SDRPlusPlus/src/main_window.cpp

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#include <main_window.h>
std::thread worker;
std::mutex fft_mtx;
ImGui::WaterFall wtf;
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FrequencySelect fSel;
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fftwf_complex *fft_in, *fft_out;
fftwf_plan p;
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float* tempData;
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float* uiGains;
char buf[1024];
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ImFont* bigFont;
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int fftSize = 8192 * 8;
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io::SoapyWrapper soapy;
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SignalPath sigPath;
std::vector<float> _data;
std::vector<float> fftTaps;
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void fftHandler(dsp::complex_t* samples) {
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fftwf_execute(p);
int half = fftSize / 2;
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for (int i = 0; i < half; i++) {
_data.push_back(log10(std::abs(std::complex<float>(fft_out[half + i][0], fft_out[half + i][1])) / (float)fftSize) * 10.0f);
}
for (int i = 0; i < half; i++) {
_data.push_back(log10(std::abs(std::complex<float>(fft_out[i][0], fft_out[i][1])) / (float)fftSize) * 10.0f);
}
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for (int i = 5; i < fftSize; i++) {
_data[i] = (_data[i - 4] + _data[i - 3] + _data[i - 2] + _data[i - 1] + _data[i]) / 5.0f;
}
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wtf.pushFFT(_data, fftSize);
_data.clear();
}
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dsp::NullSink sink;
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int devId = 0;
int srId = 0;
watcher<int> bandplanId(0, true);
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watcher<uint64_t> freq((uint64_t)90500000);
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int demod = 1;
watcher<float> vfoFreq(92000000.0f);
float dummyVolume = 1.0f;
float* volume = &dummyVolume;
float fftMin = -70.0f;
float fftMax = 0.0f;
watcher<float> offset(0.0f, true);
watcher<float> bw(8000000.0f, true);
int sampleRate = 8000000;
bool playing = false;
watcher<bool> dcbias(false, false);
watcher<bool> bandPlanEnabled(true, false);
bool showCredits = false;
std::string audioStreamName = "";
std::string sourceName = "";
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int menuWidth = 300;
bool grabbingMenu = false;
int newWidth = 300;
bool showWaterfall = true;
int fftHeight = 300;
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bool showMenu = true;
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void saveCurrentSource() {
int i = 0;
for (std::string gainName : soapy.gainList) {
config::config["sourceSettings"][sourceName]["gains"][gainName] = uiGains[i];
i++;
}
config::config["sourceSettings"][sourceName]["sampleRate"] = soapy.sampleRates[srId];
}
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void loadSourceConfig(std::string name) {
json sourceSettings = config::config["sourceSettings"][name];
sampleRate = sourceSettings["sampleRate"];
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auto _srIt = std::find(soapy.sampleRates.begin(), soapy.sampleRates.end(), sampleRate);
// If the sample rate isn't valid, set to minimum
if (_srIt == soapy.sampleRates.end()) {
srId = 0;
sampleRate = soapy.sampleRates[0];
}
else {
srId = std::distance(soapy.sampleRates.begin(), _srIt);
}
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sigPath.setSampleRate(sampleRate);
soapy.setSampleRate(sampleRate);
// Set gains
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delete[] uiGains;
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uiGains = new float[soapy.gainList.size()];
int i = 0;
for (std::string gainName : soapy.gainList) {
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// If gain doesn't exist in config, set it to the minimum value
if (!sourceSettings["gains"].contains(gainName)) {
uiGains[i] = soapy.gainRanges[i].minimum();
soapy.setGain(i, uiGains[i]);
continue;
}
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uiGains[i] = sourceSettings["gains"][gainName];
soapy.setGain(i, uiGains[i]);
i++;
}
// Update GUI
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wtf.setBandwidth(sampleRate);
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wtf.setViewBandwidth(sampleRate);
bw.val = sampleRate;
}
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void loadAudioConfig(std::string name) {
