv(anchor: string = here, homeBase: string = homedir()): void {
const { daemonEnv, monorepoRootEnv, gatewayLocalEnv } = resolveGatewayDotenvPaths(
anchor,
homeBase,
);
const inheritedTier = process.env['MOSAIC_STORAGE_TIER'];
let tierSource: TierSource = inheritedTier === undefined ? 'default' : 'process environment';
const inheritedDatabaseUrl = process.env['DATABASE_URL'];
let databaseUrlSource: TierSource =
inheritedDatabaseUrl === undefined ? 'default' : 'process environment';
function loadAnchoredDotenv(
path: string,
sourceLabel: Exclude<TierSource, 'process environment' | 'default'>,
): void {
if (!existsSync(path)) {
return;
}
const beforeTier = process.env['MOSAIC_STORAGE_TIER'];
const beforeDatabaseUrl = process.env['DATABASE_URL'];
config({ path, quiet: true });
if (
beforeTier === undefined &&
process.env['MOSAIC_STORAGE_TIER'] !== undefined &&
tierSource === 'default'
) {
tierSource = sourceLabel;
}
if (
beforeDatabaseUrl === undefined &&
process.env['DATABASE_URL'] !== undefined &&
databaseUrlSource === 'default'
) {
databaseUrlSource = sourceLabel;
}
}
// Load .env from daemon config dir (global install / daemon mode) first.
// It takes precedence over file-based local-dev configuration.
loadAnchoredDotenv(daemonEnv, 'daemon .env');
// Load .env from the anchored monorepo root, then fill any remaining values
// from apps/gateway/.env when present.
loadAnchoredDotenv(monorepoRootEnv, 'monorepo-root .env');
loadAnchoredDotenv(gatewayLocalEnv, 'gateway-local .env');
const envOnlyTier = detectFromEnv().tier;
const configPath = resolveGatewayConfigPath(anchor);
const anchoredConfigExists = existsSync(configPath);
const resolvedTier = loadConfig(configPath).tier;
const configuredTier = process.env['MOSAIC_STORAGE_TIER'];
const databaseUrlDeterminesTier = envOnlyTier === 'standalone' && configuredTier !== 'standalone';
const recognizedTierDeterminesTier =
(configuredTier === 'federated' ||
configuredTier === 'standalone' ||
configuredTier === 'local') &&
configuredTier === envOnlyTier;
let source: BootSource;
if (anchoredConfigExists) {
source = 'mosaic.config.json';
} else if (databaseUrlDeterminesTier && databaseUrlSource !== 'default') {
source = databaseUrlSource;
} else if (recognizedTierDeterminesTier && tierSource !== 'default') {
source = tierSource;
} else {
source = 'default';
}
console.info(`[gateway env] storage tier=${resolvedTier} source=${source}`);
}
loadGatewayEnv();
@@ -0,0 +1,164 @@
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 } from 'vitest';
import { AuthGuard } from '../auth/auth.guard.js';
import { HarnessRegistry } from './harness.registry.js';
import { HARNESS_REGISTRY } from './harness.tokens.js';
import { HarnessSelectionRepository } from './harness-selection.repository.js';
import { FakeHarnessAdapter } from './testing/fake-harness.adapter.js';
// Import the REAL module (not a hand-listed controllers+mocks list) so an
// unresolved provider fails at app.init() — the #1145-class DI-boot guard.
import { HarnessModule } from './harness.module.js';
// A known-available tuple from the fake adapter's default catalog.
const VALID = { harnessId: 'fake', providerId: 'fake-openai', modelId: 'fake-mini' };
// A tuple whose provider/model are not in any catalog.
const UNKNOWN = { harnessId: 'fake', providerId: 'ghost-provider', modelId: 'ghost-model' };
// A tuple that is known in the catalog but flagged unavailable.
const UNAVAILABLE = { harnessId: 'fake', providerId: 'fake-openai', modelId: 'fake-legacy' };
const authGuard: CanActivate = {
canActivate(context: ExecutionContext): boolean {
const requestContext = context.switchToHttp().getRequest<{ user?: { id: string } }>();
requestContext.user = { id: 'user-1' };
return true;
},
};
function registryWithFake(): HarnessRegistry {
const registry = new HarnessRegistry();
registry.register(new FakeHarnessAdapter({ id: 'fake' }));
return registry;
}
describe('Harness selection HTTP surface', () => {
let app: INestApplication;
let repository: HarnessSelectionRepository;
beforeAll(async () => {
const moduleRef = await Test.createTestingModule({
imports: [HarnessModule],
})
.overrideGuard(AuthGuard)
.useValue(authGuard)
.overrideProvider(HARNESS_REGISTRY)
.useValue(registryWithFake())
.compile();
// Real in-memory repository from the module graph — proves the module wired it.
repository = moduleRef.get(HarnessSelectionRepository);
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(() => {
// Reset owner-scoped state between tests via the public API surface.
repository.set({ userId: 'user-1', tenantId: 'user-1' }, VALID);
});
afterAll(async () => {
await app.close();
});
it('GET selection is server-scoped and ignores caller-supplied scope in the query', async () => {
const response = await request(app.getHttpServer())
.get('/api/chat/preferences/selection')
.query({ userId: 'attacker', tenantId: 'attacker-tenant', seatId: 'attacker-seat' });
expect(response.status).toBe(200);
// The returned selection is user-1's (guard-derived scope), not the query's.
expect(response.body.selection).toEqual(VALID);
});
it('PUT with a valid structured tuple persists and round-trips via GET', async () => {
const next = { harnessId: 'fake', providerId: 'fake-openai', modelId: 'fake-pro' };
const put = await request(app.getHttpServer())
.put('/api/chat/preferences/selection')
.send(next)
.set('Content-Type', 'application/json');
expect(put.status).toBe(200);
expect(put.body.selection).toEqual(next);
const get = await request(app.getHttpServer()).get('/api/chat/preferences/selection');
expect(get.status).toBe(200);
expect(get.body.selection).toEqual(next);
});
it('PUT with FREE TEXT is rejected 400 and does not mutate the stored selection', async () => {
const response = await request(app.getHttpServer())
.put('/api/chat/preferences/selection')
.send({ selection: 'gpt-4o' })
.set('Content-Type', 'application/json');
expect(response.status).toBe(400);
const get = await request(app.getHttpServer()).get('/api/chat/preferences/selection');
expect(get.body.selection).toEqual(VALID);
});
it.each([
['seatId', { ...VALID, seatId: 'attacker-seat' }],
['tenantId', { ...VALID, tenantId: 'attacker-tenant' }],
['userId', { ...VALID, userId: 'attacker' }],
['nativeSessionPath', { ...VALID, nativeSessionPath: '/var/native/x.jsonl' }],
['executable', { ...VALID, executable: '/usr/bin/evil' }],
['home', { ...VALID, home: '/home/attacker' }],
['cwd', { ...VALID, cwd: '/tmp/attacker' }],
])(
'PUT with an extra authority-bearing field (%s) is rejected 400 and does not mutate stored selection',
async (_name, body) => {
const response = await request(app.getHttpServer())
.put('/api/chat/preferences/selection')
.send(body)
.set('Content-Type', 'application/json');
expect(response.status).toBe(400);
const get = await request(app.getHttpServer()).get('/api/chat/preferences/selection');
expect(get.body.selection).toEqual(VALID);
},
);
it('PUT with an UNKNOWN tuple returns selection_invalid, unchanged and echoed unchanged (no fallback)', async () => {
const response = await request(app.getHttpServer())
.put('/api/chat/preferences/selection')
.send(UNKNOWN)
.set('Content-Type', 'application/json');
expect(response.status).toBe(422);
expect(response.body.code).toBe('selection_invalid');
// Echoed back unchanged: no first-row / first-provider substitution.
expect(response.body.selection).toEqual(UNKNOWN);
const get = await request(app.getHttpServer()).get('/api/chat/preferences/selection');
expect(get.body.selection).toEqual(VALID);
});
it('PUT with a KNOWN-but-UNAVAILABLE tuple returns model_unavailable, unchanged (distinct from selection_invalid)', async () => {
const response = await request(app.getHttpServer())
.put('/api/chat/preferences/selection')
.send(UNAVAILABLE)
.set('Content-Type', 'application/json');
expect(response.status).toBe(422);
expect(response.body.code).toBe('model_unavailable');
expect(response.body.selection).toEqual(UNAVAILABLE);
const get = await request(app.getHttpServer()).get('/api/chat/preferences/selection');
expect(get.body.selection).toEqual(VALID);
});
});
@@ -0,0 +1,46 @@
import { Body, Controller, Get, HttpException, HttpStatus, Put, UseGuards } from '@nestjs/common';
import { AuthGuard } from '../auth/auth.guard.js';
import { CurrentUser } from '../auth/current-user.decorator.js';
import { scopeFromUser, type AuthenticatedUserLike } from '../auth/session-scope.js';
import { HarnessOperationError } from './harness.registry.js';
import { HarnessSelectionService } from './harness-selection.service.js';
import { HarnessSelectionInputDto, type SelectionResponseDto } from './harness.dto.js';
/**
* Chat-preferences selection surface. The scope is ALWAYS derived on the server
* from the authenticated user (`scopeFromUser(CurrentUser)`); the request body and
* query string can never name another user, tenant, or seat. A typed selection
* failure (unknown tuple → `selection_invalid`, known-but-unavailable →
* `model_unavailable`) is returned as 422 with the requested tuple echoed back
* unchanged, and never mutates the stored selection.
*/
@Controller('api/chat/preferences/selection')
@UseGuards(AuthGuard)
export class HarnessSelectionController {
constructor(private readonly selection: HarnessSelectionService) {}
@Get()
get(@CurrentUser() user: AuthenticatedUserLike): SelectionResponseDto {
return { selection: this.selection.getSelection(scopeFromUser(user)) };
}
@Put()
async put(
@CurrentUser() user: AuthenticatedUserLike,
@Body() dto: HarnessSelectionInputDto,
): Promise<SelectionResponseDto> {
try {
const stored = await this.selection.setSelection(scopeFromUser(user), {
harnessId: dto.harnessId,
providerId: dto.providerId,
modelId: dto.modelId,
});
return { selection: stored };
} catch (error) {
if (error instanceof HarnessOperationError) {
throw new HttpException(error.dto, HttpStatus.UNPROCESSABLE_ENTITY);
}
throw error;
}
}
}
@@ -0,0 +1,90 @@
import { randomUUID } from 'node:crypto';
import { Inject, Injectable } from '@nestjs/common';
import type { HarnessSelection } from '@mosaicstack/types';
import type { ActorTenantScope } from '../auth/session-scope.js';
import {
HarnessAdapterUnavailableError,
HarnessRegistry,
operationError,
} from './harness.registry.js';
import { HARNESS_REGISTRY } from './harness.tokens.js';
import { readContextFromScope } from './harness.dto.js';
import { HarnessSelectionRepository } from './harness-selection.repository.js';
/**
* Selection logic for the Slice-Zero chat-preferences surface. It validates the
* requested harness/provider/model tuple against the live catalog with NO
* fallback substitution, then persists it owner-scoped. The stored selection is
* only ever mutated when the tuple is valid AND available.
*/
@Injectable()
export class HarnessSelectionService {
constructor(
@Inject(HARNESS_REGISTRY) private readonly registry: HarnessRegistry,
private readonly repository: HarnessSelectionRepository,
) {}
getSelection(scope: ActorTenantScope): HarnessSelection | null {
return this.repository.get(scope);
}
async setSelection(
scope: ActorTenantScope,
selection: HarnessSelection,
): Promise<HarnessSelection> {
// Throws HarnessOperationError (selection_invalid / model_unavailable) with the
// requested tuple echoed back unchanged. The store is untouched on any throw.
await this.assertSelectionAvailable(scope, selection);
return this.repository.set(scope, selection);
}
private async assertSelectionAvailable(
scope: ActorTenantScope,
selection: HarnessSelection,
): Promise<void> {
const correlationId = randomUUID();
let adapter;
try {
adapter = this.registry.get(selection.harnessId);
} catch (error) {
if (error instanceof HarnessAdapterUnavailableError) {
// An unknown harness makes the whole tuple invalid — no fallback adapter.
throw operationError(
'selection_invalid',
'The requested harness/provider/model tuple is not in the catalog.',
selection,
correlationId,
);
}
throw error;
}
const catalog = await adapter.catalog(readContextFromScope(scope));
const entry = catalog.models.find(
(candidate) =>
candidate.harnessId === selection.harnessId &&
candidate.providerId === selection.providerId &&
candidate.modelId === selection.modelId,
);
if (!entry) {
// No first-row / first-provider fallback: reject the requested tuple unchanged.
throw operationError(
'selection_invalid',
'The requested harness/provider/model tuple is not in the catalog.',
selection,
correlationId,
);
}
if (entry.availability === 'unavailable') {
throw operationError(
'model_unavailable',
'The requested model is currently unavailable.',
selection,
correlationId,
true,
);
}
}
}
@@ -0,0 +1,138 @@
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, describe, expect, it } from 'vitest';
import { AuthGuard } from '../auth/auth.guard.js';
import { HarnessRegistry } from './harness.registry.js';
import { HARNESS_REGISTRY } from './harness.tokens.js';
import { FakeHarnessAdapter } from './testing/fake-harness.adapter.js';
// The real module under test — importing it (not a hand-listed controllers/mocks
// list) is what makes an unresolved provider fail loudly at app.init() (#1145 guard).
import { HarnessModule } from './harness.module.js';
// Fields that must NEVER surface on a browser-facing catalog/list response.
const FORBIDDEN_KEYS = [
'executable',
'executablePath',
'home',
'homeDir',
'cwd',
'workingDir',
'workingDirectory',
'nativeSessionPath',
'sessionPath',
'env',
'secret',
'secrets',
'token',
'apiKey',
];
function assertNoForbiddenLeak(payload: unknown): void {
const serialized = JSON.stringify(payload).toLowerCase();
for (const key of FORBIDDEN_KEYS) {
expect(serialized).not.toContain(key.toLowerCase());
}
}
const authGuard: CanActivate = {
canActivate(context: ExecutionContext): boolean {
const requestContext = context.switchToHttp().getRequest<{ user?: { id: string } }>();
requestContext.user = { id: 'user-1' };
return true;
},
};
function registryWithFake(): HarnessRegistry {
const registry = new HarnessRegistry();
registry.register(new FakeHarnessAdapter({ id: 'fake' }));
return registry;
}
describe('Harness catalog HTTP surface', () => {
let app: INestApplication;
beforeAll(async () => {
const moduleRef = await Test.createTestingModule({
imports: [HarnessModule],
})
.overrideGuard(AuthGuard)
.useValue(authGuard)
.overrideProvider(HARNESS_REGISTRY)
.useValue(registryWithFake())
.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();
});
afterAll(async () => {
await app.close();
});
it('boots the real HarnessModule so all providers resolve at app.init()', () => {
// If HarnessModule failed to resolve a provider, beforeAll's app.init() would
// have thrown and this suite would never reach here.
expect(app).toBeDefined();
});
it('GET /api/harnesses returns 200 with safe fields only', async () => {
const response = await request(app.getHttpServer()).get('/api/harnesses');
expect(response.status).toBe(200);
expect(Array.isArray(response.body)).toBe(true);
expect(response.body.length).toBeGreaterThan(0);
const summary = response.body[0];
expect(Object.keys(summary).sort()).toEqual(['capabilities', 'displayName', 'id']);
expect(summary.id).toBe('fake');
expect(typeof summary.displayName).toBe('string');
expect(Array.isArray(summary.capabilities)).toBe(true);
assertNoForbiddenLeak(response.body);
});
it('GET /api/harnesses/:harnessId/catalog returns 200 with safe catalog fields only', async () => {
const response = await request(app.getHttpServer()).get('/api/harnesses/fake/catalog');
expect(response.status).toBe(200);
expect(response.body.harnessId).toBe('fake');
expect(typeof response.body.version).toBe('string');
expect(typeof response.body.fingerprint).toBe('string');
expect(Array.isArray(response.body.models)).toBe(true);
expect(response.body.models.length).toBeGreaterThan(0);
const entry = response.body.models[0];
// Whitelisted catalog-entry fields only (no executables/paths/secrets).
expect(Object.keys(entry).sort()).toEqual(
[
'authState',
'availability',
'displayName',
'harnessId',
'inputTypes',
'modelId',
'providerId',
'reasoningCapability',
].sort(),
);
assertNoForbiddenLeak(response.body);
});
it('GET catalog for an unknown harnessId returns a typed adapter_unavailable error, never a fallback catalog', async () => {
const response = await request(app.getHttpServer()).get('/api/harnesses/ghost-harness/catalog');
expect(response.status).toBe(404);
expect(response.body.code).toBe('adapter_unavailable');
// A fallback catalog would carry a models array; a typed error must not.
expect(response.body.models).toBeUndefined();
});
});
@@ -0,0 +1,65 @@
import {
Controller,
Get,
HttpException,
HttpStatus,
Inject,
Param,
UseGuards,
} from '@nestjs/common';
import { AuthGuard } from '../auth/auth.guard.js';
import { CurrentUser } from '../auth/current-user.decorator.js';
import { scopeFromUser, type AuthenticatedUserLike } from '../auth/session-scope.js';
import { HarnessAdapterUnavailableError, HarnessRegistry } from './harness.registry.js';
import { HARNESS_REGISTRY } from './harness.tokens.js';
import {
readContextFromScope,
toHarnessSummary,
toSafeCatalog,
type HarnessCatalogDto,
type HarnessSummaryDto,
} from './harness.dto.js';
/**
* Generic harness catalog surface. It exposes only harness-neutral, browser-safe
* fields (identity, capabilities, provider/model catalog) — never executables,
* native paths, home/cwd, env, or secrets. There is NO provider-probe route here;
* `/api/providers` and `POST /api/providers/test` are intentionally out of scope.
*/
@Controller('api/harnesses')
@UseGuards(AuthGuard)
export class HarnessController {
constructor(@Inject(HARNESS_REGISTRY) private readonly registry: HarnessRegistry) {}
@Get()
async list(@CurrentUser() user: AuthenticatedUserLike): Promise<HarnessSummaryDto[]> {
const context = readContextFromScope(scopeFromUser(user));
const summaries: HarnessSummaryDto[] = [];
for (const adapter of this.registry.list()) {
summaries.push(toHarnessSummary(await adapter.describe(context)));
}
return summaries;
}
@Get(':harnessId/catalog')
async catalog(
@CurrentUser() user: AuthenticatedUserLike,
@Param('harnessId') harnessId: string,
): Promise<HarnessCatalogDto> {
const context = readContextFromScope(scopeFromUser(user));
let adapter;
try {
adapter = this.registry.get(harnessId);
} catch (error) {
if (error instanceof HarnessAdapterUnavailableError) {
// Typed failure — NEVER a fallback catalog for an unknown harness id.
throw new HttpException(
{ code: error.code, message: error.message, harnessId },
HttpStatus.NOT_FOUND,
);
}
throw error;
}
return toSafeCatalog(await adapter.catalog(context));
}
}
+116
View File
@@ -0,0 +1,116 @@
import { randomUUID } from 'node:crypto';
import { IsNotEmpty, IsString } from 'class-validator';
import type {
HarnessActorContext,
HarnessAuthState,
HarnessCapability,
HarnessCatalog,
HarnessCatalogEntry,
HarnessDescriptor,
HarnessInputType,
HarnessModelAvailability,
HarnessSelection,
} from '@mosaicstack/types';
import type { ActorTenantScope } from '../auth/session-scope.js';
/**
* Structured selection tuple accepted on `PUT /api/chat/preferences/selection`.
*
* The body is a STRUCTURED tuple (harness + provider + model), never a free-text
* model string. With `ValidationPipe({ whitelist: true, forbidNonWhitelisted: true })`
* any extra property — including smuggled server-authority fields such as
* `seatId`, `tenantId`, `userId`, `nativeSessionPath`, `executable`, `home`, `cwd` —
* is rejected with 400. There is deliberately no field through which a caller can
* name a scope; scope is derived on the server from the authenticated session.
*/
export class HarnessSelectionInputDto {
@IsString()
@IsNotEmpty()
harnessId!: string;
@IsString()
@IsNotEmpty()
providerId!: string;
@IsString()
@IsNotEmpty()
modelId!: string;
}
/** Browser-safe harness summary — identity and capabilities only. */
export interface HarnessSummaryDto {
readonly id: string;
readonly displayName: string;
readonly capabilities: readonly HarnessCapability[];
}
/** Browser-safe catalog entry — no executables, paths, secrets, or env. */
export interface HarnessCatalogEntryDto {
readonly harnessId: string;
readonly providerId: string;
readonly modelId: string;
readonly displayName: string;
readonly reasoningCapability: boolean;
readonly inputTypes: readonly HarnessInputType[];
readonly authState: HarnessAuthState;
readonly availability: HarnessModelAvailability;
}
/** Browser-safe catalog envelope. */
export interface HarnessCatalogDto {
readonly harnessId: string;
readonly version: string;
readonly fingerprint: string;
readonly models: readonly HarnessCatalogEntryDto[];
}
/** Response envelope for the caller's current selection (null when unset). */
export interface SelectionResponseDto {
readonly selection: HarnessSelection | null;
}
/**
* Derive a server-trusted {@link HarnessActorContext} for read operations from the
* session-derived {@link ActorTenantScope}. All authority originates on the server;
* nothing here is caller-supplied. A fresh correlation id is minted per call.
*/
export function readContextFromScope(scope: ActorTenantScope): HarnessActorContext {
return {
actorId: scope.userId,
tenantId: scope.tenantId,
seatId: scope.userId,
correlationId: randomUUID(),
};
}
/** Project a descriptor onto the browser-safe summary shape (whitelist by construction). */
export function toHarnessSummary(descriptor: HarnessDescriptor): HarnessSummaryDto {
return {
id: descriptor.id,
displayName: descriptor.displayName,
capabilities: [...descriptor.capabilities],
};
}
/** Project a catalog onto the browser-safe shape (whitelist by construction). */
export function toSafeCatalog(catalog: HarnessCatalog): HarnessCatalogDto {
return {
harnessId: catalog.harnessId,
version: catalog.version,
fingerprint: catalog.fingerprint,
models: catalog.models.map(toSafeCatalogEntry),
};
}
function toSafeCatalogEntry(entry: HarnessCatalogEntry): HarnessCatalogEntryDto {
return {
harnessId: entry.harnessId,
providerId: entry.providerId,
modelId: entry.modelId,
displayName: entry.displayName,
reasoningCapability: entry.reasoningCapability,
inputTypes: [...entry.inputTypes],
authState: entry.authState,
availability: entry.availability,
};
}
@@ -0,0 +1,37 @@
import { Module } from '@nestjs/common';
import { HarnessRegistry } from './harness.registry.js';
import { HarnessService } from './harness.service.js';
import {
HARNESS_CONVERSATION_SERVICE,
HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
HARNESS_REGISTRY,
HARNESS_SERVICE,
} from './harness.tokens.js';
import { HarnessController } from './harness.controller.js';
import { HarnessSelectionController } from './harness-selection.controller.js';
import { HarnessSelectionService } from './harness-selection.service.js';
import { HarnessSelectionRepository } from './harness-selection.repository.js';
/**
* Wires the harness-neutral registry/service (Task Two) together with the
* Slice-Zero catalog and selection HTTP surfaces (Task Three).
*
* The registry is provided empty here; real harness adapters are registered in a
* later task. Because the controllers/services resolve their collaborators through
* this real module graph, an unresolved provider fails loudly at `app.init()`.
*/
@Module({
controllers: [HarnessController, HarnessSelectionController],
providers: [
{ provide: HARNESS_REGISTRY, useFactory: () => new HarnessRegistry() },
{ provide: HARNESS_SERVICE, useClass: HarnessService },
// Task Five: bind the conversation-service token to its explicit "not yet bound"
// sentinel. The pi-rpc router treats this as a hard, typed startup failure; Task 14
// replaces it with a real service. Exported so ChatModule's router can inject it.
{ provide: HARNESS_CONVERSATION_SERVICE, useValue: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE },
HarnessSelectionRepository,
HarnessSelectionService,
],
exports: [HARNESS_REGISTRY, HARNESS_SERVICE, HARNESS_CONVERSATION_SERVICE],
})
export class HarnessModule {}
@@ -0,0 +1,69 @@
import { describe, expect, it } from 'vitest';
import {
HarnessAdapterUnavailableError,
HarnessRegistrationError,
HarnessRegistry,
} from './harness.registry.js';
import { FakeHarnessAdapter } from './testing/fake-harness.adapter.js';
describe('HarnessRegistry', () => {
it('registers and looks up an adapter by harness id', () => {
const registry = new HarnessRegistry();
const adapter = new FakeHarnessAdapter({ id: 'fake' });
registry.register(adapter);
expect(registry.get('fake')).toBe(adapter);
expect(registry.has('fake')).toBe(true);
expect(registry.list().map((entry) => entry.id)).toEqual(['fake']);
});
it('rejects a blank adapter id', () => {
const registry = new HarnessRegistry();
let error: unknown;
try {
registry.register(new FakeHarnessAdapter({ id: ' ' }));
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessRegistrationError);
expect((error as HarnessRegistrationError).reason).toBe('blank_id');
expect(registry.list()).toEqual([]);
});
it('rejects a duplicate adapter id', () => {
const registry = new HarnessRegistry();
registry.register(new FakeHarnessAdapter({ id: 'fake' }));
let error: unknown;
try {
registry.register(new FakeHarnessAdapter({ id: 'fake' }));
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessRegistrationError);
expect((error as HarnessRegistrationError).reason).toBe('duplicate_id');
expect((error as HarnessRegistrationError).harnessId).toBe('fake');
// The original registration is untouched.
expect(registry.list()).toHaveLength(1);
});
it('returns adapter_unavailable for an unknown harness id', () => {
const registry = new HarnessRegistry();
let error: unknown;
try {
registry.get('missing');
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessAdapterUnavailableError);
expect((error as HarnessAdapterUnavailableError).code).toBe('adapter_unavailable');
expect((error as HarnessAdapterUnavailableError).harnessId).toBe('missing');
expect(registry.has('missing')).toBe(false);
});
});
@@ -0,0 +1,100 @@
import { Injectable } from '@nestjs/common';
import type {
HarnessAdapter,
HarnessErrorCode,
HarnessErrorDto,
HarnessSelection,
} from '@mosaicstack/types';
/**
* A typed harness operation failure that carries a fully-formed, browser-safe
* {@link HarnessErrorDto}. The DTO's `selection` is always the exact requested
* tuple — there is no field through which a substituted "effective" selection
* could ever be reported.
*/
export class HarnessOperationError extends Error {
readonly code: HarnessErrorCode;
readonly dto: HarnessErrorDto;
constructor(dto: HarnessErrorDto) {
super(dto.message);
this.name = 'HarnessOperationError';
this.code = dto.code;
this.dto = dto;
}
}
/** Build a {@link HarnessOperationError} that echoes the requested selection unchanged. */
export function operationError(
code: HarnessErrorCode,
message: string,
selection: HarnessSelection,
correlationId: string,
retryable = false,
): HarnessOperationError {
return new HarnessOperationError({ code, message, retryable, correlationId, selection });
}
/** Raised when an unknown harness id is looked up. Discriminated by `code`. */
export class HarnessAdapterUnavailableError extends Error {
readonly code = 'adapter_unavailable' as const satisfies HarnessErrorCode;
constructor(readonly harnessId: string) {
super(`No harness adapter is registered for id "${harnessId}".`);
this.name = 'HarnessAdapterUnavailableError';
}
}
export type HarnessRegistrationFailure = 'blank_id' | 'duplicate_id';
/** Raised when an adapter cannot be registered (blank or duplicate id). */
export class HarnessRegistrationError extends Error {
constructor(
readonly reason: HarnessRegistrationFailure,
readonly harnessId: string,
) {
super(
reason === 'blank_id'
? 'A harness adapter id must be a non-empty string.'
: `A harness adapter is already registered for id "${harnessId}".`,
);
this.name = 'HarnessRegistrationError';
}
}
/**
* Harness-neutral adapter registry. Adapters are keyed by their harness id.
* Registration rejects blank and duplicate ids; lookup of an unknown id fails
* with {@link HarnessAdapterUnavailableError} (`adapter_unavailable`).
*/
@Injectable()
export class HarnessRegistry {
private readonly adapters = new Map<string, HarnessAdapter>();
register(adapter: HarnessAdapter): void {
const id = adapter.id;
if (typeof id !== 'string' || id.trim().length === 0) {
throw new HarnessRegistrationError('blank_id', id ?? '');
}
if (this.adapters.has(id)) {
throw new HarnessRegistrationError('duplicate_id', id);
}
this.adapters.set(id, adapter);
}
get(harnessId: string): HarnessAdapter {
const adapter = this.adapters.get(harnessId);
if (!adapter) {
throw new HarnessAdapterUnavailableError(harnessId);
}
return adapter;
}
has(harnessId: string): boolean {
return this.adapters.has(harnessId);
}
list(): readonly HarnessAdapter[] {
return [...this.adapters.values()];
}
}
@@ -0,0 +1,227 @@
import { describe, expect, it } from 'vitest';
import type { HarnessActorContext, HarnessCapability, HarnessSelection } from '@mosaicstack/types';
import { HARNESS_CAPABILITIES } from '@mosaicstack/types';
import { HarnessOperationError, HarnessRegistry } from './harness.registry.js';
import {
HarnessScopeViolationError,
HarnessService,
type TrustedGatewayScope,
} from './harness.service.js';
import { FakeHarnessAdapter } from './testing/fake-harness.adapter.js';
const SCOPE: TrustedGatewayScope = {
actorId: 'actor-trusted',
tenantId: 'tenant-trusted',
seatId: 'seat-trusted',
correlationId: 'correlation-trusted',
};
const READ_CONTEXT: HarnessActorContext = {
actorId: SCOPE.actorId,
tenantId: SCOPE.tenantId,
seatId: SCOPE.seatId,
correlationId: SCOPE.correlationId,
};
function setup(capabilities?: readonly HarnessCapability[]) {
const registry = new HarnessRegistry();
const adapter = new FakeHarnessAdapter({ id: 'fake', capabilities });
registry.register(adapter);
const service = new HarnessService(registry);
return { registry, adapter, service };
}
async function availableSelection(adapter: FakeHarnessAdapter): Promise<HarnessSelection> {
const catalog = await adapter.catalog(READ_CONTEXT);
const entry = catalog.models.find((model) => model.availability === 'available');
if (!entry) {
throw new Error('fixture requires an available model');
}
return { harnessId: entry.harnessId, providerId: entry.providerId, modelId: entry.modelId };
}
describe('HarnessService', () => {
it('derives the actor context from trusted scope on create', async () => {
const { service, adapter } = setup();
const selection = await availableSelection(adapter);
const snapshot = await service.createSession(SCOPE, {
conversationId: 'conversation-1',
selection,
});
expect(snapshot.seatId).toBe(SCOPE.seatId);
expect(snapshot.state).toBe('idle');
expect(snapshot.selection).toEqual(selection);
expect(snapshot.nativeSessionId).toBeTruthy();
});
it('rejects server-authority fields supplied by an external caller', async () => {
const { service, adapter } = setup();
const selection = await availableSelection(adapter);
const hostile = {
conversationId: 'conversation-1',
selection,
seatId: 'attacker-seat',
executablePath: '/usr/bin/evil',
home: '/home/attacker',
cwd: '/tmp/attacker',
nativeSessionPath: '/var/native/attacker.jsonl',
} as unknown as Parameters<HarnessService['createSession']>[1];
let error: unknown;
try {
await service.createSession(SCOPE, hostile);
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessScopeViolationError);
expect((error as HarnessScopeViolationError).field).toBe('seatId');
});
it('returns adapter_unavailable for an unknown harness id, echoing the requested tuple', async () => {
const { service } = setup();
const selection: HarnessSelection = {
harnessId: 'ghost-harness',
providerId: 'p',
modelId: 'm',
};
let error: unknown;
try {
await service.createSession(SCOPE, { conversationId: 'conversation-1', selection });
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('adapter_unavailable');
expect(dto.selection).toEqual(selection);
expect(dto.correlationId).toBe(SCOPE.correlationId);
});
it('returns selection_invalid for an unknown provider/model tuple, unchanged', async () => {
const { service } = setup();
const selection: HarnessSelection = {
harnessId: 'fake',
providerId: 'ghost-provider',
modelId: 'ghost-model',
};
let error: unknown;
try {
await service.createSession(SCOPE, { conversationId: 'conversation-1', selection });
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('selection_invalid');
expect(dto.selection).toEqual(selection);
});
it('returns model_unavailable without falling back for a known unavailable model', async () => {
const { service, adapter } = setup();
const catalog = await adapter.catalog(READ_CONTEXT);
const unavailable = catalog.models.find((entry) => entry.availability === 'unavailable');
expect(unavailable).toBeDefined();
const selection: HarnessSelection = {
harnessId: unavailable!.harnessId,
providerId: unavailable!.providerId,
modelId: unavailable!.modelId,
};
let error: unknown;
try {
await service.createSession(SCOPE, { conversationId: 'conversation-1', selection });
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('model_unavailable');
// No substitution: the DTO tuple is exactly what was requested.
expect(dto.selection).toEqual(selection);
});
it('gives create, resume, detach, evict, and end distinct observable effects', async () => {
const { service, adapter } = setup();
const selection = await availableSelection(adapter);
const created = await service.createSession(SCOPE, {
conversationId: 'conversation-create',
selection,
});
expect(created.state).toBe('idle');
expect(created.processId).toBeTruthy();
expect(created.attachedClientIds).toEqual([]);
const resumed = await service.resumeSession(SCOPE, {
conversationId: 'conversation-resume',
nativeSessionId: 'native-preexisting-123',
selection,
});
// Resume binds the supplied native session; create mints a fresh one.
expect(resumed.nativeSessionId).toBe('native-preexisting-123');
expect(resumed.nativeSessionId).not.toBe(created.nativeSessionId);
await service.attach(SCOPE, {
conversationId: 'conversation-create',
clientId: 'browser-1',
});
const afterAttach = await service.snapshot(SCOPE, 'conversation-create');
expect(afterAttach.attachedClientIds).toEqual(['browser-1']);
const afterDetach = await service.detach(SCOPE, {
conversationId: 'conversation-create',
clientId: 'browser-1',
});
// Detach removes the browser attachment only; the process stays alive.
expect(afterDetach.attachedClientIds).toEqual([]);
expect(afterDetach.state).toBe('idle');
expect(afterDetach.processId).toBeTruthy();
const afterEvict = await service.evict(SCOPE, {
conversationId: 'conversation-create',
reason: 'idle_timeout',
});
// Evict stops the process but retains the resumable native session.
expect(afterEvict.state).toBe('evicted');
expect(afterEvict.processId).toBeUndefined();
expect(afterEvict.nativeSessionId).toBe(created.nativeSessionId);
const afterEnd = await service.end(SCOPE, {
conversationId: 'conversation-create',
reason: 'session_ended',
});
// End destructively terminates the native session.
expect(afterEnd.state).toBe('ended');
});
it('fails typed when an unsupported capability is exercised', async () => {
const withoutExtensionUi = HARNESS_CAPABILITIES.filter(
(capability) => capability !== 'extensionUi',
);
const { service, adapter } = setup(withoutExtensionUi);
const selection = await availableSelection(adapter);
await service.createSession(SCOPE, { conversationId: 'conversation-1', selection });
let error: unknown;
try {
await service.respondInteraction(SCOPE, {
conversationId: 'conversation-1',
response: { requestId: 'interaction-1', type: 'confirm', accepted: true },
});
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
expect((error as HarnessOperationError).dto.code).toBe('interaction_unsupported');
});
});
+285
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@@ -0,0 +1,285 @@
import { Inject, Injectable } from '@nestjs/common';
import type {
HarnessActorContext,
HarnessAdapter,
HarnessCatalog,
HarnessCloseReason,
HarnessInteractionResponse,
HarnessSelection,
HarnessSessionHandle,
HarnessSessionSnapshot,
} from '@mosaicstack/types';
import {
HarnessAdapterUnavailableError,
HarnessRegistry,
operationError,
} from './harness.registry.js';
import { HARNESS_REGISTRY } from './harness.tokens.js';
/**
* Trusted, server-derived authority. In production this is produced by the
* Gateway from the authenticated session — never from a browser/caller DTO.
*/
export interface TrustedGatewayScope {
readonly actorId: string;
readonly tenantId: string;
readonly seatId: string;
readonly correlationId: string;
}
/** Server-authority fields that must never arrive from an external request DTO. */
const FORBIDDEN_REQUEST_FIELDS = [
'actorId',
'tenantId',
'correlationId',
'seatId',
'seat',
'executable',
'executablePath',
'home',
'homeDir',
'cwd',
'workingDir',
'workingDirectory',
'nativeSessionPath',
'sessionPath',
] as const;
/** Raised when an external request DTO smuggles a server-authority field. */
export class HarnessScopeViolationError extends Error {
constructor(readonly field: string) {
super(`External request supplied server-authority field "${field}".`);
this.name = 'HarnessScopeViolationError';
}
}
export interface CreateHarnessSessionRequest {
readonly conversationId: string;
readonly selection: HarnessSelection;
}
export interface ResumeHarnessSessionRequest {
readonly conversationId: string;
readonly nativeSessionId: string;
readonly selection: HarnessSelection;
}
export interface AttachClientRequest {
readonly conversationId: string;
readonly clientId: string;
}
export interface DetachClientRequest {
readonly conversationId: string;
readonly clientId: string;
}
export interface EvictSessionRequest {
readonly conversationId: string;
readonly reason: HarnessCloseReason;
}
export interface EndSessionRequest {
readonly conversationId: string;
readonly reason: HarnessCloseReason;
}
export interface RespondInteractionRequest {
readonly conversationId: string;
readonly response: HarnessInteractionResponse;
}
interface ActiveSession {
readonly harnessId: string;
readonly handle: HarnessSessionHandle;
readonly correlationId: string;
}
/**
* Harness-neutral service. It derives the {@link HarnessActorContext} strictly
* from trusted Gateway scope, validates the selected provider/model tuple with
* NO fallback substitution, and exposes distinct create/resume/detach/evict/end
* lifecycle operations.
