226 lines
7.2 KiB
Python
226 lines
7.2 KiB
Python
import threading
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import socket
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from owrx.source import SdrService
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from owrx.bands import Bandplan
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from csdr import dsp, output
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from owrx.wsjt import WsjtParser
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from owrx.aprs import AprsParser
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from owrx.config import PropertyManager
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from owrx.source import Resampler
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import logging
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logger = logging.getLogger(__name__)
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class ServiceOutput(output):
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def __init__(self, frequency):
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self.frequency = frequency
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def getParser(self):
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# abstract method; implement in subclasses
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pass
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def receive_output(self, t, read_fn):
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parser = self.getParser()
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parser.setDialFrequency(self.frequency)
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target = self.pump(read_fn, parser.parse)
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threading.Thread(target=target).start()
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class WsjtServiceOutput(ServiceOutput):
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def getParser(self):
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return WsjtParser(WsjtHandler())
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def supports_type(self, t):
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return t == "wsjt_demod"
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class AprsServiceOutput(ServiceOutput):
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def getParser(self):
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return AprsParser(AprsHandler())
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def supports_type(self, t):
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return t == "packet_demod"
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class ServiceHandler(object):
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def __init__(self, source):
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self.services = []
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self.source = source
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self.startupTimer = None
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self.source.addClient(self)
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self.source.getProps().collect("center_freq", "samp_rate").wire(self.onFrequencyChange)
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self.scheduleServiceStartup()
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def onSdrAvailable(self):
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self.scheduleServiceStartup()
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def onSdrUnavailable(self):
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self.stopServices()
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def isSupported(self, mode):
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return mode in PropertyManager.getSharedInstance()["services_decoders"]
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def stopServices(self):
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for service in self.services:
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service.stop()
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self.services = []
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def startServices(self):
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for service in self.services:
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service.start()
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def onFrequencyChange(self, key, value):
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self.stopServices()
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if not self.source.isAvailable():
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return
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self.scheduleServiceStartup()
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def scheduleServiceStartup(self):
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if self.startupTimer:
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self.startupTimer.cancel()
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self.startupTimer = threading.Timer(10, self.updateServices)
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self.startupTimer.start()
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def getAvailablePort(self):
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s = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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s.bind(("", 0))
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s.listen(1)
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port = s.getsockname()[1]
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s.close()
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return port
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def updateServices(self):
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logger.debug("re-scheduling services due to sdr changes")
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self.stopServices()
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cf = self.source.getProps()["center_freq"]
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sr = self.source.getProps()["samp_rate"]
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srh = sr / 2
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frequency_range = (cf - srh, cf + srh)
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dials = [
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dial
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for dial in Bandplan.getSharedInstance().collectDialFrequencies(frequency_range)
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if self.isSupported(dial["mode"])
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]
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if not dials:
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logger.debug("no services available")
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return
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self.services = []
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for group in self.optimizeResampling(dials, sr):
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frequencies = sorted([f["frequency"] for f in group])
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min = frequencies[0]
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max = frequencies[-1]
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cf = (min + max) / 2
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bw = max - min
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logger.debug("group center frequency: {0}, bandwidth: {1}".format(cf, bw))
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resampler_props = PropertyManager()
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resampler_props["center_freq"] = cf
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# TODO the + 24000 is a temporary fix since the resampling optimizer does not account for required bandwidths
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resampler_props["samp_rate"] = bw + 24000
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resampler = Resampler(resampler_props, self.getAvailablePort(), self.source)
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resampler.start()
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self.services.append(resampler)
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for dial in group:
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self.services.append(self.setupService(dial["mode"], dial["frequency"], resampler))
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def optimizeResampling(self, freqs, bandwidth):
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freqs = sorted(freqs, key=lambda f: f["frequency"])
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distances = [
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{"frequency": freqs[i]["frequency"], "distance": freqs[i + 1]["frequency"] - freqs[i]["frequency"]}
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for i in range(0, len(freqs) - 1)
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]
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distances = [d for d in distances if d["distance"] > 0]
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distances = sorted(distances, key=lambda f: f["distance"], reverse=True)
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def calculate_usage(num_splits):
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splits = sorted([f["frequency"] for f in distances[0:num_splits]])
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previous = 0
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groups = []
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for split in splits:
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groups.append([f for f in freqs if previous < f["frequency"] <= split])
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previous = split
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groups.append([f for f in freqs if previous < f["frequency"]])
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def get_bandwitdh(group):
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freqs = sorted([f["frequency"] for f in group])
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# the group will process the full BW once, plus the reduced BW once for each group member
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return bandwidth + len(group) * (freqs[-1] - freqs[0] + 24000)
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total_bandwidth = sum([get_bandwitdh(group) for group in groups])
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return {"num_splits": num_splits, "total_bandwidth": total_bandwidth, "groups": groups}
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usages = [calculate_usage(i) for i in range(0, len(freqs))]
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# this is simulating no resampling. i haven't seen this as the best result yet
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usages += [{"num_splits": None, "total_bandwidth": bandwidth * len(freqs), "groups": [freqs]}]
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results = sorted(usages, key=lambda f: f["total_bandwidth"])
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for r in results:
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logger.debug("splits: {0}, total: {1}".format(r["num_splits"], r["total_bandwidth"]))
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return results[0]["groups"]
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def setupService(self, mode, frequency, source):
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logger.debug("setting up service {0} on frequency {1}".format(mode, frequency))
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# TODO selecting outputs will need some more intelligence here
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if mode == "packet":
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output = AprsServiceOutput(frequency)
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else:
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output = WsjtServiceOutput(frequency)
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d = dsp(output)
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d.nc_port = source.getPort()
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d.set_offset_freq(frequency - source.getProps()["center_freq"])
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if mode == "packet":
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d.set_demodulator("nfm")
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d.set_bpf(-4000, 4000)
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else:
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d.set_demodulator("usb")
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d.set_bpf(0, 3000)
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d.set_secondary_demodulator(mode)
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d.set_audio_compression("none")
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d.set_samp_rate(source.getProps()["samp_rate"])
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d.set_service()
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d.start()
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return d
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class WsjtHandler(object):
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def write_wsjt_message(self, msg):
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pass
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class AprsHandler(object):
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def write_aprs_data(self, data):
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pass
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class ServiceManager(object):
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sharedInstance = None
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@staticmethod
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def getSharedInstance():
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if ServiceManager.sharedInstance is None:
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ServiceManager.sharedInstance = ServiceManager()
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return ServiceManager.sharedInstance
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def start(self):
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if not PropertyManager.getSharedInstance()["services_enabled"]:
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return
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for source in SdrService.getSources().values():
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ServiceHandler(source)
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class Service(object):
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pass
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class WsjtService(Service):
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pass
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