Learn Python Coding
Learn Python through simple, practical examples and real coding ideas. Clear explanations, useful snippets, and hands-on learning for anyone starting or improving their programming skills. Admin: @HusseinSheikho || @Hussein_Sheikho
نمایش بیشتر📈 تحلیل کانال تلگرام Learn Python Coding
کانال Learn Python Coding (@pythonre) در بخش زبانی انگلیسی بازیگری فعال است. در حال حاضر جامعه شامل 40 123 مشترک است و جایگاه 3 250 را در دسته فناوری و برنامهها و رتبه 9 587 را در منطقه الهند دارد.
📊 شاخصهای مخاطب و پویایی
از زمان ایجاد در невідомо، پروژه رشد سریعی داشته و 40 123 مشترک جذب کرده است.
بر اساس آخرین دادهها در تاریخ 01 سپتامبر, 2026، کانال فعالیت پایداری دارد. در ۳۰ روز گذشته تغییر اعضا برابر 146 و در ۲۴ ساعت گذشته برابر 9 بوده و همچنان دسترسی گستردهای حفظ شده است.
- وضعیت تأیید: تأیید نشده
- نرخ تعامل (ER): میانگین تعامل مخاطب 1.86% است و در ۲۴ ساعت نخست پس از انتشار، محتوا معمولاً 1.08% واکنش نسبت به کل مشترکان کسب میکند.
- دسترسی پستها: هر پست به طور میانگین 748 بازدید دریافت میکند. در اولین روز معمولاً 435 بازدید جمعآوری میشود.
- واکنشها و تعامل: مخاطبان بهطور فعال حمایت میکنند؛ میانگین واکنش به هر پست 2 است.
- علایق موضوعی: محتوا بر موضوعات کلیدی مانند math, harvard, oxford, supervision, waybienad تمرکز دارد.
📝 توضیح و سیاست محتوایی
نویسنده این فضا را محل بیان دیدگاههای شخصی توصیف میکند:
“Learn Python through simple, practical examples and real coding ideas. Clear explanations, useful snippets, and hands-on learning for anyone starting or improving their programming skills.
Admin: @HusseinSheikho || @Hussein_Sheikho”
به لطف بهروزرسانیهای پرتکرار (آخرین داده در تاریخ 02 سپتامبر, 2026)، کانال همواره بهروز و دارای دسترسی بالاست. تحلیلها نشان میدهد مخاطبان بهطور فعال با محتوا تعامل دارند و آن را به نقطه اثرگذاری مهم در دسته فناوری و برنامهها تبدیل کردهاند.
def find_max(numbers):
max_num = numbers[0]
for num in numbers:
if num > max_num:
max_num = num
return max_num
numbers = [4, 2, 9, 7, 5, 6]
print(find_max(numbers))
# Вывод: 9
Гениальный способ 👇
def find_max(numbers):
return max(numbers)
numbers = [4, 2, 9, 7, 5, 6]
print(find_max(numbers))
# Вывод: 9
👉 @DataScience4# Example QSS Styling
app.setStyleSheet("""
QPushButton {
background-color: #4CAF50;
border-radius: 4px;
padding: 8px;
}
QLineEdit:focus {
border: 2px solid #2196F3;
}
""")
Which resource to choose?
- Beginners: Start with ZetCode or Real Python tutorials
- Intermediate: Build projects using PyQt5 Boilerplate
- Advanced: Study the Qt source code and contribute to PyQtGraph
Happy coding! 🚀pyqt5-tools package)
- Drag-and-drop UI builder (generates .ui files)
- *Tip:* Convert .ui to Python with:
pyuic5 input.ui -o output.py
10. Eric IDE
- Full-featured Python IDE built with PyQt5
- Includes Qt Designer integration and debugger
- Download here
---
### 💡 Advanced Learning
11. PyQtGraph
- High-performance data visualization library built on PyQt5
- *Best for:* Scientific applications and real-time plotting
12. PyQt6 Migration Guide
- Essential if planning to upgrade to PyQt6
- *Key changes:* Enums, QAction initialization
