update
This commit is contained in:
@@ -5,9 +5,8 @@
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\____\___/_____|
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\____\___/_____|
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Script to get CO2 values and write it to text file
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Script to get CO2 values and write it to the database
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need parameter: CO2_port
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/usr/bin/python3 /var/www/moduleair_pro_4g/MH-Z19/write_data.py
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/usr/bin/python3 /var/www/moduleair_pro_4g/MH-Z19/write_data.py ttyAMA4
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'''
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'''
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import serial
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import serial
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@@ -16,13 +15,32 @@ import json
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import sys
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import sys
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import subprocess
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import subprocess
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import time
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import time
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import sqlite3
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parameter = sys.argv[1:] # Exclude the script name
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#print("Parameters received:")
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port='/dev/'+parameter[0]
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# Connect to the SQLite database
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conn = sqlite3.connect("/var/www/moduleair_pro_4g/sqlite/sensors.db")
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cursor = conn.cursor()
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def load_config(config_file):
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try:
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with open(config_file, 'r') as file:
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config_data = json.load(file)
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return config_data
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except Exception as e:
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print(f"Error loading config file: {e}")
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return {}
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# Load the configuration data
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config_file = '/var/www/moduleair_pro_4g/config.json'
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config = load_config(config_file)
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mh_z19_port = config.get('MH-Z19_port', '') #port du NPM solo
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ser = serial.Serial(
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ser = serial.Serial(
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port=port,
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port=mh_z19_port,
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baudrate=9600,
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baudrate=9600,
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parity=serial.PARITY_NONE,
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parity=serial.PARITY_NONE,
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stopbits=serial.STOPBITS_ONE,
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stopbits=serial.STOPBITS_ONE,
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@@ -78,10 +96,23 @@ def main():
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co2 = read_co2()
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co2 = read_co2()
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if co2 is not None:
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if co2 is not None:
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print(f"CO2 Concentration: {co2} ppm")
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print(f"CO2 Concentration: {co2} ppm")
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#save to file
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output_file = "/var/www/moduleair_pro_4g/matrix/input_MHZ16.txt"
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output_file = "/var/www/moduleair_pro_4g/matrix/input_MHZ16.txt"
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with open(output_file, "w") as file:
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with open(output_file, "w") as file:
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file.write(f"{co2} \n")
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file.write(f"{co2} \n")
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print(f"Data written to {output_file}")
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print(f"Data written to {output_file}")
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#GET RTC TIME from SQlite
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cursor.execute("SELECT * FROM timestamp_table LIMIT 1")
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row = cursor.fetchone() # Get the first (and only) row
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rtc_time_str = row[1] # '2025-02-07 12:30:45'
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#save to sqlite
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cursor.execute('''
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INSERT INTO data_CO2 (timestamp,CO2) VALUES (?,?)'''
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, (rtc_time_str,co2))
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# Commit and close the connection
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conn.commit()
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else:
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else:
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print("Failed to get CO2 data.")
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print("Failed to get CO2 data.")
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@@ -89,6 +120,7 @@ def main():
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print("Program terminated.")
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print("Program terminated.")
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finally:
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finally:
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ser.close()
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ser.close()
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conn.close()
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if __name__ == '__main__':
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if __name__ == '__main__':
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main()
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main()
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190
SARA/reboot/start.py
Normal file
190
SARA/reboot/start.py
Normal file
@@ -0,0 +1,190 @@
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'''
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____ _ ____ _
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/ ___| / \ | _ \ / \
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\___ \ / _ \ | |_) | / _ \
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___) / ___ \| _ < / ___ \
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|____/_/ \_\_| \_\/_/ \_\
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Script that starts at the boot of the RPI (with cron)
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@reboot sleep 30 && /usr/bin/python3 /var/www/moduleair_pro_4g/SARA/reboot/start.py >> /var/www/moduleair_pro_4g/logs/app.log 2>&1
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/usr/bin/python3 /var/www/moduleair_pro_4g/SARA/reboot/start.py
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'''
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import serial
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import time
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import sys
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import json
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import re
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#get data from config
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def load_config(config_file):
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try:
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with open(config_file, 'r') as file:
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config_data = json.load(file)
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return config_data
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except Exception as e:
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print(f"Error loading config file: {e}")
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return {}
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#Fonction pour mettre à jour le JSON de configuration
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def update_json_key(file_path, key, value):
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"""
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Updates a specific key in a JSON file with a new value.
