Drift (specs aligned to shipped code): - social-follows: locked-account access rule for /users/:u/followers and /users/:u/following (owner + accepted-follower see; non-followers of private get 404). Adds the follow→notification lifecycle requirement. Fills the placeholder Purpose. - public-profiles: counts degrade to plain text (not anchors) for viewers who can't see the lists. Cross-references social-follows. Fills the placeholder Purpose. - journal-auth slimmed to cookie session + Terms gate. Auth methods moved out (see authentication-methods). Splits: - account-settings (14-line stub) deleted, content split into: - profile-settings (display name, bio, profile_visibility) - account-management (email change with verification, account deletion) - connected-services (Wahoo + future external integrations) - authentication-methods split out of journal-auth: passkeys (register/login/add/delete), magic links, 6-digit codes (login + register), method toggle on register/login forms, dev-console fallback. New specs: - sse-broker: /api/events, in-process broker, useUnreadNotifications hook, Caddy passthrough, multi-process forward-compat contract. Archived: notifications change → openspec/changes/archive/2026-04-26-notifications. Promoted the four delta spec files into top-level specs: - specs/notifications/ (new capability) - specs/activity-feed/ (added: public activity fan-out) - specs/journal-landing/ (added: Notifications navbar entry) - specs/social-follows/ (added: follow→notification lifecycle) Added openspec/CAPABILITIES.md grouped index covering all 40 specs with a Conventions section explaining cross-references, naming, and the catch-up-vs-change rule. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
78 lines
6.7 KiB
Markdown
78 lines
6.7 KiB
Markdown
# sse-broker Specification
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## Purpose
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Server-Sent Events (SSE) infrastructure that pushes one-way notifications from the Journal server to the user's open browser tabs in between page navigations. This is the transport layer; specific event payloads (e.g. `notifications.unread`) are owned by the capability that emits them. The interface is intentionally narrow so it can be swapped from the in-process registry to a Redis pub/sub adapter when the Journal goes multi-process, without caller changes.
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## Requirements
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### Requirement: SSE endpoint exposes a session-bound event stream
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The Journal SHALL expose `GET /api/events` returning a streaming `text/event-stream` response that delivers per-user events to a signed-in browser tab. The endpoint SHALL be authenticated via the user's session cookie; anonymous requests SHALL receive HTTP 401 with no event stream. The response SHALL include `Cache-Control: no-cache` and `X-Accel-Buffering: no` so intermediate proxies do not buffer the stream.
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#### Scenario: Authenticated client receives an event stream
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- **WHEN** a signed-in user opens an `EventSource("/api/events")` connection
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- **THEN** the server registers the connection in the broker keyed by the user's id, sends an SSE preamble (including a `retry: 5000` reconnect hint with 0–2 s server-side jitter), and holds the response open until the client disconnects
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#### Scenario: Anonymous client is rejected
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- **WHEN** an unauthenticated request hits `/api/events`
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- **THEN** the server responds with HTTP 401 and does not start a stream
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#### Scenario: Heartbeat keeps idle connections alive
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- **WHEN** a connection has been open for ≥25 s with no events
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- **THEN** the server writes an SSE comment frame (`: ping\n\n`) so intermediate proxies do not idle-timeout the connection
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- **AND** if the heartbeat write fails (broken pipe), the connection is removed from the broker registry
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#### Scenario: Cleanup on client teardown
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- **WHEN** the client closes the EventSource (tab closed, navigation, network drop)
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- **THEN** the server removes the connection from the broker on the request's abort signal so subsequent emits to that user don't write to a dead socket
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### Requirement: Per-user broker registry with simple emit interface
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The Journal SHALL provide a server-side `events.server.ts` module exposing two functions: `register(userId, conn)` returning an unregister callback, and `emitTo(userId, event, data)` that delivers a serialized SSE event to every connection registered for that user. The interface SHALL be the only call site for multi-process swap (in-memory `Map<userId, Set<Connection>>` today; Redis pub/sub later). Generation hooks (e.g. `notifications.server.ts`'s `emitUnreadCount`) SHALL call `emitTo` after their underlying state change commits, never before.
