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webapp-testing

Complete testing toolkit for web applications - backend pytest, E2E Playwright, performance profilin

作者 ak-eyther|オープンソース

Web Application Testing

Quick Reference

NeedSection
Test FastAPI endpointsBackend Testing
Test UI flows in browserE2E Testing
Measure performance/CWVPerformance Testing
Automate local webappsLocal Automation

Project URLs + Auth (fill in from codex/PROJECT_CONTEXT.md)

  • Local UI: {{LOCAL_UI_URL}}
  • Staging UI: {{STAGING_UI_URL}}
  • Production App UI: {{APP_UI_URL}}
  • Production Marketing UI: {{MARKETING_URL}}
  • Auth paths: {{AUTH_PATHS}}
  • Role checks: document any gated routes (e.g., /admin)
  • Playwright base URL: set PLAYWRIGHT_TEST_BASE_URL to target staging/prod

1. Backend Testing (pytest)

Basic Test

import pytest
from fastapi.testclient import TestClient
from app.main import app

client = TestClient(app)

def test_read_user():
    response = client.get("/users/1")
    assert response.status_code == 200
    assert response.json()["id"] == 1

Fixtures

@pytest.fixture
def db_session():
    session = SessionLocal()
    try:
        yield session
    finally:
        session.close()

@pytest.fixture
def test_user(db_session):
    user = User(email="test@example.com")
    db_session.add(user)
    db_session.commit()
    return user

def test_get_user(test_user):
    response = client.get(f"/users/{test_user.id}")
    assert response.json()["email"] == "test@example.com"

Async Tests

import pytest
from httpx import AsyncClient

@pytest.mark.asyncio
async def test_async_endpoint():
    async with AsyncClient(app=app, base_url="http://test") as ac:
        response = await ac.get("/users/1")
    assert response.status_code == 200

Database Test Isolation

@pytest.fixture(scope="function")
def db_session():
    connection = engine.connect()
    transaction = connection.begin()
    session = Session(bind=connection)

    yield session

    session.close()
    transaction.rollback()  # Rollback after each test
    connection.close()

Mocking External APIs

from unittest.mock import patch, MagicMock

@patch('app.services.external_api.fetch_data')
def test_external_api_call(mock_fetch):
    mock_fetch.return_value = {"data": "mocked"}

    response = client.get("/external-data")
    assert response.json() == {"data": "mocked"}
    mock_fetch.assert_called_once()

Parametrized Tests

@pytest.mark.parametrize("email,expected_valid", [
    ("test@example.com", True),
    ("invalid-email", False),
    ("@example.com", False),
])
def test_email_validation(email, expected_valid):
    is_valid = validate_email(email)
    assert is_valid == expected_valid

2. E2E Testing (Playwright)

Basic Test

from playwright.sync_api import sync_playwright

def test_user_can_login():
    with sync_playwright() as p:
        browser = p.chromium.launch(headless=True)
        page = browser.new_page()

        page.goto('http://localhost:3000/sign-in')
        page.fill('[name="email"]', 'user@example.com')
        page.fill('[name="password"]', 'password123')
        page.click('button[type="submit"]')

        page.wait_for_url('**/dashboard**')
        assert 'Welcome' in page.locator('h1').text_content()

        browser.close()

Page Object Model

class LoginPage:
    def __init__(self, page):
        self.page = page

    def goto(self):
        self.page.goto('/sign-in')

    def login(self, email: str, password: str):
        self.page.fill('[name="email"]', email)
        self.page.fill('[name="password"]', password)
        self.page.click('button[type="submit"]')

    def is_logged_in(self) -> bool:
        return '/dashboard' in self.page.url

# Usage in test
def test_login_flow():
    with sync_playwright() as p:
        browser = p.chromium.launch(headless=True)
        page = browser.new_page()

        login_page = LoginPage(page)
        login_page.goto()
        login_page.login('user@example.com', 'password123')

        assert login_page.is_logged_in()
        browser.close()

Visual Regression

def test_homepage_looks_correct():
    with sync_playwright() as p:
        browser = p.chromium.launch(headless=True)
        page = browser.new_page()
        page.goto('http://localhost:3000')
        page.wait_for_load_state('networkidle')

        # Take screenshot for comparison
        page.screenshot(path='screenshots/homepage.png')

        # Compare with baseline (using external tool like pixelmatch)
        # Or use pytest-playwright's built-in comparison
        browser.close()

Authenticated Fixture Pattern

import pytest
from playwright.sync_api import sync_playwright

@pytest.fixture
def authenticated_page():
    with sync_playwright() as p:
        browser = p.chromium.launch(headless=True)
        page = browser.new_page()

