Directory structure: - Created src/sensorpajen/ for new Python package - Created config/ for configuration templates - Created legacy/ for old scripts - Created systemd/ and debian/ for future phases Package setup: - Added pyproject.toml with modern Python packaging - Created package __init__.py - Defined dependencies: bluepy, paho-mqtt Configuration: - Created config/sensors.json.example (converted from INI) - Created config/sensorpajen.env.example for environment variables - All 8 Xiaomi sensors migrated to JSON format Cleanup: - Removed temperatur_koksfonstret.py (DHT11 functionality) - Moved all legacy scripts to legacy/ folder: - LYWSD03MMC.py - bluetooth_utils.py - sendToMQTT.sh - sensorer.sh - startup.sh - sensorer.ini Updated ROADMAP.md to mark Phase 1 as complete. Next: Phase 2 - Python Package Structure
740 lines
20 KiB
Markdown
740 lines
20 KiB
Markdown
# ROADMAP: Modernizing Sensorpajen
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## Overview
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This roadmap outlines the migration from the current tmux/cron-based system to a modern systemd service running on Raspberry Pi.
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**Migration Date**: Started December 27, 2025
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**Target Completion**: TBD
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---
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## Current State
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### What We Have
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- LYWSD03MMC.py: Main Bluetooth sensor reader
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- temperatur_koksfonstret.py: DHT11 sensor reader (to be removed)
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- bluetooth_utils.py: Bluetooth utility functions
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- sensorer.ini: MAC address to sensor name mapping
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- sendToMQTT.sh: MQTT publishing callback (hardcoded credentials)
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- startup.sh/sensorer.sh: tmux-based startup scripts
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- Cron jobs for scheduling
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### Known Issues
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- MQTT credentials hardcoded in shell scripts
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- Legacy pirate_audio references in startup.sh
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- Manual tmux orchestration
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- Mixed configuration sources
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- DHT11 functionality to be removed
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---
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## Target Architecture
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### Final Structure
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```
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sensorpajen/
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├── src/
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│ └── sensorpajen/
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│ ├── __init__.py
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│ ├── main.py # Entry point
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│ ├── config.py # Configuration management
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│ ├── sensor_reader.py # Bluetooth sensor logic
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│ ├── mqtt_publisher.py # MQTT publishing
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│ └── utils.py # Utilities (from bluetooth_utils.py)
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├── config/ # Configuration directory (relative)
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│ ├── sensors.json.example # Sensor mapping template
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│ ├── sensorpajen.env.example # Environment file template
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│ ├── sensors.json # Actual sensor mapping (not in git)
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│ └── sensorpajen.env # Actual environment file (not in git)
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├── debian/ # APT package files
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│ ├── control
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│ ├── rules
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│ ├── changelog
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│ └── ... # Other Debian package files
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├── pyproject.toml # Project metadata and dependencies
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├── requirements.txt # Dependencies (bluepy, paho-mqtt)
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├── README.md # Updated documentation
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├── AGENTS.md # Agent guidelines
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├── ROADMAP.md # This file
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├── legacy/ # Legacy scripts (moved here temporarily)
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│ ├── LYWSD03MMC.py
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│ ├── temperatur_koksfonstret.py
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│ ├── sendToMQTT.sh
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│ ├── startup.sh
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│ ├── sensorer.sh
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│ └── sensorer.ini
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└── systemd/
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├── sensorpajen.service # Systemd service unit
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└── README.md # Systemd installation instructions
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```
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### Configuration Strategy
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Using relative paths for portability across systems:
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1. **Sensor Mapping**: `config/sensors.json` (relative to project root)
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- Maps MAC addresses to sensor names
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- JSON format for Python ease
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- Not committed to git (use sensors.json.example as template)
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2. **MQTT Credentials**: `config/sensorpajen.env` (relative to project root)
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- Contains sensitive MQTT configuration
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- Permissions: 0600 (owner read/write only)
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- Not committed to git (use sensorpajen.env.example as template)
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3. **Environment Variables** (via systemd EnvironmentFile):
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```
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MQTT_HOST=192.168.0.114
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MQTT_USER=hasse
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MQTT_PASSWORD=casablanca
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MQTT_CLIENT_ID=mibridge
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SENSOR_CONFIG_FILE=config/sensors.json
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```
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4. **Git Ignore**: Add to .gitignore:
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```
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config/sensors.json
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config/sensorpajen.env
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```
