2019-05-04 18:26:11 +00:00
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import subprocess
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from owrx.config import PropertyManager
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import threading
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import csdr
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import time
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class RtlNmuxSource(object):
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def __init__(self):
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pm = PropertyManager.getSharedInstance()
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nmux_bufcnt = nmux_bufsize = 0
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while nmux_bufsize < pm.getPropertyValue("samp_rate")/4: nmux_bufsize += 4096
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while nmux_bufsize * nmux_bufcnt < pm.getPropertyValue("nmux_memory") * 1e6: nmux_bufcnt += 1
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if nmux_bufcnt == 0 or nmux_bufsize == 0:
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print("[openwebrx-main] 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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return
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print("[openwebrx-main] nmux_bufsize = %d, nmux_bufcnt = %d" % (nmux_bufsize, nmux_bufcnt))
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cmd = pm.getPropertyValue("start_rtl_command") + "| nmux --bufsize %d --bufcnt %d --port %d --address 127.0.0.1" % (nmux_bufsize, nmux_bufcnt, pm.getPropertyValue("iq_server_port"))
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subprocess.Popen(cmd, shell=True)
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print("[openwebrx-main] Started rtl source: " + cmd)
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class SpectrumThread(threading.Thread):
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sharedInstance = None
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@staticmethod
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def getSharedInstance():
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if SpectrumThread.sharedInstance is None:
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SpectrumThread.sharedInstance = SpectrumThread()
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SpectrumThread.sharedInstance.start()
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return SpectrumThread.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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super().__init__()
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def run(self):
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pm = PropertyManager.getSharedInstance()
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samp_rate = pm.getPropertyValue("samp_rate")
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fft_size = pm.getPropertyValue("fft_size")
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fft_fps = pm.getPropertyValue("fft_fps")
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fft_voverlap_factor = pm.getPropertyValue("fft_voverlap_factor")
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fft_compression = pm.getPropertyValue("fft_compression")
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format_conversion = pm.getPropertyValue("format_conversion")
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spectrum_dsp=dsp=csdr.dsp()
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dsp.nc_port = pm.getPropertyValue("iq_server_port")
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dsp.set_demodulator("fft")
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dsp.set_samp_rate(samp_rate)
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dsp.set_fft_size(fft_size)
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dsp.set_fft_fps(fft_fps)
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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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dsp.set_fft_compression(fft_compression)
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dsp.set_format_conversion(format_conversion)
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dsp.csdr_dynamic_bufsize = pm.getPropertyValue("csdr_dynamic_bufsize")
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dsp.csdr_print_bufsizes = pm.getPropertyValue("csdr_print_bufsizes")
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dsp.csdr_through = pm.getPropertyValue("csdr_through")
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sleep_sec=0.87/fft_fps
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print("[openwebrx-spectrum] Spectrum thread initialized successfully.")
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dsp.start()
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if pm.getPropertyValue("csdr_dynamic_bufsize"):
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dsp.read(8) #dummy read to skip bufsize & preamble
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print("[openwebrx-spectrum] Note: CSDR_DYNAMIC_BUFSIZE_ON = 1")
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print("[openwebrx-spectrum] Spectrum thread started.")
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bytes_to_read=int(dsp.get_fft_bytes_to_read())
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spectrum_thread_counter=0
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while self.doRun:
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data=dsp.read(bytes_to_read)
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#print("gotcha",len(data),"bytes of spectrum data via spectrum_thread_function()")
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if spectrum_thread_counter >= fft_fps:
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spectrum_thread_counter=0
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else: spectrum_thread_counter+=1
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for c in self.clients:
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c.write_spectrum_data(data)
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'''
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correction=0
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for i in range(0,len(clients)):
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i-=correction
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if (clients[i].ws_started):
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if clients[i].spectrum_queue.full():
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print "[openwebrx-spectrum] client spectrum queue full, closing it."
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close_client(i, False)
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correction+=1
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else:
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clients[i].spectrum_queue.put([data]) # add new string by "reference" to all clients
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'''
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print("spectrum thread shut down")
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def add_client(self, c):
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self.clients.append(c)
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def remove_client(self, c):
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self.clients.remove(c)
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if not self.clients:
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self.shutdown()
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def shutdown(self):
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print("shutting down spectrum thread")
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SpectrumThread.sharedInstance = None
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2019-05-04 21:11:13 +00:00
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self.doRun = False
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class DspThread(threading.Thread):
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def __init__(self, handler):
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self.doRun = True
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self.handler = handler
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pm = PropertyManager.getSharedInstance()
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self.dsp = csdr.dsp()
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#dsp_initialized=False
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self.dsp.set_audio_compression(pm.getPropertyValue("audio_compression"))
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self.dsp.set_fft_compression(pm.getPropertyValue("fft_compression")) #used by secondary chains
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self.dsp.set_format_conversion(pm.getPropertyValue("format_conversion"))
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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.set_secondary_fft_size(pm.getPropertyValue("digimodes_fft_size"))
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self.dsp.nc_port=pm.getPropertyValue("iq_server_port")
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self.dsp.csdr_dynamic_bufsize = pm.getPropertyValue("csdr_dynamic_bufsize")
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self.dsp.csdr_print_bufsizes = pm.getPropertyValue("csdr_print_bufsizes")
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self.dsp.csdr_through = pm.getPropertyValue("csdr_through")
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self.dsp.set_samp_rate(pm.getPropertyValue("samp_rate"))
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#do_secondary_demod=False
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super().__init__()
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def run(self):
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self.dsp.start()
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while (self.doRun):
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data = self.dsp.read(256)
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self.handler.write_dsp_data(data)
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def stop(self):
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self.doRun = False
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def set_output_rate(self, samp_rate):
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self.dsp.set_output_rate(samp_rate)
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def set_low_cut(self, 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(self, 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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def set_offset_freq(self, freq):
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self.dsp.set_offset_freq(freq)
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def set_mod(self, mod):
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if (self.dsp.get_demodulator() == mod): return
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self.dsp.stop()
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self.dsp.set_demodulator(mod)
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self.dsp.start()
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