Files
orca/docs/reference/mobile-push-contract.md
T

31 KiB
Raw Blame History

Mobile push: contract and build spec

Tracking issue: stablyai/orca#8129. Design page: /tmp/orca-mobile-push/orca-mobile-push.html. This document is the single contract every lane builds against. Do not deviate without updating it.

Summary

A small Orca-hosted push gateway (cloud/apps/push) holds the APNs key and FCM credentials and sends to phones. The desktop host registers each paired phone's native push token with the gateway and asks the gateway to push each eligible desktop notification. Native APNs/FCM delivery is the only ordinary mobile OS-banner path. The notification socket is retained only for live dismissals and reconnect tray reconciliation; ordinary notification frames never create banners. Reconciliation compares the current native tray with durable host dismissal history and does not replay alerts. Desktop notification categories are authoritative. Legacy category, replay-notification, and summary fields remain on the wire only for mixed-version compatibility. No ack gate, no generic mode, no staging gateway, one auth path for signed-in and accountless hosts.

Identities

  • Host public key: the desktop's existing X25519 E2EE public key (src/main/runtime/e2ee-keypair.ts), 32 bytes, base64. The phone already stores it per host as publicKeyB64.
  • hostFingerprint: sha256(hostPublicKey) base64url, first 16 chars. Identical derivation to deriveRelayHostId in src/main/runtime/relay/relay-http-client.ts. Both desktop and phone can compute it.
  • deviceId: the desktop's DeviceEntry.deviceId for the paired phone. Opaque UUID.
  • registrationId: gateway-assigned opaque id for one (hostFingerprint, deviceId) pair.

Gateway HTTP API

Base URL: https://push.onorca.dev (dev override via env). JSON bodies, Content-Type: application/json. All schemas are zod, .strict(), exported from cloud/packages/push-contract.

Host authentication: challenge, proof, session

The host keypair is X25519 (box), so it cannot sign. Reuse the relay's challenge shape.

POST /v1/host/challenge

{ "v": 1, "hostPublicKeyB64": "<32 bytes b64>" }

→ 200

{ "challengeId": "<opaque>", "gatewayEphemeralPublicKeyB64": "<32 b64>", "nonceB64": "<24 b64>",
  "ciphertextB64": "<b64>", "expiresAt": <epoch ms> }
  • Gateway generates an ephemeral box keypair per challenge, a 24-byte nonce, and a 32-byte secret.
  • plaintext = "orca-push-host-challenge/v1\0" || u32be(len(transcript)) || transcript || secret(32)
  • ciphertext = nacl.box(plaintext, nonce, hostPublicKey, gatewayEphemeralSecretKey)
  • Transcript is the relay's length-prefixed field encoding (field(name, value) = u32be(len(name)) || name || u32be(len(value)) || value), fields in this exact order: protocol="orca-push-host-proof/v1", version=0x01, gatewayOrigin, gatewayEphemeralPublicKey, challengeNonce, challengeId, issuedAt (u64be ms), expiresAt (u64be ms), hostFingerprint, hostPublicKey.
  • Challenge TTL 10 s, and 10 s is the whole window the gateway honours. The 30 s clock skew tolerance is the host's alone: it validates a timestamp the gateway chose, so it needs the allowance and the gateway does not. A gateway that subtracted the tolerance from its own check would run a 40 s TTL. Store challenge (id, expected-proof digest, host fingerprint, expiry, consumption time) in DB so any Cloud Run instance can verify. Expired rows are pruned 30 s late so a slow proof reads as expired rather than as an unknown challenge.
  • No host registry or public-key/transcript copy is stored. The encrypted challenge and expected-proof digest provide proof verification; session and device rows retain host ownership.