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:param file_path: Path to the JSON file.
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:param key: The key to update in the JSON file.
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:param value: The new value to assign to the key.
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"""
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try:
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# Load the existing data
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with open(file_path, "r") as file:
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data = json.load(file)
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# Check if the key exists in the JSON file
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if key in data:
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data[key] = value # Update the key with the new value
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else:
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print(f"Key '{key}' not found in the JSON file.")
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return
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# Write the updated data back to the file
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with open(file_path, "w") as file:
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json.dump(data, file, indent=2) # Use indent for pretty printing
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print(f"💾 updating '{key}' to '{value}'.")
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except Exception as e:
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print(f"Error updating the JSON file: {e}")
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# Define the config file path
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config_file = '/var/www/moduleair_pro_4g/config.json'
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# Load the configuration data
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config = load_config(config_file)
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baudrate = config.get('SaraR4_baudrate', 115200) #baudrate du sara R4
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device_id = config.get('deviceID', '').upper() #device ID en maj
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ser_sara = serial.Serial(
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port='/dev/ttyAMA2',
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baudrate=baudrate, #115200 ou 9600
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parity=serial.PARITY_NONE, #PARITY_NONE, PARITY_EVEN or PARITY_ODD
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stopbits=serial.STOPBITS_ONE,
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bytesize=serial.EIGHTBITS,
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timeout = 2
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)
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def read_complete_response(serial_connection, timeout=2, end_of_response_timeout=2, wait_for_lines=None, debug=True):
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'''
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Fonction très importante !!!
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Reads the complete response from a serial connection and waits for specific lines.
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'''
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if wait_for_lines is None:
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wait_for_lines = [] # Default to an empty list if not provided
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response = bytearray()
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serial_connection.timeout = timeout
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end_time = time.time() + end_of_response_timeout
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start_time = time.time()
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while True:
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elapsed_time = time.time() - start_time # Time since function start
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if serial_connection.in_waiting > 0:
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data = serial_connection.read(serial_connection.in_waiting)
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response.extend(data)
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end_time = time.time() + end_of_response_timeout # Reset timeout on new data
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# Decode and check for any target line
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decoded_response = response.decode('utf-8', errors='replace')
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for target_line in wait_for_lines:
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if target_line in decoded_response:
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if debug:
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print(f"[DEBUG] 🔎 Found target line: {target_line} (in {elapsed_time:.2f}s)")
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return decoded_response # Return response immediately if a target line is found
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elif time.time() > end_time:
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if debug:
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print(f"[DEBUG] Timeout reached. No more data received.")