json audioSettings = config::config["audio"][name];
std::string devName = audioSettings["device"];
auto _devIt = std::find(audio::streams[name]->audio->deviceNames.begin(), audio::streams[name]->audio->deviceNames.end(), devName);
// If audio device doesn't exist anymore
if (_devIt == audio::streams[name]->audio->deviceNames.end()) {
audio::streams[name]->audio->setToDefault();
int deviceId = audio::streams[name]->audio->getDeviceId();
audio::setAudioDevice(name, deviceId, audio::streams[name]->audio->devices[deviceId].sampleRates[0]);
audio::streams[name]->sampleRateId = 0;
audio::streams[name]->volume = audioSettings["volume"];
audio::streams[name]->audio->setVolume(audio::streams[name]->volume);
return;
}
int deviceId = std::distance(audio::streams[name]->audio->deviceNames.begin(), _devIt);
float sr = audioSettings["sampleRate"];
auto _srIt = std::find(audio::streams[name]->audio->devices[deviceId].sampleRates.begin(), audio::streams[name]->audio->devices[deviceId].sampleRates.end(), sr);
// If sample rate doesn't exist anymore
if (_srIt == audio::streams[name]->audio->devices[deviceId].sampleRates.end()) {
audio::streams[name]->sampleRateId = 0;
audio::setAudioDevice(name, deviceId, audio::streams[name]->audio->devices[deviceId].sampleRates[0]);
audio::streams[name]->volume = audioSettings["volume"];
audio::streams[name]->audio->setVolume(audio::streams[name]->volume);
return;
}
int samplerateId = std::distance(audio::streams[name]->audio->devices[deviceId].sampleRates.begin(), _srIt);
audio::streams[name]->sampleRateId = samplerateId;
audio::setAudioDevice(name, deviceId, audio::streams[name]->audio->devices[deviceId].sampleRates[samplerateId]);
audio::streams[name]->deviceId = deviceId;
audio::streams[name]->volume = audioSettings["volume"];
audio::streams[name]->audio->setVolume(audio::streams[name]->volume);
}
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void saveAudioConfig(std::string name) {
config::config["audio"][name]["device"] = audio::streams[name]->audio->deviceNames[audio::streams[name]->deviceId];
config::config["audio"][name]["volume"] = audio::streams[name]->volume;
config::config["audio"][name]["sampleRate"] = audio::streams[name]->sampleRate;
}
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void windowInit() {
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fSel.init();
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fft_in = (fftwf_complex*) fftwf_malloc(sizeof(fftwf_complex) * fftSize);
fft_out = (fftwf_complex*) fftwf_malloc(sizeof(fftwf_complex) * fftSize);
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p = fftwf_plan_dft_1d(fftSize, fft_in, fft_out, FFTW_FORWARD, FFTW_ESTIMATE);
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sigPath.init(sampleRate, 20, fftSize, &soapy.output, (dsp::complex_t*)fft_in, fftHandler);
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sigPath.start();
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vfoman::init(&wtf, &sigPath);
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uiGains = new float[soapy.gainList.size()];
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spdlog::info("Loading modules");
mod::initAPI(&wtf);
mod::loadFromList("module_list.json");
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bigFont = ImGui::GetIO().Fonts->AddFontFromFileTTF("res/fonts/Roboto-Medium.ttf", 128.0f);
// Load last source configuration
uint64_t frequency = config::config["frequency"];
sourceName = config::config["source"];
auto _sourceIt = std::find(soapy.devNameList.begin(), soapy.devNameList.end(), sourceName);
if (_sourceIt != soapy.devNameList.end() && config::config["sourceSettings"].contains(sourceName)) {
json sourceSettings = config::config["sourceSettings"][sourceName];
devId = std::distance(soapy.devNameList.begin(), _sourceIt);
soapy.setDevice(soapy.devList[devId]);
loadSourceConfig(sourceName);
}
else {
int i = 0;
bool settingsFound = false;
for (std::string devName : soapy.devNameList) {
if (config::config["sourceSettings"].contains(devName)) {
sourceName = devName;
settingsFound = true;
devId = i;
soapy.setDevice(soapy.devList[i]);
loadSourceConfig(sourceName);
break;
}
i++;
}
if (!settingsFound) {
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if (soapy.devNameList.size() > 0) {
sourceName = soapy.devNameList[0];
}
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sampleRate = soapy.getSampleRate();
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sigPath.setSampleRate(sampleRate);
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}
