mirror of
https://github.com/f4exb/sdrangel.git
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505 lines
16 KiB
C++
505 lines
16 KiB
C++
///////////////////////////////////////////////////////////////////////////////////
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// Copyright (C) 2016 Edouard Griffiths, F4EXB //
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// //
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// This program is free software; you can redistribute it and/or modify //
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// it under the terms of the GNU General Public License as published by //
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// the Free Software Foundation as version 3 of the License, or //
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// //
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// This program is distributed in the hope that it will be useful, //
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// but WITHOUT ANY WARRANTY; without even the implied warranty of //
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the //
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// GNU General Public License V3 for more details. //
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// //
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// You should have received a copy of the GNU General Public License //
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// along with this program. If not, see <http://www.gnu.org/licenses/>. //
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///////////////////////////////////////////////////////////////////////////////////
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#include <QTime>
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#include <QDebug>
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#include <QMutexLocker>
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#include <stdio.h>
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#include <complex.h>
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#include <algorithm>
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#include <dsp/upchannelizer.h>
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#include "dsp/dspengine.h"
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#include "dsp/pidcontroller.h"
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#include "dsp/threadedbasebandsamplesource.h"
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#include "device/devicesinkapi.h"
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#include "wfmmod.h"
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MESSAGE_CLASS_DEFINITION(WFMMod::MsgConfigureWFMMod, Message)
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MESSAGE_CLASS_DEFINITION(WFMMod::MsgConfigureChannelizer, Message)
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MESSAGE_CLASS_DEFINITION(WFMMod::MsgConfigureFileSourceName, Message)
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MESSAGE_CLASS_DEFINITION(WFMMod::MsgConfigureFileSourceSeek, Message)
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MESSAGE_CLASS_DEFINITION(WFMMod::MsgConfigureAFInput, Message)
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MESSAGE_CLASS_DEFINITION(WFMMod::MsgConfigureFileSourceStreamTiming, Message)
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MESSAGE_CLASS_DEFINITION(WFMMod::MsgReportFileSourceStreamData, Message)
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MESSAGE_CLASS_DEFINITION(WFMMod::MsgReportFileSourceStreamTiming, Message)
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const QString WFMMod::m_channelIdURI = "sdrangel.channeltx.modwfm";
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const QString WFMMod::m_channelId = "WFMMod";
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const int WFMMod::m_levelNbSamples = 480; // every 10ms
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const int WFMMod::m_rfFilterFFTLength = 1024;
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WFMMod::WFMMod(DeviceSinkAPI *deviceAPI) :
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ChannelSourceAPI(m_channelIdURI),
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m_deviceAPI(deviceAPI),
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m_modPhasor(0.0f),
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m_movingAverage(40, 0),
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m_volumeAGC(40, 0),
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m_audioFifo(4800),
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m_settingsMutex(QMutex::Recursive),
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m_fileSize(0),
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m_recordLength(0),
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m_sampleRate(48000),
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m_afInput(WFMModInputNone),
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m_levelCalcCount(0),
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m_peakLevel(0.0f),
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m_levelSum(0.0f)
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{
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setObjectName(m_channelId);
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m_rfFilter = new fftfilt(-62500.0 / 384000.0, 62500.0 / 384000.0, m_rfFilterFFTLength);
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m_rfFilterBuffer = new Complex[m_rfFilterFFTLength];
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memset(m_rfFilterBuffer, 0, sizeof(Complex)*(m_rfFilterFFTLength));
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m_rfFilterBufferIndex = 0;
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m_audioBuffer.resize(1<<14);
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m_audioBufferFill = 0;
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m_movingAverage.resize(16, 0);
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m_volumeAGC.resize(4096, 0.003, 0);
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m_magsq = 0.0;
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m_toneNco.setFreq(1000.0, m_settings.m_audioSampleRate);
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m_toneNcoRF.setFreq(1000.0, m_settings.m_outputSampleRate);
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DSPEngine::instance()->addAudioSource(&m_audioFifo);
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// CW keyer
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m_cwKeyer.setSampleRate(m_settings.m_outputSampleRate);
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m_cwKeyer.setWPM(13);
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m_cwKeyer.setMode(CWKeyerSettings::CWNone);
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m_cwKeyer.reset();
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m_channelizer = new UpChannelizer(this);
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m_threadedChannelizer = new ThreadedBasebandSampleSource(m_channelizer, this);
