557 lines
20 KiB
Python
557 lines
20 KiB
Python
import subprocess
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from owrx.config import PropertyManager
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from owrx.feature import FeatureDetector, UnknownFeatureException
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from owrx.meta import MetaParser
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from owrx.wsjt import WsjtParser
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import threading
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import csdr
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import time
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import os
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import signal
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import sys
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import socket
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import logging
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logger = logging.getLogger(__name__)
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class SdrService(object):
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sdrProps = None
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sources = {}
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lastPort = None
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@staticmethod
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def getNextPort():
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pm = PropertyManager.getSharedInstance()
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(start, end) = pm["iq_port_range"]
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if SdrService.lastPort is None:
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SdrService.lastPort = start
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else:
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SdrService.lastPort += 1
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if SdrService.lastPort > end:
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raise IndexError("no more available ports to start more sdrs")
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return SdrService.lastPort
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@staticmethod
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def loadProps():
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if SdrService.sdrProps is None:
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pm = PropertyManager.getSharedInstance()
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featureDetector = FeatureDetector()
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def loadIntoPropertyManager(dict: dict):
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propertyManager = PropertyManager()
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for (name, value) in dict.items():
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propertyManager[name] = value
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return propertyManager
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def sdrTypeAvailable(value):
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try:
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if not featureDetector.is_available(value["type"]):
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logger.error("The RTL source type \"{0}\" is not available. please check requirements.".format(value["type"]))
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return False
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return True
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except UnknownFeatureException:
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logger.error("The RTL source type \"{0}\" is invalid. Please check your configuration".format(value["type"]))
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return False
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# transform all dictionary items into PropertyManager object, filtering out unavailable ones
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SdrService.sdrProps = {
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name: loadIntoPropertyManager(value) for (name, value) in pm["sdrs"].items() if sdrTypeAvailable(value)
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}
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logger.info("SDR sources loaded. Availables SDRs: {0}".format(", ".join(map(lambda x: x["name"], SdrService.sdrProps.values()))))
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@staticmethod
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def getSource(id = None):
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SdrService.loadProps()
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if id is None:
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# TODO: configure default sdr in config? right now it will pick the first one off the list.
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id = list(SdrService.sdrProps.keys())[0]
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sources = SdrService.getSources()
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return sources[id]
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@staticmethod
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def getSources():
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SdrService.loadProps()
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for id in SdrService.sdrProps.keys():
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if not id in SdrService.sources:
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props = SdrService.sdrProps[id]
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className = ''.join(x for x in props["type"].title() if x.isalnum()) + "Source"
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cls = getattr(sys.modules[__name__], className)
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SdrService.sources[id] = cls(props, SdrService.getNextPort())
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return SdrService.sources
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class SdrSource(object):
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def __init__(self, props, port):
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self.props = props
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self.activateProfile()
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self.rtlProps = self.props.collect(
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"samp_rate", "nmux_memory", "center_freq", "ppm", "rf_gain", "lna_gain", "rf_amp", "antenna", "if_gain"
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).defaults(PropertyManager.getSharedInstance())
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def restart(name, value):
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logger.debug("restarting sdr source due to property change: {0} changed to {1}".format(name, value))
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self.stop()
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self.start()
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self.rtlProps.wire(restart)
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self.port = port
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self.monitor = None
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self.clients = []
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self.spectrumClients = []
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self.spectrumThread = None
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self.process = None
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self.modificationLock = threading.Lock()
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# override this in subclasses
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def getCommand(self):
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pass
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# override this in subclasses, if necessary
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def getFormatConversion(self):
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return None
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def activateProfile(self, id = None):
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profiles = self.props["profiles"]
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if id is None:
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id = list(profiles.keys())[0]
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logger.debug("activating profile {0}".format(id))
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profile = profiles[id]
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for (key, value) in profile.items():
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# skip the name, that would overwrite the source name.