// Search for the first source in the list to have a config
// If no pre-defined source, selected default device
}
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// Also add a loading screen
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// Adjustable "snap to grid" for each VFO
// Finish the recorder module
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// Add squelsh
// Bandwidth ajustment
// DSB / CW and RAW modes;
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// Bring VFO to a visible place when changing sample rate if it's smaller
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// Have a proper root directory
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// Fix issue of source name not set when source was not selected manually
// Generate entire source config before saving a source property
// ^ same for audio devices
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// And a module add/remove/change order menu
// get rid of watchers and use if() instead
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// Switch to double for all frequecies and bandwidth
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// Update UI settings
fftMin = config::config["min"];
fftMax = config::config["max"];
wtf.setFFTMin(fftMin);
wtf.setWaterfallMin(fftMin);
wtf.setFFTMax(fftMax);
wtf.setWaterfallMax(fftMax);
bandPlanEnabled.val = config::config["bandPlanEnabled"];
bandPlanEnabled.markAsChanged();
std::string bandPlanName = config::config["bandPlan"];
auto _bandplanIt = bandplan::bandplans.find(bandPlanName);
if (_bandplanIt != bandplan::bandplans.end()) {
bandplanId.val = std::distance(bandplan::bandplans.begin(), bandplan::bandplans.find(bandPlanName));
if (bandPlanEnabled.val) {
wtf.bandplan = &bandplan::bandplans[bandPlanName];
}
else {
wtf.bandplan = NULL;
}
}
else {
bandplanId.val = 0;
}
bandplanId.markAsChanged();
fSel.setFrequency(frequency);
fSel.frequencyChanged = false;
soapy.setFrequency(frequency);
wtf.setCenterFrequency(frequency);
wtf.setBandwidth(sampleRate);
wtf.setViewBandwidth(sampleRate);
bw.val = sampleRate;
wtf.vfoFreqChanged = false;
wtf.centerFreqMoved = false;
wtf.selectFirstVFO();
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for (auto [name, stream] : audio::streams) {
if (config::config["audio"].contains(name)) {
bool running = audio::streams[name]->running;
audio::stopStream(name);
loadAudioConfig(name);
if (running) {
audio::startStream(name);
}
}
}
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audioStreamName = audio::getNameFromVFO(wtf.selectedVFO);
if (audioStreamName != "") {
volume = &audio::streams[audioStreamName]->volume;
}
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menuWidth = config::config["menuWidth"];
newWidth = menuWidth;
showWaterfall = config::config["showWaterfall"];
if (!showWaterfall) {
wtf.hideWaterfall();
}
fftHeight = config::config["fftHeight"];
wtf.setFFTHeight(fftHeight);
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}
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void setVFO(float freq) {
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ImGui::WaterfallVFO* vfo = wtf.vfos[wtf.selectedVFO];
float currentOff = vfo->centerOffset;
float currentTune = wtf.getCenterFrequency() + vfo->generalOffset;
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float delta = freq - currentTune;
float newVFO = currentOff + delta;
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float vfoBW = vfo->bandwidth;
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float vfoBottom = newVFO - (vfoBW / 2.0f);
float vfoTop = newVFO + (vfoBW / 2.0f);
float view = wtf.getViewOffset();
float viewBW = wtf.getViewBandwidth();
float viewBottom = view - (viewBW / 2.0f);
float viewTop = view + (viewBW / 2.0f);
float wholeFreq = wtf.getCenterFrequency();
float BW = wtf.getBandwidth();
float bottom = -(BW / 2.0f);
float top = (BW / 2.0f);
// VFO still fints in the view
if (vfoBottom > viewBottom && vfoTop < viewTop) {
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vfoman::setCenterOffset(wtf.selectedVFO, newVFO);
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return;
}
// VFO too low for current SDR tuning
if (vfoBottom < bottom) {
wtf.setViewOffset((BW / 2.0f) - (viewBW / 2.0f));
float newVFOOffset = (BW / 2.0f) - (vfoBW / 2.0f) - (viewBW / 10.0f);
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vfoman::setCenterOffset(wtf.selectedVFO, newVFOOffset);
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wtf.setCenterFrequency(freq - newVFOOffset);
soapy.setFrequency(freq - newVFOOffset);
