apps/web/tests/README.md records why these e2e type-check in the Host aggregate and why importing a Client package there pulls its project tree into the Host build graph, with mirroring as the standing answer. The Agent Note drops the directory-picker face split (assessed and declined) and the grep-level gate in favour of that README. docs: regenerate the catalogs and retarget the moved declarations The forwarded-event change moved three owner packages' cordis `Events` declarations and their branded types into client-safe `./types` modules, and the settings-scope split moves the shell spec into ui-settings-general. Point the type-equivalence manifest and the affected Agent Note at those homes, register the new `remote/*` event scope and the `ctx.settingsScope` service in the catalog partition, and re-run the generators. `$on` joins the documented `TypeRTClientRemote` surface, and the two Agent Note fences that quote a bare member signature are marked `ignore-check`: they are declaration fragments, not compilable units. refactor(client): make ui-settings the settings domain's base layer The settings-namespace transport lived in client/runtime, where every feature could value-import it because runtime is a platform module. It belongs to the settings domain, but moving it into ui-settings as a shared function fails twice: the client bundle purity gate forbids cross-plugin value imports, and ui-settings reached ui-sidebar for its shell, so any feature depending on it closed a cycle through ui-layout and ui-theme. Both halves move. `ctx.settingsScope` is now a cordis service — the collaboration shape the purity gate prescribes, and the service proxy binds `this.ctx` to the caller, so a bound scope's disposer belongs to the calling fiber. The shell ui-settings used to own (the `sidebar.settings` occupant, its navigation, and the nav-row projection) moves to ui-settings-general, which already owns the chrome and the General section. What stays in ui-settings is what carries no `ui-*` dependency: the scope service and the canonical settings slot types, `settings.general.item` included. That type was parked in the locale package precisely because the declarer was unreachable without a cycle; every registrant now depends on this base layer, so it comes home. The scope CONTRACT stays in client/runtime: a feature service accepts a scope through its own signature without depending on the surface that binds it. The forwarded settings invalidation replaces the deleted client-side `settings/changed` event, so the transport reads `ctx.remote.$on`. It reaches `$on` through the gateway's Client half plus the allowlist's type-only subpath rather than api-remotes' Client face: that face imports a Host-tsdown-generated artifact, and this package is reachable from the Host build graph through its callers. refactor(client): reach the settings transport through ctx.settingsScope Every feature that owns a preference row switches from value-importing a shared binder to the settings domain's service, and declares the two injections that binding needs: `settingsScope` for the transport and `remote` for the forwarded invalidation it subscribes to on the caller's own context. The rows stay with the features that own the preferences — Language with locale, Appearance with ui-theme, Composer Enter with ui-conversation. Only their route to the transport changes, so no settings surface moves and no feature gains a dependency on the shell. The `settings.general.item` slot type now arrives from ui-settings, the base layer every registrant already depends on, which retires the re-export outlet ui-theme kept and the parked declaration in the locale package. client/runtime drops its settings-form and schemastery dependencies with the transport that used them. test(client): bind the settings transport in the specs that boot a preference row Every bench that activates a plugin owning a preference row now supplies the two services that plugin injects: the forwarded-event port and the scope service. Specs that exercise no settings path get the minimal doubles; the ones that do drive their refresh chains through `remote/host-event`, the same signal client/runtime republishes from a forwarded frame, replacing the deleted client-side `settings/changed` event. Also fixes a publication defect the built-invariant gate catches once it runs: api-remotes' invariant companion shared the allowlist module with the package index, so rolldown hoisted it into a third chunk beside the two bundled entries — a file the mechanically derived publication list does not carry, leaving an installed companion unable to import it. The companion now reads the allowlist through this package's own published `./types` subpath, which the bundle keeps external, so each entry stays self-contained. The dynamic-subscription cast in apiproxy is gone: after the vendored cordis rescope, `on` accepts the rest-parameter handler directly, and the allowlist's shape assertion still carries the safety argument. fix(client): carry the settings-scope