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break
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time.sleep(0.1) # Short sleep to prevent busy waiting
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# Final response and debug output
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total_elapsed_time = time.time() - start_time
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if debug:
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print(f"[DEBUG] ⏱️ elapsed time: {total_elapsed_time:.2f}s. ⏱️")
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# Check if the elapsed time exceeded 10 seconds
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if total_elapsed_time > 10 and debug:
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print(f"[ALERT] 🚨 The operation took too long 🚨")
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print(f'<span style="color: red;font-weight: bold;">[ALERT] ⚠️{total_elapsed_time:.2f}s⚠️</span>')
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return response.decode('utf-8', errors='replace') # Return the full response if no target line is found
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try:
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print('<h3>Start reboot python script</h3>')
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#check modem status
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print("⚙️Check SARA Status")
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command = f'ATI\r'
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ser_sara.write(command.encode('utf-8'))
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response_SARA_ATI = read_complete_response(ser_sara, wait_for_lines=["IMEI"])
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print(response_SARA_ATI)
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match = re.search(r"Model:\s*(.+)", response_SARA_ATI)
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model = match.group(1).strip() if match else "Unknown" # Strip unwanted characters
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print(f" Model: {model}")
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update_json_key(config_file, "modem_version", model)
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time.sleep(1)
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# 1. Set AIRCARTO URL
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print('➡️Set aircarto URL')
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aircarto_profile_id = 0
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aircarto_url="data.nebuleair.fr"
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command = f'AT+UHTTP={aircarto_profile_id},1,"{aircarto_url}"\r'
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ser_sara.write(command.encode('utf-8'))
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response_SARA_1 = read_complete_response(ser_sara, wait_for_lines=["OK"])
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print(response_SARA_1)
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time.sleep(1)
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#2. Set uSpot URL
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print('➡️Set uSpot URL')
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uSpot_profile_id = 1
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uSpot_url="api-prod.uspot.probesys.net"
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command = f'AT+UHTTP={uSpot_profile_id},1,"{uSpot_url}"\r'
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ser_sara.write(command.encode('utf-8'))
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response_SARA_2 = read_complete_response(ser_sara, wait_for_lines=["OK"])
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print(response_SARA_2)
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time.sleep(1)
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print("set port 81")
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command = f'AT+UHTTP={uSpot_profile_id},5,81\r'
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ser_sara.write((command + '\r').encode('utf-8'))
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response_SARA_55 = read_complete_response(ser_sara, wait_for_lines=["OK"])
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print(response_SARA_55)
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time.sleep(1)
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#3. Get localisation (CellLocate)
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mode = 2
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sensor = 2
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response_type = 0
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timeout_s = 2
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accuracy_m = 1
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command = f'AT+ULOC={mode},{sensor},{response_type},{timeout_s},{accuracy_m}\r'
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ser_sara.write((command + '\r').encode('utf-8'))
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response_SARA_3 = read_complete_response(ser_sara, wait_for_lines=["+UULOC"])
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print(response_SARA_3)
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match = re.search(r"\+UULOC: \d{2}/\d{2}/\d{4},\d{2}:\d{2}:\d{2}\.\d{3},([-+]?\d+\.\d+),([-+]?\d+\.\d+)", response_SARA_3)
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if match:
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latitude = match.group(1)
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longitude = match.group(2)
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print(f"📍 Latitude: {latitude}, Longitude: {longitude}")
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else:
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print("❌ Failed to extract coordinates.")
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#update config.json
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update_json_key(config_file, "latitude_raw", float(latitude))
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update_json_key(config_file, "longitude_raw", float(longitude))
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time.sleep(1)
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except Exception as e:
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print("An error occurred:", e)
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traceback.print_exc() # This prints the full traceback
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@@ -8,25 +8,11 @@