13. Qt Examples Repository
- Clone the official Qt examples and port them to PyQt5:
git clone https://code.qt.io/cgit/qt/qtbase.git --branch=5.15
---
### 🎥 Video Resources
14. Python GUIs YouTube Channel
- Free tutorials on PyQt5/PySide2
- *Highlights:* Custom widget tutorials and modern UI techniques
15. FreeCodeCamp PyQt5 Course
- 5-hour comprehensive free course
- *Best for:* Learners who prefer long-form video content
---
### 🌐 Communities
16. Stack Overflow [pyqt] Tag
- Over 30k answered questions
- *Pro tip:* Search with [pyqt] is:answered
17. /r/pyqt on Reddit
- Active community for troubleshooting and sharing projects
18. PyQt Discord Server
- Real-time help from experienced developers
- Invite link: Python GUIs Discord
---
### 🔧 Project Templates
19. PyQt5 Boilerplate
- Pre-configured project with:
- MVC structure
- QSS styling
- Resource management
20. PyQt5-Starter-Template
- Includes:
- Dark/light theme toggle
- High DPI support
- Logging setup
---def is_dark_mode():
if sys.platform == "darwin":
# MacOS dark mode detection
process = subprocess.Popen(
["defaults", "read", "-g", "AppleInterfaceStyle"],
stdout=subprocess.PIPE, stderr=subprocess.PIPE)
out, _ = process.communicate()
return out.strip() == b"Dark"
elif sys.platform == "win32":
# Windows 10+ dark mode detection
try:
import winreg
key = winreg.OpenKey(
winreg.HKEY_CURRENT_USER,
r"Software\Microsoft\Windows\CurrentVersion\Themes\Personalize")
value, _ = winreg.QueryValueEx(key, "AppsUseLightTheme")
return value == 0
except:
return False
else:
return False # Default to light mode on other platforms
---
## 🔹 Practical Example: Plugin-Based Text Editor
class TextEditor(QMainWindow):
def __init__(self):
super().__init__()
self.plugins = []
self.setup_ui()
self.load_plugins()
def setup_ui(self):
# Core editor
self.editor = QPlainTextEdit()
self.setCentralWidget(self.editor)
# Plugin toolbar
self.plugin_toolbar = QToolBar("Plugins")
self.addToolBar(Qt.LeftToolBarArea, self.plugin_toolbar)
# Plugin menu
self.plugin_menu = self.menuBar().addMenu("Plugins")
def load_plugins(self):
plugin_dir = os.path.join(os.path.dirname(__file__), "plugins")
if not os.path.exists(plugin_dir):
return
for filename in os.listdir(plugin_dir):
if filename.endswith('.py'):
try:
spec = importlib.util.spec_from_file_location(
f"plugins.{filename[:-3]}",
os.path.join(plugin_dir, filename))
module = importlib.util.module_from_spec(spec)
spec.loader.exec_module(module)
for name, obj in inspect.getmembers(module):
if (inspect.isclass(obj) and
issubclass(obj, BasePlugin) and
obj != BasePlugin):
plugin = obj(self)
plugin.initialize()
self.plugins.append(plugin)
# Add to UI
if hasattr(plugin, 'get_toolbar_widget'):
self.plugin_toolbar.addWidget(
plugin.get_toolbar_widget())
if hasattr(plugin, 'get_menu_action'):
self.plugin_menu.addAction(
plugin.get_menu_action())
except Exception as e:
print(f"Failed to load plugin {filename}: {e}")
class BasePlugin:
def __init__(self, editor):
self.editor = editor
def initialize(self):
