Merge branch 'master' of code.giller.dev:m.giller/matrix-clock
This commit is contained in:
commit
fb98e38e00
7 changed files with 120 additions and 114 deletions
40
src/actions.py
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40
src/actions.py
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import asyncio
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from datetime import datetime
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import os
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from config import climate_log_file, dht22_pin
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from handler.climate import Dht22Sensor
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from handler.matrix import MatrixDisplay
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matrix_display = MatrixDisplay()
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dht22_sensor = Dht22Sensor(dht22_pin)
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async def log_temperature():
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# If file does not exist, create it and write header
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if not os.path.isfile(climate_log_file):
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with open(climate_log_file, "w") as f:
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f.write("timestamp,temperature,humidity\n")
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while True:
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measurements = dht22_sensor.read()
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if measurements is not None:
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with open(climate_log_file, "a") as f:
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f.write(
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"{},{},{}\n".format(
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datetime.now().isoformat(),
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measurements["temperature"],
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measurements["humidity"],
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)
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)
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await asyncio.sleep(60)
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async def display_time():
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while True:
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try:
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matrix_display.show_current_time()
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except Exception as e:
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raise "Failed to display time on the matrix display: {e}"
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seconds_until_next_minute = 60 - datetime.now().second
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await asyncio.sleep(seconds_until_next_minute)
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2
src/config.py
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2
src/config.py
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dht22_pin = 17
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climate_log_file = "./climate.csv"
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52
src/handler/action_queue.py
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52
src/handler/action_queue.py
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import asyncio
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from typing import Optional
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from enum import Enum
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class QueueState(Enum):
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STOPPED = 0
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IDLE = 1
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POPPING = 2 # As in: Popping actions from the queue and performing them
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class ActionQueue:
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def __init__(self, idle_action=None) -> None:
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self.queued_actions: list = []
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self.idle_action: Optional[any] = None
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self.state = QueueState.STOPPED
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self.background_task = None
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if idle_action:
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self.set_idle_action(idle_action)
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async def run_queue(self):
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while len(self.queued_actions) > 0:
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self.state = QueueState.POPPING
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action = self.queued_actions.pop(0)
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action[0](*(action[1]), **(action[2]))
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self.state = QueueState.IDLE
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self.idle_action()
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async def stop_queue(self):
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if self.background_task is None:
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return
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self.state = QueueState.STOPPED
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self.background_task.cancel()
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async def restart_queue(self):
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await self.stop_queue()
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self.background_task = asyncio.create_task(self.run_queue())
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async def add_action_to_queue(self, action, *args, **kwargs):
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self.queued_actions.append((action, args, kwargs))
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if self.state == QueueState.IDLE:
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await self.restart_queue()
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async def set_idle_action(self, action):
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self.idle_action = action
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if self.state == QueueState.IDLE:
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await self.restart_queue()
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140
src/main.py
140
src/main.py
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@ -1,13 +1,15 @@
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import os
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from fastapi import FastAPI, HTTPException
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from datetime import datetime
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import requests
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from history import get_recent_entries
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from matrix import MatrixDisplay
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from fastapi.middleware.cors import CORSMiddleware
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import asyncio
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import asyncio
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from climate import Dht22Sensor
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import requests
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from fastapi import FastAPI, HTTPException
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from fastapi.middleware.cors import CORSMiddleware
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from actions import dht22_sensor, display_time, log_temperature, matrix_display
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from config import climate_log_file
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from handler.action_queue import ActionQueue
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from handler.history import get_recent_entries
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queue = ActionQueue(display_time)
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app = FastAPI()
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app = FastAPI()
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origins = [
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origins = [
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@ -15,7 +17,7 @@ origins = [
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"http://localhost:8000",
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"http://localhost:8000",
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"http://raspberrypi",
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"http://raspberrypi",
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"http://192.168.178.84:8000",
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"http://192.168.178.84:8000",
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"http://192.168.178.84"
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"http://192.168.178.84",
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]
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]
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app.add_middleware(
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app.add_middleware(
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@ -26,86 +28,31 @@ app.add_middleware(
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allow_headers=["*"],
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allow_headers=["*"],
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)
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)
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should_run_time_loop = True
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dht22_pin = 17
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climate_log_file = "./climate.csv"
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matrix_display = MatrixDisplay()
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dht22_sensor = Dht22Sensor(dht22_pin)
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# Start background service to log temperature and humidity every minute
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async def log_temperature():
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# If file does not exist, create it and write header
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if not os.path.isfile(climate_log_file):
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with open(climate_log_file, "w") as f:
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f.write("timestamp,temperature,humidity\n")
