GUI working again w/new parser setup. Live print isn't working due to use of print instead of return.
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12c09ba1df
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@ -25,6 +25,7 @@ from PyQt4 import QtCore,QtGui
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from PyQt4.Qwt5 import Qwt
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from gnuradio import gr, gru, optfir, eng_notation, blks2
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from gnuradio.eng_option import eng_option
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from gnuradio.gr.pubsub import pubsub
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import air_modes
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from air_modes.exceptions import *
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from air_modes.modes_rx_ui import Ui_MainWindow
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@ -254,14 +255,17 @@ class mainwindow(QtGui.QMainWindow):
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options.tcp = int(self.ui.line_rawport.text())
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self._radio = air_modes.modes_radio(options, self.context)
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self._publisher = pubsub()
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self._relay.subscribe("dl_data", air_modes.make_parser(self._publisher))
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try:
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my_position = [float(self.ui.line_my_lat.text()), float(self.ui.line_my_lon.text())]
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except:
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my_position = None
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self.datamodelout = dashboard_output(my_position, self.datamodel)
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self._relay.subscribe("dl_data", self.datamodelout.output)
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self._cpr_dec = air_modes.cpr_decoder(my_position)
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self.datamodelout = dashboard_output(self._cpr_dec, self.datamodel, self._publisher)
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self.lock = threading.Lock() #grab a lock to ensure sql and kml don't step on each other
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@ -272,27 +276,24 @@ class mainwindow(QtGui.QMainWindow):
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if self.ui.check_sbs1.checkState():
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sbs1port = int(self.ui.line_sbs1port.text())
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sbs1out = air_modes.output_sbs1(my_position, sbs1port)
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self._relay.subscribe("dl_data", sbs1.output)
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sbs1out = air_modes.output_sbs1(self._cpr_dec, sbs1port, self._publisher)
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if self.ui.check_fgfs.checkState():
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fghost = "127.0.0.1" #TODO FIXME
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fgport = self.ui.line_fgfsport.text()
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fgout = air_modes.output_flightgear(my_position, fghost, int(fgport))
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self._relay.subscribe("dl_data", fgout.output)
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fgout = air_modes.output_flightgear(self._cpr_dec, fghost, int(fgport), self._publisher)
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#add azimuth map output and hook it up
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if my_position is not None:
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self.az_map_output = air_modes.az_map_output(my_position, self.az_model)
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self._relay.subscribe("dl_data", self.az_map_output.output)
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self.az_map_output = air_modes.az_map_output(self._cpr_dec, self.az_model, self._publisher)
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#self._relay.subscribe("dl_data", self.az_map_output.output)
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self.livedata = air_modes.output_print(my_position)
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self.livedata = air_modes.output_print(self._cpr_dec, self._publisher)
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#add output for live data box
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self._relay.subscribe("dl_data", self.output_live_data)
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#self._relay.subscribe("dl_data", self.output_live_data)
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#create SQL database for KML and dashboard displays
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self.dbwriter = air_modes.output_sql(my_position, self.dbname, self.lock)
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self._relay.subscribe("dl_data", self.dbwriter.insert) #now the db will update itself
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self.dbwriter = air_modes.output_sql(self._cpr_dec, self.dbname, self.lock, self._publisher)
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#output to update reports/sec widget
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self._relay.subscribe("dl_data", self.increment_reportspersec)
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@ -173,7 +173,7 @@ class az_map_output:
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def __init__(self, cprdec, model, pub):
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self._cpr = cprdec
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self.model = model
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pub.subscribe("type17_dl", output)
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pub.subscribe("type17_dl", self.output)
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def output(self, msg):
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try:
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@ -24,12 +24,12 @@ class ADSBError(Exception):
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class MetricAltError(ADSBError):
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pass
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class ParserError(ADSBError):
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pass
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class NoHandlerError(ADSBError):
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def __init__(self, msgtype):
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def __init__(self, msgtype=None):
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self.msgtype = msgtype
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class MlatNonConvergeError(ADSBError):
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@ -141,34 +141,31 @@ class dashboard_data_model(QtCore.QAbstractTableModel):
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self.endRemoveRows()
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self.lock.release()
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class dashboard_output(air_modes.parse):
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def __init__(self, mypos, model):
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air_modes.parse.__init__(self, mypos)
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class dashboard_output:
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def __init__(self, cprdec, model, pub):
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self.model = model
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self._cpr = cprdec
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pub.subscribe("modes_dl", self.output)
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def output(self, msg):
