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The React + Vite frontend (`app/src/`) - architecture, state, services, providers, routing, components, hooks. browsers

Frontend (app/src/)

The OpenHuman desktop UI: a Vite + React 19 tree under app/src/ (pnpm workspace openhuman-app). It uses Redux Toolkit with persistence for session state, talks to the in-process Rust core over JSON-RPC (coreRpcClient → local HTTP, with the Tauri relay_http_rpc command as a fallback relay) and socket.io (socketService), and reaches the cloud backend via REST (apiClient). Heavy logic lives in the core, not here.

This is one consolidated reference. Use the table of contents above (or your reader's outline) to jump between sections.

Quick reference

Section Covers
Architecture Provider chain, build, layout, conventions
State Management Redux Toolkit slices, selectors, persistence
Services Layer apiClient, socketService, coreRpcClient
Providers ThemeProvider, CoreState, Socket, ChatRuntime providers
Pages & Routing HashRouter, route guards, main routes
Components UI / settings component patterns
Hooks & Utilities Shared hooks, helpers, config

Scale

Metric Value
TypeScript / TSX files under app/src/ ~1700 (find app/src -name '*.ts' -o -name '*.tsx' | wc -l to refresh)
Test runner Vitest (app/test/vitest.config.ts)

Directory layout

app/src/
├── App.tsx                 # Provider chain + HashRouter shell (desktop + mobile shells)
├── AppRoutes.tsx           # Desktop route table (AppRoutesIOS.tsx for mobile)
├── main.tsx                # Entry (polyfills, Sentry, store, styles)
├── store/                  # Redux slices, selectors, userScopedStorage persistence
├── providers/              # ThemeProvider, CoreStateProvider, SocketProvider, ChatRuntimeProvider
├── services/               # apiClient, socketService, coreRpcClient, transport/, api/* (~50 modules)
├── lib/                    # AI prompt loaders, i18n, MCP helpers, platform, tunnel crypto
├── pages/                  # Route-level screens (incl. onboarding/, ios/, dev/)
├── features/               # Feature verticals (human/, conversations/, meet/, voice/)
├── components/             # Shared UI (incl. settings/, layout/shell/, accounts/)
├── agentworld/             # tiny.place Agent World surface (/agent-world/*)
├── hooks/                  # App hooks
├── utils/                  # Config, Tauri command wrappers, routing utilities
└── assets/                 # Icons and static assets

Architecture overview

System architecture

OpenHumans desktop UI is a React 19 app (app/src/) that:

  • Uses Redux Toolkit with persistence for session-related state
  • Connects to the backend with REST (apiClient) and to the local core with Socket.io (socketService → core socket endpoint)
  • Calls the Rust core (embedded in the Tauri host as a tokio task) over HTTP via coreRpcClient (JSON-RPC methods implemented in repo root src/openhuman/); non-loopback plain-http runtimes are relayed through the Tauri relay_http_rpc command
  • Leaves AI prompts to the core: bundled src/openhuman/agent/prompts (repo root) ship as Tauri resources and are read core-side, not by the frontend
  • Uses a minimal MCP-style helper layer under lib/mcp/ (transport, validation)

Entry points

File Purpose
app/src/main.tsx React root, polyfills, Sentry boundary, store, global styles
app/src/App.tsx Provider chain (see below) + desktop/mobile shells, Settings modal overlay
app/src/AppRoutes.tsx HashRouter routes, ProtectedRoute / PublicRoute / DefaultRedirect guards

Provider chain

Generated from app/src/App.tsx by scripts/generate-architecture-docs.mjs. Do not edit by hand — run pnpm docs:generate to refresh.

# Component Role
1 Sentry.ErrorBoundary Crash boundary; renders ErrorFallbackScreen
2 Provider Redux store; enables useAppSelector / dispatch app-wide
3 PersistGate Holds UI until persisted Redux slices rehydrate
4 ThemeProvider Theme tokens and dark-mode handling
5 I18nProvider Localization context consumed via useT
6 BootCheckGate Blocks render until the core boot snapshot resolves
7 CoreStateProvider Core app snapshot: auth, session, onboarding state
8 SocketProvider Core socket.io events; desktop only (mobile uses the TunnelTransport relay)
9 ChatRuntimeProvider Chat runtime events, tool timeline, and approvals
10 Router HashRouter navigation for all routes
11 CommandProvider Command palette context
12 ServiceBlockingGate Blocks the shell until required services are configured

Why this order

  1. Redux Provider is outermost so useAppSelector / dispatch work everywhere.
  2. PersistGate rehydrates persisted slices before children assume stable auth/session.
  3. BootCheckGate / CoreStateProvider resolve the core boot snapshot (auth, onboarding) before feature providers mount.
  4. SocketProvider (desktop only) and ChatRuntimeProvider depend on that core state for realtime events and approvals.
  5. Router supplies navigation to all routes.