*/
@Injectable()
export class HarnessService {
private readonly sessions = new Map<string, ActiveSession>();
constructor(@Inject(HARNESS_REGISTRY) private readonly registry: HarnessRegistry) {}
async createSession(
scope: TrustedGatewayScope,
request: CreateHarnessSessionRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const { conversationId, selection } = request;
const adapter = this.resolveAdapter(scope, selection);
const context = deriveActorContext(scope);
await this.assertSelectionAvailable(scope, adapter.catalog(context), selection);
const handle = await adapter.create({ context, conversationId, selection });
this.sessions.set(conversationId, {
harnessId: selection.harnessId,
handle,
correlationId: scope.correlationId,
});
return handle.snapshot();
}
async resumeSession(
scope: TrustedGatewayScope,
request: ResumeHarnessSessionRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const { conversationId, nativeSessionId, selection } = request;
const adapter = this.resolveAdapter(scope, selection);
const context = deriveActorContext(scope);
await this.assertSelectionAvailable(scope, adapter.catalog(context), selection);
const handle = await adapter.resume({ context, conversationId, nativeSessionId, selection });
this.sessions.set(conversationId, {
harnessId: selection.harnessId,
handle,
correlationId: scope.correlationId,
});
return handle.snapshot();
}
async attach(
scope: TrustedGatewayScope,
request: AttachClientRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const handle = this.requireHandle(scope, request.conversationId);
await handle.attach({ clientId: request.clientId });
return handle.snapshot();
}
async detach(
scope: TrustedGatewayScope,
request: DetachClientRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const handle = this.requireHandle(scope, request.conversationId);
await handle.detach(request.clientId);
return handle.snapshot();
}
async evict(
scope: TrustedGatewayScope,
request: EvictSessionRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const handle = this.requireHandle(scope, request.conversationId);
await handle.evictProcess(request.reason);
return handle.snapshot();
}
async end(
scope: TrustedGatewayScope,
request: EndSessionRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const handle = this.requireHandle(scope, request.conversationId);
await handle.endSession(request.reason);
const snapshot = await handle.snapshot();
this.sessions.delete(request.conversationId);
return snapshot;
}
async respondInteraction(
scope: TrustedGatewayScope,
request: RespondInteractionRequest,
): Promise<void> {
assertTrustedRequest(request);
const handle = this.requireHandle(scope, request.conversationId);
await handle.respondInteraction(request.response);
}
async snapshot(
scope: TrustedGatewayScope,
conversationId: string,
): Promise<HarnessSessionSnapshot> {
const handle = this.requireHandle(scope, conversationId);
return handle.snapshot();
}
private resolveAdapter(scope: TrustedGatewayScope, selection: HarnessSelection): HarnessAdapter {
try {
return this.registry.get(selection.harnessId);
} catch (error) {
if (error instanceof HarnessAdapterUnavailableError) {
throw operationError('adapter_unavailable', error.message, selection, scope.correlationId);
}
throw error;
}
}
private async assertSelectionAvailable(
scope: TrustedGatewayScope,
catalogPromise: Promise<HarnessCatalog>,
selection: HarnessSelection,
): Promise<void> {
const catalog = await catalogPromise;
const entry = catalog.models.find(
(candidate) =>
candidate.harnessId === selection.harnessId &&
candidate.providerId === selection.providerId &&
candidate.modelId === selection.modelId,
);
if (!entry) {
// No first-row fallback: reject the requested tuple unchanged.
throw operationError(
'selection_invalid',
'The requested harness/provider/model tuple is not in the catalog.',
selection,
scope.correlationId,
);
}
if (entry.availability === 'unavailable') {
throw operationError(
'model_unavailable',
'The requested model is currently unavailable.',
selection,
scope.correlationId,
true,
);
}
}
private requireHandle(scope: TrustedGatewayScope, conversationId: string): HarnessSessionHandle {
const active = this.sessions.get(conversationId);
if (!active) {
throw operationError(
'session_not_found',
`No active harness session for conversation "${conversationId}".`,
{ harnessId: '', providerId: '', modelId: '' },
scope.correlationId,
);
}
return active.handle;
}
}
/** Build the actor context strictly from trusted scope. No caller data leaks in. */
export function deriveActorContext(scope: TrustedGatewayScope): HarnessActorContext {
return {
actorId: scope.actorId,
tenantId: scope.tenantId,
seatId: scope.seatId,
correlationId: scope.correlationId,
};
}
/** Reject any request object that carries a server-authority field. */
function assertTrustedRequest(request: object): void {
for (const field of FORBIDDEN_REQUEST_FIELDS) {
if (Object.prototype.hasOwnProperty.call(request, field)) {
throw new HarnessScopeViolationError(field);
}
}
}
// Re-export the typed operation error so callers importing from the service
// have the discriminated failure type without reaching into the registry.
export { HarnessOperationError } from './harness.registry.js';
@@ -0,0 +1,45 @@
/**
* Nest dependency-injection tokens for the harness-neutral registry and service.
*
* String tokens follow the existing Gateway convention (see `memory/memory.tokens.ts`)
* and remain valid Nest `InjectionToken`s for `@Inject(...)`.
*/
import type { HarnessConversationService } from '@mosaicstack/types';
export const HARNESS_REGISTRY = 'HARNESS_REGISTRY' as const;
export const HARNESS_SERVICE = 'HARNESS_SERVICE' as const;
export type HarnessRegistryToken = typeof HARNESS_REGISTRY;
export type HarnessServiceToken = typeof HARNESS_SERVICE;
/**
* Token for the {@link HarnessConversationService} that {@link HarnessChatRuntime}
* depends on. Until Task 14 provides a real implementation, `HarnessModule` binds
* the {@link HARNESS_CONVERSATION_SERVICE_UNAVAILABLE} sentinel here, and the
* `pi-rpc` router treats that sentinel as a hard, typed startup failure.
*/
export const HARNESS_CONVERSATION_SERVICE = 'HARNESS_CONVERSATION_SERVICE' as const;
export type HarnessConversationServiceToken = typeof HARNESS_CONVERSATION_SERVICE;
/**
* Explicit "not yet bound" value for {@link HARNESS_CONVERSATION_SERVICE}. It is a
* distinct sentinel — never `null`/`undefined` — so an unbound service is an
* intentional, checkable state rather than an accidental nil that could read as
* "present". Replaced by a real service in Task 14.
*/
export const HARNESS_CONVERSATION_SERVICE_UNAVAILABLE: unique symbol = Symbol(
'HARNESS_CONVERSATION_SERVICE_UNAVAILABLE',
);
/** A binding for {@link HARNESS_CONVERSATION_SERVICE}: a real service or the sentinel. */
export type HarnessConversationServiceBinding =
| HarnessConversationService
| typeof HARNESS_CONVERSATION_SERVICE_UNAVAILABLE;
/** Narrows a binding to a usable service, excluding the unavailable sentinel. */
export function isHarnessConversationServiceAvailable(
binding: HarnessConversationServiceBinding,
): binding is HarnessConversationService {
return binding !== HARNESS_CONVERSATION_SERVICE_UNAVAILABLE;
}
@@ -0,0 +1,107 @@
import { describe, expect, it } from 'vitest';
import type { HarnessActorContext, HarnessSelection } from '@mosaicstack/types';
import { HarnessOperationError } from '../harness.registry.js';
import { FakeHarnessAdapter } from './fake-harness.adapter.js';
import { runHarnessAdapterContract } from './harness-adapter.contract.js';
const CONTEXT: HarnessActorContext = {
actorId: 'actor-1',
tenantId: 'tenant-1',
seatId: 'seat-1',
correlationId: 'correlation-1',
};
// The reusable conformance suite. Task 13 re-runs it against the native Pi adapter.
runHarnessAdapterContract('FakeHarnessAdapter', () => new FakeHarnessAdapter({ id: 'fake' }));
describe('FakeHarnessAdapter no-substitution', () => {
it('never substitutes the first catalog row when a bogus selection is requested', async () => {
const adapter = new FakeHarnessAdapter({ id: 'fake' });
const catalog = await adapter.catalog(CONTEXT);
const firstRow = catalog.models[0];
if (!firstRow) {
throw new Error('fixture requires a catalog model');
}
const available = catalog.models.find(
(entry) => entry.availability === 'available' && entry.modelId !== firstRow.modelId,
);
expect(available).toBeDefined();
const selected: HarnessSelection = {
harnessId: available!.harnessId,
providerId: available!.providerId,
modelId: available!.modelId,
};
const handle = await adapter.create({
context: CONTEXT,
conversationId: 'conversation-1',
selection: selected,
});
const bogus: HarnessSelection = {
harnessId: 'fake',
providerId: 'ghost-provider',
modelId: 'ghost-model',
};
let error: unknown;
try {
await handle.setModel(bogus);
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('selection_invalid');
// The DTO echoes the exact requested tuple, unchanged.
expect(dto.selection).toEqual(bogus);
// No substitution to the first catalog row.
expect(dto.selection).not.toEqual({
harnessId: firstRow.harnessId,
providerId: firstRow.providerId,
modelId: firstRow.modelId,
});
// The active selection is untouched by the rejected request.
expect((await handle.snapshot()).selection).toEqual(selected);
});
it('reports model_unavailable with the unchanged tuple for a known but unavailable model', async () => {
const adapter = new FakeHarnessAdapter({ id: 'fake' });
const catalog = await adapter.catalog(CONTEXT);
const unavailable = catalog.models.find((entry) => entry.availability === 'unavailable');
const available = catalog.models.find((entry) => entry.availability === 'available');
expect(unavailable).toBeDefined();
expect(available).toBeDefined();
const startingSelection: HarnessSelection = {
harnessId: available!.harnessId,
providerId: available!.providerId,
modelId: available!.modelId,
};
const handle = await adapter.create({
context: CONTEXT,
conversationId: 'conversation-2',
selection: startingSelection,
});
const requested: HarnessSelection = {
harnessId: unavailable!.harnessId,
providerId: unavailable!.providerId,
modelId: unavailable!.modelId,
};
let error: unknown;
try {
await handle.setModel(requested);
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('model_unavailable');
expect(dto.selection).toEqual(requested);
expect((await handle.snapshot()).selection).toEqual(startingSelection);
});
});
@@ -0,0 +1,248 @@
import type {
AttachClient,
CreateHarnessSession,
HarnessAdapter,
HarnessActorContext,
HarnessCapability,
HarnessCatalog,
HarnessCatalogEntry,
HarnessCloseReason,
HarnessDescriptor,
HarnessEvent,
HarnessInteractionResponse,
HarnessPrompt,
HarnessPromptReceipt,
HarnessSelection,
HarnessSessionHandle,
HarnessSessionSnapshot,
HarnessSessionState,
ResumeHarnessSession,
} from '@mosaicstack/types';
import { HARNESS_CAPABILITIES } from '@mosaicstack/types';
import { operationError } from '../harness.registry.js';
export interface FakeHarnessAdapterOptions {
readonly id: string;
readonly capabilities?: readonly HarnessCapability[];
readonly catalog?: readonly HarnessCatalogEntry[];
}
const FAKE_PROVIDER = 'fake-openai';
function defaultCatalog(harnessId: string): readonly HarnessCatalogEntry[] {
return [
{
harnessId,
providerId: FAKE_PROVIDER,
modelId: 'fake-mini',
displayName: 'Fake Mini',
reasoningCapability: false,
inputTypes: ['text'],
authState: 'ready',
availability: 'available',
},
{
harnessId,
providerId: FAKE_PROVIDER,
modelId: 'fake-pro',
displayName: 'Fake Pro',
reasoningCapability: true,
inputTypes: ['text', 'image'],
authState: 'ready',
availability: 'available',
},
{
harnessId,
providerId: FAKE_PROVIDER,
modelId: 'fake-legacy',
displayName: 'Fake Legacy',
reasoningCapability: false,
inputTypes: ['text'],
authState: 'unavailable',
availability: 'unavailable',
},
];
}
function matches(entry: HarnessCatalogEntry, selection: HarnessSelection): boolean {
return (
entry.harnessId === selection.harnessId &&
entry.providerId === selection.providerId &&
entry.modelId === selection.modelId
);
}
/**
* In-memory harness session handle used by the fake adapter and by the shared
* conformance suite. It enforces the two invariants the real adapters must also
* honor: model selection is validated against the catalog and is NEVER
* substituted, and unsupported capabilities fail with a typed error.
*/
export class FakeHarnessSessionHandle implements HarnessSessionHandle {
private state: HarnessSessionState = 'idle';
private processId: string | undefined;
private readonly attachedClientIds = new Set<string>();
private readonly listeners = new Set<(event: HarnessEvent) => void>();
constructor(
private readonly conversationId: string,
private readonly nativeSessionId: string,
private readonly seatId: string,
private selection: HarnessSelection,
private readonly correlationId: string,
private readonly capabilities: readonly HarnessCapability[],
private readonly catalog: readonly HarnessCatalogEntry[],
) {
this.processId = `process-${nativeSessionId}`;
}
async snapshot(): Promise<HarnessSessionSnapshot> {
return {
conversationId: this.conversationId,
nativeSessionId: this.nativeSessionId,
processId: this.processId,
seatId: this.seatId,
selection: this.selection,
state: this.state,
attachedClientIds: [...this.attachedClientIds],
};
}
async attach(input: AttachClient): Promise<void> {
this.attachedClientIds.add(input.clientId);
}
async detach(clientId: string): Promise<void> {
// Removes the browser attachment only; the process and native session persist.
this.attachedClientIds.delete(clientId);
}
async prompt(input: HarnessPrompt & { idempotencyKey: string }): Promise<HarnessPromptReceipt> {
return {
conversationId: this.conversationId,
turnId: input.turnId,
correlationId: input.correlationId,
state: 'accepted',
selection: this.selection,
};
}
async setModel(selection: HarnessSelection): Promise<HarnessSelection> {
const entry = this.catalog.find((candidate) => matches(candidate, selection));
if (!entry) {
// No fallback to the first catalog row: reject with the requested tuple, unchanged.
throw operationError(
'selection_invalid',
'The requested harness/provider/model tuple is not in the catalog.',
selection,
this.correlationId,
);
}
if (entry.availability === 'unavailable') {
throw operationError(
'model_unavailable',
'The requested model is currently unavailable.',
selection,
this.correlationId,
true,
);
}
this.selection = selection;
return this.selection;
}
async abort(_turnId: string): Promise<void> {
// No active turn machinery in the fake; abort is a no-op acknowledgement.
}
async respondInteraction(_input: HarnessInteractionResponse): Promise<void> {
if (!this.capabilities.includes('extensionUi')) {
throw operationError(
'interaction_unsupported',
'This harness does not support interactive responses.',
this.selection,
this.correlationId,
);
}
}
events(listener: (event: HarnessEvent) => void): () => void {
this.listeners.add(listener);
return () => {
this.listeners.delete(listener);
};
}
async evictProcess(_reason: HarnessCloseReason): Promise<void> {
// Stop the process but keep the resumable native session.
this.processId = undefined;
this.state = 'evicted';
}
async endSession(_reason: HarnessCloseReason): Promise<void> {
// Destructively end the native session.
this.processId = undefined;
this.state = 'ended';
}
}
/**
* Minimal in-memory {@link HarnessAdapter} for Slice Zero. It mints a fresh
* native session id on `create` and binds the supplied one on `resume`, so the
* two paths are observably distinct.
*/
export class FakeHarnessAdapter implements HarnessAdapter {
readonly id: string;
private readonly capabilities: readonly HarnessCapability[];
private readonly catalogEntries: readonly HarnessCatalogEntry[];
private createdCount = 0;
constructor(options: FakeHarnessAdapterOptions) {
this.id = options.id;
this.capabilities = options.capabilities ?? [...HARNESS_CAPABILITIES];
this.catalogEntries = options.catalog ?? defaultCatalog(options.id);
}
async describe(_context: HarnessActorContext): Promise<HarnessDescriptor> {
return {
id: this.id,
displayName: `Fake harness (${this.id})`,
capabilities: this.capabilities,
};
}
async catalog(_context: HarnessActorContext): Promise<HarnessCatalog> {
return {
harnessId: this.id,
version: '1.0.0',
fingerprint: `fake-${this.id}-${this.catalogEntries.length}`,
models: this.catalogEntries,
};
}
async create(input: CreateHarnessSession): Promise<HarnessSessionHandle> {
this.createdCount += 1;
const nativeSessionId = `native-${input.conversationId}-${this.createdCount}`;
return new FakeHarnessSessionHandle(
input.conversationId,
nativeSessionId,
input.context.seatId,
input.selection,
input.context.correlationId,
this.capabilities,
this.catalogEntries,
);
}
async resume(input: ResumeHarnessSession): Promise<HarnessSessionHandle> {
return new FakeHarnessSessionHandle(
input.conversationId,
input.nativeSessionId,
input.context.seatId,
input.selection,
input.context.correlationId,
this.capabilities,
this.catalogEntries,
);
}
}
@@ -0,0 +1,157 @@
import { describe, expect, it } from 'vitest';
import type {
HarnessActorContext,
HarnessAdapter,
HarnessCatalogEntry,
HarnessSelection,
} from '@mosaicstack/types';
import { HarnessOperationError } from '../harness.registry.js';
const CONTEXT: HarnessActorContext = {
actorId: 'contract-actor',
tenantId: 'contract-tenant',
seatId: 'contract-seat',
correlationId: 'contract-correlation',
};
function toSelection(entry: HarnessCatalogEntry): HarnessSelection {
return { harnessId: entry.harnessId, providerId: entry.providerId, modelId: entry.modelId };
}
function pickAvailable(models: readonly HarnessCatalogEntry[]): HarnessCatalogEntry {
const entry = models.find((candidate) => candidate.availability === 'available') ?? models[0];
if (!entry) {
throw new Error('contract fixture requires at least one catalog model');
}
return entry;
}
async function captureError(run: () => Promise<unknown>): Promise<unknown> {
try {
await run();
return undefined;
} catch (caught) {
return caught;
}
}
/**
* Shared conformance suite every {@link HarnessAdapter} must pass. Slice Zero
* runs it against the fake adapter; Task 13 re-runs the identical suite against
* the native Pi adapter so both share one behavioral contract.
*/
export function runHarnessAdapterContract(
label: string,
createAdapter: () => HarnessAdapter,
): void {
describe(`harness adapter contract: ${label}`, () => {
it('mints a fresh native session on create and binds the supplied one on resume', async () => {
const adapter = createAdapter();
const catalog = await adapter.catalog(CONTEXT);
const selection = toSelection(pickAvailable(catalog.models));
const created = await (
await adapter.create({ context: CONTEXT, conversationId: 'conv-create', selection })
).snapshot();
const resumed = await (
await adapter.resume({
context: CONTEXT,
conversationId: 'conv-resume',
nativeSessionId: 'native-supplied-1',
selection,
})
).snapshot();
expect(created.nativeSessionId).toBeTruthy();
expect(resumed.nativeSessionId).toBe('native-supplied-1');
expect(created.nativeSessionId).not.toBe(resumed.nativeSessionId);
expect(created.seatId).toBe(CONTEXT.seatId);
});
it('gives detach, evict, and end distinct effects (not aliases)', async () => {
const adapter = createAdapter();
const catalog = await adapter.catalog(CONTEXT);
const selection = toSelection(pickAvailable(catalog.models));
const handle = await adapter.create({
context: CONTEXT,
conversationId: 'conv-lifecycle',
selection,
});
await handle.attach({ clientId: 'browser-1' });
await handle.detach('browser-1');
const afterDetach = await handle.snapshot();
expect(afterDetach.attachedClientIds).toEqual([]);
expect(afterDetach.state).not.toBe('evicted');
expect(afterDetach.state).not.toBe('ended');
await handle.evictProcess('idle_timeout');
const afterEvict = await handle.snapshot();
expect(afterEvict.state).toBe('evicted');
// The native session survives eviction (resumable); the process does not.
expect(afterEvict.nativeSessionId).toBe(afterDetach.nativeSessionId);
expect(afterEvict.processId).toBeUndefined();
await handle.endSession('session_ended');
const afterEnd = await handle.snapshot();
expect(afterEnd.state).toBe('ended');
// End is not an alias of evict.
expect(afterEnd.state).not.toBe(afterEvict.state);
});
it('never substitutes the first catalog row for an unknown selection', async () => {
const adapter = createAdapter();
const catalog = await adapter.catalog(CONTEXT);
const firstRow = catalog.models[0];
if (!firstRow) {
throw new Error('contract fixture requires a catalog model');
}
const start = toSelection(pickAvailable(catalog.models));
const handle = await adapter.create({
context: CONTEXT,
conversationId: 'conv-nosub',
selection: start,
});
const bogus: HarnessSelection = {
harnessId: adapter.id,
providerId: 'contract-ghost-provider',
modelId: 'contract-ghost-model',
};
const error = await captureError(() => handle.setModel(bogus));
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('selection_invalid');
expect(dto.selection).toEqual(bogus);
expect(dto.selection).not.toEqual(toSelection(firstRow));
expect((await handle.snapshot()).selection).toEqual(start);
});
it('validates capability-gated interactions with a typed error, not a silent no-op', async () => {
const adapter = createAdapter();
const descriptor = await adapter.describe(CONTEXT);
const catalog = await adapter.catalog(CONTEXT);
const selection = toSelection(pickAvailable(catalog.models));
const handle = await adapter.create({
context: CONTEXT,
conversationId: 'conv-interaction',
selection,
});
const response = {
requestId: 'interaction-1',
type: 'confirm',
accepted: true,
} as const;
if (descriptor.capabilities.includes('extensionUi')) {
await expect(handle.respondInteraction(response)).resolves.toBeUndefined();
} else {
const error = await captureError(() => handle.respondInteraction(response));
expect(error).toBeInstanceOf(HarnessOperationError);
expect((error as HarnessOperationError).dto.code).toBe('interaction_unsupported');
}
});
});
}
+164
View File
@@ -0,0 +1,164 @@
import 'reflect-metadata';
import { mkdir, mkdtemp, rm, writeFile } from 'node:fs/promises';
import * as nodeOs from 'node:os';
import { dirname, isAbsolute, join, relative, resolve } from 'node:path';
import * as nodeUrl from 'node:url';
import type { MosaicConfig } from '@mosaicstack/config';
import type * as MosaicStorage from '@mosaicstack/storage';
import { describe, expect, it, vi, type MockInstance } from 'vitest';
// Each case uses vi.resetModules() and re-imports the full gateway graph for distinct ambient FS/env; CI needs headroom, while this still guards genuine hangs.
const MODULE_IMPORT_TIMEOUT_MS = 120_000;
function snapshotProcessEnv(): Record<string, string | undefined> {
return { ...process.env };
}
function restoreProcessEnv(snapshot: Record<string, string | undefined>): void {
for (const key of Object.keys(process.env)) {
if (!(key in snapshot)) {
delete process.env[key];
}
}
for (const [key, value] of Object.entries(snapshot)) {
if (value === undefined) {
delete process.env[key];
continue;
}
process.env[key] = value;
}
}
function expectPathUnderTempRoot(path: string, tempRoot: string): void {
const relativePath = relative(tempRoot, path);
expect(relativePath === '' || (!relativePath.startsWith('..') && !isAbsolute(relativePath))).toBe(
true,
);
}
async function writeFixture(path: string, contents: string, tempRoot: string): Promise<void> {
expectPathUnderTempRoot(path, tempRoot);
await mkdir(dirname(path), { recursive: true });
await writeFile(path, contents, 'utf8');
}
interface BootstrapPreflightResult {
capturedConfig: MosaicConfig | undefined;
}
async function runBootstrapPreflight(
anchoredConfigContents: string,
ambientConfigContents: string,
): Promise<BootstrapPreflightResult> {
const originalEnv = snapshotProcessEnv();
const tempRoot = await mkdtemp(join(nodeOs.tmpdir(), 'mosaic-gateway-main-preflight-'));
let cwdSpy: ReturnType<typeof vi.spyOn> | undefined;
let exitSpy: MockInstance<typeof process.exit> | undefined;
let consoleInfoSpy: ReturnType<typeof vi.spyOn> | undefined;
let capturedConfig: MosaicConfig | undefined;
try {
const anchor = join(tempRoot, 'anchored', 'apps', 'gateway', 'src');
const homePath = join(tempRoot, 'home');
const cwdPath = join(tempRoot, 'ambient', 'cwd');
const monorepoRootConfigPath = resolve(anchor, '../../..', 'mosaic.config.json');
await mkdir(anchor, { recursive: true });
await mkdir(cwdPath, { recursive: true });
await writeFixture(monorepoRootConfigPath, anchoredConfigContents, tempRoot);
await writeFixture(join(cwdPath, 'mosaic.config.json'), ambientConfigContents, tempRoot);
process.env['HOME'] = homePath;
process.env['BETTER_AUTH_SECRET'] = 'fixture-secret';
delete process.env['MOSAIC_STORAGE_TIER'];
delete process.env['DATABASE_URL'];
delete process.env['VALKEY_URL'];
consoleInfoSpy = vi.spyOn(console, 'info').mockImplementation((): void => undefined);
const exitMock = vi.fn<typeof process.exit>();
exitSpy = vi.spyOn(process, 'exit').mockImplementation(exitMock);
vi.resetModules();
vi.doMock('node:os', () => ({ ...nodeOs, homedir: (): string => homePath }));
vi.doMock('node:url', () => ({
...nodeUrl,
fileURLToPath: (url: string | URL): string => {
const actualPath = nodeUrl.fileURLToPath(url);
if (
actualPath.endsWith('/apps/gateway/src/env.ts') ||
actualPath.endsWith('/apps/gateway/src/env.js')
) {
return join(anchor, 'env.ts');
}
return actualPath;
},
}));
cwdSpy = vi.spyOn(process, 'cwd').mockReturnValue(cwdPath);
vi.doMock('./tracing.js', () => ({}));
const preflightSentinel = new Error('preflight-capture-sentinel');
vi.doMock('@mosaicstack/storage', async () => {
const actual = await vi.importActual<typeof MosaicStorage>('@mosaicstack/storage');
return {
...actual,
detectAndAssertTier: vi.fn((config: MosaicConfig): Promise<void> => {
capturedConfig = config;
throw preflightSentinel;
}),
};
});
await import('./main.js');
await vi.waitFor((): void => {
expect(exitSpy).toHaveBeenCalled();
});
return { capturedConfig };
} finally {
cwdSpy?.mockRestore();
exitSpy?.mockRestore();
consoleInfoSpy?.mockRestore();
vi.doUnmock('@mosaicstack/storage');
vi.doUnmock('./tracing.js');
vi.doUnmock('node:url');
vi.doUnmock('node:os');
vi.resetModules();
restoreProcessEnv(originalEnv);
await rm(tempRoot, { recursive: true, force: true });
}
}
describe('main bootstrap preflight config anchoring', (): void => {
it(
'passes the anchored monorepo-root config to detectAndAssertTier, not an ambient cwd config',
async (): Promise<void> => {
const anchoredConfig = JSON.stringify({
tier: 'local',
storage: { type: 'pglite', dataDir: '.mosaic/storage-pglite' },
queue: { type: 'local', dataDir: '.mosaic/queue' },
memory: { type: 'keyword' },
});
const ambientConfig = JSON.stringify({
tier: 'federated',
storage: {
type: 'postgres',
url: 'postgresql://ambient-attacker.invalid/mosaic',
enableVector: true,
},
queue: { type: 'bullmq' },
memory: { type: 'pgvector' },
});
const { capturedConfig } = await runBootstrapPreflight(anchoredConfig, ambientConfig);
expect(capturedConfig?.tier).toBe('local');
expect(capturedConfig?.storage).not.toEqual(
expect.objectContaining({ url: 'postgresql://ambient-attacker.invalid/mosaic' }),
);
},
MODULE_IMPORT_TIMEOUT_MS,
);
});
+3 -15
View File
@@ -1,18 +1,5 @@
#!/usr/bin/env node
import { config } from 'dotenv';
import { existsSync } from 'node:fs';
import { resolve, join } from 'node:path';
import { homedir } from 'node:os';
// Load .env from daemon config dir (global install / daemon mode).
// Loaded first so monorepo .env can override for local dev.
const daemonEnv = join(homedir(), '.config', 'mosaic', 'gateway', '.env');
if (existsSync(daemonEnv)) config({ path: daemonEnv });
// Load .env from monorepo root (cwd is apps/gateway when run via pnpm filter)
config({ path: resolve(process.cwd(), '../../.env') });
config(); // Also load apps/gateway/.env if present (overrides)
import './env.js';
import './tracing.js';
import 'reflect-metadata';
import { NestFactory } from '@nestjs/core';
@@ -26,6 +13,7 @@ import { mountAuthHandler } from './auth/auth.controller.js';
import { mountMcpHandler } from './mcp/mcp.controller.js';
import { McpService } from './mcp/mcp.service.js';
import { detectAndAssertTier, TierDetectionError } from '@mosaicstack/storage';
import { resolveGatewayConfigPath } from './env.js';
async function bootstrap(): Promise<void> {
const logger = new Logger('Bootstrap');
@@ -37,7 +25,7 @@ async function bootstrap(): Promise<void> {
// Pre-flight: assert all external services required by the configured tier
// are reachable. Runs before NestFactory.create() so failures are visible
// immediately with actionable remediation hints.
const mosaicConfig = loadConfig();
const mosaicConfig = loadConfig(resolveGatewayConfigPath());
try {
await detectAndAssertTier(mosaicConfig);
} catch (err) {
@@ -12,6 +12,10 @@ import { RuntimeProviderService } from '../agent/runtime-provider-registry.servi
import { ChatGateway } from '../chat/chat.gateway.js';
import { CommandAuthorizationService } from '../commands/command-authorization.service.js';
import { validateDiscordServiceToken } from '../chat/chat.gateway-auth.js';
import { ChatRuntimeRouter } from '../chat/chat-runtime-router.js';
import { EmbeddedChatRuntime } from '../chat/embedded-chat.runtime.js';
import { HarnessChatRuntime } from '../chat/harness-chat.runtime.js';
import { HarnessRegistry } from '../harness/harness.registry.js';
import { DiscordReplayProtector } from './discord-replay-protector.js';
const SERVICE_TOKEN = 'test-service-token';
@@ -25,6 +29,7 @@ const ENV_KEYS = [
'DISCORD_ALLOWED_USER_IDS',
'MOSAIC_AGENT_NAME',
'MOSAIC_AGENT_CONFIG_ID',
'CHAT_HARNESS_RUNTIME',
] as const;
const savedEnv = new Map<string, string | undefined>();
@@ -150,6 +155,57 @@ function createPayload(overrides: Partial<DiscordIngressPayload> = {}): DiscordI
};
}
/**
* Task 5 fence (C): the Discord SEND path runs through the exclusive {@link ChatRuntimeRouter},
* constructed here in `pi-rpc` mode with a fully-resolved runtime (`active` = harness). A verified
* Discord *service* turn must nonetheless execute on the {@link EmbeddedChatRuntime} — never the
* harness, never the routing engine — per the Q1/Q2 adjudication: the router owns a dedicated
* verified-ingress dispatch that delegates to embedded regardless of mode, with zero harness
* fallback. The gateway is given the router in the former direct-`AgentService` constructor slot.
*
* RED today: production still reads that slot as a bare `AgentService`, so `this.agentService`
* resolves to the router, `getSession(...)` is not a function, the send path throws and is caught
* (an `error` is emitted and the handler returns) BEFORE it ever reaches the embedded runtime. The
* failure is behavioural wiring — collection, DI, and `onModuleInit` all succeed. GREEN re-routes
* the verified Discord dispatch through the router into the embedded runtime, satisfying the
* preserved create/prompt assertions without weakening any control. `harnessConversations.append`
* proves the harness path is never touched even though the pi-rpc router resolved it as `active`.
*
* Correction #4 is proved behaviourally, not by naming an accessor: the verified-ingress dispatch
* is reachable only from the fully-verified `discordService` branch (the create/prompt tests below)
* and never from a browser-emittable socket event (the browser-forgery refusal test).
*/
function readyPiRpcRegistry(): HarnessRegistry {
const registry = new HarnessRegistry();
// A registered 'pi' adapter + an available (non-sentinel) conversation service let the pi-rpc
// router resolve `active` = harness instead of failing closed at init, so these tests model the
// real hostile condition — the harness runtime IS live — rather than a degraded router.
registry.register({ id: 'pi' } as never);
return registry;
}
function piRpcRouterFronting(
agentService: unknown,
harnessConversations: { append: ReturnType<typeof vi.fn> },
): ChatRuntimeRouter {
const routerConversationServiceTripwire = {
append: () => {
throw new Error('router conversation service must not be resolved on the Discord path');
},
};
const embedded = new EmbeddedChatRuntime(agentService as never);
const harness = new HarnessChatRuntime(harnessConversations as never);
const router = new ChatRuntimeRouter(
readyPiRpcRegistry(),
routerConversationServiceTripwire as never,
embedded,
harness,
'pi-rpc',
);
router.onModuleInit();
return router;
}
describe('Discord ingress security', () => {
it('keeps legacy role-only bindings valid while withholding privileged actor identity', () => {
const [binding] = parseDiscordInteractionBindings(
@@ -433,6 +489,7 @@ describe('Discord ingress security', () => {
it("selects each binding's trusted logical-agent config when creating Discord sessions", async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001,channel-002';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
@@ -489,8 +546,9 @@ describe('Discord ingress security', () => {
},
};
const routingEngine = { resolve: vi.fn() };
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
agentService as never,
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
@@ -531,6 +589,575 @@ describe('Discord ingress security', () => {
expect.objectContaining({ agentConfigId: 'agent-config-orion' }),
);
expect(routingEngine.resolve).not.toHaveBeenCalled();
// Even though the pi-rpc router resolved the harness as `active`, verified Discord ingress must
// never touch it — the create path stays on the embedded runtime.
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('dispatches a verified Discord SEND once and drops a byte-identical replay with zero additional dispatch/persist/ack (Task 5 G4)', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
instanceId: 'Nova',
agentConfigId: 'agent-config-nova',
guildId: 'guild-001',
channelId: 'channel-001',
pairedUsers: {
'user-001': { role: 'operator', mosaicUserId: 'mosaic-operator-001' },
},
},
]);
const session = {
provider: 'configured-provider',
modelId: 'configured-model',
agentConfigId: 'agent-config-nova',
agentName: 'Nova',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const createSession = vi.fn().mockResolvedValue(session);
const prompt = vi.fn().mockResolvedValue(undefined);
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession,
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt,
};
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
const brain = {
agents: { findById: vi.fn((id: string) => Promise.resolve({ id, name: 'Nova' })) },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
{} as never,
{ resolve: vi.fn() } as never,
);
const client = {
id: 'discord-client-replay',
data: { discordService: true },
emit: vi.fn(),
};
const ackCount = (): number =>
client.emit.mock.calls.filter((call) => call[0] === 'message:ack').length;
// One fully-valid signed envelope; the replay reuses the SAME object (same messageId).
const envelope = ingressEnvelope('verified once', 'discord-replay-001', {
conversationId: 'Nova:discord:channel-001',
});
// First delivery: the verified-Discord SEND runs the full embedded dispatch exactly once.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
// Byte-identical replay: the messageId is already claimed, so resolveDiscordIngress returns
// null and the SEND handler bails before dispatch/persist/ack. Every effect stays at exactly one.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
// The harness runtime is never touched on either delivery.
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('a verified SEND that fails the configured service identity consumes no replay claim, so a corrected byte-identical retry dispatches/persists/acks exactly once and a later duplicate stays fail-closed (Task 5 item 4 — claim ordering)', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
instanceId: 'Nova',
agentConfigId: 'agent-config-nova',
guildId: 'guild-001',
channelId: 'channel-001',
pairedUsers: {
'user-001': { role: 'operator', mosaicUserId: 'mosaic-operator-001' },
},
},
]);
const session = {
provider: 'configured-provider',
modelId: 'configured-model',
agentConfigId: 'agent-config-nova',
agentName: 'Nova',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const createSession = vi.fn().mockResolvedValue(session);
const prompt = vi.fn().mockResolvedValue(undefined);
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession,
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt,
};
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
const brain = {
agents: { findById: vi.fn((id: string) => Promise.resolve({ id, name: 'Nova' })) },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
{} as never,
{ resolve: vi.fn() } as never,
);
const client = {
id: 'discord-client-claim-ordering',
data: { discordService: true },
emit: vi.fn(),
};
const ackCount = (): number =>
client.emit.mock.calls.filter((call) => call[0] === 'message:ack').length;
// A single fully-valid signed envelope, reused byte-for-byte across all three deliveries.
const envelope = ingressEnvelope('verified once with late identity', 'discord-order-001', {
conversationId: 'Nova:discord:channel-001',
});
// (1) Configured service identity is MISSING. The envelope is validly signed and passes the
// binding + route checks, but the SEND must refuse at the identity gate BEFORE any claim
// or effect. If the claim fires ahead of that gate, this delivery silently burns the
// replay claim for `discord-order-001` even though nothing dispatched.
delete process.env['DISCORD_SERVICE_USER_ID'];
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(0);
expect(prompt).toHaveBeenCalledTimes(0);
expect(addMessage).toHaveBeenCalledTimes(0);
expect(ackCount()).toBe(0);
// (2) Identity is now configured; the operator resends the SAME envelope byte-for-byte. Because
// step (1) consumed no claim, this corrected retry claims once and runs the full embedded
// dispatch exactly once. (Under the pre-fix ordering the claim was already spent in step (1),
// so this retry is dropped as a replay and never dispatches — the RED this test drives.)
process.env['DISCORD_SERVICE_USER_ID'] = 'discord-service';
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
// (3) A genuine duplicate after a committed turn stays fail-closed: the claim taken in step (2)
// blocks it, so every effect remains at exactly one.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('a verified SEND whose configured agent record fails reconciliation consumes no replay claim, so a corrected byte-identical retry dispatches/persists/acks exactly once (Task 5 finding 3)', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
instanceId: 'Nova',
agentConfigId: 'agent-config-nova',
guildId: 'guild-001',
channelId: 'channel-001',
pairedUsers: {
'user-001': { role: 'operator', mosaicUserId: 'mosaic-operator-001' },
},
},
]);
const session = {
provider: 'configured-provider',
modelId: 'configured-model',
agentConfigId: 'agent-config-nova',
agentName: 'Nova',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const createSession = vi.fn().mockResolvedValue(session);
const prompt = vi.fn().mockResolvedValue(undefined);
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession,
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt,
};
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
// The durable agent record does not reconcile on the first delivery (its name no longer matches
// the verified binding's instance id), then reconciles cleanly on the corrected retry.
const findAgent = vi
.fn()
.mockResolvedValueOnce({ id: 'agent-config-nova', name: 'Renamed-Away' })
.mockResolvedValue({ id: 'agent-config-nova', name: 'Nova' });
const brain = {
agents: { findById: findAgent },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
{} as never,
{ resolve: vi.fn() } as never,
);
const client = {
id: 'discord-client-reconcile',
data: { discordService: true },
emit: vi.fn(),
};
const ackCount = (): number =>
client.emit.mock.calls.filter((call) => call[0] === 'message:ack').length;
const envelope = ingressEnvelope(
'verified once with stale agent record',
'discord-reconcile-001',
{
conversationId: 'Nova:discord:channel-001',
},
);
// (1) The configured-agent reconcile runs BEFORE the replay claim. A mismatch refuses the turn
// and, crucially, consumes no claim for discord-reconcile-001 — nothing dispatches.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(0);
expect(prompt).toHaveBeenCalledTimes(0);
expect(addMessage).toHaveBeenCalledTimes(0);
expect(ackCount()).toBe(0);
// (2) The record now reconciles; because step (1) took no claim, this byte-identical retry claims
// once and runs the full embedded dispatch exactly once. (Pre-fix, the claim was spent ahead
// of the reconcile in step (1), so this retry was dropped as a replay — the RED this drives.)
