311 lines
10 KiB
Python
311 lines
10 KiB
Python
import threading
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import wave
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from datetime import datetime, timedelta, date, timezone
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import time
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import sched
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import subprocess
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import os
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from multiprocessing.connection import Pipe
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from owrx.map import Map, LocatorLocation
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import re
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from queue import Queue, Full
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from owrx.config import PropertyManager
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from owrx.bands import Bandplan
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from owrx.metrics import Metrics
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import logging
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logger = logging.getLogger(__name__)
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class WsjtQueueWorker(threading.Thread):
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def __init__(self, queue):
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self.queue = queue
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self.doRun = True
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super().__init__(daemon=True)
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def run(self) -> None:
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while self.doRun:
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(processor, file) = self.queue.get()
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logger.debug("processing file %s", file)
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processor.decode(file)
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self.queue.task_done()
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class WsjtQueue(Queue):
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sharedInstance = None
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@staticmethod
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def getSharedInstance():
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if WsjtQueue.sharedInstance is None:
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WsjtQueue.sharedInstance = WsjtQueue(maxsize=10, workers=2)
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return WsjtQueue.sharedInstance
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def __init__(self, maxsize, workers):
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super().__init__(maxsize)
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self.workers = [self.newWorker() for _ in range(0, workers)]
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def put(self, item):
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super(WsjtQueue, self).put(item, block=False)
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def newWorker(self):
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worker = WsjtQueueWorker(self)
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worker.start()
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return worker
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class WsjtChopper(threading.Thread):
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def __init__(self, source):
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self.source = source
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self.tmp_dir = PropertyManager.getSharedInstance()["temporary_directory"]
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(self.wavefilename, self.wavefile) = self.getWaveFile()
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self.switchingLock = threading.Lock()
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self.scheduler = sched.scheduler(time.time, time.sleep)
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(self.outputReader, self.outputWriter) = Pipe()
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self.doRun = True
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super().__init__()
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def getWaveFile(self):
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filename = "{tmp_dir}/openwebrx-wsjtchopper-{id}-{timestamp}.wav".format(
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tmp_dir=self.tmp_dir, id=id(self), timestamp=datetime.utcnow().strftime(self.fileTimestampFormat)
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)
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wavefile = wave.open(filename, "wb")
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wavefile.setnchannels(1)
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wavefile.setsampwidth(2)
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wavefile.setframerate(12000)
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return (filename, wavefile)
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def getNextDecodingTime(self):
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t = datetime.now()
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zeroed = t.replace(minute=0, second=0, microsecond=0)
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delta = t - zeroed
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seconds = (int(delta.total_seconds() / self.interval) + 1) * self.interval
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t = zeroed + timedelta(seconds=seconds)
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logger.debug("scheduling: {0}".format(t))
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return t.timestamp()
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def startScheduler(self):
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self._scheduleNextSwitch()
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threading.Thread(target=self.scheduler.run).start()
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def emptyScheduler(self):
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for event in self.scheduler.queue:
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self.scheduler.cancel(event)
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def _scheduleNextSwitch(self):
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self.scheduler.enterabs(self.getNextDecodingTime(), 1, self.switchFiles)
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def switchFiles(self):
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self.switchingLock.acquire()
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file = self.wavefile
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filename = self.wavefilename
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(self.wavefilename, self.wavefile) = self.getWaveFile()
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self.switchingLock.release()
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file.close()
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try:
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WsjtQueue.getSharedInstance().put((self, filename))
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except Full:
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logger.warning("wsjt decoding queue overflow; dropping one file")
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os.unlink(filename)
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self._scheduleNextSwitch()
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def decoder_commandline(self, file):
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"""
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must be overridden in child classes
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"""
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return []
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def decode(self, file):
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decoder = subprocess.Popen(self.decoder_commandline(file), stdout=subprocess.PIPE, cwd=self.tmp_dir, preexec_fn=lambda : os.nice(10))
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while True:
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line = decoder.stdout.readline()
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if line is None or (isinstance(line, bytes) and len(line) == 0):
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break
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self.outputWriter.send(line)
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rc = decoder.wait()
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if rc != 0:
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logger.warning("decoder return code: %i", rc)
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os.unlink(file)
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def run(self) -> None:
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logger.debug("WSJT chopper starting up")
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self.startScheduler()
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while self.doRun:
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data = self.source.read(256)
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if data is None or (isinstance(data, bytes) and len(data) == 0):
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self.doRun = False
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else:
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self.switchingLock.acquire()
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self.wavefile.writeframes(data)
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self.switchingLock.release()
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logger.debug("WSJT chopper shutting down")
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self.outputReader.close()
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self.outputWriter.close()
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self.emptyScheduler()
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try:
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os.unlink(self.wavefilename)
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except Exception:
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logger.exception("error removing undecoded file")
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def read(self):
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try:
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return self.outputReader.recv()
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except EOFError:
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return None