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---
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## Migration Phases
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### Phase 1: Preparation & Cleanup ✅ DONE (2025-12-27)
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**Goal**: Reorganize repository without breaking existing functionality
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**Notes**:
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- Created modern Python package structure with src/ layout
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- Converted INI sensor config to JSON format (sensors.json.example)
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- Environment-based configuration instead of hardcoded values
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- DHT11 sensor functionality removed as planned
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- Legacy scripts preserved in legacy/ folder
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#### Tasks:
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- ✅ Create new directory structure
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- ✅ Create pyproject.toml with dependencies
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- ✅ Remove DHT11 functionality
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- ✅ Move legacy scripts to legacy/ folder
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- ✅ Create config file templates (sensors.json.example, sensorpajen.env.example)
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- ✅ Preserve requirements.txt for backward compatibility
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---
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### Phase 2: Python Package Structure ✓ TODO
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**Goal**: Create modern Python package with proper entry point
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#### Tasks:
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1. Create `src/sensorpajen/__init__.py`
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- Package initialization
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- Version information
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2. Create `src/sensorpajen/config.py`
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- Environment variable loading
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- Configuration validation
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- Default values
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- Fail-fast on missing required config
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```python
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import os
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import json
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from pathlib import Path
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# MQTT Configuration from environment
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MQTT_HOST = os.environ.get("MQTT_HOST")
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MQTT_PORT = int(os.environ.get("MQTT_PORT", "1883"))
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MQTT_USER = os.environ.get("MQTT_USER")
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MQTT_PASSWORD = os.environ.get("MQTT_PASSWORD")
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MQTT_CLIENT_ID = os.environ.get("MQTT_CLIENT_ID", "sensorpajen")
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# Validate required config
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if not MQTT_HOST:
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raise RuntimeError("MQTT_HOST environment variable must be set")
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(relative to project root)
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PROJECT_ROOT = Path(__file__).parent.parent.parent
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SENSOR_CONFIG_FILE = os.environ.get(
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"SENSOR_CONFIG_FILE",
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str(PROJECT_ROOT / "config
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str(Path.home() / ".config/sensorpajen/sensors.json")
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)
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# Bluetooth settings
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WATCHDOG_TIMEOUT = int(os.environ.get("WATCHDOG_TIMEOUT", "5"))
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ENABLE_BATTERY = os.environ.get("ENABLE_BATTERY", "true").lower() == "true"
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```
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3. Create `src/sensorpajen/utils.py`
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- Port bluetooth_utils.py functionality
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- Clean up and modernize
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4. Create `src/sensorpajen/sensor_reader.py`
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- Extract sensor reading logic from LYWSD03MMC.py
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- Remove callback/shell script dependency
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- Direct Python MQTT integration
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5. Create `src/sensorpajen/mqtt_publisher.py`
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- MQTT client setup and connection
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- Publishing logic (replacing sendToMQTT.sh)
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- Error handling and reconnection
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6. Create `src/sensorpajen/main.py`
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- Entry point for the application
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- Signal handling (SIGTERM, SIGINT)
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- Logging setup (to stdout for journald)
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- Main loop
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```python
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#!/usr/bin/env python3
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import logging
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import signal
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import sys
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from . import config
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from .sensor_reader import SensorReader
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from .mqtt_publisher import MQTTPublisher
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def main():
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logging.basicConfig(
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level=logging.INFO,
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format='%(asctime)s - %(name)s - %(levelname)s - %(message)s',
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stream=sys.stdout
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)
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logger = logging.getLogger(__name__)
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logger.info("Starting sensorpajen service")
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# Setup signal handlers
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def signal_handler(sig, frame):
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logger.info("Received shutdown signal")
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sys.exit(0)
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signal.signal(signal.SIGTERM, signal_handler)
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signal.signal(signal.SIGINT, signal_handler)
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# Main application logic here
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# ...