raise NotImplementedError
---
## 🔹 Best Practices for Production Apps
1. Error Handling
- Implement comprehensive logging
- Use sentry.io for crash reporting
- Create recovery mechanisms
2. Update Strategy
- Implement delta updates
- Support rollback capability
- Verify digital signatures
3. Accessibility
- Set proper widget roles
- Support screen readers
- Ensure keyboard navigation
4. Security
- Sanitize all inputs
- Use HTTPS for network requests
- Secure sensitive data storage
5. Testing
- Unit tests for core logic
- UI tests with QTest
- Cross-platform testing matrix
---
### 🎉 Congratulations on Completing the Series!
You've now mastered:
1. PyQt5 Fundamentals
2. Advanced Widgets & Customization
3. Database Integration & MVC
4. Networking & Multimedia
5. Internationalization & Deployment
6. Advanced Architecture & Optimization
#PyQt5Mastery #ProfessionalGUI #PythonDevelopment 🚀class PluginWidget(QWidget):
def __init__(self, plugin, parent=None):
super().__init__(parent)
self.plugin = plugin
self.setup_ui()
def setup_ui(self):
layout = QVBoxLayout()
title = QLabel(f"Plugin: {self.plugin.name()}")
title.setStyleSheet("font-weight: bold; font-size: 16px;")
# Let plugin provide its UI
plugin_ui = self.plugin.get_ui()
layout.addWidget(title)
layout.addWidget(plugin_ui)
self.setLayout(layout)
# In main window
def load_plugin_uis(self):
for plugin in self.app.plugins:
tab = self.plugin_tabs.addTab(
PluginWidget(plugin), plugin.name())
---
## 🔹 Performance Optimization
### 1. Lazy Loading
class LazyTabWidget(QTabWidget):
def __init__(self):
super().__init__()
self._loaded_tabs = set()
self.currentChanged.connect(self._load_current_tab)
def addTab(self, widget, label):
super().addTab(QLabel("Loading..."), label)
self.setTabData(self.count()-1, widget)
def _load_current_tab(self, index):
if index not in self._loaded_tabs:
widget = self.tabData(index)
self._loaded_tabs.add(index)
self.removeTab(index)
self.insertTab(index, widget, widget.windowTitle())
self.setCurrentIndex(index)
### 2. Efficient Data Handling
class LargeDataModel(QAbstractTableModel):
def __init__(self, data_source):
super().__init__()
self._data_source = data_source # Should implement chunked loading
def rowCount(self, parent=None):
return self._data_source.total_rows()
def columnCount(self, parent=None):
return self._data_source.total_columns()
def data(self, index, role=Qt.DisplayRole):
if not index.isValid() or role != Qt.DisplayRole:
return None
# Load only visible data
if self._data_source.is_loaded(index.row(), index.column()):
return self._data_source.get_data(index.row(), index.column())
else:
# Trigger background loading
self._data_source.request_data(index.row(), index.column())
return "Loading..."
### 3. Memory Management
class ResourceManager:
_instance = None
def __init__(self):
self._resources = {}
self._cache = LRUCache(maxsize=100) # Custom LRU cache
def get_image(self, path):
if path in self._cache:
return self._cache[path]
pixmap = QPixmap(path)
if not pixmap.isNull():
self._cache[path] = pixmap
return pixmap
return None
def cleanup(self):
self._cache.clear()
# Usage
image = ResourceManager.instance().get_image("large_image.png")
---
## 🔹 Cross-Platform Considerations
### 1. Platform-Specific Code
class PlatformUtils:
@staticmethod
def get_config_path():
if sys.platform == "win32":
return os.path.join(os.environ["APPDATA"], "MyApp")
elif sys.platform == "darwin":
return os.path.expanduser("~/Library/Application Support/MyApp")
else: # Linux/Unix
return os.path.expanduser("~/.config/MyApp")
@staticmethod
def open_file_browser(path):
if sys.platform == "win32":
os.startfile(path)
elif sys.platform == "darwin":
subprocess.run(["open", path])
else:
subprocess.run(["xdg-open", path])
### 2. High DPI Support
if hasattr(Qt, 'AA_EnableHighDpiScaling'):
QApplication.setAttribute(Qt.AA_EnableHighDpiScaling, True)
if hasattr(Qt, 'AA_UseHighDpiPixmaps'):
QApplication.setAttribute(Qt.AA_UseHighDpiPixmaps, True)
# In main QApplication
app = QApplication([])
app.setAttribute(Qt.AA_UseStyleSheetPropagationInWidgetStyles, True)from PyQt5.QtCore import QObject, pyqtProperty, pyqtSignal
class ViewModel(QObject):
data_changed = pyqtSignal()
def __init__(self):
super().__init__()
self._username = ""
self._password = ""
@pyqtProperty(str, notify=data_changed)
def username(self):
return self._username
@username.setter
def username(self, value):
if self._username != value:
self._username = value
self.data_changed.emit()
@pyqtProperty(str, notify=data_changed)
def password(self):
return self._password
@password.setter
def password(self, value):
if self._password != value:
self._password = value