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if key == "name": continue
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self.props[key] = value
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def getProfiles(self):
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return self.props["profiles"]
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def getName(self):
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return self.props["name"]
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def getProps(self):
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return self.props
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def getPort(self):
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return self.port
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def start(self):
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self.modificationLock.acquire()
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if self.monitor:
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self.modificationLock.release()
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return
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props = self.rtlProps
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start_sdr_command = self.getCommand().format(
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**props.collect("samp_rate", "center_freq", "ppm", "rf_gain", "lna_gain", "rf_amp", "antenna", "if_gain").__dict__()
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)
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format_conversion = self.getFormatConversion()
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if format_conversion is not None:
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start_sdr_command += " | " + format_conversion
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nmux_bufcnt = nmux_bufsize = 0
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while nmux_bufsize < props["samp_rate"]/4: nmux_bufsize += 4096
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while nmux_bufsize * nmux_bufcnt < props["nmux_memory"] * 1e6: nmux_bufcnt += 1
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if nmux_bufcnt == 0 or nmux_bufsize == 0:
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logger.error("Error: nmux_bufsize or nmux_bufcnt is zero. These depend on nmux_memory and samp_rate options in config_webrx.py")
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self.modificationLock.release()
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return
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logger.debug("nmux_bufsize = %d, nmux_bufcnt = %d" % (nmux_bufsize, nmux_bufcnt))
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cmd = start_sdr_command + " | nmux --bufsize %d --bufcnt %d --port %d --address 127.0.0.1" % (nmux_bufsize, nmux_bufcnt, self.port)
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self.process = subprocess.Popen(cmd, shell=True, preexec_fn=os.setpgrp)
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logger.info("Started rtl source: " + cmd)
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def wait_for_process_to_end():
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rc = self.process.wait()
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logger.debug("shut down with RC={0}".format(rc))
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self.monitor = None
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self.monitor = threading.Thread(target = wait_for_process_to_end)
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self.monitor.start()
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while True:
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testsock = socket.socket()
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try:
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testsock.connect(("127.0.0.1", self.getPort()))
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testsock.close()
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break
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except:
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time.sleep(0.1)
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self.modificationLock.release()
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for c in self.clients:
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c.onSdrAvailable()
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def isAvailable(self):
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return self.monitor is not None
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def stop(self):
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for c in self.clients:
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c.onSdrUnavailable()
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self.modificationLock.acquire()
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if self.process is not None:
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try:
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os.killpg(os.getpgid(self.process.pid), signal.SIGTERM)
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except ProcessLookupError:
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# been killed by something else, ignore
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pass
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if self.monitor:
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self.monitor.join()
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self.sleepOnRestart()
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self.modificationLock.release()
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def sleepOnRestart(self):
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pass
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def addClient(self, c):
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self.clients.append(c)
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self.start()
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def removeClient(self, c):
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try:
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self.clients.remove(c)
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except ValueError:
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pass
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if not self.clients:
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self.stop()
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def addSpectrumClient(self, c):
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self.spectrumClients.append(c)
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if self.spectrumThread is None:
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self.spectrumThread = SpectrumThread(self)
