temp_sensor_aioble.py

# Questo lavoro è concesso in licenza MIT.
# Copyright (c) 2013-2023 OpenMV LLC. Tutti i diritti riservati.
# https://github.com/openmv/openmv/blob/master/LICENSE
#
from micropython import const

import asyncio
import aioble
import bluetooth

import random
import struct

# org.bluetooth.service.environmental_sensing
_ENV_SENSE_UUID = bluetooth.UUID(0x181A)
# org.bluetooth.characteristic.temperature
_ENV_SENSE_TEMP_UUID = bluetooth.UUID(0x2A6E)
# org.bluetooth.characteristic.gap.appearance.xml
_ADV_APPEARANCE_GENERIC_THERMOMETER = const(768)

# Con quale frequenza inviare i beacon di advertising.
_ADV_INTERVAL_MS = 250_000

# Registra il server GATT.
temp_service = aioble.Service(_ENV_SENSE_UUID)
temp_characteristic = aioble.Characteristic(
    temp_service, _ENV_SENSE_TEMP_UUID, read=True, notify=True
)
aioble.register_services(temp_service)


# Funzione di supporto per codificare la caratteristica della temperatura (sint16, centesimi di grado).
def _encode_temperature(temp_deg_c):
    return struct.pack("<h", int(temp_deg_c * 100))


# Questo effettuerebbe il polling periodico di un sensore hardware.
async def sensor_task():
    t = 24.5
    while True:
        temp_characteristic.write(_encode_temperature(t))
        t += random.uniform(-0.5, 0.5)
        await asyncio.sleep_ms(1000)


# Attendi in sequenza le connessioni. Non fare advertising mentre un central è
# connesso.
async def peripheral_task():
    while True:
        async with await aioble.advertise(
            _ADV_INTERVAL_MS,
            name="mpy-temp",
            services=[_ENV_SENSE_UUID],
            appearance=_ADV_APPEARANCE_GENERIC_THERMOMETER,
        ) as connection:
            print("Connection from", connection.device)
            await connection.disconnected()


# Esegui entrambi i task.
async def main():
    t1 = asyncio.create_task(sensor_task())
    t2 = asyncio.create_task(peripheral_task())
    await asyncio.gather(t1, t2)


asyncio.run(main())

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