self.data_changed.emit()
# View binds to ViewModel properties
view_model = ViewModel()
username_edit = QLineEdit()
username_edit.textChanged.connect(view_model.setUsername)
view_model.data_changed.connect(
lambda: username_edit.setText(view_model.username))
### 2. Dependency Injection Container
class Container:
_instance = None
def __init__(self):
self._services = {}
def register(self, name, service):
self._services[name] = service
def resolve(self, name):
return self._services.get(name)
@classmethod
def instance(cls):
if cls._instance is None:
cls._instance = Container()
return cls._instance
# Usage
container = Container.instance()
container.register('database', DatabaseService())
container.register('api', ApiClient())
# In other classes
db_service = container.resolve('database')
### 3. Event Bus Pattern
from PyQt5.QtCore import QObject, pyqtSignal
class EventBus(QObject):
app_started = pyqtSignal()
user_logged_in = pyqtSignal(str) # username
data_loaded = pyqtSignal(dict)
_instance = None
@classmethod
def instance(cls):
if cls._instance is None:
cls._instance = EventBus()
return cls._instance
# Publisher
EventBus.instance().user_logged_in.emit("john_doe")
# Subscriber
EventBus.instance().user_logged_in.connect(
lambda username: print(f"User {username} logged in"))
---
## 🔹 Plugin System Implementation
### 1. Plugin Architecture
# Plugin Interface
class IPlugin:
def initialize(self, app):
raise NotImplementedError
def name(self):
raise NotImplementedError
# Main Application
class Application:
def __init__(self):
self.plugins = []
def load_plugins(self, plugin_dir):
for filename in os.listdir(plugin_dir):
if filename.endswith('.py'):
module_name = filename[:-3]
spec = importlib.util.spec_from_file_location(
module_name, os.path.join(plugin_dir, filename))
module = importlib.util.module_from_spec(spec)
spec.loader.exec_module(module)
for item in dir(module):
obj = getattr(module, item)
if (isinstance(obj, type) and
issubclass(obj, IPlugin) and
obj != IPlugin):
plugin = obj()
plugin.initialize(self)
self.plugins.append(plugin)
# Example Plugin
class WeatherPlugin(IPlugin):
def initialize(self, app):
self.app = app
print(f"WeatherPlugin initialized for {app}")
def name(self):
return "Weather Plugin"class WeatherApp(QMainWindow):
def __init__(self):
super().__init__()
self.api_key = "YOUR_API_KEY"
self.setup_ui()
self.setup_network()
def setup_ui(self):
self.setWindowTitle(self.tr("Weather App"))
# Location Input
self.location_input = QLineEdit()
search_btn = QPushButton(self.tr("Search"))
search_btn.clicked.connect(self.fetch_weather)
# Weather Display
self.weather_icon = QLabel()
self.weather_icon.setAlignment(Qt.AlignCenter)
self.temp_label = QLabel()
self.temp_label.setAlignment(Qt.AlignCenter)
font = self.temp_label.font()
font.setPointSize(48)
self.temp_label.setFont(font)
self.details_label = QLabel()
self.details_label.setAlignment(Qt.AlignCenter)
# Layout
input_layout = QHBoxLayout()
input_layout.addWidget(self.location_input)
input_layout.addWidget(search_btn)
main_layout = QVBoxLayout()
main_layout.addLayout(input_layout)
main_layout.addWidget(self.weather_icon)
main_layout.addWidget(self.temp_label)
main_layout.addWidget(self.details_label)
container = QWidget()
container.setLayout(main_layout)
self.setCentralWidget(container)
def setup_network(self):
self.manager = QNetworkAccessManager()
self.manager.finished.connect(self.handle_weather_response)
self.icon_manager = QNetworkAccessManager()
self.icon_manager.finished.connect(self.handle_icon_response)
def fetch_weather(self):
location = self.location_input.text()
if not location:
return
url = f"https://api.openweathermap.org/data/2.5/weather?q={location}&appid={self.api_key}&units=metric"
self.manager.get(QNetworkRequest(QUrl(url)))
def handle_weather_response(self, reply):
if reply.error():
QMessageBox.warning(self, self.tr("Error"),
self.tr("Failed to fetch weather data"))
return
data = json.loads(reply.readAll().data().decode('utf-8'))
# Update UI
temp = data['main']['temp']
self.temp_label.setText(f"{temp}°C")
description = data['weather'][0]['description'].capitalize()
humidity = data['main']['humidity']
wind = data['wind']['speed']
self.details_label.setText(
self.tr(f"{description}\nHumidity: {humidity}%\nWind: {wind} m/s"))
# Fetch weather icon
icon_code = data['weather'][0]['icon']
icon_url = f"https://openweathermap.org/img/wn/{icon_code}@2x.png"
self.icon_manager.get(QNetworkRequest(QUrl(icon_url)))
def handle_icon_response(self, reply):
if not reply.error():
pixmap = QPixmap()
pixmap.loadFromData(reply.readAll())
self.weather_icon.setPixmap(pixmap.scaledToWidth(100))