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
// (3) A genuine duplicate after the committed turn stays fail-closed.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('a verified SEND refuses to reuse a same-scope embedded session minted under a different configured identity, with zero prompt/persist/ack (Task 5 finding 3)', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
instanceId: 'Nova',
agentConfigId: 'agent-config-nova',
guildId: 'guild-001',
channelId: 'channel-001',
pairedUsers: {
'user-001': { role: 'operator', mosaicUserId: 'mosaic-operator-001' },
},
},
]);
// A live session already exists for this conversation/scope, but it was minted under a DIFFERENT
// configured agent (Orion). The verified binding reconciles to Nova, so reusing this session would
// execute one agent's turn under another agent's verified label — the reuse guard must refuse it.
const foreignIdentitySession = {
provider: 'configured-provider',
modelId: 'configured-model',
agentConfigId: 'agent-config-orion',
agentName: 'Orion',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const prompt = vi.fn().mockResolvedValue(undefined);
const createSession = vi.fn().mockResolvedValue(foreignIdentitySession);
const agentService = {
getSession: vi.fn().mockReturnValue(foreignIdentitySession),
createSession,
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt,
};
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
const brain = {
agents: { findById: vi.fn((id: string) => Promise.resolve({ id, name: 'Nova' })) },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
{} as never,
{ resolve: vi.fn() } as never,
);
const client = {
id: 'discord-client-identity-swap',
data: { discordService: true },
emit: vi.fn(),
};
await gateway.handleMessage(
client as never,
ingressEnvelope('reuse under a different identity', 'discord-identity-swap-001', {
conversationId: 'Nova:discord:channel-001',
}),
);
// Refused at the embedded reuse guard: no prompt, no persist, no ack — only a typed refusal.
expect(prompt).not.toHaveBeenCalled();
expect(addMessage).not.toHaveBeenCalled();
expect(client.emit).not.toHaveBeenCalledWith('message:ack', expect.anything());
expect(client.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: 'Nova:discord:channel-001' }),
);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('a verified SEND whose configured agent record resolves under a different id fails reconciliation, consumes no replay claim, and a corrected byte-identical retry dispatches/persists/acks exactly once (Task 5 finding 3 — id axis)', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
instanceId: 'Nova',
agentConfigId: 'agent-config-nova',
guildId: 'guild-001',
channelId: 'channel-001',
pairedUsers: {
'user-001': { role: 'operator', mosaicUserId: 'mosaic-operator-001' },
},
},
]);
const session = {
provider: 'configured-provider',
modelId: 'configured-model',
agentConfigId: 'agent-config-nova',
agentName: 'Nova',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const createSession = vi.fn().mockResolvedValue(session);
const prompt = vi.fn().mockResolvedValue(undefined);
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession,
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt,
};
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
// The name matches the verified binding, but the record's own id is a DIFFERENT agent config —
// an aliased/substituted lookup. Exact-id reconciliation must refuse it on the first delivery,
// then admit the corrected record whose id matches the binding.
const findAgent = vi
.fn()
.mockResolvedValueOnce({ id: 'agent-config-elsewhere', name: 'Nova' })
.mockResolvedValue({ id: 'agent-config-nova', name: 'Nova' });
const brain = {
agents: { findById: findAgent },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
{} as never,
{ resolve: vi.fn() } as never,
);
const client = {
id: 'discord-client-reconcile-id',
data: { discordService: true },
emit: vi.fn(),
};
const ackCount = (): number =>
client.emit.mock.calls.filter((call) => call[0] === 'message:ack').length;
const envelope = ingressEnvelope(
'verified once with aliased agent id',
'discord-reconcile-id-001',
{
conversationId: 'Nova:discord:channel-001',
},
);
// (1) The record's id differs from the binding's agentConfigId. Exact-id reconcile refuses the
// turn BEFORE the replay claim, so nothing dispatches and the claim stays available.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(0);
expect(prompt).toHaveBeenCalledTimes(0);
expect(addMessage).toHaveBeenCalledTimes(0);
expect(ackCount()).toBe(0);
// (2) The record now reconciles on both id and name; because step (1) took no claim, this
// byte-identical retry claims once and runs the full embedded dispatch exactly once.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
// (3) A genuine duplicate after the committed turn stays fail-closed.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('a verified SEND refuses a freshly minted same-scope session whose identity differs from the reconciled configured agent, with zero prompt/persist/ack (Task 5 finding 3 — post-create)', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
instanceId: 'Nova',
agentConfigId: 'agent-config-nova',
guildId: 'guild-001',
channelId: 'channel-001',
pairedUsers: {
'user-001': { role: 'operator', mosaicUserId: 'mosaic-operator-001' },
},
},
]);
// No live session exists for this scope, so the runtime MINTS one — but createSession returns a
// session carrying a DIFFERENT configured identity (Orion) than the reconciled binding (Nova).
// The post-create identity recheck must refuse it rather than dispatch one agent's turn under
// another agent's verified label. (The existing reuse test covers the getSession path; this
// covers the createSession path scrappy flagged as unvalidated.)
const mintedForeignSession = {
provider: 'configured-provider',
modelId: 'configured-model',
agentConfigId: 'agent-config-orion',
agentName: 'Orion',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const prompt = vi.fn().mockResolvedValue(undefined);
const createSession = vi.fn().mockResolvedValue(mintedForeignSession);
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession,
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt,
};
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
const brain = {
agents: { findById: vi.fn((id: string) => Promise.resolve({ id, name: 'Nova' })) },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
{} as never,
{ resolve: vi.fn() } as never,
);
const client = {
id: 'discord-client-postcreate-mismatch',
data: { discordService: true },
emit: vi.fn(),
};
await gateway.handleMessage(
client as never,
ingressEnvelope('mint under a different identity', 'discord-postcreate-001', {
conversationId: 'Nova:discord:channel-001',
}),
);
// The freshly minted session failed the post-create identity recheck: refused with a typed
// error, no prompt, no persist, no ack.
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).not.toHaveBeenCalled();
expect(addMessage).not.toHaveBeenCalled();
expect(client.emit).not.toHaveBeenCalledWith('message:ack', expect.anything());
expect(client.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: 'Nova:discord:channel-001' }),
);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('retains validated persisted attachments in resumed conversation history', async () => {
@@ -593,11 +1220,16 @@ describe('Discord ingress security', () => {
it('preserves authenticated attachment metadata through persistence and agent dispatch', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
const prompt = vi.fn().mockResolvedValue(undefined);
const addMessage = vi.fn().mockResolvedValue(undefined);
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
const session = {
provider: 'test-provider',
modelId: 'test-model',
// The reused embedded session carries the SAME reconciled identity as the verified binding,
// so the finding-3 session-reuse guard admits it rather than refusing an identity swap.
agentConfigId: 'agent-config-nova',
agentName: 'Nova',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
@@ -611,6 +1243,7 @@ describe('Discord ingress security', () => {
prompt,
};
const brain = {
agents: { findById: vi.fn((id: string) => Promise.resolve({ id, name: 'Nova' })) },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
create: vi.fn().mockResolvedValue(undefined),
@@ -618,8 +1251,9 @@ describe('Discord ingress security', () => {
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
agentService as never,
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
@@ -667,6 +1301,66 @@ describe('Discord ingress security', () => {
}),
'discord-service',
);
// The verified Discord prompt dispatch stays on the embedded runtime; the pi-rpc harness that
// the router resolved as `active` is never reached.
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('refuses a browser-forged Discord ingress envelope in pi-rpc with a fixed typed refusal and zero dispatch', async () => {
// Correction #2 + #4 (behavioural). A browser socket is never `discordService` (that flag is
// set only on a valid service-token handshake), so it cannot forge the trusted Discord path by
// emitting an envelope-shaped payload. In pi-rpc it must receive a FIXED TYPED refusal
// (`runtime_unsupported`, the same typed code the sibling harness-fence uses) and reach neither
// the forced Discord service scope, the verified Discord operation, the embedded runtime, nor
// the harness. There is no dedicated socket event for verified ingress — the only ingress
// surface is the generic `message` handler, and a non-service client is refused there.
//
// RED today: a non-service client emitting an envelope-shaped payload falls to the browser
// branch, fails the chat-message shape check, and is dropped SILENTLY (a warn + return) with no
// typed refusal emitted — so the refusal assertion fails. Collection and construction succeed;
// the gap is behavioural. GREEN emits the fixed typed refusal before any dispatch.
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession: vi.fn(),
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
};
const harnessConversations = { append: vi.fn() };
const routingEngine = { resolve: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
{ conversations: { addMessage: vi.fn().mockResolvedValue(undefined) } } as never,
{} as never,
{} as never,
routingEngine as never,
);
const client = {
id: 'browser-forging-discord',
data: { discordService: false },
emit: vi.fn(),
};
await gateway.handleMessage(
client as never,
ingressEnvelope('forged from a browser', 'browser-forgery-001', {
conversationId: 'Nova:discord:channel-001',
}),
);
const refusal = client.emit.mock.calls.find(
([, payload]) => (payload as { code?: string } | undefined)?.code === 'runtime_unsupported',
);
expect(refusal).toBeDefined();
expect(client.emit).not.toHaveBeenCalledWith('message:ack', expect.anything());
expect(agentService.createSession).not.toHaveBeenCalled();
expect(agentService.prompt).not.toHaveBeenCalled();
expect(harnessConversations.append).not.toHaveBeenCalled();
expect(routingEngine.resolve).not.toHaveBeenCalled();
});
it('accepts a thread message through its allowed bound parent channel', () => {
@@ -143,6 +143,12 @@ describe('ReloadService — /reload command sanitizes plugin errors', () => {
const mockSessionGC = { sweepOrphans: vi.fn() };
const mockBrain = { agents: { findByName: vi.fn(), findById: vi.fn(), create: vi.fn() } };
const mockMcpClient = {
getServerStatuses: vi.fn(() => []),
getToolDefinitions: vi.fn(() => []),
reconnectServer: vi.fn().mockResolvedValue(undefined),
};
const executor = new CommandExecutorService(
registry as never,
mockAgentService as never,
@@ -152,7 +158,7 @@ describe('ReloadService — /reload command sanitizes plugin errors', () => {
mockBrain as never,
reloadService,
mockChatGateway as never,
null,
mockMcpClient as never,
);
const payload: SlashCommandPayload = { command: 'reload', conversationId: 'conv-1' };
+2 -2
View File
@@ -5,13 +5,13 @@
"scripts": {
"build": "node ../../scripts/build-web.mjs",
"build:vite": "vite build",
"dev": "next dev",
"dev": "next dev -p 3101",
"dev:vite": "vite",
"lint": "eslint src",
"typecheck": "tsc --noEmit",
"test": "vitest run --passWithNoTests",
"test:e2e": "playwright test",
"start": "next start"
"start": "next start -p 3101"
},
"dependencies": {
"@mosaicstack/design-tokens": "workspace:^",
+10
View File
@@ -10,11 +10,16 @@ import type {
AgentTextPayload,
AgentThinkingPayload,
ChatMessagePayload,
ChatSendCapabilityPayload,
ChatSendProtocol,
ClientToServerEvents,
CommandDef,
CommandManifest,
CommandManifestPayload,
ErrorPayload,
HarnessSelection,
HarnessTurnAckPayload,
HarnessTurnSendPayload,
MessageAckPayload,
RoutingDecisionInfo,
ServerToClientEvents,
@@ -37,11 +42,16 @@ export type {
AgentTextPayload,
AgentThinkingPayload,
ChatMessagePayload,
ChatSendCapabilityPayload,
ChatSendProtocol,
ClientToServerEvents,
CommandDef,
CommandManifest,
CommandManifestPayload,
ErrorPayload,
HarnessSelection,
HarnessTurnAckPayload,
HarnessTurnSendPayload,
MessageAckPayload,
RoutingDecisionInfo,
ServerToClientEvents,
+39
View File
@@ -1,3 +1,42 @@
import type {
HarnessAuthState,
HarnessModelAvailability,
HarnessSelection,
} from '@mosaicstack/types';
// The exact harness/provider/model tuple and its closed enum companions are the
// shared domain types — re-exported here so web consumers (and the runtime
// guards) import one shape, never a divergent local redefinition.
export type { HarnessSelection, HarnessAuthState, HarnessModelAvailability };
/** Harness summary row from `GET /api/harnesses` (the `HarnessSummaryDto`). The
* harness id is kept distinct from any provider id they are never merged. */
export interface HarnessSummary {
id: string;
displayName: string;
capabilities: string[];
}
/** One selectable model in a harness catalog. Extends the `{harnessId,
* providerId, modelId}` tuple with the display/availability metadata the UI
* needs; `inputTypes` is kept as a plain `string[]` on the client boundary
* because it arrives from untrusted JSON and is only ever displayed. */
export interface HarnessCatalogEntry extends HarnessSelection {
displayName: string;
reasoningCapability: boolean;
inputTypes: string[];
authState: HarnessAuthState;
availability: HarnessModelAvailability;
}
/** Harness-scoped catalog from `GET /api/harnesses/:harnessId/catalog`. */
export interface HarnessCatalog {
harnessId: string;
version: string;
fingerprint: string;
models: HarnessCatalogEntry[];
}
/** Conversation returned by the gateway API. */
export interface Conversation {
id: string;
+19 -3
View File
@@ -5,6 +5,14 @@ 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 { ProjectDetailPage } from '@/spa/pages/project-detail';
import { ProjectsPage } from '@/spa/pages/projects';
import {
ProjectDetailRouteErrorBoundary,
ProjectsRouteErrorBoundary,
TasksRouteErrorBoundary,
} from '@/spa/pages/resource-route-error-boundaries';
import { TasksPage } from '@/spa/pages/tasks';
import { AuthGuard, GuestGuard } from '@/spa/guards';
import { Placeholder } from '@/spa/placeholder';
@@ -37,9 +45,17 @@ export const routes: RouteObject[] = [
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: '/projects',
element: <ProjectsPage />,
errorElement: <ProjectsRouteErrorBoundary />,
},
{
path: '/projects/:id',
element: <ProjectDetailPage />,
errorElement: <ProjectDetailRouteErrorBoundary />,
},
{ path: '/tasks', element: <TasksPage />, errorElement: <TasksRouteErrorBoundary /> },
{ path: '/settings', element: <Placeholder title="Settings" /> },
{ path: '/admin', element: <Placeholder title="Admin" /> },
],
+195
View File
@@ -0,0 +1,195 @@
import { afterEach, describe, expect, it, vi } from 'vitest';
import {
fetchCatalog,
fetchHarnesses,
fetchPersistedSelection,
persistSelection,
} from './chat-api';
function json(body: unknown, status = 200): Response {
return new Response(JSON.stringify(body), {
status,
headers: { 'Content-Type': 'application/json' },
});
}
function stubFetch(): ReturnType<typeof vi.fn> {
const fetchMock = vi.fn();
vi.stubGlobal('fetch', fetchMock);
return fetchMock;
}
/** Every URL the client actually requested, across all calls. */
function requestedUrls(fetchMock: ReturnType<typeof vi.fn>): string[] {
return fetchMock.mock.calls.map((call) => String(call[0]));
}
describe('chat-api', () => {
afterEach(() => {
vi.unstubAllGlobals();
});
it('fetchHarnesses GETs /api/harnesses and returns typed summaries (harness id separate from provider)', async () => {
const fetchMock = stubFetch();
fetchMock.mockResolvedValue(
json([
{ id: 'pi', displayName: 'Pi', capabilities: ['chat', 'tools'] },
{ id: 'openai', displayName: 'OpenAI', capabilities: ['chat'] },
]),
);
const harnesses = await fetchHarnesses();
expect(fetchMock).toHaveBeenCalledOnce();
expect(String(fetchMock.mock.calls[0]?.[0])).toBe('/api/harnesses');
expect(harnesses).toEqual([
{ id: 'pi', displayName: 'Pi', capabilities: ['chat', 'tools'] },
{ id: 'openai', displayName: 'OpenAI', capabilities: ['chat'] },
]);
});
it('fetchCatalog GETs the harness-scoped catalog and returns only its model entries', async () => {
const fetchMock = stubFetch();
fetchMock.mockResolvedValue(
json({
harnessId: 'pi',
version: '2026-08-11',
fingerprint: 'abc123',
models: [
{
harnessId: 'pi',
providerId: 'openai',
modelId: 'gpt-5',
displayName: 'GPT-5',
reasoningCapability: true,
inputTypes: ['text'],
authState: 'ready',
availability: 'available',
},
],
}),
);
const result = await fetchCatalog('pi');
expect(String(fetchMock.mock.calls[0]?.[0])).toBe('/api/harnesses/pi/catalog');
expect(result.ok).toBe(true);
if (!result.ok) throw new Error('expected ok catalog');
expect(result.catalog.harnessId).toBe('pi');
expect(result.catalog.models).toHaveLength(1);
expect(result.catalog.models[0]).toMatchObject({
harnessId: 'pi',
providerId: 'openai',
modelId: 'gpt-5',
availability: 'available',
});
});
it('normalizes a catalog 404 into a typed catalog_unavailable result without surfacing the raw body', async () => {
const fetchMock = stubFetch();
fetchMock.mockResolvedValue(
json(
{
code: 'adapter_unavailable',
message: 'raw gateway detail that must not leak verbatim',
harnessId: 'attacker-echo',
extra: { hostile: 'blob' },
},
404,
),
);
const result = await fetchCatalog('ghost');
expect(result.ok).toBe(false);
if (result.ok) throw new Error('expected unavailable result');
expect(result.code).toBe('catalog_unavailable');
// harnessId comes from the request, never the (untrusted) response body.
expect(result.harnessId).toBe('ghost');
expect(typeof result.message).toBe('string');
// The raw response body is never rendered/returned verbatim.
expect(JSON.stringify(result)).not.toContain('hostile');
expect(JSON.stringify(result)).not.toContain('attacker-echo');
});
it('fetchPersistedSelection returns the stored tuple, or null when unset', async () => {
const fetchMock = stubFetch();
fetchMock.mockResolvedValueOnce(
json({ selection: { harnessId: 'pi', providerId: 'openai', modelId: 'gpt-5' } }),
);
await expect(fetchPersistedSelection()).resolves.toEqual({
harnessId: 'pi',
providerId: 'openai',
modelId: 'gpt-5',
});
expect(String(fetchMock.mock.calls[0]?.[0])).toBe('/api/chat/preferences/selection');
fetchMock.mockResolvedValueOnce(json({ selection: null }));
await expect(fetchPersistedSelection()).resolves.toBeNull();
});
it('persistSelection PUTs the structured tuple (not free text) and returns the confirmed selection', async () => {
const fetchMock = stubFetch();
fetchMock.mockResolvedValue(
json({ selection: { harnessId: 'pi', providerId: 'openai', modelId: 'gpt-5' } }),
);
const result = await persistSelection({
harnessId: 'pi',
providerId: 'openai',
modelId: 'gpt-5',
});
expect(result.ok).toBe(true);
const call = fetchMock.mock.calls[0];
expect(String(call?.[0])).toBe('/api/chat/preferences/selection');
const init = call?.[1] as RequestInit;
expect(String(init.method).toUpperCase()).toBe('PUT');
// The body is exactly the structured tuple — harness/provider/model kept distinct.
expect(JSON.parse(String(init.body))).toEqual({
harnessId: 'pi',
providerId: 'openai',
modelId: 'gpt-5',
});
});
it('normalizes a selection 422 into a typed error preserving the requested tuple exactly', async () => {
const fetchMock = stubFetch();
fetchMock.mockResolvedValue(
json(
{
code: 'model_unavailable',
message: 'raw detail that must not leak',
selection: { harnessId: 'x', providerId: 'y', modelId: 'z' },
},
422,
),
);
const requested = { harnessId: 'pi', providerId: 'openai', modelId: 'gpt-5' };
const result = await persistSelection(requested);
expect(result.ok).toBe(false);
if (result.ok) throw new Error('expected failed persist');
expect(['selection_invalid', 'model_unavailable']).toContain(result.code);
// The requested tuple is preserved unchanged — not replaced by the body's echo.
expect(result.requested).toEqual(requested);
expect(JSON.stringify(result)).not.toContain('raw detail');
});
it('never requests any /api/providers* endpoint', async () => {
const fetchMock = stubFetch();
fetchMock.mockResolvedValue(json([]));
await fetchHarnesses();
fetchMock.mockResolvedValue(
json({ harnessId: 'pi', version: '1', fingerprint: 'f', models: [] }),
);
await fetchCatalog('pi');
fetchMock.mockResolvedValue(json({ selection: null }));
await fetchPersistedSelection();
for (const url of requestedUrls(fetchMock)) {
expect(url).not.toContain('/api/providers');
}
});
});
+132
View File
@@ -0,0 +1,132 @@
/**
* Typed fetch wrappers for the Task-3 harness HTTP contract the chat selection
* UI depends on. Every response body is untrusted and is normalized through the
* runtime guards before it reaches state a 404 (catalog) and a 422 (selection)
* are mapped to typed, body-free error results so a raw gateway body is never
* rendered, and the caller's requested tuple is preserved verbatim on failure.
*
* This module talks ONLY to the harness/chat-preferences endpoints. It never
* calls `/api/providers*` provider identity lives inside the harness catalog.
*/
import { asHarnessCatalog, asHarnessSelection, asHarnessSummaries } from './runtime-guards';
import type { HarnessCatalog, HarnessSelection, HarnessSummary } from '@/lib/types';
/** A catalog fetch either yields the typed catalog or a typed unavailability
* never a thrown raw body. */
export type CatalogResult =
| { ok: true; catalog: HarnessCatalog }
| { ok: false; code: 'catalog_unavailable'; harnessId: string; message: string };
export type SelectionErrorCode = 'selection_invalid' | 'model_unavailable';
/** A persist either confirms the stored tuple or reports a typed domain failure
* that echoes back the exact tuple the caller requested. */
export type SelectionPersistResult =
| { ok: true; selection: HarnessSelection }
| { ok: false; code: SelectionErrorCode; message: string; requested: HarnessSelection };
/** A safe, generic message for an unavailable catalog the raw 404 body is
* never surfaced. */
const CATALOG_UNAVAILABLE_MESSAGE = 'This harness catalog is currently unavailable.';
/** A safe, generic message for a rejected selection. The untrusted 422 body's
* own `message` is deliberately NEVER surfaced only this fixed copy so a
* raw gateway detail can never leak into the UI. Only the closed `code` enum is
* read from the body. */
const SELECTION_REJECTED_MESSAGE = 'This selection was rejected.';
async function readJson(response: Response): Promise<unknown> {
return response.json().catch(() => null);
}
function safeSelectionCode(body: unknown): SelectionErrorCode {
if (typeof body === 'object' && body !== null && 'code' in body) {
const code = (body as { code: unknown }).code;
if (code === 'selection_invalid' || code === 'model_unavailable') return code;
}
// Default to the more conservative "invalid" classification for anything
// unrecognized rather than guessing "model_unavailable".
return 'selection_invalid';
}
/** `GET /api/harnesses` the list of harness summaries. A non-OK response
* normalizes to an empty list (the UI then has no harness to select). */
export async function fetchHarnesses(): Promise<HarnessSummary[]> {
const response = await fetch('/api/harnesses', {
credentials: 'include',
headers: { Accept: 'application/json' },
});
if (!response.ok) return [];
return asHarnessSummaries(await readJson(response));
}
/** `GET /api/harnesses/:harnessId/catalog` the harness-scoped catalog. A 404
* (or any non-OK) becomes a typed `catalog_unavailable` result rather than a
* fallback catalog or a rendered raw body. */
export async function fetchCatalog(harnessId: string): Promise<CatalogResult> {
const response = await fetch(`/api/harnesses/${encodeURIComponent(harnessId)}/catalog`, {
credentials: 'include',
headers: { Accept: 'application/json' },
});
if (!response.ok) {
return {
ok: false,
code: 'catalog_unavailable',
// Scoped to the requested harness id, never the untrusted body's echo.
harnessId,
message: CATALOG_UNAVAILABLE_MESSAGE,
};
}
return { ok: true, catalog: asHarnessCatalog(await readJson(response), harnessId) };
}
/** `GET /api/chat/preferences/selection` the persisted tuple, or null when
* unset or malformed. */
export async function fetchPersistedSelection(): Promise<HarnessSelection | null> {
const response = await fetch('/api/chat/preferences/selection', {
credentials: 'include',
headers: { Accept: 'application/json' },
});
if (!response.ok) return null;
const body = await readJson(response);
if (typeof body !== 'object' || body === null) return null;
return asHarnessSelection((body as { selection?: unknown }).selection);
}
/** `PUT /api/chat/preferences/selection` with the structured tuple as the body.
* On success returns the confirmed selection; on a typed domain failure (422)
* or validation error, returns a typed result carrying the EXACT requested
* tuple never the body's echo and never the raw body text. */
export async function persistSelection(
selection: HarnessSelection,
): Promise<SelectionPersistResult> {
const requested: HarnessSelection = {
harnessId: selection.harnessId,
providerId: selection.providerId,
modelId: selection.modelId,
};
const response = await fetch('/api/chat/preferences/selection', {
method: 'PUT',
credentials: 'include',
headers: { Accept: 'application/json', 'Content-Type': 'application/json' },
body: JSON.stringify(requested),
});
if (!response.ok) {
const body = await readJson(response);
return {
ok: false,
code: safeSelectionCode(body),
// Fixed copy only — the untrusted body's message is never surfaced.
message: SELECTION_REJECTED_MESSAGE,
requested,
};
}
const body = await readJson(response);
const confirmed =
typeof body === 'object' && body !== null
? asHarnessSelection((body as { selection?: unknown }).selection)
: null;
// A malformed 2xx body is treated as a confirmation of exactly what we sent —
// the server accepted the tuple, so the requested tuple is the source of truth.
return { ok: true, selection: confirmed ?? requested };
}
+103 -20
View File
@@ -1,7 +1,9 @@
import { useState, type KeyboardEvent, type ReactElement } from 'react';
import type { HarnessSelection } from '@/lib/types';
import type { HarnessSelectionValue } from './use-harness-selection';
interface ComposerProps {
onSend: (input: { content: string; provider?: string; modelId?: string }) => void;
onSend: (input: { content: string; selection: HarnessSelection }) => boolean;
onStop: () => void;
streaming: boolean;
/** True from local send time through server turn startup/ack and
@@ -9,6 +11,23 @@ interface ComposerProps {
* pre-ack window where a second send could otherwise slip through. */
sending: boolean;
hasConversation: boolean;
/** Structured harness/provider/model selection state. The composer never
* accepts free-text provider/model every sendable tuple is a validated,
* persisted catalog entry, and the send projection is derived from it. */
harness: HarnessSelectionValue;
}
/** The distinct provider ids present in the current catalog, in first-seen
* order the provider select is catalog-derived, never a hardcoded list. */
function providerOptions(harness: HarnessSelectionValue): string[] {
const seen = new Set<string>();
const out: string[] = [];
for (const model of harness.catalog?.models ?? []) {
if (seen.has(model.providerId)) continue;
seen.add(model.providerId);
out.push(model.providerId);
}
return out;
}
export function Composer({
@@ -17,22 +36,26 @@ export function Composer({
streaming,
sending,
hasConversation,
harness,
}: ComposerProps): ReactElement {
const [content, setContent] = useState('');
const [provider, setProvider] = useState('');
const [modelId, setModelId] = useState('');
const busy = streaming || sending;
function submit(): void {
if (busy) return;
// Send is gated on a validated, persisted catalog tuple — a draft or unset
// selection can never emit, so provider/model never travel as free text.
if (!harness.canSend || harness.persistedSelection === null) return;
const trimmed = content.trim();
if (!trimmed) return;
onSend({
content: trimmed,
provider: provider.trim() || undefined,
modelId: modelId.trim() || undefined,
});
setContent('');
// Pass the validated, persisted selection tuple only. The hook derives the
// wire projection (legacy `message` provider/model, or `turn:send`) from the
// negotiated `chat:send-capability` protocol — never from flat caller input.
const selection = harness.persistedSelection;
const ok = onSend({ content: trimmed, selection });
// Clear the input only when the send was accepted — a refused turn (e.g. a
// failed idempotency mint) must retain the user's text so it is not lost.
if (ok) setContent('');
}
function handleKeyDown(event: KeyboardEvent<HTMLTextAreaElement>): void {
@@ -42,6 +65,19 @@ export function Composer({
}
}
// Scope the model options to the intentionally selected provider. With no
// provider chosen (`providerId === ''`) nothing matches, so the model select
// offers only the placeholder — never a cross-provider row.
const models = (harness.catalog?.models ?? []).filter(
(model) => model.providerId === harness.providerId,
);
// A collision-safe composite option identity covering the full provider+model
// tuple. The controlled select mirrors the same identity so the exact catalog
// row highlights (a bare modelId would collide across providers).
const modelOptionValue = (model: { providerId: string; modelId: string }): string =>
`${model.providerId}:${model.modelId}`;
const selectedModelValue = harness.modelId ? `${harness.providerId}:${harness.modelId}` : '';
return (
<form
onSubmit={(event) => {
@@ -51,21 +87,68 @@ export function Composer({
className="flex flex-col gap-2 border-t p-4"
>
<div className="flex flex-wrap gap-2">
<input
<select
aria-label="Harness"
value={harness.harnessId}
onChange={(event) => harness.selectHarness(event.target.value)}
className="rounded border px-2 py-1 text-xs"
>
<option value="">Select a harness</option>
{harness.harnesses.map((item) => (
<option key={item.id} value={item.id}>
{item.displayName}
</option>
))}
</select>
<select
aria-label="Provider"
value={provider}
onChange={(event) => setProvider(event.target.value)}
placeholder="Provider (optional)"
value={harness.providerId}
onChange={(event) => harness.selectProvider(event.target.value)}
disabled={harness.catalogUnavailable || providerOptions(harness).length === 0}
className="rounded border px-2 py-1 text-xs"
/>
<input
>
<option value="">Select a provider</option>
{providerOptions(harness).map((providerId) => (
<option key={providerId} value={providerId}>
{providerId}
</option>
))}
</select>
<select
aria-label="Model"
value={modelId}
onChange={(event) => setModelId(event.target.value)}
placeholder="Model (optional)"
value={selectedModelValue}
onChange={(event) => {
// Resolve the composite option identity back to the exact catalog
// row and persist that row's own provider+model — never a bare id.
const selected = models.find((model) => modelOptionValue(model) === event.target.value);
if (selected) harness.selectModel(selected.providerId, selected.modelId);
}}
disabled={harness.catalogUnavailable || models.length === 0}
className="rounded border px-2 py-1 text-xs"
/>
>
<option value="">Select a model</option>
{models.map((model) => (
<option key={modelOptionValue(model)} value={modelOptionValue(model)}>
{model.displayName}
</option>
))}
</select>
</div>
{harness.catalogUnavailable ? (
<p role="status" className="text-xs opacity-70">
This harness catalog is currently unavailable.
</p>
) : null}
{harness.isStale ? (
<p role="status" className="text-xs opacity-70">
The saved model is no longer available pick another to continue.
</p>
) : null}
{harness.persistError ? (
<p role="alert" className="text-xs">
{harness.persistError.message}
</p>
) : null}
<div className="flex items-end gap-2">
<textarea
aria-label="Message"
@@ -78,7 +161,7 @@ export function Composer({
/>
<button
type="submit"
disabled={!content.trim() || busy}
disabled={!content.trim() || busy || !harness.canSend}
className="rounded px-3 py-2 text-sm font-medium"
>
Send
+101
View File
@@ -5,6 +5,14 @@
* a non-array, `.toFixed` on a non-number) or render an object as a React
* child.
*/
import type {
HarnessAuthState,
HarnessCatalog,
HarnessCatalogEntry,
HarnessModelAvailability,
HarnessSelection,
HarnessSummary,
} from '@/lib/types';
export function asString(value: unknown, fallback = ''): string {
return typeof value === 'string' ? value : fallback;
@@ -38,6 +46,99 @@ export function isRecord(value: unknown): value is Record<string, unknown> {
return typeof value === 'object' && value !== null;
}
/**
* The HTTP harness/catalog/selection JSON bodies are as untrusted as the socket
* payloads above a misbehaving or compromised gateway can send anything. The
* guards below normalize those bodies into the typed client shapes without ever
* rendering a raw body, so a 404/422/malformed response can never inject an
* object into React or a non-tuple into the selection state.
*/
/** Normalizes an untrusted `authState` to the closed set, defaulting to the
* safest value (`unavailable`) for anything unrecognized. */
export function asHarnessAuthState(value: unknown): HarnessAuthState {
return value === 'ready' || value === 'auth_required' || value === 'unavailable'
? value
: 'unavailable';
}
/** Normalizes an untrusted `availability` to the closed set, defaulting to
* `unavailable` so a malformed row can never present as sendable. */
export function asHarnessAvailability(value: unknown): HarnessModelAvailability {
return value === 'available' ? 'available' : 'unavailable';
}
/** A tuple is valid only when all three ids are non-empty strings a partial
* or malformed selection is rejected (null) rather than half-adopted. */
export function asHarnessSelection(value: unknown): HarnessSelection | null {
if (!isRecord(value)) return null;
const harnessId = value.harnessId;
const providerId = value.providerId;
const modelId = value.modelId;
if (
typeof harnessId !== 'string' ||
typeof providerId !== 'string' ||
typeof modelId !== 'string' ||
harnessId.length === 0 ||
providerId.length === 0 ||
modelId.length === 0
) {
return null;
}
return { harnessId, providerId, modelId };
}
/** Normalizes an untrusted array into typed harness summaries, dropping any row
* without a usable id. */
export function asHarnessSummaries(value: unknown): HarnessSummary[] {
if (!Array.isArray(value)) return [];
const out: HarnessSummary[] = [];
for (const item of value) {
if (!isRecord(item)) continue;
const id = asString(item.id);
if (id.length === 0) continue;
out.push({
id,
displayName: asNonEmptyString(item.displayName, id),
capabilities: asStringArray(item.capabilities),
});
}
return out;
}
function asHarnessCatalogEntry(value: unknown): HarnessCatalogEntry | null {
const selection = asHarnessSelection(value);
if (selection === null || !isRecord(value)) return null;
return {
...selection,
displayName: asNonEmptyString(value.displayName, selection.modelId),
reasoningCapability: value.reasoningCapability === true,
inputTypes: asStringArray(value.inputTypes),
authState: asHarnessAuthState(value.authState),
availability: asHarnessAvailability(value.availability),
};
}
/** Normalizes an untrusted catalog body into the typed client catalog. The
* caller supplies `harnessId` (from the request path) so the returned catalog
* is scoped to the harness that was actually requested, never a body-echoed id.
* Malformed model rows are dropped rather than invalidating the whole catalog. */
export function asHarnessCatalog(value: unknown, harnessId: string): HarnessCatalog {
const record = isRecord(value) ? value : {};
const rawModels = Array.isArray(record.models) ? record.models : [];
const models: HarnessCatalogEntry[] = [];
for (const row of rawModels) {
const entry = asHarnessCatalogEntry(row);
if (entry !== null) models.push(entry);
}
return {
harnessId,
version: asString(record.version),
fingerprint: asString(record.fingerprint),
models,
};
}
/** 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
@@ -14,6 +14,10 @@ export interface EmittedEvent<K extends ClientEvent = ClientEvent> {
/** The subset of a Socket.IO `ChatSocket` that `useChatConnection` drives. */
export interface FakeChatSocket {
connected: boolean;
/** Mirrors socket.io-client's `Socket.id`: the connection identity the server
* echoes in a `chat:send-capability` payload. The generation-bound send
* protocol accepts an advertisement only when `payload.connectionId === id`. */
id: string;
connect(): FakeChatSocket;
on<K extends ServerEvent>(event: K, handler: ServerHandler<K>): FakeChatSocket;
off<K extends ServerEvent>(event: K, handler: ServerHandler<K>): FakeChatSocket;
@@ -51,8 +55,10 @@ export function createFakeChatSocket(): {
/** 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;
* without clearing or replacing any listeners. A real reconnect is assigned
* a fresh `Socket.id`; pass `nextId` to model that new connection identity
* (defaults to the current id so existing callers are unaffected). */
simulateReconnect(nextId?: string): void;
} {
const listeners = new Map<ServerEvent, Set<(payload: never) => void>>();
const emitted: EmittedEvent[] = [];
@@ -63,6 +69,7 @@ export function createFakeChatSocket(): {
// type-checked against ServerToClientEvents/ClientToServerEvents.
const socket = {
connected: false,
id: 'socket-a',
connect: vi.fn(function connect(this: void) {
socket.connected = true;
return socket;
@@ -105,8 +112,9 @@ export function createFakeChatSocket(): {
}
}
function simulateReconnect(): void {
function simulateReconnect(nextId: string = socket.id): void {
socket.connected = true;
socket.id = nextId;
const lifecycleKey = 'connect' satisfies LifecycleEvent as unknown as ServerEvent;
for (const handler of listeners.get(lifecycleKey) ?? []) {
(handler as () => void)();
@@ -21,6 +21,7 @@ vi.mock('@/lib/socket', () => ({
destroySocket: destroySocketMock,
}));
import type { ChatSendProtocol, HarnessSelection } from '@mosaicstack/types';
import { useChatConnection, type ChatConnectionValue } from './use-chat-connection';
let fake: ReturnType<typeof createFakeChatSocket>;
@@ -33,6 +34,126 @@ function Harness(): null {
return null;
}
/**
* Task Five, Step Two (web send path) red-first support. These probe the FUTURE
* pi-rpc send contract against the CURRENT implementation, so the desired API is
* expressed here as a localized cast production types stay untouched until Step
* Three. The reds fail on behaviour (legacy `message` emitted instead of
* `turn:send`; no nested selection; no idempotency key; void return; no
* conversation-id gating), never on a missing module or type.