move across the release manifests Rebasing onto the publishable release set replaced every manifest's dependency block, so the packages this change touches restate their additions in the workspace-protocol form: the base layer's own transport dependencies, and the `ui-settings` plus `remote` edges each preference-row owner now needs. ui-settings-general takes clsx with the shell it received, and client/runtime drops the settings-form and schemastery dependencies that left with the transport. fix(api-gateway): give each $on subscription its own registration and containment Two defects in the forwarded-event subscription table, both raised in review: A set keyed on listener identity stored one entry when two callers subscribed the same function object to the same event, so the first frame reached it once instead of twice and either disposer silenced the surviving registration. Subscriptions are now records addressed by registration, which is what "the disposer belongs to the calling fiber" requires. A listener declared void may still be `async`, and the synchronous `try/catch` could not see its rejection: the promise was dropped and surfaced as an unhandled rejection outside the documented containment. Delivery now attaches a rejection handler when a listener returns a promise, so both failure modes are logged and isolated alike. Delivery also iterates a snapshot, so a listener that subscribes or disposes during a frame no longer changes who receives that frame, and production matches the TestRemote double instead of relying on live Set iteration order. Both fixes are pinned by tests that fail against the previous implementation. The double gains its own spec for the `$mount` refusal and the unsubscribed-name drop — per-file coverage reaches it — plus a note that it propagates a throwing listener where production contains one, so no spec mistakes it for the containment guarantee. Three prose corrections: `assertJsonArgs` states where its throw actually surfaces (the emitter's listener containment, not load or emit time), the browser e2e README names every standing Client import rather than claiming one exception, and two comments and a test title state the forwarded event instead of the deleted client-side one. refactor(remote): deliver forwarded frames through ctx.remote.$dispatch The carrier used to relay each decoded frame over an internal `remote/host-event` cordis event so the delivery port could stay off the Remote contract. The relay was the wrong shape twice over: it put a client-face event into a scan whose subject is the Host vocabulary, forcing a walk exemption for something that is not a Host event at all, and it made a direct handoff between two Client plugins look like a broadcast any plugin participates in. `TypeRTClientRemote` now carries both roles of one surface — consumers subscribe with `$on`, and whoever owns the Host frame sink hands frames over with `$dispatch` — so client/runtime calls the Remote service directly and the event declaration is gone. A cordis service method is the collaboration shape the client bundle purity gate prescribes, and it needs no relay to satisfy it. The trade is that the handoff is now developer-visible: any plugin holding `ctx.remote` can synthesize a forwarded event. That is the exposure the relay already had — `ctx.emit` was equally reachable — stated in the contract instead of hidden behind a private subscriber. runtime reaches `ctx.remote` through the gateway's Client face rather than api-remotes': that face imports a Host-tsdown-generated artifact, and this project sits in the Host build graph. refactor(api-remotes): keep the allowlist value out of types.ts `src/types.ts` carries only types by package convention, but it held the forwarded-event array, so the type-only subpath published runtime code. The array moves to `src/remote-events.ts` and `types.ts` derives its projection from it; both compiler faces list both files, so the Host forwarding loop and the consumer key face still read one declaration and the package's exports are unchanged. The invariant companion returns to an empty installer. Its dispatch-shape check was the only reason the companion imported the allowlist, which made the two bundled entries share a module: rolldown hoisted it into a third chunk that the mechanically derived publication list does not carry, so an installed companion could not import it. Dropping the check retires that coupling along with the subpath-import and bundle-external workarounds it needed, and the shape the check enforced at runtime is the part the Host face's `TypeRTForwardableEvent` assertion already refuses at compile time. test(ui-task): bind the locale plugin's new injections in its bench The bench boots the real locale plugin, which now injects the settings-scope service and the forwarded-event port, so it stayed pending and left `ctx.locale` undefined. Supplies both doubles like the other benches that boot a plugin owning a preference row. docs: close the documentation gates for the forwarded-event