---
## 🔹 Best Practices
1. Handle network errors gracefully - Always check reply.error()
2. Clean up resources - Call deleteLater() on network objects
3. Cache API responses - Reduce unnecessary network calls
4. Use QThread for intensive operations - Keep UI responsive
5. Test translations thoroughly - Verify all UI elements adapt
---
### 📌 What's Next?
In Final Part 6, we'll cover:
➡️ Advanced Architecture Patterns
➡️ Plugin Systems
➡️ Performance Optimization
➡️ Cross-Platform Considerations
#PyQt5 #Networking #Multimedia #Deployment 🚀
Practice Exercise:
1. Build a podcast player with download capability
2. Create a multilingual chat application
3. Implement an auto-updating stock tickerclass LanguageMenu(QMenu):
language_changed = pyqtSignal(str)
def __init__(self):
super().__init__("Language")
self.language_map = {
"English": "en",
"Français": "fr",
"Español": "es",
"中文": "zh"
}
for lang_name, lang_code in self.language_map.items():
action = self.addAction(lang_name)
action.triggered.connect(
lambda _, code=lang_code: self.language_changed.emit(code))
---
## 🔹 Deployment & Packaging
### 1. PyInstaller Configuration
# Create spec file
pyi-makespec --windowed --icon=app.ico --name MyApp main.py
# Add these to the spec file:
a = Analysis(
['main.py'],
datas=[
('translations/*.qm', 'translations'),
('images/*.png', 'images')
],
hiddenimports=['PyQt5.QtNetwork', 'PyQt5.QtMultimedia'],
hookspath=[],
runtime_hooks=[],
excludes=[],
win_no_prefer_redirects=False,
win_private_assemblies=False,
cipher=block_cipher
)
### 2. Creating Installers
Windows (NSIS):
pyinstaller --onefile --windowed --icon=app.ico main.py
makensis installer.nsi
MacOS (DMG):
pyinstaller --windowed --osx-bundle-identifier com.yourcompany.yourapp main.py
hdiutil create -volname "MyApp" -srcfolder dist/MyApp.app -ov MyApp.dmg
Linux (AppImage):
pyinstaller --onefile --windowed main.py
./appimagetool-x86_64.AppImage dist/MyApp.AppDir
### 3. Updating Mechanism
class Updater(QObject):
update_available = pyqtSignal(str)
update_downloaded = pyqtSignal(str)
def __init__(self):
super().__init__()
self.manager = QNetworkAccessManager()
self.manager.finished.connect(self.handle_response)
def check_for_updates(self):
request = QNetworkRequest(QUrl("https://api.example.com/version"))
self.manager.get(request)
def handle_response(self, reply):
if reply.error():
print("Update check failed:", reply.errorString())
return
latest_version = reply.readAll().data().decode('utf-8')
current_version = self.get_current_version()
if latest_version > current_version:
self.update_available.emit(latest_version)
def download_update(self):
# Implementation for downloading update package
pass
---from PyQt5.QtMultimedia import QMediaPlayer, QMediaContent
from PyQt5.QtMultimediaWidgets import QVideoWidget
class MediaPlayer(QWidget):
def __init__(self):
super().__init__()
self.player = QMediaPlayer()
self.setup_ui()
def setup_ui(self):
# Video display
video_widget = QVideoWidget()
# Controls
play_btn = QPushButton("Play")
pause_btn = QPushButton("Pause")
stop_btn = QPushButton("Stop")
volume_slider = QSlider(Qt.Horizontal)
volume_slider.setRange(0, 100)
volume_slider.setValue(50)
# Layout
control_layout = QHBoxLayout()
control_layout.addWidget(play_btn)
control_layout.addWidget(pause_btn)
control_layout.addWidget(stop_btn)
control_layout.addWidget(volume_slider)
main_layout = QVBoxLayout()
main_layout.addWidget(video_widget)
main_layout.addLayout(control_layout)
self.setLayout(main_layout)
# Connections
self.player.setVideoOutput(video_widget)
play_btn.clicked.connect(self.player.play)
pause_btn.clicked.connect(self.player.pause)
stop_btn.clicked.connect(self.player.stop)
volume_slider.valueChanged.connect(self.player.setVolume)
def load_file(self, path):
self.player.setMedia(QMediaContent(QUrl.fromLocalFile(path)))
### 2. Camera Capture
from PyQt5.QtMultimedia import QCamera, QCameraImageCapture
from PyQt5.QtMultimediaWidgets import QCameraViewfinder
class CameraApp(QWidget):
def __init__(self):
super().__init__()
self.camera = QCamera()
self.image_capture = QCameraImageCapture(self.camera)
self.setup_ui()
def setup_ui(self):
# Camera viewfinder
viewfinder = QCameraViewfinder()
self.camera.setViewfinder(viewfinder)
# Controls
capture_btn = QPushButton("Capture")
capture_btn.clicked.connect(self.capture_image)
# Layout
layout = QVBoxLayout()
layout.addWidget(viewfinder)
layout.addWidget(capture_btn)
self.setLayout(layout)
# Start camera
self.camera.start()
def capture_image(self):
timestamp = datetime.now().strftime("%Y%m%d_%H%M%S")
path = f"capture_{timestamp}.jpg"
self.image_capture.capture(path)
print(f"Image saved to {path}")
---
## 🔹 Internationalization (i18n)
### 1. Translation Setup
from PyQt5.QtCore import QTranslator, QLocale
class TranslatableApp(QApplication):
def __init__(self, argv):