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while True:
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measurements = dht22_sensor.read()
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if measurements is not None:
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with open(climate_log_file, "a") as f:
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f.write("{},{},{}\n".format(
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datetime.now().isoformat(),
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measurements["temperature"],
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measurements["humidity"]
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))
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await asyncio.sleep(60)
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async def display_time():
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while should_run_time_loop:
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try:
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matrix_display.show_current_time()
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except requests.exceptions.RequestException as e:
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raise HTTPException(
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status_code=500,
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detail=f"Failed to display time on the matrix display: {e}",
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)
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seconds_until_next_minute = 60 - datetime.now().second
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await asyncio.sleep(seconds_until_next_minute)
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asyncio.create_task(display_time())
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asyncio.create_task(log_temperature())
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asyncio.create_task(log_temperature())
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@app.post("/time")
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@app.post("/time")
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async def start_time_loop():
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async def start_time_loop():
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global should_run_time_loop
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await queue.set_idle_action(display_time)
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should_run_time_loop = True
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asyncio.create_task(display_time())
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return {"message": "Time loop started"}
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return {"message": "Time loop started"}
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@app.post("/off")
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@app.post("/off")
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async def turn_off():
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async def turn_off():
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global should_run_time_loop
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await queue.set_idle_action(matrix_display.turn_off)
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should_run_time_loop = False
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matrix_display.turn_off()
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return {"message": "Display turned off"}
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return {"message": "Display turned off"}
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@app.post("/temperature")
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@app.post("/temperature")
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async def temperature():
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async def temperature():
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measurements = dht22_sensor.get_last_read()
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measurements = dht22_sensor.get_last_read()
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if measurements is None:
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if measurements is None:
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return {"message": "Failed to read temperature"}
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return {"message": "Failed to read temperature"}
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await queue.add_action_to_queue(
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global should_run_time_loop
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matrix_display.show_text, "{0:0.1f}*C".format(measurements["temperature"])
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was_clock_runnign = should_run_time_loop
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)
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should_run_time_loop = False
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matrix_display.show_text("{0:0.1f}*C".format(measurements["temperature"]))
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if was_clock_runnign:
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should_run_time_loop = True
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asyncio.create_task(display_time())
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return measurements
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return measurements
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@ -114,19 +61,11 @@ async def humidity():
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measurements = dht22_sensor.get_last_read()
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measurements = dht22_sensor.get_last_read()
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if measurements is None:
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if measurements is None:
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return {"message": "Failed to read humidity"}
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return {"message": "Failed to read humidity"}
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await queue.add_action_to_queue(
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global should_run_time_loop
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matrix_display.show_text, "{0:0.1f}%".format(measurements["humidity"])
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was_clock_runnign = should_run_time_loop
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)
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should_run_time_loop = False
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matrix_display.show_text("{0:0.1f}%".format(measurements["humidity"]))
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if was_clock_runnign:
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should_run_time_loop = True
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asyncio.create_task(display_time())
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return measurements
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return measurements
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@ -138,40 +77,13 @@ async def history():
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@app.post("/flash")
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@app.post("/flash")
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async def flash(count: int = 1):
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async def flash(count: int = 1):
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global should_run_time_loop
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await queue.add_action_to_queue(matrix_display.flash, count)
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was_clock_runnign = should_run_time_loop
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should_run_time_loop = False
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matrix_display.flash(count)
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if was_clock_runnign:
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should_run_time_loop = True
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asyncio.create_task(display_time())
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return {"message": "Display flashed"}
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return {"message": "Display flashed"}
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@app.post("/message")
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@app.post("/message")
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async def display_message(body: dict):
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async def display_message(body: dict):
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global should_run_time_loop
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was_clock_runnign = should_run_time_loop
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should_run_time_loop = False
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message_text = body.get("message")
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message_text = body.get("message")
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try:
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await queue.add_action_to_queue(matrix_display.show_text, message_text)
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matrix_display.show_text(message_text)
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except requests.exceptions.RequestException as e:
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raise HTTPException(
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status_code=500,
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detail=f"Failed to display message on the matrix display: {e}",
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)
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finally:
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if was_clock_runnign:
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should_run_time_loop = True
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asyncio.create_task(display_time())
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return {"message": "Message displayed"}
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return {"message": "Message displayed"}
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@app.post("/stop")
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async def stop_time_loop():
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global should_run_time_loop
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should_run_time_loop = False
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return {"message": "Time loop stopped"}
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