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if __name__ == "__main__":
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main()
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```
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---
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### Phase 3: Configuration Migration ✓ TODO
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**Goal**: Replace .ini file with JSON and environment variables
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#### Tasks:
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1. Create sensor mapping converter script
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- Read sensorer.ini
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- Output to sensors.json
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```json
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{
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"sensors": [
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{
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"mac": "A4:C1:38:98:7B:B6",
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"name": "mi_temp_1"
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},
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{
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"mac": "A4:C1:38:29:03:0D",
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"name": "mi_temp_2"
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}
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]
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}
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```
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configuration file templates
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- `config/sensorpajen.env.example`
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```bash
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# MQTT Configuration
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MQTT_HOST=192.168.0.114
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MQTT_PORT=1883
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MQTT_USER=hasse
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MQTT_PASSWORD=casablanca
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MQTT_CLIENT_ID=mibridge
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# Sensor Configuration (relative to project root)
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SENSOR_CONFIG_FILE=config/sensors.json
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# Application Settings
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WATCHDOG_TIMEOUT=5
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ENABLE_BATTERY=true
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LOG_LEVEL=INFO
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```
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- `config/sensors.json.example`
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```json
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{
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"sensors": [
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{
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"mac": "A4:C1:38:98:7B:B6",
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"name": "mi_temp_1",
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"comment": "Example sensor"
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}
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]
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}
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```
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3. Copy templates to actual config files (not in git):
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```bash
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cp config/sensorpajen.env.example config/sensorpajen.env
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cp config/sensors.json.example config/sensors.json
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chmod 600 config/sensorpajen.env
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# Edit both files with your actual configurationnsorpajen/sensorpajen.env
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chmod 600 /home/fredrik/.config/sensorpajen/sensorpajen.env
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```
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4. Document all configuration variables in README
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---
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config/sensorpajen.env
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config/sensors.json
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*.deb
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debian/.debhelper/
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debian/sensorpajen/
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debian/files
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debian/*.log
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debian/*.substvars
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### Phase 4: Virtual Environment & Dependencies ✓ TODO
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**Goal**: Set up isolated Python environment
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#### Tasks:
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1. Create virtual environment:
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```bash
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python3 -m venv .venv
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```
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2. Update .gitignore:
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```
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.venv/
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__pycache__/
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*.pyc
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.env
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sensorpajen.env
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```
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3. Install dependencies:
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```bash
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source .venv/bin/activate
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pip install --upgrade pip
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pip install bluepy paho-mqtt
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pip install -e . # Install package in development mode
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```
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4. Document virtual environment usage in README
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---
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### Phase 5: Bluetooth Permissions ✓ TODO
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**Goal**: Allow non-root user to access Bluetooth
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#### Tasks:
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1. Add user to bluetooth group:
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```bash
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sudo usermod -a -G bluetooth fredrik
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```
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2. Set capabilities on Python interpreter (if needed):
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```bash
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sudo setcap 'cap_net_raw,cap_net_admin+eip' .venv/bin/python3
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```%h/sensorpajen
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EnvironmentFile=%h/sensorpajen/config/sensorpajen.env
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ExecStart=%h/sensorpajen/.venv/bin/python -m sensorpajen.main
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Restart=always
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RestartSec=10
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# Bluetooth capabilities
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AmbientCapabilities=CAP_NET_RAW CAP_NET_ADMIN
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# Logging
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StandardOutput=journal
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StandardError=journal
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SyslogIdentifier=sensorpajen
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[Install]
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WantedBy=default.target
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```
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Note: `%h` expands to the user's home directorycription=Sensorpajen - Bluetooth Temperature Sensor Monitor