POST /v1/host/session

{ "v": 1, "challengeId": "<opaque>", "proofB64": "<32 b64>" }
  • Host opens the box with its secret key, validates every transcript field (same checks as validateTranscript in src/main/runtime/relay/relay-host-proof.ts, adapted to the push fields), and returns proof = HMAC-SHA256(secret, "orca-push-host-proof/v1\0ack\0" || transcript).
  • Gateway verifies with timingSafeEqual, consumes the challenge (single use), and returns
{ "sessionToken": "<opaque 32 b64url>", "expiresAt": <epoch ms>, "hostFingerprint": "<16 chars>" }
  • Session TTL 24 h. Stored hashed (sha256) in DB. Bearer on every other call: Authorization: Bearer <sessionToken>. 401 with { "error": "session_expired" } on expiry; host re-runs the challenge.

Device registration

POST /v1/devices (Bearer)

{ "v": 1, "deviceId": "<uuid>", "platform": "ios" | "android", "token": "<native token>",
  "apnsEnvironment": "sandbox" | "production" }  // ios only, required for ios

→ 200 { "registrationId": "<opaque>" }. Upsert keyed by (hostFingerprint, deviceId); a new token replaces the old. deviceId is caller-chosen, so a host is capped at 64 registrations: the 65th distinct deviceId → 409 { "error": "too_many_devices" }. Re-registering a deviceId the host already owns is always accepted, and deleting a registration frees its slot. GET /v1/devices is bounded at 1024 rows to match its response schema, which the per-host cap keeps well out of reach. The gateway stores no category filters. The host enforces desktop category eligibility, phone-specific away-only and sound preferences, and a mandatory seven-day registration lease renewed by mobile use. iOS tokens are variable-length, hex-encoded byte strings; Android tokens are FCM registration strings.

DELETE /v1/devices/:registrationId (Bearer) → 204. Only the owning host may delete.

GET /v1/devices (Bearer) → { "devices": [{ registrationId, deviceId, platform, dead: boolean }] }.

Send

POST /v1/send (Bearer)

{ "v": 1,
  "registrationIds": ["<id>", "..."],
  "notification": {
    "notificationId": "<max 2048 chars, may be absent for terminal-bell>",
    "notificationSeq": <int>, "notificationEpoch": "<uuid>",
    "source": "agent-task-complete" | "terminal-bell" | "plugin",
    "agentState": "needs-input" | "finished" | null,
    "title": "<max 80 chars>", "body": "<max 180 chars>",
    "worktreeId": "<max 2048 chars|absent>" } }

→ 200

{ "results": [{ "registrationId": "<id>", "status": "queued" | "dead" | "rate_limited" | "error" }] }
  • queued means the logical event, recipient, and pending delivery payload have committed to SQL. A worker resumes pending work after restarts; provider acceptance is not proof of visible delivery.
  • Each host gets 300 logical alerts and, independently, 300 dismissals per rolling 15 minutes. Fanout across phones counts the event once. There is no daily per-phone quota. Over quota returns rate_limited per result with HTTP 200; requests above 20 registration IDs return HTTP 400.
  • Optional notification kind is alert (default) or dismiss; optional expiresAt is an absolute Unix-millisecond deadline capped at five minutes from first acceptance. These fields require the updated gateway; deploy the gateway before the updated desktop sender.
  • Notification JSON remains limited to 3000 UTF-8 bytes. Duplicate event identity with changed content is rejected. Retries retain the original deadline and do not spend additional quota.
  • Event and recipient identities/outcomes remain for 24 hours; payloads are cleared at completion or expiry by minute-level cleanup. Quota reservation and enqueue share a per-host SQL transaction.