Module relationships (simplified)

App.tsx
  ├─ Redux store + persistor
  ├─ ThemeProvider / I18nProvider - theme tokens, useT() localization
  ├─ BootCheckGate - waits for the core boot snapshot
  ├─ CoreStateProvider - auth/session/onboarding snapshot (fetchCoreAppSnapshot RPC)
  ├─ SocketProvider - socket.io connection to the local core (desktop only)
  ├─ ChatRuntimeProvider - chat streaming, tool timeline, approvals → Redux
  └─ AppShell (desktop or mobile)
       ├─ AppRoutes - PublicRoute / ProtectedRoute / DefaultRedirect
       ├─ SettingsModal - overlay mounted when the URL is /settings/*
       └─ WebviewHost - active connected-app CEF webview overlay

Services layer (conceptual)

services/
  ├─ apiClient        → REST to a URL resolved at runtime via `services/backendUrl#getBackendUrl`
  ├─ backendUrl       → Calls `openhuman.config_resolve_api_url`; falls back to VITE_BACKEND_URL only outside Tauri
  ├─ socketService    → Socket.io to the local core (base URL derived from the RPC URL); MCP-style envelopes
  ├─ coreRpcClient    → JSON-RPC over HTTP to the local openhuman core; `relay_http_rpc` fallback for non-loopback http
  └─ transport/       → ConnectionProfile transports for iOS/remote (LanHttp, Tunnel, CloudHttp)

Runtime config precedence

The desktop app does not bake the core RPC URL or the API host into the bundle as a hard requirement. At runtime the app resolves them in this order (highest first):

  1. Welcome-screen RPC URL field, saved via utils/configPersistence and restored on next launch. End users configure a self-hosted core address here, not by hand-editing config.toml or .env files.
  2. Tauri core_rpc_url command, the port the embedded core is listening on for this process.
  3. VITE_OPENHUMAN_CORE_RPC_URL, build-time fallback for development.
  4. The hardcoded http://127.0.0.1:7788/rpc default.

Once the RPC handshake succeeds, services/backendUrl calls openhuman.config_resolve_api_url to pull api_url (and other safe client fields) from the loaded core Config. VITE_BACKEND_URL is only used as a web fallback when the app runs outside Tauri.

Components that need the backend URL should call useBackendUrl() (or getBackendUrl() from non-React code), they must not import the static BACKEND_URL constant from utils/config, which represents the build-time value only.

State Management

The application uses Redux Toolkit with Redux-Persist. There is no single root persist config: each slice that persists wraps its own reducer with persistReducer in store/index.ts, whitelisting exactly the fields that should survive a restart.

Storage backends

  • userScopedStorage (store/userScopedStorage.ts) — the default storage for persisted slices. Blobs are keyed ${userId}:persist:<key> so state never leaks across users on logout/login (#900).
  • Plain localStorage — used only for pre-login, device-wide slices (coreMode, locale, theme) that must survive user switches.

Slices

Authoritative list = the reducer map in store/index.ts. One-line purposes:

Slice Purpose Persisted?
accounts Connected web-app (CEF webview) accounts + rail ordering accounts, order, lastActiveAccountId (not the active id)
agentProfiles Agent profile data no
announcement Harness-init announcement banner, seen ids shownIds
backendMeet Backend-driven Google Meet call state (join/leave, transcript, replies) no
channelConnections Messaging channel connections (WhatsApp, Slack, …) connections + migration/default-channel fields
chatRuntime Streaming buffers, tool timelines, inference status, artifacts only artifactsByThread (ready snapshots)
companion Companion overlay state no
connectivity navigator.onLine + backend/core health status no
coreMode Pre-login core mode selection (embedded / self-hosted / cloud) mode (plain localStorage)
layout Two-pane layout geometry (sidebar visibility, dragged widths) panels
locale UI language current (plain localStorage)
mascot Mascot appearance / voice selection color, voiceId, customMascotGifUrl, selectedMascotId
notifications Notification items + preferences items, preferences
persona Cosmetic persona display name + description (SOUL.md lives in the core) displayName, description
providerSurfaces Provider webview surface state no
ptt Push-to-talk hotkey + session prefs (isHeld deliberately excluded) shortcut, speakReplies, showOverlay
socket Per-user socket connection status / socket ids no (reconnects on boot)
theme Theme mode, font size, message view mode, custom themes plain localStorage
thread Chat thread list + per-thread message caches only selectedThreadId
userErrors User-actionable runtime errors (#3931) no (in-memory only)

Ephemeral chat state (streaming buffers, tool timelines) must not survive a restart — the UI would try to resume a turn whose live driver is gone. The one exception, agent-generated artifacts, goes through the artifactsReadyOnlyTransform in store/index.ts (pure logic in store/artifactsPersistFilter.ts).

Typed hooks

File: store/hooks.ts

// Use these instead of plain useDispatch/useSelector
export const useAppDispatch: () => AppDispatch = useDispatch;
export const useAppSelector: TypedUseSelectorHook<RootState> = useSelector;

Best practices

  1. Always use typed hooksuseAppDispatch and useAppSelector.
  2. Use selectors for derived state — see store/socketSelectors.ts, store/connectivitySelectors.ts, store/userErrorsSelectors.ts.
  3. Whitelist persistence per slice — never persist transient/loading state; add a per-slice persistReducer in store/index.ts.
  4. Prefer Redux over ad-hoc localStorage — plain localStorage is reserved for the pre-login slices noted above.
  5. In dev / E2E builds the store is exposed as window.__OPENHUMAN_STORE__ so WDIO specs can assert backing state; production bundles do not expose it.

Services Layer

The application uses singleton services for external communication. This prevents connection leaks and provides consistent API access.

Service architecture

app/src/services/
  ├─ apiClient (HTTP REST)
  │   └─ backend URL resolved at runtime (services/backendUrl)
  ├─ socketService (Socket.io)
  │   └─ connects to the local core's socket endpoint (base derived from the RPC URL)
  ├─ coreRpcClient.ts
  │   ├─ direct webview fetch → local openhuman core (JSON-RPC over HTTP)
  │   └─ invoke('relay_http_rpc', …) fallback for non-loopback plain-http runtimes
  ├─ coreCommandClient.ts - typed wrappers over core RPC methods
  ├─ transport/ - ConnectionProfile transports (LanHttp, Tunnel, CloudHttp) for iOS/remote
  └─ services/api/* - domain API modules (~50 files, see below)

API Client (services/apiClient.ts)

Fetch-based HTTP REST client for backend communication with typed request/response handling and error handling. The backend URL is resolved at runtime (services/backendUrl), not baked in.

import apiClient from "../services/apiClient";

const user = await apiClient.get<User>("/users/me");
const result = await apiClient.post<LoginResponse>("/auth/login", {
  email,
  password,
});

Domain API modules (services/api/)

~50 domain-scoped modules, one per feature surface, each wrapping either backend REST endpoints or core RPC methods. Representative examples:

  • authApi / userApi — auth + user profile
  • threadApi, threadGoalApi, threadUsageApi — chat threads
  • agentProfilesApi, agentTeamApi, agentWorkApi, subagentApi — agents
  • skillsApi, skillRegistryApi, flowsApi, workflowRunsApi, todosApi — skills & automation
  • channelConnectionsApi, mcpClientsApi, mcpSetupApi, tunnelsApi — connections
  • memoryTimelineApi, memoryFreshnessApi, graphCentralityApi, namespaceOverviewApi — memory/graph
  • billingApi, creditsApi, referralApi, rewardsApi, inviteApi — commerce
  • voiceSettingsApi, voiceInstallApi, aiSettingsApi, modelCouncilApi — AI/voice config

For the full list, ls app/src/services/api/. New feature surfaces get their own module here rather than growing apiClient.