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After=network.target bluetooth.target
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Wants=bluetooth.target
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[Service]
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Type=simple
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WorkingDirectory=/home/fredrik/dev/sensorpajen
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EnvironmentFile=/home/fredrik/.config/sensorpajen/sensorpajen.env
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ExecStart=/home/fredrik/dev/sensorpajen/.venv/bin/python -m sensorpajen.main
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Restart=always
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RestartSec=10
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# Bluetooth capabilities
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AmbientCapabilities=CAP_NET_RAW CAP_NET_ADMIN
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# Logging
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StandardOutput=journal
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StandardError=journal
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SyslogIdentifier=sensorpajen
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[Install]
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WantedBy=default.target
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```
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2. Install service (user service):
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```bash
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mkdir -p ~/.config/systemd/user/
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cp systemd/sensorpajen.service ~/.config/systemd/user/
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systemctl --user daemon-reload
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```
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3. Enable lingering (service runs without login):
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```bash
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sudo loginctl enable-linger fredrik
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```
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4. Document systemd commands in README
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---
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### Phase 7: Testing & Validation ✓ TODO
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**Goal**: Verify new service works before removing legacy
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#### Tasks:
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1. Stop legacy cron/tmux processes:
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```bash
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crontab -e # Comment out sensorpajen entries
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tmux kill-session -t sensorer
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```
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2. Start new service:
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```bash
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systemctl --user start sensorpajen
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```
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3. Monitor logs:
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```bash
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journalctl --user -u sensorpajen -f
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```APT Package Creation ✓ TODO
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**Goal**: Create Debian package for easy installation on Raspberry Pi
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#### Tasks:
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1. Create debian/ directory structure:
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```bash
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mkdir -p debian
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```
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2. Create `debian/control`:
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``APT package installation instructions
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- Development installation instructions
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- Configuration guide (relative paths)
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- Service management commands
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- Troubleshooting section
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- Remove DHT11 references
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- Remove pirate_audio references
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3. Create INSTALL.md:
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- APT package installation steps
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- Manual installation steps
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- Configuration examples
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- First-time setup guide
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- Raspberry Pi specific instructionsds}, ${misc:Depends},
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python3-bluepy,
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python3-paho-mqtt,
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bluetooth,
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bluez
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Description: Bluetooth temperature sensor monitor
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Monitors Xiaomi Mijia LYWSD03MMC Bluetooth temperature sensors
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and publishes data to MQTT broker.
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```
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3. Create `debian/rules`:
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```makefile
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#!/usr/bin/make -f
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%:
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dh $@ --with python3 --buildsystem=pybuild
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override_dh_auto_install:
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pytOption 1: APT Package (Recommended for Raspberry Pi)
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1. Download and install the .deb package:
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```bash
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sudo dpkg -i sensorpajen_1.0.0_all.deb
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sudo apt-get install -f # Fix any dependencies
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```
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2. Configure:
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```bash
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mkdir -p ~/sensorpajen/config
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cp /usr/share/doc/sensorpajen/examples/sensorpajen.env.example ~/sensorpajen/config/sensorpajen.env
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cp /usr/share/doc/sensorpajen/examples/sensors.json.example ~/sensorpajen/config/sensors.json
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# Edit both files
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nano ~/sensorpajen/config/sensorpajen.env
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nano ~/sensorpajen/config/sensors.json
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chmod 600 ~/sensorpajen/config/sensorpajen.env
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```
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3. Enable and start service:
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```bash
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systemctl --user enable sensorpajen
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systemctl --user start sensorpajen
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```
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### Option 2: Development Installation
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1. Clone Repository
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```bash
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git clone <repo> ~/sensorpajen
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cd ~/sensorpajen
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```
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2. Create Virtual Environment
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```bash
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python3 -m venv .venv
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source .venv/bin/activate
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pip install -e .