return;
}
// VFO too high for current SDR tuning
if (vfoTop > top) {
wtf.setViewOffset((viewBW / 2.0f) - (BW / 2.0f));
float newVFOOffset = (vfoBW / 2.0f) - (BW / 2.0f) + (viewBW / 10.0f);
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vfoman::setCenterOffset(wtf.selectedVFO, newVFOOffset);
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wtf.setCenterFrequency(freq - newVFOOffset);
soapy.setFrequency(freq - newVFOOffset);
return;
}
// VFO is still without the SDR's bandwidth
if (delta < 0) {
float newViewOff = vfoTop - (viewBW / 2.0f) + (viewBW / 10.0f);
float newViewBottom = newViewOff - (viewBW / 2.0f);
float newViewTop = newViewOff + (viewBW / 2.0f);
if (newViewBottom > bottom) {
wtf.setViewOffset(newViewOff);
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vfoman::setCenterOffset(wtf.selectedVFO, newVFO);
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return;
}
wtf.setViewOffset((BW / 2.0f) - (viewBW / 2.0f));
float newVFOOffset = (BW / 2.0f) - (vfoBW / 2.0f) - (viewBW / 10.0f);
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vfoman::setCenterOffset(wtf.selectedVFO, newVFOOffset);
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wtf.setCenterFrequency(freq - newVFOOffset);
soapy.setFrequency(freq - newVFOOffset);
}
else {
float newViewOff = vfoBottom + (viewBW / 2.0f) - (viewBW / 10.0f);
float newViewBottom = newViewOff - (viewBW / 2.0f);
float newViewTop = newViewOff + (viewBW / 2.0f);
if (newViewTop < top) {
wtf.setViewOffset(newViewOff);
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vfoman::setCenterOffset(wtf.selectedVFO, newVFO);
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return;
}
wtf.setViewOffset((viewBW / 2.0f) - (BW / 2.0f));
float newVFOOffset = (vfoBW / 2.0f) - (BW / 2.0f) + (viewBW / 10.0f);
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vfoman::setCenterOffset(wtf.selectedVFO, newVFOOffset);
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wtf.setCenterFrequency(freq - newVFOOffset);
soapy.setFrequency(freq - newVFOOffset);
}
}
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void drawWindow() {
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ImGui::Begin("Main", NULL, WINDOW_FLAGS);
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ImGui::WaterfallVFO* vfo = wtf.vfos[wtf.selectedVFO];
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if (vfo->centerOffsetChanged) {
fSel.setFrequency(wtf.getCenterFrequency() + vfo->generalOffset);
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fSel.frequencyChanged = false;
config::config["frequency"] = fSel.frequency;
config::configModified = true;
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}
vfoman::updateFromWaterfall();
if (wtf.selectedVFOChanged) {
wtf.selectedVFOChanged = false;
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fSel.setFrequency(vfo->generalOffset + wtf.getCenterFrequency());
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fSel.frequencyChanged = false;
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mod::broadcastEvent(mod::EVENT_SELECTED_VFO_CHANGED);
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audioStreamName = audio::getNameFromVFO(wtf.selectedVFO);
if (audioStreamName != "") {
volume = &audio::streams[audioStreamName]->volume;
}
config::config["frequency"] = fSel.frequency;
config::configModified = true;
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}
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if (fSel.frequencyChanged) {
fSel.frequencyChanged = false;
setVFO(fSel.frequency);
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vfo->centerOffsetChanged = false;
vfo->lowerOffsetChanged = false;
vfo->upperOffsetChanged = false;
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config::config["frequency"] = fSel.frequency;
config::configModified = true;
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}
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if (wtf.centerFreqMoved) {
wtf.centerFreqMoved = false;
soapy.setFrequency(wtf.getCenterFrequency());
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fSel.setFrequency(wtf.getCenterFrequency() + vfo->generalOffset);
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config::config["frequency"] = fSel.frequency;
config::configModified = true;
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}
if (dcbias.changed()) {
sigPath.setDCBiasCorrection(dcbias.val);
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}
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if (bandplanId.changed() && bandPlanEnabled.val) {