Request limits and unauthenticated abuse

  • Every POST is capped at 16 KiB by a streaming body limit, not by Content-Length alone: a chunked body declares no length. Over the cap → 413 { "error": "request_too_large" }.
  • POST /v1/host/challenge and POST /v1/host/session are the only unauthenticated routes. They share one token bucket per client IP, 30 requests per minute, refilling continuously. Over the bucket → 429 { "error": "rate_limited" }. The client IP is the last x-forwarded-for hop, not the first: Cloud Run appends the connecting peer, so everything left of that value is caller-supplied and can be a fresh forgery on every request, which would hand a flood a new bucket each time. ORCA_PUSH_TRUSTED_PROXY_HOPS (default 0) says how many appenders sit between the platform and the client, so a future load balancer sets it to 1. A header with fewer hops than that depth is not trusted at all. Falls back to x-real-ip and then to a single shared bucket. The bucket is per instance and in memory, so the effective cap scales with the instance count; it exists to blunt a flood, not to meter.
  • Authenticated routes use a per-host bucket of 600 requests/minute per instance, so normal usage by one desktop does not consume another desktop's budget behind the same office IP. Invalid bearers spend a separate 30/minute IP budget. Session lookups have bounded concurrent and waiting admission.
  • The gateway cannot prove that a host owns the token it registers: any host with a session may register any well-formed token and send text to it, within its own quota. The phone drops such a push in the foreground because the fingerprint resolves to no paired host, and never routes a tap on it, but the OS banner shows while the app is backgrounded. Reaching it needs the victim's native token, which the gateway never returns and which only the phone and its host ever see.

Individual delivery (gateway)

Each accepted event immediately creates one queued delivery per eligible registration. Bursts retain their original title, body, routing fields, and replacement identity; the gateway does not generate summary text or summary membership. APNs groups alerts visually by the host thread identifier. Android uses a distinct notification tag for each event and relies on platform behavior rather than a custom summary notification. Quota accounting still counts logical alerts, not deliveries or recipients.

Four worker lanes per instance claim deliveries with expiring, renewed SQL leases. Retry state is persistent, with exponential backoff and provider minimum delays. Retry-After is never shortened to fit event lifetime: expire instead. Device validity is checked before each attempt. Dismissals cancel the matching pending alert and use silent provider messages. Mobile OS background execution remains best effort, particularly after force-quit on iOS.

The queue stores one notification object per delivery. The existing push_delivery_batches table name remains to avoid a cosmetic schema change; there are no summary readers, split operations, or storage workarounds for old workers.

This feature is unpublished and its old deployment contains only test data. Before deploying this storage-format change, stop old gateway revisions and clear the old push delivery fixtures; clear old combined notifications from test-device trays as well. Do not run old and new workers together against this queue format. No legacy data migration or summary compatibility is provided. Pairing registrations and unrelated application data do not need to be reset.

Before deploying the registration-filter removal, stop old gateway revisions and run ALTER TABLE push_devices DROP COLUMN IF EXISTS filter_json; on the dedicated PostgreSQL push database. This removes only unused filter metadata and preserves registrations. Fresh databases already use the new schema. Update the test desktop/mobile builds together and reopen mobile to register; persisted host registrations without a finite expiry are discarded. Old unpublished builds are not supported by the new registration API.

Shutdown stops admission and work acquisition, waits for active work within the platform grace, and leaves unfinished deliveries recoverable after their leases expire. A provider acceptance followed by a crash before SQL completion can still cause a repeated send; collapse identity mitigates this without promising exactly-once delivery.

Provider payloads

APNs (HTTP/2, api.push.apple.com or api.sandbox.push.apple.com by apnsEnvironment; JWT auth from key id + team id + .p8, token cached and refreshed every 50 min):

  • headers: apns-topic: com.stably.orca.mobile, apns-push-type: alert, apns-priority: 10, apns-expiration: fixed event deadline (at most five minutes), apns-collapse-id: <sha256(host + notification identity)> (identity-less events use their epoch and sequence)
  • body: {"aps":{"alert":{"title","body"},"sound":"default","thread-id":"<hostFingerprint>"}, "orca":{ hostFingerprint, worktreeId, notificationId, notificationSeq, notificationEpoch, source, agentState }}
  • Dismissals use apns-push-type: background, priority 5, no collapse header, and aps: {"content-available": 1} with orca.kind: "dismiss". They carry no alert or sound.
  • Dead token: 410, or 400 with BadDeviceToken/Unregistered/DeviceTokenNotForTopic.

