festival_finder/server/python_server.py

128 lines
3.9 KiB
Python

from flask import Flask, request, jsonify
from datetime import datetime
import pint
import sqlite3
from pyproj import Geod
import timezonefinder, pytz
from datetime import timezone as dttz
app = Flask(__name__)
with sqlite3.connect('location.db', check_same_thread=False) as conn:
cur = conn.cursor()
cur.execute("""CREATE TABLE IF NOT EXISTS location_data (
row_id INTEGER PRIMARY KEY,
sender_id INTEGER,
lat REAL,
long REAL,
gpsDateTime INTEGER,
insertDateTime TEXT DEFAULT CURRENT_TIMESTAMP
);"""
)
with sqlite3.connect('location.db', check_same_thread=False) as conn:
cur = conn.cursor()
res = cur.execute("SELECT * FROM location_data;")
print(res.fetchall())
ureg = pint.UnitRegistry()
geodesic = Geod(ellps='WGS84')
@app.route('/')
def hello():
return 'Hello!'
@app.route('/updateGPS')
def getGpsDistance():
own_id = request.args.get('id')
req_id = request.args.get('req_id')
lat = request.args.get('lat').translate(str.maketrans('', '', ':'))
long = request.args.get('long').translate(str.maketrans('', '', ':'))
lat = dm(lat) if lat and len(lat) > 1 else 0.0
long = dm(long) if long and len(long) > 1 else 0.0
try:
gpsDateTime = datetime.strptime(request.args.get('gpsDateTime')[:11], '%d%m%y%H%M%S')
print(gpsDateTime)
except ValueError:
print("No gpsDateTime")
gpsDateTime = datetime.now()
print(request.args)
with sqlite3.connect('location.db', check_same_thread=False) as conn:
timezone = None
rTime = None
cur = conn.cursor()
try:
res = cur.execute(f'SELECT lat, long, gpsDateTime, insertDateTime FROM location_data WHERE sender_id = {req_id} ORDER BY insertDateTime DESC;')
row = res.fetchone()
if row:
req_lat, req_long, req_dateTime, insertDateTime = row
rTime = datetime.fromisoformat(req_dateTime)
else:
req_lat = 0.0
req_long = 0.0
req_dateTime = datetime.now()
rTime = datetime.now()
except sqlite3.Error as error:
print("Failed to read data from table, using default values", error)
req_lat = 0.0
req_long = 0.0
req_dateTime = datetime.now()
if (lat != 0.0 and long != 0.0):
cur.execute(f'INSERT INTO location_data(sender_id, lat, long, gpsDateTime) VALUES({own_id}, {lat}, {long}, "{gpsDateTime.isoformat()}");')
conn.commit()
print(f'lat: {lat}, long: {long}, req_lat: {req_lat}, req_long: {req_long}, req_dateTime: {req_dateTime}')
fwd_azimuth, back_azimuth, distance = geodesic.inv(long, lat, req_long, req_lat)
distance = distance * ureg.meter
prettyDistance = f"{distance:.1f~#P}"
print(f'fwd: {fwd_azimuth}, bwd: {back_azimuth}, dist: {prettyDistance}')
tf = timezonefinder.TimezoneFinder()
timezone_str = tf.certain_timezone_at(lat=lat, lng=long)
if timezone_str is None:
print("Could not determine the time zone")
else:
print(timezone_str)
print(pytz.timezone(timezone_str))
rTime = rTime.replace(tzinfo=dttz.utc).astimezone(pytz.timezone(timezone_str))
print(rTime)
else:
prettyDistance = "No GPS Signal"
fwd_azimuth = 0.0
rTime = datetime.utcnow()
return jsonify({'distance': prettyDistance, 'azimuth': fwd_azimuth, 'lastUpdateTZ': rTime.strftime("%H:%M:%S")})
def dm(ddmm: str):
south = False
south = 'S' in str(ddmm) or 'W' in str(ddmm)
ddmm = float(str(ddmm)[:-1])
degrees = int(ddmm) // 100
minutes = ddmm - 100*degrees
x = degrees + minutes/60
if south:
x = -x
return x