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[data, ecc, reference, timestamp] = msg.split()
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try:
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data = air_modes.modes_reply(long(data, 16))
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ecc = long(ecc, 16)
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rssi = 10.*math.log10(float(reference))
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msgtype = data["df"]
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msgtype = msg.data["df"]
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now = time.time()
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newrow = {"rssi": rssi, "seen": now}
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newrow = {"rssi": msg.rssi, "seen": now}
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if msgtype in [0, 4, 20]:
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newrow["altitude"] = air_modes.altitude.decode_alt(data["ac"], True)
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newrow["icao"] = ecc
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newrow["altitude"] = air_modes.altitude.decode_alt(msg.data["ac"], True)
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newrow["icao"] = msg.ecc
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self.model.addRecord(newrow)
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elif msgtype == 17:
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icao = data["aa"]
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icao = msg.data["aa"]
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newrow["icao"] = icao
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subtype = data["ftc"]
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subtype = msg.data["ftc"]
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if subtype == 4:
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(ident, actype) = self.parseBDS08(data)
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(ident, actype) = air_modes.parseBDS08(msg.data)
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newrow["ident"] = ident
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newrow["type"] = actype
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elif 5 <= subtype <= 8:
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(ground_track, decoded_lat, decoded_lon, rnge, bearing) = self.parseBDS06(data)
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(ground_track, decoded_lat, decoded_lon, rnge, bearing) = air_modes.parseBDS06(msg.data, self._cpr)
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newrow["heading"] = ground_track
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newrow["latitude"] = decoded_lat
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newrow["longitude"] = decoded_lon
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@ -177,7 +174,7 @@ class dashboard_output(air_modes.parse):
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newrow["range"] = rnge
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newrow["bearing"] = bearing
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elif 9 <= subtype <= 18:
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(altitude, decoded_lat, decoded_lon, rnge, bearing) = self.parseBDS05(data)
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(altitude, decoded_lat, decoded_lon, rnge, bearing) = air_modes.parseBDS05(msg.data, self._cpr)
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newrow["altitude"] = altitude
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newrow["latitude"] = decoded_lat
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newrow["longitude"] = decoded_lon
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@ -185,14 +182,14 @@ class dashboard_output(air_modes.parse):
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newrow["range"] = rnge
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newrow["bearing"] = bearing
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elif subtype == 19:
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subsubtype = data["sub"]
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subsubtype = msg.data["sub"]
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velocity = None
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heading = None
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vert_spd = None
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if subsubtype == 0:
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(velocity, heading, vert_spd) = self.parseBDS09_0(data)
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(velocity, heading, vert_spd) = air_modes.parseBDS09_0(msg.data)
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elif 1 <= subsubtype <= 2:
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(velocity, heading, vert_spd) = self.parseBDS09_1(data)
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(velocity, heading, vert_spd) = air_modes.parseBDS09_1(msg.data)
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newrow["speed"] = velocity
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newrow["heading"] = heading
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newrow["vertical"] = vert_spd
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@ -54,7 +54,8 @@ class output_sql:
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c.execute(query)
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query = """CREATE TABLE IF NOT EXISTS "ident" (
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"icao" INTEGER PRIMARY KEY NOT NULL,
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"ident" TEXT NOT NULL
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"ident" TEXT NOT NULL,
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"type" TEXT NOT NULL
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);"""
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c.execute(query)
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c.close()
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@ -69,8 +69,10 @@ class stamp:
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ipart = self.secs + other.secs
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fpart = self.frac_secs + other.frac_secs
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return stamp(ipart, fpart)
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elif isinstance(other, float) or isinstance(other, int):
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return float(self) + other
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elif isinstance(other, float):
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return self + stamp(0, other)
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elif isinstance(other, int):
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return self + stamp(other, 0)
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else:
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raise TypeError
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@ -79,8 +81,10 @@ class stamp:
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ipart = self.secs - other.secs
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fpart = self.frac_secs - other.frac_secs
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return stamp(ipart, fpart)
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elif isinstance(other, float) or isinstance(other, int):
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return float(self) - other
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elif isinstance(other, float):
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return self - stamp(0, other)
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elif isinstance(other, int):
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return self - stamp(other, 0)
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else:
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raise TypeError
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