5c6a21e2c3
The desktop shell is one generic .deb/.AppImage distributed via mca/public_releases, not built per-booth, but the backend origin was baked in at build time (VITE_API_BASE, hardcoded to http://127.0.0.1:3000) — the same installer could never point at a different appliance without a rebuild. Adds ConnectScreen (shown before Login in Tauri when no backend is saved), backed by tauri-plugin-store persisting the operator-entered URL across restarts. CSP's connect-src tightens to 'self' only — all backend traffic already routes through tauri-plugin-http/websocket, which run Rust-side and are outside connect-src's reach anyway — and the real access boundary moves to capabilities/default.json's http:default scope, wildcarded so an operator-chosen host is actually reachable. Adds a "Change server" control in Setup (desktop-only) to repoint an already-configured install. While tracing the desktop auth path for this: tauri-plugin-http's fetch() runs through Rust's reqwest, which keeps its own cookie jar separate from the webview, so document.cookie on tauri://localhost never sees the parking_csrf cookie the server sets (open upstream bug, tauri-apps/tauri#13045/#11518). This means the desktop app has likely been silently sending no CSRF header on every mutation since the shell was first built — pre-existing, independent of this change. Fixed by having sessionView() (routes/auth.ts) also echo the CSRF value in the login/me JSON body; the desktop client stashes it in memory and echoes that instead of reading document.cookie. assertCsrf() itself is untouched. Verified end-to-end against a real LAN-bound dev server: login returns a csrfToken matching the cookie, a mutation using the body-sourced token in X-CSRF-Token succeeds (200), and the same mutation without it still correctly 403s.
33 lines
1.9 KiB
Rust
33 lines
1.9 KiB
Rust
// Parking System desktop shell — entry point.
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//
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// Intentionally minimal: build the default Tauri app and run it. The window
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// config (kiosk, fullscreen, which URL/assets to load) lives in tauri.conf.json.
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// No custom commands are registered — the renderer (the @parking/web SPA) reaches
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// the backend over HTTP to a Fastify server (address operator-configured at
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// runtime, not baked in — see apps/web/src/lib/backend-config.ts), NOT through
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// Tauri IPC. This keeps the shell a thin presentation wrapper with a
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// deny-by-default native surface (see wiki/decisions/desktop-shell-tauri.md).
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#[cfg_attr(mobile, tauri::mobile_entry_point)]
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pub fn run() {
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tauri::Builder::default()
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// Auto-update: the JS side (apps/web) checks on launch, prompts the
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// operator, and installs + relaunches on confirm. These plugins expose
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// the update check/install and the relaunch to that flow. The updater
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// endpoint + signing pubkey live in tauri.conf.json.
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.plugin(tauri_plugin_updater::Builder::new().build())
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.plugin(tauri_plugin_process::init())
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// Routes the SPA's fetch()/WS calls to the operator-configured Fastify
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// server through Tauri's native HTTP client — see the Cargo.toml
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// comment on why the webview's own fetch() can't reach it directly.
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.plugin(tauri_plugin_http::init())
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// Live-feed WebSocket — same mixed-content reason as the HTTP plugin
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// above, but WS needs its own plugin (separate browser check).
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.plugin(tauri_plugin_websocket::init())
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// Persists the operator-configured backend URL across restarts (JSON
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// file in the app's config dir) — see backend-config.ts.
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.plugin(tauri_plugin_store::Builder::new().build())
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.run(tauri::generate_context!())
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.expect("error while running the Parking System desktop shell");
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}
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