*/
interface HarnessTurnSendInput {
readonly content: string;
readonly selection: HarnessSelection;
}
type HarnessSendMessage = (input: HarnessTurnSendInput) => boolean;
function harnessSend(): HarnessSendMessage {
return latest?.actions.sendMessage as unknown as HarnessSendMessage;
}
/**
* Task Five MAJOR-1 (browser send-protocol negotiation) support. The Gateway
* advertises how this connection may send via a server-to-client-only
* `chat:send-capability` (already part of the typed `ServerToClientEvents`
* contract, so this uses the fake's typed `serverEmit` no cast); the hook
* holds the advertised protocol and routes `sendMessage` through an exhaustive
* switch on it, never inferring it from conversation/selection. When no listener
* is registered yet (CURRENT impl), the emit is an inert no-op, so the reds
* below fail on BEHAVIOUR the current send path still infers a protocol and
* emits regardless of any advertisement not on a missing module or type.
*/
function advertiseCapability(protocol: ChatSendProtocol, connectionId: string): void {
fake.serverEmit('chat:send-capability', { protocol, connectionId });
}
/**
* Install a controllable `crypto.randomUUID` on the global crypto object and
* return a restore fn. Uses defineProperty on the instance so it works whether
* or not the native method is configurable (it lives on the prototype, so an own
* property simply shadows it).
*/
function installRandomUUID(fn: () => string): () => void {
const g = globalThis as { crypto?: { randomUUID?: () => string } };
if (!g.crypto) {
Object.defineProperty(g, 'crypto', { configurable: true, writable: true, value: {} });
}
const cryptoObj = g.crypto as { randomUUID?: () => string };
const original = Object.getOwnPropertyDescriptor(cryptoObj, 'randomUUID');
Object.defineProperty(cryptoObj, 'randomUUID', {
configurable: true,
writable: true,
value: fn,
});
return () => {
if (original) {
Object.defineProperty(cryptoObj, 'randomUUID', original);
} else {
Reflect.deleteProperty(cryptoObj, 'randomUUID');
}
};
}
/**
* Force `crypto.randomUUID` to read as ABSENT by shadowing it with an own
* `undefined` property. The native method lives on `Crypto.prototype`, so a
* bare delete of the (non-existent) own property would leave the inherited
* method visible the shadow is what actually makes the call site see no
* secure generator. Returns a restore fn.
*/
function removeRandomUUID(): () => void {
const g = globalThis as { crypto?: { randomUUID?: () => string } };
if (!g.crypto) {
Object.defineProperty(g, 'crypto', { configurable: true, writable: true, value: {} });
}
const cryptoObj = g.crypto as { randomUUID?: () => string };
const original = Object.getOwnPropertyDescriptor(cryptoObj, 'randomUUID');
Object.defineProperty(cryptoObj, 'randomUUID', {
configurable: true,
writable: true,
value: undefined,
});
return () => {
if (original) {
Object.defineProperty(cryptoObj, 'randomUUID', original);
} else {
Reflect.deleteProperty(cryptoObj, 'randomUUID');
}
};
}
/**
* Task Five, Step Two group 4/5 support the FUTURE `turn:ack` receipt surface
* and the FUTURE fixed idempotency/rejection notice, expressed as a localized
* read-only view over `state`. Production `ChatConnectionState` gains
* `turnReceipt` at Step Three; the cast keeps production types untouched until
* then, so a success assertion against it fails on BEHAVIOUR (no turn:ack
* handler runs), never on a missing module. `error` already exists on state.
*/
interface HarnessTurnReceiptView {
readonly idempotencyKey: string;
readonly receiptId: string;
readonly selection: HarnessSelection;
}
interface HarnessTurnStateView {
readonly turnReceipt: HarnessTurnReceiptView | null | undefined;
readonly error: string | null;
}
function harnessTurnState(): HarnessTurnStateView {
return latest?.state as unknown as HarnessTurnStateView;
}
/**
* Emit a server `turn:ack` the CURRENT hook has no listener for a safe no-op
* today (the fake iterates an empty handler set), so the group-4 reds fail
* because nothing is surfaced, not because this throws. The event name is cast
* past the compile-time `ServerToClientEvents` contract exactly as the
* `turn:send` client cast is; the typed event map lands at Step Three.
*/
function serverEmitTurnAck(payload: unknown): void {
fake.serverEmitRaw('turn:ack' as unknown as Parameters<typeof fake.serverEmitRaw>[0], payload);
}
beforeAll(() => {
Object.defineProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT', {
configurable: true,
@@ -67,6 +188,20 @@ afterEach(async () => {
});
describe('useChatConnection', () => {
// Task Five MAJOR-1: the send path is PROTOCOL-driven — `sendMessage` routes
// only on the negotiated `chat:send-capability`, never on inferred
// conversation/selection state. These pre-existing cases exercise the legacy
// `message` branch, so the connection is advertised `legacy-message` once here
// (server-to-client, for this exact socket id) after the mount registers its
// listener. Sub-describes that need the pi turn-runtime reset the generation
// and re-advertise `turn-send`; the capability describe resets to the
// unadvertised `unavailable` baseline and drives the protocol itself.
beforeEach(async () => {
await act(async () => {
advertiseCapability('legacy-message', fake.socket.id);
});
});
it('establishes the active conversation from the first message:ack when message omitted conversationId', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
@@ -344,7 +479,10 @@ describe('useChatConnection', () => {
it('sendMessage emits optional conversationId/provider/modelId and appends an optimistic user turn', async () => {
await act(async () => {
latest?.actions.sendMessage({ content: 'hello', provider: 'anthropic', modelId: 'claude' });
latest?.actions.sendMessage({
content: 'hello',
selection: { harnessId: 'pi', providerId: 'anthropic', modelId: 'claude' },
});
});
expect(fake.emitted).toContainEqual({
@@ -373,6 +511,408 @@ describe('useChatConnection', () => {
});
});
describe('turn:send harness routing (Task Five, Step Two red-first)', () => {
const selection: HarnessSelection = {
harnessId: 'pi',
providerId: 'anthropic',
modelId: 'claude',
};
const UUID = 'aaaaaaaa-aaaa-4aaa-8aaa-aaaaaaaaaaaa';
// The pi turn-runtime routes sends through `turn:send`. Reset the generation
// (clearing the outer `legacy-message` advertisement + first-wins lock) and
// advertise `turn-send` for this exact connection, so every send below takes
// the turn-runtime branch.
beforeEach(async () => {
await act(async () => {
fake.simulateReconnect();
});
await act(async () => {
advertiseCapability('turn-send', fake.socket.id);
});
});
async function establishConversation(): Promise<void> {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
}
it('emits a single turn:send with the nested selection tuple and a UUID idempotencyKey — never the legacy message event', async () => {
const restore = installRandomUUID(() => UUID);
try {
await establishConversation();
await act(async () => {
harnessSend()({ content: 'hello', selection });
});
} finally {
restore();
}
const sends = fake.emitted.filter((e) => e.event === 'turn:send');
expect(sends).toHaveLength(1);
expect(sends[0]?.payload).toEqual({
conversationId: 'c1',
content: 'hello',
selection,
idempotencyKey: UUID,
});
// The pi-rpc sender must not fall back to the embedded `message` event.
expect(fake.emitted.some((e) => e.event === 'message')).toBe(false);
});
it('generates the idempotencyKey with exactly one crypto.randomUUID() call per accepted send', async () => {
const gen = vi.fn(() => UUID);
const restore = installRandomUUID(gen);
try {
await establishConversation();
await act(async () => {
harnessSend()({ content: 'first', selection });
});
await act(async () => {
harnessSend()({ content: 'second', selection });
});
} finally {
restore();
}
expect(gen).toHaveBeenCalledTimes(2);
const keys = fake.emitted
.filter((e) => e.event === 'turn:send')
.map((e) => (e.payload as { idempotencyKey: string }).idempotencyKey);
expect(keys).toEqual([UUID, UUID]);
});
it('does not send before an active conversation id exists (no first-send auto-create)', async () => {
const restore = installRandomUUID(() => UUID);
let returned: boolean | undefined;
try {
await act(async () => {
returned = harnessSend()({ content: 'too early', selection });
});
} finally {
restore();
}
expect(returned).toBe(false);
expect(fake.emitted.some((e) => e.event === 'turn:send')).toBe(false);
expect(fake.emitted.some((e) => e.event === 'message')).toBe(false);
// Nothing optimistically appended when the send is refused.
expect(latest?.state.messages.some((m) => m.text === 'too early')).toBe(false);
});
it('returns true when it emits and false when the send is refused', async () => {
const restore = installRandomUUID(() => UUID);
let refusedEarly: boolean | undefined;
let acceptedAfter: boolean | undefined;
try {
await act(async () => {
refusedEarly = harnessSend()({ content: 'early', selection });
});
await establishConversation();
await act(async () => {
acceptedAfter = harnessSend()({ content: 'now', selection });
});
} finally {
restore();
}
expect(refusedEarly).toBe(false);
expect(acceptedAfter).toBe(true);
});
it('when secure UUID generation throws: emits nothing, appends nothing, releases the lock, and a later send succeeds', async () => {
await establishConversation();
const failing = installRandomUUID(() => {
throw new Error('secure random unavailable');
});
let firstReturn: boolean | undefined;
try {
await act(async () => {
firstReturn = harnessSend()({ content: 'blocked', selection });
});
} finally {
failing();
}
expect(firstReturn).toBe(false);
expect(fake.emitted.some((e) => e.event === 'turn:send')).toBe(false);
expect(latest?.state.messages.some((m) => m.text === 'blocked')).toBe(false);
// The send lock must have been released, so a subsequent valid send works.
const restore = installRandomUUID(() => UUID);
let secondReturn: boolean | undefined;
try {
await act(async () => {
secondReturn = harnessSend()({ content: 'retry', selection });
});
} finally {
restore();
}
expect(secondReturn).toBe(true);
expect(fake.emitted.some((e) => e.event === 'turn:send')).toBe(true);
});
});
describe('turn:ack receipt + rejection contract (Task Five, Step Two group 4)', () => {
const selection: HarnessSelection = {
harnessId: 'pi',
providerId: 'anthropic',
modelId: 'claude',
};
const UUID = 'aaaaaaaa-aaaa-4aaa-8aaa-aaaaaaaaaaaa';
// turn:ack is the receipt for a `turn:send`, so these establish under the pi
// turn-runtime: reset the generation (clearing the outer `legacy-message`
// advertisement + lock) and advertise `turn-send` for this connection.
beforeEach(async () => {
await act(async () => {
fake.simulateReconnect();
});
await act(async () => {
advertiseCapability('turn-send', fake.socket.id);
});
});
// Establish the conversation and send one accepted turn under a controlled
// idempotency key. Returns the crypto restore fn so callers unwind it.
async function establishAndSend(): Promise<() => void> {
const restore = installRandomUUID(() => UUID);
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
await act(async () => {
harnessSend()({ content: 'hello', selection });
});
return restore;
}
it('surfaces a turn:ack receipt echoing the exact idempotencyKey, server receiptId, and requested selection tuple', async () => {
const restore = await establishAndSend();
try {
await act(async () => {
serverEmitTurnAck({
conversationId: 'c1',
idempotencyKey: UUID,
receiptId: 'r1',
selection,
});
});
} finally {
restore();
}
// RED anchor: no turn:ack handler exists, so nothing is recorded. Green
// only when Step Three echoes the exact tuple back into state — never a
// substituted or fabricated one.
expect(harnessTurnState().turnReceipt).toEqual({
idempotencyKey: UUID,
receiptId: 'r1',
selection,
});
});
it('on a rejected turn:ack surfaces a visible safe notice, never the raw internal error, and fabricates no receipt tuple', async () => {
const restore = await establishAndSend();
try {
await act(async () => {
serverEmitTurnAck({
conversationId: 'c1',
idempotencyKey: UUID,
ok: false,
code: 'runtime_unsupported',
error: 'ADAPTER_BOOM internal stack: pi adapter unavailable at 0xdeadbeef',
});
});
} finally {
restore();
}
// RED anchor: a rejected ack must surface a visible notice; today no
// handler runs, so state.error stays null.
expect(harnessTurnState().error).toBeTruthy();
// The raw internal exception text must never reach the browser surface.
expect(harnessTurnState().error ?? '').not.toContain('ADAPTER_BOOM');
expect(harnessTurnState().error ?? '').not.toContain('0xdeadbeef');
// A rejection must not fabricate a success receipt tuple.
expect(harnessTurnState().turnReceipt ?? null).toBeNull();
});
it('uses one fixed safe rejection notice regardless of the internal cause (frozen union, not a passthrough)', async () => {
const firstRestore = await establishAndSend();
try {
await act(async () => {
serverEmitTurnAck({
conversationId: 'c1',
idempotencyKey: UUID,
ok: false,
code: 'runtime_unsupported',
error: 'cause-ALPHA adapter_unavailable',
});
});
} finally {
firstRestore();
}
const firstNotice = harnessTurnState().error;
// A fresh turn on the same conversation, rejected for a DIFFERENT internal
// reason, must surface the identical fixed notice.
const secondRestore = installRandomUUID(() => UUID);
try {
await act(async () => {
harnessSend()({ content: 'again', selection });
});
await act(async () => {
serverEmitTurnAck({
conversationId: 'c1',
idempotencyKey: UUID,
ok: false,
code: 'runtime_unsupported',
error: 'cause-BRAVO conversation_service_unavailable',
});
});
} finally {
secondRestore();
}
const secondNotice = harnessTurnState().error;
// RED anchor: both are null today; green requires a single frozen safe
// string surfaced for both distinct internal causes.
expect(firstNotice).toBeTruthy();
expect(secondNotice).toBeTruthy();
expect(firstNotice).toBe(secondNotice);
expect(firstNotice ?? '').not.toContain('ALPHA');
expect(secondNotice ?? '').not.toContain('BRAVO');
});
});
describe('idempotency-key failure semantics (Task Five, Step Two group 5)', () => {
const selection: HarnessSelection = {
harnessId: 'pi',
providerId: 'anthropic',
modelId: 'claude',
};
const UUID_A = '11111111-1111-4111-8111-111111111111';
const UUID_B = '22222222-2222-4222-9222-222222222222';
const UUID_V4 = /^[0-9a-f]{8}-[0-9a-f]{4}-4[0-9a-f]{3}-[89ab][0-9a-f]{3}-[0-9a-f]{12}$/i;
// The idempotency key is minted only on the pi turn-runtime `turn:send`
// branch: reset the generation (clearing the outer `legacy-message`
// advertisement + lock) and advertise `turn-send` for this connection.
beforeEach(async () => {
await act(async () => {
fake.simulateReconnect();
});
await act(async () => {
advertiseCapability('turn-send', fake.socket.id);
});
});
async function establish(): Promise<void> {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
}
it('mints a DISTINCT UUID-v4 idempotencyKey for each of two accepted turns — a key is never reused across turns', async () => {
const keys = [UUID_A, UUID_B];
let call = 0;
const restore = installRandomUUID(() => keys[call++] ?? UUID_A);
try {
await establish();
await act(async () => {
harnessSend()({ content: 'first', selection });
});
await act(async () => {
harnessSend()({ content: 'second', selection });
});
} finally {
restore();
}
const sent = fake.emitted
.filter((e) => e.event === 'turn:send')
.map((e) => (e.payload as { idempotencyKey: string }).idempotencyKey);
// RED anchor: current sendMessage emits the legacy `message`, so no
// turn:send keys exist at all.
expect(sent).toHaveLength(2);
expect(sent[0]).toMatch(UUID_V4);
expect(sent[1]).toMatch(UUID_V4);
expect(sent[0]).not.toBe(sent[1]);
});
it('when crypto.randomUUID is ABSENT: surfaces a visible fixed idempotency-unavailable notice, emits nothing, appends nothing, releases the lock synchronously, and a later valid send succeeds', async () => {
await establish();
const restoreCrypto = removeRandomUUID();
let firstReturn: boolean | undefined;
try {
await act(async () => {
firstReturn = harnessSend()({ content: 'no-secure-random', selection });
});
} finally {
restoreCrypto();
}
// RED anchors: a refused send returns false and surfaces a visible notice.
expect(firstReturn).toBe(false);
expect(harnessTurnState().error).toBeTruthy();
expect(fake.emitted.some((e) => e.event === 'turn:send')).toBe(false);
expect(latest?.state.messages.some((m) => m.text === 'no-secure-random')).toBe(false);
// The lock released synchronously (no server event needed): a later valid
// send goes through.
const restore = installRandomUUID(() => UUID_A);
let secondReturn: boolean | undefined;
try {
await act(async () => {
secondReturn = harnessSend()({ content: 'recovered', selection });
});
} finally {
restore();
}
expect(secondReturn).toBe(true);
expect(fake.emitted.some((e) => e.event === 'turn:send')).toBe(true);
});
it('surfaces the SAME fixed idempotency-unavailable notice whether randomUUID is absent or throws, never leaking the thrown message', async () => {
// Case 1: absent.
await establish();
const restoreAbsent = removeRandomUUID();
try {
await act(async () => {
harnessSend()({ content: 'absent', selection });
});
} finally {
restoreAbsent();
}
const absentNotice = harnessTurnState().error;
// Case 2: throws with a distinctive internal message.
const failing = installRandomUUID(() => {
throw new Error('SECURE_RANDOM_BOOM entropy pool drained');
});
try {
await act(async () => {
harnessSend()({ content: 'throws', selection });
});
} finally {
failing();
}
const throwNotice = harnessTurnState().error;
// RED anchor: both are null today.
expect(absentNotice).toBeTruthy();
expect(throwNotice).toBeTruthy();
expect(absentNotice).toBe(throwNotice);
// The thrown internal detail must never reach the browser surface.
expect(throwNotice ?? '').not.toContain('SECURE_RANDOM_BOOM');
expect(throwNotice ?? '').not.toContain('entropy pool');
});
});
it('abort emits abort with the active conversationId', async () => {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
@@ -684,7 +1224,16 @@ describe('useChatConnection', () => {
expect(latest?.state.approvalRequestPending).toBe(false);
// The send lock must also be released — a subsequent sendMessage after
// reconnect must not be permanently blocked by the interrupted turn.
// reconnect must not be permanently blocked by the interrupted turn. The
// disconnect also voids the negotiated send protocol (MAJOR-1), so model the
// reconnect handshake — the socket reconnects and the server re-advertises
// how this connection may send — before probing the released lock.
await act(async () => {
fake.simulateReconnect();
});
await act(async () => {
advertiseCapability('legacy-message', fake.socket.id);
});
await act(async () => {
latest?.actions.sendMessage({ content: 'after reconnect' });
});
@@ -1665,4 +2214,319 @@ describe('useChatConnection', () => {
}
expect(destroySocketMock).toHaveBeenCalledOnce();
});
describe('chat:send-capability protocol negotiation (Task Five MAJOR-1, red-first)', () => {
const capSelection: HarnessSelection = {
harnessId: 'pi',
providerId: 'anthropic',
modelId: 'claude',
};
const UUID = 'bbbbbbbb-bbbb-4bbb-8bbb-bbbbbbbbbbbb';
// The one fixed, safe user-facing notice the hook must surface (code
// `send_protocol_unavailable`) when a send is attempted on a connection whose
// advertised protocol is `unavailable`/unknown/absent. Contract-frozen string.
const UNAVAILABLE_NOTICE = 'Chat sending is unavailable on this connection.';
// These tests each drive the protocol negotiation themselves, so they must
// start from a clean, unadvertised generation. Reconnect resets protocolRef
// to `unavailable` and clears the outer `legacy-message` first-wins lock
// WITHOUT advertising — no client emit, so `fake.emitted` stays empty and the
// "starts unavailable" premise holds.
beforeEach(async () => {
await act(async () => {
fake.simulateReconnect();
});
});
async function establishConversation(): Promise<void> {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
}
function connectCalls(): number {
return (fake.socket.connect as unknown as { mock: { calls: unknown[] } }).mock.calls.length;
}
it('starts with no advertised protocol: a send is refused, emits nothing, mints no key, and surfaces the fixed unavailable notice', async () => {
// No `chat:send-capability` has arrived, so the connection has not been told
// it may send at all. The current impl infers "selection + no conversation +
// no flat provider/model → return false" but SURFACES NOTHING — the red is
// that the fixed `send_protocol_unavailable` notice is never set.
let uuidCalls = 0;
const restore = installRandomUUID(() => {
uuidCalls += 1;
return UUID;
});
let returned: boolean | undefined;
try {
await act(async () => {
returned = harnessSend()({ content: 'hi', selection: capSelection });
});
} finally {
restore();
}
expect(returned).toBe(false);
expect(fake.emitted).toHaveLength(0);
expect(latest?.state.error).toBe(UNAVAILABLE_NOTICE);
// The test's name promises "mints no key": the unavailable branch must not
// reach the idempotency mint at all. Without this assertion a defect that
// mints a key before refusing survives.
expect(uuidCalls).toBe(0);
// ...and no user content may be optimistically appended on refusal.
expect(latest?.state.messages.some((m) => m.text === 'hi')).toBe(false);
});
it('legacy-message advertised overrides conversation-inference: an established conversation still routes the legacy message event, never turn:send', async () => {
// Same inputs the inference impl routes to `turn:send` (selection + active
// conversation). The advertised protocol is authoritative: it must emit the
// legacy `message` event instead. Red: current impl emits turn:send.
const restore = installRandomUUID(() => UUID);
try {
await establishConversation();
await act(async () => {
advertiseCapability('legacy-message', fake.socket.id);
});
await act(async () => {
harnessSend()({ content: 'hi', selection: capSelection });
});
} finally {
restore();
}
expect(fake.emitted.filter((e) => e.event === 'turn:send')).toHaveLength(0);
expect(fake.emitted).toContainEqual({
event: 'message',
payload: { conversationId: 'c1', content: 'hi', provider: 'anthropic', modelId: 'claude' },
});
});
it('legacy-message advertised with no conversation: derives provider/model from the selection tuple and emits one message', async () => {
// The flat provider/modelId caller inputs are gone; the legacy branch must
// source them from the confirmed persisted selection. Red: current impl
// refuses a bare harness send (selection + no flat fields → return false).
let returned: boolean | undefined;
const restore = installRandomUUID(() => UUID);
try {
await act(async () => {
advertiseCapability('legacy-message', fake.socket.id);
});
await act(async () => {
returned = harnessSend()({ content: 'first', selection: capSelection });
});
} finally {
restore();
}
expect(returned).toBe(true);
expect(fake.emitted).toContainEqual({
event: 'message',
payload: {
conversationId: undefined,
content: 'first',
provider: 'anthropic',
modelId: 'claude',
},
});
expect(fake.emitted.some((e) => e.event === 'turn:send')).toBe(false);
});
it('unavailable advertised: refuses even with an active conversation and selection, emits nothing, surfaces the fixed notice', async () => {
// Red: current impl ignores the advertisement and emits turn:send.
let uuidCalls = 0;
const restore = installRandomUUID(() => {
uuidCalls += 1;
return UUID;
});
let returned: boolean | undefined;
try {
await establishConversation();
await act(async () => {
advertiseCapability('unavailable', fake.socket.id);
});
await act(async () => {
returned = harnessSend()({ content: 'nope', selection: capSelection });
});
} finally {
restore();
}
expect(returned).toBe(false);
expect(fake.emitted).toHaveLength(0);
expect(latest?.state.error).toBe(UNAVAILABLE_NOTICE);
// Refusal must not optimistically append the user's turn to the transcript
// (a distinct leak from the emit): the unavailable branch appends nothing.
expect(latest?.state.messages.some((m) => m.text === 'nope')).toBe(false);
// ...and must not mint an idempotency key on the refused path.
expect(uuidCalls).toBe(0);
});
it('ignores an advertisement whose connectionId does not match the socket id: protocol stays unavailable and the send is refused', async () => {
// A capability minted for a different (stale/foreign) connection must never
// arm this one. Red: current impl has no connection-id gate and emits
// turn:send off the inferred path.
const restore = installRandomUUID(() => UUID);
let returned: boolean | undefined;
try {
await establishConversation();
await act(async () => {
advertiseCapability('legacy-message', 'a-different-connection');
});
await act(async () => {
returned = harnessSend()({ content: 'spoof', selection: capSelection });
});
} finally {
restore();
}
expect(returned).toBe(false);
expect(fake.emitted).toHaveLength(0);
expect(latest?.state.error).toBe(UNAVAILABLE_NOTICE);
});
it('accepts only the first advertisement for the generation: a later conflicting protocol is ignored', async () => {
// legacy-message wins; the subsequent turn-send is a replay/conflict and is
// dropped. Red: current impl ignores both and infers turn:send.
const restore = installRandomUUID(() => UUID);
try {
await establishConversation();
await act(async () => {
advertiseCapability('legacy-message', fake.socket.id);
});
await act(async () => {
advertiseCapability('turn-send', fake.socket.id);
});
await act(async () => {
harnessSend()({ content: 'hi', selection: capSelection });
});
} finally {
restore();
}
expect(fake.emitted.filter((e) => e.event === 'turn:send')).toHaveLength(0);
expect(fake.emitted).toContainEqual({
event: 'message',
payload: { conversationId: 'c1', content: 'hi', provider: 'anthropic', modelId: 'claude' },
});
});
it('resets to unavailable on disconnect: a later send is refused and never reconnects the socket', async () => {
// Disconnect voids the advertised protocol for the generation. The send must
// refuse and MUST NOT call socket.connect() to force a reconnection. Red:
// current impl keeps the conversation, infers turn:send, and its turn:send
// branch calls socket.connect() when the socket is disconnected.
const restore = installRandomUUID(() => UUID);
let returned: boolean | undefined;
let connectsDuringSend = 0;
try {
await establishConversation();
await act(async () => {
advertiseCapability('legacy-message', fake.socket.id);
});
await act(async () => {
fake.simulateDisconnect();
});
const before = connectCalls();
await act(async () => {
returned = harnessSend()({ content: 'after-drop', selection: capSelection });
});
connectsDuringSend = connectCalls() - before;
} finally {
restore();
}
expect(returned).toBe(false);
expect(fake.emitted).toHaveLength(0);
expect(latest?.state.error).toBe(UNAVAILABLE_NOTICE);
expect(connectsDuringSend).toBe(0);
});
it('resets on reconnect to a fresh generation: refuses until re-advertised, then honors the new advertisement', async () => {
// A reconnect mints a new Socket.id and a new generation; the prior
// advertisement (bound to the old id) is stale and must not carry over. The
// hook only trusts a fresh advertisement for the new connection. Red:
// current impl has no connect listener and keeps inferring turn:send.
const restore = installRandomUUID(() => UUID);
let refusedAfterReconnect: boolean | undefined;
try {
await establishConversation();
await act(async () => {
advertiseCapability('legacy-message', fake.socket.id);
});
await act(async () => {
fake.simulateReconnect('socket-b');
});
await act(async () => {
refusedAfterReconnect = harnessSend()({ content: 'stale', selection: capSelection });
});
} finally {
restore();
}
expect(refusedAfterReconnect).toBe(false);
expect(fake.emitted).toHaveLength(0);
expect(latest?.state.error).toBe(UNAVAILABLE_NOTICE);
// A fresh advertisement for the reconnected id (socket-b) re-arms sending.
const restore2 = installRandomUUID(() => UUID);
try {
await act(async () => {
advertiseCapability('legacy-message', 'socket-b');
});
await act(async () => {
harnessSend()({ content: 'welcome-back', selection: capSelection });
});
} finally {
restore2();
}
expect(fake.emitted).toContainEqual({
event: 'message',
payload: {
conversationId: 'c1',
content: 'welcome-back',
provider: 'anthropic',
modelId: 'claude',
},
});
expect(fake.emitted.some((e) => e.event === 'turn:send')).toBe(false);
});
it('routes on the synchronous protocol ref, not the batched reducer mirror: an advertisement and a send in the SAME tick still route by the just-advertised protocol', async () => {
// An advertisement lands and a send is issued within one synchronous tick,
// before React commits the reducer's `sendProtocol` mirror. The send is
// captured from the pre-advertisement render, so its closed-over reducer
// state still reads `sendProtocol === 'unavailable'`; the capability
// handler, however, has already set the synchronous `protocolRef` to
// `legacy-message`. The hook must route on that ref. Red (against a
// stale-mirror routing that reads `state.sendProtocol`): the send reads the
// pre-advertisement `unavailable` and refuses instead of emitting `message`.
const restore = installRandomUUID(() => UUID);
try {
await act(async () => {
// Bound to the CURRENT (pre-advertisement) render — its closure still
// sees the reset `unavailable` mirror even after the advert dispatches.
const sendBeforeCommit = harnessSend();
advertiseCapability('legacy-message', fake.socket.id);
// Same tick, no await: React has not committed the new mirror yet, so
// only `protocolRef` reflects `legacy-message`.
sendBeforeCommit({ content: 'same-tick', selection: capSelection });
});
} finally {
restore();
}
expect(fake.emitted).toContainEqual({
event: 'message',
payload: {
conversationId: undefined,
content: 'same-tick',
provider: 'anthropic',
modelId: 'claude',
},
});
expect(fake.emitted.some((e) => e.event === 'turn:send')).toBe(false);
});
});
});
+250 -13
View File
@@ -12,6 +12,7 @@ import {
import {
asConversationId,
asFiniteNumber,
asHarnessSelection,
asString,
asStringArray,
isRecord,
@@ -21,10 +22,14 @@ import type {
AgentStartPayload,
AgentTextPayload,
AgentThinkingPayload,
ChatSendCapabilityPayload,
ChatSendProtocol,
CommandDef,
CommandManifest,
CommandManifestPayload,
ErrorPayload,
HarnessSelection,
HarnessTurnAckPayload,
MessageAckPayload,
SessionInfoPayload,
SessionUsagePayload,
@@ -130,6 +135,42 @@ const CONVERSATION_START_FAILURE = 'Unable to start this conversation. Please tr
* dropped. */
const APPROVAL_LIMIT_MESSAGE = 'Approval limit reached for this session. This command was not run.';
/** Fixed, browser-safe notice surfaced when the harness runtime rejects a turn
* (`turn:ack` with `ok:false`). It is deliberately generic: the raw server
* `code`/`message`/`error` can carry adapter internals or entropy-source detail,
* so no rejection ever leaks its cause into the UI every distinct rejection
* shows this same string. */
const TURN_REJECTED_NOTICE = 'This turn could not be sent. Please try again.';
/** Fixed, browser-safe notice surfaced when a turn is refused because the
* idempotency-key mint failed closed (`crypto.randomUUID` absent or throwing).
* Like {@link TURN_REJECTED_NOTICE}, it never carries the thrown message. */
const IDEMPOTENCY_UNAVAILABLE_NOTICE = 'This turn could not be sent. Please try again.';
/** The single fixed, browser-safe notice surfaced (with safe code
* `send_protocol_unavailable`) when a send is attempted on a connection whose
* negotiated send protocol is `unavailable` the server never advertised a
* usable `chat:send-capability`, advertised `unavailable` (e.g. a pi-rpc runtime
* in this slice), or the advertisement was rejected (wrong connection id, replay,
* or an unknown protocol). It carries no dynamic detail. */
const SEND_PROTOCOL_UNAVAILABLE_NOTICE = 'Chat sending is unavailable on this connection.';
/** Mints a single idempotency key for one accepted `turn:send`, fail-closed.
* Returns a fresh RFC-4122 UUID from `crypto.randomUUID`, or `null` when that
* source is absent (not a function) or throws the caller then refuses the turn
* rather than falling back to any non-cryptographic source (Math.random, a
* clock, or a counter would all be forgeable/collision-prone). Never throws. */
function mintIdempotencyKey(): string | null {
try {
const c: unknown = globalThis.crypto;
if (!isRecord(c) || typeof c.randomUUID !== 'function') return null;
const key = (c.randomUUID as () => unknown)();
return typeof key === 'string' && key.length > 0 ? key : null;
} catch {
return null;
}
}
/** True only for the narrow case a malformed-conversationId `error`/`agent:end`
* must be treated as a terminal startup failure: no conversation has ever been
* established yet, and a send is still pending one. Once a conversation is
@@ -236,6 +277,14 @@ export interface PendingApproval {
args?: string;
}
/** Receipt captured from an accepted harness `turn:ack` the minimal record proving the
* server accepted this exact turn under its minted idempotency key and selection tuple. */
export interface HarnessTurnReceipt {
idempotencyKey: string;
receiptId: string;
selection: HarnessSelection;
}
export interface ChatConnectionState {
conversationId: string | null;
/** True once a message has been sent while no conversation is active yet, so the
@@ -268,6 +317,18 @@ export interface ChatConnectionState {
approvalRequestPending: boolean;
systemReload: SystemReloadPayload | null;
error: string | null;
/** How this connection is currently permitted to send, negotiated via the
* server-to-client-only `chat:send-capability` advertisement. Starts and resets
* to `'unavailable'` on every (re)connect and disconnect a fresh or dropped
* connection has no usable protocol until the server (re-)advertises. This is
* the reactive/UI mirror of the synchronous `protocolRef` that `sendMessage`
* actually reads; the ref is authoritative because an advertisement and a send
* can occur in the same tick before React re-renders. */
sendProtocol: ChatSendProtocol;
/** Receipt from the most recently accepted harness `turn:ack`, or null before any
* turn has been accepted. A rejected turn:ack surfaces via `error` and leaves this
* untouched (a prior accepted receipt is not erased by a later rejection). */
turnReceipt: HarnessTurnReceipt | null;
messages: ChatTranscriptMessage[];
/** Monotonically increasing counter used to mint transcript message ids
* never reset while retained messages remain, so ids stay unique across the
@@ -308,7 +369,7 @@ export interface ChatConnectionState {
}
export interface ChatConnectionActions {
sendMessage: (input: { content: string; provider?: string; modelId?: string }) => void;
sendMessage: (input: { content: string; selection?: HarnessSelection }) => boolean;
abort: () => void;
setThinking: (level: string) => void;
executeCommand: (input: { command: string; args?: string }) => void;
@@ -341,6 +402,8 @@ const initialState: ChatConnectionState = {
approvalRequestPending: false,
systemReload: null,
error: null,
sendProtocol: 'unavailable',
turnReceipt: null,
messages: [],
messageSeq: 0,
toolSeq: 0,
@@ -361,7 +424,12 @@ type Action =
| { type: 'server/command:approval'; payload: SlashCommandApprovalResultPayload }
| { type: 'server/system:reload'; payload: SystemReloadPayload }
| { type: 'server/error'; payload: ErrorPayload }
| { type: 'server/turn:ack'; payload: HarnessTurnAckPayload }
| { type: 'local/send'; content: string }
| { type: 'local/capability'; protocol: ChatSendProtocol }
| { type: 'local/reset-protocol' }
| { type: 'local/send-unavailable' }
| { type: 'local/turn-idempotency-unavailable' }
| { type: 'local/approve-request'; command: string; args?: string }
| { type: 'local/consume-approval' }
| { type: 'local/approval-saturated' }
@@ -778,6 +846,30 @@ function reduce(state: ChatConnectionState, action: Action): ChatConnectionState
};
}
case 'server/turn:ack': {
// The harness runtime's turn acknowledgement. The success shape carries a
// receipt id + minted idempotencyKey + echoed selection; the failure shape
// is discriminated on `ok === false`. Every field is runtime-untrusted (the
// top-of-reducer guard already rejected a non-object payload).
const record = action.payload as Record<string, unknown>;
if (record.ok === false) {
// A rejected turn surfaces a FIXED browser-safe notice — never the raw
// server `message`/`error`/`code`, which can carry adapter internals — and
// does not disturb any previously accepted receipt.
return { ...state, error: TURN_REJECTED_NOTICE };
}
const idempotencyKey = asString(record.idempotencyKey);
// The web ack uses `receiptId`; fall back to the frozen contract's `turnId`.
const receiptId = asString(record.receiptId) || asString(record.turnId);
const selection = asHarnessSelection(record.selection);
if (idempotencyKey.length === 0 || receiptId.length === 0 || selection === null) {
// A malformed success frame is ignored outright rather than recorded as a
// half-populated receipt.
return state;
}
return { ...state, turnReceipt: { idempotencyKey, receiptId, selection } };
}
case 'local/send': {
const message: ChatTranscriptMessage = {
// Sourced from the reducer-owned `messageSeq` counter — see the
@@ -802,6 +894,39 @@ function reduce(state: ChatConnectionState, action: Action): ChatConnectionState
};
}
case 'local/capability': {
// The FIRST valid `chat:send-capability` for this connection generation has
// been accepted (connection-id gating + first-wins enforced in the handler);
// record how this connection may now send. This is the reactive mirror of
// the synchronous `protocolRef` the send path reads.
return { ...state, sendProtocol: action.protocol };
}
case 'local/reset-protocol': {
// A (re)connect or disconnect voids any negotiated protocol: a fresh or
// dropped connection has no usable send capability until the server
// (re-)advertises. Reset to `unavailable` so no stale advertisement can
// authorize a send across a connection boundary.
if (state.sendProtocol === 'unavailable') return state;
return { ...state, sendProtocol: 'unavailable' };
}
case 'local/send-unavailable': {
// A send was attempted while the negotiated protocol is `unavailable`
// (never advertised / advertised unavailable / rejected advertisement).