wtf.bandplan = &bandplan::bandplans[bandplan::bandplanNames[bandplanId.val]];
}
if (bandPlanEnabled.changed()) {
wtf.bandplan = bandPlanEnabled.val ? &bandplan::bandplans[bandplan::bandplanNames[bandplanId.val]] : NULL;
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}
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int _fftHeight = wtf.getFFTHeight();
if (fftHeight != _fftHeight) {
fftHeight = _fftHeight;
config::config["fftHeight"] = fftHeight;
config::configModified = true;
}
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ImVec2 vMin = ImGui::GetWindowContentRegionMin();
ImVec2 vMax = ImGui::GetWindowContentRegionMax();
int width = vMax.x - vMin.x;
int height = vMax.y - vMin.y;
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int modCount = mod::moduleNames.size();
mod::Module_t mod;
for (int i = 0; i < modCount; i++) {
mod = mod::modules[mod::moduleNames[i]];
mod._NEW_FRAME_(mod.ctx);
}
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// To Bar
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if (ImGui::ImageButton(icons::MENU, ImVec2(40, 40), ImVec2(0, 0), ImVec2(1, 1), 0)) {
showMenu = !showMenu;
}
ImGui::SameLine();
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if (playing) {
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if (ImGui::ImageButton(icons::STOP, ImVec2(40, 40), ImVec2(0, 0), ImVec2(1, 1), 0)) {
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soapy.stop();
playing = false;
}
}
else {
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if (ImGui::ImageButton(icons::PLAY, ImVec2(40, 40), ImVec2(0, 0), ImVec2(1, 1), 0) && soapy.devList.size() > 0) {
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soapy.start();
soapy.setFrequency(wtf.getCenterFrequency());
playing = true;
}
}
ImGui::SameLine();
ImGui::SetCursorPosY(ImGui::GetCursorPosY() + 8);
ImGui::SetNextItemWidth(200);
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if (ImGui::SliderFloat("##_2_", volume, 0.0f, 1.0f, "")) {
if (audioStreamName != "") {
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if (!config::config["audio"].contains(audioStreamName)) {
saveAudioConfig(audioStreamName);
}
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audio::streams[audioStreamName]->audio->setVolume(*volume);
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config::config["audio"][audioStreamName]["volume"] = *volume;
config::configModified = true;
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}
}
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ImGui::SameLine();
fSel.draw();
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ImGui::SameLine();
// Logo button
ImGui::SetCursorPosX(ImGui::GetWindowSize().x - 48);
ImGui::SetCursorPosY(10);
if (ImGui::ImageButton(icons::LOGO, ImVec2(32, 32), ImVec2(0, 0), ImVec2(1, 1), 0)) {
showCredits = true;
}
if (ImGui::IsMouseDown(ImGuiMouseButton_Left)) {
showCredits = false;
}
if (ImGui::IsKeyPressed(GLFW_KEY_ESCAPE)) {
showCredits = false;
}
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// Handle menu resize
float curY = ImGui::GetCursorPosY();
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ImVec2 winSize = ImGui::GetWindowSize();
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ImVec2 mousePos = ImGui::GetMousePos();
bool click = ImGui::IsMouseClicked(ImGuiMouseButton_Left);
bool down = ImGui::IsMouseDown(ImGuiMouseButton_Left);
if (grabbingMenu) {
newWidth = mousePos.x;
newWidth = std::clamp<float>(newWidth, 250, winSize.x - 250);
ImGui::GetForegroundDrawList()->AddLine(ImVec2(newWidth, curY), ImVec2(newWidth, winSize.y - 10), ImGui::GetColorU32(ImGuiCol_SeparatorActive));
}
if (mousePos.x >= newWidth - 2 && mousePos.x <= newWidth + 2 && mousePos.y > curY) {
ImGui::SetMouseCursor(ImGuiMouseCursor_ResizeEW);
if (click) {
grabbingMenu = true;
}
}
else {
ImGui::SetMouseCursor(ImGuiMouseCursor_Arrow);
}
if(!down && grabbingMenu) {
grabbingMenu = false;
menuWidth = newWidth;
config::config["menuWidth"] = menuWidth;
config::configModified = true;
}
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// Left Column
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if (showMenu) {
ImGui::Columns(3, "WindowColumns", false);
ImGui::SetColumnWidth(0, menuWidth);
ImGui::SetColumnWidth(1, winSize.x - menuWidth - 60);
ImGui::SetColumnWidth(2, 60);
ImGui::BeginChild("Left Column");
float menuColumnWidth = ImGui::GetContentRegionAvailWidth();
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if (ImGui::CollapsingHeader("Source", ImGuiTreeNodeFlags_DefaultOpen)) {
if (playing) { style::beginDisabled(); };