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OUTPUT_FILE="/var/www/moduleair_pro_4g/wifi_list.csv"
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OUTPUT_FILE="/var/www/moduleair_pro_4g/wifi_list.csv"
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JSON_FILE="/var/www/moduleair_pro_4g/config.json"
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JSON_FILE="/var/www/moduleair_pro_4g/config.json"
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echo "-------------------"
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echo "-------------------"
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echo "-------------------"
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echo "-------------------"
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echo "NebuleAir pro started at $(date)"
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echo "NebuleAir pro started at $(date)"
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# Blink GPIO 23 and 24 five times
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for i in {1..5}; do
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# Turn GPIO 23 and 24 ON
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gpioset gpiochip0 23=1 24=1
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#echo "LEDs ON"
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sleep 1
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# Turn GPIO 23 and 24 OFF
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gpioset gpiochip0 23=0 24=0
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#echo "LEDs OFF"
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sleep 1
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done
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|
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echo "getting SARA R4 serial number"
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echo "getting SARA R4 serial number"
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# Get the last 8 characters of the serial number and write to text file
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# Get the last 8 characters of the serial number and write to text file
|
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@@ -34,6 +20,7 @@ serial_number=$(cat /proc/cpuinfo | grep Serial | awk '{print substr($3, length(
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# Define the JSON file path
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# Define the JSON file path
|
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# Use jq to update the "deviceID" in the JSON file
|
# Use jq to update the "deviceID" in the JSON file
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jq --arg serial_number "$serial_number" '.deviceID = $serial_number' "$JSON_FILE" > temp.json && mv temp.json "$JSON_FILE"
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jq --arg serial_number "$serial_number" '.deviceID = $serial_number' "$JSON_FILE" > temp.json && mv temp.json "$JSON_FILE"
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||||||
|
|
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echo "id: $serial_number"
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echo "id: $serial_number"
|
||||||
#get the SSH port for tunneling
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#get the SSH port for tunneling
|
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SSH_TUNNEL_PORT=$(jq -r '.sshTunnel_port' "$JSON_FILE")
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SSH_TUNNEL_PORT=$(jq -r '.sshTunnel_port' "$JSON_FILE")
|
||||||
@@ -59,7 +46,7 @@ if [ "$STATE" == "30 (disconnected)" ]; then
|
|||||||
|
|
||||||
|
|
||||||
else
|
else
|
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echo "Success: wlan0 is connected!"
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echo "🛜Success: wlan0 is connected!🛜"
|
||||||
CONN_SSID=$(nmcli -g GENERAL.CONNECTION device show wlan0)
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CONN_SSID=$(nmcli -g GENERAL.CONNECTION device show wlan0)
|
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echo "Connection: $CONN_SSID"
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echo "Connection: $CONN_SSID"
|
||||||
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|
||||||
@@ -69,27 +56,27 @@ else
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sudo chmod 777 "$JSON_FILE"
|
sudo chmod 777 "$JSON_FILE"
|
||||||
|
|
||||||
# Lancer le tunnel SSH
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# Lancer le tunnel SSH
|
||||||
echo "Démarrage du tunnel SSH sur le port $SSH_TUNNEL_PORT..."
|
#echo "Démarrage du tunnel SSH sur le port $SSH_TUNNEL_PORT..."
|
||||||
# Start the SSH agent if it's not already running
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# Start the SSH agent if it's not already running
|
||||||
eval "$(ssh-agent -s)"
|
#eval "$(ssh-agent -s)"
|
||||||
# Add your SSH private key
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# Add your SSH private key
|
||||||
ssh-add /home/airlab/.ssh/id_rsa
|
#ssh-add /home/airlab/.ssh/id_rsa
|
||||||
#connections details
|
#connections details
|
||||||
REMOTE_USER="airlab_server1" # Remplacez par votre nom d'utilisateur distant
|
#REMOTE_USER="airlab_server1" # Remplacez par votre nom d'utilisateur distant
|
||||||
REMOTE_SERVER="aircarto.fr" # Remplacez par l'adresse de votre serveur
|
#REMOTE_SERVER="aircarto.fr" # Remplacez par l'adresse de votre serveur
|
||||||
LOCAL_PORT=22 # Port local à rediriger
|
#LOCAL_PORT=22 # Port local à rediriger
|
||||||
MONITOR_PORT=0 # Désactive la surveillance de connexion autossh
|
#MONITOR_PORT=0 # Désactive la surveillance de connexion autossh
|
||||||
|
|
||||||
#autossh -M "$MONITOR_PORT" -f -N -R "$SSH_TUNNEL_PORT:localhost:$LOCAL_PORT" "$REMOTE_USER@$REMOTE_SERVER" -p 50221
|
#autossh -M "$MONITOR_PORT" -f -N -R "$SSH_TUNNEL_PORT:localhost:$LOCAL_PORT" "$REMOTE_USER@$REMOTE_SERVER" -p 50221
|
||||||
# ssh -f -N -R 52221:localhost:22 -p 50221 airlab_server1@aircarto.fr
|
# ssh -f -N -R 52221:localhost:22 -p 50221 airlab_server1@aircarto.fr
|
||||||
ssh -i /var/www/.ssh/id_rsa -f -N -R "$SSH_TUNNEL_PORT:localhost:$LOCAL_PORT" -p 50221 -o StrictHostKeyChecking=no "$REMOTE_USER@$REMOTE_SERVER"
|
#ssh -i /var/www/.ssh/id_rsa -f -N -R "$SSH_TUNNEL_PORT:localhost:$LOCAL_PORT" -p 50221 -o StrictHostKeyChecking=no "$REMOTE_USER@$REMOTE_SERVER"
|
||||||
|
|
||||||
#Check if the tunnel was created successfully
|
#Check if the tunnel was created successfully
|
||||||
if [ $? -eq 0 ]; then
|
#if [ $? -eq 0 ]; then
|
||||||
echo "Tunnel started successfully!"