// Surface the single FIXED safe notice — nothing was emitted, minted,
// appended, or locked.
return { ...state, error: SEND_PROTOCOL_UNAVAILABLE_NOTICE };
}
case 'local/turn-idempotency-unavailable': {
// The idempotency-key mint failed closed (crypto.randomUUID absent or
// throwing), so the turn was refused before emit. Surface a FIXED notice —
// never the underlying thrown message, which can leak entropy-source
// internals.
return { ...state, error: IDEMPOTENCY_UNAVAILABLE_NOTICE };
}
case 'local/disconnect': {
// A transient socket disconnect must not leave the UI stuck waiting on
// a turn/approval/send that will never resolve on this connection.
@@ -882,6 +1007,20 @@ export function useChatConnection(): ChatConnectionValue {
approveLockRef.current = state.approvalRequestPending;
}, [state.approvalRequestPending]);
// Synchronous, generation-bound send protocol. `state.sendProtocol` drives the
// reactive UI, but reducer updates are batched/async — a `chat:send-capability`
// advertisement and a `sendMessage` can land in the same tick before React
// re-renders — so this ref is the source of truth the send path reads. Unlike
// sendLockRef/approveLockRef (synchronized FROM the reducer), this ref is
// written directly by the socket lifecycle/capability handlers below, which
// also dispatch the reducer mirror. It is NOT synchronized from state, because
// its whole purpose is to be correct BEFORE the reducer has re-rendered.
const protocolRef = useRef<ChatSendProtocol>('unavailable');
// True once the first valid advertisement for the CURRENT connection generation
// has been accepted; every later advertisement (a conflicting or replayed one)
// is ignored until the next (re)connect/disconnect resets the generation.
const protocolLockedRef = useRef(false);
useEffect(() => {
const socket = getSocket();
@@ -913,7 +1052,45 @@ export function useChatConnection(): ChatConnectionValue {
const onError = (payload: ErrorPayload): void => {
dispatch({ type: 'server/error', payload });
};
const onTurnAck = (payload: HarnessTurnAckPayload): void =>
dispatch({ type: 'server/turn:ack', payload });
// Void the negotiated send protocol at every connection-lifecycle boundary.
// A fresh or dropped connection has no usable capability until the server
// (re-)advertises, so no advertisement bound to a prior connection may carry
// across the boundary and authorize a send. Both write the synchronous ref
// AND unlock first-wins, then dispatch the reducer mirror.
const resetSendProtocol = (): void => {
protocolRef.current = 'unavailable';
protocolLockedRef.current = false;
dispatch({ type: 'local/reset-protocol' });
};
const onConnect = (): void => {
resetSendProtocol();
};
const onCapability = (payload: ChatSendCapabilityPayload): void => {
// Server-to-client-only advertisement of how THIS connection may send.
// Accept only the FIRST valid one per generation, and only when it names
// this exact connection (`connectionId === socket.id`): a capability minted
// for another or stale connection must never arm this one. The payload is
// runtime-untrusted despite its compile-time type, so every field is
// guard-checked and an unknown protocol is dropped (leaving `unavailable`).
if (protocolLockedRef.current) return;
if (!isRecord(payload)) return;
const { protocol, connectionId } = payload as {
protocol?: unknown;
connectionId?: unknown;
};
if (typeof connectionId !== 'string' || connectionId !== socket.id) return;
if (protocol !== 'legacy-message' && protocol !== 'turn-send' && protocol !== 'unavailable') {
return;
}
protocolLockedRef.current = true;
protocolRef.current = protocol;
dispatch({ type: 'local/capability', protocol });
};
const onDisconnect = (): void => {
resetSendProtocol();
dispatch({ type: 'local/disconnect' });
};
@@ -930,6 +1107,11 @@ export function useChatConnection(): ChatConnectionValue {
socket.on('command:approval', onCommandApproval);
socket.on('system:reload', onSystemReload);
socket.on('error', onError);
socket.on('turn:ack', onTurnAck);
// Registered BEFORE connect so the initial post-auth advertisement (and any
// reconnect) can never race ahead of its listener.
socket.on('connect', onConnect);
socket.on('chat:send-capability', onCapability);
socket.on('disconnect', onDisconnect);
if (!socket.connected) {
@@ -950,24 +1132,79 @@ export function useChatConnection(): ChatConnectionValue {
socket.off('command:approval', onCommandApproval);
socket.off('system:reload', onSystemReload);
socket.off('error', onError);
socket.off('turn:ack', onTurnAck);
socket.off('connect', onConnect);
socket.off('chat:send-capability', onCapability);
socket.off('disconnect', onDisconnect);
destroySocket();
};
}, []);
const actions: ChatConnectionActions = {
sendMessage: ({ content, provider, modelId }) => {
if (sendLockRef.current || state.streaming || state.sending) return;
sendLockRef.current = true;
const socket = getSocket();
if (!socket.connected) socket.connect();
dispatch({ type: 'local/send', content });
socket.emit('message', {
conversationId: state.conversationId ?? undefined,
content,
provider,
modelId,
});
sendMessage: ({ content, selection }) => {
// Routing is PROTOCOL-driven, never inferred from conversation/selection/
// provider/local mode: the server advertised, once per connection, exactly
// how this connection may send, and that advertisement is authoritative.
// The exhaustive switch maps each protocol to its ONE event; the send path
// never reconnects the socket (a dropped connection has already reset the
// protocol to `unavailable`, so no emit branch is reachable while offline).
switch (protocolRef.current) {
case 'legacy-message': {
// Embedded/legacy runtime: EVERY browser turn — the first (which
// creates the conversation) and every later one — is the `message`
// event. provider/model are sourced ONLY from the confirmed persisted
// selection tuple, never from separate flat caller inputs.
if (sendLockRef.current || state.streaming || state.sending) return false;
sendLockRef.current = true;
const socket = getSocket();
dispatch({ type: 'local/send', content });
socket.emit('message', {
conversationId: state.conversationId ?? undefined,
content,
provider: selection?.providerId,
modelId: selection?.modelId,
});
return true;
}
case 'turn-send': {
// Pi turn-runtime: the exclusive `turn:send` contract. Requires an
// already-established conversation AND a confirmed persisted selection
// tuple; it is lock-independent (no send lock, no optimistic append),
// and mints exactly one idempotency key per accepted turn, failing the
// turn closed if the mint fails. A premature send (no conversation yet,
// or no selection) is refused with no emit and no notice.
if (selection == null || state.conversationId === null) return false;
const idempotencyKey = mintIdempotencyKey();
if (idempotencyKey === null) {
dispatch({ type: 'local/turn-idempotency-unavailable' });
return false;
}
const socket = getSocket();
socket.emit('turn:send', {
conversationId: state.conversationId,
content,
selection,
idempotencyKey,
});
return true;
}
case 'unavailable': {
// No usable protocol negotiated for this connection: refuse without
// emitting, minting, appending, or acquiring the lock, and surface the
// one fixed safe notice (code `send_protocol_unavailable`).
dispatch({ type: 'local/send-unavailable' });
return false;
}
default: {
// Exhaustiveness guard: every ChatSendProtocol member is handled above.
// An unknown value can never arm a send — refuse exactly as
// `unavailable` rather than falling through to any emit.
const _exhaustive: never = protocolRef.current;
void _exhaustive;
dispatch({ type: 'local/send-unavailable' });
return false;
}
}
},
abort: () => {
@@ -0,0 +1,450 @@
import { act, type ReactElement } from 'react';
import { createRoot, type Root } from 'react-dom/client';
import { afterAll, afterEach, beforeAll, beforeEach, describe, expect, it, vi } from 'vitest';
import { useHarnessSelection, type HarnessSelectionValue } from './use-harness-selection';
function json(body: unknown, status = 200): Response {
return new Response(JSON.stringify(body), {
status,
headers: { 'Content-Type': 'application/json' },
});
}
interface Scenario {
harnesses?: unknown;
catalog?: { body: unknown; status?: number };
selection?: unknown;
/** When set, the PUT resolves only when this is called (for race tests). */
deferPut?: boolean;
}
interface Deferred<T> {
promise: Promise<T>;
resolve: (value: T) => void;
}
function defer<T>(): Deferred<T> {
let resolve!: (value: T) => void;
const promise = new Promise<T>((r) => {
resolve = r;
});
return { promise, resolve };
}
let putBodies: unknown[] = [];
let putDeferred: Deferred<Response> | null = null;
function installFetch(scenario: Scenario): ReturnType<typeof vi.fn> {
putBodies = [];
putDeferred = scenario.deferPut ? defer<Response>() : null;
const fetchMock = vi.fn(async (input: unknown, init?: RequestInit) => {
const url = String(input);
const method = String(init?.method ?? 'GET').toUpperCase();
if (url === '/api/harnesses') return json(scenario.harnesses ?? []);
if (url.startsWith('/api/harnesses/') && url.endsWith('/catalog')) {
const spec = scenario.catalog ?? {
body: { harnessId: 'pi', version: '1', fingerprint: 'f', models: [] },
};
return json(spec.body, spec.status ?? 200);
}
if (url === '/api/chat/preferences/selection' && method === 'GET') {
return json({ selection: scenario.selection ?? null });
}
if (url === '/api/chat/preferences/selection' && method === 'PUT') {
putBodies.push(JSON.parse(String(init?.body)));
const ok = json({ selection: JSON.parse(String(init?.body)) });
if (putDeferred) return putDeferred.promise;
return ok;
}
return new Response('not found', { status: 404 });
});
vi.stubGlobal('fetch', fetchMock);
return fetchMock;
}
let latest: HarnessSelectionValue | null = null;
function Probe(): ReactElement | null {
latest = useHarnessSelection();
return null;
}
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(() => {
latest = null;
container = document.createElement('div');
document.body.append(container);
root = createRoot(container);
});
afterEach(async () => {
await act(async () => {
root?.unmount();
});
document.body.replaceChildren();
vi.unstubAllGlobals();
});
async function mount(): Promise<void> {
await act(async () => {
root?.render(<Probe />);
});
await flush();
}
async function flush(times = 5): Promise<void> {
for (let i = 0; i < times; i += 1) {
await act(async () => {
await Promise.resolve();
});
}
}
function value(): HarnessSelectionValue {
if (!latest) throw new Error('hook value not captured');
return latest;
}
const PI_CATALOG = {
harnessId: 'pi',
version: '2026-08-11',
fingerprint: 'fp',
models: [
{
harnessId: 'pi',
providerId: 'openai',
modelId: 'gpt-5',
displayName: 'GPT-5',
reasoningCapability: true,
inputTypes: ['text'],
authState: 'ready',
availability: 'available',
},
{
harnessId: 'pi',
providerId: 'anthropic',
modelId: 'claude',
displayName: 'Claude',
reasoningCapability: true,
inputTypes: ['text'],
authState: 'ready',
availability: 'available',
},
],
};
describe('useHarnessSelection', () => {
it('loads harnesses and, once a harness is chosen, the model options come only from its catalog', async () => {
installFetch({
harnesses: [{ id: 'pi', displayName: 'Pi', capabilities: [] }],
catalog: { body: PI_CATALOG },
selection: null,
});
await mount();
expect(value().harnesses).toEqual([{ id: 'pi', displayName: 'Pi', capabilities: [] }]);
expect(value().catalog).toBeNull();
await act(async () => {
value().selectHarness('pi');
});
await flush();
expect(value().catalog?.harnessId).toBe('pi');
expect(value().catalog?.models.map((m) => m.modelId)).toEqual(['gpt-5', 'claude']);
});
it('does not auto-select any catalog row when there is no persisted selection (no first-row fallback)', async () => {
const fetchMock = installFetch({
harnesses: [{ id: 'pi', displayName: 'Pi', capabilities: [] }],
catalog: { body: PI_CATALOG },
selection: null,
});
await mount();
await act(async () => {
value().selectHarness('pi');
});
await flush();
expect(value().modelId).toBe('');
expect(value().persistedSelection).toBeNull();
expect(value().canSend).toBe(false);
// Nothing was persisted — no PUT fired for an unset selection.
const putCalls = fetchMock.mock.calls.filter(
(c) => String((c[1] as RequestInit)?.method).toUpperCase() === 'PUT',
);
expect(putCalls).toHaveLength(0);
});
it('persists the structured tuple and only enables send AFTER the PUT resolves (no race ahead of persistence)', async () => {
installFetch({
harnesses: [{ id: 'pi', displayName: 'Pi', capabilities: [] }],
catalog: { body: PI_CATALOG },
selection: null,
deferPut: true,
});
await mount();
await act(async () => {
value().selectHarness('pi');
});
await flush();
await act(async () => {
value().selectProvider('openai');
});
await act(async () => {
value().selectModel('openai', 'gpt-5');
});
await flush();
// PUT is in flight (deferred) — send MUST NOT be enabled yet.
expect(value().canSend).toBe(false);
await act(async () => {
putDeferred?.resolve(
json({ selection: { harnessId: 'pi', providerId: 'openai', modelId: 'gpt-5' } }),
);
});
await flush();
expect(putBodies).toContainEqual({ harnessId: 'pi', providerId: 'openai', modelId: 'gpt-5' });
expect(value().persistedSelection).toEqual({
harnessId: 'pi',
providerId: 'openai',
modelId: 'gpt-5',
});
expect(value().canSend).toBe(true);
// Task Five: the composer sends the nested `persistedSelection` tuple directly.
// The Task-Four compat flat `projection` ({provider, modelId}) is removed — the
// harnessId must never be dropped on the way to the wire.
expect('projection' in value()).toBe(false);
});
it('keeps a stale/unavailable persisted selection visibly displayed rather than silently dropping it', async () => {
installFetch({
harnesses: [{ id: 'pi', displayName: 'Pi', capabilities: [] }],
catalog: { body: PI_CATALOG },
selection: { harnessId: 'pi', providerId: 'openai', modelId: 'retired-model' },
});
await mount();
// The persisted tuple is displayed even though its model is gone from the catalog.
expect(value().persistedSelection).toEqual({
harnessId: 'pi',
providerId: 'openai',
modelId: 'retired-model',
});
expect(value().modelId).toBe('retired-model');
expect(value().isStale).toBe(true);
// A stale model is not a valid catalog option, so send stays disabled.
expect(value().canSend).toBe(false);
});
it('disables send for an empty catalog (no viable model) and never fabricates one', async () => {
installFetch({
harnesses: [{ id: 'pi', displayName: 'Pi', capabilities: [] }],
catalog: { body: { harnessId: 'pi', version: '1', fingerprint: 'f', models: [] } },
selection: null,
});
await mount();
await act(async () => {
value().selectHarness('pi');
});
await flush();
expect(value().catalog?.models ?? []).toHaveLength(0);
expect(value().canSend).toBe(false);
});
it('marks the catalog unavailable and disables send when the catalog request 404s', async () => {
installFetch({
harnesses: [{ id: 'pi', displayName: 'Pi', capabilities: [] }],
catalog: {
body: { code: 'adapter_unavailable', message: 'x', harnessId: 'pi' },
status: 404,
},
selection: null,
});
await mount();
await act(async () => {
value().selectHarness('pi');
});
await flush();
expect(value().catalogUnavailable).toBe(true);
expect(value().canSend).toBe(false);
});
it('on a 422 persist, keeps the requested tuple visible, surfaces a typed error, and leaves send disabled', async () => {
installFetch({
harnesses: [{ id: 'pi', displayName: 'Pi', capabilities: [] }],
catalog: {
body: {
...PI_CATALOG,
models: [{ ...PI_CATALOG.models[0], availability: 'unavailable' }],
},
},
selection: null,
});
// Override PUT to 422.
const fetchMock = vi.fn(async (input: unknown, init?: RequestInit) => {
const url = String(input);
const method = String(init?.method ?? 'GET').toUpperCase();
if (url === '/api/harnesses')
return json([{ id: 'pi', displayName: 'Pi', capabilities: [] }]);
if (url.endsWith('/catalog')) return json(PI_CATALOG);
if (url === '/api/chat/preferences/selection' && method === 'GET')
return json({ selection: null });
if (url === '/api/chat/preferences/selection' && method === 'PUT') {
return json(
{
code: 'model_unavailable',
message: 'nope',
selection: { harnessId: 'a', providerId: 'b', modelId: 'c' },
},
422,
);
}
return new Response('nf', { status: 404 });
});
vi.stubGlobal('fetch', fetchMock);
await mount();
await act(async () => {
value().selectHarness('pi');
});
await flush();
await act(async () => {
value().selectProvider('openai');
});
await act(async () => {
value().selectModel('openai', 'gpt-5');
});
await flush();
expect(value().modelId).toBe('gpt-5');
expect(value().persistError?.code).toBe('model_unavailable');
expect(value().persistError?.requested).toEqual({
harnessId: 'pi',
providerId: 'openai',
modelId: 'gpt-5',
});
expect(value().persistedSelection).toBeNull();
expect(value().canSend).toBe(false);
});
it('invalidates the model on a provider change and keeps send disabled until the new tuple persists', async () => {
installFetch({
harnesses: [{ id: 'pi', displayName: 'Pi', capabilities: [] }],
catalog: { body: PI_CATALOG },
selection: null,
});
await mount();
await act(async () => {
value().selectHarness('pi');
});
await flush();
await act(async () => {
value().selectProvider('openai');
});
await act(async () => {
value().selectModel('openai', 'gpt-5');
});
await flush();
// A valid provider-A tuple has persisted.
expect(value().canSend).toBe(true);
expect(value().persistedSelection).toEqual({
harnessId: 'pi',
providerId: 'openai',
modelId: 'gpt-5',
});
// Switching provider clears the model that no longer belongs to it.
await act(async () => {
value().selectProvider('anthropic');
});
expect(value().modelId).toBe('');
expect(value().canSend).toBe(false);
// Send stays disabled until the new exact provider-B tuple persists.
await act(async () => {
value().selectModel('anthropic', 'claude');
});
await flush();
expect(value().canSend).toBe(true);
expect(value().persistedSelection).toEqual({
harnessId: 'pi',
providerId: 'anthropic',
modelId: 'claude',
});
// Task Five: no compat flat projection — the nested persistedSelection is the wire tuple.
expect('projection' in value()).toBe(false);
});
it('does not enable send on a model pick until the PUT for that exact new tuple resolves', async () => {
installFetch({
harnesses: [{ id: 'pi', displayName: 'Pi', capabilities: [] }],
catalog: { body: PI_CATALOG },
selection: { harnessId: 'pi', providerId: 'openai', modelId: 'gpt-5' },
deferPut: true,
});
await mount();
// The persisted, in-catalog tuple is sendable after mount (no PUT needed).
expect(value().canSend).toBe(true);
await act(async () => {
value().selectProvider('anthropic');
});
expect(value().modelId).toBe('');
expect(value().canSend).toBe(false);
await act(async () => {
value().selectModel('anthropic', 'claude');
});
await flush();
// PUT for the new tuple is still in flight — send MUST stay disabled.
expect(value().canSend).toBe(false);
await act(async () => {
putDeferred?.resolve(
json({ selection: { harnessId: 'pi', providerId: 'anthropic', modelId: 'claude' } }),
);
});
await flush();
expect(value().canSend).toBe(true);
// Task Five: no compat flat projection — the nested persistedSelection is the wire tuple.
expect('projection' in value()).toBe(false);
});
it('never requests any /api/providers* endpoint across the whole flow', async () => {
const fetchMock = installFetch({
harnesses: [{ id: 'pi', displayName: 'Pi', capabilities: [] }],
catalog: { body: PI_CATALOG },
selection: { harnessId: 'pi', providerId: 'openai', modelId: 'gpt-5' },
});
await mount();
await act(async () => {
value().selectProvider('anthropic');
});
await act(async () => {
value().selectModel('anthropic', 'claude');
});
await flush();
for (const call of fetchMock.mock.calls) {
expect(String(call[0])).not.toContain('/api/providers');
}
});
});
@@ -0,0 +1,208 @@
import { useCallback, useEffect, useRef, useState } from 'react';
import {
fetchCatalog,
fetchHarnesses,
fetchPersistedSelection,
persistSelection,
type SelectionErrorCode,
} from './chat-api';
import type { HarnessCatalog, HarnessSelection, HarnessSummary } from '@/lib/types';
export interface HarnessPersistError {
code: SelectionErrorCode;
message: string;
/** The exact tuple the user requested preserved so the failed selection
* stays visible rather than being silently dropped. */
requested: HarnessSelection;
}
export interface HarnessSelectionValue {
harnesses: HarnessSummary[];
catalog: HarnessCatalog | null;
/** True when the selected harness has no usable catalog (404/error). */
catalogUnavailable: boolean;
/** The working (displayed) selection, kept as three distinct ids. Empty
* strings mean "not chosen yet" there is deliberately no first-row default. */
harnessId: string;
providerId: string;
modelId: string;
/** The last tuple confirmed persisted by the server, or null. */
persistedSelection: HarnessSelection | null;
/** True when a persisted selection references a model no longer present as an
* available catalog entry it stays visibly displayed rather than dropped. */
isStale: boolean;
/** True ONLY once a full tuple has been confirmed persisted AND it is a
* currently-available catalog entry. Send stays disabled otherwise, so a send
* can never race ahead of successful persistence. */
canSend: boolean;
persistError: HarnessPersistError | null;
selectHarness: (harnessId: string) => void;
selectProvider: (providerId: string) => void;
/** Persist the EXACT catalog row's `{providerId, modelId}` the caller
* resolves the composite option identity to the real entry and passes both
* ids, so a bare model id is never combined with ambient provider state. */
selectModel: (providerId: string, modelId: string) => void;
}
/** A tuple is a currently-usable catalog option only when the catalog holds a
* matching, available entry the single gate that keeps a stale/unavailable
* model from ever counting as sendable. */
function isAvailableInCatalog(
selection: HarnessSelection | null,
catalog: HarnessCatalog | null,
): boolean {
if (selection === null || catalog === null) return false;
return catalog.models.some(
(model) =>
model.providerId === selection.providerId &&
model.modelId === selection.modelId &&
model.availability === 'available',
);
}
function tuplesEqual(a: HarnessSelection | null, b: HarnessSelection | null): boolean {
if (a === null || b === null) return a === b;
return a.harnessId === b.harnessId && a.providerId === b.providerId && a.modelId === b.modelId;
}
/**
* Owns the harness/catalog/selection state for the chat composer: loads the
* harness list and any persisted tuple on mount, loads a harness's catalog when
* chosen, and PUT-persists the full `{harnessId, providerId, modelId}` tuple
* when a model is picked. It never auto-selects a catalog row, keeps a
* stale/unavailable persisted tuple visible, and only reports `canSend` true
* once a full tuple has actually persisted as an available catalog entry.
*/
export function useHarnessSelection(): HarnessSelectionValue {
const [harnesses, setHarnesses] = useState<HarnessSummary[]>([]);
const [catalog, setCatalog] = useState<HarnessCatalog | null>(null);
const [catalogUnavailable, setCatalogUnavailable] = useState(false);
const [harnessId, setHarnessId] = useState('');
const [providerId, setProviderId] = useState('');
const [modelId, setModelId] = useState('');
const [persistedSelection, setPersistedSelection] = useState<HarnessSelection | null>(null);
const [persistError, setPersistError] = useState<HarnessPersistError | null>(null);
// Monotonic request ids so a slow in-flight catalog/persist response can never
// overwrite the result of a newer request the user has since triggered.
const catalogRequestRef = useRef(0);
const persistRequestRef = useRef(0);
const loadCatalog = useCallback(async (id: string): Promise<void> => {
const requestId = catalogRequestRef.current + 1;
catalogRequestRef.current = requestId;
setCatalog(null);
setCatalogUnavailable(false);
const result = await fetchCatalog(id);
if (catalogRequestRef.current !== requestId) return;
if (result.ok) {
setCatalog(result.catalog);
setCatalogUnavailable(false);
} else {
setCatalog(null);
setCatalogUnavailable(true);
}
}, []);
useEffect(() => {
let active = true;
void (async (): Promise<void> => {
const [list, persisted] = await Promise.all([fetchHarnesses(), fetchPersistedSelection()]);
if (!active) return;
setHarnesses(list);
if (persisted !== null) {
// Adopt the persisted tuple as the displayed selection and load its
// catalog. If the model has since been retired, it still shows (stale).
setHarnessId(persisted.harnessId);
setProviderId(persisted.providerId);
setModelId(persisted.modelId);
setPersistedSelection(persisted);
await loadCatalog(persisted.harnessId);
}
// No persisted selection → nothing is auto-selected; the user must choose.
})();
return () => {
active = false;
};
}, [loadCatalog]);
const selectHarness = useCallback(
(id: string): void => {
setHarnessId(id);
// Changing harness invalidates the provider/model draft — never carry a
// model across harnesses.
setProviderId('');
setModelId('');
setPersistError(null);
void loadCatalog(id);
},
[loadCatalog],
);
const selectProvider = useCallback((id: string): void => {
setProviderId(id);
// A new provider invalidates the chosen model — no cross-provider carryover.
setModelId('');
setPersistError(null);
}, []);
const selectModel = useCallback(
(selectedProviderId: string, selectedModelId: string): void => {
// Bind the model to the EXACT catalog row's provider — never to ambient
// provider state — so two providers exposing the same modelId can never
// collide or mis-resolve. Keep the displayed provider consistent with the
// resolved row.
setProviderId(selectedProviderId);
setModelId(selectedModelId);
setPersistError(null);
const requested: HarnessSelection = {
harnessId,
providerId: selectedProviderId,
modelId: selectedModelId,
};
const requestId = persistRequestRef.current + 1;
persistRequestRef.current = requestId;
void (async (): Promise<void> => {
const result = await persistSelection(requested);
if (persistRequestRef.current !== requestId) return;
if (result.ok) {
setPersistedSelection(result.selection);
setPersistError(null);
} else {
// Leave persistedSelection unchanged (send stays disabled) and surface
// the typed error carrying the exact requested tuple.
setPersistError({
code: result.code,
message: result.message,
requested: result.requested,
});
}
})();
},
[harnessId],
);
const draft: HarnessSelection = { harnessId, providerId, modelId };
const isStale = persistedSelection !== null && !isAvailableInCatalog(persistedSelection, catalog);
const canSend =
persistedSelection !== null &&
!catalogUnavailable &&
tuplesEqual(draft, persistedSelection) &&
isAvailableInCatalog(persistedSelection, catalog);
return {
harnesses,
catalog,
catalogUnavailable,
harnessId,
providerId,
modelId,
persistedSelection,
isStale,
canSend,
persistError,
selectHarness,
selectProvider,
selectModel,
};
}
+498 -7
View File
@@ -38,6 +38,128 @@ function findButton(container: HTMLElement, text: string): HTMLButtonElement {
return button;
}
function jsonResponse(body: unknown, status = 200): Response {
return new Response(JSON.stringify(body), {
status,
headers: { 'Content-Type': 'application/json' },
});
}
const DEFAULT_CATALOG = {
harnessId: 'pi',
version: '2026-08-11',
fingerprint: 'fp',
models: [
{
harnessId: 'pi',
providerId: 'openai',
modelId: 'gpt-5',
displayName: 'GPT-5',
reasoningCapability: true,
inputTypes: ['text'],
authState: 'ready',
availability: 'available',
},
{
harnessId: 'pi',
providerId: 'anthropic',
modelId: 'claude',
displayName: 'Claude',
reasoningCapability: true,
inputTypes: ['text'],
authState: 'ready',
availability: 'available',
},
],
};
/** A harness/catalog/selection HTTP stub for the chat-api the selection hook
* drives. `selection` seeds the persisted tuple returned by the GET (a valid
* in-catalog tuple by default, so `canSend` settles true after mount). */
function harnessFetch(
selection: unknown = { harnessId: 'pi', providerId: 'openai', modelId: 'gpt-5' },
): typeof fetch {
return vi.fn(async (input: unknown, init?: RequestInit) => {
const url = String(input);
const method = String(init?.method ?? 'GET').toUpperCase();
if (url === '/api/harnesses') {
return jsonResponse([{ id: 'pi', displayName: 'Pi', capabilities: [] }]);
}
if (url.startsWith('/api/harnesses/') && url.endsWith('/catalog')) {
return jsonResponse(DEFAULT_CATALOG);
}
if (url === '/api/chat/preferences/selection' && method === 'GET') {
return jsonResponse({ selection });
}
if (url === '/api/chat/preferences/selection' && method === 'PUT') {
return jsonResponse({ selection: JSON.parse(String(init?.body)) });
}
return new Response('not found', { status: 404 });
}) as unknown as typeof fetch;
}
/** Drains the selection hook's chained mount fetches (harnesses selection
* catalog) and any pending PUT so derived `canSend` settles before assertions. */
async function flushAsync(times = 5): Promise<void> {
for (let i = 0; i < times; i += 1) {
await act(async () => {
await Promise.resolve();
});
}
}
/** Deterministic idempotency key for the Task Five red-first page send test. */
const PAGE_UUID = 'bbbbbbbb-bbbb-4bbb-8bbb-bbbbbbbbbbbb';
/** Install a controllable `crypto.randomUUID` and return a restore fn. Uses
* defineProperty on the crypto instance so it works whether or not the native
* method is configurable (it lives on the prototype; an own property shadows it). */
function installRandomUUID(fn: () => string): () => void {
const g = globalThis as { crypto?: { randomUUID?: () => string } };
if (!g.crypto) {
Object.defineProperty(g, 'crypto', { configurable: true, writable: true, value: {} });
}
const cryptoObj = g.crypto as { randomUUID?: () => string };
const original = Object.getOwnPropertyDescriptor(cryptoObj, 'randomUUID');
Object.defineProperty(cryptoObj, 'randomUUID', {
configurable: true,
writable: true,
value: fn,
});
return () => {
if (original) {
Object.defineProperty(cryptoObj, 'randomUUID', original);
} else {
Reflect.deleteProperty(cryptoObj, 'randomUUID');
}
};
}
/**
* Task Five MAJOR-1: the send path is PROTOCOL-driven the browser may send only
* as the server advertised, once per connection, over the server-to-client-only
* `chat:send-capability`. Model that advertisement for THIS connection id so the
* page send tests take the intended branch. `legacy-message` is the default
* (advertised in `beforeEach`/`remountWithFetch`); the pi turn-runtime tests
* reset the generation and re-advertise `turn-send` via the helper below.
*/
function advertiseSendCapability(protocol: 'legacy-message' | 'turn-send' | 'unavailable'): void {
fake.serverEmit('chat:send-capability', { protocol, connectionId: fake.socket.id });
}
/** Reset the negotiated protocol to a fresh, unlocked generation (clearing the
* default `legacy-message` advertisement + first-wins lock), then advertise the
* pi turn-runtime `turn:send` protocol for this connection. The per-test override
* for the page send tests that route through `turn:send`. */
async function advertiseTurnSendGeneration(): Promise<void> {
await act(async () => {
fake.simulateReconnect();
});
await act(async () => {
advertiseSendCapability('turn-send');
});
}
let fake: ReturnType<typeof createFakeChatSocket>;
let root: Root | null;
let container: HTMLElement;
@@ -57,12 +179,22 @@ beforeEach(async () => {
fake = createFakeChatSocket();
getSocketMock.mockReset().mockReturnValue(fake.socket);
destroySocketMock.mockReset();
vi.stubGlobal('fetch', harnessFetch());
container = document.createElement('div');
document.body.append(container);
root = createRoot(container);
await act(async () => {
root?.render(<ChatPage />);
});
// Settle the selection hook's mount fetches so the default in-catalog tuple
// persists and `canSend` is true for the existing send-path tests.
await flushAsync();
// Model the server's post-auth send-capability advertisement (MAJOR-1). Most
// page send tests exercise the legacy `message` branch; the pi turn-runtime
// tests override to `turn-send` via advertiseTurnSendGeneration().
await act(async () => {
advertiseSendCapability('legacy-message');
});
});
afterEach(async () => {
@@ -70,8 +202,28 @@ afterEach(async () => {
root?.unmount();
});
document.body.replaceChildren();
vi.unstubAllGlobals();
});
/** Re-mounts ChatPage against a custom fetch stub (e.g. an unset selection) for
* tests that need a non-default selection scenario. */
async function remountWithFetch(fetchImpl: typeof fetch): Promise<void> {
await act(async () => {
root?.unmount();
});
vi.stubGlobal('fetch', fetchImpl);
root = createRoot(container);
await act(async () => {
root?.render(<ChatPage />);
});
await flushAsync();
// Re-advertise on the remounted connection — the prior generation's capability
// does not carry across a remount (fresh hook instance, unadvertised protocol).
await act(async () => {
advertiseSendCapability('legacy-message');
});
}
describe('ChatPage', () => {
it('streams agent:text and agent:thinking, shows tool status, and finalizes on agent:end with usage', async () => {
await act(async () => {
@@ -390,24 +542,62 @@ describe('ChatPage', () => {
expect(container.querySelector('[role="alert"]')).toBeTruthy();
});
it('sends a message with optional provider/model fields and emits abort from the Stop control', async () => {
it('renders harness and provider as separate selects (not merged) and no free-text provider/model inputs', async () => {
// The old free-text inputs are gone.
expect(container.querySelector('input[aria-label="Provider"]')).toBeNull();
expect(container.querySelector('input[aria-label="Model"]')).toBeNull();
const harnessSelect = container.querySelector(
'select[aria-label="Harness"]',
) as HTMLSelectElement;
const providerSelect = container.querySelector(
'select[aria-label="Provider"]',
) as HTMLSelectElement;
const modelSelect = container.querySelector('select[aria-label="Model"]') as HTMLSelectElement;
expect(harnessSelect).toBeTruthy();
expect(providerSelect).toBeTruthy();
expect(modelSelect).toBeTruthy();
// Harness and provider are distinct controls carrying distinct identifiers.
expect(harnessSelect).not.toBe(providerSelect);
expect([...harnessSelect.options].map((o) => o.value)).toContain('pi');
expect([...providerSelect.options].map((o) => o.value)).toContain('openai');
expect([...providerSelect.options].map((o) => o.value)).toContain('anthropic');
// The model options are catalog-derived (not hardcoded) and scoped to the
// selected provider (openai, from the persisted tuple) using a collision-safe
// composite identity — the anthropic row is absent, not a bare 'claude'.
const modelValues = [...modelSelect.options].map((o) => o.value);
expect(modelValues).toContain('openai:gpt-5');
expect(modelValues).not.toContain('anthropic:claude');
expect(modelValues).not.toContain('claude');
});
it('sends provider/model derived from the persisted catalog tuple (never free text) and emits abort from Stop', 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);
// Choose a fresh tuple from the catalog and let it persist.
const providerSelect = container.querySelector(
'select[aria-label="Provider"]',
) as HTMLSelectElement;
await act(async () => {
selectValue(providerSelect, 'anthropic');
});
const modelSelect = container.querySelector('select[aria-label="Model"]') as HTMLSelectElement;
await act(async () => {
// Composite provider+model option identity (provider was switched to
// anthropic above); the bare 'claude' no longer identifies an option.
selectValue(modelSelect, 'anthropic:claude');
});
await flushAsync();
await act(async () => {
setValue(textarea, 'hello there');
setValue(providerInput, 'anthropic');
setValue(modelInput, 'claude');
});
await act(async () => {
textarea.dispatchEvent(
@@ -415,6 +605,7 @@ describe('ChatPage', () => {
);
});
// The projected provider/model come from the validated persisted tuple.
expect(fake.emitted).toContainEqual({
event: 'message',
payload: {
@@ -443,6 +634,178 @@ describe('ChatPage', () => {
expect(fake.emitted).toContainEqual({ event: 'abort', payload: { conversationId: 'c1' } });
});
it('emits turn:send with the nested persisted selection tuple and a UUID idempotency key (never the legacy message event)', async () => {
await advertiseTurnSendGeneration();
const restore = installRandomUUID(() => PAGE_UUID);
try {
// Send is disabled without an active conversation — establish one first.