FCM (V1 projects/onorca-cloud/messages:send, bearer from the runtime service account via the GCE metadata server or GOOGLE_APPLICATION_CREDENTIALS locally):

  • {"message":{"token","notification":{"title","body"},"android":{"priority":"HIGH","ttl":"<remaining event lifetime, at most 300s>", "collapse_key":"<sha256(collapseId) hex 32>","notification":{"channel_id":"orca-desktop","tag":"<collapseId>"}}, "data":{ all orca fields as strings }}}
  • Dismissals are data-only (kind: "dismiss"); omit both message.notification and android.notification. No visible alert or sound is requested.
  • FCM notification messages are inherently collapsible while offline, and FCM supports only a small number of concurrent collapse keys per device. Per-event collapse_key and Android tag preserve individual replacement identity while a message is retained, but excess offline pending messages may be discarded and every alert is not guaranteed to appear. Android automatic grouping remains platform-owned and is unverified on physical devices. Socket reconnect never recovers missed OS banners; the tray is not an event log.
  • Dead token: UNREGISTERED, or INVALID_ARGUMENT whose message names the token.

Gateway storage (Postgres in prod, SQLite in tests, same pattern as cloud/apps/relay/src/database.ts)

  • push_sessions holds one row per host, enforced by a unique index and transaction lock. Minting a session deletes the host's earlier one, since a desktop holds a single session and only re-proves once it is gone.
  • push_challenges(challenge_id pk, host_fingerprint, secret_hash, expires_at, consumed_at)
  • push_sessions(token_hash pk, host_fingerprint, expires_at, created_at)
  • push_devices(registration_id pk, host_fingerprint, device_id, platform, token, apns_environment, dead_at, created_at, updated_at, unique(host_fingerprint, device_id))
  • push_events holds logical event identity, content fingerprint, quota timestamp, and expiry. Omitted kind and explicit kind: "alert" have the same fingerprint; changed content still conflicts.
  • push_event_recipients records accepted event/phone pairs for idempotent fanout.
  • push_delivery_batches holds individual payload envelopes, retry deadlines, and renewable worker leases.
  • push_dismissed_events fences older alerts from replaying after dismissal.
  • Queue identities and dismissal fences are retained for 24 hours; completed payloads are cleared.

Logging: aggregate counters only. Never log tokens, titles, bodies, or raw fingerprints (log the first 4 chars of a fingerprint at most).

Gateway env

PORT, ORCA_PUSH_PUBLIC_URL, ORCA_PUSH_DATABASE_URL (absent → SQLite under ORCA_PUSH_DATA_DIR), ORCA_PUSH_APNS_KEY (PEM text), ORCA_PUSH_APNS_KEY_ID, ORCA_PUSH_APPLE_TEAM_ID, ORCA_PUSH_APNS_TOPIC (default com.stably.orca.mobile), ORCA_PUSH_FCM_PROJECT_ID (default onorca-cloud), ORCA_PUSH_TRUSTED_PROXY_HOPS (default 0, proxies appending to x-forwarded-for after the client). Secret Manager names (already exist in onorca-cloud): orca-cloud-push-apns-key, orca-cloud-push-apns-key-id, orca-cloud-push-apple-team-id. Runtime SA: orca-cloud-push@onorca-cloud.iam.gserviceaccount.com (already has FCM admin + secret accessor).

Desktop (src/main, src/shared)