|
# echo "Tunnel started successfully!"
|
||||||
else
|
#else
|
||||||
echo "Error: Unable to start the tunnel!"
|
# echo "Error: Unable to start the tunnel!"
|
||||||
exit 1
|
# exit 1
|
||||||
fi
|
#fi
|
||||||
fi
|
fi
|
||||||
echo "-------------------"
|
echo "-------------------"
|
||||||
|
|||||||
@@ -5,10 +5,18 @@
|
|||||||
"RTC/save_to_db.py": true,
|
"RTC/save_to_db.py": true,
|
||||||
"BME280/get_data_v2.py": true,
|
"BME280/get_data_v2.py": true,
|
||||||
"envea/read_value_v2.py": true,
|
"envea/read_value_v2.py": true,
|
||||||
|
"MH-Z19/write_data.py": true,
|
||||||
"sqlite/flush_old_data.py": true,
|
"sqlite/flush_old_data.py": true,
|
||||||
|
"deviceName": "ModuleAir-proXXX",
|
||||||
"deviceID": "XXXXX",
|
"deviceID": "XXXXX",
|
||||||
|
"modem_version": "XXX",
|
||||||
|
"latitude_raw": 0,
|
||||||
|
"longitude_raw":0,
|
||||||
|
"latitude_precision": 0,
|
||||||
|
"longitude_precision": 0,
|
||||||
"SaraR4_baudrate": 115200,
|
"SaraR4_baudrate": 115200,
|
||||||
"NPM_solo_port": "/dev/ttyAMA3",
|
"NPM_solo_port": "/dev/ttyAMA3",
|
||||||
|
"MH-Z19_port": "/dev/ttyAMA4",
|
||||||
"NextPM_ports": ["ttyAMA3"],
|
"NextPM_ports": ["ttyAMA3"],
|
||||||
"CO2_serial": true,
|
"CO2_serial": true,
|
||||||
"sensirion_SFA30": false,
|
"sensirion_SFA30": false,
|
||||||
@@ -19,5 +27,8 @@
|
|||||||
"SARA_R4_general_status" : "connected",
|
"SARA_R4_general_status" : "connected",
|
||||||
"SARA_R4_SIM_status" : "connected",
|
"SARA_R4_SIM_status" : "connected",
|
||||||
"SARA_R4_network_status": "connected",
|
"SARA_R4_network_status": "connected",
|
||||||
|
"SARA_R4_neworkID": 0,
|
||||||
|
"send_aircarto": true,
|
||||||
|
"send_uSpot": false,
|
||||||
"WIFI_status": "connected"
|
"WIFI_status": "connected"
|
||||||
}
|
}
|
||||||
@@ -2,7 +2,7 @@
|
|||||||
|
|
||||||
@reboot /var/www/moduleair_pro_4g/boot_hotspot.sh >> /var/www/moduleair_pro_4g/logs/app.log 2>&1
|
@reboot /var/www/moduleair_pro_4g/boot_hotspot.sh >> /var/www/moduleair_pro_4g/logs/app.log 2>&1
|
||||||
|
|
||||||
@reboot sleep 30 && /usr/bin/python3 /var/www/moduleair_pro_4g/SARA/sara_setURL.py ttyAMA2 data.moduleair.fr 0 >> /var/www/moduleair_pro_4g/logs/app.log 2>&1
|
@reboot sleep 30 && /usr/bin/python3 /var/www/moduleair_pro_4g/SARA/reboot/start.py >> /var/www/moduleair_pro_4g/logs/app.log 2>&1
|
||||||
|
|
||||||
@reboot /var/www/moduleair_pro_4g/run_every_10_seconds.sh
|
@reboot /var/www/moduleair_pro_4g/run_every_10_seconds.sh
|
||||||
|
|
||||||
|
|||||||
@@ -68,6 +68,8 @@
|
|||||||
</select>
|
</select>
|
||||||
</div>
|
</div>
|
||||||
<button class="btn btn-primary" onclick="get_data_sqlite('data_NPM',getSelectedLimit(),false)">Mesures PM</button>