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
const textarea = container.querySelector(
'textarea[aria-label="Message"]',
) as HTMLTextAreaElement;
await act(async () => {
setValue(textarea, 'hello there');
});
await act(async () => {
textarea.dispatchEvent(
new KeyboardEvent('keydown', { key: 'Enter', bubbles: true, cancelable: true }),
);
});
} finally {
restore();
}
const sends = fake.emitted.filter((e) => e.event === 'turn:send');
expect(sends).toHaveLength(1);
expect(sends[0]?.payload).toEqual({
conversationId: 'c1',
content: 'hello there',
selection: { harnessId: 'pi', providerId: 'openai', modelId: 'gpt-5' },
idempotencyKey: PAGE_UUID,
});
// The pi-rpc page send must not emit the embedded `message` event, and must
// never send a flat {provider, modelId} that drops the harnessId.
expect(fake.emitted.some((e) => e.event === 'message')).toBe(false);
});
it('keeps the composer content and emits nothing when the send cannot mint an idempotency key, so the user can retry (composer clears only on success) — Task Five group 5', async () => {
await advertiseTurnSendGeneration();
const failing = installRandomUUID(() => {
throw new Error('secure random unavailable');
});
try {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
const textarea = container.querySelector(
'textarea[aria-label="Message"]',
) as HTMLTextAreaElement;
await act(async () => {
setValue(textarea, 'keep me');
});
await act(async () => {
textarea.dispatchEvent(
new KeyboardEvent('keydown', { key: 'Enter', bubbles: true, cancelable: true }),
);
});
// No wire traffic: neither the harness turn nor the legacy message.
expect(fake.emitted.some((e) => e.event === 'turn:send')).toBe(false);
expect(fake.emitted.some((e) => e.event === 'message')).toBe(false);
// The composer retained its content — it clears ONLY on a successful send,
// so the user can retry without retyping.
expect(textarea.value).toBe('keep me');
// A visible, safe notice explains why nothing was sent.
expect(container.querySelector('[role="alert"]')).toBeTruthy();
} finally {
failing();
}
});
it('clears the composer after a successful turn:send and never falls back to the legacy message event — Task Five group 5', async () => {
await advertiseTurnSendGeneration();
const restore = installRandomUUID(() => PAGE_UUID);
try {
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
const textarea = container.querySelector(
'textarea[aria-label="Message"]',
) as HTMLTextAreaElement;
await act(async () => {
setValue(textarea, 'ship it');
});
await act(async () => {
textarea.dispatchEvent(
new KeyboardEvent('keydown', { key: 'Enter', bubbles: true, cancelable: true }),
);
});
const sends = fake.emitted.filter((e) => e.event === 'turn:send');
expect(sends).toHaveLength(1);
expect(fake.emitted.some((e) => e.event === 'message')).toBe(false);
// On a successful send the composer clears.
expect(textarea.value).toBe('');
} finally {
restore();
}
});
it('sends the freshly persisted selection as a nested turn:send tuple after the user changes provider/model — never a stale default or flat fields — Task Five group 5', async () => {
await advertiseTurnSendGeneration();
const restore = installRandomUUID(() => PAGE_UUID);
try {
// Change the selection away from the mount default and let it persist.
const providerSelect = container.querySelector(
'select[aria-label="Provider"]',
) as HTMLSelectElement;
await act(async () => {
selectValue(providerSelect, 'anthropic');
});
const modelSelect = container.querySelector(
'select[aria-label="Model"]',
) as HTMLSelectElement;
await act(async () => {
selectValue(modelSelect, 'anthropic:claude');
});
await flushAsync();
await act(async () => {
fake.serverEmit('message:ack', { conversationId: 'c1', messageId: 'm1' });
});
const textarea = container.querySelector(
'textarea[aria-label="Message"]',
) as HTMLTextAreaElement;
await act(async () => {
setValue(textarea, 'routed');
});
await act(async () => {
textarea.dispatchEvent(
new KeyboardEvent('keydown', { key: 'Enter', bubbles: true, cancelable: true }),
);
});
const sends = fake.emitted.filter((e) => e.event === 'turn:send');
expect(sends).toHaveLength(1);
// The nested tuple reflects the CURRENTLY persisted selection, not the
// mount default {openai, gpt-5}, and never flat provider/model fields.
expect(sends[0]?.payload).toEqual({
conversationId: 'c1',
content: 'routed',
selection: { harnessId: 'pi', providerId: 'anthropic', modelId: 'claude' },
idempotencyKey: PAGE_UUID,
});
expect(fake.emitted.some((e) => e.event === 'message')).toBe(false);
} finally {
restore();
}
});
it('disables send until a selection has persisted — no send with an unset selection', async () => {
await remountWithFetch(harnessFetch(null));
const sendButton = findButton(container, 'Send');
const textarea = container.querySelector(
'textarea[aria-label="Message"]',
) as HTMLTextAreaElement;
await act(async () => {
setValue(textarea, 'should not send');
});
// Content present, but no selection persisted → Send stays disabled.
expect(sendButton.disabled).toBe(true);
await act(async () => {
textarea.dispatchEvent(
new KeyboardEvent('keydown', { key: 'Enter', bubbles: true, cancelable: true }),
);
});
expect(fake.emitted.filter((e) => e.event === 'message')).toHaveLength(0);
});
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"]',
@@ -620,6 +983,134 @@ describe('ChatPage', () => {
expect(fake.emitted.filter((e) => e.event === 'message')).toHaveLength(1);
});
it('scopes the model options to the intentionally selected provider (cross-provider models absent)', async () => {
await remountWithFetch(harnessFetch(null));
const harnessSelect = container.querySelector(
'select[aria-label="Harness"]',
) as HTMLSelectElement;
await act(async () => {
selectValue(harnessSelect, 'pi');
});
await flushAsync();
const providerSelect = container.querySelector(
'select[aria-label="Provider"]',
) as HTMLSelectElement;
await act(async () => {
selectValue(providerSelect, 'openai');
});
const modelSelect = container.querySelector('select[aria-label="Model"]') as HTMLSelectElement;
const optionValues = [...modelSelect.options].map((o) => o.value).filter((v) => v !== '');
// Only the selected provider's models are offered — provider B's model
// (anthropic:claude) is absent, so a user cannot pick across providers.
expect(optionValues).toEqual(['openai:gpt-5']);
expect(optionValues).not.toContain('anthropic:claude');
});
it('keeps identical modelIds under two providers distinct and resolves the pick to the exact tuple', async () => {
const COLLIDING_CATALOG = {
harnessId: 'pi',
version: '2026-08-11',
fingerprint: 'fp',
models: [
{
harnessId: 'pi',
providerId: 'alpha',
modelId: 'gpt-x',
displayName: 'Alpha GPT-X',
reasoningCapability: true,
inputTypes: ['text'],
authState: 'ready',
availability: 'available',
},
{
harnessId: 'pi',
providerId: 'beta',
modelId: 'gpt-x',
displayName: 'Beta GPT-X',
reasoningCapability: true,
inputTypes: ['text'],
authState: 'ready',
availability: 'available',
},
],
};
const collidingFetch = vi.fn(async (input: unknown, init?: RequestInit) => {
const url = String(input);
const method = String(init?.method ?? 'GET').toUpperCase();
if (url === '/api/harnesses') {
return jsonResponse([{ id: 'pi', displayName: 'Pi', capabilities: [] }]);
}
if (url.startsWith('/api/harnesses/') && url.endsWith('/catalog')) {
return jsonResponse(COLLIDING_CATALOG);
}
if (url === '/api/chat/preferences/selection' && method === 'GET') {
return jsonResponse({ selection: null });
}
if (url === '/api/chat/preferences/selection' && method === 'PUT') {
return jsonResponse({ selection: JSON.parse(String(init?.body)) });
}
return new Response('not found', { status: 404 });
}) as unknown as typeof fetch;
await remountWithFetch(collidingFetch);
const harnessSelect = container.querySelector(
'select[aria-label="Harness"]',
) as HTMLSelectElement;
await act(async () => {
selectValue(harnessSelect, 'pi');
});
await flushAsync();
const providerSelect = container.querySelector(
'select[aria-label="Provider"]',
) as HTMLSelectElement;
await act(async () => {
selectValue(providerSelect, 'alpha');
});
const modelSelect = container.querySelector('select[aria-label="Model"]') as HTMLSelectElement;
// The colliding modelId is provider-qualified in the option value, never a
// bare id, so the two providers' 'gpt-x' rows are uniquely identifiable.
const optionValues = [...modelSelect.options].map((o) => o.value).filter((v) => v !== '');
expect(optionValues).toEqual(['alpha:gpt-x']);
await act(async () => {
selectValue(modelSelect, 'alpha:gpt-x');
});
await flushAsync();
// The controlled select highlights the alpha row via the composite identity.
expect(modelSelect.value).toBe('alpha:gpt-x');
const textarea = container.querySelector(
'textarea[aria-label="Message"]',
) as HTMLTextAreaElement;
await act(async () => {
setValue(textarea, 'ping');
});
await act(async () => {
textarea.dispatchEvent(
new KeyboardEvent('keydown', { key: 'Enter', bubbles: true, cancelable: true }),
);
});
// The persisted/sent tuple resolves to provider alpha — NOT beta — even
// though the bare modelId 'gpt-x' exists under both providers.
expect(fake.emitted).toContainEqual({
event: 'message',
payload: {
conversationId: undefined,
content: 'ping',
provider: 'alpha',
modelId: 'gpt-x',
},
});
});
it('removes socket handlers and tears down the socket on unmount, with no network calls', async () => {
expect(fake.listeners.size).toBeGreaterThan(0);
+3
View File
@@ -6,6 +6,7 @@ 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';
import { useHarnessSelection } from '@/spa/chat/use-harness-selection';
/** 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
@@ -23,6 +24,7 @@ function formatCost(value: unknown): string {
export function ChatPage(): ReactElement {
const { state, actions } = useChatConnection();
const harness = useHarnessSelection();
const hasConversation = state.conversationId !== null;
return (
@@ -86,6 +88,7 @@ export function ChatPage(): ReactElement {
streaming={state.streaming}
sending={state.sending}
hasConversation={hasConversation}
harness={harness}
/>
</div>
);
+7
View File
@@ -0,0 +1,7 @@
export function getErrorMessage(error: unknown, fallback: string): string {
if (error instanceof Error && error.message.trim().length > 0) {
return error.message;
}
return fallback;
}
+115
View File
@@ -0,0 +1,115 @@
import type { Mission, Project, Task } from '@/lib/types';
export const projectFixtures: Project[] = [
{
id: 'project-1',
name: 'Mosaic Stack',
description: 'Gateway and dashboard parity work',
status: 'active',
userId: 'user-1',
metadata: {
prd: '# Mosaic Stack PRD\n\n## Objective\n\nShip the SPA route parity pages.',
},
createdAt: '2026-08-01T12:00:00.000Z',
updatedAt: '2026-08-09T18:30:00.000Z',
},
{
id: 'project-2',
name: 'Agent Runtime',
description: 'Pi SDK integration',
status: 'paused',
userId: 'user-1',
metadata: null,
createdAt: '2026-08-02T08:00:00.000Z',
updatedAt: '2026-08-05T10:00:00.000Z',
},
];
export const missionFixtures: Mission[] = [
{
id: 'mission-1',
name: 'Ship web parity',
description: 'Port read-only routes into the SPA',
status: 'active',
projectId: 'project-1',
metadata: null,
createdAt: '2026-08-03T12:00:00.000Z',
updatedAt: '2026-08-09T12:00:00.000Z',
},
{
id: 'mission-2',
name: 'Unrelated mission',
description: 'Must be filtered out of the project detail view',
status: 'planning',
projectId: 'project-2',
metadata: null,
createdAt: '2026-08-04T12:00:00.000Z',
updatedAt: '2026-08-04T12:00:00.000Z',
},
];
export const taskFixtures: Task[] = [
{
id: 'task-1',
title: 'Route /projects',
description: 'Port the read-only projects listing into the SPA',
status: 'done',
priority: 'high',
projectId: 'project-1',
missionId: 'mission-1',
assignee: 'Jarvis',
tags: ['spa', 'projects'],
dueDate: '2026-08-12T00:00:00.000Z',
metadata: {
notes: 'Read-only modal content should remain intact.',
pr_links: [{ url: 'https://example.invalid/pr/1', label: 'PR #1' }],
},
createdAt: '2026-08-04T10:00:00.000Z',
updatedAt: '2026-08-09T15:00:00.000Z',
},
{
id: 'task-2',
title: 'Route /projects/:id',
description: 'Reuse overview, tasks, missions, and PRD tabs',
status: 'in-progress',
priority: 'critical',
projectId: 'project-1',
missionId: 'mission-1',
assignee: null,
tags: ['spa', 'detail'],
dueDate: null,
metadata: null,
createdAt: '2026-08-05T09:00:00.000Z',
updatedAt: '2026-08-10T08:00:00.000Z',
},
{
id: 'task-3',
title: 'Route /tasks',
description: 'Wire list and kanban modal interactions',
status: 'blocked',
priority: 'medium',
projectId: 'project-1',
missionId: null,
assignee: null,
tags: ['spa', 'tasks'],
dueDate: null,
metadata: null,
createdAt: '2026-08-06T09:00:00.000Z',
updatedAt: '2026-08-08T08:00:00.000Z',
},
{
id: 'task-4',
title: 'Other project task',
description: 'Used only to confirm mission filtering remains project-scoped',
status: 'not-started',
priority: 'low',
projectId: 'project-2',
missionId: 'mission-2',
assignee: null,
tags: null,
dueDate: null,
metadata: null,
createdAt: '2026-08-06T09:00:00.000Z',
updatedAt: '2026-08-06T09:00:00.000Z',
},
];
@@ -0,0 +1,174 @@
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';
import { missionFixtures, projectFixtures, taskFixtures } from './page-fixtures';
const { apiMock } = vi.hoisted(() => ({
apiMock: vi.fn(),
}));
vi.mock('@/lib/api', () => ({
api: apiMock,
}));
import { ProjectDetailPage } from './project-detail';
let root: Root | null = null;
let container: HTMLDivElement;
beforeAll(() => {
Object.defineProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT', {
configurable: true,
value: true,
});
});
afterAll(() => {
Reflect.deleteProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT');
});
afterEach(async () => {
await act(async () => {
root?.unmount();
});
document.body.replaceChildren();
root = null;
apiMock.mockReset();
});
async function renderProjectDetailPage(): Promise<ReturnType<typeof createMemoryRouter>> {
const routes: RouteObject[] = [
{ path: '/projects', element: <p>Projects index target</p> },
{ path: '/projects/:id', element: <ProjectDetailPage /> },
];
const router = createMemoryRouter(routes, { initialEntries: ['/projects/project-1'] });
container = document.createElement('div');
document.body.append(container);
root = createRoot(container);
await act(async () => {
root?.render(<RouterProvider router={router} />);
});
return router;
}
function clickButtonByText(text: string): void {
const button = [...container.querySelectorAll('button')].find((candidate) =>
candidate.textContent?.includes(text),
);
if (!button) {
throw new Error(`Button containing "${text}" not found`);
}
button.dispatchEvent(new MouseEvent('click', { bubbles: true }));
}
describe('ProjectDetailPage', () => {
it('loads the project, tasks, missions, and optional PRD content for the active project', async () => {
apiMock
.mockResolvedValueOnce(projectFixtures[0])
.mockResolvedValueOnce(missionFixtures)
.mockResolvedValueOnce(taskFixtures.filter((task) => task.projectId === 'project-1'));
await renderProjectDetailPage();
expect(apiMock.mock.calls).toEqual([
['/api/projects/project-1'],
['/api/missions'],
['/api/tasks?projectId=project-1'],
]);
expect(container.textContent).toContain('Mosaic Stack');
expect(container.textContent).toContain('Route /projects/:id');
expect(container.textContent).toContain('Tasks');
expect(container.textContent).toContain('Done');
expect(container.textContent).toContain('Blocked');
await act(async () => {
clickButtonByText('Missions (1)');
});
expect(container.textContent).toContain('Ship web parity');
expect(container.textContent).not.toContain('Unrelated mission');
await act(async () => {
clickButtonByText('PRD');
});
expect(container.textContent).toContain('Mosaic Stack PRD');
expect(container.textContent).toContain('Ship the SPA route parity pages.');
});
it('opens and closes the existing read-only task modal from the tasks tab', async () => {
apiMock
.mockResolvedValueOnce(projectFixtures[0])
.mockResolvedValueOnce(missionFixtures)
.mockResolvedValueOnce(taskFixtures.filter((task) => task.projectId === 'project-1'));
await renderProjectDetailPage();
await act(async () => {
clickButtonByText('Tasks (3)');
});
const row = [...container.querySelectorAll('tr')].find((candidate) =>
candidate.textContent?.includes('Route /projects'),
);
expect(row).toBeTruthy();
await act(async () => {
row?.dispatchEvent(new MouseEvent('click', { bubbles: true }));
});
expect(container.querySelector('[role="dialog"]')).toBeTruthy();
expect(container.textContent).toContain('Read-only modal content should remain intact.');
const closeButton = container.querySelector('button[aria-label="Close task details"]');
expect(closeButton).toBeTruthy();
await act(async () => {
closeButton?.dispatchEvent(new MouseEvent('click', { bubbles: true }));
});
expect(container.querySelector('[role="dialog"]')).toBeNull();
});
it('renders the project with an empty missions tab when the missions request fails', async () => {
apiMock
.mockResolvedValueOnce(projectFixtures[0])
.mockRejectedValueOnce(new Error('Missions request failed'))
.mockResolvedValueOnce(taskFixtures.filter((task) => task.projectId === 'project-1'));
await renderProjectDetailPage();
expect(container.textContent).toContain('Mosaic Stack');
expect(container.querySelector('[role="alert"]')).toBeNull();
await act(async () => {
clickButtonByText('Missions (0)');
});
expect(container.textContent).toContain('No missions for this project');
});
it('renders a visible alert when the project request fails and lets the user navigate back', async () => {
apiMock
.mockRejectedValueOnce(new Error('Project request failed'))
.mockResolvedValueOnce(missionFixtures)
.mockResolvedValueOnce(taskFixtures.filter((task) => task.projectId === 'project-1'));
const router = await renderProjectDetailPage();
const alert = container.querySelector('[role="alert"]');
expect(alert).toBeTruthy();
expect(alert?.textContent).toContain('Project request failed');
expect(container.textContent).not.toContain('Mosaic Stack');
await act(async () => {
clickButtonByText('Back to projects');
});
expect(router.state.location.pathname).toBe('/projects');
});
});
+344
View File
@@ -0,0 +1,344 @@
import { useEffect, useState, type ReactElement } from 'react';
import { useNavigate, useParams } from 'react-router-dom';
import { MissionTimeline } from '@/components/projects/mission-timeline';
import { PrdViewer } from '@/components/projects/prd-viewer';
import { TaskDetailModal } from '@/components/tasks/task-detail-modal';
import { TaskListView } from '@/components/tasks/task-list-view';
import { TaskStatusSummary } from '@/components/tasks/task-status-summary';
import { api } from '@/lib/api';
import { cn } from '@/lib/cn';
import type { Mission, Project, Task, TaskStatus } from '@/lib/types';
import { getErrorMessage } from './page-errors';
type Tab = 'overview' | 'tasks' | 'missions' | 'prd';
const projectStatusColors: Record<string, string> = {
active: 'bg-success/20 text-success',
paused: 'bg-warning/20 text-warning',
completed: 'bg-blue-600/20 text-blue-400',
archived: 'bg-gray-600/20 text-gray-400',
};
const taskStatusColors: Record<string, string> = {
'not-started': 'bg-gray-600/20 text-gray-300',
'in-progress': 'bg-blue-600/20 text-blue-400',
blocked: 'bg-error/20 text-error',
done: 'bg-success/20 text-success',
cancelled: 'bg-gray-600/20 text-gray-500',
};
interface TabButtonProps {
id: Tab;
label: string;
activeTab: Tab;
onClick: (tab: Tab) => void;
}
function TabButton({ id, label, activeTab, onClick }: TabButtonProps): ReactElement {
return (
<button
type="button"
onClick={() => onClick(id)}
className={cn(
'border-b-2 px-4 py-2 text-sm transition-colors',
activeTab === id
? 'border-text-primary text-text-primary'
: 'border-transparent text-text-muted hover:text-text-secondary',
)}
>
{label}
</button>
);
}
export function ProjectDetailPage(): ReactElement {
const { id = '' } = useParams();
const navigate = useNavigate();
const [project, setProject] = useState<Project | null>(null);
const [missions, setMissions] = useState<Mission[]>([]);
const [tasks, setTasks] = useState<Task[]>([]);
const [loading, setLoading] = useState(true);
const [error, setError] = useState<string | null>(null);
const [activeTab, setActiveTab] = useState<Tab>('overview');
const [taskFilter, setTaskFilter] = useState<TaskStatus | 'all'>('all');
const [selectedTask, setSelectedTask] = useState<Task | null>(null);
useEffect(() => {
if (!id) {
setError('Project id is missing.');
setLoading(false);
return;
}
let cancelled = false;
setLoading(true);
setError(null);
void Promise.all([
api<Project>('/api/projects/' + id),
api<Mission[]>('/api/missions').catch(() => [] as Mission[]),
api<Task[]>('/api/tasks?projectId=' + id).catch(() => [] as Task[]),
])
.then(([loadedProject, allMissions, loadedTasks]) => {
if (cancelled) return;
setProject(loadedProject);
setMissions(allMissions.filter((mission) => mission.projectId === id));
setTasks(loadedTasks);
})
.catch((caught: unknown) => {
if (cancelled) return;
setError(getErrorMessage(caught, 'Failed to load project.'));
})
.finally(() => {
if (cancelled) return;
setLoading(false);
});
return () => {
cancelled = true;
};
}, [id]);
if (loading) {
return (
<div className="flex min-h-screen flex-col px-4 py-6 sm:px-6">
<header className="mb-6 border-b px-1 pb-3">
<h1 className="text-2xl font-semibold">Project</h1>
</header>
<p className="py-16 text-center text-sm text-text-muted">Loading project...</p>
</div>
);
}
if (error || !project) {
return (
<div className="flex min-h-screen flex-col px-4 py-6 sm:px-6">
<header className="mb-6 border-b px-1 pb-3">
<h1 className="text-2xl font-semibold">Project</h1>
</header>
<div role="alert" className="rounded-lg border border-error/40 px-4 py-3 text-sm">
{error ?? 'Project not found.'}
</div>
<button
type="button"
onClick={() => navigate('/projects')}
className="mt-4 w-fit text-sm underline"
>
Back to projects
</button>
</div>
);
}
const filteredTasks =
taskFilter === 'all' ? tasks : tasks.filter((task) => task.status === taskFilter);
const prdContent = getPrdContent(project);
const tabs: Array<{ id: Tab; label: string }> = [
{ id: 'overview', label: 'Overview' },
{ id: 'tasks', label: `Tasks (${tasks.length})` },
{ id: 'missions', label: `Missions (${missions.length})` },
...(prdContent ? [{ id: 'prd' as const, label: 'PRD' }] : []),
];
return (
<div className="flex min-h-screen flex-col px-4 py-6 sm:px-6">
<header className="mb-6 border-b px-1 pb-3">
<nav className="mb-4 flex items-center gap-2 text-sm text-text-muted">
<button
type="button"
onClick={() => navigate('/projects')}
className="hover:text-text-secondary"
>
Projects
</button>
<span>/</span>
<span className="text-text-primary">{project.name}</span>
</nav>
<div className="flex items-start justify-between gap-4">
<div>
<div className="flex items-center gap-3">
<h1 className="text-2xl font-semibold text-text-primary">{project.name}</h1>
<span
className={cn(
'rounded-full px-2 py-0.5 text-xs',
projectStatusColors[project.status] ?? 'bg-gray-600/20 text-gray-400',
)}
>
{project.status}
</span>
</div>
{project.description ? (
<p className="mt-1 text-sm text-text-muted">{project.description}</p>
) : null}
<p className="mt-2 text-xs text-text-muted">
Created {new Date(project.createdAt).toLocaleDateString()} · Updated{' '}
{new Date(project.updatedAt).toLocaleDateString()}
</p>
</div>
</div>
</header>
<div className="mb-6 grid grid-cols-2 gap-3 sm:grid-cols-4">
<StatCard label="Tasks" value={String(tasks.length)} />
<StatCard
label="Done"
value={String(tasks.filter((task) => task.status === 'done').length)}
valueClass="text-success"
/>
<StatCard
label="In Progress"
value={String(tasks.filter((task) => task.status === 'in-progress').length)}
valueClass="text-blue-400"
/>
<StatCard
label="Blocked"
value={String(tasks.filter((task) => task.status === 'blocked').length)}
valueClass={tasks.some((task) => task.status === 'blocked') ? 'text-error' : undefined}
/>
</div>
<div className="mb-6 flex gap-0 border-b border-surface-border">
{tabs.map((tab) => (
<TabButton
key={tab.id}
id={tab.id}
label={tab.label}
activeTab={activeTab}
onClick={setActiveTab}
/>
))}
</div>
{activeTab === 'overview' ? (
<OverviewTab project={project} missions={missions} tasks={tasks} />
) : null}
{activeTab === 'tasks' ? (
<div>
<div className="mb-4">
<TaskStatusSummary
tasks={tasks}
activeFilter={taskFilter}
onFilterChange={setTaskFilter}
/>
</div>
<TaskListView tasks={filteredTasks} onTaskClick={setSelectedTask} />
</div>
) : null}
{activeTab === 'missions' ? <MissionTimeline missions={missions} /> : null}
{activeTab === 'prd' && prdContent ? (
<div className="rounded-lg border border-surface-border bg-surface-card p-6">
<PrdViewer content={prdContent} />
</div>
) : null}
{selectedTask ? (
<TaskDetailModal task={selectedTask} onClose={() => setSelectedTask(null)} />
) : null}
</div>
);
}
function OverviewTab({
project,
missions,
tasks,
}: {
project: Project;
missions: Mission[];
tasks: Task[];
}): ReactElement {
const recentTasks = [...tasks]
.sort((left, right) => new Date(right.updatedAt).getTime() - new Date(left.updatedAt).getTime())
.slice(0, 5);
return (
<div className="grid gap-6 lg:grid-cols-2">
<section>
<h2 className="mb-3 text-sm font-semibold text-text-secondary">Recent Tasks</h2>
{recentTasks.length === 0 ? (
<div className="rounded-lg border border-surface-border bg-surface-card p-4 text-center">
<p className="text-sm text-text-muted">No tasks yet</p>
</div>
) : (
<div className="space-y-2">
{recentTasks.map((task) => (
<div
key={task.id}
className="flex items-center justify-between gap-2 rounded-lg border border-surface-border bg-surface-card px-3 py-2"
>
<span className="truncate text-sm text-text-primary">{task.title}</span>
<span
className={cn(
'shrink-0 rounded-full px-2 py-0.5 text-xs',
taskStatusColors[task.status] ?? 'bg-gray-600/20 text-gray-400',
)}
>
{task.status}
</span>
</div>
))}
</div>
)}
</section>
<section>
<h2 className="mb-3 text-sm font-semibold text-text-secondary">Missions</h2>
{missions.length === 0 ? (
<div className="rounded-lg border border-surface-border bg-surface-card p-4 text-center">
<p className="text-sm text-text-muted">No missions yet</p>
</div>
) : (
<MissionTimeline missions={missions.slice(0, 4)} />
)}
</section>
{project.metadata && Object.keys(project.metadata).length > 0 ? (
<section className="lg:col-span-2">
<h2 className="mb-3 text-sm font-semibold text-text-secondary">Project Metadata</h2>
<div className="rounded-lg border border-surface-border bg-surface-card p-4">
<pre className="overflow-x-auto text-xs text-text-muted">
{JSON.stringify(project.metadata, null, 2)}
</pre>
</div>
</section>
) : null}
</div>
);
}
function StatCard({
label,
value,
valueClass,
}: {
label: string;
value: string;
valueClass?: string;
}): ReactElement {
return (
<div className="rounded-lg border border-surface-border bg-surface-card p-3">
<p className="text-xs text-text-muted">{label}</p>
<p className={cn('mt-1 text-lg font-semibold', valueClass ?? 'text-text-primary')}>{value}</p>
</div>
);
}
function getPrdContent(project: Project): string | null {
if (!project.metadata) return null;
const prd = project.metadata['prd'];
if (typeof prd === 'string' && prd.trim().length > 0) {
return prd;
}
const prdContent = project.metadata['prdContent'];
if (typeof prdContent === 'string' && prdContent.trim().length > 0) {
return prdContent;
}
return null;
}
+131
View File
@@ -0,0 +1,131 @@
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';
import { projectFixtures } from './page-fixtures';
const { apiMock } = vi.hoisted(() => ({
apiMock: vi.fn(),
}));
vi.mock('@/lib/api', () => ({
api: apiMock,
}));
import { ProjectsPage } from './projects';
interface Deferred<T> {
promise: Promise<T>;
resolve: (value: T) => void;
reject: (reason?: unknown) => void;
}
function createDeferred<T>(): Deferred<T> {
let resolve!: (value: T) => void;
let reject!: (reason?: unknown) => void;
const promise = new Promise<T>((res, rej) => {
resolve = res;
reject = rej;
});
return { promise, resolve, reject };
}
let root: Root | null = null;
let container: HTMLDivElement;
beforeAll(() => {
Object.defineProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT', {
configurable: true,
value: true,
});
});
afterAll(() => {
Reflect.deleteProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT');
});
afterEach(async () => {
await act(async () => {
root?.unmount();
});
document.body.replaceChildren();
root = null;
apiMock.mockReset();
});
async function renderProjectsPage(): Promise<ReturnType<typeof createMemoryRouter>> {
const routes: RouteObject[] = [
{ path: '/projects', element: <ProjectsPage /> },
{ path: '/projects/:id', element: <p>Project detail target</p> },
];
const router = createMemoryRouter(routes, { initialEntries: ['/projects'] });
container = document.createElement('div');
document.body.append(container);
root = createRoot(container);
await act(async () => {
root?.render(<RouterProvider router={router} />);
});
return router;
}
describe('ProjectsPage', () => {
it('shows a visible loading state while the project request is in flight', async () => {
const deferred = createDeferred<typeof projectFixtures>();
apiMock.mockReturnValueOnce(deferred.promise);
await renderProjectsPage();
expect(container.textContent).toContain('Loading projects...');
await act(async () => {
deferred.resolve(projectFixtures);
await deferred.promise;
});
});
it('renders project cards from the API and navigates to a project detail route on click', async () => {
apiMock.mockResolvedValueOnce(projectFixtures);
const router = await renderProjectsPage();
expect(apiMock).toHaveBeenCalledWith('/api/projects');
expect(container.textContent).toContain('Mosaic Stack');
expect(container.textContent).toContain('Agent Runtime');
const button = [...container.querySelectorAll('button')].find((candidate) =>
candidate.textContent?.includes('Mosaic Stack'),
);
expect(button).toBeTruthy();
await act(async () => {
button?.dispatchEvent(new MouseEvent('click', { bubbles: true }));
});
expect(router.state.location.pathname).toBe('/projects/project-1');
expect(container.textContent).toContain('Project detail target');
});
it('renders the empty state when the API returns no projects', async () => {
apiMock.mockResolvedValueOnce([]);
await renderProjectsPage();
expect(container.textContent).toContain('No projects yet');
expect(container.textContent).toContain(
'Projects will appear here when created via the gateway API',
);
});
it('renders a visible alert when the projects request fails', async () => {
apiMock.mockRejectedValueOnce(new Error('Projects are unavailable'));
await renderProjectsPage();
const alert = container.querySelector('[role="alert"]');
expect(alert).toBeTruthy();
expect(alert?.textContent).toContain('Projects are unavailable');
});
});
+70
View File
@@ -0,0 +1,70 @@
import { useEffect, useState, type ReactElement } from 'react';
import { useNavigate } from 'react-router-dom';
import { ProjectCard } from '@/components/projects/project-card';
import { api } from '@/lib/api';
import type { Project } from '@/lib/types';
import { getErrorMessage } from './page-errors';
export function ProjectsPage(): ReactElement {
const navigate = useNavigate();
const [projects, setProjects] = useState<Project[]>([]);
const [loading, setLoading] = useState(true);
const [error, setError] = useState<string | null>(null);
useEffect(() => {
let cancelled = false;
void api<Project[]>('/api/projects')
.then((response) => {
if (cancelled) return;
setProjects(response);
})
.catch((caught: unknown) => {
if (cancelled) return;
setError(getErrorMessage(caught, 'Failed to load projects.'));
})
.finally(() => {
if (cancelled) return;
setLoading(false);
});
return () => {
cancelled = true;
};
}, []);
return (
<div className="flex min-h-screen flex-col px-4 py-6 sm:px-6">
<header className="mb-6 border-b px-1 pb-3">
<h1 className="text-2xl font-semibold">Projects</h1>
</header>
{error ? (
<div role="alert" className="mb-6 rounded-lg border border-error/40 px-4 py-3 text-sm">
{error}
</div>
) : null}
{loading ? (
<p className="py-8 text-center text-sm text-text-muted">Loading projects...</p>
) : projects.length === 0 ? (
<div className="py-12 text-center">
<h2 className="text-lg font-medium text-text-secondary">No projects yet</h2>
<p className="mt-1 text-sm text-text-muted">
Projects will appear here when created via the gateway API
</p>
</div>
) : (
<div className="grid gap-4 sm:grid-cols-2 lg:grid-cols-3">
{projects.map((project) => (
<ProjectCard
key={project.id}
project={project}
onClick={(selectedProject) => navigate(`/projects/${selectedProject.id}`)}
/>
))}
</div>
)}
</div>
);
}
@@ -0,0 +1,86 @@
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';
function Boom(): never {
throw new Error('resource route render blew up');
}
function replaceRouteElementWithBoom(nodes: RouteObject[], path: string): RouteObject[] {
return nodes.map((node) => {
const cloned: RouteObject = { ...node };
if (cloned.path === path) {
cloned.element = <Boom />;
}
if (cloned.children) {
cloned.children = replaceRouteElementWithBoom(cloned.children, path);
}
return cloned;
});
}
let root: Root | null = null;
let container: HTMLDivElement;
beforeAll(() => {
Object.defineProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT', {
configurable: true,
value: true,
});
});
afterAll(() => {
Reflect.deleteProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT');
});
afterEach(async () => {
await act(async () => {
root?.unmount();
});
document.body.replaceChildren();
root = null;
useSessionMock.mockReset();
});
describe('resource route error boundaries', () => {
it.each(['/projects', '/projects/:id', '/tasks'])(
'renders a recoverable fallback when %s throws during route render',
async (path) => {
useSessionMock.mockReturnValue({ data: { user: { id: 'user-1' } }, isPending: false });
const initialEntry = path === '/projects/:id' ? '/projects/project-1' : path;
const router = createMemoryRouter(replaceRouteElementWithBoom(routes, path), {
initialEntries: [initialEntry],
});
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 +1,55 @@
import type { ReactElement } from 'react';
import { useRouteError } from 'react-router-dom';
interface ResourceRouteErrorBoundaryProps {
message: string;
href: string;
linkLabel: string;
}
function ResourceRouteErrorBoundary({
message,
href,
linkLabel,
}: ResourceRouteErrorBoundaryProps): 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">{message}</p>
<a href={href} className="text-sm underline">
{linkLabel}
</a>
</div>
);
}
export function ProjectsRouteErrorBoundary(): ReactElement {
return (
<ResourceRouteErrorBoundary
message="Something went wrong loading projects."
href="/projects"
linkLabel="Reload projects"
/>
);
}
export function ProjectDetailRouteErrorBoundary(): ReactElement {
return (
<ResourceRouteErrorBoundary
message="Something went wrong loading this project."
href="/projects"
linkLabel="Back to projects"
/>
);
}
export function TasksRouteErrorBoundary(): ReactElement {
return (
<ResourceRouteErrorBoundary
message="Something went wrong loading tasks."
href="/tasks"
linkLabel="Reload tasks"
/>
);
}
+144
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@@ -0,0 +1,144 @@
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';
import { taskFixtures } from './page-fixtures';
const { apiMock } = vi.hoisted(() => ({
apiMock: vi.fn(),
}));
vi.mock('@/lib/api', () => ({
api: apiMock,
}));
import { TasksPage } from './tasks';
interface Deferred<T> {
promise: Promise<T>;
resolve: (value: T) => void;
}
function createDeferred<T>(): Deferred<T> {
let resolve!: (value: T) => void;
const promise = new Promise<T>((res) => {
resolve = res;
});
return { promise, resolve };
}
let root: Root | null = null;
let container: HTMLDivElement;
beforeAll(() => {
Object.defineProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT', {
configurable: true,
value: true,
});
});
afterAll(() => {
Reflect.deleteProperty(globalThis, 'IS_REACT_ACT_ENVIRONMENT');
});
afterEach(async () => {
await act(async () => {
root?.unmount();
});
document.body.replaceChildren();
root = null;
apiMock.mockReset();
});
async function renderTasksPage(): Promise<void> {
const routes: RouteObject[] = [{ path: '/tasks', element: <TasksPage /> }];
const router = createMemoryRouter(routes, { initialEntries: ['/tasks'] });
container = document.createElement('div');
document.body.append(container);
root = createRoot(container);
await act(async () => {
root?.render(<RouterProvider router={router} />);
});
}
function clickButtonByText(text: string): void {
const button = [...container.querySelectorAll('button')].find((candidate) =>
candidate.textContent?.includes(text),
);
if (!button) {
throw new Error(`Button containing "${text}" not found`);
}
button.dispatchEvent(new MouseEvent('click', { bubbles: true }));
}
describe('TasksPage', () => {
it('shows a visible loading state before the tasks request settles', async () => {
const deferred = createDeferred<typeof taskFixtures>();
apiMock.mockReturnValueOnce(deferred.promise);
await renderTasksPage();
expect(container.textContent).toContain('Loading tasks...');
await act(async () => {
deferred.resolve(taskFixtures);
await deferred.promise;
});
});
it('starts in kanban view, toggles to list view, and opens the read-only modal from cards and rows', async () => {
apiMock.mockResolvedValueOnce(taskFixtures);
await renderTasksPage();
expect(container.textContent).toContain('Not Started');
expect(container.textContent).toContain('In Progress');
expect(container.textContent).toContain('Blocked');
const kanbanCard = [...container.querySelectorAll('button')].find((candidate) =>
candidate.textContent?.includes('Route /projects/:id'),
);
expect(kanbanCard).toBeTruthy();
await act(async () => {
kanbanCard?.dispatchEvent(new MouseEvent('click', { bubbles: true }));
});
expect(container.querySelector('[role="dialog"]')).toBeTruthy();
await act(async () => {
container
.querySelector('button[aria-label="Close task details"]')
?.dispatchEvent(new MouseEvent('click', { bubbles: true }));
});
expect(container.querySelector('[role="dialog"]')).toBeNull();
await act(async () => {
clickButtonByText('List');
});
const row = [...container.querySelectorAll('tr')].find((candidate) =>
candidate.textContent?.includes('Route /tasks'),
);
expect(row).toBeTruthy();
await act(async () => {
row?.dispatchEvent(new MouseEvent('click', { bubbles: true }));
});
expect(container.querySelector('[role="dialog"]')).toBeTruthy();
expect(container.textContent).toContain('Wire list and kanban modal interactions');
});
it('renders a visible alert when the tasks request fails', async () => {
apiMock.mockRejectedValueOnce(new Error('Tasks request failed'));
await renderTasksPage();
const alert = container.querySelector('[role="alert"]');
expect(alert).toBeTruthy();
expect(alert?.textContent).toContain('Tasks request failed');
});
});
+92
View File
@@ -0,0 +1,92 @@
import { useEffect, useState, type ReactElement } from 'react';
import { KanbanBoard } from '@/components/tasks/kanban-board';
import { TaskDetailModal } from '@/components/tasks/task-detail-modal';
import { TaskListView } from '@/components/tasks/task-list-view';
import { api } from '@/lib/api';
import { cn } from '@/lib/cn';
import type { Task } from '@/lib/types';
import { getErrorMessage } from './page-errors';
type ViewMode = 'list' | 'kanban';
export function TasksPage(): ReactElement {
const [tasks, setTasks] = useState<Task[]>([]);
const [view, setView] = useState<ViewMode>('kanban');
const [loading, setLoading] = useState(true);
const [error, setError] = useState<string | null>(null);
const [selectedTask, setSelectedTask] = useState<Task | null>(null);
useEffect(() => {
let cancelled = false;
void api<Task[]>('/api/tasks')
.then((response) => {
if (cancelled) return;
setTasks(response);
})
.catch((caught: unknown) => {
if (cancelled) return;
setError(getErrorMessage(caught, 'Failed to load tasks.'));
})
.finally(() => {
if (cancelled) return;
setLoading(false);
});
return () => {
cancelled = true;
};
}, []);
return (
<div className="flex min-h-screen flex-col px-4 py-6 sm:px-6">
<header className="mb-6 flex items-center justify-between gap-4 border-b px-1 pb-3">
<h1 className="text-2xl font-semibold">Tasks</h1>
<div className="flex rounded-lg border border-surface-border">
<button
type="button"
onClick={() => setView('list')}
className={cn(
'px-3 py-1.5 text-xs transition-colors',
view === 'list'
? 'bg-surface-elevated text-text-primary'
: 'text-text-muted hover:text-text-secondary',
)}
>
List
</button>
<button
type="button"
onClick={() => setView('kanban')}
className={cn(
'px-3 py-1.5 text-xs transition-colors',
view === 'kanban'
? 'bg-surface-elevated text-text-primary'
: 'text-text-muted hover:text-text-secondary',
)}
>
Kanban
</button>
</div>
</header>
{error ? (
<div role="alert" className="mb-6 rounded-lg border border-error/40 px-4 py-3 text-sm">
{error}
</div>
) : null}
{loading ? (
<p className="py-8 text-center text-sm text-text-muted">Loading tasks...</p>
) : view === 'kanban' ? (
<KanbanBoard tasks={tasks} onTaskClick={setSelectedTask} />
) : (
<TaskListView tasks={tasks} onTaskClick={setSelectedTask} />
)}
{selectedTask ? (
<TaskDetailModal task={selectedTask} onClose={() => setSelectedTask(null)} />
) : null}
</div>
);
}
+27
View File
@@ -4,6 +4,9 @@ import type { RouteObject } from 'react-router-dom';
import { routes } from '@/routes';
import { Placeholder } from '@/spa/placeholder';
import { ChatPage } from '@/spa/pages/chat';
import { ProjectDetailPage } from '@/spa/pages/project-detail';
import { ProjectsPage } from '@/spa/pages/projects';
import { TasksPage } from '@/spa/pages/tasks';
function collectPaths(routeObjects: RouteObject[]): string[] {
return routeObjects.flatMap((route) => [
@@ -67,4 +70,28 @@ describe('SPA route table', () => {
expect(element.type).not.toBe(Placeholder);
expect(element.type).toBe(ChatPage);
});
it.each([
['/projects', ProjectsPage],
['/projects/:id', ProjectDetailPage],
['/tasks', TasksPage],
])(
'renders a real authenticated page instead of the P1 placeholder at %s',
(path, expectedType) => {
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);
expect(element.type).toBe(expectedType);
},
);
it.each(['/chat', '/projects', '/projects/:id', '/tasks'])(
'defines an error boundary for %s',
(path) => {
const route = findRoute(routes, path);
expect(route?.errorElement).toBeTruthy();
expect(isValidElement(route?.errorElement)).toBe(true);
},
);
});
+1
View File
@@ -16,6 +16,7 @@ export default defineConfig({
},
server: {
port: 3100,
strictPort: true,
proxy: {
'/api': gatewayTarget,
'/socket.io': { target: gatewayTarget, ws: true },
@@ -0,0 +1,33 @@
# CI Queue Guard Purpose Semantics
- **Issue:** #1146
- **Target branch:** `next`
## Problem
`ci-queue-wait.sh` treats any result other than terminal success as asserted non-readiness. That is correct for merge readiness, but incorrect for the pre-push queue guard: a terminal failure or an empty status set means no pipeline is queued or running, so the queue is clear.