surface Regenerates the two graph catalogs and re-records every bilingual pair this branch edited. Several pairs needed real work beyond the record: - The generators write only the English side, so the Chinese sides of `event-producer-consumer` and `module-graph` had drifted: the former still listed the three deleted client-face events and pointed at declaration sites this branch moved into `types.ts` modules, and the latter carried a stale dependency graph. - `TypeRTClientRemote`'s documented declaration gains `$dispatch` on both sides. - The pairing contract requires both sides to link the same target, so the apiproxy README and the design note now link the English note from both languages, and the note's code blocks are byte-identical across the pair (a translated comment inside a fence counts as divergence). - `apps/web/tests/README.md` gains its Chinese counterpart; the browser e2e lane documents a discipline reviewers apply, so it belongs in the bilingual corpus rather than in the pairing exemption list. - Four fences in the design note are marked `ignore-check`: each quotes a member signature, a union arm, or a snippet that names symbols it does not import, so none is a compilable unit. docs(agent-note): transition the forwarded-event note to implemented The design shipped in this PR, so the pair moves into `implemented/` and takes that folder's skeleton: `## Proposal` becomes a present-tense `## Decision`, and `## Acceptance criteria` plus `## Risks` fold into `## Verification` (what pins the behavior) and `## Consequences` (what the shipped shape costs). Facts that moved after the proposal are corrected rather than preserved: the allowlist value now lives in `remote-events.ts` beside a type-only `types.ts`, the delivery port is `$dispatch` rather than an internal cordis event, and the invariant companion is an explained empty installer. `Verification` states the two `$on` defects the review found — independent registration identity and async-rejection containment — since those are now the properties tests pin. Supersession is partial, so five active notes stay active and gain a cross-link each: `web-config-plane`, `web-client-session-scope`, `config-plane-boundaries`, `versioned-gui-welcome-onboarding`, and `permission-default-for-new-sessions` each described a frame this change replaced. Only the mechanism sentence is annotated; every conclusion those notes own is untouched, and `host/models-changed` remains apiproxy's own derived frame in all of them. Also pins the disposer's idempotence: calling one `$on` disposer twice must not splice a surviving twin registration out from under its owner. fix: docs fix: test
@deepseek-ai/dsh-settings
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User-settings Service Definition (ctx.settings). One provider holds a raw document of per-namespace sections; plugins register a namespace schema and read a resolved value layered as schema defaults, then the registrant's composition base (its cordis.yml entry-config subset), then the user document section. Without a mounted provider nothing changes for consumers: they keep resolving entry config alone, so every composition works with or without settings.
Service API
documentPath— absolute path of the provider's user-editable file when it has one; non-file providers leave itundefined. Host configuration adapters derive availability from it, while browser protocols expose only a boolean capability and never a filesystem target.prepareDocument()— return that path after making the document ready for a native editor. The base implementation returnsdocumentPath; a file provider may materialize an absent document first.register(ns, schema, { base?, applies? })— returns the ownerSettingsScope(get/watch/update). The registration is an effect on the calling plugin's fiber: disposing that fiber removes the namespace and its observers. A stored section the schema rejects fails the registration itself; a duplicate namespace fails loud.describe(options?)— one descriptor per namespace (schema.toJSON()envelope, resolved value, detachedbase/userlayers,applies) for configuration surfaces; a field's presence inuseris what marks it user-overridden.describe({ redactSecrets: true })stripsrole('secret')fields from every layer and adds thesecretsslot list ({ path, set }); every wire surface MUST pass it, and the pureredactSecrets(schema, value)walker is exported for other wires.get(ns)— resolved value,undefinedwhile unregistered.update(ns, patch)— deep-merges the plain-object patch into the user section only (never thebase), validates the resolved candidate, persists through the provider, then commits. Patches may contain only JSON-compatible data: a Date, Map, BigInt, non-finite number, or circular reference rejects with its$-rooted path before anything persists (YAML/JSON storage would silently change such values on reload). Validation failure rejects before anything is persisted; a read-only provider (writable: false) rejects every write. Writes to one namespace are serialized in call order.replace(ns, section)— sets the user section wholesale: the deliberate reset (replace({})re-inheritsbaseand schema defaults).mutate(ns, ops)— applies ordered{ op: 'set' | 'unset', path }edits to the section as it stands when the write reaches the front of the queue. This is the removal path for any caller holding an INCOMPLETE view: a configuration UI reads the redacted descriptor, so rebuilding a section from it and replacing wholesale deletes every secret the wire never returned, while an op names the one field it means.- Every write takes an optional