        # Perform login
        page.goto('/sign-in')
        page.fill('[name="email"]', 'user@example.com')
        page.fill('[name="password"]', 'password123')
        page.click('button[type="submit"]')
        page.wait_for_url('**/dashboard**')

        yield page
        browser.close()

def test_dashboard_shows_data(authenticated_page):
    assert authenticated_page.locator('h1').text_content() == 'Dashboard'

3. Performance Testing

Lighthouse CI

# Install
npm install -D @lhci/cli

# Run lighthouse
lhci autorun
// lighthouserc.js
module.exports = {
  ci: {
    collect: {
      url: ['http://localhost:3000'],
      numberOfRuns: 3,
    },
    assert: {
      preset: 'lighthouse:recommended',
      assertions: {
        'categories:performance': ['error', { minScore: 0.9 }],
        'categories:accessibility': ['error', { minScore: 0.9 }],
      },
    },
  },
}

Core Web Vitals (Python)

def test_page_meets_core_web_vitals():
    with sync_playwright() as p:
        browser = p.chromium.launch(headless=True)
        page = browser.new_page()
        page.goto('http://localhost:3000')

        # Measure Core Web Vitals via JS
        metrics = page.evaluate('''() => {
            return new Promise((resolve) => {
                const results = {};

                new PerformanceObserver((list) => {
                    for (const entry of list.getEntries()) {
                        if (entry.entryType === 'largest-contentful-paint') {
                            results.lcp = entry.startTime;
                        }
                        if (entry.entryType === 'layout-shift' && !entry.hadRecentInput) {
                            results.cls = (results.cls || 0) + entry.value;
                        }
                    }
                    if (results.lcp) resolve(results);
                }).observe({ entryTypes: ['largest-contentful-paint', 'layout-shift'] });

                // Timeout fallback
                setTimeout(() => resolve(results), 5000);
            });
        }''')

        # Good LCP < 2.5s, Good CLS < 0.1
        assert metrics.get('lcp', 0) < 2500, f"LCP too slow: {metrics['lcp']}ms"
        assert metrics.get('cls', 0) < 0.1, f"CLS too high: {metrics['cls']}"

        browser.close()

Performance Budget

// budget.json
[
  {
    "path": "/*",
    "resourceSizes": [
      { "resourceType": "script", "budget": 300 },
      { "resourceType": "total", "budget": 500 }
    ]
  }
]

4. Local Webapp Automation

Helper Scripts Available:

  • scripts/with_server.py - Manages server lifecycle (supports multiple servers)

Always run scripts with --help first to see usage. DO NOT read the source until you try running the script first.

Decision Tree: Choosing Your Approach

User task --> Is it static HTML?
    |-- Yes --> Read HTML file directly to identify selectors
    |           |-- Success --> Write Playwright script using selectors
    |           +-- Fails/Incomplete --> Treat as dynamic (below)
    |
    +-- No (dynamic webapp) --> Is the server already running?
        |-- No --> Run: python scripts/with_server.py --help
        |          Then use the helper + write simplified Playwright script
        |
        +-- Yes --> Reconnaissance-then-action:
            1. Navigate and wait for networkidle
            2. Take screenshot or inspect DOM
            3. Identify selectors from rendered state
            4. Execute actions with discovered selectors

Using with_server.py

Single server:

python scripts/with_server.py --server "npm run dev" --port 5173 -- python your_automation.py

Multiple servers (e.g., backend + frontend):

python scripts/with_server.py \
  --server "cd backend && python server.py" --port 3000 \
  --server "cd frontend && npm run dev" --port 5173 \
  -- python your_automation.py

Automation Script Template

from playwright.sync_api import sync_playwright

with sync_playwright() as p:
    browser = p.chromium.launch(headless=True)
    page = browser.new_page()
    page.goto('http://localhost:5173')
    page.wait_for_load_state('networkidle')  # CRITICAL: Wait for JS

    # ... your automation logic

    browser.close()

Reconnaissance-Then-Action Pattern

  1. Inspect rendered DOM:

    page.screenshot(path='/tmp/inspect.png', full_page=True)
    content = page.content()
    buttons = page.locator('button').all()
    
  2. Identify selectors from inspection results

  3. Execute actions using discovered selectors

Common Pitfall

  • Don't inspect the DOM before waiting for networkidle on dynamic apps
  • Do wait for page.wait_for_load_state('networkidle') before inspection

Best Practices

  • Use sync_playwright() for synchronous scripts
  • Always close the browser when done
  • Use descriptive selectors: text=, role=, CSS selectors, or IDs
  • Add appropriate waits: page.wait_for_selector() or page.wait_for_timeout()

Reference Files

  • examples/ - Common patterns:
    • element_discovery.py - Discovering buttons, links, and inputs on a page
    • static_html_automation.py - Using file:// URLs for local HTML
    • console_logging.py - Capturing console logs during automation

Scripts

  • scripts/skill_info.py: Print skill name and description.