super().__init__(argv)
self.translator = QTranslator()
# Load system language
locale = QLocale.system().name()
self.load_translation(locale)
def load_translation(self, lang):
# Remove old translator
self.removeTranslator(self.translator)
# Create new translator
self.translator = QTranslator()
if self.translator.load(f":/translations/app_{lang}.qm"):
self.installTranslator(self.translator)
return True
return False
# Mark strings for translation
self.label.setText(self.tr("Welcome to the application"))
### 2. Creating Translation Files
1. Mark strings with self.tr() or QObject.tr()
2. Extract strings:
pylupdate5 -verbose myapp.pro
3. Translate using Qt Linguist
4. Compile translations:
lrelease myapp.profrom PyQt5.QtNetwork import QNetworkRequest, QNetworkAccessManager
from PyQt5.QtCore import QUrl
class ApiClient(QObject):
response_received = pyqtSignal(str)
error_occurred = pyqtSignal(str)
def __init__(self):
super().__init__()
self.manager = QNetworkAccessManager()
self.manager.finished.connect(self.handle_response)
def fetch_data(self, url):
request = QNetworkRequest(QUrl(url))
self.manager.get(request)
def handle_response(self, reply):
if reply.error():
self.error_occurred.emit(reply.errorString())
else:
data = reply.readAll().data().decode('utf-8')
self.response_received.emit(data)
reply.deleteLater()
# Usage
client = ApiClient()
client.response_received.connect(lambda data: print("Received:", data))
client.error_occurred.connect(lambda err: print("Error:", err))
client.fetch_data("https://api.example.com/data")
### 2. WebSocket Communication
from PyQt5.QtWebSockets import QWebSocket
class WebSocketClient(QObject):
message_received = pyqtSignal(str)
connected = pyqtSignal()
disconnected = pyqtSignal()
def __init__(self):
super().__init__()
self.socket = QWebSocket()
self.socket.textMessageReceived.connect(self.message_received)
self.socket.connected.connect(self.connected)
self.socket.disconnected.connect(self.disconnected)
def connect_to_server(self, url):
self.socket.open(QUrl(url))
def send_message(self, message):
self.socket.sendTextMessage(message)
# Usage
ws_client = WebSocketClient()
ws_client.connect_to_server("ws://echo.websocket.org")
ws_client.message_received.connect(print)
### 3. TCP Socket Server
from PyQt5.QtNetwork import QTcpServer, QTcpSocket
class TcpServer(QObject):
new_connection = pyqtSignal(QTcpSocket)
def __init__(self):
super().__init__()
self.server = QTcpServer()
self.server.newConnection.connect(self.handle_new_connection)
def start(self, port=12345):
if not self.server.listen(QHostAddress.Any, port):
print("Server error:", self.server.errorString())
return False
print(f"Server started on port {port}")
return True
def handle_new_connection(self):
client = self.server.nextPendingConnection()
client.readyRead.connect(lambda: self.read_data(client))
client.disconnected.connect(client.deleteLater)
self.new_connection.emit(client)
def read_data(self, client):
data = client.readAll().data().decode('utf-8')
print("Received:", data)
client.write(f"Echo: {data}".encode())
---class ProgressBarDelegate(QStyledItemDelegate):
def paint(self, painter, option, index):
progress = index.data(Qt.DisplayRole)
# Draw background
painter.save()
painter.setPen(Qt.NoPen)
painter.setBrush(QColor("#e0e0e0"))
painter.drawRect(option.rect)
# Draw progress
if progress > 0:
width = option.rect.width() * progress / 100
progress_rect = QRectF(option.rect)
progress_rect.setWidth(width)
gradient = QLinearGradient(progress_rect.topLeft(), progress_rect.topRight())
gradient.setColorAt(0, QColor("#4CAF50"))
gradient.setColorAt(1, QColor("#2E7D32"))
painter.setBrush(QBrush(gradient))
painter.drawRect(progress_rect)
# Draw text
painter.setPen(QColor("#333"))
painter.drawText(option.rect, Qt.AlignCenter, f"{progress}%")
painter.restore()
# Usage
table = QTableView()
table.setItemDelegateForColumn(2, ProgressBarDelegate())
### 2. Custom Widget with QPainter
class GaugeWidget(QWidget):
def __init__(self, parent=None):
super().__init__(parent)
self.value = 0
self.min_value = 0
self.max_value = 100
def set_value(self, value):
self.value = max(self.min_value, min(value, self.max_value))
self.update()
def paintEvent(self, event):
painter = QPainter(self)
painter.setRenderHint(QPainter.Antialiasing)
# Draw background
rect = self.rect().adjusted(5, 5, -5, -5)
painter.setPen(QPen(QColor("#333"), 2)
painter.setBrush(QColor("#f5f5f5"))
painter.drawEllipse(rect)
# Draw gauge
angle = 180 * (self.value - self.min_value) / (self.max_value - self.min_value)
span_angle = -angle * 16 # 1/16th of a degree
pen = QPen(QColor("#FF5722"), 10)
pen.setCapStyle(Qt.RoundCap)
painter.setPen(pen)
painter.drawArc(rect, 180 * 16, span_angle)
# Draw text
font = painter.font()
font.setPointSize(20)
painter.setFont(font)
painter.drawText(rect, Qt.AlignCenter, f"{self.value}%")