|
<button class="btn btn-primary" onclick="get_data_sqlite('data_NPM',getSelectedLimit(),false)">Mesures PM</button>
|
||||||
|
<button class="btn btn-primary" onclick="get_data_sqlite('data_CO2',getSelectedLimit(),false)">Mesures CO2</button>
|
||||||
|
|
||||||
<button class="btn btn-primary" onclick="get_data_sqlite('data_BME280',getSelectedLimit(),false)">Mesures Temp/Hum</button>
|
<button class="btn btn-primary" onclick="get_data_sqlite('data_BME280',getSelectedLimit(),false)">Mesures Temp/Hum</button>
|
||||||
<button class="btn btn-primary" onclick="get_data_sqlite('data_NPM_5channels',getSelectedLimit(),false)">Mesures PM (5 canaux)</button>
|
<button class="btn btn-primary" onclick="get_data_sqlite('data_NPM_5channels',getSelectedLimit(),false)">Mesures PM (5 canaux)</button>
|
||||||
<button class="btn btn-primary" onclick="get_data_sqlite('data_envea',getSelectedLimit(),false)">Sonde Cairsens</button>
|
<button class="btn btn-primary" onclick="get_data_sqlite('data_envea',getSelectedLimit(),false)">Sonde Cairsens</button>
|
||||||
@@ -90,6 +92,8 @@
|
|||||||
|
|
||||||
|
|
||||||
<button class="btn btn-primary" onclick="get_data_sqlite('data_NPM',10,true, getStartDate(), getEndDate())">Mesures PM</button>
|
<button class="btn btn-primary" onclick="get_data_sqlite('data_NPM',10,true, getStartDate(), getEndDate())">Mesures PM</button>
|
||||||
|
<button class="btn btn-primary" onclick="get_data_sqlite('data_CO2',10,true, getStartDate(), getEndDate())">Mesures CO2</button>
|
||||||
|
|
||||||
<button class="btn btn-primary" onclick="get_data_sqlite('data_BME280',10,true, getStartDate(), getEndDate())">Mesures Temp/Hum</button>
|
<button class="btn btn-primary" onclick="get_data_sqlite('data_BME280',10,true, getStartDate(), getEndDate())">Mesures Temp/Hum</button>
|
||||||
<button class="btn btn-primary" onclick="get_data_sqlite('data_NPM_5channels',10,true, getStartDate(), getEndDate())">Mesures PM (5 canaux)</button>
|
<button class="btn btn-primary" onclick="get_data_sqlite('data_NPM_5channels',10,true, getStartDate(), getEndDate())">Mesures PM (5 canaux)</button>
|
||||||
<button class="btn btn-primary" onclick="get_data_sqlite('data_envea',10,true, getStartDate(), getEndDate())">Sonde Cairsens</button>
|
<button class="btn btn-primary" onclick="get_data_sqlite('data_envea',10,true, getStartDate(), getEndDate())">Sonde Cairsens</button>
|
||||||
@@ -255,6 +259,11 @@ function get_data_sqlite(table, limit, download , startDate = "", endDate = "")
|
|||||||
<th>O3</th>
|
<th>O3</th>
|
||||||
|
|
||||||
`;
|
`;
|
||||||
|