  • Capability NOTIFICATIONS_REMOTE_PUSH_RUNTIME_CAPABILITY = 'notifications.remote-push.v1' in src/shared/protocol-version.ts, advertised statically.
  • RPC notifications.registerPush params { platform, token, apnsEnvironment?, filter }. The mobile filter includes only away-only and sound preferences; the host persists these locally. Its gateway POST /v1/devices sends no filter. deviceId comes from ctx.pairedDeviceId. The RPC returns { registered: true, registrationId } | { registered: false, reason: 'gateway_unreachable' | 'gateway_rejected' | 'not_mobile' | 'registration_storage_failed' | 'throttled' }. A device may register at most 10 times per minute (throttled beyond that, its earlier registration untouched): each call is a gateway write plus a synchronous registry write on the main thread, and a paired phone could otherwise loop it. The unregister RPC is not throttled, since with nothing registered it is a lookup and with something registered it can only run once per successful register. The params schema is strict, so a caller-supplied deviceId is an error, not a key silently dropped. Persists pushRegistration: { registrationId, platform, filter, registeredAt, expiresAt } on DeviceEntry in device-registry.ts (new optional field, tolerated by old registries). When the gateway accepted the token but the host could not store it — the device left mobile scope mid-call (not_mobile) or the registry write threw (registration_storage_failed) — the host queues the gateway delete in the unregister outbox rather than leaking a registration nothing will ever push to. Registration, unregister, and outbox deletes are serialized per device; re-registration first settles earlier cleanup. Authentication failure never drops a durable delete. Stale send responses only clear the exact local registration observed, while provider dead-token updates match the token/platform/environment that was sent. Phones must treat any registered: false as "retry later", so an unknown reason string is safe to add.
  • RPC notifications.unregisterPush params null → { unregistered: boolean }. Removes the field and enqueues a gateway delete in a durable outbox (src/main/runtime/push/push-unregister-outbox.ts, modelled on relay-revoke-outbox.ts). Unpair/revoke (revokeMobileDevice) enqueues the same. The drain re-reads the queue as it goes, so a delete queued mid-drain lands in the same pass, and a pass that leaves retryable items schedules an unref'd backoff retry (30 s, doubling, capped at 10 min) instead of waiting for the next launch.
  • Both RPCs added to runtime-rpc-mobile-method-allowlist.ts.
  • Push client src/main/runtime/push/push-gateway-client.ts: challenge/proof/session with token cache, register, delete, send. Node fetch. Gateway URL from profile-cloud-auth-config.ts (pushGatewayUrl, default https://push.onorca.dev, env override ORCA_PUSH_GATEWAY_URL).
  • Host proof answering: new src/main/runtime/push/push-host-proof.ts, a copy of the relay's answerRelayHostChallenge with the push transcript fields. Shared code with the relay proof is welcome if it stays a pure refactor.
  • Dispatch hook: in RuntimeMobileNotificationController.dispatch, after the socket fan-out, call pushDispatcher.enqueue(eventWithSeq). The dispatcher requires desktop category eligibility, applies each device's phone-specific away-only and sound preferences, skips dismiss events, maps agentState to needs-input | finished (blocked/waiting → needs-input, else finished), batches matching registrationIds into POST /v1/send requests of at most 20 registrations each (the gateway's per-request cap; extra devices get their own request rather than being dropped), and drops unchanged registrations the gateway reports dead. Failure categories are counted without payload values and logged at most once per minute (with a final flush on shutdown). Fire-and-forget with one retry after 2 s per request; never throws into dispatch.
  • Add agentState to MobileNotificationDispatchEvent and set it in src/main/ipc/notifications.ts from args.agentState. Fix buildAgentTaskCompleteNotificationOptions so working|running|busy never yields "finished" (title says "working" and the dispatcher treats it as not-final, i.e. no push).
  • Headless serve: no renderer means no notifications:dispatch. Document in docs/reference/headless-linux-server.md; do not fix here.

Mobile (mobile/)