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m_deviceAPI->addThreadedSource(m_threadedChannelizer);
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m_deviceAPI->addChannelAPI(this);
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applySettings(m_settings, true);
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}
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WFMMod::~WFMMod()
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{
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delete m_rfFilter;
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delete[] m_rfFilterBuffer;
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DSPEngine::instance()->removeAudioSource(&m_audioFifo);
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m_deviceAPI->removeChannelAPI(this);
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m_deviceAPI->removeThreadedSource(m_threadedChannelizer);
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delete m_threadedChannelizer;
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delete m_channelizer;
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}
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void WFMMod::pull(Sample& sample)
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{
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if (m_settings.m_channelMute)
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{
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sample.m_real = 0.0f;
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sample.m_imag = 0.0f;
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return;
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}
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Complex ci, ri;
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fftfilt::cmplx *rf;
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int rf_out;
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m_settingsMutex.lock();
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if ((m_afInput == WFMModInputFile) || (m_afInput == WFMModInputAudio))
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{
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if (m_interpolator.interpolate(&m_interpolatorDistanceRemain, m_modSample, &ri))
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{
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pullAF(m_modSample);
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calculateLevel(m_modSample.real());
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m_audioBufferFill++;
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}
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m_interpolatorDistanceRemain += m_interpolatorDistance;
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}
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else
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{
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pullAF(ri);
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}
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m_modPhasor += (m_settings.m_fmDeviation / (float) m_settings.m_outputSampleRate) * ri.real() * M_PI * 2.0f;
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ci.real(cos(m_modPhasor) * 29204.0f); // -1 dB
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ci.imag(sin(m_modPhasor) * 29204.0f);
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// RF filtering
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rf_out = m_rfFilter->runFilt(ci, &rf);
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if (rf_out > 0)
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{
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memcpy((void *) m_rfFilterBuffer, (const void *) rf, rf_out*sizeof(Complex));
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m_rfFilterBufferIndex = 0;
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}
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ci = m_rfFilterBuffer[m_rfFilterBufferIndex] * m_carrierNco.nextIQ(); // shift to carrier frequency
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m_rfFilterBufferIndex++;
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m_settingsMutex.unlock();
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Real magsq = ci.real() * ci.real() + ci.imag() * ci.imag();
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magsq /= (1<<30);
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m_movingAverage.feed(magsq);
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m_magsq = m_movingAverage.average();
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sample.m_real = (FixReal) ci.real();
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sample.m_imag = (FixReal) ci.imag();
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}
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void WFMMod::pullAudio(int nbSamples)
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{
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unsigned int nbSamplesAudio = nbSamples * ((Real) m_settings.m_audioSampleRate / (Real) m_settings.m_basebandSampleRate);
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if (nbSamplesAudio > m_audioBuffer.size())
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{
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m_audioBuffer.resize(nbSamplesAudio);
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}
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m_audioFifo.read(reinterpret_cast<quint8*>(&m_audioBuffer[0]), nbSamplesAudio, 10);
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m_audioBufferFill = 0;
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}
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void WFMMod::pullAF(Complex& sample)
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{
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switch (m_afInput)
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{
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case WFMModInputTone:
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sample.real(m_toneNcoRF.next() * m_settings.m_volumeFactor);
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sample.imag(0.0f);
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break;
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case WFMModInputFile:
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// sox f4exb_call.wav --encoding float --endian little f4exb_call.raw
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// ffplay -f f32le -ar 48k -ac 1 f4exb_call.raw
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if (m_ifstream.is_open())
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{
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if (m_ifstream.eof())
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{
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if (m_settings.m_playLoop)
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{
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m_ifstream.clear();
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m_ifstream.seekg(0, std::ios::beg);