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class Ft8Chopper(WsjtChopper):
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def __init__(self, source):
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self.interval = 15
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self.fileTimestampFormat = "%y%m%d_%H%M%S"
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super().__init__(source)
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def decoder_commandline(self, file):
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# TODO expose decoding quality parameters through config
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return ["jt9", "--ft8", "-d", "3", file]
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class WsprChopper(WsjtChopper):
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def __init__(self, source):
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self.interval = 120
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self.fileTimestampFormat = "%y%m%d_%H%M"
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super().__init__(source)
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def decoder_commandline(self, file):
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# TODO expose decoding quality parameters through config
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return ["wsprd", "-d", file]
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class Jt65Chopper(WsjtChopper):
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def __init__(self, source):
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self.interval = 60
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self.fileTimestampFormat = "%y%m%d_%H%M"
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super().__init__(source)
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def decoder_commandline(self, file):
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# TODO expose decoding quality parameters through config
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return ["jt9", "--jt65", "-d", "3", file]
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class Jt9Chopper(WsjtChopper):
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def __init__(self, source):
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self.interval = 60
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self.fileTimestampFormat = "%y%m%d_%H%M"
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super().__init__(source)
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def decoder_commandline(self, file):
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# TODO expose decoding quality parameters through config
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return ["jt9", "--jt9", "-d", "3", file]
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class Ft4Chopper(WsjtChopper):
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def __init__(self, source):
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self.interval = 7.5
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self.fileTimestampFormat = "%y%m%d_%H%M%S"
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super().__init__(source)
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def decoder_commandline(self, file):
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# TODO expose decoding quality parameters through config
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return ["jt9", "--ft4", "-d", "3", file]
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class WsjtParser(object):
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locator_pattern = re.compile(".*\\s([A-Z0-9]+)\\s([A-R]{2}[0-9]{2})$")
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wspr_splitter_pattern = re.compile("([A-Z0-9]*)\\s([A-R]{2}[0-9]{2})\\s([0-9]+)")
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def __init__(self, handler):
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self.handler = handler
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self.dial_freq = None
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self.band = None
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modes = {"~": "FT8", "#": "JT65", "@": "JT9", "+": "FT4"}
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def parse(self, data):
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try:
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msg = data.decode().rstrip()
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# known debug messages we know to skip
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if msg.startswith("<DecodeFinished>"):
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return
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if msg.startswith(" EOF on input file"):
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return
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modes = list(WsjtParser.modes.keys())
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if msg[21] in modes or msg[19] in modes:
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out = self.parse_from_jt9(msg)
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else:
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out = self.parse_from_wsprd(msg)
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self.handler.write_wsjt_message(out)
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except ValueError:
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logger.exception("error while parsing wsjt message")
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def parse_timestamp(self, instring, dateformat):
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ts = datetime.strptime(instring, dateformat)
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return int(datetime.combine(date.today(), ts.time()).replace(tzinfo=timezone.utc).timestamp() * 1000)
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def parse_from_jt9(self, msg):
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# ft8 sample
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# '222100 -15 -0.0 508 ~ CQ EA7MJ IM66'
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# jt65 sample
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# '2352 -7 0.4 1801 # R0WAS R2ABM KO85'
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# '0003 -4 0.4 1762 # CQ R2ABM KO85'
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modes = list(WsjtParser.modes.keys())
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if msg[19] in modes:
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dateformat = "%H%M"
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else:
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dateformat = "%H%M%S"
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timestamp = self.parse_timestamp(msg[0 : len(dateformat)], dateformat)
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msg = msg[len(dateformat) + 1 :]
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modeChar = msg[14:15]
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mode = WsjtParser.modes[modeChar] if modeChar in WsjtParser.modes else "unknown"
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wsjt_msg = msg[17:53].strip()
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self.parseLocator(wsjt_msg, mode)
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Metrics.getSharedInstance().pushDecodes(self.band, mode)
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return {
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"timestamp": timestamp,
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"db": float(msg[0:3]),
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"dt": float(msg[4:8]),
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"freq": int(msg[9:13]),
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"mode": mode,
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"msg": wsjt_msg,
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}
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def parseLocator(self, msg, mode):
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m = WsjtParser.locator_pattern.match(msg)
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if m is None:
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return
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# this is a valid locator in theory, but it's somewhere in the arctic ocean, near the north pole, so it's very
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# likely this just means roger roger goodbye.
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if m.group(2) == "RR73":
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return
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Map.getSharedInstance().updateLocation(m.group(1), LocatorLocation(m.group(2)), mode, self.band)
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def parse_from_wsprd(self, msg):
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# wspr sample
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# '2600 -24 0.4 0.001492 -1 G8AXA JO01 33'
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# '0052 -29 2.6 0.001486 0 G02CWT IO92 23'
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wsjt_msg = msg[29:].strip()
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self.parseWsprMessage(wsjt_msg)
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Metrics.getSharedInstance().pushDecodes(self.band, "WSPR")
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return {
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"timestamp": self.parse_timestamp(msg[0:4], "%H%M"),
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"db": float(msg[5:8]),
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"dt": float(msg[9:13]),
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"freq": float(msg[14:24]),
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"drift": int(msg[25:28]),
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"mode": "WSPR",
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"msg": wsjt_msg,
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}
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def parseWsprMessage(self, msg):
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m = WsjtParser.wspr_splitter_pattern.match(msg)
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if m is None:
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return
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Map.getSharedInstance().updateLocation(m.group(1), LocatorLocation(m.group(2)), "WSPR", self.band)
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def setDialFrequency(self, freq):
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self.dial_freq = freq
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self.band = Bandplan.getSharedInstance().findBand(freq)
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