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```
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### Relative Paths (For Portability)
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- **Project root**: `~/sensorpajen/` (or wherever you clone/install)
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- **Application config**: `~/sensorpajen/config/`
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- **Environment file**: `~/sensorpajen/config/sensorpajen.env` (0600)
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- **Sensor mapping**: `~/sensorpajen/config/sensors.json` (0644)
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- **Service file**: `~/.config/systemd/user/sensorpajen.service`
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### Advantages of Relative Paths
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- Works on any system (development, production, multiple Raspberry Pis)
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- Easy to backup/restore entire directory
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- No hardcoded paths in code
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- Simple to deploy via git pull or package installation
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- User service runs without sudo
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### APT Package Installation
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When installed via .deb package:
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- **Python package**: `/usr/lib/python3/dist-packages/sensorpajen/`
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- **Service file**: `/lib/systemd/user/sensorpajen.service`
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- **Config templates**: `/usr/share/doc/sensorpajen/examples/`
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- **User config**: `~/sensorpajen/config/` (created by user)sensorpajen
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```
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5. Verify
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```bash
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systemctl --user status sensorpajen
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journalctl --user -u sensorpajen -f
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```uetooth access
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if [ "$1" = "configure" ]; then
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PYTHON_PATH=$(readlink -f /usr/bin/python3)
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setcap 'cap_net_raw,cap_net_admin+eip' "$PYTHON_PATH" || true
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fi
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#DEBHELPER#
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```
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7. Create `debian/README.Debian`:
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- Installation instructions
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- Configuration guide
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- Service management
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8. Build the package:
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```bash
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dpkg-buildpackage -us -uc -b
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```
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9. Test installation on Raspberry Pi:
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```bash
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sudo dpkg -i ../sensorpajen_1.0.0_all.deb
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sudo apt-get install -f # Fix dependencies if needed
|
|
```
|
|
|
|
10. Create installation documentation:
|
|
- Package installation instructions
|
|
- Configuration setup after installation
|
|
- Service enablement
|
|
|
|
---
|
|
|
|
### Phase 9:
|
|
|
|
4. Verify MQTT messages:
|
|
```bash
|
|
mosquitto_sub -h 192.168.0.114 -u hasse -P casablanca -t "MiTemperature2/#" -v
|
|
```
|
|
|
|
5. Test service restart:
|
|
```bash
|
|
systemctl --user restart sensorpajen
|
|
```
|
|
|
|
6. Test crash recovery (kill process, verify auto-restart)
|
|
|
|
7. Test boot behavior:
|
|
```bash
|
|
systemctl --user enable sensorpajen
|
|
sudo reboot
|
|
# After reboot, verify service is running
|
|
systemctl --user status sensorpajen
|
|
```
|
|
|
|
---
|
|
|
|
### Phase 8: Cleanup & Document
|
|
- [ ] Publish APT package to personal repository
|
|
- [ ] Create automated build pipeline for .deb packages
|
|
- [ ] Add support for multiple MQTT brokers
|
|
- [ ] Implement configuration validation toolation ✓ TODO
|
|
**Goal**: Remove legacy code and finalize documentation
|
|
|
|
#### Tasks:
|
|
1. Once new service is stable (run for 1-2 weeks):
|
|
- Delete legacy/ folder
|
|
- Remove cron jobs completely
|
|
- Remove tmux session references
|
|
|
|
2. Update README.md:
|
|
- Installation instructions
|
|
- Configuration guide
|
|
- Service management commands
|
|
- Troubleshooting section
|
|
- Remove DHT11 references
|
|
- Remove pirate_audio references
|
|
|
|
3. Create INSTALL.md:
|
|
- Fresh installation steps
|
|
- Configuration examples
|
|
- First-time setup guide
|
|
|
|
4. Document in README:
|
|
```markdown
|
|
## Installation
|
|
|
|
### 1. Clone Repository
|
|
git clone <repo> /home/fredrik/dev/sensorpajen
|
|
cd /home/fredrik/dev/sensorpajen
|
|
|
|
### 2. Create Virtual Environment
|
|
python3 -m venv .venv
|
|
source .venv/bin/activate
|
|
pip install -e .