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}
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}
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if (m_ifstream.eof())
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{
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sample.real(0.0f);
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sample.imag(0.0f);
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}
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else
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{
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Real s;
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m_ifstream.read(reinterpret_cast<char*>(&s), sizeof(Real));
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sample.real(s * m_settings.m_volumeFactor);
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sample.imag(0.0f);
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}
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}
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else
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{
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sample.real(0.0f);
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sample.imag(0.0f);
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}
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break;
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case WFMModInputAudio:
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{
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sample.real(((m_audioBuffer[m_audioBufferFill].l + m_audioBuffer[m_audioBufferFill].r) / 65536.0f) * m_settings.m_volumeFactor);
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sample.imag(0.0f);
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}
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break;
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case WFMModInputCWTone:
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Real fadeFactor;
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if (m_cwKeyer.getSample())
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{
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m_cwKeyer.getCWSmoother().getFadeSample(true, fadeFactor);
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sample.real(m_toneNcoRF.next() * m_settings.m_volumeFactor * fadeFactor);
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sample.imag(0.0f);
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}
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else
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{
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if (m_cwKeyer.getCWSmoother().getFadeSample(false, fadeFactor))
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{
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sample.real(m_toneNcoRF.next() * m_settings.m_volumeFactor * fadeFactor);
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sample.imag(0.0f);
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}
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else
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{
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sample.real(0.0f);
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sample.imag(0.0f);
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m_toneNcoRF.setPhase(0);
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}
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}
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break;
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case WFMModInputNone:
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default:
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sample.real(0.0f);
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sample.imag(0.0f);
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break;
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}
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}
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void WFMMod::calculateLevel(const Real& sample)
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{
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if (m_levelCalcCount < m_levelNbSamples)
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{
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m_peakLevel = std::max(std::fabs(m_peakLevel), sample);
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m_levelSum += sample * sample;
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m_levelCalcCount++;
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}
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else
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{
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qreal rmsLevel = sqrt(m_levelSum / m_levelNbSamples);
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//qDebug("WFMMod::calculateLevel: %f %f", rmsLevel, m_peakLevel);
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emit levelChanged(rmsLevel, m_peakLevel, m_levelNbSamples);
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m_peakLevel = 0.0f;
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m_levelSum = 0.0f;
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m_levelCalcCount = 0;
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}
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}
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void WFMMod::start()
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{
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qDebug() << "WFMMod::start: m_outputSampleRate: " << m_settings.m_outputSampleRate
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<< " m_inputFrequencyOffset: " << m_settings.m_inputFrequencyOffset;
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m_audioFifo.clear();
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}
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void WFMMod::stop()
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{
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}
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bool WFMMod::handleMessage(const Message& cmd)
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{
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if (UpChannelizer::MsgChannelizerNotification::match(cmd))
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{
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UpChannelizer::MsgChannelizerNotification& notif = (UpChannelizer::MsgChannelizerNotification&) cmd;
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WFMModSettings settings = m_settings;
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settings.m_basebandSampleRate = notif.getBasebandSampleRate();
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settings.m_outputSampleRate = notif.getSampleRate();
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settings.m_inputFrequencyOffset = notif.getFrequencyOffset();
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applySettings(settings);