expectedRevision. Each descriptor carries the namespace'srevision, a monotonic counter over its RAW section; a write whose expectation no longer matches rejects withSettingsConflictError(code: 'SETTINGS_CONFLICT', both revisions attached) instead of overwriting the writer that landed first. The write queue orders writes but cannot by itself tell a fresh writer from one holding a stale snapshot. - Resolved values are deep-frozen snapshots. Watchers receive
(next, prev)after each commit: invocations of one callback run asynchronously, one at a time, in commit order (a slow stale invocation can never apply after a newer one), and failures — sync throws and async rejections alike — are contained. After a watch disposer returns, no further invocation starts (one already queued is skipped); an invocation already started still settles. Thesettings/updatedevent fans out one listener at a time, so one throwing listener cannot starve the rest; an async listener's rejection is contained and logged, which is whyINVARIANT-coded failures rethrow only from synchronous listeners. - Service teardown refuses new writes and watcher starts, then drains every queued write and every started watcher invocation before disposal completes; a write whose registrant fiber was disposed mid-flight still reaches storage but commits and notifies nobody.
Provider contract
Subclasses implement writable, load(), and persist(ns, section), optionally override documentPath and prepareDocument() for one local user-editable file, and push externally observed documents through the protected publish(doc). The base service init loads and publishes the document once before the service becomes injectable; a provider with its own init (watcher, connection) delegates first via yield* super[Service.init](). At publish, each registered namespace re-resolves independently: an invalid section keeps that namespace's last good value and warns — a live reload never takes the process down — while boot-time and registration-time validation fail loud.
Events
settings/updated (ns, next, prev, source) fires after each commit; source is update (in-process write) or provider (external change). It never fires for a deep-equal resolved value — it is the consumer-facing event, and a consumer only cares that its value moved.
settings/document-updated (ns, revision) fires whenever the RAW user section changes, whether or not the resolved value did. Configuration surfaces need this one: storing an override equal to the composition base leaves the resolved value alone but changes what the document says (the field is now overridden, not inherited) and moves the revision every open editor is holding. Listener containment matches settings/updated.
Both declarations live in the client-safe ./types subpath export, together with the SettingsNamespace and SettingsUpdateSource types their signatures name; the package root re-exports those types. A consumer outside the Host compilation face therefore reads the very signature the Host emits instead of restating it.
Model Experience
Indirectly, through consumer plugins that resolve model-affecting values (for example a default model route) from their namespaces; each consumer's own surface documents the effect.
KV Cache effect
No direct invalidation; a consumer that folds a settings value into the request prefix owns that change.
Known Limitations and Deferred Work
- Single user layer — resolution knows schema defaults, one composition
base, and one user document; it does not yet record which layer supplied each resolved value. redactSecretsis not a proven wire boundary — the walker followsobject/dict/array, so arole('secret')reached only through a union, intersection, or transform is returned VERBATIM with an emptysecretslist, andschema.toJSON()carries a secret field's.default(...)to every client. Neither case is rejected; a schema whose secrets are not reachable through the walked containers must not be registered on a wire-exposed namespace. A fail-closeddescribeForWire()— one that refuses a schema it cannot prove safe, and sanitizes the serialized envelope and error text — is the real answer and is deferred.- Cross-process concurrency is provider-defined — the seam serializes writes per namespace in-process only; concurrent processes converge by provider behavior (the local file provider read-modify-writes under a writer lock, so namespaces survive concurrent writers and same-namespace conflicts resolve last-write-wins).