---
## 🔹 Best Practices
1. Separate database logic from UI code
2. Use transactions for batch database operations
3. Optimize chart performance with limited data points
4. Follow MVC pattern for complex applications
5. Document custom widgets thoroughly
---
### 📌 What's Next?
In Part 5, we'll cover:
➡️ Networking & Web APIs
➡️ Multimedia Applications
➡️ Internationalization
➡️ Deployment & Packaging
#PyQt5 #Database #DataVisualization 🚀
Practice Exercise:
1. Build a sales dashboard with database-backed charts
2. Create a custom weather widget with API data
3. Implement an MVC-based inventory management system# Model
class DataModel(QObject):
data_changed = pyqtSignal(list)
def __init__(self):
super().__init__()
self._data = []
def load_data(self, source):
# Simulate data loading
self._data = [(i, random.randint(0, 100)) for i in range(10)]
self.data_changed.emit(self._data)
def get_data(self):
return self._data
# View
class DataView(QWidget):
def __init__(self, controller):
super().__init__()
self.controller = controller
self.table = QTableWidget()
layout = QVBoxLayout()
layout.addWidget(self.table)
self.setLayout(layout)
def update_view(self, data):
self.table.setRowCount(len(data))
self.table.setColumnCount(2)
for row, (x, y) in enumerate(data):
self.table.setItem(row, 0, QTableWidgetItem(str(x)))
self.table.setItem(row, 1, QTableWidgetItem(str(y)))
# Controller
class DataController:
def __init__(self):
self.model = DataModel()
self.view = DataView(self)
self.model.data_changed.connect(self.handle_data_change)
self.model.load_data("dummy_source")
def handle_data_change(self, data):
self.view.update_view(data)
def show_view(self):
self.view.show()
### 2. Advanced MVC with SQL
class SqlController:
def __init__(self):
self.db = setup_database() # From earlier example
self.model = QSqlTableModel()
self.model.setTable("contacts")
self.model.select()
self.view = ContactView(self)
def add_contact(self, name, email, phone):
record = self.model.record()
record.setValue("name", name)
record.setValue("email", email)
record.setValue("phone", phone)
return self.model.insertRecord(-1, record)
def delete_contact(self, row):
return self.model.removeRow(row)
class ContactView(QWidget):
def __init__(self, controller):
super().__init__()
self.controller = controller
self.setup_ui()
def setup_ui(self):
# Form setup
self.name_input = QLineEdit()
self.email_input = QLineEdit()
self.phone_input = QLineEdit()
add_btn = QPushButton("Add Contact")
add_btn.clicked.connect(self.on_add)
# Table setup
self.table = QTableView()
self.table.setModel(self.controller.model)
# Layout
form_layout = QFormLayout()
form_layout.addRow("Name:", self.name_input)
form_layout.addRow("Email:", self.email_input)
form_layout.addRow("Phone:", self.phone_input)
form_layout.addRow(add_btn)
main_layout = QVBoxLayout()
main_layout.addLayout(form_layout)
main_layout.addWidget(self.table)
self.setLayout(main_layout)
def on_add(self):
name = self.name_input.text()
email = self.email_input.text()
phone = self.phone_input.text()
if name:
if self.controller.add_contact(name, email, phone):
self.controller.model.submitAll()
self.clear_form()
def clear_form(self):
self.name_input.clear()
self.email_input.clear()
self.phone_input.clear()
---from PyQt5.QtChart import QChart, QChartView, QBarSet, QBarSeries, QBarCategoryAxis
class SalesChart(QWidget):
def __init__(self, data):
super().__init__()
self.chart = QChart()
self.chart.setTitle("Quarterly Sales")
self.chart.setAnimationOptions(QChart.SeriesAnimations)
self.setup_series(data)
self.setup_axes()
chart_view = QChartView(self.chart)
chart_view.setRenderHint(QPainter.Antialiasing)
layout = QVBoxLayout()
layout.addWidget(chart_view)
self.setLayout(layout)
def setup_series(self, data):
series = QBarSeries()
for product, values in data.items():
bar_set = QBarSet(product)
bar_set.append(values)
series.append(bar_set)
self.chart.addSeries(series)
def setup_axes(self):
categories = ["Q1", "Q2", "Q3", "Q4"]
axis_x = QBarCategoryAxis()
