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* fix(connections): connect to the just-added connection via the live store addConnectionAndConnect() adds a connection and then connects to it in the same tick, but connect() resolved the id against the memoized `connections` closure, which is stale until the hook re-renders. The just-added id was therefore reported as an unknown connection id and Save silently never connected any HTTP/Serial/Bluetooth device. Read savedConnections from useDeviceStore.getState() so the lookup always sees the live store. * test(e2e): real-device Playwright messaging suite Drives the actual web app in Chromium against real meshtasticd firmware over the HTTP phone API and verifies text messaging in both directions across a two-node mesh. Nodes mesh over the firmware's built-in UDP multicast (224.0.0.69) with no MQTT/relay; distinct node numbers, real encryption. - Default backend: two Docker meshtasticd sim nodes (daily-debian). The same specs run against physical hardware via E2E_DEVICE_MODE=hardware. - An off-browser Python meshtastic peer (e2e/peer/peer.py) drives/asserts the non-browser node over the TCP phone API, mirroring firmware mcp-server tests. - Coverage: connect over HTTPS, mesh->web receive, web->mesh send. Direct messages are fixme'd (see below). CI workflow runs it on Linux. Bugs surfaced by the suite: - Fixed (prior commit): connect-on-save never connected (stale-closure id lookup in useConnections). - Not fixed: apps/web/src/core/subscriptions.ts throws 'ReferenceError: nodeDB is not defined' on every device-metrics telemetry packet (the #1050 migration removed that store); caught per-packet, so messaging still works. - Not fixed: direct messages are blocked by a PKI 'Keys Mismatch' (the SDK's stored peer public key != the key presented during NodeInfo exchange), seen even with fresh sim nodes. * test(e2e): address Copilot review feedback - waitForTcp(): destroy the probe socket on the error path so repeated connection failures don't accumulate sockets/FDs across the retry loop. - Don't remove the mesh containers in Playwright globalTeardown in CI — it raced the workflow's failure log capture. Teardown is now gated on E2E_DOCKER_DOWN only; CI dumps device logs on failure and tears the mesh down in a final always() workflow step. * fix(sdk): fold device-metrics telemetry into nodes apps/web/src/core/subscriptions.ts called nodeDB.addDeviceMetrics() on every device-metrics telemetry packet, but the #1050 migration removed that store — so it threw 'ReferenceError: nodeDB is not defined' on each telemetry packet (caught per-packet by the SDK's HandleFromRadio, so messaging still worked but the error spammed the console). Route device metrics into the SDK NodesClient via onTelemetryPacket instead — mirroring the existing position handler; the Node domain already carries a deviceMetrics field — and drop the dead app-side handler. Adds a NodesClient test covering the fold. * docs(e2e): accurate DM root cause + bug status The direct-message fixme is a simulator limitation, not a web-app bug: the keyless meshtasticd sim nodes NAK a DM with NO_CHANNEL (routing error 6) — no Curve25519 keypair is provisioned/shared, and current firmware can't deliver a direct message without a per-node key / decryptable channel. The app surfaces this correctly (key-refresh dialog). Re-enable against hardware or once the sim provisions keys. Also: mark the nodeDB telemetry bug fixed and note the CI teardown change. * docs(e2e): precise DM root cause (firmware/sim PKI) Followed up on the suggestion to provision keys in config.security: the keys ARE settable and persist (verified via admin), but on the native meshtasticd sim they don't sync to the node's owner / NodeInfo key — owner.public_key stays empty and the node keeps its MAC-derived num — so the two nodes never exchange keys. Combined with the firmware refusing non-PKI DMs ('Unknown public key for destination ... refusing to send legacy DM'), the DM is NAK'd with NO_CHANNEL. A firmware/sim limitation; DMs work on real hardware. Spec stays fixme. * docs(e2e): definitive DM root cause (SimRadio PKC payload limit) Per the steer to research the firmware: PKI keygen is gated on a set LoRa region (NodeDB.cpp:3051) and the sim boots region-UNSET — setting lora.region via admin DOES make the nodes generate and exchange keys (verified both ways). But a PKI-encrypted DM still can't traverse the SimRadio: the PKC overhead exceeds its payload limit ('Payload size larger than compressed message allows! Send empty payload'), so the packet is truncated and the receiver NAKs NO_CHANNEL ('No suitable channel found for decoding, hash 0x0'). The firmware skips PKC under --sim (Router.cpp:730) for exactly this reason, but --sim also disables the config-file loading the web app needs, so they're mutually exclusive. DMs work on real hardware; spec stays fixme with this detail. --------- Co-authored-by: Dan Ditomaso <dan.ditomaso@gmail.com>
58 lines
1.7 KiB
TypeScript
58 lines
1.7 KiB
TypeScript
import { defineConfig, devices } from "@playwright/test";
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/**
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* End-to-end suite that drives the real web app against a REAL Meshtastic device
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* (a simulated `meshtasticd` node by default, or physical hardware) over the
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* HTTP(S) phone API, and exercises text messaging across a two-node mesh.
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*
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* Topology is brought up in e2e/global-setup.ts. The off-browser "mesh peer"
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* (e2e/peer/peer.py) drives/asserts the second node. See e2e/README.md.
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*/
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const WEB_PORT = Number(process.env.E2E_WEB_PORT ?? 3100);
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export default defineConfig({
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testDir: "./e2e/tests",
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outputDir: "./e2e/.results",
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globalSetup: "./e2e/global-setup.ts",
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globalTeardown: "./e2e/global-teardown.ts",
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// Tests share a single two-node mesh + one device identity, so run serially.
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fullyParallel: false,
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workers: 1,
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forbidOnly: !!process.env.CI,
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retries: process.env.CI ? 1 : 0,
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timeout: 90_000,
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expect: { timeout: 15_000 },
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reporter: [["list"], ["html", { outputFolder: "e2e/.report", open: "never" }]],
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use: {
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baseURL: `http://localhost:${WEB_PORT}`,
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// The device webserver uses a self-signed cert (TLS-only on 9443).
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ignoreHTTPSErrors: true,
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trace: "on-first-retry",
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screenshot: "only-on-failure",
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video: "retain-on-failure",
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},
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projects: [
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{
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name: "chromium",
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use: {
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...devices["Desktop Chrome"],
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// Belt-and-suspenders for the device's self-signed cert.
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launchOptions: { args: ["--ignore-certificate-errors"] },
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},
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},
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],
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webServer: {
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command: `pnpm --filter ./apps/web exec vite --port ${WEB_PORT} --strictPort`,
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url: `http://localhost:${WEB_PORT}`,
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reuseExistingServer: !process.env.CI,
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timeout: 120_000,
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stdout: "ignore",
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stderr: "pipe",
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},
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});
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