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qDebug() << "WFMMod::handleMessage: MsgChannelizerNotification:"
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<< " m_basebandSampleRate: " << settings.m_basebandSampleRate
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<< " m_outputSampleRate: " << settings.m_outputSampleRate
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<< " m_inputFrequencyOffset: " << settings.m_inputFrequencyOffset;
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return true;
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}
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else if (MsgConfigureChannelizer::match(cmd))
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{
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MsgConfigureChannelizer& cfg = (MsgConfigureChannelizer&) cmd;
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m_channelizer->configure(m_channelizer->getInputMessageQueue(),
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cfg.getSampleRate(),
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cfg.getCenterFrequency());
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qDebug() << "WFMMod::handleMessage: MsgConfigureChannelizer:"
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<< " getSampleRate: " << cfg.getSampleRate()
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<< " getCenterFrequency: " << cfg.getCenterFrequency();
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return true;
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}
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else if (MsgConfigureWFMMod::match(cmd))
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{
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MsgConfigureWFMMod& cfg = (MsgConfigureWFMMod&) cmd;
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WFMModSettings settings = cfg.getSettings();
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m_absoluteFrequencyOffset = settings.m_inputFrequencyOffset;
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settings.m_basebandSampleRate = m_settings.m_basebandSampleRate;
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settings.m_outputSampleRate = m_settings.m_outputSampleRate;
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settings.m_inputFrequencyOffset = m_settings.m_inputFrequencyOffset;
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qDebug() << "NFWFMMod::handleMessage: MsgConfigureWFMMod:"
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<< " m_rfBandwidth: " << settings.m_rfBandwidth
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<< " m_afBandwidth: " << settings.m_afBandwidth
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<< " m_fmDeviation: " << settings.m_fmDeviation
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<< " m_volumeFactor: " << settings.m_volumeFactor
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<< " m_toneFrequency: " << settings.m_toneFrequency
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<< " m_channelMute: " << settings.m_channelMute
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<< " m_playLoop: " << settings.m_playLoop
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<< " force: " << cfg.getForce();
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applySettings(settings, cfg.getForce());
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return true;
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}
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else if (MsgConfigureFileSourceName::match(cmd))
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{
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MsgConfigureFileSourceName& conf = (MsgConfigureFileSourceName&) cmd;
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m_fileName = conf.getFileName();
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openFileStream();
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return true;
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}
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else if (MsgConfigureFileSourceSeek::match(cmd))
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{
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MsgConfigureFileSourceSeek& conf = (MsgConfigureFileSourceSeek&) cmd;
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int seekPercentage = conf.getPercentage();
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seekFileStream(seekPercentage);
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return true;
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}
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else if (MsgConfigureAFInput::match(cmd))
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{
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MsgConfigureAFInput& conf = (MsgConfigureAFInput&) cmd;
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m_afInput = conf.getAFInput();
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return true;
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}
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else if (MsgConfigureFileSourceStreamTiming::match(cmd))
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{
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std::size_t samplesCount;
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if (m_ifstream.eof()) {
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samplesCount = m_fileSize / sizeof(Real);
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} else {
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samplesCount = m_ifstream.tellg() / sizeof(Real);
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}
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MsgReportFileSourceStreamTiming *report;
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report = MsgReportFileSourceStreamTiming::create(samplesCount);
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getMessageQueueToGUI()->push(report);
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return true;
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}
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else
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{
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return false;
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}
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}
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void WFMMod::openFileStream()
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{
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if (m_ifstream.is_open()) {
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m_ifstream.close();
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}
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m_ifstream.open(m_fileName.toStdString().c_str(), std::ios::binary | std::ios::ate);
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m_fileSize = m_ifstream.tellg();
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m_ifstream.seekg(0,std::ios_base::beg);
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m_sampleRate = 48000; // fixed rate