}else if (table === "data_CO2") {
|
||||||
|
tableHTML += `
|
||||||
|
<th>Timestamp</th>
|
||||||
|
<th>CO2</th>
|
||||||
|
`;
|
||||||
}
|
}
|
||||||
|
|
||||||
tableHTML += `</tr></thead><tbody>`;
|
tableHTML += `</tr></thead><tbody>`;
|
||||||
@@ -302,6 +311,12 @@ function get_data_sqlite(table, limit, download , startDate = "", endDate = "")
|
|||||||
|
|
||||||
`;
|
`;
|
||||||
}
|
}
|
||||||
|
else if (table === "data_CO2") {
|
||||||
|
tableHTML += `
|
||||||
|
<td>${columns[0]}</td>
|
||||||
|
<td>${columns[1]}</td>
|
||||||
|
`;
|
||||||
|
}
|
||||||
|
|
||||||
tableHTML += "</tr>";
|
tableHTML += "</tr>";
|
||||||
});
|
});
|
||||||
|
|||||||
@@ -83,8 +83,9 @@ def run_script(script_name, interval, delay=0):
|
|||||||
# Define scripts and their execution intervals (seconds)
|
# Define scripts and their execution intervals (seconds)
|
||||||
SCRIPTS = [
|
SCRIPTS = [
|
||||||
("RTC/save_to_db.py", 1, 0), # SAVE RTC time every 1 second, no delay
|
("RTC/save_to_db.py", 1, 0), # SAVE RTC time every 1 second, no delay
|
||||||
("NPM/get_data_modbus_v3.py", 10, 0), # Get NPM data (modbus 5 channels) every 10s, with 2s delay
|
("NPM/get_data_modbus_v3.py", 10, 0), # Get NPM data (modbus 5 channels) every 10s,
|
||||||
("envea/read_value_v2.py", 10, 0), # Get NPM data (modbus 5 channels) every 10s, with 2s delay
|
("envea/read_value_v2.py", 10, 0), # Get Envea data every 10s,
|
||||||
|
("MH-Z19/write_data.py", 10, 0), # Get CO2 values every 10s,
|
||||||
("loop/SARA_send_data_v2.py", 60, 1), # Send data every 60 seconds, with 2s delay
|
("loop/SARA_send_data_v2.py", 60, 1), # Send data every 60 seconds, with 2s delay
|
||||||
("BME280/get_data_v2.py", 120, 0), # Get BME280 data every 120 seconds, no delay
|
("BME280/get_data_v2.py", 120, 0), # Get BME280 data every 120 seconds, no delay
|
||||||
("sqlite/flush_old_data.py", 86400, 0) # flush old data inside db every day ()
|
("sqlite/flush_old_data.py", 86400, 0) # flush old data inside db every day ()
|
||||||
|
|||||||
@@ -26,7 +26,8 @@ CREATE TABLE IF NOT EXISTS timestamp_table (
|
|||||||
)
|
)
|
||||||
""")
|
""")
|
||||||
cursor.execute("""
|
cursor.execute("""
|
||||||
INSERT INTO timestamp_table (id, last_updated) VALUES (1, CURRENT_TIMESTAMP);
|
INSERT OR REPLACE INTO timestamp_table (id, last_updated)
|
||||||
|
VALUES (1, CURRENT_TIMESTAMP);
|
||||||
""")
|
""")
|
||||||
|
|
||||||
|
|
||||||
@@ -42,6 +43,14 @@ CREATE TABLE IF NOT EXISTS data_NPM (
|
|||||||
)
|
)
|
||||||
""")
|
""")
|
||||||
|
|
||||||
|
# Create a table CO2
|
||||||
|
cursor.execute("""
|
||||||
|
CREATE TABLE IF NOT EXISTS data_CO2 (
|
||||||
|