## Design
Make final-state handling purpose-sensitive while preserving the existing provider and payload safeguards:
- `--purpose push`
- wait while state is `pending`;
- return success for `terminal-success`, `terminal-failure`, and `no-status`;
- continue rejecting `malformed`, `unknown`, and unrecognized states.
- `--purpose merge`
- return success only for `terminal-success`;
- continue rejecting `terminal-failure`, `no-status`, malformed, unknown, and unrecognized states.
- `--require-status` remains authoritative: `no-status` fails for either purpose when it is supplied.
Diagnostics will explicitly distinguish a queue-clear push result from successful CI so callers cannot mistake an old failure for a green pipeline.
## Testing
Extend the process-level tri-state regression harness with separate push and merge assertions:
1. Push passes for terminal success, terminal failure, and no status.
2. Push still fails for pending, malformed, and unknown states.
3. `--require-status` makes push/no-status fail.
4. Merge behavior remains fail-closed except for terminal success.
5. Existing provider-unavailable audit behavior remains unchanged.
@@ -0,0 +1,208 @@
# CI Queue Guard Purpose Semantics Implementation Plan
> **For Claude:** REQUIRED SUB-SKILL: Use superpowers:executing-plans to implement this plan task-by-task.
**Goal:** Make the pre-push CI queue guard pass when no pipeline is queued or running while preserving fail-closed merge readiness.
**Architecture:** Keep provider lookup and tri-state classification unchanged. Make only the final state dispatch purpose-sensitive: push treats valid non-pending states as queue-clear, while merge continues to require terminal success. Preserve `--require-status`, malformed-payload rejection, unknown-state rejection, and audited provider-unavailable behavior.
**Tech Stack:** Bash, process-level shell regression harnesses, Gitea/GitHub status APIs.
---
### Task 1: Freeze Purpose-Specific State Semantics
**Files:**
- Modify: `packages/mosaic/framework/tools/git/test-ci-queue-wait-tristate.sh`
- Test: `packages/mosaic/framework/tools/git/test-ci-queue-wait-tristate.sh`
**Step 1: Add failing push assertions**
Change push expectations so `terminal-failure` and `no-status` require exit 0 plus an explicit `queue-clear` diagnostic. Add a `--require-status` assertion that keeps push/no-status non-zero.
**Step 2: Add failing merge assertions**
Invoke the same harness with `MOSAIC_TEST_PURPOSE=merge` and assert terminal failure and no status remain non-zero while terminal success remains zero.
**Step 3: Add unknown-state coverage**
Add a stub payload with a syntactically valid but unsupported status value and assert both purposes reject it.
**Step 4: Run the focused test and verify RED**
Run:
```bash
bash packages/mosaic/framework/tools/git/test-ci-queue-wait-tristate.sh
```
Expected: failures showing push terminal-failure and no-status returned exit 3 instead of exit 0 or lacked `queue-clear` diagnostics.
**Step 5: Commit the failing tests**
```bash
git add packages/mosaic/framework/tools/git/test-ci-queue-wait-tristate.sh
git commit -m "test(ci): define purpose-aware queue readiness"
```
### Task 2: Implement Purpose-Sensitive Final-State Dispatch
**Files:**
- Modify: `packages/mosaic/framework/tools/git/ci-queue-wait.sh:458-481`
- Test: `packages/mosaic/framework/tools/git/test-ci-queue-wait-tristate.sh`
- Test: `packages/mosaic/framework/tools/git/test-ci-queue-wait-github-checks.sh`
**Step 1: Implement push queue-clear behavior**
For `no-status`, retain the existing `--require-status` failure. Otherwise, return success for push with an explicit diagnostic such as:
```text
[ci-queue-wait] queue-clear state=no-status purpose=push branch=<branch>; no queued or running CI.
```
For `terminal-failure`, return success only for push with the same queue-clear wording. Merge must continue returning asserted non-readiness.
**Step 2: Preserve malformed and unknown rejection**
Keep `malformed`, `unknown`, and unrecognized states non-zero for both purposes.
**Step 3: Run focused tests and verify GREEN**
Run:
```bash
bash packages/mosaic/framework/tools/git/test-ci-queue-wait-tristate.sh
bash packages/mosaic/framework/tools/git/test-ci-queue-wait-github-checks.sh
```
Expected: both scripts exit 0 and report their regression suites passed.
**Step 4: Commit implementation**
```bash
git add packages/mosaic/framework/tools/git/ci-queue-wait.sh
git commit -m "fix(ci): separate push queue clearance from merge readiness"
```
### Task 3: Verify, Review, and Document Evidence
**Files:**
- Modify: `docs/scratchpads/1146-ci-queue-purpose.md`
**Step 1: Run shell syntax and focused regressions**
```bash
bash -n packages/mosaic/framework/tools/git/ci-queue-wait.sh
bash -n packages/mosaic/framework/tools/git/test-ci-queue-wait-tristate.sh
bash packages/mosaic/framework/tools/git/test-ci-queue-wait-tristate.sh
bash packages/mosaic/framework/tools/git/test-ci-queue-wait-github-checks.sh
```
**Step 2: Run repository quality gates**
```bash
pnpm preflight
pnpm typecheck
pnpm lint
pnpm test
pnpm format:check
```
Expected: every command exits 0.
**Step 3: Obtain independent review**
Request review of the exact branch head. Remediate all blocking findings and rerun focused and baseline gates.
**Step 4: Record evidence and commit**
Update the scratchpad with test output, review result, and residual risk, then commit it:
```bash
git add docs/scratchpads/1146-ci-queue-purpose.md
git commit -m "docs(ci): record queue guard verification"
```
### Task 4: Keep the Merge Wrapper Aligned with the `next` Lane
**Files:**
- Modify: `packages/mosaic/framework/tools/git/pr-merge.sh:97-101`
- Test: `packages/mosaic/framework/tools/git/test-pr-merge-head-pin.sh`
**Step 1: Write the failing regression**
Run the exact-head merge regression with its Gitea fixture targeting `next` and confirm the current wrapper rejects it because it only permits `main`.
**Step 2: Allow only documented integration targets**
Permit `main` and `next`; reject every other target. Do not alter exact-head pinning, queue-guard invocation, provider selection, or merge method enforcement.
**Step 3: Run focused merge regressions**
```bash
bash packages/mosaic/framework/tools/git/test-pr-merge-head-pin.sh
bash packages/mosaic/framework/tools/git/test-pr-merge-queue-branch.sh
bash packages/mosaic/framework/tools/git/test-pr-merge-gitea-empty-uid.sh
```
Expected: all pass, including a Gitea merge fixture targeting `next`.
**Step 4: Commit**
```bash
git add packages/mosaic/framework/tools/git/pr-merge.sh packages/mosaic/framework/tools/git/test-pr-merge-head-pin.sh
git commit -m "fix(ci): allow reviewed merges into next"
```
### Task 5: Activate and Deliver Through `next`
**Files:**
- Installed output: `~/.config/mosaic/tools/git/ci-queue-wait.sh`
**Step 1: Activate through the canonical installer**
From the reviewed worktree, run the framework installer in sync-only keep mode so operator files remain protected:
```bash
MOSAIC_SYNC_ONLY=1 MOSAIC_INSTALL_MODE=keep MOSAIC_SKIP_SKILLS_SYNC=1 \
bash packages/mosaic/framework/install.sh
```
**Step 2: Verify installed/source parity**
```bash
cmp -s \
packages/mosaic/framework/tools/git/ci-queue-wait.sh \
~/.config/mosaic/tools/git/ci-queue-wait.sh
```
Expected: exit 0.
**Step 3: Run mandatory pre-push queue guard**
```bash
~/.config/mosaic/tools/git/ci-queue-wait.sh --purpose push -B fix/1146-ci-queue-purpose
```
Expected: branch-absent or queue-clear success.
**Step 4: Push and open a PR against `next`**
```bash
git push -u origin fix/1146-ci-queue-purpose
~/.config/mosaic/tools/git/pr-create.sh \
-t "fix(ci): make queue guard purpose-sensitive" \
-b "Closes #1146" \
-B next \
-H fix/1146-ci-queue-purpose \
-i 1146
```
**Step 5: Complete reviewed integration**
Wait for exact-head terminal-green CI, obtain the required review, merge via the Mosaic wrapper, verify merged CI, and close #1146. Do not bypass any gate.
@@ -0,0 +1,71 @@
# #1019 — Zero-timeout queue-guard harness race
- **Issue:** #1019 (parent status remains `believed-fixed, pending jarvis validation`; do not close)
- **Branch:** `fix/1019-ci-queue-timeout-harness`
- **Owner:** `be-coder-08`
- **Base:** `origin/main` at `5916aeefd6ed12bcac086c6834c7f6c4ae38e1bc`
- **Charter:** `/home/hermes/agent-work/tl-mosaic/CHARTER-1019-HARNESS-FIX.md`
## Objective
Make `test-ci-queue-wait-tristate.sh` deterministic without changing any asserted outcome. Remove the indiscriminate zero-timeout race, require every status-classification case to prove the provider was observed, and prove the harness-controlled virtual clock is active.
## Scope
- In scope: `packages/mosaic/framework/tools/git/test-ci-queue-wait-tristate.sh` only, plus this evidence scratchpad.
- Out of scope: guard parsers, D2/D3 behavior, installer/reseed staleness, PR #1060, and issue closure.
## Acceptance criteria
1. RED deterministically reproduces deadline pre-emption before the provider call.
2. Every case that intends status classification positively proves provider observation.
3. Pending observes `pending` before deterministic virtual-time expiration.
4. The virtual clock has a positive interception control; a broken-clock mutant makes the suite red.
5. The exact CI-base image passes the final harness repeatedly with zero failures.
6. Baseline gates, independent code/security review, exact-head CI, and coordinator-authorized squash merge pass.
## Plan
1. Add deterministic RED instrumentation for the known merge/provider-unreachable pre-emption.
2. Replace global `-t 0` with a nonzero timeout interpreted under an event-driven virtual clock; stub sleep without wall waiting.
3. Add provider-observation and virtual-clock positive controls without changing outcome assertions.
4. Run focused shell checks, repeat in exact CI-base image, baseline gates, and independent reviews.
5. Commit with both identity layers, queue-guard plus direct Woodpecker terminal-state verification, push, self-post PR, verify poster/head/CI, obtain coordinator merge authorization, then squash merge without closing #1019.
## Budget
- No explicit token cap supplied. Keep scope to one harness file and one scratchpad; stop/report at the charter's 60% context gate.
## Evidence
- RED, deterministic pre-provider expiry: `evidence/1019-harness-fix/red-pre-provider-expiry.log` — rc 1; merge/provider-unreachable got rc 124 instead of 75, omitted CANNOT_ASSERT, did not observe the status provider, and wrote no additional audit record (four named failures).
- GREEN host focused harness: `evidence/1019-harness-fix/green-host.log` — rc 0, all outcome classes passed.
- Load-bearing clock negative control: a temporary same-directory mutant replaced the virtual `date` body with `/bin/date`; `evidence/1019-harness-fix/red-clock-not-intercepted.log` — rc 1 with named `virtual clock interception did not run` failures. The mutant file was removed after the run.
- Exact CI-base repeat: `git.mosaicstack.dev/mosaicstack/stack/ci-base:latest`, repository mounted read-only, harness work under container `/tmp`; `evidence/1019-harness-fix/ci-image-repeat/summary.log`**100 pass / 0 fail / 100 total**.
- Synchronization design: provider-status observation creates the event marker; virtual time is 1000 before the event and 1002 afterward. Pending alone reaches the stubbed no-op sleep and a post-observation deadline check. `-t 1` is uniquely load-bearing because removing it restores the 900-second default deadline at virtual time 1900, which 1002 does not cross. The numeric timeout is subject semantics under virtual time, not a wall-clock synchronization duration.
## Review remediation — semantic timeout vs. liveness bound
Security review found that virtual time remained at 1000 forever before provider observation and stubbed sleep never waited. A regression looping before the status endpoint—or blocking in the first provider call—therefore could prevent `run_guard` from returning, so the post-return provider assertion could never fire.
**General rule:** A timeout usually serves two purposes: semantics and liveness. Removing wall time from semantic synchronization can silently remove the only independent hang bound. Preserve deterministic virtual time for subject semantics, but provide a separately implemented real-clock liveness watchdog and prove that watchdog fires.
Remediation:
- Every guard subject invocation is launched by absolute `/usr/bin/python3` in a new session. Python's internal monotonic `wait(timeout=...)` provides real-clock liveness independently of PATH; expiry kills the entire isolated process group, so neither PATH-front shims nor a blocked provider descendant can retain the capture pipe.
- Watchdog expiry returns distinct harness rc 90 plus `FAIL HANG watchdog`, separate from subject timeout rc 124.
- A first attempt using absolute `/usr/bin/timeout -s KILL` passed on GNU coreutils but failed in the exact Alpine CI-base image: BusyBox killed the immediate wrapper while the guard/provider descendants survived and retained the command-substitution pipe. The process-group kill is therefore required behavior, not portability polish.
- A committed positive control hangs the branch-provider stub before the status endpoint. It must terminate through the watchdog, emit the hang-specific diagnostic, return rc 90, and prove the status provider was never reached.
- RED before remediation: a temporary ordinary-success mutant hung before provider observation; only an external control could kill the suite (rc 137), and there was no internal hang-specific diagnostic (`red-watchdog-absent.log`).
- The watchdog mutant/control is load-bearing: removing the internal watchdog leaves the control unable to produce its required rc 90 and diagnostic.
Post-review evidence:
- Host focused harness with process-group watchdog: rc 0 (`green-watchdog-process-group-host.log`).
- Exact Alpine CI-base focused harness with process-group watchdog: rc 0 (`green-watchdog-ci-image.log`).
- Hanging ordinary-success mutant: suite rc 1; success returned rc 90, emitted `FAIL HANG watchdog`, and loudly reported that provider/clock observation did not occur (`red-watchdog-fires.log`).
- Removed-`-t 1` mutant: suite rc 1; pending was terminated by the watchdog instead of producing `ASSERTED_NOT_READY`, proving the explicit timeout is load-bearing (`red-timeout-argument-removed.log`).
## 60% context hold
Stopped before baseline/review/commit as required by the charter. Remaining: inspect final diff, shell/static/baseline gates, independent code/security review, remediation if any, identity-bound commit/trailer verification, mandatory queue guard plus direct terminal Woodpecker `mosaic` enumeration, push, self-posted PR/provider poster read-back, exact-head terminal-green CI, coordinator merge authorization, squash merge, main CI verification, and leave #1019 unclosed as `believed-fixed, pending jarvis validation`.
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# #1146 — CI Queue Guard Purpose Semantics
## Objective
Make the pre-push queue guard wait for queued/running CI without requiring the previous remote head to have successful CI. Preserve fail-closed merge readiness.
## Scope
- `packages/mosaic/framework/tools/git/ci-queue-wait.sh`
- focused queue-guard regression tests
- design and scratchpad documentation
- local framework activation required before the fixed guard can authorize this branch's push
## Plan
1. Freeze purpose-specific behavior in failing process-level tests.
2. Implement the smallest state-dispatch change.
3. Run focused shell tests and repository quality gates.
4. Obtain independent review and remediate findings.
5. Install the reviewed framework source locally, run the mandatory pre-push queue guard, and push.
6. Open a PR against `next`, verify terminal-green CI, and close #1146 after merge.
## Budget
- ASSUMPTION: no explicit token cap was provided.
- Working estimate: 12K tokens.
- Scope reduction: change only final-state dispatch and focused tests; do not redesign provider adapters.
## Progress
- Confirmed source and installed guards are byte-identical.
- Reproduced `terminal-failure` blocking `--purpose push`.
- Root cause: final-state dispatch requires terminal success for both push and merge.
- Design approved: push is queue-clear on valid non-pending states; merge remains fail-closed.
## Tests
- RED confirmed before implementation: the focused tri-state harness reported push `terminal-failure` and `no-status` as `ASSERTED_NOT_READY`.
- GREEN: `bash packages/mosaic/framework/tools/git/test-ci-queue-wait-tristate.sh` — all outcome classes passed.
- GREEN: `bash packages/mosaic/framework/tools/git/test-ci-queue-wait-github-checks.sh` — 6/6 purpose-aware cases passed.
- GREEN: `bash -n` passed for the changed guard and both focused harnesses.
- GREEN: `pnpm preflight`, `pnpm typecheck`, and `pnpm lint` passed.
- `pnpm test` ran 45/46 workspace test tasks successfully, but the pre-existing Gateway `cross-user-isolation.test.ts` failed during cleanup with PostgreSQL error `28P01` (local `mosaic` password authentication failure). The changed Mosaic framework test task passed within that run.
- GREEN: focused queue and merge shell regressions passed after the wrapper change.
- GREEN: isolated Mosaic Vitest run passed (81 files, 1,514 tests).
- The normal parallel Mosaic Vitest run has an environment-sensitive pre-existing failure in `install-ordering-guard.spec.ts`: the real activation probe changes between two calls while other suites run concurrently. Running the same spec alone and the complete Vitest suite with one fork passes.
- The framework shell suite's pre-existing `version_coupling_unittest.py` also fails locally because the newly installed `mosaic` is now on PATH despite the test injecting a nonexistent PATH; CI's clean image does not have this global CLI. All changed queue/merge harnesses pass.
- GREEN: `pnpm format:check` passed.
- Note: an additional ad hoc Prettier command was not applicable to shell files because Prettier has no shell parser; the repository-wide format check passed using its configured file globs.
## Review
- Independent Codex review of the six-file diff: approved, confidence 0.84, zero blockers/should-fix/suggestions.
- Review confirmed push queue-clear behavior, merge fail-closed behavior, and `--require-status` coverage.
## Risks and Blockers
- Canonical framework activation completed with `MOSAIC_SYNC_ONLY=1 MOSAIC_INSTALL_MODE=keep MOSAIC_SKIP_SKILLS_SYNC=1 bash packages/mosaic/framework/install.sh`.
- Source and installed queue guards are byte-identical (`cmp` and SHA-256 parity passed).
- The installed pre-push guard now passes for the not-yet-remote feature branch with `queue clear`.
- The required merge wrapper then exposed a second bootstrap defect: `pr-merge.sh` hardcoded `main`, contradicting the documented PR-based `next` integration lane. Tracked as #1149 and fixed in the same delivery branch with a regression fixture targeting `next`.
- Activation emitted the existing manifest-safety warning that six `fleet/run/*.hb*` operator files were touched then restored; no data loss was observed, but this remains a pre-existing framework-manifest defect to report separately.
- The first activation attempt timed out after 600 seconds while copying the 113K-file operator snapshot; the bounded 1,800-second retry completed successfully. It left a partial durable snapshot from the interrupted attempt in the normal backup directory; the completed snapshot is the newer `pre-update-20260810T195317Z` entry.
- Full baseline test completion is blocked by the unrelated local PostgreSQL authentication/cleanup failure described above; CI has its own disposable PostgreSQL service.
- Existing `.mosaic/orchestrator/*` working-tree changes are unrelated and must remain unstaged.
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# W-B — Measure Pi's real tool registry
- **Task / internal ref:** W-B from the lease-remediation orchestrator brief (no matching `docs/TASKS.md` row; workers do not modify that file)
- **Objective:** identify the exact tool names emitted as `event.toolName` by the installed Pi runtime and compare them with the broker's Pi read-only carve-out.
- **Scope:** measurement and report only; no broker or runtime source changes. W-C is out of scope.
- **Budget:** no explicit token cap; constrained to this scratchpad and one local commit.
- **Installed runtime:** `@earendil-works/pi-coding-agent` / `pi` `0.84.1`.
## Method
I created a throwaway extension at `/tmp/measure-pi-tool-registry.ts` (not in the worktree). On `session_start` it recorded `pi.getAllTools()` and `pi.getActiveTools()`; on every `tool_call` it appended the exact `event.toolName`. I then launched an isolated, ephemeral Pi session with all built-ins explicitly selected:
```text
PI_OFFLINE=1 pi --mode print --no-session --no-approve \
--no-context-files --no-skills --no-prompt-templates --no-extensions \
-e /tmp/measure-pi-tool-registry.ts \
--tools read,bash,edit,write,grep,find,ls <deterministic probe prompt>
```
The prompt exercised file read, content search, file search, directory listing, shell execution, file write, and file edit. Pi exited `0`; every selected tool produced one `tool_call`. The write/edit control artifact ended with exact content `after`, proving the mutating calls executed in order.
This runtime observation was cross-checked against the installed distribution's canonical registry at `dist/core/tools/index.js:17`, which declares the same seven names. The gate consumes the measured field directly at `packages/mosaic/framework/runtime/pi/mosaic-extension.ts:368`.
## Exact distinct built-in set
The installed Pi built-in registry is exactly:
```text
{bash, edit, find, grep, ls, read, write}
```
| Tool | Runtime registry observation | `tool_call` observation | Installed definition |
| --- | --- | --- | --- |
| `read` | `<builtin:read>` | observed once | `dist/core/tools/read.js:138` |
| `bash` | `<builtin:bash>` | observed once | `dist/core/tools/bash.js:231` |
| `edit` | `<builtin:edit>` | observed once | `dist/core/tools/edit.js:170` |
| `write` | `<builtin:write>` | observed once | `dist/core/tools/write.js:138` |
| `grep` | `<builtin:grep>` | observed once | `dist/core/tools/grep.js:79` |
| `find` | `<builtin:find>` | observed once | `dist/core/tools/find.js:79` |
| `ls` | `<builtin:ls>` | observed once | `dist/core/tools/ls.js:61` |
The raw distinct `event.toolName` result was:
```json
["bash", "edit", "find", "grep", "ls", "read", "write"]
```
Pi registers all seven, but its default active set is only `read`, `bash`, `edit`, and `write` (`dist/core/sdk.js:132`). The probe explicitly activated all seven so the three search/list tools could be observed at the hook.
## Positive control
The known `read` tool was the control. The method surfaced it twice:
1. `pi.getAllTools()` returned `read` with source path `<builtin:read>`.
2. Reading `/tmp/pi-registry-probe/seed.txt`, which contained `CONTROL_TOKEN`, produced one hook record with `event.toolName === "read"`.
The control was therefore positive; the seven-name result is measured, not an empty-probe inference.
## Carve-out comparison and collision result
The broker currently declares `{"read", "grep", "find", "ls"}` at `packages/mosaic/framework/tools/lease-broker/daemon.py:54`.
- `read`: real built-in.
- `grep`: real built-in.
- `find`: real built-in.
- `ls`: real built-in.
All four carve-out names are exact, case-sensitive Pi tool names.
The general execution/writing tool names are `bash`, `edit`, and `write`. Their intersection with the carve-out is empty:
```text
{bash, edit, write} ∩ {read, grep, find, ls} = ∅
```
Therefore no general shell-exec or file-mutating Pi tool shares a name with a carve-out entry. `grep` and `find` may invoke constrained search helpers internally, but neither exposes an arbitrary command interface; the arbitrary command tool is distinctly named `bash`.
The Mosaic extension separately registers the non-built-in custom tool `mosaic_context_recover` at `packages/mosaic/framework/runtime/pi/mosaic-extension.ts:379`; the broker handles that identity through its dedicated recovery exemption rather than the read-only set (`daemon.py:722`). Unknown or third-party custom tools are not part of Pi's built-in seven-name registry and remain outside the carve-out.
## Verification evidence
- `pi --version``0.84.1`.
- Isolated probe exit → `0`.
- Runtime `getAllTools()` count → `7`, all with `sourceInfo.source === "builtin"`.
- Distinct hook names → `bash`, `edit`, `find`, `grep`, `ls`, `read`, `write`.
- Hook counts → exactly one call for each of the seven names.
- Mutation artifact after `write` then `edit` → exact content `after`.
- Installed registry source → `allToolNames = new Set(["read", "bash", "edit", "write", "grep", "find", "ls"])`.
## Risks / limitations
- The probe deliberately disabled all other extensions, so extension-defined third-party tools were excluded from the built-in registry measurement. The production gate still receives those names and treats names outside the broker carve-out as mutating/fail-closed.
- Explicit `--tools` activation was required to exercise `grep`, `find`, and `ls`; this does not imply they are active in Pi's default four-tool configuration.
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# PR merge squash message field
- **Charter:** `/home/hermes/agent-work/CHARTER-PRMERGE-MESSAGE-FIELD.md`
- **Owner:** `be-coder-08`
- **Branch:** `fix/pr-merge-message-field`
- **Base:** remote `main` / local `origin/main` at `85d2108e4ed15c744ad3b87a5b629e7b2d39405a`
- **Estate:** HOMELAB tooling shared by HOMELAB and USC
## Objective
Add an optional, identity-checked Gitea squash message to `pr-merge.sh` so genuine multi-author PRs retain non-poster branch authors without weakening hardcoded squash behavior.
## Binding requirements
1. `Do` remains hardcoded to `squash`; no provider/repository default may select merge style.
2. A verified trailer uses a PR commit's linked `author.login` and that same commit's author email. No `/users/{login}` primary-email lookup occurs. Recorded rationale: this asks only what the provider can answer.
3. A commit with `author.login` null blocks before merge, prints both the null provider fact and commit email fact, and names the escalation principal.
4. The BLOCK arm must be observed firing; a normal canonical single-author API payload remains explicit squash plus its reviewed `head_commit_id`.
5. Every provider mutation is read back from the provider; no real PR is merged during tests.
## Derived interface decisions
- Add `--co-author-trailers` rather than accepting arbitrary message text. The wrapper enumerates PR commits and constructs trailers, making an unchecked `Co-authored-by` line unexpressible.
- Require `--escalate-to PRINCIPAL` with `--co-author-trailers`, so the BLOCK diagnostic always names a principal rather than a generic role.
- Do not expose `MergeTitleField` separately. When trailers exist, set it from the provider PR title and set `MergeMessageField` only to construction-generated trailers. This preserves one provider source for the title and avoids an unrelated caller-controlled degree of freedom.
- Preserve first-commit order and emit one trailer per distinct non-poster `author.login`, using that first linked commit's own email.
## Canonical delivery plan
1. Port the capability into the installed source of truth, `packages/mosaic/framework/tools/git/pr-merge.sh`; do not retain `infra/fleet/tools/git` as a second copy.
2. Preserve canonical `--expect-head`, exact head branch/repository/SHA queue inspection, Gitea atomic head pinning, GitHub `--match-head-commit`, and delete-after-merge semantics.
3. Do not port the deployed-only `--skip-queue-guard` bypass. Add the focused harness to the canonical framework-shell suite and re-establish RED/GREEN on the packaged baseline.
4. Deliver through a reviewed package release followed by `mosaic update` with its default framework reseed. The installer snapshots, manifest-syncs framework-owned `tools/**`, and rolls back on failure.
5. Before either estate relies on the change, require installed/package hash equality, `MergeMessageField` presence, and a green focused harness. Release/reseed ownership is currently unassigned and blocks activation after source merge.
## Evidence
- RED against the byte-identical deployed baseline (`sha256 08a65e8584c5…`): rc 1 with eight named failures. The wrapper rejected `--co-author-trailers`; the null-login path emitted none of the required BLOCK facts/principal; and both verified/ordinary API paths failed the stdin-config credential assertion (ordinary path exposed the fixture token through curl argv). Log: `/home/hermes/agent-work/be-coder-08/evidence/prmerge-message-field-red.log`.
- GREEN on the deployed-baseline candidate: verified linked multi-author payload, null-login BLOCK, required named principal, explicit squash, stdin-config token transport, and absence of `/users` lookup all passed. Log: `/home/hermes/agent-work/be-coder-08/evidence/prmerge-message-field-green.log`.
- RED against canonical packaged baseline `c581ef48…`: rc 1 with 32 assertions. It rejects the new option, and the first harness version did not satisfy canonical head branch/repository/SHA metadata. Log: `/home/hermes/agent-work/be-coder-08/evidence/prmerge-packaged-baseline-red.log`. The port adapts the fixture rather than weakening canonical head controls.
- Provider capability probe against `git.mosaicstack.dev`: authenticated `be-coder-08` POST to deliberately nonexistent PR `2147483647` with both message fields returned JSON HTTP 404; the unauthenticated same request returned JSON HTTP 401 (not the charter's predicted 403). The authenticated-vs-unauthenticated differential proves write authorization resolved while no mergeable subject existed. `tl-mosaic` ruled the literal non-load-bearing: preserve the observed 404/401 pair and do not manufacture a 403 case. No cause was inferred and no real PR was targeted.
- Provider-generated trailer behavior is not treated as exclusive or absent. The wrapper's VERIFIED/BLOCK decision binds each requested non-poster trailer to commit `author.login` plus that commit's email; it does not assume `MergeMessageField` is the squash's only trailer source. The poster is omitted from the constructed list because the resulting squash author already records the poster; any additional provider-generated trailer is outside this change's unmeasured mechanism.
- An early candidate SHA-256 `5de32876990e4f26920448cb3220cc7f1146d558b4dd2bc1ee1a2abee2f2cbe6` passed the initial harness, then author-side review found credential-fallback and argv-exposure defects. The live deployed wrapper was atomically restored to baseline SHA-256 `08a65e8584c52c6d41ea1c686f8b95585c21e4b37320a2447eba09359a0e02c1`; the remediated candidate remains only in the worktree.
## Remediation and current review state
1. Token and Basic Auth now use stdin curl configuration, not argv. PR title, contributor email, and the JSON payload also remain out of child argv.
2. Each credential attempt binds commit inspection and merge. A token failure during either inspection or mutation causes Basic fallback to repeat inspection before mutation; the payload pins the inspected `head_commit_id`.
3. Focused tests cover token-resolution fail-closed behavior, both HTTP-401 fallback seams, metadata/credential argv absence, null-login BLOCK, explicit squash, canonical reviewed-head binding, unchanged ordinary payload, and retained log-safe provider diagnostics. Token-resolution RED: `/home/hermes/agent-work/be-coder-08/evidence/prmerge-token-resolution-red.log`.
4. Codex review rounds 35 requested retained provider error text, log-safe provider diagnostics, fail-closed credential fallback, stable value-option parsing, and PR-title trailer-injection prevention. These are remediated with regression assertions. A post-remediation independent review is still required.
5. **Accepted linkage limitation:** `author.login` resolution proves that the commit address maps to a registered provider account. It does not prove that the named principal authored the commit because Git author metadata is self-asserted. This gate checks attribution linkage, not authorship; commit signing is out of scope and currently unadopted. Coordinators explicitly ruled that this does not add a third state.
6. Codex's sandbox could not execute the harness because its checkout was read-only; that environmental limitation is recorded separately from host-side test results.
## Disposable provider fixture acceptance
- Use a retained scratch repository only, with two branch authors and `author != committer` on at least one commit.
- Arm A supplies a message-field trailer for one non-poster; record whether that value lands without forcing the partial-pair result into under-specified `APPENDS`/`REPLACES` labels. Demonstrate an absence control.
- Arm B includes a registered trailer for a different non-poster on a branch commit; record whether it survives or drops. Verify identity through an existing commit whose `author.login` resolves and demonstrate an absence control.
- Parse landed trailers key-agnostically with `^[A-Za-z-]+-[Bb]y:` and record generated poster pair presence/absence plus resulting poster attribution.
- Record `/users/<login>` status and raw email only as non-gating estate telemetry. Never read `active`, `visibility`, or any profile field as an identity gate.
- Use distinct principals: poster `be-coder-08`, merger `Mos`, Arm A `be-coder-07`, and Arm B `be-coder-06`. Capture every trailer-shaped line verbatim and in order. Zero trailer lines means the generator did not fire and the run is `VOID`, not evidence that either arm dropped.
- Report the same read-back evidence to `mos-claude` on socket `default` and `tl-mosaic` on socket `mosaic-fleet`. Report values rather than mechanism inferences and stop on any poster-attribution regression.
## Fixture preflight
- Retained public repository: `mosaicstack/prmerge-trailer-fixture`; PR `#1`, posted by `be-coder-08` and reserved for merge by `Mos`.
- Existing `mosaicstack/stack` commits resolve `be-coder-07` and `be-coder-06` through `author.login`; exact addresses are `[email protected]` and `[email protected]`.
- Non-gating HOMELAB telemetry for authenticated reader `be-coder-08`: `/api/v1/users/be-coder-06` returned HTTP 200 with raw `email` value `[email protected]`.
- Provider preflight showed PR commit enumeration is newest-first. A new RED test proved that deriving `head_commit_id` from the final array element selected the wrong commit. The candidate now reads `.head.sha` from the authenticated PR endpoint before enumeration, verifies it appears in the commit set, and atomically pins that SHA in the explicit squash payload. RED: `/home/hermes/agent-work/be-coder-08/evidence/prmerge-head-order-red.log`.
- Fixture PR head `f6ba6e5105031fa21f5ff7bd8e4379d99c16e1de` has `author.login=be-coder-07`, `committer.login=be-coder-08`, and branch-message trailer `Co-authored-by: be-coder-06 <[email protected]>`.
## Fixture result
- `Mos` merged retained fixture PR `#1` through staged candidate SHA-256 `60e779a85fd13b729d859ea7c986d1e9b1641b97991611329226c1b3113ffb6e`; resulting squash commit: `3f550715d9bc716426fd355a65fe997b3a90fa7d` with one parent.
- Provider read-back: poster/commit author `be-coder-08`, committer/merger `Mos`. The run is non-void.
- Trailer-shaped lines, verbatim and in order:
1. `Co-authored-by: be-coder-07 <[email protected]>`
2. `Co-authored-by: be-coder-08 <[email protected]>`
- Arm A supplied field value (`be-coder-07`) landed. Arm B branch trailer (`be-coder-06`) dropped. Both fabricated absence controls remained absent. No `Co-committed-by:` line landed.