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m_recordLength = m_fileSize / (sizeof(Real) * m_sampleRate);
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qDebug() << "WFMMod::openFileStream: " << m_fileName.toStdString().c_str()
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<< " fileSize: " << m_fileSize << "bytes"
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<< " length: " << m_recordLength << " seconds";
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MsgReportFileSourceStreamData *report;
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report = MsgReportFileSourceStreamData::create(m_sampleRate, m_recordLength);
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getMessageQueueToGUI()->push(report);
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}
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void WFMMod::seekFileStream(int seekPercentage)
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{
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QMutexLocker mutexLocker(&m_settingsMutex);
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if (m_ifstream.is_open())
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{
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int seekPoint = ((m_recordLength * seekPercentage) / 100) * m_sampleRate;
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seekPoint *= sizeof(Real);
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m_ifstream.clear();
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m_ifstream.seekg(seekPoint, std::ios::beg);
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}
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}
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void WFMMod::applySettings(const WFMModSettings& settings, bool force)
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{
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if ((settings.m_inputFrequencyOffset != m_settings.m_inputFrequencyOffset) ||
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(settings.m_outputSampleRate != m_settings.m_outputSampleRate))
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{
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m_settingsMutex.lock();
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m_carrierNco.setFreq(settings.m_inputFrequencyOffset, settings.m_outputSampleRate);
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m_settingsMutex.unlock();
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}
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if((settings.m_outputSampleRate != m_settings.m_outputSampleRate) ||
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(settings.m_audioSampleRate != m_settings.m_audioSampleRate) ||
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(settings.m_afBandwidth != m_settings.m_afBandwidth) || force)
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{
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m_settingsMutex.lock();
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m_interpolatorDistanceRemain = 0;
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m_interpolatorConsumed = false;
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m_interpolatorDistance = (Real) settings.m_audioSampleRate / (Real) settings.m_outputSampleRate;
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m_interpolator.create(48, settings.m_audioSampleRate, settings.m_rfBandwidth / 2.2, 3.0);
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m_settingsMutex.unlock();
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}
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if ((settings.m_rfBandwidth != m_settings.m_rfBandwidth) ||
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(settings.m_outputSampleRate != m_settings.m_outputSampleRate) || force)
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{
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m_settingsMutex.lock();
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Real lowCut = -(settings.m_rfBandwidth / 2.0) / settings.m_outputSampleRate;
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Real hiCut = (settings.m_rfBandwidth / 2.0) / settings.m_outputSampleRate;
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m_rfFilter->create_filter(lowCut, hiCut);
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m_settingsMutex.unlock();
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}
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if ((settings.m_toneFrequency != m_settings.m_toneFrequency) ||
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(settings.m_audioSampleRate != m_settings.m_audioSampleRate) || force)
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{
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m_settingsMutex.lock();
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m_toneNco.setFreq(settings.m_toneFrequency, settings.m_audioSampleRate);
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m_settingsMutex.unlock();
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}
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if ((settings.m_toneFrequency != m_settings.m_toneFrequency) ||
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(settings.m_outputSampleRate != m_settings.m_outputSampleRate) || force)
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{
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m_settingsMutex.lock();
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m_toneNcoRF.setFreq(settings.m_toneFrequency, settings.m_outputSampleRate);
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m_settingsMutex.unlock();
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}
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if ((settings.m_outputSampleRate != m_settings.m_outputSampleRate) || force)
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{
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m_cwKeyer.setSampleRate(settings.m_outputSampleRate);
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m_cwKeyer.reset();
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}
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m_settings = settings;
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}
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QByteArray WFMMod::serialize() const
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{
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return m_settings.serialize();
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}
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bool WFMMod::deserialize(const QByteArray& data)
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{
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|
if (m_settings.deserialize(data))
|
|
{
|
|
MsgConfigureWFMMod *msg = MsgConfigureWFMMod::create(m_settings, true);
|
|
m_inputMessageQueue.push(msg);
|
|
return true;
|
|
}
|
|
else
|
|
{
|
|
m_settings.resetToDefaults();
|
|
MsgConfigureWFMMod *msg = MsgConfigureWFMMod::create(m_settings, true);
|
|
m_inputMessageQueue.push(msg);
|
|
return false;
|
|
}
|
|
}
|