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SoapySDRThread: more comments about the relation between MTU and sample rate
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@ -9,6 +9,7 @@
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#include <algorithm>
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#include <SoapySDR/Logger.h>
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#define TARGET_DISPLAY_FPS 60
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SDRThread::SDRThread() : IOThread(), buffers("SDRThreadBuffers") {
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device = NULL;
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@ -99,7 +100,7 @@ bool SDRThread::init() {
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int streamMTU = device->getStreamMTU(stream);
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mtuElems.store(streamMTU);
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std::cout << "Stream MTU: " << mtuElems.load() << std::endl << std::flush;
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std::cout << "Device Stream MTU: " << mtuElems.load() << std::endl << std::flush;
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deviceInfo.load()->setStreamArgs(currentStreamArgs);
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deviceConfig.load()->setStreamOpts(currentStreamArgs);
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@ -131,7 +132,8 @@ bool SDRThread::init() {
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device->setGainMode(SOAPY_SDR_RX,0,agc_mode.load());
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numChannels.store(getOptimalChannelCount(sampleRate.load()));
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numElems.store(getOptimalElementCount(sampleRate.load(), 30));
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numElems.store(getOptimalElementCount(sampleRate.load(), TARGET_DISPLAY_FPS));
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//fallback if mtuElems was wrong.
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if (!mtuElems.load()) {
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mtuElems.store(numElems.load());
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}
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@ -188,6 +190,7 @@ void SDRThread::assureBufferMinSize(SDRThreadIQData * dataOut, size_t minSize) {
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//Called in an infinite loop, read SaopySDR device to build
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// a 'this.numElems' sized batch of samples (SDRThreadIQData) and push it into iqDataOutQueue.
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//this batch of samples is built to represent 1 frame / TARGET_DISPLAY_FPS.
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void SDRThread::readStream(SDRThreadIQDataQueue* iqDataOutQueue) {
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int flags;
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long long timeNs;
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@ -196,6 +199,13 @@ void SDRThread::readStream(SDRThreadIQDataQueue* iqDataOutQueue) {
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int nElems = numElems.load();
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int mtElems = mtuElems.load();
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// Warning: if MTU > numElems, i.e if device MTU is too big w.r.t the sample rate, the TARGET_DISPLAY_FPS cannot
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//be reached and the CubicSDR displays "slows down".
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//To get back a TARGET_DISPLAY_FPS, the user need to adapt
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//the SoapySDR Device to use smaller buffer sizes, because
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// readStream() is suited to device MTU and cannot be really adapted dynamically.
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//TODO: Add in doc the need to reduce SoapySDR device buffer length (if available) to restore higher fps.
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//0. Retreive a new batch
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SDRThreadIQData *dataOut = buffers.getBuffer();
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@ -241,10 +251,6 @@ void SDRThread::readStream(SDRThreadIQDataQueue* iqDataOutQueue) {
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if ((n_read + n_stream_read) > nElems) {
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//n_requested is the exact number to reach nElems.
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//note: setting n_requested = n_stream_read;
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//lead to push the whole n_stream_read, so no overflow management occurs,
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//so dataOut->data can exess nElems by at most mtElems.
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//TODO: doesn't change CubicSDR behaviour, so why not ?
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int n_requested = nElems-n_read;
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//Copy at most n_requested CF32 into .data liquid_float_complex,
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@ -399,6 +405,7 @@ void SDRThread::updateSettings() {
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}
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if (rate_changed.load()) {
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device->setSampleRate(SOAPY_SDR_RX,0,sampleRate.load());
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// TODO: explore bandwidth setting option to see if this is necessary for others
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if (device->getDriverKey() == "bladeRF") {
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@ -406,9 +413,10 @@ void SDRThread::updateSettings() {
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}
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sampleRate.store(device->getSampleRate(SOAPY_SDR_RX,0));
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numChannels.store(getOptimalChannelCount(sampleRate.load()));
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numElems.store(getOptimalElementCount(sampleRate.load(), 60));
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numElems.store(getOptimalElementCount(sampleRate.load(), TARGET_DISPLAY_FPS));
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int streamMTU = device->getStreamMTU(stream);
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mtuElems.store(streamMTU);
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//fallback if mtuElems was wrong
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if (!mtuElems.load()) {
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mtuElems.store(numElems.load());
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}
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@ -416,7 +424,9 @@ void SDRThread::updateSettings() {
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overflowBuffer.data.resize(mtuElems.load());
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free(buffs[0]);
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buffs[0] = malloc(mtuElems.load() * 4 * sizeof(float));
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//clear overflow buffer
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numOverflow = 0;
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rate_changed.store(false);
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doUpdate = true;
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}
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