Socket Service (services/socketService.ts)

Socket.io client singleton connected to the local core's socket endpoint (base URL derived from the resolved RPC URL via coreSocket.ts; authenticated with the core RPC token). It ingests realtime core events — chat/meet/channel/companion updates — and dispatches them into Redux (socketSlice, backendMeetSlice, channelConnectionsSlice, companionSlice, connectivitySlice). It also hosts the MCP-style transport (SocketIOMCPTransportImpl from lib/mcp).

Keep socketService and the core socket behavior aligned (the "dual socket sync" rule in AGENTS.md). Connection lifecycle is owned by providers/SocketProvider.tsx; on mobile the provider is not mounted at all — events arrive through the TunnelTransport relay instead.

Core RPC (services/coreRpcClient.ts)

The Rust core runs in-process inside the Tauri host (no sidecar). The UI calls JSON-RPC methods on it over local HTTP:

import { callCoreRpc } from "../services/coreRpcClient";

const result = await callCoreRpc<MyType>({
  method: "openhuman.some_method",
  params: {
    /* … */
  },
  timeoutMs: 60_000, // optional per-call override (default 30s)
  suppressAuthExpiredEvent: false, // narrow reads can opt out of global sign-out on 401
});

How a call flows:

  1. URL + token resolution — the RPC URL follows the precedence in Runtime config precedence; the per-launch bearer token comes from the Tauri core_rpc_token command (or the stored token for self-hosted cores).
  2. Direct fetch — the webview fetch()es the JSON-RPC envelope straight to the core (loopback http or any https URL).
  3. Shell relay fallback — plain http:// to a non-loopback host is active mixed content and Chromium blocks it (#3865). rpcUrlNeedsShellRelay() detects this and routes the call through invoke('relay_http_rpc', { url, token, body }), implemented in app/src-tauri/src/core_rpc.rs, which returns { status, body } re-wrapped as a Response.
  4. Transport override — iOS/remote connection profiles install a CoreTransport (setActiveCoreTransport) so the same callCoreRpc surface rides LAN/tunnel/cloud transports.

Errors are classified into a stable CoreRpcError.kind (auth_expired, transport, timeout, rate_limited, …) — callers branch on kind, never on message regexes. An auth_expired classification broadcasts core-rpc-auth-expired, which CoreStateProvider turns into a session clear.

Best Practices

  1. Use singletons — never create multiple service instances.
  2. Keep Tauri IPC and RPC calls in services — do not scatter invoke() or raw fetches through components.
  3. Clean up on unmount — disconnect in useEffect cleanup.
  4. Handle errors via CoreRpcError.kind — retry only transient failures.

Providers

React context providers (app/src/providers/) manage service lifecycle and expose core-owned state. The full nesting (including gates that live in components/) is the generated provider chain above. There is no UserProvider, AIProvider, or SkillProvider — auth/user state lives in CoreStateProvider, AI configuration lives in the Rust core, and skills execute in the core (the frontend QuickJS skills engine was removed).

ThemeProvider (providers/ThemeProvider.tsx)

Applies theme tokens and dark-mode handling from the persisted theme slice (mode, font size, custom themes).

CoreStateProvider (providers/CoreStateProvider.tsx)

The authoritative auth/session/onboarding context. Fetches the core app snapshot (fetchCoreAppSnapshot() RPC), exposes it via useCoreState() ({ snapshot, isBootstrapping, refresh }), and clears the session on the global core-rpc-auth-expired event. It follows a turn-boundary refetch contract: after every agent reply completes (chat_done in ChatRuntimeProvider) it refetches the user state (debounced 750ms) and merges it into the snapshot via patchSnapshot — see providers/README.md.

SocketProvider (providers/SocketProvider.tsx)

Owns the socket.io connection to the local core: connects once core state is ready, updates the socket slice, and tears down on unmount. Desktop only — App.tsx skips it on mobile, where events arrive through the TunnelTransport relay.

ChatRuntimeProvider (providers/ChatRuntimeProvider.tsx)

Subscribes to chat runtime socket events (message streaming, tool calls, subagent lifecycle, approval requests) and reduces them into the chatRuntime slice — per-thread tool timelines, streaming buffers, artifacts, and approval state consumed by the chat surface and the mascot.

Gates and shell-level contexts (in components/)

  • BootCheckGate (components/BootCheckGate/) — blocks render until the core boot snapshot resolves.
  • CommandProvider (components/commands/) — command palette context.
  • ServiceBlockingGate (components/daemon/) — blocks the shell until required services are configured.