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ImGui::PushItemWidth(menuColumnWidth);
if (ImGui::Combo("##_0_", &devId, soapy.txtDevList.c_str())) {
spdlog::info("Changed input device: {0}", devId);
sourceName = soapy.devNameList[devId];
soapy.setDevice(soapy.devList[devId]);
if (config::config["sourceSettings"].contains(sourceName)) {
loadSourceConfig(sourceName);
}
else {
srId = 0;
sampleRate = soapy.getSampleRate();
bw.val = sampleRate;
wtf.setBandwidth(sampleRate);
wtf.setViewBandwidth(sampleRate);
sigPath.setSampleRate(sampleRate);
if (soapy.gainList.size() >= 0) {
delete[] uiGains;
uiGains = new float[soapy.gainList.size()];
for (int i = 0; i < soapy.gainList.size(); i++) {
uiGains[i] = soapy.currentGains[i];
}
}
}
setVFO(fSel.frequency);
config::config["source"] = sourceName;
config::configModified = true;
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}
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ImGui::PopItemWidth();
if (ImGui::Combo("##_1_", &srId, soapy.txtSampleRateList.c_str())) {
spdlog::info("Changed sample rate: {0}", srId);
sampleRate = soapy.sampleRates[srId];
soapy.setSampleRate(sampleRate);
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wtf.setBandwidth(sampleRate);
wtf.setViewBandwidth(sampleRate);
sigPath.setSampleRate(sampleRate);
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bw.val = sampleRate;
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if (!config::config["sourceSettings"].contains(sourceName)) {
saveCurrentSource();
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}
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config::config["sourceSettings"][sourceName]["sampleRate"] = sampleRate;
config::configModified = true;
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}
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ImGui::SameLine();
bool noDevice = (soapy.devList.size() == 0);
if (ImGui::Button("Refresh", ImVec2(menuColumnWidth - ImGui::GetCursorPosX(), 0.0f))) {
soapy.refresh();
if (noDevice && soapy.devList.size() > 0) {
sourceName = soapy.devNameList[0];
soapy.setDevice(soapy.devList[0]);
if (config::config["sourceSettings"][sourceName]) {
loadSourceConfig(sourceName);
}
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}
}
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if (playing) { style::endDisabled(); };
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float maxTextLength = 0;
float txtLen = 0;
char buf[100];
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// Calculate the spacing
for (int i = 0; i < soapy.gainList.size(); i++) {
sprintf(buf, "%s gain", soapy.gainList[i].c_str());
txtLen = ImGui::CalcTextSize(buf).x;
if (txtLen > maxTextLength) {
maxTextLength = txtLen;
}
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}
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for (int i = 0; i < soapy.gainList.size(); i++) {
ImGui::Text("%s gain", soapy.gainList[i].c_str());
ImGui::SameLine();
sprintf(buf, "##_gain_slide_%d_", i);
ImGui::SetCursorPosX(maxTextLength + 5);
ImGui::PushItemWidth(menuColumnWidth - (maxTextLength + 5));
if (ImGui::SliderFloat(buf, &uiGains[i], soapy.gainRanges[i].minimum(), soapy.gainRanges[i].maximum())) {
soapy.setGain(i, uiGains[i]);
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if (!config::config["sourceSettings"].contains(sourceName)) {
saveCurrentSource();
}
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config::config["sourceSettings"][sourceName]["gains"][soapy.gainList[i]] = uiGains[i];
config::configModified = true;
}
ImGui::PopItemWidth();
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}
ImGui::Spacing();
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}
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for (int i = 0; i < modCount; i++) {
if (ImGui::CollapsingHeader(mod::moduleNames[i].c_str(), ImGuiTreeNodeFlags_DefaultOpen)) {
mod = mod::modules[mod::moduleNames[i]];
mod._DRAW_MENU_(mod.ctx);
ImGui::Spacing();
}
}
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if (ImGui::CollapsingHeader("Audio", ImGuiTreeNodeFlags_DefaultOpen)) {
int count = 0;
int maxCount = audio::streams.size();
for (auto const& [name, stream] : audio::streams) {
int deviceId;
float vol = 1.0f;
deviceId = stream->audio->getDeviceId();
ImGui::SetCursorPosX((menuColumnWidth / 2.0f) - (ImGui::CalcTextSize(name.c_str()).x / 2.0f));
ImGui::Text(name.c_str());
ImGui::PushItemWidth(menuColumnWidth);
bool running = stream->running;
if (ImGui::Combo(("##_audio_dev_0_"+ name).c_str(), &stream->deviceId, stream->audio->devTxtList.c_str())) {