|
|
|
|
### 3. Configure
|
|
mkdir -p ~/.config/sensorpajen
|
|
cp systemd/sensorpajen.env.example ~/.config/sensorpajen/sensorpajen.env
|
|
# Edit configuration
|
|
nano ~/.config/sensorpajen/sensorpajen.env
|
|
chmod 600 ~/.config/sensorpajen/sensorpajen.env
|
|
|
|
### 4. Convert Sensor Configuration
|
|
# Create sensors.json from your sensor list
|
|
|
|
### 5. Install Service
|
|
cp systemd/sensorpajen.service ~/.config/systemd/user/
|
|
systemctl --user daemon-reload
|
|
systemctl --user enable sensorpajen
|
|
systemctl --user start sensorpajen
|
|
|
|
### 6. Verify
|
|
systemctl --user status sensorpajen
|
|
journalctl --user -u sensorpajen -f
|
|
```
|
|
|
|
5. Add troubleshooting section:
|
|
- Bluetooth permission issues
|
|
- MQTT connection problems
|
|
- Service won't start
|
|
- Log locations
|
|
|
|
---
|
|
|
|
## Configuration File Locations (Linux Best Practices)
|
|
|
|
### User Service Configuration
|
|
- **Service files**: `~/.config/systemd/user/`
|
|
- **Application config**: `~/.config/sensorpajen/`
|
|
- **Environment file**: `~/.config/sensorpajen/sensorpajen.env` (0600)
|
|
- **Sensor mapping**: `~/.config/sensorpajen/sensors.json` (0644)
|
|
|
|
### System Service (Alternative - Not Recommended)
|
|
If running as system service (not user service):
|
|
- **Service file**: `/etc/systemd/system/sensorpajen.service`
|
|
- **Config directory**: `/etc/sensorpajen/`
|
|
- **Environment file**: `/etc/sensorpajen/sensorpajen.env` (0600)
|
|
|
|
**Recommendation**: Use user service (current approach) since:
|
|
- No sudo required for service management
|
|
- Easier permission management
|
|
- Better security isolation
|
|
- Simpler Bluetooth access
|
|
|
|
---
|
|
|
|
## Success Criteria
|
|
|
|
The migration is complete when:
|
|
|
|
- ✅ Service starts automatically on boot
|
|
- ✅ All 8 Bluetooth sensors are being read
|
|
- ✅ MQTT messages are published correctly
|
|
- ✅ Service recovers automatically from crashes
|
|
- ✅ No hardcoded credentials in code
|
|
- ✅ Logs are visible via journalctl
|
|
- ✅ DHT11 functionality completely removed
|
|
- ✅ Legacy scripts removed
|
|
- ✅ Documentation is complete and accurate
|
|
- ✅ Service runs as user (not root)
|
|
- ✅ Virtual environment is working
|
|
|
|
---
|
|
|
|
## Rollback Plan
|
|
|
|
If issues arise during migration:
|
|
|
|
1. Stop new service:
|
|
```bash
|
|
systemctl --user stop sensorpajen
|
|
systemctl --user disable sensorpajen
|
|
```
|
|
|
|
2. Restore legacy scripts from legacy/ folder:
|
|
```bash
|
|
cp legacy/* .
|
|
```
|
|
|
|
3. Restore cron jobs:
|
|
```bash
|
|
crontab -e
|
|
# Uncomment:
|
|
# @reboot /home/fredrik/dev/sensorpajen/sensorer.sh
|
|
```
|
|
|
|
4. Reboot or manually start tmux session
|
|
|
|
---
|
|
|
|
## Future Enhancements
|
|
|
|
After successful migration, consider:
|
|
|
|
- [ ] Add Prometheus metrics endpoint
|
|
- [ ] Add systemd watchdog support
|
|
- [ ] Implement graceful sensor failure handling
|
|
- [ ] Add MQTT TLS support
|
|
- [ ] Create web dashboard for sensor status
|
|
- [ ] Add sensor calibration configuration
|
|
- [ ] Implement sensor auto-discovery
|
|
- [ ] Add health check endpoint
|
|
|
|
---
|
|
|
|
## Notes
|
|
|
|
- Keep legacy scripts during migration for safety
|
|
- Test thoroughly before removing cron jobs
|
|
- Monitor for at least 1-2 weeks before final cleanup
|
|
- Document any issues encountered during migration
|
|
- Take notes of actual MAC addresses and sensor names during conversion
|
|
|
|
---
|
|
|
|
## References
|
|
|
|
- systemd user services: `man systemd.service`
|
|
- XDG Base Directory: `~/.config/` for user configuration
|
|
- Bluetooth capabilities: `man capabilities`
|
|
- journalctl: `man journalctl`
|
|
- Python logging: https://docs.python.org/3/library/logging.html
|