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#### Scenario: Emit delivers to all of a user's open connections
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- **WHEN** `emitTo("user-1", "notifications.unread", { count: 5 })` is called and "user-1" has two open SSE connections
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- **THEN** both connections receive the same SSE frame (`event: notifications.unread\ndata: {"count":5}\n\n`)
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#### Scenario: Emit to a user with no open connections is a no-op
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- **WHEN** `emitTo("user-2", "notifications.unread", { count: 1 })` is called and "user-2" has zero open connections
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- **THEN** the call returns silently without error and without queueing — events are best-effort, the loader-driven count is the source of truth on next render
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#### Scenario: Broken connections are pruned defensively
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- **WHEN** `emitTo` writes to a connection whose `send` throws (broken pipe)
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- **THEN** the broker calls `close()` on that connection so it cannot leak open file descriptors
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#### Scenario: Emit happens after the underlying state change commits
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- **WHEN** a generation hook (e.g. `createNotification`, `markRead`, `markAllRead`) updates the database
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- **THEN** `emitTo` is called only after the transaction commits, so a client receiving the event observes a consistent count when its next request reaches the database
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### Requirement: Client hook seeds from loader, then live-updates via SSE
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The Journal SHALL provide a React client hook `useUnreadNotifications(initialCount, signedIn)` that opens an `EventSource("/api/events")` when the user is signed in, listens for `notifications.unread` events, and returns the live `count`. The loader-supplied `initialCount` SHALL be the SSR baseline so the badge renders correctly before the first SSE event arrives. The browser's native `EventSource` reconnect behavior SHALL be relied on for transient disconnects; no manual reconnect loop is required.
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#### Scenario: Loader baseline rendered on first paint
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- **WHEN** a signed-in user navigates to any page
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- **THEN** the navbar bell badge initially displays the count returned by the root loader, not zero, even before SSE has handshaked
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#### Scenario: Live event overrides the loader baseline
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- **WHEN** the server emits `notifications.unread { count: 7 }` to the user's open tab via SSE
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- **THEN** the navbar bell badge updates to `7` without a navigation
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#### Scenario: Anonymous tab does not open an SSE connection
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- **WHEN** a logged-out visitor renders a page
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- **THEN** the hook does not call `EventSource("/api/events")` (since the endpoint would 401 anyway)
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### Requirement: Caddy reverse-proxy passes SSE through unmodified
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The reverse proxy in front of the Journal (Caddy v2) SHALL pass `text/event-stream` responses through without buffering. No special directive is required because Caddy v2 auto-detects the content type and disables response buffering automatically; this requirement exists so future infrastructure changes do not silently re-introduce buffering.
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#### Scenario: Caddy reverse_proxy block carries no buffering tweaks
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- **WHEN** the Journal upstream is added to `infrastructure/Caddyfile`
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- **THEN** the entry is a plain `reverse_proxy journal:3000` (no `flush_interval` or buffering directive needed)
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### Requirement: In-process today, Redis-pub/sub when multi-process
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The broker SHALL be implemented as an in-process `Map` for the single-process deployment shipped today. The same `register` / `emitTo` interface SHALL be the swap point for a future Redis pub/sub adapter when the Journal scales to multiple processes; callers SHALL NOT need to change.
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#### Scenario: Single-process deployment
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- **WHEN** the Journal runs as one process behind Caddy
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- **THEN** the broker is the in-process `Map<userId, Set<Connection>>` and emits resolve synchronously within the same Node process
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#### Scenario: Future multi-process swap (forward-compat)
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- **WHEN** the Journal is split into multiple processes (e.g., behind a load balancer with sticky sessions or random routing)
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- **THEN** `events.server.ts` is rewritten as a Redis pub/sub adapter — `register` subscribes to a per-user channel, `emitTo` publishes — without any change at the call sites
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