158 lines
5.8 KiB
Python
158 lines
5.8 KiB
Python
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# This is a hardware file for control of a rig using the Hamlib rigctld daemon.
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# This hardware will not start the daemon rigctld, so you must start it yourself.
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# This hardware will connect to rigctld, and rigctld connects to the rig. You can test
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# rigctld with the command rigctl. See the hamlib documentation for rigctld and rigctl.
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#
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# If you change the frequency in Quisk, the change is sent to rigctld. This hardware
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# will query (poll) rigctld for its frequency at intervals to see if the rig changed
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# the frequency. If it did, the change is sent to Quisk.
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#
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# These are the attributes we watch: Rx frequency, mode
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from __future__ import print_function
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from __future__ import absolute_import
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DEBUG = 0
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import socket, time, traceback
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import _quisk as QS
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from quisk_hardware_model import Hardware as BaseHardware
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class Hardware(BaseHardware):
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def __init__(self, app, conf):
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BaseHardware.__init__(self, app, conf)
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self.hamlib_rigctld_port = 4532 # Standard rigctld control port
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self.hamlib_poll_seconds = 0.2 # Time interval to poll for changes
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self.hamlib_connected = False
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self.radio_freq = None
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self.radio_mode = None
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self.quisk_freq = None
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self.quisk_vfo = None
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self.quisk_mode = 'USB'
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self.received = ''
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self.toggle = False
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self.time0 = 0
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def open(self):
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ret = BaseHardware.open(self)
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self.hamlib_socket = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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self.hamlib_socket.settimeout(0.0)
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self.ConnectRigctld()
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return ret
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def close(self):
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self.hamlib_socket.close()
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self.hamlib_connected = False
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return BaseHardware.close(self)
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def ConnectRigctld(self):
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if self.hamlib_connected:
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return True
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try:
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self.hamlib_socket.connect(('localhost', self.hamlib_rigctld_port))
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except:
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return False # Failure to connect
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self.hamlib_connected = True
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if DEBUG: print("rigctld connected")
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return True # Success
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def ChangeFrequency(self, tune, vfo, source='', band='', event=None):
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self.quisk_freq = tune
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self.quisk_vfo = tune
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if DEBUG: print('Change', source, tune)
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return self.quisk_freq, self.quisk_vfo
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def ReturnFrequency(self):
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# Return the current tuning and VFO frequency. If neither have changed,
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# you can return (None, None). This is called at about 10 Hz by the main.
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return self.quisk_freq, self.quisk_vfo
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def ChangeMode(self, mode): # Change the tx/rx mode
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# mode is a string: "USB", "AM", etc.
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if mode == 'CWU':
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mode = 'CW'
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elif mode == 'CWL':
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mode = 'CW'
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elif mode[0:4] == 'DGT-':
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mode = 'USB'
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self.quisk_mode = mode
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if DEBUG: print('Change', mode)
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def ChangeBand(self, band):
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# band is a string: "60", "40", "WWV", etc.
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pass
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def HeartBeat(self): # Called at about 10 Hz by the main
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if not self.hamlib_connected: # Continually try to connect
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try:
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self.hamlib_socket.connect(('localhost', self.hamlib_rigctld_port))
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except:
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return
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else:
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self.hamlib_connected = True
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if DEBUG: print("rigctld Connected")
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self.ReadHamlib()
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if time.time() - self.time0 < self.hamlib_poll_seconds:
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return
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self.time0 = time.time()
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if self.quisk_mode != self.radio_mode:
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self.HamlibSend("|M %s 0\n" % self.quisk_mode)
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elif self.quisk_freq != self.radio_freq:
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self.HamlibSend("|F %d\n" % self.quisk_freq)
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elif self.toggle:
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self.toggle = False
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self.HamlibSend("|f\n") # Poll for frequency
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else:
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self.toggle = True
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self.HamlibSend("|m\n") # Poll for mode
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def HamlibSend(self, text):
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if DEBUG: print('Send', text, end=' ')
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try:
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self.hamlib_socket.sendall(text)
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except socket.error:
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pass
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def ReadHamlib(self):
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if not self.hamlib_connected:
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return
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try: # Read any data from the socket
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text = self.hamlib_socket.recv(1024)
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except socket.timeout: # This does not work
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pass
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except socket.error: # Nothing to read
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pass
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else: # We got some characters
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self.received += text
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while '\n' in self.received: # A complete response ending with newline is available
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reply, self.received = self.received.split('\n', 1) # Split off the reply, save any further characters
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reply = reply.strip() # Here is our reply
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if reply[-6:] != 'RPRT 0':
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if DEBUG: print('Reject', reply)
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continue
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try:
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if reply[0:9] == 'set_freq:': # set_freq: 18120472|RPRT 0
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freq, status = reply[9:].split('|')
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freq = int(freq)
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if DEBUG: print(' Radio S freq', freq)
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self.radio_freq = freq
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elif reply[0:9] == 'get_freq:': # get_freq:|Frequency: 18120450|RPRT 0
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z, freq, status = reply.split('|')
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z, freq = freq.split(':')
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freq = int(freq)
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if DEBUG: print(' Radio G freq', freq)
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if self.quisk_freq == self.radio_freq:
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self.radio_freq = freq
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self.ChangeFrequency(freq, self.quisk_vfo, 'hamlib')
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elif reply[0:9] == 'set_mode:': # set_mode: FM 0|RPRT 0
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mode, status = reply[9:].split('|')
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mode, z = mode.split()
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if DEBUG: print(' Radio S mode', mode)
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self.radio_mode = mode
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elif reply[0:9] == 'get_mode:': # get_mode:|Mode: FM|Passband: 12000|RPRT 0
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z, mode, passb, status = reply.split('|')
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z, mode = mode.split()
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if DEBUG: print(' Radio G mode', mode)
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if self.quisk_mode == self.radio_mode:
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if self.radio_mode != mode: # The radio changed the mode
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self.radio_mode = mode
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self.quisk_mode = mode
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if mode in ('CW', 'CWR'):
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mode = 'CWU'
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self.application.OnBtnMode(None, mode) # Set mode
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else:
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if DEBUG: print('Unknown', reply)
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except:
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if DEBUG: traceback.print_exc()
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