audio::stopStream(name);
audio::setAudioDevice(name, stream->deviceId, stream->audio->devices[deviceId].sampleRates[0]);
if (running) {
audio::startStream(name);
}
stream->sampleRateId = 0;
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// Create config if it doesn't exist
if (!config::config["audio"].contains(name)) {
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saveAudioConfig(name);
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}
config::config["audio"][name]["device"] = stream->audio->deviceNames[stream->deviceId];
config::config["audio"][name]["sampleRate"] = stream->audio->devices[stream->deviceId].sampleRates[0];
config::configModified = true;
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}
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if (ImGui::Combo(("##_audio_sr_0_" + name).c_str(), &stream->sampleRateId, stream->audio->devices[deviceId].txtSampleRates.c_str())) {
audio::stopStream(name);
audio::setSampleRate(name, stream->audio->devices[deviceId].sampleRates[stream->sampleRateId]);
if (running) {
audio::startStream(name);
}
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// Create config if it doesn't exist
if (!config::config["audio"].contains(name)) {
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saveAudioConfig(name);
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}
config::config["audio"][name]["sampleRate"] = stream->audio->devices[deviceId].sampleRates[stream->sampleRateId];
config::configModified = true;
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}
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if (ImGui::SliderFloat(("##_audio_vol_0_" + name).c_str(), &stream->volume, 0.0f, 1.0f, "")) {
stream->audio->setVolume(stream->volume);
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// Create config if it doesn't exist
if (!config::config["audio"].contains(name)) {
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saveAudioConfig(name);
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}
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config::config["audio"][name]["volume"] = stream->volume;
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config::configModified = true;
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}
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ImGui::PopItemWidth();
count++;
if (count < maxCount) {
ImGui::Spacing();
ImGui::Separator();
}
ImGui::Spacing();
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}
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ImGui::Spacing();
}
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if (ImGui::CollapsingHeader("Band Plan", ImGuiTreeNodeFlags_DefaultOpen)) {
ImGui::PushItemWidth(menuColumnWidth);
if (ImGui::Combo("##_4_", &bandplanId.val, bandplan::bandplanNameTxt.c_str())) {
config::config["bandPlan"] = bandplan::bandplanNames[bandplanId.val];
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config::configModified = true;
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}
ImGui::PopItemWidth();
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if (ImGui::Checkbox("Enabled", &bandPlanEnabled.val)) {
config::config["bandPlanEnabled"] = bandPlanEnabled.val;
config::configModified = true;
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}
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bandplan::BandPlan_t plan = bandplan::bandplans[bandplan::bandplanNames[bandplanId.val]];
ImGui::Text("Country: %s (%s)", plan.countryName, plan.countryCode);
ImGui::Text("Author: %s", plan.authorName);
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ImGui::Spacing();
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}
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if (ImGui::CollapsingHeader("Display", ImGuiTreeNodeFlags_DefaultOpen)) {
if (ImGui::Checkbox("Show waterfall", &showWaterfall)) {
showWaterfall ? wtf.showWaterfall() : wtf.hideWaterfall();
}
ImGui::Spacing();
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}
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if(ImGui::CollapsingHeader("Debug")) {
ImGui::Text("Frame time: %.3f ms/frame", 1000.0f / ImGui::GetIO().Framerate);
ImGui::Text("Framerate: %.1f FPS", ImGui::GetIO().Framerate);
ImGui::Text("Center Frequency: %.0f Hz", wtf.getCenterFrequency());
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ImGui::Text("Source name: %s", sourceName.c_str());
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ImGui::Spacing();
}
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ImGui::EndChild();
}
else {
// When hiding the menu bar