  • Commit google-services.json (from /tmp/orca-mobile-push/google-services.json) at mobile/ and set "android": { "googleServicesFile": "./google-services.json" } in app.json. Add "expo-notifications" to plugins so prebuild writes the aps-environment entitlement.
  • Token: Notifications.getDevicePushTokenAsync(); data is the APNs hex or FCM string. iOS apnsEnvironment: __DEV__ ? 'sandbox' : 'production' (dev-client builds are debug, TestFlight and App Store are release). Listen with addPushTokenListener and re-register on change.
  • Settings (mobile/app/notifications.tsx): one default-off Enable notifications switch controls native push registration. Hint: “Get agent alerts even when the app is closed. Delivered through Orca’s push service and Apple or Google.” Desktop category controls are authoritative and are not duplicated as phone overrides. Phone sound and viewing controls remain independent. Consent is stored only in orca:pushNotificationsEnabled; a missing preference remains off, and obsolete test-build push keys do not grant consent. Only when away from desktop defaults on (180 seconds of OS input idle, or locked). Unknown/headless presence does not suppress; it is never inferred from remote CPU activity. The detailed payload disclosure remains in the notification documentation.
  • notifications.remote-push.v1 is the single push capability, including category mirroring, away filtering and seven-day expiry. Settings retain pair/update guidance for hosts without push support and leave unanswered probes unresolved.
  • All registrations receive a persisted seven-day expiresAt on the paired desktop. Delivery and transport retries exclude expired registrations. Only foreground mobile registration renews it: on connection, foreground return, and every 15 minutes while active. Background sockets, desktop use and notification delivery never renew a phone lease. Opening mobile and reconnecting restores delivery without replaying expired push sends.
  • Registration: on switch-on (after OS permission), and on every host reaching connected while the switch is on, call notifications.registerPush on that host if it advertises the capability. On switch-off call notifications.unregisterPush on every connected host and remember to retry on hosts that were offline. On host removal, best-effort unregister before deleting credentials.
  • Receive: addNotificationReceivedListener (foreground) validates that the host is paired, master consent is enabled, the destination is not currently viewed, and the event is not fenced by a persisted dismissal. A bounded process-local identity claim suppresses concurrent duplicates by host, epoch, sequence, and optional notification ID. Background and killed delivery remains owned by the OS and is best effort.
  • Tap: data.orca.hostFingerprint → hostId by computing the same sha256/base64url/16 derivation over each stored host's publicKeyB64; then existing getNotificationNavigationTarget + useOpenNotificationRoute.
  • Reopen: subscribe to socket notifications for live dismissals, but ignore ordinary notification frames for banner presentation. Reconnect reconciliation sends identities currently in the native tray in pages of 256 and applies only confirmed host/epoch/sequence identities; it requests no historical events and creates no banners. The server replay RPC remains compatible with independently updated clients. Live dismiss events also remove matching presented notifications.
  • Old host without the capability: nothing changes.

Infra (cloud/infra/terraform, .github/workflows)

  • Cloud Run service orca-cloud-push, region us-central1, project from the environment tfvars, runtime SA orca-cloud-push@<project>.iam.gserviceaccount.com (exists in prod; declare and import), the three secrets mounted as env (exist; declare and import), Cloud SQL connector to the dedicated HA PostgreSQL instance with its own database orca_push, min instances 1, max 2 in production, concurrency 80, ingress all, unauthenticated invoke.
  • IAM: roles/firebasecloudmessaging.admin and roles/serviceusage.serviceUsageConsumer on the runtime SA (exist in prod; declare and import). Secret accessor per secret.
  • Hostname push.onorca.dev. The DNS zone lives in the apps root in stablyai/orca-cloud; add the Cloud Run domain mapping here and leave a TODO comment naming the record the other repo must add.
  • Workflow .github/workflows/cloud-push-deploy.yml: gated on vars.ORCA_CLOUD_OPERATIONS_ENABLED, Workload Identity like cloud-relay-*, builds a reviewed full source_sha, deploys with --no-traffic, probes the new revision's /ready and a validate-only FCM send, then shifts 100% traffic. Uses .github/actions/cloud-sql-rollout-lease throughout rollout using terraform/state/push-rollout/production.lock and concurrency group production-push-rollout. The deploy identity can manage only that lease object. Push uses only its dedicated 2-vCPU HA database and is excluded from Relay's shared database budget. See database operations for existing-schema preparation, obsolete resource ownership, and the lock transition before deployment.
  • Add the new root files to cloud/dev/contracts and cloud/dev/fixtures partitions so terraform-root-partition.test.mjs and Cloud Verify pass.

Non-goals for this release

Ack gate, generic-alert mode, staging gateway, iOS Notification Service Extension, Android data-only alert messages, Live Activities, account-based quota tiers.

Device delivery preferences

Completion detection remains active when desktop notifications are off; semantic validity checks still precede delivery. IPC publishes desktopAllowed: false when the desktop master or source/category switch rejects an event. That desktop category decision is authoritative for both desktop and phone alerts. Desktop focus and native authorization remain desktop-only presentation gates and do not change mobile eligibility.