Context vs Redux

Use Context For Use Redux For
Service instances (socket, client) Serializable state (status, data)
Methods (emit, on, off) Persisted state (sessions, tokens)
Derived values Complex state logic

Example: SocketProvider owns the socket instance; Redux stores connection status in socketSlice.


Human Mascot Surface

The Human page (app/src/features/human/HumanPage.tsx) renders the main YellowMascot beside the conversation sidebar. The mascot face still comes from useHumanMascot, which subscribes to chat lifecycle events for thinking, speaking, acknowledgement, and error states.

Sub-agent delegation is visualized by SubMascotLayer. It does not introduce a new socket protocol. Instead, it reads the selected or active thread's chatRuntime.toolTimelineByThread entries that ChatRuntimeProvider already builds from subagent_spawned, subagent_completed, subagent_failed, subagent_iteration_start, subagent_tool_call, and subagent_tool_result.

Lifecycle mapping:

Runtime timeline state Sub-mascot state
running Small colored mascot in a thinking face with a short activity bubble
success Same mascot resolves to a happy face and completion bubble
error Same mascot resolves to a concerned face and failure bubble

Activity bubble text is intentionally compact: current child tool call, child iteration, the delegation prompt excerpt, or final status. The thread timeline remains the authoritative detailed view; sub-mascots are only the glanceable orchestration layer around the main mascot.


Pages & Routing

The application uses HashRouter with protected and public route guards. Desktop routes live in app/src/AppRoutes.tsx; on mobile (iOS/Android) AppRoutesIOS.tsx renders a reduced Human/Chat/Settings set instead.

Route map

Current desktop routes (read AppRoutes.tsx for the authoritative table — the file is heavily commented with the rationale for each redirect):

/                      → Welcome (PublicRoute; redirects to /home if logged in)
/auth                  → WebCallbackPage (auth callback)
/callback/:kind[/:status] → WebCallbackPage (generic OAuth/provider callbacks)
/onboarding/*          → Onboarding stepper (ProtectedRoute)
/human                 → HumanPage (mascot surface)
/brain                 → Brain (memory knowledge-graph)
/flows                 → FlowsPage · /flows/draft → draft canvas · /flows/:id → FlowCanvasPage
/orchestration         → OrchestrationPage (TinyPlace multi-agent coordination)
/workflows/run         → WorkflowsRun (single-purpose Skill runner)
/connections           → Skills page (connections hub)
/chat/:threadId?       → Accounts (unified chat: agent + connected web apps)
/invites               → Invites
/feedback              → Feedback
/notifications         → Notifications
/rewards               → Rewards
/ptt-overlay           → PttOverlayPage (push-to-talk overlay window)
/dev/agent-insights    → dev-only preview
/agent-world/*         → AgentWorld (tiny.place A2A social network)
*                      → DefaultRedirect

Back-compat redirects (all Navigate replace, query params preserved):

/home        → /chat                     /skills      → /connections
/activity    → /settings/notifications   /channels    → /connections?tab=messaging
/intelligence→ /settings/notifications   /routines    → /settings/automations
/workflows   → /settings/automations     /webhooks    → /settings/integrations#webhooks
/brain/tinyplace-orchestration → /orchestration

There is no /login route — authentication flows through the Welcome page, the /auth callback, and deep links. Desktop Settings is not an inline route: when the URL is /settings/*, AppShellDesktop keeps rendering the background location and mounts SettingsModal on top (see Settings). Note that /agents does not exist; the agent-social surface is /agent-world/*.

Route guards

All three guards read useCoreState() (not Redux auth state) and render RouteLoadingScreen while bootstrapping:

  • ProtectedRoute (components/ProtectedRoute.tsx) — ({ children, requireAuth = true, redirectTo }); without a session token, navigates to redirectTo || '/'. Onboarding gating is not done here — an effect in AppShellDesktop (App.tsx) forces non-onboarding routes back to /onboarding while onboarding_completed is false, and bounces off it once complete.
  • PublicRoute (components/PublicRoute.tsx) — redirects signed-in users to /home (which forwards to /chat).
  • DefaultRedirect (components/DefaultRedirect.tsx) — signed out → /; signed in but onboarding incomplete → /onboarding; otherwise → /chat. Waits for snapshot.currentUser to avoid the post-login race.

