## Summary
Adds a Sergii-specific smoke test that validates the **Sergii Review
Batch** project surfaces (Linear project `Sergii Review Batch` — TRU-68,
TRU-72, TRU-75) are still functioning on the deployed truckwash.io
dashboard after a release. The test runs in the existing deploy workflow
alongside the generic smoke test and triggers auto-rollback if it fails.
## Why
TRU-96 ("SENERE 4: Deploy Sergii changes to truckwash.io dashboard (test
that it works first)") calls for deploying Sergii's batch of changes to
production with a test-first gate. The current generic
`scripts/smoke-test.sh` only covers `/login`, `/healthz`, and the public
self-serve vehicle step — it does not probe any of the Sergii-touch
surfaces. This PR closes that gap.
## What ships
| File | Purpose |
|---|---|
| `scripts/smoke-test-sergii.sh` | New release-gate smoke test covering
the Sergii Review Batch surfaces |
| `.github/workflows/deploy.yml` | Runs the Sergii smoke test after the
generic one, triggers auto-rollback if it fails, distinguishes failure
modes in the Slack status message |
| `tests/unit/smoke-test-sergii.spec.js` | 9 vitest assertions that lock
the script content and the deploy.yml wiring (prevents accidental
removal of the Sergii release gate) |
## Surfaces covered
- **TRU-72 — Sergii's pages 6-10 review** (`/admin/customer`,
`/admin/product`, `/admin/order`, `/admin/booking`, `/admin/invoicing`)
— must not 5xx.
- **TRU-68 — Sergii's customer email flow** (`/api/customer`,
`/kundeoprettelse`) — must remain 2xx.
- **TRU-75 — Sergii's UVS option** (`/self-serve/program`,
`/self-serve/vehicle`) — must remain 2xx.
- **Dashboard bootstrap sanity** (`/healthz`, `/api/ping`, `/login`) —
the generic smoke test also covers these, but the Sergii script
re-checks to fail-fast on a totally broken deploy.
## Behaviour
- Defaults to `https://staging.truckwash.io` and respects
`SMOKE_BASE_URL` and `SMOKE_TIMEOUT` env vars.
- Exits 0 on all-pass, 1 on any failure.
- `continue-on-error: true` on the workflow step so a failure does not
mask the actual deploy step outcome — the auto-rollback step separately
keys off the Sergii step outcome.
- No authenticated calls, so the test is safe to run unattended in the
deploy workflow.
## Test
```
npx vitest run tests/unit/smoke-test-sergii.spec.js
```
→ **9/9 passed** in 487ms.
## Linked Linear issues
- TRU-96 — https://linear.app/truck-wash-aps/issue/TRU-96 (this PR)
- TRU-68, TRU-72, TRU-75 — covered by the new smoke test
---------
Co-authored-by: Pleno Bugfix Bot <bugfix-bot@pleno.local>
Co-authored-by: Truck Wash Bugfix <bugfix@truckwash.io>
truckwashdashboardsfrontend
This template should help get you started developing with Vue 3 in Vite.
Recommended IDE Setup
VSCode + Volar (and disable Vetur).
Customize configuration
See Vite Configuration Reference.
Project Setup
npm install
Contributing Changes
Create a scoped feature branch, push it, and open a pull request targeting
master. Do not push directly to master. Merge only after the Required CI
check succeeds, all review conversations are resolved, and the branch is up to
date. Use squash merge so master retains linear history.
See .github/BRANCH_PROTECTION.md for the
repository policy, rollout checks, and emergency bypass procedure.
Compile and Hot-Reload for Development
npm run dev
By default, the Vite dev server proxies /api/* to the remote stable API at
https://api-v2.truckwash.io/master/api. This lets the Vue app run locally
without a local PHP API container.