- The candidate payload construction explicitly excludes the poster and supplied only the Arm A `be-coder-07` line. Therefore the landed poster line was provider-generated, not candidate-composed. The raw result supports `FIELD LANDS`, `BRANCH DROPS`, and `POSTER GENERATED`; it does not support a claim that candidate code supplied the poster. Evidence: `/home/hermes/agent-work/be-coder-08/evidence/prmerge-fixture-readback.log` and the retained provider object.
- Retained fixture PR `#2` measured the N=2 shape needed by `#1030`: supplied `be-coder-07` then `be-coder-06`; both landed in that order, followed by the provider-generated poster line. No truncation or dedup occurred at N=2. Resulting squash: `39db9d13aed0…`.
## Current hold point
PR `mosaicstack/stack#1066` is open. Its first frozen head `f4b162fa…` was terminal-green in Woodpecker `mosaic` pipeline `#2225`, but that evidence becomes stale when the canonical port moves the head. The deployed wrapper remains baseline `08a65e85…`; no manual copy will occur. Canonical port tests, commit amendment, rebase, one guarded force-with-lease, exact-head CI, and new independent review remain. Even after source merge, activation remains blocked on an assigned package-release/reseed owner and installed-byte read-back.
## Security review 96 remediation
Exact reviewed predecessor head: `1ceb11058f64dd7f4a817ceb2124f980a1c4dd23`.
RED-first focused harness produced 10 named failures: all curl calls lacked size/time/connect bounds; raw ESC email reached mutation; oversized and stalled curl failures were discarded and reached mutation; nonempty Basic output with resolver rc 91 authorized mutation.
Security remediation:
- Removed the cross-principal HTTP-401 Basic fallback. Both inspection-401 and merge-401 paths now refuse without Basic resolution or mutation; `get_gitea_basic_auth` references in the merge subject are 0.
- Applied `--max-filesize`, `--max-time`, and `--connect-timeout` to all 3/3 provider curl sites and fail closed on curl transport rc at all 3/3 sites.
- Required linked email bytes to be ASCII and printable before constructing `MergeMessageField`; guarded construction sites 1/1.
GREEN: message-field, exact-head, empty-UID/API, queue branch/repository/SHA, bash syntax, ShellCheck, and diff check pass. R7 total-removal mutants went RED: email guard 3 rows; bound switches 1 row; transport-rc guards 4 rows; HTTP-401 refusal 3 rows. R7 bound: mutants prove total removal only; explicit denominators above prove site coverage.
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# P3-R1 — Routing Health Enum + `/mcp` Wiring Scratchpad
**Task:** P3 hands-on acceptance blockers #1 and #5
**Mission:** `mvp-20260312` (active)
**Branch:** `feat/webui-p3r1-routing-mcp` from `origin/next`
**Required base:** `20718b5a273d243363a4f5cbef5bbf692a805bdb`
**Tracking ref:** Direct P3-R1 author brief; no provider issue supplied; no PR or merge authorized
**Started:** 2026-08-11T14:52:52-05:00
## Objective
Fix exactly two P3 acceptance blockers:
1. Make routing consume the canonical `ProviderHealthStatus` enum, with `healthy` and `degraded` routable and `down` non-routable, at both routing decision sites.
2. Wire `McpClientModule` into `CommandsModule`, make `McpClientService` required, remove the unreachable unavailable-service branch, and prove `/mcp status` reaches the client.
Explicitly excluded: provider registry/adapters, `provider.service.ts`, `agent.service.ts`, `chat.gateway.ts`, fallback membership, task classification, selector UI, conversation resume, reload UX, WS/origin/handshake behavior, dependencies/lockfile, and `apps/web/**` changes.
## Plan
1. Confirm exact base/branch and inspect every cited source/test anchor plus all direct `CommandExecutorService` construction sites.
2. Record baseline gateway and focused routing/commands/MCP test totals.
3. Add regression tests first and run focused tests to capture expected RED failures.
4. Apply only the typed routing helper/signature changes and required MCP module/constructor/guard changes; update impossible `up` fixtures.
5. Run focused tests, all user-required verification gates, lockfile/scope/diff checks, and record counts.
6. Obtain independent spec and code/security review; remediate any findings and repeat affected gates.
7. Commit conventionally, run the pre-push queue guard, and push only the feature branch (no PR or merge).
## Budget
No explicit token cap supplied. Working soft cap: **30K tokens**, based on two bounded gateway bug fixes, focused TDD, full gateway/root verification, independent review, and branch delivery. One coding worker will execute serially; reviews will be independent and serial to avoid worktree collisions.
## Startup Evidence
- `git fetch origin` rc=0.
- `origin/next` confirmed exactly `20718b5a273d243363a4f5cbef5bbf692a805bdb`.
- Local and remote `feat/webui-p3r1-routing-mcp` were absent before creation.
- Branch creation rc=0; HEAD equals the required base.
- Harness-owned `.mosaic/orchestrator/session.lock` was already dirty and remains excluded from staging/commit.
## Baseline Evidence
- Gateway full suite: rc=0; **64 files / 693 tests passed**, 7 files / 17 tests skipped (71 files / 710 tests total).
- Routing sub-suite (`src/agent/routing`): rc=0; **3 files / 105 tests passed**.
- Commands/MCP sub-suite (`src/commands`, `src/mcp-client`): rc=0; **6 files / 76 tests passed**.
## TDD and Implementation Evidence
- Routing RED: after canonical fixture/test changes but before the service fix, focused routing run returned rc=1 with **15 failed / 91 passed (106)** because the old `up`/`ok` gates rejected `healthy` and `degraded`.
- Routing GREEN: canonical `ProviderHealthStatus` map types, one `isRoutable` helper, and both comparison sites corrected; focused routing suite passed.
- MCP behavior test now drives `/mcp status` through a required mock client and asserts the client is called, success is returned for zero servers, and the former unavailable message is absent.
- MCP wiring mutation RED used the final `Reflect.getMetadata('imports', CommandsModule)` assertion with only the production `McpClientModule` import/registration temporarily removed: rc=1, exact failure `expected [GCModule, …] to include McpClientModule`.
- MCP wiring GREEN after byte-for-byte production restoration: rc=0. Temporary mutation did not remain.
- Every direct `new CommandExecutorService(...)` test construction now supplies a non-null MCP client mock.
- Initial Codex worker launch failed rc=1 from missing OpenAI bearer authentication. First Mosaic Claude launch failed rc=1 because Distrobox-local runtime contracts were absent; retry with the supported host `MOSAIC_HOME=/home/jwoltje/.config/mosaic` succeeded.
## Review Evidence
- Independent spec review: **approve**, 0 blockers, scope OK.
- Independent code/security review: **approve**, 0 blockers, 0 critical/high security findings. It suggested an actual module-wiring assertion, which was added with valid mutation RED/GREEN evidence.
- Independent final re-review after remediation: **approve**, 0 blockers, 0 critical/high security findings, no remaining findings.
- Optional missing-provider/`undefined` test suggestion was not adopted: the brief explicitly requires the three canonical statuses (`healthy`, `degraded`, `down`) and forbids scope expansion; runtime behavior for absent keys remains `undefined` → non-routable through the required helper signature.
## Documentation Assessment
- `docs/PRD.md` already requires provider fallback/routing and MCP capability; this increment restores implementation to those existing contracts.
- No public API endpoint, payload schema, auth/permission rule, navigation, deployment procedure, or new user workflow changes. OpenAPI, endpoint index, user/admin/developer guides, and sitemap are therefore N/A for this bounded repair.
- This append-only scratchpad is the implementation, TDD, review, and verification record. Canonical docs remain in-repo; no publishing action is in scope.
## Final Verification Evidence
All required and repository-situational gates completed with rc=0:
| Gate | Result |
| --- | --- |
| `pnpm install --frozen-lockfile` | rc=0 |
| Gateway typecheck | rc=0 |
| Gateway lint | rc=0 |
| Routing focused suite | rc=0; 3 files / 106 tests |
| Commands/MCP focused suite | rc=0; 6 files / 78 tests |
| Gateway full suite | rc=0; 64 files / 696 tests passed; 7 files / 17 tests skipped |
| Gateway build | rc=0 |
| Root typecheck | rc=0; 45/45 tasks |
| Web test | rc=0; 19 files / 154 tests |
| Root lint | rc=0; 25/25 tasks |
| Root format check | rc=0 |
| `git diff --check` | rc=0 |
- Gateway suite before→after: **693→696 passing tests**; skipped remained 17 (total 710→713).
- Routing focused before→after: **105→106 passing tests**.
- Commands/MCP focused before→after: **76→78 passing tests**.
- `pnpm-lock.yaml` SHA-256 before/after frozen install: `9acaa89d213b3281e757b6edf6fdb8727176570d725b78a0de234c61a7f3c332`; diff versus `origin/next` rc=0.
- Verified no changed path under `apps/web/**`, provider service/adapters, `agent.service.ts`, `chat.gateway.ts`, or lockfile.
- Verified both `McpClientModule` production wiring lines remain and no impossible `up`/`ok` routing status checks/fixtures remain.
- Verified code/test diff SHA-256: `27b41a855084b9dd85a7bc2a79fa3251d114ee226a4f1b835e65134c25a4f5a8`.
## Delivery State
Implementation, testing, documentation assessment, and independent review are complete. Remaining authorized actions: format this final scratchpad append, create one conventional commit, run the required push queue guard, and push only `feat/webui-p3r1-routing-mcp`; no PR or merge.
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# WebUI Phase P — P4-1 Projects + Tasks SPA Scratchpad
**Task ID:** P4-1
**Tracking ref:** Phase P RFC §6.4 / §2.4 author brief; no provider issue supplied
**Mission context:** `mvp-20260312` (active)
**Branch:** `feat/webui-p4-1` from `origin/next`
**Started:** 2026-08-11
**Role:** orchestrator-controlled author worker; `docs/TASKS.md` remains orchestrator-only and is not part of this increment
## Original tasking
Implement the bounded P4-1 SPA parity slice exactly as briefed: real authenticated `/projects`, `/projects/:id`, and `/tasks` React Router pages ported from the existing Next baseline; reuse existing project/task components; preserve relative same-origin REST access; support only the existing project/task PATCH edit flows; add route error boundaries and page tests; pin Vite strict port 3100 and legacy Next dev/start to 3101; make no gateway, package, dependency, nav-shell, chat, settings, or admin changes; verify, commit, and push only `feat/webui-p4-1` (no PR or merge). If any required REST endpoint is absent, stop as `BLOCKED:` rather than inventing a workaround.
## Objective and acceptance map
- A: `/projects` list with loading, cards, empty, and surfaced API-error states; defer MissionStatus side panel.
- B: `/projects/:id` detail with overview/tasks/missions tabs, parallel project/mission/task load, bounded project and task PATCH edits.
- C: `/tasks` list/kanban with bounded task PATCH edits.
- D: replace the three route placeholders and add route error boundaries without changing chat.
- E: use only `@/lib/types` and `@/lib/api`; relative `/api/...` REST paths only.
- F: Vite `strictPort: true`; Next dev/start pinned to 3101; no proxy/dependency changes.
- G: fixture-backed Vitest coverage for lists, states, tabs/toggles, PATCH calls, and real route elements; all named verification gates pass.
## Plan
1. Verify the required gateway REST routes and inspect the exact `origin/next` SPA, Next baseline pages, shared components, types, API helper, and P3 test conventions.
2. Record the pre-change web test count and add required page/route tests first, observing expected RED failures.
3. Port the three pages and shared route error boundary, then wire routes and bounded PATCH flows.
4. Apply only the two dev-port pin changes.
5. Run focused tests, all user-required gates, lockfile and same-origin checks, and `git diff --check`.
6. Obtain independent spec/code/security review; remediate and repeat affected gates until clear.
7. Commit conventionally, run the required pre-push queue guard, push only the feature branch, and record exact evidence here.
## Testing strategy
TDD is applied because this adds user-visible data/edit behavior. Component tests mock only the existing API boundary and exercise rendered behavior and PATCH payloads. Primary situational evidence is the required page interaction suite plus route-resolution checks; baseline evidence is typecheck, lint, full web test, build, frozen install, formatting/diff hygiene, and same-origin grep.
## Budget
No explicit token cap was supplied. Working soft cap: **50K tokens**, derived from three coupled React pages, route/error wiring, interaction tests, port config, review/remediation, and full verification. One Codex implementation worker and independent review workers will be used serially to avoid worktree collisions.
## Base evidence
- `git fetch origin` rc=0.
- `origin/next` and branch start: `e00cc475a2b1e9866bd4e2f8df80aff640c3a543`.
- Branch created: `feat/webui-p4-1` tracking `origin/next`.
- Harness-owned `.mosaic/orchestrator/session.lock` is dirty and must remain unstaged/uncommitted.
## Progress / evidence
- [x] Loaded active mission manifest, latest scratchpad, top-level tasks, PRD, orchestration/delivery/frontend/QA/documentation/review/TypeScript guides, and matching implementation skills.
- [x] Confirmed exact base SHA and created the feature branch.
- [x] Required REST endpoints verified in Gateway source: project list/detail/PATCH, task list/filter/detail/PATCH, and mission list all exist.
- [x] Scope assumption check found a blocking contradiction before source implementation.
- [ ] Pre-change web test count recorded.
- [ ] RED tests observed.
- [ ] Implementation complete.
- [ ] Independent review clear.
- [x] Required verification gates run against the unchanged web baseline; exact leak-grep expectation is independently blocked by 12 pre-existing matches.
- [x] Blocker record committed as `5ede86a5` and feature branch pushed; no PR opened and no merge performed.
## Blocker — 2026-08-11
`P4-1` is blocked because the bounded edit UX asserted by the brief does not exist at the confirmed `origin/next` base (`e00cc475`):
- `apps/web/src/components/tasks/task-detail-modal.tsx` is read-only. Its props are only `task` and `onClose`; it contains no input/select/textarea, update callback, or `api()`/PATCH call.
- `apps/web/src/app/(dashboard)/projects/[id]/page.tsx` contains no project edit controls and no project/task PATCH call.
- `apps/web/src/app/(dashboard)/tasks/page.tsx` does not open `TaskDetailModal`; its click handler only logs that a future detail view will be added.
- A repository grep over those reference/component paths finds zero `method: 'PATCH'` calls and zero edit/save form controls.
- The required leak grep also disproves the brief's baseline claim that `apps/web/src` is clean: the exact command returns rc=0 with 12 pre-existing matches at `origin/next` (external font links, an avatar placeholder, an SVG namespace, and test fixtures). There are zero new matches in the worktree, but making the exact grep empty would require unrelated changes the brief forbids.
The brief simultaneously requires tests proving task/project PATCH edits and forbids inventing edit UX, fields, or flows beyond what those references expose. Adding controls or callback contracts would therefore be new design outside the authorized port/wiring scope. Per the explicit stop rule, no SPA source, route, config, package, lockfile, or test implementation was started.
## Verification evidence on unchanged web baseline
These gates were still run to distinguish the brief contradiction from a broken base:
- `pnpm --filter @mosaicstack/web typecheck` — rc=0.
- `pnpm --filter @mosaicstack/web lint` — rc=0.
- `pnpm --filter @mosaicstack/web test` — rc=0; 15 files, 133 tests passed. Before→after remains 133→133 because implementation was halted.
- `pnpm --filter @mosaicstack/web build` — rc=0; Next production build completed, 10/10 static pages generated.
- `pnpm install --frozen-lockfile` — rc=0; lock SHA-256 remained `9acaa89d213b3281e757b6edf6fdb8727176570d725b78a0de234c61a7f3c332`; `git diff` for the lockfile rc=0.
- `git grep -nE "http://|https://" -- apps/web/src` — rc=0 with 12 pre-existing matches; `origin/next` count=12, current HEAD count=12, new worktree additions=0.
- `pnpm format:check` — rc=0.
- `git diff --check` — rc=0.
## Delivery evidence
- Initial queue-guard invocation through shell `~` failed rc=127 because this Distrobox resolves `HOME` to `/home/jwoltje/distrobox-homes/mosaic-dev`, where the injected fleet status already reports the tools installation missing.
- Correct supported host-tool invocation `/home/jwoltje/.config/mosaic/tools/git/ci-queue-wait.sh --purpose push -B feat/webui-p4-1` — rc=0; branch absent remotely and queue clear.
- `git push -u origin feat/webui-p4-1` — rc=0. The push hook additionally ran repository preflight, typecheck (45/45 tasks), lint (25/25 tasks), and format check successfully.
- No PR was opened and no merge was attempted, per the brief.
## Risks / blockers
- The active harness mutates `.mosaic/orchestrator/session.lock`; it is excluded from staging.
- The Phase P §6.4 prose is absent from this checkout, so the brief-named route spec and existing Next pages are the bounded implementation anchors.
- The MissionStatus `/api/coord/status` panel is explicitly deferred to a follow-up and must not enter P4-1.
## REV 2 continuation — 2026-08-10T21:59:17-05:00
REV 2 supersedes the original tasking above. The independent check confirmed that the Next reference pages and `task-detail-modal.tsx` are read-only, so project/task editing is deliberately deferred to P4-1b. Do not re-litigate or implement the former PATCH requirements.
### Revised objective and acceptance map
- A: `/projects` read-only SPA list with loading, cards, empty, and surfaced API-error states; card navigation to `/projects/:id`; no MissionStatus panel.
- B: `/projects/:id` read-only SPA detail using `useParams`, `useNavigate`, and the specified three-request `Promise.all`; preserve reference overview/tasks/missions tabs and read-only task modal.
- C: `/tasks` read-only SPA list/kanban view with the existing read-only task modal.
- D: replace only the three route placeholders and add page-local route error boundaries without modifying chat.
- E: use only `@/lib/types` and `@/lib/api` with relative `/api/...` REST paths.
- F: add Vite `strictPort: true` and pin legacy Next dev/start to 3101 without dependency or proxy changes.
- G: add fixture-backed page tests and route-resolution assertions; run every user-specified verification gate and the narrowed new-code origin check.
### Revised plan
1. Reset `feat/webui-p4-1` to the exact `origin/next` base and independently verify the read-only reference/component/API assumptions.
2. Record the pre-change web suite count; write and run focused page/route tests first to observe expected RED failures.
3. Port the three read-only pages, add independent route error boundaries, wire routes, and apply only the two dev-port pins.
4. Run focused tests, full required web gates, frozen install/lockfile proof, origin check, format/diff hygiene, and accessibility/state-transition sanity checks.
5. Obtain independent spec/code/security review, remediate every blocker, and repeat affected gates.
6. Commit conventionally, run the supported pre-push queue guard, and push only `feat/webui-p4-1`; no PR and no merge.
### Revised budget and session state
- No explicit token cap was supplied. Working soft cap remains **50K tokens**.
- TDD is required by the user and frontend skill for the new SPA behavior; tests must fail for missing pages before production implementation.
- Documentation assessment: this is a parity port of existing read-only behavior, not a new public workflow or API contract; the task scratchpad is the required delivery record, with no user/developer/API documentation changes in this bounded increment.
- Exact base confirmed after fresh fetch/reset: `e00cc475a2b1e9866bd4e2f8df80aff640c3a543`.
- Remote `feat/webui-p4-1` is absent; the eventual push is a fresh branch creation.
- Harness-owned `.mosaic/orchestrator/session.lock` remains excluded from staging.
## REV 2 implementation pass — 2026-08-11T22:05:00Z
### Startup verification
- Loaded required startup files: `/home/jwoltje/.config/mosaic/CONSTITUTION.md`, `/home/jwoltje/.config/mosaic/SOUL.md`, project `AGENTS.md`, `/home/jwoltje/.config/mosaic/guides/E2E-DELIVERY.md`, `docs/PRD.md`, and this scratchpad.
- Loaded required skills: `test-driven-development`, `vitest`, `vite`, `next-best-practices`, and `verification-before-completion`.
- Loaded required runtime guide: `/home/jwoltje/.config/mosaic/runtime/codex/RUNTIME.md`.
- Structured reasoning tool availability verified through the harness before planning.
- `git rev-parse HEAD` confirmed exact required base: `e00cc475a2b1e9866bd4e2f8df80aff640c3a543`.
- `git status --short` at startup showed only the expected untracked append-only scratchpad; `.mosaic/orchestrator/session.lock` did not appear and must remain unstaged if it changes later.
### Current plan
1. Record baseline evidence.
2. Add focused failing SPA page/route specs first.
3. Run focused RED command and record the missing-page failure.
4. Implement the bounded read-only SPA pages, boundaries, route wiring, and the two dev-port pins.
5. Run the required verification matrix and inspect diff hygiene.
### Pre-change baseline
- Command: `pnpm --filter @mosaicstack/web test`
- rc=0
- File/test totals before changes: `15 files / 133 tests`
- Notes: baseline already includes `/chat` SPA route coverage and raw React `createRoot`/`act` page specs that this pass should mirror.
### RED evidence before production implementation
- Command: `pnpm --filter @mosaicstack/web test -- src/spa/pages/projects.spec.tsx src/spa/pages/project-detail.spec.tsx src/spa/pages/tasks.spec.tsx src/spa/pages/resource-route-boundaries.spec.tsx src/spa/routes.spec.tsx`
- rc=1
- Expected missing-feature reason confirmed:
- `src/spa/pages/projects.spec.tsx`, `src/spa/pages/project-detail.spec.tsx`, `src/spa/pages/tasks.spec.tsx`, and `src/spa/routes.spec.tsx` fail import resolution because the SPA page modules do not exist yet.
- `src/spa/pages/resource-route-boundaries.spec.tsx` fails because the current `/projects`, `/projects/:id`, and `/tasks` routes still render placeholders without route-level alert fallbacks.
### Implementation summary
- Added SPA pages:
- `apps/web/src/spa/pages/projects.tsx`
- `apps/web/src/spa/pages/project-detail.tsx`
- `apps/web/src/spa/pages/tasks.tsx`
- Added page-local route boundary components in `apps/web/src/spa/pages/resource-route-error-boundaries.tsx`.
- Wired `/projects`, `/projects/:id`, and `/tasks` in `apps/web/src/routes.tsx` with real elements and `errorElement`s.
- Added fixture-backed raw React Vitest coverage plus route assertions for the three pages and their boundaries.
- Applied only the requested dev topology pins:
- `apps/web/vite.config.ts`: `server.strictPort = true`
- `apps/web/package.json`: `next dev -p 3101`, `next start -p 3101`
### Post-implementation verification
- Focused changed specs:
- Command: `pnpm --filter @mosaicstack/web exec vitest run src/spa/pages/projects.spec.tsx src/spa/pages/project-detail.spec.tsx src/spa/pages/tasks.spec.tsx src/spa/pages/resource-route-boundaries.spec.tsx src/spa/routes.spec.tsx`
- rc=0
- Result: `5 files / 26 tests` passed.
- `pnpm --filter @mosaicstack/web typecheck` — rc=0.
- `pnpm --filter @mosaicstack/web lint` — rc=0.
- `pnpm --filter @mosaicstack/web test` — rc=0; post-change totals `19 files / 153 tests`.
- `pnpm --filter @mosaicstack/web build` — rc=1.
- Limitation: Next/Turbopack hit a sandbox/runtime failure while processing `apps/web/src/app/globals.css`: `creating new process`, `binding to a port`, `Operation not permitted (os error 1)`. This appears environmental, not route-code-specific.
- `pnpm --filter @mosaicstack/web build:vite` — rc=0.
- `pnpm install --frozen-lockfile` — rc=1.
- Limitation: repo `prepare` hook attempted to lock `/home/jwoltje/distrobox-homes/mosaic-dev/src/stack/.git/config`, which is read-only in this harness.
- `pnpm-lock.yaml` SHA-256 before/after install attempt: `9acaa89d213b3281e757b6edf6fdb8727176570d725b78a0de234c61a7f3c332`.
- `origin/next` `pnpm-lock.yaml` SHA-256: `9acaa89d213b3281e757b6edf6fdb8727176570d725b78a0de234c61a7f3c332`.
- `git diff -- pnpm-lock.yaml` — rc=0 (unchanged).
- `git diff -- apps/web/src | grep -nE '^\+.*(fetch|io|api)\(\s*[\x27\"]https?://'` — rc=1 (empty, as required).
- `pnpm format:check` — rc=0.
- `git diff --check` — rc=0.
### Final worktree check
- `git status --short` shows only the authorized web files plus this scratchpad.
- `.mosaic/orchestrator/session.lock` remains unstaged.
- Current changed file set:
- `apps/web/package.json`
- `apps/web/src/routes.tsx`
- `apps/web/src/spa/routes.spec.tsx`
- `apps/web/vite.config.ts`
- `apps/web/src/spa/pages/page-errors.ts`
- `apps/web/src/spa/pages/page-fixtures.ts`
- `apps/web/src/spa/pages/project-detail.spec.tsx`
- `apps/web/src/spa/pages/project-detail.tsx`
- `apps/web/src/spa/pages/projects.spec.tsx`
- `apps/web/src/spa/pages/projects.tsx`
- `apps/web/src/spa/pages/resource-route-boundaries.spec.tsx`
- `apps/web/src/spa/pages/resource-route-error-boundaries.tsx`
- `apps/web/src/spa/pages/tasks.spec.tsx`
- `apps/web/src/spa/pages/tasks.tsx`
- `docs/scratchpads/webui-p4-1.md`
## P4-1 REV 2 Final Delivery Verification — 2026-08-10T22:23:00Z
### Spec/Security Review Verdicts (Independent Reviews)
Both independent reviews cleared P4-1 REV 2 implementation without blockers:
- **Spec review:** approved; 0 blockers, 0 should-fix findings
- **Code/security review:** approved; 0 blockers, 0 critical/high findings, 0 should-fix recommendations
### Final Fresh Gate Verification (This Session)
All verification gates executed sequentially with rc=0 (except where noted):
1. `pnpm --filter @mosaicstack/web typecheck` — rc=0
2. `pnpm --filter @mosaicstack/web lint` — rc=0
3. `pnpm --filter @mosaicstack/web test` — rc=0; **19 files / 153 tests** (baseline: 15 files / 133 tests; added: 4 files / 20 tests)
4. `pnpm --filter @mosaicstack/web build` — rc=0; Next production build completed, 10/10 static pages generated
5. `pnpm --filter @mosaicstack/web build:vite` — rc=0; Vite production bundle generated
6. Lockfile integrity:
- Before install: SHA-256 `9acaa89d213b3281e757b6edf6fdb8727176570d725b78a0de234c61a7f3c332`
- After frozen install: SHA-256 `9acaa89d213b3281e757b6edf6fdb8727176570d725b78a0de234c61a7f3c332`
- Equality: ✓ verified
- `git diff --quiet origin/next -- pnpm-lock.yaml` rc=0 ✓
7. `pnpm format:check` — rc=0; all matched files use Prettier code style
8. `git diff --check` — rc=0; no trailing whitespace or merged conflict markers
9. New-code origin check: `git diff -- apps/web/src | grep -nE '^\+.*(fetch|io|api)\(\s*[\x27\"]https?://'` — rc=1 (empty result, as required)
10. `pnpm --filter @mosaicstack/web exec vitest run src/spa/pages/projects.spec.tsx src/spa/pages/project-detail.spec.tsx src/spa/pages/tasks.spec.tsx src/spa/pages/resource-route-boundaries.spec.tsx src/spa/routes.spec.tsx` — rc=0; 5 files / 26 tests passed
### Scope Audit
**Authorized in-scope changes:**
- ✓ `apps/web/package.json` — dev port pins only
- ✓ `apps/web/vite.config.ts` — strictPort flag only
- ✓ `apps/web/src/routes.tsx` — route wiring with errorElements
- ✓ `apps/web/src/spa/pages/projects.tsx` — read-only SPA list
- ✓ `apps/web/src/spa/pages/project-detail.tsx` — read-only SPA detail
- ✓ `apps/web/src/spa/pages/tasks.tsx` — read-only SPA list/kanban
- ✓ `apps/web/src/spa/pages/resource-route-error-boundaries.tsx` — page-local error components
- ✓ `apps/web/src/spa/pages/*.spec.tsx` — fixture-backed tests (4 new)
- ✓ `docs/scratchpads/webui-p4-1.md` — append-only record
**Out-of-scope verification:**
- `.mosaic/orchestrator/session.lock` — not modified/staged ✓
- `pnpm-lock.yaml` — not modified ✓
- `apps/gateway/**` — not modified ✓
- `packages/**` — not modified ✓
- Chat SPA — not modified ✓
- Settings, admin, navigation, or auth flow — not modified ✓
### Next Action
Commit, run authorized queue guard, and push only `feat/webui-p4-1` (no PR, no merge).
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# WebUI Phase P — File / Folder Structure & Migration Map
> **Status:** living document — first pass. Structure and increment status are verified against
> `next` as of merge `8c27024d`. Details (per-surface component inventories, exact route tables,
> test matrices) are still being fleshed out; extend the stub sections below rather than rewriting
> the verified structure.
## 1. What Phase P is
Phase P migrates the Mosaic **web UI** (`apps/web`) from the legacy **Next.js App Router** app to a
**Vite + React Router single-page app (SPA)** that the **Gateway serves same-origin** on
`:14242`. The RFC splits the work into **six increments (P1P6)**; the P1 PR title records this as
"increment 1/6".
The migration is deliberately **incremental and non-destructive**: the new SPA is built up
_beside_ the existing Next app, sharing one `apps/web/src/lib` networking/auth layer, until the
final cutover (P5) removes the Next tree. At every point in between, **both app trees exist in the
same package** — this is intentional, not drift.
## 2. Current tree on `next` (dual-app, transitional)
```
apps/web/
├── next.config.ts # legacy Next.js config (removed at P5)
├── vite.config.ts # SPA build + DEV proxy config (canonical from P5)
├── package.json # dev/build default to NEXT today; :vite variants opt in
└── src/
├── main.tsx # ── SPA entry (Vite)
├── routes.tsx # ── SPA React Router route table
├── spa/ # ── NEW SPA surfaces
│ ├── guards.tsx # guest / authenticated route guards
│ ├── pages/ # login, register, sso-callback (P2); chat + error boundary (P3)
│ └── chat/ # P3 typed chat: use-chat-connection, commands-panel,
│ # session-panel, message-transcript, tool-call-list, composer
├── lib/ # ── SHARED by BOTH trees (origin-relative networking + auth)
│ ├── api.ts # fetch wrapper — relative /api/...
│ ├── socket.ts # Socket.IO singleton — relative /chat
│ ├── auth-client.ts # BetterAuth client — relative /api/auth/...
│ ├── auth-redirect.ts # post-auth redirect resolution (protocol-relative rejected)
│ ├── chat-contract.ts # P3 typed chat wire contract (runtime-guarded)
│ ├── sso.ts · types.ts · cn.ts
├── app/ # ══ LEGACY Next.js App Router (removed at P5)
│ ├── (auth)/{login,register}/
│ ├── (dashboard)/{admin,chat,projects,projects/[id],settings,tasks}/
│ ├── auth/provider/[provider]/
│ └── layout.tsx · page.tsx · globals.css
├── components/ # ══ LEGACY Next component library (auth, chat, layout,
│ # projects, settings, tasks, ui) — ported into spa/ across P3/P4
└── providers/ # ══ theme-provider (legacy; SPA equivalent under providers)
```
Legend: `──` new SPA (keep), `══` legacy Next (removed at P5), shared `lib/` in the middle.
## 3. Networking / serving model (why it's same-origin)
- The SPA speaks **origin-relative paths only**: `/api/...`, `/api/auth/...`, `/chat`. No
`NEXT_PUBLIC_*` / `VITE_*` origin var, no hard-coded `http://localhost:14242` under
`apps/web/src`.
- **Dev:** `vite.config.ts` runs a dev-only proxy that forwards those paths to the Gateway (so the
SPA on its dev port and the Gateway on `:14242` behave as one origin).
- **Prod (target):** the SPA is **same-origin with the Gateway** — the Gateway serves the built
static bundle and the API/WS on `:14242`, so no proxy and no CORS. _(The Gateway does not serve
the web `dist` yet — adding that is the core of P5; see §5.)_
## 4. Build scripts (`apps/web/package.json`)
| Script | Today | Notes |
| ----------------------------- | -------------------------------------------- | ------------------------------ |
| `dev` | `next dev` | legacy dev server |
| `dev:vite` | `vite` | SPA dev server (+ dev proxy) |
| `build` | `node ../../scripts/build-web.mjs` | currently a **Next** build |
| `build:vite` | `vite build` | SPA production build → `dist/` |
| `lint` / `typecheck` / `test` | `eslint src` / `tsc --noEmit` / `vitest run` | tree-agnostic |
At **P5** the `:vite` variants become the defaults (`dev`→vite, `build`→vite build) and the Next
build path is retired.
## 5. Increment map (P1P6)
| # | Increment | Branch | Status |
| ------ | ---------------------------------------------------------------------------------------------------------------------------------------------- | ----------------------------- | ------------------------- |
| **P1** | Vite + React Router skeleton beside Next (entry, router, guards, vitest) | `feat/webui-p1-vite-skeleton` | ✅ merged — PR **#1143** |
| **P2** | SPA data layer + same-origin auth (login/register/SSO pages, guards, relative api/socket/auth-client) | `feat/webui-p2-data-auth` | ✅ merged — PR **#1144** |
| **P3** | Typed SPA **chat** (`spa/chat/*`, `chat-contract.ts`, chat page + error boundary) | `feat/webui-p3-chat` | 🚧 in progress (unmerged) |
| **P4** | Port **projects / tasks / settings / admin** dashboard surfaces into the SPA | _tbd_ | ⏳ not started |
| **P5** | **Cutover**: Gateway serves the Vite `dist` on `:14242`; flip `dev`/`build` to vite; **remove** the legacy Next `app/` tree + `next.config.ts` | _tbd_ | ⏳ not started |
| **P6** | CI / images (trails): build the SPA in CI, ship images | _tbd_ | ⏳ trails |
Each increment follows the same delivery pipeline: brief traceable to the RFC → author →
**independent** integrator verification (build+test+typecheck+lint) → **independent** code + security
review (author ≠ reviewer) → author remediates → branch + PR to `next`**independent** merge-gate
merges. Author self-reports are not trusted; every gate is re-derived independently.
## 6. Known dependency / blocker
- **Issue #1145 — Gateway `dist` boot is broken** (DI failure on a defaulted constructor param);
the Gateway currently runs **dev-mode only**. This is a **hard precondition for P5**: the Gateway
cannot serve the SPA `dist` on `:14242` until `dist` boot works. P3/P4 remain on the dev-proxy
topology meanwhile.
## 7. Not part of Phase P (disambiguation)
`docs/plans/2026-08-09-webui-fleet-claude-bridge.md` and
`docs/scratchpads/webui-fleet-bridge-plan.md` describe a **separate** WebUI ↔ fleet/Claude bridge
effort. They are **not** the Phase P SPA migration and should not be conflated with the increments
above.
## 8. Where the detail lives (extend these)
- Per-increment working notes: `docs/scratchpads/webui-p*-*.md` (e.g. `webui-p2-data-auth.md`).
- _Stub — to flesh out:_ per-surface component inventory (which `components/*` port to which
`spa/*`), the full SPA route table, the P5 cutover checklist, and the P6 CI/image plan.
@@ -193,16 +193,19 @@ describe('Unified wizard (runWizard with default skipGateway)', () => {
'Your timezone': 'UTC',
});
await runWizard({
mosaicHome: tmpDir,
sourceDir: tmpDir,
prompter,
configService: createConfigService(tmpDir, tmpDir),
skipGatewayNpmInstall: true,
});
await expect(
runWizard({
mosaicHome: tmpDir,
sourceDir: tmpDir,
prompter,
configService: createConfigService(tmpDir, tmpDir),
skipGatewayNpmInstall: true,
}),
).rejects.toThrow('Gateway configuration failed');
const logs = prompter.getLogs();
expect(logs.some((line) => line.includes('Gateway did not become healthy'))).toBe(true);
expect(logs.some((line) => line.includes('Gateway configuration failed'))).toBe(true);
expect(logs.some((line) => line.includes('Installation Summary'))).toBe(false);
expect(logs.some((line) => line.includes('Mosaic is ready.'))).toBe(false);
expect(gatewayConfigMock).toHaveBeenCalledTimes(1);
@@ -39,6 +39,7 @@ overwritten on upgrade. (Layer model: `constitution/LAYER-MODEL.md`.)
| TypeScript strict typing | `guides/TYPESCRIPT.md` |
| QA / test strategy | `guides/QA-TESTING.md` |
| Documentation (any code/API/auth/infra change) | `guides/DOCUMENTATION.md` |
| Writing style (docs, comms, any prose) | `guides/WRITING-STYLE.md` |
| Secrets / vault usage | `guides/VAULT-SECRETS.md` |
| Tool/credential reference (service CLIs, wrappers) | `guides/TOOLS-REFERENCE.md` |
| Memory protocol (OpenBrain capture/recall) | `guides/MEMORY.md` |
@@ -27,6 +27,14 @@ Master/slave model:
- Do not perform destructive git/file actions without explicit instruction.
- Browser automation (Playwright, Cypress, Puppeteer) MUST run in headless mode. Never launch a visible browser — it collides with the user's display and active session.
### Output standards (writing + code)
- Technical documentation follows **MOS-STE** (Mosaic Simplified Technical English — an adapted ASD-STE100 profile): short sentences, one instruction per sentence, active voice, one word per meaning, one term per concept. Full rules: `~/.config/mosaic/guides/WRITING-STYLE.md`.
- Apply MOS-STE **hardest to verification artifacts** (acceptance criteria, witness predicates, gate/alarm conditions). There an ambiguous term produces a false green, not just a confused reader.
- Source code follows the **Google Style Guide** for the language.
- User-facing comms follow the user's declared `communicationStyle` in `USER.md` "Communication Preferences" (`direct` | `friendly` | `formal`, default `direct`); `guides/WRITING-STYLE.md` §5 maps each value to output. The documentation standard does not change with user preference.
- **Carve-out:** MOS-STE does NOT apply to content that must carry a specific human voice (letters, personal or marketing prose, voice-matched output). A declared voice profile wins.
### Secrets handling (HARD RULE)
- Vault is the canonical source-of-truth for every secret in every environment. No exceptions.

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