timestamp TEXT,
|
||||||
|
CO2 INTEGER
|
||||||
|
)
|
||||||
|
""")
|
||||||
|
|
||||||
# Create a table BME280
|
# Create a table BME280
|
||||||
cursor.execute("""
|
cursor.execute("""
|
||||||
CREATE TABLE IF NOT EXISTS data_BME280 (
|
CREATE TABLE IF NOT EXISTS data_BME280 (
|
||||||
|
|||||||
@@ -16,6 +16,7 @@ data_NPM_5channels
|
|||||||
data_BME280
|
data_BME280
|
||||||
data_envea
|
data_envea
|
||||||
timestamp_table
|
timestamp_table
|
||||||
|
data_CO2
|
||||||
|
|
||||||
'''
|
'''
|
||||||
|
|
||||||
@@ -45,7 +46,7 @@ if row:
|
|||||||
print(f"[INFO] Deleting records older than: {cutoff_date_str}")
|
print(f"[INFO] Deleting records older than: {cutoff_date_str}")
|
||||||
|
|
||||||
# List of tables to delete old data from
|
# List of tables to delete old data from
|
||||||
tables_to_clean = ["data_NPM", "data_NPM_5channels", "data_BME280", "data_envea"]
|
tables_to_clean = ["data_NPM", "data_NPM_5channels", "data_BME280", "data_envea", "data_CO2"]
|
||||||
|
|
||||||
# Loop through each table and delete old data
|
# Loop through each table and delete old data
|
||||||
for table in tables_to_clean:
|
for table in tables_to_clean:
|
||||||
|
|||||||
44
touch/test.py
Normal file
44
touch/test.py
Normal file
@@ -0,0 +1,44 @@
|
|||||||
|
'''
|
||||||
|
_____ ___ _ _ ____ _ _
|
||||||
|
|_ _/ _ \| | | |/ ___| | | |
|
||||||
|
| || | | | | | | | | |_| |
|
||||||
|
| || |_| | |_| | |___| _ |
|
||||||
|
|_| \___/ \___/ \____|_| |_|
|
||||||
|
|
||||||
|
script to test the TTP223 sensor
|
||||||
|
|
||||||
|
/usr/bin/python3 /var/www/moduleair_pro_4g/touch/test.py
|
||||||
|
'''
|
||||||
|
|
||||||
|
import RPi.GPIO as GPIO
|
||||||
|
import time
|
||||||
|
|
||||||
|
# Setup GPIO
|
||||||
|
TOUCH_PIN = 6 # GPIO06 (BCM numbering)
|
||||||
|
GPIO.setmode(GPIO.BCM)
|
||||||
|
GPIO.setup(TOUCH_PIN, GPIO.IN)
|
||||||
|
|
||||||
|
print("Touch sensor ready. Waiting for touch...")
|
||||||
|
|
||||||
|
last_state = False # Track previous state (False = not touched)
|
||||||
|
|
||||||
|
try:
|
||||||
|
while True:
|
||||||
|
current_state = GPIO.input(TOUCH_PIN) == GPIO.HIGH
|
||||||
|
|
||||||
|
# If touch state has changed
|
||||||
|
if current_state != last_state:
|
||||||
|
if current_state:
|
||||||
|
print("👋 Sensor touched!")
|
||||||
|
else:
|
||||||
|
print("🖐️ Sensor released!")
|
||||||
|
|
||||||
|
last_state = current_state # Update last state
|
||||||
|
|
||||||
|
time.sleep(0.1) # Polling interval
|
||||||
|
|
||||||
|
except KeyboardInterrupt:
|
||||||
|
print("\nExiting...")
|
||||||
|
|
||||||
|
finally:
|
||||||
|
GPIO.cleanup()
|
||||||
Reference in New Issue
Block a user