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self.spectrumThread.start()
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def removeSpectrumClient(self, c):
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try:
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self.spectrumClients.remove(c)
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except ValueError:
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pass
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if not self.spectrumClients and self.spectrumThread is not None:
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self.spectrumThread.stop()
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self.spectrumThread = None
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def writeSpectrumData(self, data):
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for c in self.spectrumClients:
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c.write_spectrum_data(data)
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class RtlSdrSource(SdrSource):
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def getCommand(self):
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return "rtl_sdr -s {samp_rate} -f {center_freq} -p {ppm} -g {rf_gain} -"
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def getFormatConversion(self):
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return "csdr convert_u8_f"
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class HackrfSource(SdrSource):
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def getCommand(self):
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return "hackrf_transfer -s {samp_rate} -f {center_freq} -g {rf_gain} -l{lna_gain} -a{rf_amp} -r-"
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def getFormatConversion(self):
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return "csdr convert_s8_f"
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class SdrplaySource(SdrSource):
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def getCommand(self):
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command = "rx_sdr -F CF32 -s {samp_rate} -f {center_freq} -p {ppm}"
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gainMap = { "rf_gain" : "RFGR", "if_gain" : "IFGR"}
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gains = [ "{0}={{{1}}}".format(gainMap[name], name) for (name, value) in self.rtlProps.collect("rf_gain", "if_gain").__dict__().items() if value is not None ]
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if gains:
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command += " -g {gains}".format(gains = ",".join(gains))
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if self.rtlProps["antenna"] is not None:
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command += " -a \"{antenna}\""
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command += " -"
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return command
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def sleepOnRestart(self):
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time.sleep(1)
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class AirspySource(SdrSource):
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def getCommand(self):
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frequency = self.props['center_freq'] / 1e6
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command = "airspy_rx"
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command += " -f{0}".format(frequency)
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command += " -r /dev/stdout -a{samp_rate} -g {rf_gain}"
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return command
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def getFormatConversion(self):
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return "csdr convert_s16_f"
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class SpectrumThread(csdr.output):
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def __init__(self, sdrSource):
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self.sdrSource = sdrSource
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super().__init__()
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self.props = props = self.sdrSource.props.collect(
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"samp_rate", "fft_size", "fft_fps", "fft_voverlap_factor", "fft_compression",
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"csdr_dynamic_bufsize", "csdr_print_bufsizes", "csdr_through", "temporary_directory"
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).defaults(PropertyManager.getSharedInstance())
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self.dsp = dsp = csdr.dsp(self)
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dsp.nc_port = self.sdrSource.getPort()
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dsp.set_demodulator("fft")
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def set_fft_averages(key, value):
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samp_rate = props["samp_rate"]
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fft_size = props["fft_size"]
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fft_fps = props["fft_fps"]
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fft_voverlap_factor = props["fft_voverlap_factor"]
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dsp.set_fft_averages(int(round(1.0 * samp_rate / fft_size / fft_fps / (1.0 - fft_voverlap_factor))) if fft_voverlap_factor>0 else 0)
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self.subscriptions = [
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props.getProperty("samp_rate").wire(dsp.set_samp_rate),
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props.getProperty("fft_size").wire(dsp.set_fft_size),
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props.getProperty("fft_fps").wire(dsp.set_fft_fps),
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props.getProperty("fft_compression").wire(dsp.set_fft_compression),
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props.getProperty("temporary_directory").wire(dsp.set_temporary_directory),
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props.collect("samp_rate", "fft_size", "fft_fps", "fft_voverlap_factor").wire(set_fft_averages)
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]
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set_fft_averages(None, None)
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dsp.csdr_dynamic_bufsize = props["csdr_dynamic_bufsize"]
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dsp.csdr_print_bufsizes = props["csdr_print_bufsizes"]
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dsp.csdr_through = props["csdr_through"]
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logger.debug("Spectrum thread initialized successfully.")