axis_x.append(categories)
self.chart.addAxis(axis_x, Qt.AlignBottom)
axis_y = QValueAxis()
axis_y.setRange(0, 1000)
self.chart.addAxis(axis_y, Qt.AlignLeft)
for series in self.chart.series():
series.attachAxis(axis_x)
series.attachAxis(axis_y)
### 2. Interactive Line Chart
from PyQt5.QtChart import QLineSeries, QValueAxis
class InteractiveChart(QChartView):
def __init__(self, data):
super().__init__()
self.series = QLineSeries()
self.series.setName("Data Series")
for point in data:
self.series.append(*point)
self.chart = QChart()
self.chart.addSeries(self.series)
self.chart.createDefaultAxes()
self.chart.setTitle("Interactive Chart")
self.setChart(self.chart)
self.setRubberBand(QChartView.RectangleRubberBand)
self.setRenderHint(QPainter.Antialiasing)
def mousePressEvent(self, event):
if event.button() == Qt.LeftButton:
point = self.chart.mapToValue(event.pos())
self.series.append(point.x(), point.y())
super().mousePressEvent(event)
### 3. Real-Time Data Visualization
class RealTimeChart(QThread):
data_updated = pyqtSignal(list)
def __init__(self):
super().__init__()
self.running = True
def run(self):
x = 0
while self.running:
time.sleep(0.1)
y = random.randint(0, 100)
self.data_updated.emit([(x, y)])
x += 1
def stop(self):
self.running = False
self.wait()
class MainWindow(QMainWindow):
def __init__(self):
super().__init__()
self.series = QLineSeries()
self.chart = QChart()
self.chart.addSeries(self.series)
self.chart.createDefaultAxes()
self.chart_view = QChartView(self.chart)
self.setCentralWidget(self.chart_view)
self.thread = RealTimeChart()
self.thread.data_updated.connect(self.update_chart)
self.thread.start()
def update_chart(self, points):
for x, y in points:
self.series.append(x, y)
if self.series.count() > 100:
self.series.remove(0)
self.chart.axisX().setRange(x-100, x)
def closeEvent(self, event):
self.thread.stop()
super().closeEvent(event)
---from PyQt5.QtSql import QSqlDatabase, QSqlQuery
def setup_database():
db = QSqlDatabase.addDatabase("QSQLITE")
db.setDatabaseName("app_data.db")
if not db.open():
QMessageBox.critical(None, "Database Error", db.lastError().text())
return False
# Create tables if they don't exist
query = QSqlQuery()
query.exec_("""
CREATE TABLE IF NOT EXISTS contacts (
id INTEGER PRIMARY KEY AUTOINCREMENT,
name TEXT NOT NULL,
email TEXT UNIQUE,
phone TEXT,
created_at DATETIME DEFAULT CURRENT_TIMESTAMP
)
""")
return True
### 2. SQL Model-View Integration
from PyQt5.QtSql import QSqlTableModel
class ContactManager(QWidget):
def __init__(self):
super().__init__()
self.model = QSqlTableModel()
self.model.setTable("contacts")
self.model.select()
self.setup_ui()
def setup_ui(self):
layout = QVBoxLayout()
# Table View
self.table = QTableView()
self.table.setModel(self.model)
self.table.setSelectionBehavior(QTableView.SelectRows)
self.table.setEditTriggers(QTableView.DoubleClicked)
# Buttons
add_btn = QPushButton("Add Contact")
add_btn.clicked.connect(self.add_contact)
del_btn = QPushButton("Delete Selected")
del_btn.clicked.connect(self.delete_contact)
# Layout
btn_layout = QHBoxLayout()
btn_layout.addWidget(add_btn)
btn_layout.addWidget(del_btn)
layout.addWidget(self.table)
layout.addLayout(btn_layout)
self.setLayout(layout)
def add_contact(self):
name, ok = QInputDialog.getText(self, "Add Contact", "Name:")
if ok and name:
record = self.model.record()
record.setValue("name", name)
self.model.insertRecord(-1, record)
self.model.submitAll()
def delete_contact(self):
selected = self.table.selectionModel().selectedRows()
for index in sorted(selected, reverse=True):
self.model.removeRow(index.row())
self.model.submitAll()
### 3. PostgreSQL Connection
def connect_postgresql():
db = QSqlDatabase.addDatabase("QPSQL")
db.setHostName("localhost")
db.setDatabaseName("myapp")
db.setUserName("postgres")
db.setPassword("password")
db.setPort(5432)
if not db.open():
error = db.lastError()
QMessageBox.critical(None, "Database Error",
f"Code: {error.number()}\n{error.text()}")
return False
return True
---