To develop against a local PHP API instead:
$env:VITE_API_PROXY_TARGET="http://localhost"; npm run dev
To use another remote API route:
$env:VITE_API_PROXY_BASE_PATH="/canary/api"; npm run dev
TLS certificate validation is enabled for proxied HTTPS APIs by default. If you are using a trusted local HTTPS API with a self-signed certificate, you can opt out explicitly:
$env:VITE_API_PROXY_TARGET="https://local-api.test"; $env:VITE_API_PROXY_SECURE="false"; npm run dev
For compatible local gateways that expect the /api prefix to be preserved:
$env:VITE_API_PROXY_TARGET="http://localhost"; $env:VITE_API_PROXY_STRIP_PREFIX="false"; npm run dev
Compile and Minify for Production
npm run build
Playwright Batched Chromium Runs
Run default e2e tests in deterministic 25-test shards across chromium-desktop and chromium-mobile:
npm run test:e2e:batched:chromium
Run the same flow and automatically re-run failed shards with PLAYWRIGHT_WORKERS=1:
npm run test:e2e:batched:chromium:rerun-failed
Optional overrides:
PLAYWRIGHT_BATCH_SIZE=25
PLAYWRIGHT_BATCH_WORKERS=2
PLAYWRIGHT_BATCH_DEV_PORT=5193
You can also forward Playwright args:
npm run test:e2e:batched:chromium -- --grep @smoke
Artifacts and summaries:
output/playwright/batched-chromium/last-run.jsonoutput/playwright/batched-chromium/failed-shards.jsonoutput/playwright/batched-chromium/report-index.htmloutput/playwright/batched-chromium-shard-<i>-of-<n>/report/index.htmloutput/playwright/batched-chromium-rerun-shard-<i>-of-<n>/report/index.html
Playwright Full E2E
Run the permanent grouped full-suite entrypoint with a hard max of 5 total workers across the browser-engine groups:
- Chromium
- WebKit
- Firefox
npm run test:e2e:ci
The full CI matrix is ordered by browser engine, then device class, then user role:
- browsers:
chromium,webkit,firefox - devices:
mobile,desktop,tablet - roles:
superuser,admin,customer,subuser
Run a single full-suite slice for one role and one Playwright project:
npm run test:e2e:full:slice -- --role=admin --project=webkit-tablet
Default worker allocation:
PLAYWRIGHT_PARALLEL_WORKERS_CHROMIUM=2
PLAYWRIGHT_PARALLEL_WORKERS_FIREFOX=1
PLAYWRIGHT_PARALLEL_WORKERS_WEBKIT=1
Optional overrides:
PLAYWRIGHT_PARALLEL_BASE_PORT=5191
PLAYWRIGHT_PARALLEL_WORKERS_CHROMIUM=2
PLAYWRIGHT_PARALLEL_WORKERS_FIREFOX=1
PLAYWRIGHT_PARALLEL_WORKERS_WEBKIT=1
The runner fails fast if the combined worker count exceeds 5.
GitHub Actions keeps the full browser/device/role matrix stable by capping full-suite
matrix parallelism at 2 jobs, running each full slice with PLAYWRIGHT_WORKERS=1,
wrapping Docker Playwright runs with systemd-inhibit when available, and setting
PLAYWRIGHT_VIDEO_MODE=off for the full matrix. The E2E network harness serves
Font Awesome from local fixtures so WebKit page loads and visual snapshots do not
depend on CDN/TLS availability. Traces and screenshots are still retained on
failure.
Artifacts and summaries:
output/playwright/ci-parallel-report/index.htmloutput/playwright/ci-parallel-chromium/report/index.htmloutput/playwright/ci-parallel-firefox/report/index.htmloutput/playwright/ci-parallel-webkit/report/index.htmloutput/playwright/test-lists/<project>-<role>.txtoutput/playwright/test-lists/<role>-<project>.txt(legacy compatibility copy)
Android App Icon
The Play Store Android package is built from the Capacitor project in android/.
The legacy Bubblewrap/TWA project at the repository root is not used by
npm run mobile:android:bundle.
The native launcher and store icons use the opaque iOS marketing icon as their shared master so Android and iOS keep the same white background:
ios/App/App/Assets.xcassets/AppIcon.appiconset/AppIcon-1024.png
Regenerate the checked-in launcher assets after changing that source image:
npm run mobile:android:icons
Check that the generated Android launcher assets are current:
npm run mobile:android:icons:check
npm run mobile:android:sync runs the icon generator before building and syncing
the Capacitor Android project. The generator updates android/app/src/main/res
launcher assets, public/icons/icon-192x192.png, public/icons/icon-512x512.png,
and store_icon.png.
Mobile Store Releases
Signed Android and iOS store artifacts are built through the GitHub Actions
Mobile Store Artifacts workflow. By default, current master after green
Automated Tests uploads Android to Google Play production and uploads iOS to
App Store Connect.
See docs/mobile-artifacts.md for workflow triggers, required secrets, and
local mobile checks. See docs/app-store-release.md for App Store Connect
release preparation and review notes. For a separate development-signed IPA
that can be installed on an approved iPhone from Ubuntu over USB, see
docs/ios-device-debug.md.
Bubblewrap (TWA) Build and Install
To build and install the Trusted Web Activity (TWA) using Bubblewrap, use the following commands:
Build the TWA
bubblewrap build
Install the TWA on a connected device
bubblewrap install