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def start(self):
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self.sdrSource.addClient(self)
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if self.sdrSource.isAvailable():
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self.dsp.start()
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def add_output(self, type, read_fn):
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if type != "audio":
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logger.error("unsupported output type received by FFT: %s", type)
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return
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if self.props["csdr_dynamic_bufsize"]:
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read_fn(8) #dummy read to skip bufsize & preamble
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logger.debug("Note: CSDR_DYNAMIC_BUFSIZE_ON = 1")
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def pipe():
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run = True
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while run:
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data = read_fn()
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if len(data) == 0:
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run = False
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else:
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self.sdrSource.writeSpectrumData(data)
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threading.Thread(target = pipe).start()
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def stop(self):
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self.dsp.stop()
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self.sdrSource.removeClient(self)
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for c in self.subscriptions:
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c.cancel()
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self.subscriptions = []
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def onSdrAvailable(self):
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self.dsp.start()
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def onSdrUnavailable(self):
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self.dsp.stop()
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class DspManager(csdr.output):
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def __init__(self, handler, sdrSource):
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self.handler = handler
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self.sdrSource = sdrSource
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self.metaParser = MetaParser(self.handler)
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self.wsjtParser = WsjtParser(self.handler)
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self.localProps = self.sdrSource.getProps().collect(
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"audio_compression", "fft_compression", "digimodes_fft_size", "csdr_dynamic_bufsize",
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"csdr_print_bufsizes", "csdr_through", "digimodes_enable", "samp_rate", "digital_voice_unvoiced_quality",
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"dmr_filter", "temporary_directory"
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).defaults(PropertyManager.getSharedInstance())
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self.dsp = csdr.dsp(self)
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self.dsp.nc_port = self.sdrSource.getPort()
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def set_low_cut(cut):
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bpf = self.dsp.get_bpf()
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bpf[0] = cut
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self.dsp.set_bpf(*bpf)
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def set_high_cut(cut):
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bpf = self.dsp.get_bpf()
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bpf[1] = cut
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self.dsp.set_bpf(*bpf)
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self.subscriptions = [
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self.localProps.getProperty("audio_compression").wire(self.dsp.set_audio_compression),
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self.localProps.getProperty("fft_compression").wire(self.dsp.set_fft_compression),
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self.localProps.getProperty("digimodes_fft_size").wire(self.dsp.set_secondary_fft_size),
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self.localProps.getProperty("samp_rate").wire(self.dsp.set_samp_rate),
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self.localProps.getProperty("output_rate").wire(self.dsp.set_output_rate),
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self.localProps.getProperty("offset_freq").wire(self.dsp.set_offset_freq),
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self.localProps.getProperty("squelch_level").wire(self.dsp.set_squelch_level),
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self.localProps.getProperty("low_cut").wire(set_low_cut),
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self.localProps.getProperty("high_cut").wire(set_high_cut),
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self.localProps.getProperty("mod").wire(self.dsp.set_demodulator),
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self.localProps.getProperty("digital_voice_unvoiced_quality").wire(self.dsp.set_unvoiced_quality),
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self.localProps.getProperty("dmr_filter").wire(self.dsp.set_dmr_filter),
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self.localProps.getProperty("temporary_directory").wire(self.dsp.set_temporary_directory)
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]
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self.dsp.set_offset_freq(0)
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self.dsp.set_bpf(-4000,4000)
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self.dsp.csdr_dynamic_bufsize = self.localProps["csdr_dynamic_bufsize"]
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self.dsp.csdr_print_bufsizes = self.localProps["csdr_print_bufsizes"]
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self.dsp.csdr_through = self.localProps["csdr_through"]
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if (self.localProps["digimodes_enable"]):
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def set_secondary_mod(mod):
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if mod == False: mod = None
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self.dsp.set_secondary_demodulator(mod)
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if mod is not None:
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self.handler.write_secondary_dsp_config({
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"secondary_fft_size":self.localProps["digimodes_fft_size"],