ImGui::Columns(3, "WindowColumns", false);
ImGui::SetColumnWidth(0, 8);
ImGui::SetColumnWidth(1, winSize.x - 8 - 60);
ImGui::SetColumnWidth(2, 60);
}
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// Right Column
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ImGui::PushStyleVar(ImGuiStyleVar_ItemSpacing, ImVec2(0, 0));
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ImGui::NextColumn();
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ImGui::PopStyleVar();
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ImGui::BeginChild("Waterfall");
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wtf.draw();
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ImGui::EndChild();
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ImGui::NextColumn();
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ImGui::BeginChild("WaterfallControls");
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ImGui::SetCursorPosX((ImGui::GetWindowSize().x / 2.0f) - (ImGui::CalcTextSize("Zoom").x / 2.0f));
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ImGui::Text("Zoom");
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ImGui::SetCursorPosX((ImGui::GetWindowSize().x / 2.0f) - 10);
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ImGui::VSliderFloat("##_7_", ImVec2(20.0f, 150.0f), &bw.val, sampleRate, 1000.0f, "");
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ImGui::NewLine();
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ImGui::SetCursorPosX((ImGui::GetWindowSize().x / 2.0f) - (ImGui::CalcTextSize("Max").x / 2.0f));
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ImGui::Text("Max");
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ImGui::SetCursorPosX((ImGui::GetWindowSize().x / 2.0f) - 10);
if (ImGui::VSliderFloat("##_8_", ImVec2(20.0f, 150.0f), &fftMax, 0.0f, -100.0f, "")) {
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fftMax = std::max<float>(fftMax, fftMin + 10);
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config::config["max"] = fftMax;
config::configModified = true;
}
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ImGui::NewLine();
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ImGui::SetCursorPosX((ImGui::GetWindowSize().x / 2.0f) - (ImGui::CalcTextSize("Min").x / 2.0f));
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ImGui::Text("Min");
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ImGui::SetCursorPosX((ImGui::GetWindowSize().x / 2.0f) - 10);
if (ImGui::VSliderFloat("##_9_", ImVec2(20.0f, 150.0f), &fftMin, 0.0f, -100.0f, "")) {
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fftMin = std::min<float>(fftMax - 10, fftMin);
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config::config["min"] = fftMin;
config::configModified = true;
}
ImGui::EndChild();
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if (bw.changed()) {
wtf.setViewBandwidth(bw.val);
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wtf.setViewOffset(vfo->centerOffset);
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}
wtf.setFFTMin(fftMin);
wtf.setFFTMax(fftMax);
wtf.setWaterfallMin(fftMin);
wtf.setWaterfallMax(fftMax);
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ImGui::End();
if (showCredits) {
ImGui::PushStyleVar(ImGuiStyleVar_WindowPadding, ImVec2(20.0f, 20.0f));
ImGui::OpenPopup("Credits");
ImGui::BeginPopupModal("Credits", NULL, ImGuiWindowFlags_AlwaysAutoResize | ImGuiWindowFlags_NoTitleBar | ImGuiWindowFlags_NoMove);
ImGui::PushFont(bigFont);
ImGui::Text("SDR++ ");
ImGui::PopFont();
ImGui::SameLine();
ImGui::Image(icons::LOGO, ImVec2(128, 128));
ImGui::Spacing();
ImGui::Spacing();
ImGui::Spacing();
ImGui::Text("This software is brought to you by\n\n");
ImGui::Columns(3, "CreditColumns", true);
// Contributors
ImGui::Text("Contributors");
ImGui::BulletText("Ryzerth (Creator)");
ImGui::BulletText("aosync");
ImGui::BulletText("Benjamin Kyd");
ImGui::BulletText("Tobias Mädel");
ImGui::BulletText("Raov");
// Libraries
ImGui::NextColumn();
ImGui::Text("Libraries");
ImGui::BulletText("SoapySDR (PothosWare)");
ImGui::BulletText("Dear ImGui (ocornut)");
ImGui::BulletText("spdlog (gabime)");
ImGui::BulletText("json (nlohmann)");
ImGui::BulletText("portaudio (PA Comm.)");
// Patrons
ImGui::NextColumn();
ImGui::Text("Patrons");
ImGui::BulletText("SignalsEverywhere");
ImGui::EndPopup();
ImGui::PopStyleVar(1);
}
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}
void bindVolumeVariable(float* vol) {
volume = vol;
}
void unbindVolumeVariable() {
volume = &dummyVolume;
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}