Onboarding Flow (pages/onboarding/)

A routed stepper (Onboarding.tsx mounts nested routes inside OnboardingLayout):

/onboarding/welcome         → WelcomePage
/onboarding/runtime-choice  → RuntimeChoicePage
  ├── cloud  → /chat
  └── custom → /onboarding/custom/inference → voice → oauth → search
               → embeddings → (activity) → vault → /chat

Each custom step offers Default (let OpenHuman manage it) vs Configure (inline controls, or a deep-link callout to Settings for domains not yet embedded). Pages live in pages/onboarding/pages/; the legacy Composio/skills/context-gathering steps (pages/onboarding/steps/) are retired from the default flow but remain on disk. Completion is tracked by the core's onboarding_completed flag, enforced by the AppShell onboarding gate. After onboarding, AppWalkthrough (Joyride) runs the post-onboarding tour.

Settings

Settings is a full /settings/* URL surface, presented on desktop as a modal overlay and on iOS as a full page. The old SettingsPanelLayout / useSettingsAnimation / ProfilePanel modal system is gone.

  • components/settings/settingsRouteRegistry.ts — single declarative source of truth for every settings destination (id/route slug, i18n keys, section, sidebar navGroup, devOnly, search keywords). Navigation menus, breadcrumbs, and settings search all derive from it.
  • components/settings/settingsRouteElements.tsx — maps registry entries to panel <Route> elements.
  • components/settings/modal/SettingsModal (mounted by AppShellDesktop whenever the path is a settings path; settingsOverlay.ts computes { settingsOpen, baseLocation } so the page behind stays rendered), SettingsModalFrame (backdrop / Esc / focus / close), SettingsModalLayout (routed two-column layout).
  • components/settings/layout/ — two-pane chrome: SettingsLayout, SettingsSidebar (grouped by SettingsNavGroup: general, assistant, data, connections, knowledge & memory, agents & autonomy, models & inference, automation & integrations, diagnostics & logs), SettingsSubNav, SettingsIndexRedirect.
  • components/settings/panels/ — ~50 leaf panels (AccountPanel, AppearancePanel, AIPanel, AgentsPanel, AgentAccessPanel, AutonomyPanel, BillingPanel, CronJobsPanel, IntegrationsPanel, McpServerPanel, NotificationsTabbedPanel, PrivacyPanel, DeveloperOptionsPanel, …). Adding a panel = add the component + a registry entry; nav, breadcrumbs, and search pick it up automatically.
  • components/settings/search/ — settings search bar + registry-derived index.

HashRouter vs BrowserRouter

The app uses HashRouter for desktop compatibility:

// App.tsx
import { HashRouter } from "react-router-dom";

// URLs look like: app://localhost/#/home
// Instead of: app://localhost/home

Why HashRouter:

  1. Tauri deep links work with hash-based URLs
  2. No server configuration needed
  3. Works with file:// protocol
  4. Prevents 404 on direct URL access

Deep links are handled before routing:

// main.tsx
import("./utils/desktopDeepLinkListener").then((m) => {
  m.setupDesktopDeepLinkListener().catch(console.error);
});

The listener intercepts openhuman:// URLs (e.g. auth handoff), exchanges tokens through the Rust side (bypassing CORS), stores the session, and navigates to the right route. See utils/desktopDeepLinkListener.ts.


Components

Shared UI lives in app/src/components/; feature-specific UI lives in app/src/features/<vertical>/. Highlights:

components/
├── ProtectedRoute / PublicRoute / DefaultRedirect   # Route guards
├── layout/shell/            # RootShellLayout, AppSidebar, SidebarSlot (two-pane app chrome)
├── settings/                # Settings registry, modal, layout, panels, search (see above)
├── accounts/                # WebviewHost + connected-app (CEF webview) surfaces
├── BootCheckGate/, daemon/  # Boot + service gates in the provider chain
├── commands/                # CommandProvider (command palette)
├── Announcement/, upsell/, userErrors/, walkthrough/  # Shell-level overlays
├── keyring/, mcp-setup/, InitProgressScreen/          # Consent + init overlays
└── intelligence/            # Memory/vault surfaces (ObsidianVaultSection, VaultHealthChecklist, WorkflowsTab, …)

Conventions:

  • Modal via portal — shell modals (Settings, link modal) render above routed content; the Settings modal uses the backgroundLocation pattern rather than unmounting the page underneath.
  • Controlled modals — parents own isOpen state and pass onClose.
  • i18n everywhere — all user-facing text goes through useT() (lib/i18n/I18nContext); CI enforces locale parity.
  • No dynamic imports in production app/src code — static import / import type only.