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"if_samp_rate":self.dsp.if_samp_rate(),
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"secondary_bw":self.dsp.secondary_bw()
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})
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self.subscriptions += [
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self.localProps.getProperty("secondary_mod").wire(set_secondary_mod),
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self.localProps.getProperty("secondary_offset_freq").wire(self.dsp.set_secondary_offset_freq)
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]
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self.sdrSource.addClient(self)
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super().__init__()
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def start(self):
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if self.sdrSource.isAvailable():
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self.dsp.start()
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def add_output(self, t, read_fn):
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logger.debug("adding new output of type %s", t)
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writers = {
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"audio": self.handler.write_dsp_data,
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"smeter": self.handler.write_s_meter_level,
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"secondary_fft": self.handler.write_secondary_fft,
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"secondary_demod": self.handler.write_secondary_demod,
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"meta": self.metaParser.parse,
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"wsjt_demod": self.wsjtParser.parse
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}
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write = writers[t]
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def pump(read, write):
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def copy():
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run = True
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while run:
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data = read()
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if data is None or (isinstance(data, bytes) and len(data) == 0):
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logger.warning("zero read on {0}".format(t))
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run = False
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else:
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write(data)
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return copy
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threading.Thread(target=pump(read_fn, write)).start()
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def stop(self):
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self.dsp.stop()
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self.sdrSource.removeClient(self)
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for sub in self.subscriptions:
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sub.cancel()
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self.subscriptions = []
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def setProperty(self, prop, value):
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self.localProps.getProperty(prop).setValue(value)
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def onSdrAvailable(self):
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logger.debug("received onSdrAvailable, attempting DspSource restart")
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self.dsp.start()
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def onSdrUnavailable(self):
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logger.debug("received onSdrUnavailable, shutting down DspSource")
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self.dsp.stop()
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class CpuUsageThread(threading.Thread):
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sharedInstance = None
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@staticmethod
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def getSharedInstance():
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if CpuUsageThread.sharedInstance is None:
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CpuUsageThread.sharedInstance = CpuUsageThread()
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CpuUsageThread.sharedInstance.start()
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return CpuUsageThread.sharedInstance
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def __init__(self):
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self.clients = []
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self.doRun = True
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self.last_worktime = 0
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self.last_idletime = 0
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super().__init__()
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def run(self):
|
|
while self.doRun:
|
|
try:
|
|
cpu_usage = self.get_cpu_usage()
|
|
except:
|
|
cpu_usage = 0
|
|
for c in self.clients:
|
|
c.write_cpu_usage(cpu_usage)
|
|
time.sleep(3)
|
|
logger.debug("cpu usage thread shut down")
|
|
|
|
def get_cpu_usage(self):
|
|
try:
|
|
f = open("/proc/stat","r")
|
|
except:
|
|
return 0 #Workaround, possibly we're on a Mac
|
|
line = ""
|
|
while not "cpu " in line: line=f.readline()
|
|
f.close()
|
|
spl = line.split(" ")
|
|
worktime = int(spl[2]) + int(spl[3]) + int(spl[4])
|
|
idletime = int(spl[5])
|
|
dworktime = (worktime - self.last_worktime)
|
|
didletime = (idletime - self.last_idletime)
|
|
rate = float(dworktime) / (didletime+dworktime)
|
|
self.last_worktime = worktime
|
|
self.last_idletime = idletime
|
|
if (self.last_worktime==0): return 0
|
|
return rate
|
|
|
|
def add_client(self, c):
|
|
self.clients.append(c)
|
|
|
|
def remove_client(self, c):
|
|
try:
|
|
self.clients.remove(c)
|
|
except ValueError:
|
|
pass
|
|
if not self.clients:
|
|
self.shutdown()
|
|
|
|
def shutdown(self):
|
|
CpuUsageThread.sharedInstance = None
|
|
self.doRun = False
|
|
|
|
class TooManyClientsException(Exception):
|
|
pass
|
|
|
|
class ClientRegistry(object):
|
|
sharedInstance = None
|
|
@staticmethod
|
|
def getSharedInstance():
|
|
if ClientRegistry.sharedInstance is None:
|
|
ClientRegistry.sharedInstance = ClientRegistry()
|
|
return ClientRegistry.sharedInstance
|
|
|
|
def __init__(self):
|
|
self.clients = []
|
|
super().__init__()
|
|
|
|
def broadcast(self):
|
|
n = self.clientCount()
|
|
for c in self.clients:
|
|
c.write_clients(n)
|
|
|
|
def addClient(self, client):
|
|
pm = PropertyManager.getSharedInstance()
|
|
if len(self.clients) >= pm["max_clients"]:
|
|
raise TooManyClientsException()
|
|
self.clients.append(client)
|
|
self.broadcast()
|
|
|
|
def clientCount(self):
|
|
return len(self.clients)
|
|
|
|
def removeClient(self, client):
|
|
try:
|
|
self.clients.remove(client)
|
|
except ValueError:
|
|
pass
|
|
self.broadcast() |