Updated mobile subscribes with includeDesktopSuppressed: true for mixed-version compatibility and to receive dismissals, but it never turns ordinary socket notification frames into OS banners. The optional subscribe/replay fields and replayed notifications retain their existing remote-wire compatibility behavior. Push registrations carry no category overrides: hosts gate provider alerts on desktopAllowed. Optional emittedAt and replay notification response fields remain compatibility surface rather than a second delivery policy or banner path.

filter.sound is also host-local. False groups that device's requests separately and adds optional notification.sound: false to gateway sends. The gateway omits APNs aps.sound and uses Android's orca-desktop-silent channel. Missing sound preserves existing audible delivery. Deploy the updated gateway before distributing hosts that send the optional sound field: older gateways strictly reject unknown notification fields. No token or database migration is needed.

The phone's master switch disables native push registration. Sound and viewing preferences belong to the receiving phone. The phone suppresses a foreground banner for its currently viewed host/workspace only while active; it never assumes desktop focus means the phone is viewing that workspace. Once registered, the host applies its persisted phone settings while the phone is disconnected; preference changes synchronize when it reconnects. No live APNs/FCM delivery is implied by simulator notification injection.

APNs/FCM is the sole ordinary OS-banner path whether the app is foregrounded, backgrounded, or killed. Socket notification events do not wait, schedule a local fallback, or recover a missed native alert. Hosts without push registration therefore have no mobile OS-banner fallback.

Native notification readers accept Expo's iOS request.trigger.payload as well as request.content.data. APNs custom fields can exist only in the former; foreground identity claims, dismissal, reconciliation, and tap routing all use the same reader. Legacy summary members remain readable only for notifications already delivered during a mixed-version transition.

Dismissal recovery and desktop presence

Automatic acknowledgement of a visible agent pane requires confirmed desktop presence from the same three-minute native idle check used for push delivery. A focused window alone is insufficient. Trusted input in the renderer confirms the user has returned. Unknown presence preserves unread attention; explicit mark-read actions remain available, including in browser clients.

The runtime persists notification identities and dismissal sequence fences in its own user-data directory before fanout. History is bounded to 4,096 records retained for seven days. It stores no notification text or push tokens. On reconnect, mobile sends up to 256 deliveredPushes identities from the current native tray in each notifications.getMissedSince request; updated hosts return optional dismissedPushes for confirmed handled identities. Mobile processes only those dismissal decisions. Unknown IDs, newer sequences, and different epochs are preserved. Older hosts ignore the optional request field, and older clients ignore the additional response fields. Legacy replayed notifications and epoch fields remain wire-compatible but do not drive current mobile banners.

On iOS, a local Expo module handles silent dismissals directly through the native notification center, independent of JavaScript initialization. Native and JavaScript dismissal paths use the same host/epoch/sequence fences; native dismissal fences retain up to 512 entries for 24 hours. Older native shells and Android retain the JavaScript implementation. A native callback test proves processing only when invoked: iOS background push delivery remains best effort, including while suspended or force-quit. Every delivered push represents one notification. Reconciliation inspects up to 2,048 individual identities in pages of 256. It has no stored replay watermark: every connection compares the current tray with host dismissal history and never replays an alert.

Dismissal storage ownership

iOS requires the OrcaNotificationDismissal native module and uses its native ledger exclusively. Android uses AsyncStorage. A missing iOS module is a build defect; native calls never switch to a second JavaScript store. Reads still recheck when a concurrent dismissal overtakes a negative result. Storage and tray-operation failures propagate to the caller instead of silently selecting a fallback or treating an unsupported old native shell as successful cleanup.

Session schema

One session per host is enforced by a unique index in the initial schema. Startup does not inspect old index layouts or repair duplicate sessions from unpublished builds. Existing test databases already carrying push_sessions_host need no change. If using an older test database without that index and with duplicate sessions, stop old gateway revisions and clear push_sessions before starting this version; hosts authenticate again. No device registrations need to be deleted.