Hooks & Utilities

Custom Hooks (hooks/)

~40 app-level hooks. Representative examples:

  • useUser — thin wrapper over useCoreState(); returns { user: snapshot.currentUser, isLoading, error, refetch }. There is no standalone user store.
  • useBackendUrl — runtime backend URL resolution (see Runtime config precedence).
  • useThreadQueries — chat thread fetching.
  • useDaemonHealth / useDaemonLifecycle — core service health.
  • useDictationHotkey / usePttHotkey — global hotkey managers.
  • useDeveloperMode, useMediaQuery, useEscapeKey, useStickToBottom — UI utilities.
  • Feature hooks: useFlowRunProgress, useWorkflowBuilderChat, useConsciousItems, useSubconscious, useIntelligenceStats, useCostDashboard, ….

Feature-local hooks live next to their feature under features/*/.

Utilities

Configuration (utils/config.ts)

Centralized build-time environment variable access — never read import.meta.env directly elsewhere. These constants only carry the value baked into the bundle; for the runtime URL the app actually talks to, see services/backendUrl and hooks/useBackendUrl.

// Build-time fallback only (used outside Tauri).
export const BACKEND_URL = /* VITE_BACKEND_URL || default */;
// Core RPC build-time fallback.
export const CORE_RPC_URL = /* VITE_OPENHUMAN_CORE_RPC_URL || 'http://127.0.0.1:7788/rpc' */;
// Dev flags, e.g.
export const DEV_FORCE_ONBOARDING = /* dev-only VITE_DEV_FORCE_ONBOARDING */;

Do not import BACKEND_URL directly to make API calls. Resolve the URL at runtime so the core's api_url (via openhuman.config_resolve_api_url) takes effect:

// React components
import { useBackendUrl } from "../hooks/useBackendUrl";
const backendUrl = useBackendUrl();

// Non-React code
import { getBackendUrl } from "../services/backendUrl";
const backendUrl = await getBackendUrl();

Handles incoming openhuman:// deep links via the Tauri deep-link plugin: parses the URL, performs the Rust-side token exchange (bypasses CORS), stores the session, and navigates. Set up lazily from main.tsx so the Tauri IPC bridge is ready first.

URL Opener (utils/openUrl.ts)

Cross-platform URL opening — tries the Tauri opener plugin, falls back to window.open. Always use this instead of raw window.open so links open in the system browser.

Tauri command wrappers (utils/tauriCommands/)

Typed wrappers around invoke(...), including the bridge-gap-aware isTauri() guard (checks __TAURI_INTERNALS__.invoke is actually wired, not merely that the app runs under Tauri). Use it — never check window.__TAURI__ directly.

Polyfills (polyfills.ts)

Node.js globals (Buffer, process, util) polyfilled for the browser. Several browser-side modules use Node APIs — e.g. voice/PTT audio encoding (features/voice/pttAudio.ts, wavEncoder.ts), mascot Rive asset caching (features/human/Mascot/), the Meet mascot frame producer, and tool-timeline formatting.

Two layers provide them:

  1. vite-plugin-node-polyfills in app/vite.config.ts (buffer, process, util, os, crypto, stream, plus Buffer/process/global globals).
  2. polyfills.ts, imported first in main.tsx, which synchronously assigns Buffer/process/util onto globalThis/window/global/self before any dependent module executes.

Best Practices

Hook dependencies & cleanup

useEffect(() => {
  on("event", handler);
  return () => off("event", handler);
}, [on, off, handler]);

Always include dependencies and always clean up subscriptions.

Error handling

Wrap Tauri/utility calls in try-catch with a fallback:

try {
  await openUrl(url);
} catch (error) {
  console.error("Failed to open URL:", error);
}

Type safety

Use TypeScript generics for API and RPC calls:

const user = await apiClient.get<User>("/users/me");
const result = await callCoreRpc<Snapshot>({
  method: "openhuman.app_state_snapshot",
});